[ { "question": "Write a function to find the next smallest palindrome of a specified integer, returned as an integer.\nassert next_smallest_palindrome(99)==101\nYour code should pass the test:\nassert next_smallest_palindrome(99)==101", "test_list": [ "assert next_smallest_palindrome(99)==101", "assert next_smallest_palindrome(1221)==1331", "assert next_smallest_palindrome(120)==121", "assert next_smallest_palindrome(0) == 1", "assert next_smallest_palindrome(45678) == 45754", "assert next_smallest_palindrome(1) == 2", "assert next_smallest_palindrome(45679) == 45754", "assert next_smallest_palindrome(2) == 3", "assert next_smallest_palindrome(3) == 4", "assert next_smallest_palindrome(45681) == 45754", "assert next_smallest_palindrome(4) == 5", "assert next_smallest_palindrome(5) == 6", "assert next_smallest_palindrome(45683) == 45754", "assert next_smallest_palindrome(45682) == 45754", "assert next_smallest_palindrome(45677) == 45754", "assert next_smallest_palindrome(6) == 7", "assert next_smallest_palindrome(45676) == 45754", "assert next_smallest_palindrome(45675) == 45754", "assert next_smallest_palindrome(45680) == 45754", "assert next_smallest_palindrome(34) == 44", "assert next_smallest_palindrome(45674) == 45754", "assert next_smallest_palindrome(33) == 44", "assert next_smallest_palindrome(45673) == 45754", "assert next_smallest_palindrome(7) == 8", "assert next_smallest_palindrome(32) == 33", "assert next_smallest_palindrome(8) == 9", "assert next_smallest_palindrome(58) == 66", "assert next_smallest_palindrome(45672) == 45754", "assert next_smallest_palindrome(57) == 66", "assert next_smallest_palindrome(55) == 66", "assert next_smallest_palindrome(9) == 11", "assert next_smallest_palindrome(31) == 33", "assert next_smallest_palindrome(36) == 44", "assert next_smallest_palindrome(56) == 66", "assert next_smallest_palindrome(45684) == 45754", "assert next_smallest_palindrome(30) == 33", "assert next_smallest_palindrome(29) == 33", "assert next_smallest_palindrome(87) == 88", "assert next_smallest_palindrome(45671) == 45754", "assert next_smallest_palindrome(40) == 44", "assert next_smallest_palindrome(45685) == 45754", "assert next_smallest_palindrome(54) == 55", "assert next_smallest_palindrome(35) == 44", "assert next_smallest_palindrome(10) == 11", "assert next_smallest_palindrome(45670) == 45754", "assert next_smallest_palindrome(96) == 99", "assert next_smallest_palindrome(45669) == 45754", "assert next_smallest_palindrome(28) == 33", "assert next_smallest_palindrome(11) == 22", "assert next_smallest_palindrome(97) == 99", "assert next_smallest_palindrome(59) == 66", "assert next_smallest_palindrome(98) == 99", "assert next_smallest_palindrome(27) == 33", "assert next_smallest_palindrome(37) == 44", "assert next_smallest_palindrome(45686) == 45754", "assert next_smallest_palindrome(41) == 44", "assert next_smallest_palindrome(60) == 66", "assert next_smallest_palindrome(53) == 55", "assert next_smallest_palindrome(99) == 101", "assert next_smallest_palindrome(13) == 22", "assert next_smallest_palindrome(26) == 33", "assert next_smallest_palindrome(14) == 22", "assert next_smallest_palindrome(52) == 55", "assert next_smallest_palindrome(51) == 55", "assert next_smallest_palindrome(25) == 33", "assert next_smallest_palindrome(12) == 22", "assert next_smallest_palindrome(50) == 55", "assert next_smallest_palindrome(24) == 33", "assert next_smallest_palindrome(85) == 88", "assert next_smallest_palindrome(23) == 33", "assert next_smallest_palindrome(45687) == 45754", "assert next_smallest_palindrome(39) == 44", "assert next_smallest_palindrome(86) == 88", "assert next_smallest_palindrome(88) == 99", "assert next_smallest_palindrome(61) == 66", "assert next_smallest_palindrome(38) == 44", "assert next_smallest_palindrome(45668) == 45754", "assert next_smallest_palindrome(95) == 99", "assert next_smallest_palindrome(84) == 88", "assert next_smallest_palindrome(45667) == 45754", "assert next_smallest_palindrome(22) == 33", "assert next_smallest_palindrome(45688) == 45754", "assert next_smallest_palindrome(42) == 44", "assert next_smallest_palindrome(45666) == 45754", "assert next_smallest_palindrome(89) == 99", "assert next_smallest_palindrome(15) == 22", "assert next_smallest_palindrome(83) == 88", "assert next_smallest_palindrome(45665) == 45754", "assert next_smallest_palindrome(90) == 99", "assert next_smallest_palindrome(91) == 99", "assert next_smallest_palindrome(49) == 55", "assert next_smallest_palindrome(100) == 101", "assert next_smallest_palindrome(45689) == 45754", "assert next_smallest_palindrome(94) == 99", "assert next_smallest_palindrome(45664) == 45754", "assert next_smallest_palindrome(82) == 88", "assert next_smallest_palindrome(62) == 66", "assert next_smallest_palindrome(81) == 88", "assert next_smallest_palindrome(16) == 22", "assert next_smallest_palindrome(93) == 99", "assert next_smallest_palindrome(101) == 111", "assert next_smallest_palindrome(80) == 88", "assert next_smallest_palindrome(102) == 111", "assert next_smallest_palindrome(20) == 22", "assert next_smallest_palindrome(48) == 55" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the kth element in the given array using 1-based indexing.\nassert kth_element([12,3,5,7,19], 2) == 3\nYour code should pass the test:\nassert kth_element([12,3,5,7,19], 2) == 3", "test_list": [ "assert kth_element([12,3,5,7,19], 2) == 3", "assert kth_element([17,24,8,23], 3) == 8", "assert kth_element([16,21,25,36,4], 4) == 36", "assert kth_element([100, 99, 98, 97, 96], 5) == 96", "assert kth_element([50, 40, 30, 20, 10], 1) == 50", "assert kth_element([1000, 999, 998, 997, 996], 3) == 998", "assert kth_element([1000000, 500000, 100000, 50000, 10000], 4) == 50000", "assert kth_element([50, 40, 30, 20, 10, 40], 1) == 50", "assert kth_element([100, 99, 98, 20, 97, 96], 5) == 97", "assert kth_element([100, 99, 98, 20, 97, 96], 6) == 96", "assert kth_element([100, 99, 98, 97, 96, 98], 5) == 96", "assert kth_element([51, 40, 99, 41, 30, 41, 20, 10], 1) == 51", "assert kth_element([500000, 100000, 50000, 10000], 4) == 10000", "assert kth_element([1000, 999, 998, 997, 996, 999], 3) == 998", "assert kth_element([100, 99, 98, 97, 96], 4) == 97", "assert kth_element([100, 100, 98, 20, 97, 96, 100], 7) == 100", "assert kth_element([500000, 500000, 100000, 50000, 10000], 4) == 50000", "assert kth_element([50, 40, 10, 20, 10, 40], 4) == 20", "assert kth_element([100, 99, 98, 98, 97, 96], 5) == 97", "assert kth_element([100, 99, 98, 20, 97], 5) == 97", "assert kth_element([100, 99, 96, 20, 97, 96], 6) == 96", "assert kth_element([100, 99, 96, 20, 97, 96], 5) == 97", "assert kth_element([100, 99, 99, 98, 97, 96], 4) == 98", "assert kth_element([51, 40, 99, 41, 30, 41, 20, 10], 7) == 20", "assert kth_element([100, 96, 20, 97, 96], 4) == 97", "assert kth_element([1000, 3, 999, 998, 997, 996, 999], 3) == 999", "assert kth_element([999, 100, 99, 98, 97, 96], 5) == 97", "assert kth_element([100, 99, 99, 98, 97], 4) == 98", "assert kth_element([1000, 3, 999, 998, 997, 996, 999], 4) == 998", "assert kth_element([100, 99, 99, 98, 96], 4) == 98", "assert kth_element([100, 99, 98, 99, 20, 97], 5) == 20", "assert kth_element([100, 99, 98, 20, 97, 100], 5) == 97", "assert kth_element([1000, 999, 998, 997, 996, 999], 4) == 997", "assert kth_element([51, 40, 99, 20, 41, 30, 41, 20, 10], 1) == 51", "assert kth_element([100, 99, 98, 97, 96, 98], 6) == 98", "assert kth_element([1000, 3, 999, 998, 997, 996, 998], 4) == 998", "assert kth_element([7, 100, 100, 98, 20, 97, 96, 100], 7) == 96", "assert kth_element([100, 99, 98, 97, 1000000, 96], 4) == 97", "assert kth_element([100, 19, 96, 20, 97, 96], 4) == 20", "assert kth_element([7, 100, 100, 98, 97, 19, 96, 100], 7) == 96", "assert kth_element([100, 99, 98, 20, 7, 97, 100], 4) == 20", "assert kth_element([100, 99, 98, 20, 96, 96], 5) == 96", "assert kth_element([500000, 100000, 50000, 10000], 3) == 50000", "assert kth_element([7, 100, 100, 98, 97, 19, 96, 100], 8) == 100", "assert kth_element([7, 100, 100, 98, 97, 19, 96, 100], 3) == 100", "assert kth_element([51, 40, 99, 41, 30, 20, 10], 1) == 51", "assert kth_element([50, 997, 40, 30, 20, 10], 1) == 50", "assert kth_element([100, 99, 98, 97, 1000000, 96], 2) == 99", "assert kth_element([100, 95, 1, 98, 97, 1000000, 96], 4) == 98", "assert kth_element([51, 40, 99, 41, 30, 20, 10], 2) == 40", "assert kth_element([100, 100, 98, 20, 97, 96, 10000], 1) == 100", "assert kth_element([100, 99, 99, 98, 97], 5) == 97", "assert kth_element([100, 99, 98, 98, 97, 96], 6) == 96", "assert kth_element([100, 100, 98, 20, 97], 5) == 97", "assert kth_element([100, 99, 96, 19, 97, 96], 4) == 19", "assert kth_element([50, 40, 30, 20, 11], 1) == 50", "assert kth_element([100, 96, 99, 97, 20, 97, 96], 7) == 96", "assert kth_element([100, 99, 96, 10000, 20, 96], 3) == 96", "assert kth_element([50, 40, 30, 20, 7], 1) == 50", "assert kth_element([1000, 3, 999, 998, 997, 996, 999, 999], 3) == 999", "assert kth_element([100, 99, 98, 98, 97, 96, 100], 5) == 97", "assert kth_element([50, 40, 6, 20, 10, 40], 2) == 40", "assert kth_element([7, 100, 100, 98, 20, 97, 96, 100, 97], 7) == 96", "assert kth_element([100, 99, 96, 19, 97, 96, 99], 4) == 19", "assert kth_element([100, 99, 98, 4, 96, 96], 5) == 96", "assert kth_element([100, 99, 98, 20, 95, 96], 5) == 95", "assert kth_element([100, 19, 96, 20, 97, 96, 96], 4) == 20", "assert kth_element([41, 100, 100, 98, 20, 97, 96, 10000], 1) == 41", "assert kth_element([7, 100, 100, 6, 98, 97, 19, 96, 100], 8) == 96", "assert kth_element([7, 100, 100, 98, 20, 97, 96, 100, 100], 7) == 96", "assert kth_element([50, 997, 97, 40, 30, 20, 10], 1) == 50", "assert kth_element([100, 96, 20, 96, 96], 5) == 96", "assert kth_element([1000, 998, 997, 996, 999], 3) == 997", "assert kth_element([7, 51, 100, 98, 20, 97, 96, 100], 7) == 96", "assert kth_element([100, 19, 30, 20, 97, 96], 4) == 20", "assert kth_element([1000, 3, 999, 998, 997, 5, 996, 999], 3) == 999", "assert kth_element([7, 100, 100, 98, 11, 97, 96, 100, 100], 7) == 96", "assert kth_element([100, 99, 96, 20, 97, 95], 6) == 95", "assert kth_element([7, 100, 100, 98, 20, 97, 96, 100, 100], 6) == 97", "assert kth_element([100, 98, 98, 97, 96], 5) == 96", "assert kth_element([100, 99, 98, 98, 97, 96, 100, 99], 5) == 97", "assert kth_element([50, 40, 20, 10, 40], 1) == 50", "assert kth_element([51, 40, 99, 41, 30, 41, 20, 10], 6) == 41", "assert kth_element([51, 40, 99, 20, 41, 30, 41, 20, 10], 7) == 41", "assert kth_element([7, 100, 100, 98, 20, 30, 96, 100], 7) == 96", "assert kth_element([7, 51, 100, 98, 20, 30, 97, 96, 100], 7) == 97", "assert kth_element([101, 99, 98, 97, 96], 4) == 97", "assert kth_element([100, 99, 99, 98, 96], 3) == 99", "assert kth_element([50, 40, 20, 10, 40, 20], 1) == 50", "assert kth_element([50, 40, 20, 7], 1) == 50", "assert kth_element([100, 99, 98, 20, 95, 96], 4) == 20", "assert kth_element([7, 100, 100, 98, 20, 97, 10000, 96, 100], 7) == 10000", "assert kth_element([97, 100, 99, 98, 97, 96, 98], 6) == 96", "assert kth_element([100, 96, 20, 97, 998, 96], 4) == 97", "assert kth_element([51, 3, 999, 998, 997, 996, 999], 3) == 999", "assert kth_element([101, 99, 98, 97, 96], 1) == 101", "assert kth_element([7, 100, 41, 98, 20, 30, 96, 100], 7) == 96", "assert kth_element([7, 100, 100, 96, 97, 19, 96, 100], 8) == 100", "assert kth_element([7, 51, 100, 20, 20, 97, 96, 100], 7) == 96", "assert kth_element([6, 7, 100, 100, 98, 97, 19, 96, 100], 7) == 19", "assert kth_element([100, 99, 98, 4, 96], 5) == 96", "assert kth_element([51, 3, 999, 998, 997, 996, 999], 4) == 998", "assert kth_element([7, 100, 98, 97, 19, 96, 100, 100], 7) == 100", "assert kth_element([100, 99, 98, 20, 7, 97, 100], 5) == 7", "assert kth_element([1000000, 100, 96, 20, 97, 96], 4) == 20", "assert kth_element([100, 99, 98, 20, 95], 5) == 95", "assert kth_element([1000, 998, 997, 996], 3) == 997" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a snake case string to camel case string.\nassert snake_to_camel('python_program')=='PythonProgram'\nYour code should pass the test:\nassert snake_to_camel('python_program')=='PythonProgram'", "test_list": [ "assert snake_to_camel('python_program')=='PythonProgram'", "assert snake_to_camel('python_language')==('PythonLanguage')", "assert snake_to_camel('programming_language')==('ProgrammingLanguage')", "assert snake_to_camel('___python_program') == '___PythonProgram'", "assert snake_to_camel('__12_python__language___') == '__12Python_Language___'", "assert snake_to_camel('your_programming__langu__age___') == 'YourProgramming_Langu_Age___'", "assert snake_to_camel('another__ex44ample___') == 'Another_Ex44ample___'", "assert snake_to_camel('_') == '__'", "assert snake_to_camel('word') == 'Word'", "assert snake_to_camel('no_underscores') == 'NoUnderscores'", "assert snake_to_camel('_leading') == '_Leading'", "assert snake_to_camel('trailing_') == 'Trailing_'", "assert snake_to_camel('__multiple_consecutive__underscores__') == '__MultipleConsecutive_Underscores__'", "assert snake_to_camel('__12_python__languag_') == '__12Python_Languag_'", "assert snake_to_camel('___p_ythonram') == '___PYthonram'", "assert snake_to_camel('your_nprogramming__langu__age___') == 'YourNprogramming_Langu_Age___'", "assert snake_to_camel('your_nprogramming_another__ex44ample____langu__age___') == 'YourNprogrammingAnother_Ex44ample___Langu_Age___'", "assert snake_to_camel('__12_pythonno_underscores__languag_') == '__12PythonnoUnderscores_Languag_'", "assert snake_to_camel('_lwordeading') == '_Lwordeading'", "assert snake_to_camel('your_nprogramming_another__ex4no_underscores4ample____langu__age___') == 'YourNprogrammingAnother_Ex4noUnderscores4ample___Langu_Age___'", "assert snake_to_camel('your_programming__langu____12_python__languag_age___') == 'YourProgramming_Langu___12Python_LanguagAge___'", "assert snake_to_camel('__12_pyth_') == '__12Pyth_'", "assert snake_to_camel('__1__12_python__languag_2_pythonno_underscores__languag_') == '__1_12Python_Languag2PythonnoUnderscores_Languag_'", "assert snake_to_camel('___pgram') == '___Pgram'", "assert snake_to_camel('_lwordeadin__12_python__language___g') == '_Lwordeadin_12Python_Language__G'", "assert snake_to_camel('your_prtrailing___') == 'YourPrtrailing___'", "assert snake_to_camel('__12_pythonno_underscores__langu_ag_') == '__12PythonnoUnderscores_LanguAg_'", "assert snake_to_camel('aiN') == 'Ain'", "assert snake_to_camel('worod') == 'Worod'", "assert snake_to_camel('_lwordeadin__12_python__languaage___g') == '_Lwordeadin_12Python_Languaage__G'", "assert snake_to_camel('qaiNnJa') == 'Qainnja'", "assert snake_to_camel('aiN_lwordeading') == 'AinLwordeading'", "assert snake_to_camel('_lwordeadin__1_2_python__language___g') == '_Lwordeadin_12Python_Language__G'", "assert snake_to_camel('your_nprogrammi__12_pyth_ng_another__ex4no_underscores4ample____langu__age___your_nprogramming__langu__age___') == 'YourNprogrammi_12PythNgAnother_Ex4noUnderscores4ample___Langu_Age__YourNprogramming_Langu_Age___'", "assert snake_to_camel('your_pryour_nprogramming_another__ex4no_underscores4ample____langu__age___iling___') == 'YourPryourNprogrammingAnother_Ex4noUnderscores4ample___Langu_Age__Iling___'", "assert snake_to_camel('__1____12_pythonno_underscores__langu_ag_12_python__languag_2_pythonno_underscores__languag_') == '__1___12PythonnoUnderscores_LanguAg12Python_Languag2PythonnoUnderscores_Languag_'", "assert snake_to_camel('CVh') == 'Cvh'", "assert snake_to_camel('_leadin_lwordeadin__12_python__languaage___gg') == '_LeadinLwordeadin_12Python_Languaage__Gg'", "assert snake_to_camel('_th_') == '_Th_'", "assert snake_to_camel('_lwordeadin__1_2_py__language___g') == '_Lwordeadin_12Py_Language__G'", "assert snake_to_camel('trailing__12_python__languag__') == 'Trailing_12Python_Languag__'", "assert snake_to_camel('your_pr_th_ogramming__langu____12_python__languag_age___') == 'YourPrThOgramming_Langu___12Python_LanguagAge___'", "assert snake_to_camel('your_pryour_nprogramming_another__aiNex4no_underscores4ample____langu__age___iling___') == 'YourPryourNprogrammingAnother_Ainex4noUnderscores4ample___Langu_Age__Iling___'", "assert snake_to_camel('__12_python__language_g__') == '__12Python_LanguageG__'", "assert snake_to_camel('aiN_lwordeadin__12_python__layour_nprogramming_another__ex4no_underscores4ample____langu__age___wordeading') == 'AinLwordeadin_12Python_LayourNprogrammingAnother_Ex4noUnderscores4ample___Langu_Age__Wordeading'", "assert snake_to_camel('_lwordeadin__1_2_py__lawordnguaage___g') == '_Lwordeadin_12Py_Lawordnguaage__G'", "assert snake_to_camel('__12_pythonno_underscores__lanuag_') == '__12PythonnoUnderscores_Lanuag_'", "assert snake_to_camel('_____12_pyth_ram') == '_____12PythRam'", "assert snake_to_camel('__1____12_pythonno_underscores__langu_a_lwordeadingg_12_python__languag_2_pythonno_underscores__languag_') == '__1___12PythonnoUnderscores_LanguALwordeadingg12Python_Languag2PythonnoUnderscores_Languag_'", "assert snake_to_camel('__') == '___'", "assert snake_to_camel('_leadilng') == '_Leadilng'", "assert snake_to_camel('___python_progr__1____12_pythonno_underscores__langu_ag_12_python__l__languag_m') == '___PythonProgr_1___12PythonnoUnderscores_LanguAg12Python_L_LanguagM'", "assert snake_to_camel('__12_pythonno_underscores__langua_g_') == '__12PythonnoUnderscores_LanguaG_'", "assert snake_to_camel('your_nprogramming_another__ex44ample_____12_pythonno_underscores__languag__langu__age___') == 'YourNprogrammingAnother_Ex44ample____12PythonnoUnderscores_Languag_Langu_Age___'", "assert snake_to_camel('__12_python__l__') == '__12Python_L__'", "assert snake_to_camel('__multiprlne_consecutive__underscores__') == '__MultiprlneConsecutive_Underscores__'", "assert snake_to_camel('___12_pyth_') == '___12Pyth_'", "assert snake_to_camel('__1____12_pythonno_undngu_a_lwordeadingg_12_python__languag_2_pythonno_underscores__languag_') == '__1___12PythonnoUndnguALwordeadingg12Python_Languag2PythonnoUnderscores_Languag_'", "assert snake_to_camel('your_nprogramming_another__ex44ample_____12_py___12_pyth_thonno_underscores__languag__langu__age___') == 'YourNprogrammingAnother_Ex44ample____12Py__12PythThonnoUnderscores_Languag_Langu_Age___'", "assert snake_to_camel('_____multiple_consecutive__underscores__python_program') == '_____MultipleConsecutive_Underscores_PythonProgram'", "assert snake_to_camel('yo_ur_nprogr_amming_another__ex44ample____langu__age___') == 'YoUrNprogrAmmingAnother_Ex44ample___Langu_Age___'", "assert snake_to_camel('_leadin_lwnordeadin__12_python__languaage___gg') == '_LeadinLwnordeadin_12Python_Languaage__Gg'", "assert snake_to_camel('jzAx') == 'Jzax'", "assert snake_to_camel('_leadin____12_pyth_lwordeadin__12_python__languaage___gg') == '_Leadin___12PythLwordeadin_12Python_Languaage__Gg'", "assert snake_to_camel('yo_ur_nprogr_amming_another__ex44am__multiprlne_consecutive__underscores__ple___1__12_python__languag_2_pythonno_underscores__languag___langu__age___') == 'YoUrNprogrAmmingAnother_Ex44am_MultiprlneConsecutive_Underscores_Ple__1_12Python_Languag2PythonnoUnderscores_Languag__Langu_Age___'", "assert snake_to_camel('__1____12_pythonno_underscores__langu_ag_12_python__languag_2_pythonno_underscores__languag_word') == '__1___12PythonnoUnderscores_LanguAg12Python_Languag2PythonnoUnderscores_LanguagWord'", "assert snake_to_camel('_lwordeadin__12_python__lanuguage___g') == '_Lwordeadin_12Python_Lanuguage__G'", "assert snake_to_camel('trailing___python_progr__1____12_pythonno_underscores__langu_ag_12_python__l__languag_m__12_python__languag__') == 'Trailing__PythonProgr_1___12PythonnoUnderscores_LanguAg12Python_L_LanguagM_12Python_Languag__'", "assert snake_to_camel('trailianguag_2_pythonno_underscores__languag__') == 'Trailianguag2PythonnoUnderscores_Languag__'", "assert snake_to_camel('__1_2_p') == '__12P'", "assert snake_to_camel('_leadil__multiple_consecutive__underscores__ng') == '_Leadil_MultipleConsecutive_Underscores_Ng'", "assert snake_to_camel('__1_2_qaiNnJap') == '__12Qainnjap'", "assert snake_to_camel('a__1_2_piN_lwordeading') == 'A_12PinLwordeading'", "assert snake_to_camel('__NnJap') == '__Nnjap'", "assert snake_to_camel('__12_peythonno_underscores__lanuag_') == '__12PeythonnoUnderscores_Lanuag_'", "assert snake_to_camel('trailinig_') == 'Trailinig_'", "assert snake_to_camel('trailiyour_yo_ur_nprogr_amming_another__ex44ample____langu__age___pryour_nprogramming_another__aiNex4no_underscores4ample____langu__ayour_nprogrammi__12_pyth_ng_another__ex4no_underscores4ample____langu__age___your_nprogramming__langu__age___ge___iling___') == 'TrailiyourYoUrNprogrAmmingAnother_Ex44ample___Langu_Age__PryourNprogrammingAnother_Ainex4noUnderscores4ample___Langu_AyourNprogrammi_12PythNgAnother_Ex4noUnderscores4ample___Langu_Age__YourNprogramming_Langu_Age__Ge__Iling___'", "assert snake_to_camel('X') == 'X'", "assert snake_to_camel('_leadin____12_pyth_lwordeadin__12_python__languaage___g1g') == '_Leadin___12PythLwordeadin_12Python_Languaage__G1g'", "assert snake_to_camel('_lwordeadin__1_2_py__lawordnguaage___g__1_2_p') == '_Lwordeadin_12Py_Lawordnguaage__G_12P'", "assert snake_to_camel('your_programming__langu____1y2_python__languag_age___') == 'YourProgramming_Langu___1y2Python_LanguagAge___'", "assert snake_to_camel('your_pr_th_ogramming__langu____12__lwordeadingpython__languag_age___') == 'YourPrThOgramming_Langu___12_Lwordeadingpython_LanguagAge___'", "assert snake_to_camel('your_pr_th_ogramming__langu____12_your_programming__langu____1y2_python__languag_age____lwordeadingpython__languag_age___') == 'YourPrThOgramming_Langu___12YourProgramming_Langu___1y2Python_LanguagAge___Lwordeadingpython_LanguagAge___'", "assert snake_to_camel('aiN_lwordeadiwordn__12_python__layour_nprogramming_another__ex4no_underscores4ample____langu__age___wordeading') == 'AinLwordeadiwordn_12Python_LayourNprogrammingAnother_Ex4noUnderscores4ample___Langu_Age__Wordeading'", "assert snake_to_camel('your_nprogr_lwordeadingammi__12_pyth_ng_another__ex4no_underscores4ample____langu__age___your_nprogramming__langu__age___') == 'YourNprogrLwordeadingammi_12PythNgAnother_Ex4noUnderscores4ample___Langu_Age__YourNprogramming_Langu_Age___'", "assert snake_to_camel('___p_ythqaiNnJaonram') == '___PYthqainnjaonram'", "assert snake_to_camel('12_python__l__') == '12Python_L__'", "assert snake_to_camel('_lwordeadin__12_python__lan_lwordeadin__12_python__languaage___gguaage___g') == '_Lwordeadin_12Python_LanLwordeadin_12Python_Languaage__Gguaage__G'", "assert snake_to_camel('__12_pythonaiN_lwordeading__l__') == '__12PythonainLwordeading_L__'", "assert snake_to_camel('trailing__12_python__layo_ur_nprogr_amming_another__ex44ample____langu__age___nguag__') == 'Trailing_12Python_LayoUrNprogrAmmingAnother_Ex44ample___Langu_Age__Nguag__'", "assert snake_to_camel('your__12_pythonno_underascores__langu_ag__nprogramming_another__ex4no_underscores4ample____langu__age') == 'Your_12PythonnoUnderascores_LanguAg_NprogrammingAnother_Ex4noUnderscores4ample___Langu_Age'", "assert snake_to_camel('your_pryour_nprotrailing__12_python__layo_ur_nprogr_amming_another__ex44ample____langu__age___nguag__gramming_another__ex4no_underscores4ample____langu__age___iling___') == 'YourPryourNprotrailing_12Python_LayoUrNprogrAmmingAnother_Ex44ample___Langu_Age__Nguag_GrammingAnother_Ex4noUnderscores4ample___Langu_Age__Iling___'", "assert snake_to_camel('__12n_pythonno_un_') == '__12nPythonnoUn_'", "assert snake_to_camel('_____12_pyth__python_program') == '_____12Pyth_PythonProgram'", "assert snake_to_camel('_lwon__1__12_python__l__2_python__lanuguage___g') == '_Lwon_1_12Python_L_2Python_Lanuguage__G'", "assert snake_to_camel('your_programming__langu____12_python__languag_ag___pgram___') == 'YourProgramming_Langu___12Python_LanguagAg__Pgram___'", "assert snake_to_camel('____12n_pythonno_un_1_2_p') == '____12nPythonnoUn12P'", "assert snake_to_camel('_lwordeadin__12_python__lanugu_lwordeadingage___g') == '_Lwordeadin_12Python_LanuguLwordeadingage__G'", "assert snake_to_camel('aiyour_pryour_nprogramming_another__aiNex4no_undersco_lwordeadingres4ample____langu__age___iling___N') == 'AiyourPryourNprogrammingAnother_Ainex4noUnderscoLwordeadingres4ample___Langu_Age__Iling__N'", "assert snake_to_camel('__1_d___12_pythonno_underscores__langu_ag_12_python__languag_2_pythonno_underscores__languag_') == '__1D__12PythonnoUnderscores_LanguAg12Python_Languag2PythonnoUnderscores_Languag_'", "assert snake_to_camel('your_pr_th_ogramming__langu____12_your_programming__langu____1y2_python__languingpython__languag_age___') == 'YourPrThOgramming_Langu___12YourProgramming_Langu___1y2Python_Languingpython_LanguagAge___'", "assert snake_to_camel('your_nprogrammi__12__pyth_ng_another__ex4no_underscores4ample____langu__age___your_nprogramming__langu__age___') == 'YourNprogrammi_12_PythNgAnother_Ex4noUnderscores4ample___Langu_Age__YourNprogramming_Langu_Age___'", "assert snake_to_camel('your_pr_th_ogramming__langu____12_your_programming__langu____1y2_pythotn__languag_age____lwordeadingpython__languag_age___') == 'YourPrThOgramming_Langu___12YourProgramming_Langu___1y2Pythotn_LanguagAge___Lwordeadingpython_LanguagAge___'", "assert snake_to_camel('qaiNnJ_lwordeadin__1_2_py__language________12_pyth_ram') == 'QainnjLwordeadin_12Py_Language_______12PythRam'", "assert snake_to_camel('your_pr_th_ogrammingyo_ur_nprogr_amming_another__ex44ample____langu__age_____langu____12_your_programming__langu____h1y2_python__languingpython__languag_age___') == 'YourPrThOgrammingyoUrNprogrAmmingAnother_Ex44ample___Langu_Age____Langu___12YourProgramming_Langu___H1y2Python_Languingpython_LanguagAge___'", "assert snake_to_camel('____12n_pythonaiNno_un_1_2_p') == '____12nPythonainnoUn12P'", "assert snake_to_camel('_lwordeadin__12_python__lanuguage_____pgram_g') == '_Lwordeadin_12Python_Lanuguage____PgramG'", "assert snake_to_camel('AOqPHkjh') == 'Aoqphkjh'", "assert snake_to_camel('_lwon__1__12_python__l__2_python__lanuguage_no_underscores') == '_Lwon_1_12Python_L_2Python_LanuguageNoUnderscores'", "assert snake_to_camel('_____12_pyth_h_python_program_leadin_lwnordeadin__12_python__languaage___g') == '_____12PythHPythonProgramLeadinLwnordeadin_12Python_Languaage__G'", "assert snake_to_camel('your_pr_th_ogrammingyo_ur_nprogr_amming_another__ex44ample____langu__age_____ur_programming__langu____h1y2_python__languingpython__languag_age___') == 'YourPrThOgrammingyoUrNprogrAmmingAnother_Ex44ample___Langu_Age____UrProgramming_Langu___H1y2Python_Languingpython_LanguagAge___'", "assert snake_to_camel('your_pryour_nprotrailing__12_python__layo_ur_nprogr_amming_eanother__ex44ample____langu__age___nguag__gramming_another__ex4no_underscores4ample____langu__age___iling___') == 'YourPryourNprotrailing_12Python_LayoUrNprogrAmmingEanother_Ex44ample___Langu_Age__Nguag_GrammingAnother_Ex4noUnderscores4ample___Langu_Age__Iling___'", "assert snake_to_camel('your_pr_th_ogrammingyo_ur_nprogr_amming_another__ex44ample____langu__age_____ur_programming__langu____h1y2_python__lang__1_d___12_pythonno_underscores__langu_ag_12_python__languag_2_pythonno_underscores__languag_uingpython__languag_age___') == 'YourPrThOgrammingyoUrNprogrAmmingAnother_Ex44ample___Langu_Age____UrProgramming_Langu___H1y2Python_Lang_1D__12PythonnoUnderscores_LanguAg12Python_Languag2PythonnoUnderscores_LanguagUingpython_LanguagAge___'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the Eulerian number a(n, m).\nassert eulerian_num(3, 1) == 4\nYour code should pass the test:\nassert eulerian_num(3, 1) == 4", "test_list": [ "assert eulerian_num(3, 1) == 4", "assert eulerian_num(4, 1) == 11", "assert eulerian_num(5, 3) == 26", "assert eulerian_num(0, 0) == 0", "assert eulerian_num(1, 1) == 0", "assert eulerian_num(1, 2) == 0", "assert eulerian_num(1, 0) == 1", "assert eulerian_num(0, 2) == 0", "assert eulerian_num(0, 1) == 0", "assert eulerian_num(2, 0) == 1", "assert eulerian_num(2, 2) == 0", "assert eulerian_num(2, 3) == 0", "assert eulerian_num(1, 3) == 0", "assert eulerian_num(0, 3) == 0", "assert eulerian_num(2, 4) == 0", "assert eulerian_num(1, 4) == 0", "assert eulerian_num(4, 4) == 0", "assert eulerian_num(4, 0) == 1", "assert eulerian_num(3, 0) == 1", "assert eulerian_num(0, 4) == 0", "assert eulerian_num(3, 4) == 0", "assert eulerian_num(3, 3) == 0", "assert eulerian_num(4, 5) == 0", "assert eulerian_num(5, 0) == 1", "assert eulerian_num(1, 5) == 0", "assert eulerian_num(False, True) == 0", "assert eulerian_num(5, 5) == 0", "assert eulerian_num(True, True) == 0", "assert eulerian_num(6, 6) == 0", "assert eulerian_num(2, 6) == 0", "assert eulerian_num(0, 5) == 0", "assert eulerian_num(3, 5) == 0", "assert eulerian_num(4, 6) == 0", "assert eulerian_num(5, 6) == 0", "assert eulerian_num(5, 7) == 0", "assert eulerian_num(6, 7) == 0", "assert eulerian_num(0, 6) == 0", "assert eulerian_num(False, False) == 0", "assert eulerian_num(3, 6) == 0", "assert eulerian_num(0, 7) == 0", "assert eulerian_num(True, False) == 1", "assert eulerian_num(7, 0) == 1", "assert eulerian_num(2, 7) == 0", "assert eulerian_num(6, 0) == 1", "assert eulerian_num(0, 8) == 0", "assert eulerian_num(4, 8) == 0", "assert eulerian_num(7, 7) == 0", "assert eulerian_num(4, 7) == 0", "assert eulerian_num(2, 5) == 0", "assert eulerian_num(9, 9) == 0", "assert eulerian_num(10, 10) == 0", "assert eulerian_num(3, 9) == 0", "assert eulerian_num(2, 8) == 0", "assert eulerian_num(5, 8) == 0", "assert eulerian_num(9, 10) == 0", "assert eulerian_num(8, 8) == 0", "assert eulerian_num(2, 9) == 0", "assert eulerian_num(4, 9) == 0", "assert eulerian_num(7, 8) == 0", "assert eulerian_num(8, 9) == 0", "assert eulerian_num(1, 8) == 0", "assert eulerian_num(1, 10) == 0", "assert eulerian_num(5, 9) == 0", "assert eulerian_num(5, 11) == 0", "assert eulerian_num(8, 0) == 1", "assert eulerian_num(6, 8) == 0", "assert eulerian_num(1, 9) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort each sublist of strings in a given list of lists.\nassert sort_sublists(([\"green\", \"orange\"], [\"black\", \"white\"], [\"white\", \"black\", \"orange\"]))==[['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]\nYour code should pass the test:\nassert sort_sublists(([\"green\", \"orange\"], [\"black\", \"white\"], [\"white\", \"black\", \"orange\"]))==[['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]", "test_list": [ "assert sort_sublists(([\"green\", \"orange\"], [\"black\", \"white\"], [\"white\", \"black\", \"orange\"]))==[['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]", "assert sort_sublists(([\" red \",\"green\" ],[\"blue \",\" black\"],[\" orange\",\"brown\"]))==[[' red ', 'green'], [' black', 'blue '], [' orange', 'brown']]", "assert sort_sublists(([\"zilver\",\"gold\"], [\"magnesium\",\"aluminium\"], [\"steel\", \"bronze\"]))==[['gold', 'zilver'],['aluminium', 'magnesium'], ['bronze', 'steel']]", "assert sort_sublists([]) == []", "assert sort_sublists([['apple', 'banana', 'cherry'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'banana']]) == [['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['orange', 'green', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'orange', 'green']]) == [['green', 'green', 'orange'], ['black', 'black', 'white', 'white'], ['green', 'orange', 'orange', 'white']]", "assert sort_sublists([['apple', 'banana', 'cherry'], [], ['cherry', 'apple', 'banana']]) == [['apple', 'banana', 'cherry'], [], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['apple', 'banana', 'banana'], ['pear', 'pear'], ['orange', 'orange', 'orange']]) == [['apple', 'banana', 'banana'], ['pear', 'pear'], ['orange', 'orange', 'orange']]", "assert sort_sublists([['apple', 'banana', 'cherry'], [], ['orange', 'plum', 'peach']]) == [['apple', 'banana', 'cherry'], [], ['orange', 'peach', 'plum']]", "assert sort_sublists([['cat', 'dog', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger'], ['monkey']]) == [['cat', 'dog', 'elephant'], ['giraffe'], ['lion', 'tiger', 'zebra'], ['monkey']]", "assert sort_sublists([['pear', 'banana', 'banana'], ['apple', 'orange'], ['kiwi'], ['grape', 'mango', 'apple']]) == [['banana', 'banana', 'pear'], ['apple', 'orange'], ['kiwi'], ['apple', 'grape', 'mango']]", "assert sort_sublists([['red', 'green', 'blue'], ['yellow', 'orange'], ['purple', 'pink', 'teal', 'brown']]) == [['blue', 'green', 'red'], ['orange', 'yellow'], ['brown', 'pink', 'purple', 'teal']]", "assert sort_sublists([['a', 'b'], ['c', 'd'], ['e', 'f'], ['g', 'h'], ['i', 'j'], ['k', 'l'], ['m', 'n'], ['o', 'p'], ['q', 'r'], ['s', 't'], ['u', 'v'], ['w', 'x'], ['y', 'z']]) == [['a', 'b'], ['c', 'd'], ['e', 'f'], ['g', 'h'], ['i', 'j'], ['k', 'l'], ['m', 'n'], ['o', 'p'], ['q', 'r'], ['s', 't'], ['u', 'v'], ['w', 'x'], ['y', 'z']]", "assert sort_sublists([[], [], []]) == [[], [], []]", "assert sort_sublists([['apple', 'banana', 'cherry'], ['orange', 'plum', 'peach']]) == [['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum']]", "assert sort_sublists([['cherry', 'apple', 'banana'], ['orange', 'peach', 'plum'], ['banana', 'cherry', 'apple']]) == [['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['blue', 'red', 'green'], ['brown', 'purple', 'pink', 'teal'], ['orange', 'yellow']]) == [['blue', 'green', 'red'], ['brown', 'pink', 'purple', 'teal'], ['orange', 'yellow']]", "assert sort_sublists([['orange', 'green'], ['white', 'black'], ['black', 'white', 'orange']]) == [['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]", "assert sort_sublists([['apple', 'zebra', 'cat'], ['dog', 'elephant'], ['giraffe', 'lion', 'banana']]) == [['apple', 'cat', 'zebra'], ['dog', 'elephant'], ['banana', 'giraffe', 'lion']]", "assert sort_sublists([['red', 'green', 'blue'], [], ['orange', 'purple', 'brown']]) == [['blue', 'green', 'red'], [], ['brown', 'orange', 'purple']]", "assert sort_sublists([['cat', 'dog', 'elephant'], ['giraffe', 'tiger', 'zebra'], ['monkey', 'lion', 'tiger'], ['banana']]) == [['cat', 'dog', 'elephant'], ['giraffe', 'tiger', 'zebra'], ['lion', 'monkey', 'tiger'], ['banana']]", "assert sort_sublists([['cherry', 'banana', 'apple'], ['peach', 'orange', 'plum'], ['cherry', 'banana', 'apple']]) == [['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['elephant', 'ant', 'bee'], ['dog', 'camel', 'cat'], ['zebra', 'giraffe', 'lion']]) == [['ant', 'bee', 'elephant'], ['camel', 'cat', 'dog'], ['giraffe', 'lion', 'zebra']]", "assert sort_sublists([['red', 'green', 'blue'], [], ['orange', 'purple', 'brown'], ['yellow', 'pink', 'teal']]) == [['blue', 'green', 'red'], [], ['brown', 'orange', 'purple'], ['pink', 'teal', 'yellow']]", "assert sort_sublists([['red', 'green', 'bpinklue', 'blue'], ['yellow', 'orange']]) == [['blue', 'bpinklue', 'green', 'red'], ['orange', 'yellow']]", "assert sort_sublists([['blue', 'red', 'green'], ['brown', 'purple', 'pink', 'teal'], ['brown', 'purple', 'pink', 'teal']]) == [['blue', 'green', 'red'], ['brown', 'pink', 'purple', 'teal'], ['brown', 'pink', 'purple', 'teal']]", "assert sort_sublists([['pear', 'banana', 'banana'], ['apple', 'orange'], ['kiwi'], ['grape', 'mango', 'apple'], ['grape', 'mango', 'apple']]) == [['banana', 'banana', 'pear'], ['apple', 'orange'], ['kiwi'], ['apple', 'grape', 'mango'], ['apple', 'grape', 'mango']]", "assert sort_sublists([['apple', 'banana', 'cherry'], ['cherry', 'appl', 'banana'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]) == [['apple', 'banana', 'cherry'], ['appl', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['apple', 'orange'], ['kiwi'], ['grape', 'mango', 'apple']]) == [['apple', 'orange'], ['kiwi'], ['apple', 'grape', 'mango']]", "assert sort_sublists([['apple', 'orange'], ['kiwi'], ['grape', 'mango', 'apple'], ['grape', 'mango', 'apple']]) == [['apple', 'orange'], ['kiwi'], ['apple', 'grape', 'mango'], ['apple', 'grape', 'mango']]", "assert sort_sublists([['cat', 'dog', 'elephant'], [], ['zebra', 'lion', 'tiger'], ['monkey']]) == [['cat', 'dog', 'elephant'], [], ['lion', 'tiger', 'zebra'], ['monkey']]", "assert sort_sublists([['orange', 'green', 'green'], ['white', 'orange', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'green']]) == [['green', 'green', 'orange'], ['green', 'orange', 'white'], ['black', 'black', 'white', 'white'], ['green', 'orange', 'white']]", "assert sort_sublists([['red', 'green', 'blue'], ['yellow', 'pink'], [], ['orange', 'purple', 'brown'], ['yellow', 'pink'], ['red', 'green', 'blue']]) == [['blue', 'green', 'red'], ['pink', 'yellow'], [], ['brown', 'orange', 'purple'], ['pink', 'yellow'], ['blue', 'green', 'red']]", "assert sort_sublists([[], ['cat', 'dog', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger'], []]) == [[], ['cat', 'dog', 'elephant'], ['giraffe'], ['lion', 'tiger', 'zebra'], []]", "assert sort_sublists([['banaa', 'cherry', 'banana', 'apple'], ['peach', 'orange', 'plum'], ['cherry', 'banana', 'apple']]) == [['apple', 'banaa', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['cherry', 'apple', 'bsanana', 'banana'], ['apple', 'banana', 'cherry', 'cherry'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'bsanana', 'banana']]) == [['apple', 'banana', 'bsanana', 'cherry'], ['apple', 'banana', 'cherry', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'bsanana', 'cherry']]", "assert sort_sublists([['orange', 'green', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'bsanana', 'orange', 'green'], ['black', 'white', 'black', 'white']]) == [['green', 'green', 'orange'], ['black', 'black', 'white', 'white'], ['bsanana', 'green', 'orange', 'orange', 'white'], ['black', 'black', 'white', 'white']]", "assert sort_sublists([['elephant', 'ant', 'bee'], ['zebra', 'giraffe', 'lion']]) == [['ant', 'bee', 'elephant'], ['giraffe', 'lion', 'zebra']]", "assert sort_sublists([['white', 'black'], ['black', 'white', 'orange']]) == [['black', 'white'], ['black', 'orange', 'white']]", "assert sort_sublists([['cherry', 'banana', 'p'], ['cherry', 'banana', 'p'], ['cherry', 'banana', 'p'], ['peach', 'orange', 'plum'], ['cherry', 'banana', 'apple']]) == [['banana', 'cherry', 'p'], ['banana', 'cherry', 'p'], ['banana', 'cherry', 'p'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['banana', 'cherry'], ['cherry', 'apple'], ['cherry', 'apple', 'banana']]) == [['banana', 'cherry'], ['apple', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['elephant', 'ant', 'bee']]) == [['ant', 'bee', 'elephant']]", "assert sort_sublists([['IODiWvh', 'e', 'f', 'dog', 'r', 'cat', 'a'], ['cat', 'dog', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger']]) == [['IODiWvh', 'a', 'cat', 'dog', 'e', 'f', 'r'], ['cat', 'dog', 'elephant'], ['giraffe'], ['lion', 'tiger', 'zebra']]", "assert sort_sublists([['red', 'green', 'blue'], ['yellow', 'orange']]) == [['blue', 'green', 'red'], ['orange', 'yellow']]", "assert sort_sublists([['apple', 'banana', 'cherry'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'banana'], ['banana', 'cherry', 'apple']]) == [['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['cherry', 'banana', 'p'], ['cherry', 'banana', 'p'], ['cherry', 'banana', 'p'], ['peach', 'orange', 'plum'], ['cherry', 'banana', 'apple', 'apple'], ['cherry', 'banana', 'apple', 'apple']]) == [['banana', 'cherry', 'p'], ['banana', 'cherry', 'p'], ['banana', 'cherry', 'p'], ['orange', 'peach', 'plum'], ['apple', 'apple', 'banana', 'cherry'], ['apple', 'apple', 'banana', 'cherry']]", "assert sort_sublists([['elephant', 'ant', 'bee'], ['elephant', 'ant', 'bee']]) == [['ant', 'bee', 'elephant'], ['ant', 'bee', 'elephant']]", "assert sort_sublists([['cherry', 'apple', 'banana', 'apple'], ['banana', 'cherry'], ['cherry', 'apple'], ['cherry', 'apple', 'banana', 'apple']]) == [['apple', 'apple', 'banana', 'cherry'], ['banana', 'cherry'], ['apple', 'cherry'], ['apple', 'apple', 'banana', 'cherry']]", "assert sort_sublists([[]]) == [[]]", "assert sort_sublists([['cherry', 'banana', 'p'], ['cherry', 'banana', 'p'], ['cherry', 'banana', 'p'], ['cherry', 'banana', 'apple', 'apple'], ['cherry', 'banana', 'apple', 'apple']]) == [['banana', 'cherry', 'p'], ['banana', 'cherry', 'p'], ['banana', 'cherry', 'p'], ['apple', 'apple', 'banana', 'cherry'], ['apple', 'apple', 'banana', 'cherry']]", "assert sort_sublists([['cherry', 'apple', 'bsanana', 'banana'], ['apple', 'banana', 'cherry', 'cherry']]) == [['apple', 'banana', 'bsanana', 'cherry'], ['apple', 'banana', 'cherry', 'cherry']]", "assert sort_sublists([['dog', 'elephant', 'elephant'], ['dog', 'elephant', 'elephant'], ['giraffe', 'lion', 'banana']]) == [['dog', 'elephant', 'elephant'], ['dog', 'elephant', 'elephant'], ['banana', 'giraffe', 'lion']]", "assert sort_sublists([['cherry', 'apple', 'banana'], ['orange', 'peach', 'plum'], ['banana', 'cherry', 'apple'], ['banana', 'cherry', 'apple'], ['banana', 'cherry', 'apple'], ['orange', 'peach', 'plum']]) == [['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum']]", "assert sort_sublists([['cherry', 'apple', 'banana', 'apple'], ['cherry', 'apple'], ['cherry', 'apple', 'banana', 'apple']]) == [['apple', 'apple', 'banana', 'cherry'], ['apple', 'cherry'], ['apple', 'apple', 'banana', 'cherry']]", "assert sort_sublists([['apple', 'banana', 'cherry'], ['cherry', 'appl', 'banana', 'banana'], ['apple', 'banana', 'cherry'], ['cherry', 'appl', 'banana', 'banana'], ['apple', 'banana', 'cherry']]) == [['apple', 'banana', 'cherry'], ['appl', 'banana', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['appl', 'banana', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['cherry', 'banana', 'apple'], ['peach', 'orange', 'plum'], ['cherry', 'banana', 'apple'], ['peach', 'orange', 'plum']]) == [['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum']]", "assert sort_sublists([[], ['cat', 'dog', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger'], [], [], [], []]) == [[], ['cat', 'dog', 'elephant'], ['giraffe'], ['lion', 'tiger', 'zebra'], [], [], [], []]", "assert sort_sublists([['orange', 'green', 'green'], ['white', 'orange', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'green'], ['black', 'white', 'black', 'white']]) == [['green', 'green', 'orange'], ['green', 'orange', 'white'], ['black', 'black', 'white', 'white'], ['green', 'orange', 'white'], ['black', 'black', 'white', 'white']]", "assert sort_sublists([['red', 'green'], ['red', 'green'], ['yellow', 'orange']]) == [['green', 'red'], ['green', 'red'], ['orange', 'yellow']]", "assert sort_sublists([['red', 'green', 'blue', 'green'], ['yellow'], ['red', 'green', 'blue', 'green'], ['yellow']]) == [['blue', 'green', 'green', 'red'], ['yellow'], ['blue', 'green', 'green', 'red'], ['yellow']]", "assert sort_sublists([['apple', 'banana', 'cherry'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'banana'], ['cherry', 'apple', 'banana']]) == [['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['black', 'orange', 'green'], ['white', 'black'], ['black', 'orange', 'green'], ['black', 'white', 'orange']]) == [['black', 'green', 'orange'], ['black', 'white'], ['black', 'green', 'orange'], ['black', 'orange', 'white']]", "assert sort_sublists([['cbpinklueherry', 'cherry', 'apple', 'bsanana', 'banana'], ['banana', 'cherry', 'apple'], ['cbpinklueherry', 'cherry', 'apple', 'bsanana', 'banana']]) == [['apple', 'banana', 'bsanana', 'cbpinklueherry', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'bsanana', 'cbpinklueherry', 'cherry']]", "assert sort_sublists([['orange', 'green']]) == [['green', 'orange']]", "assert sort_sublists([['cherry', 'apple', 'bsanana', 'banana'], ['orange', 'peach', 'plum'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'bsanana', 'banana'], ['banana', 'cherry', 'apple'], ['banana', 'cherry', 'apple'], ['orange', 'peach', 'plum']]) == [['apple', 'banana', 'bsanana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'bsanana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum']]", "assert sort_sublists([['apple', 'orange'], ['grape', 'mango', 'apple', 'grape'], ['grape', 'mango', 'apple', 'grape'], ['grape', 'mango', 'apple', 'grape']]) == [['apple', 'orange'], ['apple', 'grape', 'grape', 'mango'], ['apple', 'grape', 'grape', 'mango'], ['apple', 'grape', 'grape', 'mango']]", "assert sort_sublists([['zebra', 'lion', 'tiger', 'zebra'], ['cat', 'dog', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger', 'zebra'], ['monkey']]) == [['lion', 'tiger', 'zebra', 'zebra'], ['cat', 'dog', 'elephant'], ['giraffe'], ['lion', 'tiger', 'zebra', 'zebra'], ['monkey']]", "assert sort_sublists([['cherry', 'banana', 'apple'], ['peach', 'orage', 'plum'], ['peach', 'orage', 'plum'], ['cherry', 'banana', 'apple']]) == [['apple', 'banana', 'cherry'], ['orage', 'peach', 'plum'], ['orage', 'peach', 'plum'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['red', 'green'], ['red', 'green'], ['yellow', 'orange'], ['red', 'green']]) == [['green', 'red'], ['green', 'red'], ['orange', 'yellow'], ['green', 'red']]", "assert sort_sublists([['red', 'green', 'blue', 'green'], ['yellow', 'yellow'], ['red', 'green', 'blue', 'green'], ['yellow', 'yellow'], ['yellow', 'yellow']]) == [['blue', 'green', 'green', 'red'], ['yellow', 'yellow'], ['blue', 'green', 'green', 'red'], ['yellow', 'yellow'], ['yellow', 'yellow']]", "assert sort_sublists([['ngeant', 'nge']]) == [['nge', 'ngeant']]", "assert sort_sublists([['red', 'green', 'blue'], ['yellow', 'orange'], ['purple', 'pink', 'teal', 'brown'], ['red', 'green', 'blue']]) == [['blue', 'green', 'red'], ['orange', 'yellow'], ['brown', 'pink', 'purple', 'teal'], ['blue', 'green', 'red']]", "assert sort_sublists([['apple', 'banana', 'cherry'], ['banana', 'cherry', 'apple'], ['cherry', 'apple'], ['cherry', 'apple'], ['cherry', 'apple']]) == [['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'cherry'], ['apple', 'cherry'], ['apple', 'cherry']]", "assert sort_sublists([['IODiWvh', 'e', 'f', 'dog', 'r', 'cat', 'a'], ['cat', 'dog', 'helephant', 'elephant'], ['cat', 'dog', 'helephant', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger']]) == [['IODiWvh', 'a', 'cat', 'dog', 'e', 'f', 'r'], ['cat', 'dog', 'elephant', 'helephant'], ['cat', 'dog', 'elephant', 'helephant'], ['giraffe'], ['lion', 'tiger', 'zebra']]", "assert sort_sublists([['red', 'green', 'blue', 'red'], ['yellow', 'orange']]) == [['blue', 'green', 'red', 'red'], ['orange', 'yellow']]", "assert sort_sublists([['IODiWvh', 'e', 'f', 'dog', 'r', 'cat', 'a', 'e'], ['cat', 'dog', 'elephant'], ['IODiWvh', 'e', 'f', 'dog', 'r', 'cat', 'a', 'e'], [], [], ['zebra', 'lion', 'tiger']]) == [['IODiWvh', 'a', 'cat', 'dog', 'e', 'e', 'f', 'r'], ['cat', 'dog', 'elephant'], ['IODiWvh', 'a', 'cat', 'dog', 'e', 'e', 'f', 'r'], [], [], ['lion', 'tiger', 'zebra']]", "assert sort_sublists([[], ['cat', 'dog', 'elephant'], ['zebra', 'lion'], ['giraffe'], ['zebra', 'lion'], []]) == [[], ['cat', 'dog', 'elephant'], ['lion', 'zebra'], ['giraffe'], ['lion', 'zebra'], []]", "assert sort_sublists([['banana', 'cherry', 'apple'], ['cherry', 'apple', 'banana'], ['cherry', 'apple', 'banana']]) == [['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']]", "assert sort_sublists([['apple', 'green'], ['apple', 'green'], ['apple', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'orange', 'green'], ['white', 'orange', 'orange', 'green']]) == [['apple', 'green'], ['apple', 'green'], ['apple', 'green'], ['black', 'black', 'white', 'white'], ['green', 'orange', 'orange', 'white'], ['green', 'orange', 'orange', 'white']]", "assert sort_sublists([['cat', 'dog', 'elephant'], [], ['zebra', 'lion', 'tiger'], ['monkey'], []]) == [['cat', 'dog', 'elephant'], [], ['lion', 'tiger', 'zebra'], ['monkey'], []]", "assert sort_sublists([['apple', 'banana', 'banana'], ['ant', 'pear', 'pear', 'pear'], ['ant', 'pear', 'pear', 'pear'], ['orange', 'orange', 'orange', 'orange'], ['orange', 'orange', 'orange', 'orange']]) == [['apple', 'banana', 'banana'], ['ant', 'pear', 'pear', 'pear'], ['ant', 'pear', 'pear', 'pear'], ['orange', 'orange', 'orange', 'orange'], ['orange', 'orange', 'orange', 'orange']]", "assert sort_sublists([['cherry', 'apple', 'banana', 'apple'], ['banana', 'cherry', 'banana'], ['banana', 'cherry', 'banana'], ['cherry', 'apple'], ['cherry', 'apple', 'banana', 'apple']]) == [['apple', 'apple', 'banana', 'cherry'], ['banana', 'banana', 'cherry'], ['banana', 'banana', 'cherry'], ['apple', 'cherry'], ['apple', 'apple', 'banana', 'cherry']]", "assert sort_sublists([['cat', 'dog', 'elephant'], ['giraffe', 'tiger', 'zebra'], ['monkey', 'lion', 'tiger']]) == [['cat', 'dog', 'elephant'], ['giraffe', 'tiger', 'zebra'], ['lion', 'monkey', 'tiger']]", "assert sort_sublists([['cherry', 'apple', 'apple'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple']]) == [['apple', 'apple', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry']]", "assert sort_sublists([[], ['orange', 'purple', 'brown'], ['yellow', 'teai', 'pink', 'teal']]) == [[], ['brown', 'orange', 'purple'], ['pink', 'teai', 'teal', 'yellow']]", "assert sort_sublists([['appletiger', 'banana', 'cherry', 'cherry'], ['cherry', 'apple', 'bsanana', 'banana'], ['appletiger', 'banana', 'cherry', 'cherry'], ['banana', 'cherry', 'apple'], ['cherry', 'apple', 'bsanana', 'banana']]) == [['appletiger', 'banana', 'cherry', 'cherry'], ['apple', 'banana', 'bsanana', 'cherry'], ['appletiger', 'banana', 'cherry', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'bsanana', 'cherry']]", "assert sort_sublists([['apple', 'banana', 'mango'], ['apple', 'banana', 'mango'], ['cherry', 'appl', 'banana'], ['apple', 'banana', 'mango'], ['apple', 'banana', 'mango']]) == [['apple', 'banana', 'mango'], ['apple', 'banana', 'mango'], ['appl', 'banana', 'cherry'], ['apple', 'banana', 'mango'], ['apple', 'banana', 'mango']]", "assert sort_sublists([['orange', 'orabluenge', 'e'], ['apple', 'banana', 'banana'], ['orange', 'orabluenge', 'e'], ['pear', 'pear'], ['orange', 'orabluenge', 'e'], ['apple', 'banana', 'banana']]) == [['e', 'orabluenge', 'orange'], ['apple', 'banana', 'banana'], ['e', 'orabluenge', 'orange'], ['pear', 'pear'], ['e', 'orabluenge', 'orange'], ['apple', 'banana', 'banana']]", "assert sort_sublists([['apple', 'banana', 'banana'], ['pear', 'pear'], ['orange', 'orange']]) == [['apple', 'banana', 'banana'], ['pear', 'pear'], ['orange', 'orange']]", "assert sort_sublists([['red', 'green', 'orange', 'blue'], [], ['orange', 'purple', 'brown'], ['yellow', 'pink', 'teal']]) == [['blue', 'green', 'orange', 'red'], [], ['brown', 'orange', 'purple'], ['pink', 'teal', 'yellow']]", "assert sort_sublists([['banana', 'cherry', 'apple'], ['cdherry', 'apple', 'banana'], ['cdherry', 'apple', 'banana']]) == [['apple', 'banana', 'cherry'], ['apple', 'banana', 'cdherry'], ['apple', 'banana', 'cdherry']]", "assert sort_sublists([['black', 'orange', 'green'], ['white', 'black'], ['black', 'orange', 'green'], ['black', 'white', 'orange'], ['black', 'white', 'orange']]) == [['black', 'green', 'orange'], ['black', 'white'], ['black', 'green', 'orange'], ['black', 'orange', 'white'], ['black', 'orange', 'white']]", "assert sort_sublists([['orange', 'green', 'green', 'orange'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'bsanana', 'orange', 'green'], ['black', 'white', 'black', 'white']]) == [['green', 'green', 'orange', 'orange'], ['black', 'black', 'white', 'white'], ['bsanana', 'green', 'orange', 'orange', 'white'], ['black', 'black', 'white', 'white']]", "assert sort_sublists([['apple', 'green'], ['apple', 'green'], ['apple', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'orange', 'green'], ['white', 'orange', 'orange', 'green'], ['apple', 'green'], ['apple', 'green']]) == [['apple', 'green'], ['apple', 'green'], ['apple', 'green'], ['black', 'black', 'white', 'white'], ['green', 'orange', 'orange', 'white'], ['green', 'orange', 'orange', 'white'], ['apple', 'green'], ['apple', 'green']]", "assert sort_sublists([['blue', 'red', 'green'], ['orange', 'yellow', 'orange'], ['brown', 'purple', 'pink', 'teal'], ['orange', 'yellow', 'orange']]) == [['blue', 'green', 'red'], ['orange', 'orange', 'yellow'], ['brown', 'pink', 'purple', 'teal'], ['orange', 'orange', 'yellow']]", "assert sort_sublists([['elephant', 'ant', 'bee'], ['dog', 'camel', 'cat'], ['zebra', 'giraffe', 'lion'], ['dog', 'camel', 'cat']]) == [['ant', 'bee', 'elephant'], ['camel', 'cat', 'dog'], ['giraffe', 'lion', 'zebra'], ['camel', 'cat', 'dog']]", "assert sort_sublists([['cherry', 'apple', 'bsanana', 'banana'], ['orange', 'kiwi', 'plum', 'plum'], ['banana', 'cherry', 'apple', 'cherry'], ['cherry', 'apple', 'bsanana', 'banana'], ['orange', 'kiwi', 'plum', 'plum'], ['banana', 'cherry', 'apple', 'cherry'], ['banana', 'cherry', 'apple', 'cherry'], ['orange', 'kiwi', 'plum', 'plum']]) == [['apple', 'banana', 'bsanana', 'cherry'], ['kiwi', 'orange', 'plum', 'plum'], ['apple', 'banana', 'cherry', 'cherry'], ['apple', 'banana', 'bsanana', 'cherry'], ['kiwi', 'orange', 'plum', 'plum'], ['apple', 'banana', 'cherry', 'cherry'], ['apple', 'banana', 'cherry', 'cherry'], ['kiwi', 'orange', 'plum', 'plum']]", "assert sort_sublists([['banana', 'cherry'], ['cherry', 'apple'], ['cherry', 'apple', 'banana'], ['banana', 'cherry']]) == [['banana', 'cherry'], ['apple', 'cherry'], ['apple', 'banana', 'cherry'], ['banana', 'cherry']]", "assert sort_sublists([['red'], ['red'], ['red'], ['yellow', 'orange'], ['red']]) == [['red'], ['red'], ['red'], ['orange', 'yellow'], ['red']]", "assert sort_sublists([['a', 'b'], ['c', 'd'], ['e', 'f'], ['g', 'h'], ['i', 'j', 'j'], ['k', 'l'], ['m', 'n'], ['o', 'p'], ['q', 'r'], ['s', 't'], ['u', 'v'], ['w', 'x'], ['y', 'z']]) == [['a', 'b'], ['c', 'd'], ['e', 'f'], ['g', 'h'], ['i', 'j', 'j'], ['k', 'l'], ['m', 'n'], ['o', 'p'], ['q', 'r'], ['s', 't'], ['u', 'v'], ['w', 'x'], ['y', 'z']]", "assert sort_sublists([['red', 'green', 'blue', 'green', 'green'], ['red', 'green', 'blue', 'green', 'green'], ['red', 'green', 'blue', 'green', 'green'], ['yellow', 'yellow'], ['yellow', 'yellow'], ['red', 'green', 'blue', 'green', 'green']]) == [['blue', 'green', 'green', 'green', 'red'], ['blue', 'green', 'green', 'green', 'red'], ['blue', 'green', 'green', 'green', 'red'], ['yellow', 'yellow'], ['yellow', 'yellow'], ['blue', 'green', 'green', 'green', 'red']]", "assert sort_sublists([['pear', 'bakna', 'banana'], ['apple', 'orange'], ['kiwi'], ['grape', 'mango', 'apple'], ['grape', 'mango', 'apple']]) == [['bakna', 'banana', 'pear'], ['apple', 'orange'], ['kiwi'], ['apple', 'grape', 'mango'], ['apple', 'grape', 'mango']]", "assert sort_sublists([['pear', 'banana', 'banana'], ['apple', 'orange'], ['kiwi'], ['grape', 'pgrape', 'mango', 'apple']]) == [['banana', 'banana', 'pear'], ['apple', 'orange'], ['kiwi'], ['apple', 'grape', 'mango', 'pgrape']]", "assert sort_sublists([['a', 'orabluenge', 'e'], ['pear', 'pear', 'pear'], ['apple', 'banana', 'banana'], ['a', 'orabluenge', 'e'], ['pear', 'pear', 'pear'], ['a', 'orabluenge', 'e'], ['a', 'orabluenge', 'e'], ['apple', 'banana', 'banana']]) == [['a', 'e', 'orabluenge'], ['pear', 'pear', 'pear'], ['apple', 'banana', 'banana'], ['a', 'e', 'orabluenge'], ['pear', 'pear', 'pear'], ['a', 'e', 'orabluenge'], ['a', 'e', 'orabluenge'], ['apple', 'banana', 'banana']]", "assert sort_sublists([['cherry', 'apple', 'apple'], ['banana', 'chlrry', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple']]) == [['apple', 'apple', 'cherry'], ['apple', 'banana', 'chlrry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry']]", "assert sort_sublists([['cat', 'banana', 'apple'], ['cherry', 'banana', 'apple'], ['peach', 'orange', 'plum'], ['cat', 'banana', 'apple']]) == [['apple', 'banana', 'cat'], ['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cat']]", "assert sort_sublists([['orange', 'yellow', 'orange', 'orange'], ['blue', 'red', 'green'], ['orange', 'yellow', 'orange', 'orange'], ['brown', 'purple', 'pink', 'teal'], ['orange', 'yellow', 'orange', 'orange']]) == [['orange', 'orange', 'orange', 'yellow'], ['blue', 'green', 'red'], ['orange', 'orange', 'orange', 'yellow'], ['brown', 'pink', 'purple', 'teal'], ['orange', 'orange', 'orange', 'yellow']]", "assert sort_sublists([['banana', 'cherry'], ['cherry', 'apple']]) == [['banana', 'cherry'], ['apple', 'cherry']]", "assert sort_sublists([['red', 'green', 'p', 'green'], ['yellow'], ['red', 'green', 'p', 'green'], ['yellow'], ['red', 'green', 'p', 'green']]) == [['green', 'green', 'p', 'red'], ['yellow'], ['green', 'green', 'p', 'red'], ['yellow'], ['green', 'green', 'p', 'red']]", "assert sort_sublists([['cherry', 'apple', 'banana', 'apple'], ['banana', 'cherry', 'banana'], ['banana', 'cherry', 'banana'], ['cherry', 'apple', 'banana', 'apple']]) == [['apple', 'apple', 'banana', 'cherry'], ['banana', 'banana', 'cherry'], ['banana', 'banana', 'cherry'], ['apple', 'apple', 'banana', 'cherry']]", "assert sort_sublists([['pear', 'banana', 'banana'], ['apple', 'orange'], ['kiwi'], ['grape', 'apple'], ['grape', 'apple'], ['grape', 'apple']]) == [['banana', 'banana', 'pear'], ['apple', 'orange'], ['kiwi'], ['apple', 'grape'], ['apple', 'grape'], ['apple', 'grape']]", "assert sort_sublists([['red', 'green', 'orange', 'blue'], [], ['orange', 'purple'], ['orange', 'purple'], ['yellow', 'pink', 'teal']]) == [['blue', 'green', 'orange', 'red'], [], ['orange', 'purple'], ['orange', 'purple'], ['pink', 'teal', 'yellow']]", "assert sort_sublists([['cat', 'dog', 'elephant'], ['IODiWvh', 'e', 'f', 'dog', 'r', 'cat', 'a', 'e'], [], [], ['zebra', 'lion', 'tiger'], ['zebra', 'lion', 'tiger'], ['zebra', 'lion', 'tiger']]) == [['cat', 'dog', 'elephant'], ['IODiWvh', 'a', 'cat', 'dog', 'e', 'e', 'f', 'r'], [], [], ['lion', 'tiger', 'zebra'], ['lion', 'tiger', 'zebra'], ['lion', 'tiger', 'zebra']]", "assert sort_sublists([['cherry', 'apple', 'apple'], ['banana', 'chlrry', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple'], ['cherry', 'apple', 'apple']]) == [['apple', 'apple', 'cherry'], ['apple', 'banana', 'chlrry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry'], ['apple', 'apple', 'cherry']]", "assert sort_sublists([['cherry', 'apple', 'banana'], ['orange', 'peach', 'plum'], ['banana', 'cherry', 'apple'], ['banana', 'cherry', 'apple'], ['orange', 'peach', 'plum']]) == [['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum']]", "assert sort_sublists([['apple', 'banana'], ['orange', 'orabluenge', 'e'], ['apple', 'banana'], ['orange', 'orabluenge', 'e'], ['pear', 'pear'], ['orange', 'orabluenge', 'e'], ['apple', 'banana']]) == [['apple', 'banana'], ['e', 'orabluenge', 'orange'], ['apple', 'banana'], ['e', 'orabluenge', 'orange'], ['pear', 'pear'], ['e', 'orabluenge', 'orange'], ['apple', 'banana']]", "assert sort_sublists([['cherry', 'apple', 'bsanana', 'banana'], ['orange', 'kiwi', 'plum', 'plum'], ['banana', 'cherry', 'apple', 'abanana', 'cherry'], ['cherry', 'apple', 'bsanana', 'banana'], ['orange', 'kiwi', 'plum', 'plum'], ['banana', 'cherry', 'apple', 'abanana', 'cherry'], ['orange', 'kiwi', 'plum', 'plum']]) == [['apple', 'banana', 'bsanana', 'cherry'], ['kiwi', 'orange', 'plum', 'plum'], ['abanana', 'apple', 'banana', 'cherry', 'cherry'], ['apple', 'banana', 'bsanana', 'cherry'], ['kiwi', 'orange', 'plum', 'plum'], ['abanana', 'apple', 'banana', 'cherry', 'cherry'], ['kiwi', 'orange', 'plum', 'plum']]", "assert sort_sublists([['a', 'b'], ['c', 'd'], ['e', 'f'], ['g', 'h'], ['i', 'j', 'j'], ['k', 'l'], ['m', 'n'], ['o', 'p'], ['q', 'r'], ['s', 't'], ['u', 'v'], ['w', 'x']]) == [['a', 'b'], ['c', 'd'], ['e', 'f'], ['g', 'h'], ['i', 'j', 'j'], ['k', 'l'], ['m', 'n'], ['o', 'p'], ['q', 'r'], ['s', 't'], ['u', 'v'], ['w', 'x']]", "assert sort_sublists([['red', 'green', 'blue', 'green', 'green'], ['red', 'green', 'blue', 'green', 'green'], ['red', 'green', 'blue', 'green', 'green'], ['yellow', 'yellow'], ['yellow', 'yellow'], ['red', 'green', 'blue', 'green', 'green'], ['yellow', 'yellow']]) == [['blue', 'green', 'green', 'green', 'red'], ['blue', 'green', 'green', 'green', 'red'], ['blue', 'green', 'green', 'green', 'red'], ['yellow', 'yellow'], ['yellow', 'yellow'], ['blue', 'green', 'green', 'green', 'red'], ['yellow', 'yellow']]", "assert sort_sublists([['cat', 'banana', 'apple'], ['cherry', 'banana', 'apple'], ['peach', 'orange', 'plum', 'plum'], ['peach', 'orange', 'plum', 'plum']]) == [['apple', 'banana', 'cat'], ['apple', 'banana', 'cherry'], ['orange', 'peach', 'plum', 'plum'], ['orange', 'peach', 'plum', 'plum']]", "assert sort_sublists([['IODiWvh', 'e', 'f', 'dog', 'r', 'cat', 'a'], ['cat', 'dog', 'helephant', 'elephant'], ['cat', 'dog', 'helephant', 'elephant'], ['giraffe'], ['zebra', 'lion', 'tiger'], ['cat', 'dog', 'helephant', 'elephant']]) == [['IODiWvh', 'a', 'cat', 'dog', 'e', 'f', 'r'], ['cat', 'dog', 'elephant', 'helephant'], ['cat', 'dog', 'elephant', 'helephant'], ['giraffe'], ['lion', 'tiger', 'zebra'], ['cat', 'dog', 'elephant', 'helephant']]", "assert sort_sublists([['apple', 'orange'], ['grape', 'mango', 'n', 'grape'], ['grape', 'mango', 'n', 'grape'], ['grape', 'mango', 'n', 'grape']]) == [['apple', 'orange'], ['grape', 'grape', 'mango', 'n'], ['grape', 'grape', 'mango', 'n'], ['grape', 'grape', 'mango', 'n']]", "assert sort_sublists([['dog', 'camel', 'cat'], ['zebra', 'giraffe', 'lion']]) == [['camel', 'cat', 'dog'], ['giraffe', 'lion', 'zebra']]", "assert sort_sublists([['apple', 'green'], ['apple', 'green'], ['apple', 'green'], ['black', 'white', 'black', 'white'], ['white', 'orange', 'green'], ['white', 'orange', 'green']]) == [['apple', 'green'], ['apple', 'green'], ['apple', 'green'], ['black', 'black', 'white', 'white'], ['green', 'orange', 'white'], ['green', 'orange', 'white']]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count true booleans in the given list.\nassert count([True,False,True]) == 2\nYour code should pass the test:\nassert count([True,False,True]) == 2", "test_list": [ "assert count([True,False,True]) == 2", "assert count([False,False]) == 0", "assert count([True,True,True]) == 3", "assert count([]) == 0", "assert count([False, False, False, False]) == 0", "assert count([False, True, False, True, True, False, True, False]) == 4", "assert count([False, True, True, True, True, False, True, False]) == 5", "assert count([False, False, False, False, False]) == 0", "assert count([False, True, False, False, False, False]) == 1", "assert count([False, False, False, False, False, False]) == 0", "assert count([False, True, False, False, False, False, False]) == 1", "assert count([False, True, False, False, False, True, True]) == 3", "assert count([False, True, False, False, False, False, False, False]) == 1", "assert count([False, True, False, True, False, False, False]) == 2", "assert count([False, False, False, False, False, False, False]) == 0", "assert count([True, False, False, False, False, False, False]) == 1", "assert count([True, False, False, False, False]) == 1", "assert count([False, True, False, True, False, True, False, False]) == 3", "assert count([False, True, True, False, True, True, False, True, False]) == 5", "assert count([False, False, False, False, False, False, False, False]) == 0", "assert count([True, False, False, False, False, False, False, False]) == 1", "assert count([True, False, True, False, True, False, False, False]) == 3", "assert count([True, False, True, True, True, False, True, False]) == 5", "assert count([False, False, False, True, False, False]) == 1", "assert count([False, True, True, False, False, True, True]) == 4", "assert count([False, False, False, False, False, False, True, False]) == 1", "assert count([True, False, False, False, False, False, False, False, False]) == 1", "assert count([False, False, False]) == 0", "assert count([False, True, False, True, True, True, True, False]) == 5", "assert count([True, False, True, True, False, False, True, True, False, True, True]) == 7", "assert count([False, False, False, False, True, False, True, False]) == 2", "assert count([False, True, False, False]) == 1", "assert count([False, False, False, False, False, False, False, False, False]) == 0", "assert count([True, False, True, True, True, False, False, False, True]) == 5", "assert count([False, True, False, False, True, False, False, True]) == 3", "assert count([False, True, False, False, False, False, False, False, False]) == 1", "assert count([False, True, False, False, True, False, False]) == 2", "assert count([True, False, True, True, True, True, False, False, False, False, True]) == 6", "assert count([True, False, False, False, False, False]) == 1", "assert count([False, False, False, False, False, False, True, False, False]) == 1", "assert count([True, False, False, True, True, False, True, False]) == 4", "assert count([False, False, True, False, True, False, False]) == 2", "assert count([False, False, False, False, False, False, False, False, False, False, False]) == 0", "assert count([True, False, True, False, False, False, False]) == 2", "assert count([True, False, True, False, False]) == 2", "assert count([False, True, True, True, True, False, False]) == 4", "assert count([False, False, False, False, False, False, False, False, False, False]) == 0", "assert count([False, False, True, False, True, False, False, False, False]) == 2", "assert count([False, True, False, False, True, True, True]) == 4", "assert count([False, True, False, True, False, False, False, True, True]) == 4", "assert count([False, False, True, False, True, False, False, False]) == 2", "assert count([False, False, False, True, False, False, False, False, False, False, False, False]) == 1", "assert count([False, True, False, True, True, False, True, True, False, False]) == 5", "assert count([False, True, False, True, True, False, False, False]) == 3", "assert count([False, True, True, False, False, False]) == 2", "assert count([False, True, False, True, True, False, True, False, False, False]) == 4", "assert count([False, True, False, False, True, False, False, False]) == 2", "assert count([False, True, False, True, False, False, False, False]) == 2", "assert count([False, True, True, True, True, False, True, False, False]) == 5", "assert count([False, False, False, False, False, False, False, False, False, False, False, False]) == 0", "assert count([False, False, True, True, True, True, False, True, True, False]) == 6", "assert count([False, True, False, True, False, False, False, False, True, True]) == 4", "assert count([False, True, False, True, False, False, False, False, False]) == 2", "assert count([False, False, False, False, True, False, False, False, False]) == 1", "assert count([False, True, False, False, True, False, False, False, True, True]) == 4", "assert count([False, True, False, False, False, True, True, False, False, True]) == 4", "assert count([False, True, False, True, True, False, True, False, False]) == 4", "assert count([True, False, True, False, False, False, False, False]) == 2", "assert count([True, False, True, False, False, False]) == 2", "assert count([False, False, False, True, True, False]) == 2", "assert count([False, True, True, True, False, False, True, True]) == 5", "assert count([True, False, True, False, True, False, False]) == 3", "assert count([False, True, False, False, True, True, True, False, True]) == 5", "assert count([False, False, False, True, False, False, False, False, False, True, False, False]) == 2", "assert count([False, True, False, False, False]) == 1", "assert count([False, False, False, False, False, True, False]) == 1", "assert count([False, False, False, True, True, True, True, False, True, False]) == 5", "assert count([False, False, False, False, False, True]) == 1", "assert count([True, False, False, True, True, False, True, False, False]) == 4", "assert count([False, True, False, True, False, True, False, False, False]) == 3", "assert count([True, False, True, False, True, True, False, False, False]) == 4", "assert count([False, True, True, False, False, True, True, True]) == 5", "assert count([True, False, True, True, False, True, False]) == 4", "assert count([True, False, False, True, True, True, True, False, False, False, False, True]) == 6", "assert count([False, True, True, False, False, True, True, True, True]) == 6", "assert count([False, True, False, True, True, False, False]) == 3", "assert count([True, False, False, True, False, True, False, False, True, False]) == 4", "assert count([False, True, False, True, False, False, True]) == 3", "assert count([False, True, True, True, True, False, False, False, True]) == 5", "assert count([True, False, True, True, False, False, True, True, False, True, True, False]) == 7", "assert count([False, True, True, True, True, False, True, True, False]) == 6", "assert count([False, True, True, False, True, False, True, False]) == 4", "assert count([True, False, True, True, True, False, False, False, True, True]) == 6", "assert count([True, False, True, True, True, False, False, False, False, True]) == 5", "assert count([True, False, True, True, True, True, False, True, False]) == 6", "assert count([False, True, False, True, False, False, False, False, True, True, False, True]) == 5", "assert count([True, False, True, False, True, True, False, True, False, False]) == 5", "assert count([False, True, True, False, False, True, False, False, False]) == 3", "assert count([True, False, True, True, False, False, True, True, False, False, True, True]) == 7", "assert count([False, False, True, False, True, False, False, True, True]) == 4", "assert count([False, False, True, False, True, False, False, False, False, False]) == 2", "assert count([False, True, False, False, False, False, True]) == 2", "assert count([True, False, True, False, False, True]) == 3", "assert count([False, False, False, False, True, False, False, False, False, False]) == 1", "assert count([True, False, True, True, True, True, False, False, True]) == 6", "assert count([True, False, True, True, False, True, True, True, False]) == 6" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to append the given list to the given tuples.\nassert add_lists([5, 6, 7], (9, 10)) == (9, 10, 5, 6, 7)\nYour code should pass the test:\nassert add_lists([5, 6, 7], (9, 10)) == (9, 10, 5, 6, 7)", "test_list": [ "assert add_lists([5, 6, 7], (9, 10)) == (9, 10, 5, 6, 7)", "assert add_lists([6, 7, 8], (10, 11)) == (10, 11, 6, 7, 8)", "assert add_lists([7, 8, 9], (11, 12)) == (11, 12, 7, 8, 9)", "assert add_lists([], (1, 2, 3)) == (1, 2, 3)", "assert add_lists([1, [2, 3], {'a': 4}], (5, [6, 7], {'b': 8})) == (5, [6, 7], {'b': 8}, 1, [2, 3], {'a': 4})", "assert add_lists([], ()) == ()", "assert add_lists([1, 2, 3], ()) == (1, 2, 3)", "assert add_lists([0.5, [1, 2], {'x': 3}], (4.5, [5, 6], {'y': 7})) == (4.5, [5, 6], {'y': 7}, 0.5, [1, 2], {'x': 3})", "assert add_lists([[1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {'c': {'d': [9, [10, 11]]}}]], ([[12, 13]],)) == ([[12, 13]], [1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([[], [1, 2], {'a': [3, 4]}], (5, [6, 7], {'b': [8, [9]]})) == (5, [6, 7], {'b': [8, [9]]}, [], [1, 2], {'a': [3, 4]})", "assert add_lists([{'x': [1, 2]}, {'y': [{'z': [3]}, 4]}], ([5, 6, [7]], [{'a': 8}])) == ([5, 6, [7]], [{'a': 8}], {'x': [1, 2]}, {'y': [{'z': [3]}, 4]})", "assert add_lists([[[1], 2], {'3': [4]}, [5, 6, 7]], (8, [9, [10]], {'a': 11})) == (8, [9, [10]], {'a': 11}, [[1], 2], {'3': [4]}, [5, 6, 7])", "assert add_lists([[], [], []], ([], [], [])) == ([], [], [], [], [], [])", "assert add_lists([[], [[]], [[], []]], ([[], []], [[]], [[], []])) == ([[], []], [[]], [[], []], [], [[]], [[], []])", "assert add_lists(['hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]}], (7, [8, [9]], {'a': 10, 'b': 11})) == (7, [8, [9]], {'a': 10, 'b': 11}, 'hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]})", "assert add_lists([[[1, 2], [3, 4]], [[5, 6], [7, 8]]], ([[9, 10], [11, 12]], [[13, 14], [15, 16]])) == ([[9, 10], [11, 12]], [[13, 14], [15, 16]], [[1, 2], [3, 4]], [[5, 6], [7, 8]])", "assert add_lists([[1, 2], [3, 4]], ([5, 6], {'a': [7, [8, 9]]})) == ([5, 6], {'a': [7, [8, 9]]}, [1, 2], [3, 4])", "assert add_lists([1, 2, [3, 4, {'a': {'b': [5, 6]}}]], ([7, 8, {'c': {'d': [9, [10, 11]]}}],)) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], 1, 2, [3, 4, {'a': {'b': [5, 6]}}])", "assert add_lists([[[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7]], (8, [9, [10]])) == (8, [9, [10]], [[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7])", "assert add_lists([[1, 2], [4]], ([5, 6], {'a': [7, [8, 9]]})) == ([5, 6], {'a': [7, [8, 9]]}, [1, 2], [4])", "assert add_lists([[], [[]], [[], []]], ([[], [], []], [[]], [[], []])) == ([[], [], []], [[]], [[], []], [], [[]], [[], []])", "assert add_lists([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[5, 6], [7, 8]]], ([[9, 10], [11, 12]], [[13, 14], [15, 16]])) == ([[9, 10], [11, 12]], [[13, 14], [15, 16]], [[1, 2], [3, 4]], [[5, 6], [7, 8]], [[5, 6], [7, 8]])", "assert add_lists([1, 2], ([7, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 1, 2)", "assert add_lists([True, True, True, True, True, True, False], (4.5, 44.32264550231051, 0.5, 0.5, -1.6326583229058826, 4.5, 55.52796338743434)) == (4.5, 44.32264550231051, 0.5, 0.5, -1.6326583229058826, 4.5, 55.52796338743434, True, True, True, True, True, True, False)", "assert add_lists([[], [1, 2], {'a': [3, 4]}], ([6, 7], {'b': [8, [9]]})) == ([6, 7], {'b': [8, [9]]}, [], [1, 2], {'a': [3, 4]})", "assert add_lists([2], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 2)", "assert add_lists([[3, 4]], ([5, 6], {'a': [7, [8, 9]]})) == ([5, 6], {'a': [7, [8, 9]]}, [3, 4])", "assert add_lists([[[1], 2], {'3': [4]}, [5, 6, 7]], (9, [9, [10]], {'a': 11})) == (9, [9, [10]], {'a': 11}, [[1], 2], {'3': [4]}, [5, 6, 7])", "assert add_lists([[1, 2], [4]], ([5, 6], {'a': [7, [8, 9]]}, [5, 6])) == ([5, 6], {'a': [7, [8, 9]]}, [5, 6], [1, 2], [4])", "assert add_lists([[[1], 2], {'3': [4]}], (9, [9, [10]], {'a': 11})) == (9, [9, [10]], {'a': 11}, [[1], 2], {'3': [4]})", "assert add_lists([[1, 2], [3, 4, 4], [3, 4, 4]], ([5, 6], {'a': [7, [8, 9]]})) == ([5, 6], {'a': [7, [8, 9]]}, [1, 2], [3, 4, 4], [3, 4, 4])", "assert add_lists([15], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 15)", "assert add_lists(['hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]}], (7, 7, 7, [8, [9]], {'a': 10, 'b': 11})) == (7, 7, 7, [8, [9]], {'a': 10, 'b': 11}, 'hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]})", "assert add_lists([[], [[]], [[], []]], ([[], [], []], [[]], [[], []], [[]])) == ([[], [], []], [[]], [[], []], [[]], [], [[]], [[], []])", "assert add_lists([[3, 4]], ([5, 6], {'a': [7, [8, 9]]}, [5, 6])) == ([5, 6], {'a': [7, [8, 9]]}, [5, 6], [3, 4])", "assert add_lists([], ({'a': [7, 14, [8, 9]], 'hello': [7, 14, [8, 9]]}, {'a': [7, 14, [8, 9]], 'hello': [7, 14, [8, 9]]})) == ({'a': [7, 14, [8, 9]], 'hello': [7, 14, [8, 9]]}, {'a': [7, 14, [8, 9]], 'hello': [7, 14, [8, 9]]})", "assert add_lists([{'3': [4]}, [5, 6, 7]], (9, [9, [10]], {'a': 11})) == (9, [9, [10]], {'a': 11}, {'3': [4]}, [5, 6, 7])", "assert add_lists([[], [1, 2], {'a': [3, 4]}], (6, [6, 7], {'b': [8, [9]]})) == (6, [6, 7], {'b': [8, [9]]}, [], [1, 2], {'a': [3, 4]})", "assert add_lists([], (1, 2)) == (1, 2)", "assert add_lists([], ([4, 5, 6, 6], [4, 5, 6, 6], {'a': [7, [8, 9]]})) == ([4, 5, 6, 6], [4, 5, 6, 6], {'a': [7, [8, 9]]})", "assert add_lists([[1, 2], [3, 4], [3, 4]], ([5, 6], {'a': [7, [8, 9]]})) == ([5, 6], {'a': [7, [8, 9]]}, [1, 2], [3, 4], [3, 4])", "assert add_lists([[], [], []], ([], [True, True, False, False, True])) == ([], [True, True, False, False, True], [], [], [])", "assert add_lists([True, True, True, True, True, True, False], (4.5, 44.32264550231051, 0.5, 0.4020733226756738, -1.6326583229058826, 4.5, 55.52796338743434, 0.5)) == (4.5, 44.32264550231051, 0.5, 0.4020733226756738, -1.6326583229058826, 4.5, 55.52796338743434, 0.5, True, True, True, True, True, True, False)", "assert add_lists([1, 2, [3, 4, {'a': {'b': [5, 6]}}], 1], ([7, 8, {'c': {'d': [9, [10, 11]]}}],)) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], 1, 2, [3, 4, {'a': {'b': [5, 6]}}], 1)", "assert add_lists([1, 2, 3], (False, True)) == (False, True, 1, 2, 3)", "assert add_lists([1, 2, 3], (False, False, True, True)) == (False, False, True, True, 1, 2, 3)", "assert add_lists([[1, 2], [3, 4, 4], [3, 4, 4], [3, 4, 4]], ([5, 6], {'a': [7, [8, 9]]})) == ([5, 6], {'a': [7, [8, 9]]}, [1, 2], [3, 4, 4], [3, 4, 4], [3, 4, 4])", "assert add_lists([], (False, True, False, False)) == (False, True, False, False)", "assert add_lists([-96.96084131931524, -94.69555233395306, -95.59861164068568, -1.6326583229058826, 92.24778790461318], (1, 2)) == (1, 2, -96.96084131931524, -94.69555233395306, -95.59861164068568, -1.6326583229058826, 92.24778790461318)", "assert add_lists([69, -68, -26, 99, 9, -10, -55, 65, 13, 64], (1, 2)) == (1, 2, 69, -68, -26, 99, 9, -10, -55, 65, 13, 64)", "assert add_lists([True, False, False], (False, True, False, False)) == (False, True, False, False, True, False, False)", "assert add_lists([1, 2], ([7, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 7, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 7, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 1, 2)", "assert add_lists([[], [], [], []], ([], [], [])) == ([], [], [], [], [], [], [])", "assert add_lists([['c', 'Tbzkr'], [], [], []], ([], [], [])) == ([], [], [], ['c', 'Tbzkr'], [], [], [])", "assert add_lists([0, 2, 3], ()) == (0, 2, 3)", "assert add_lists([[1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {'c': {'d': [9, [10, 11]]}}]], ([[12, 1, 13], [12, 1, 13]],)) == ([[12, 1, 13], [12, 1, 13]], [1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([15], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 15)", "assert add_lists(['hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]}], (7, [8, [9]], {'a': 10, 'b': 11}, 7)) == (7, [8, [9]], {'a': 10, 'b': 11}, 7, 'hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]})", "assert add_lists(['hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]}], (7, 7, 7, [8, [9]], {'a': 10, 'b': 11}, {'a': 10, 'b': 11})) == (7, 7, 7, [8, [9]], {'a': 10, 'b': 11}, {'a': 10, 'b': 11}, 'hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]})", "assert add_lists([[], [[], []], [[], []], [[], []]], ([[], []], [[]], [[], []])) == ([[], []], [[]], [[], []], [], [[], []], [[], []], [[], []])", "assert add_lists([[], [[]], [[], []]], ([], [[], [], []], [], [[], []])) == ([], [[], [], []], [], [[], []], [], [[]], [[], []])", "assert add_lists([[1, 2, [3, 4, {'a': {'b': [5, 6]}}]]], ([[12, 13]],)) == ([[12, 13]], [1, 2, [3, 4, {'a': {'b': [5, 6]}}]])", "assert add_lists([[7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}]], ([[12, 13], [12, 13]],)) == ([[12, 13], [12, 13]], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([[7, 8, {'c': {'d': [9, [10, 11]]}}]], ([[12, 1, 13], [12, 1, 13]],)) == ([[12, 1, 13], [12, 1, 13]], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([{'3': [4]}, [5, 6, 7], [5, 6, 7]], (8, [9, [10]], {'a': 11})) == (8, [9, [10]], {'a': 11}, {'3': [4]}, [5, 6, 7], [5, 6, 7])", "assert add_lists([[[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7], [[1], 4, [1]]], (8, [9, [10], 9], [9, [10], 9])) == (8, [9, [10], 9], [9, [10], 9], [[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7], [[1], 4, [1]])", "assert add_lists([[], [[], []], [[], []], []], ([[], []], [], [[], []])) == ([[], []], [], [[], []], [], [[], []], [[], []], [])", "assert add_lists([[[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7], {'3': [4]}], (8, [9, [10]])) == (8, [9, [10]], [[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7], {'3': [4]})", "assert add_lists([[1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {}, {}]], ([[12, 13]], [[12, 13]])) == ([[12, 13]], [[12, 13]], [1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {}, {}])", "assert add_lists([[], [], [[], []]], ([[], [], []], [[]], [[], []])) == ([[], [], []], [[]], [[], []], [], [], [[], []])", "assert add_lists([[7, 9, {}, {}]], ([[12, 13], [12, 13]], [[12, 13], [12, 13]], [[12, 13], [12, 13]])) == ([[12, 13], [12, 13]], [[12, 13], [12, 13]], [[12, 13], [12, 13]], [7, 9, {}, {}])", "assert add_lists(['hello', 'z', 'ZJgH'], ({'a': [7, 14, [8, 9]]}, {'a': [7, 14, [8, 9]]})) == ({'a': [7, 14, [8, 9]]}, {'a': [7, 14, [8, 9]]}, 'hello', 'z', 'ZJgH')", "assert add_lists([1, 2, 7, 3], (False, False, True, True, True)) == (False, False, True, True, True, 1, 2, 7, 3)", "assert add_lists([[], [], [], []], ([], [], [36.685637329178746], [36.685637329178746])) == ([], [], [36.685637329178746], [36.685637329178746], [], [], [], [])", "assert add_lists([1, 2, 2], ([9, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([9, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 1, 2, 2)", "assert add_lists([[], 12, 'pOEmwo', 0.5, ['z', 'T'], 'Iuy', 7], (1, 2, 2)) == (1, 2, 2, [], 12, 'pOEmwo', 0.5, ['z', 'T'], 'Iuy', 7)", "assert add_lists([{'x': [1, 2]}, {'y': [{'z': [3]}, 4]}, {'x': [1, 2]}], ([5, 6, [7]], [{'a': 8}])) == ([5, 6, [7]], [{'a': 8}], {'x': [1, 2]}, {'y': [{'z': [3]}, 4]}, {'x': [1, 2]})", "assert add_lists([{'3': []}, [5, 6, 7], [5, 6, 7]], (8, {'a': 11})) == (8, {'a': 11}, {'3': []}, [5, 6, 7], [5, 6, 7])", "assert add_lists([], (False, True, False, False, False)) == (False, True, False, False, False)", "assert add_lists([0.5, [1, 2], {'x': 3, 'ZJgHx': 4}], (4.5, [5, 6], {'y': 7})) == (4.5, [5, 6], {'y': 7}, 0.5, [1, 2], {'x': 3, 'ZJgHx': 4})", "assert add_lists([[2, 3], {'a': 4}], (5, [6, 7], {'b': 8})) == (5, [6, 7], {'b': 8}, [2, 3], {'a': 4})", "assert add_lists([[], [1, 2], {'a': [3, 4]}], (6, [6, 7], {})) == (6, [6, 7], {}, [], [1, 2], {'a': [3, 4]})", "assert add_lists([15], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], 15)", "assert add_lists([], (-94.69555233395306, -96.96084131931524, -1.6326583229058826, 79.36778956924633, -42.0626870759427, 4.5, 94.66425529755756, -96.96084131931524)) == (-94.69555233395306, -96.96084131931524, -1.6326583229058826, 79.36778956924633, -42.0626870759427, 4.5, 94.66425529755756, -96.96084131931524)", "assert add_lists([[1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {'c': {'d': [9, [10, 11]]}}]], ([[12, 1, 13], [12, 1, 13], [12, 1, 13]], [[12, 1, 13], [12, 1, 13], [12, 1, 13]])) == ([[12, 1, 13], [12, 1, 13], [12, 1, 13]], [[12, 1, 13], [12, 1, 13], [12, 1, 13]], [1, 2, [3, 4, {'a': {'b': [5, 6]}}]], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([1, -55], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], 1, -55)", "assert add_lists([[], [[], []], [[], []], [[], []]], ([[], []], [[]], [[]], [[]])) == ([[], []], [[]], [[]], [[]], [], [[], []], [[], []], [[], []])", "assert add_lists([1, 1, 2, 3], (False, True)) == (False, True, 1, 1, 2, 3)", "assert add_lists(['hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]}], (7, 7, 7, {'a': 10, 'b': 11}, {'a': 10, 'b': 11})) == (7, 7, 7, {'a': 10, 'b': 11}, {'a': 10, 'b': 11}, 'hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]})", "assert add_lists([[7, 9, {}, {}]], ([[12, 13], [12, 13]], [[12, 13], [12, 13]])) == ([[12, 13], [12, 13]], [[12, 13], [12, 13]], [7, 9, {}, {}])", "assert add_lists([-55], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], -55)", "assert add_lists([[-5, 13, 99], [], []], ([], [True, True, False, False, True])) == ([], [True, True, False, False, True], [-5, 13, 99], [], [])", "assert add_lists([[1, 2], [3, 4, 4], [3, 4, 4], [3, 4, 4]], ([5, 6],)) == ([5, 6], [1, 2], [3, 4, 4], [3, 4, 4], [3, 4, 4])", "assert add_lists([[1, 2], [3, 4, 4], [3, 4, 4]], ({'a': [7, [8, 9]]},)) == ({'a': [7, [8, 9]]}, [1, 2], [3, 4, 4], [3, 4, 4])", "assert add_lists([[7, 9, {}, {}]], ([[12, 13], [12, 13]], [[12, 13], [12, 13]], [[12, 13], [12, 13]], [[12, 13], [12, 13]])) == ([[12, 13], [12, 13]], [[12, 13], [12, 13]], [[12, 13], [12, 13]], [[12, 13], [12, 13]], [7, 9, {}, {}])", "assert add_lists([[[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7]], ([9, [10]],)) == ([9, [10]], [[1], 4, [1]], {'3': [4]}, [5, 6, 7], [[1], 4, [1]], [5, 6, 7])", "assert add_lists([], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([True, False, False], (True, True, False, False)) == (True, True, False, False, True, False, False)", "assert add_lists([[1, 2], [3, 4, 4], [3, 4, 4], [3, 4, 4]], ([5, 6], {})) == ([5, 6], {}, [1, 2], [3, 4, 4], [3, 4, 4], [3, 4, 4])", "assert add_lists([[7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}]], ([[12, 13], [12, 13]], [[12, 13], [12, 13]])) == ([[12, 13], [12, 13]], [[12, 13], [12, 13]], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([1, 2, [3, 4, {'a': {'b': [5, 6]}}]], ([7, 8, {'c': {'d': [9], 'ZJgHx': [9]}, 'ZJgH': {'d': [9], 'ZJgHx': [9]}}, {'c': {'d': [9], 'ZJgHx': [9]}, 'ZJgH': {'d': [9], 'ZJgHx': [9]}}], [7, 8, {'c': {'d': [9], 'ZJgHx': [9]}, 'ZJgH': {'d': [9], 'ZJgHx': [9]}}])) == ([7, 8, {'c': {'d': [9], 'ZJgHx': [9]}, 'ZJgH': {'d': [9], 'ZJgHx': [9]}}, {'c': {'d': [9], 'ZJgHx': [9]}, 'ZJgH': {'d': [9], 'ZJgHx': [9]}}], [7, 8, {'c': {'d': [9], 'ZJgHx': [9]}, 'ZJgH': {'d': [9], 'ZJgHx': [9]}}], 1, 2, [3, 4, {'a': {'b': [5, 6]}}])", "assert add_lists([False, False, False, False, True, True, True], (-94.69555233395306, -96.96084131931524, -1.6326583229058826, 79.36778956924633, -42.0626870759427, 4.5, 94.66425529755756, -96.96084131931524)) == (-94.69555233395306, -96.96084131931524, -1.6326583229058826, 79.36778956924633, -42.0626870759427, 4.5, 94.66425529755756, -96.96084131931524, False, False, False, False, True, True, True)", "assert add_lists([[1, 2], [], [1, 2]], ([5, 6], {'a': [7, [8, 9]]}, [5, 6])) == ([5, 6], {'a': [7, [8, 9]]}, [5, 6], [1, 2], [], [1, 2])", "assert add_lists([[], [], [], [], []], ([], [True, True, False, False, True])) == ([], [True, True, False, False, True], [], [], [], [], [])", "assert add_lists([], ({'a': [7, [8, 9]], 'hello': [7, [8, 9]]}, {'a': [7, [8, 9]], 'hello': [7, [8, 9]]})) == ({'a': [7, [8, 9]], 'hello': [7, [8, 9]]}, {'a': [7, [8, 9]], 'hello': [7, [8, 9]]})", "assert add_lists([[], [], [], []], ([], [True, True, False, False, True])) == ([], [True, True, False, False, True], [], [], [], [])", "assert add_lists([1, 2, [3, 4, {'a': {'b': [5, 6]}}, 3], 1], ([7, 8, {'c': {'d': [9, [10, 11]]}}],)) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], 1, 2, [3, 4, {'a': {'b': [5, 6]}}, 3], 1)", "assert add_lists([[7, 9, {}, {}]], ([[12], [12], [12]], [[12], [12], [12]], [[12], [12], [12]], [[12], [12], [12]])) == ([[12], [12], [12]], [[12], [12], [12]], [[12], [12], [12]], [[12], [12], [12]], [7, 9, {}, {}])", "assert add_lists([[3, 4]], ([5], {'a': [7, [8, 9]]}, [5], [5], [5])) == ([5], {'a': [7, [8, 9]]}, [5], [5], [5], [3, 4])", "assert add_lists([[], [1, 2], {'a': [3, 4]}, [1, 2]], (5, [6, 7], {'b': [8, [9]]})) == (5, [6, 7], {'b': [8, [9]]}, [], [1, 2], {'a': [3, 4]}, [1, 2])", "assert add_lists(['hello', 'z', 'ZJgH', 'z', 'hello'], ({'a': [7, 14, [8, 9]]}, {'a': [7, 14, [8, 9]]})) == ({'a': [7, 14, [8, 9]]}, {'a': [7, 14, [8, 9]]}, 'hello', 'z', 'ZJgH', 'z', 'hello')", "assert add_lists([[], [1, 2], {'a': [3, 4]}], (6, [6, 7], {'b': [8, [9]]}, 6)) == (6, [6, 7], {'b': [8, [9]]}, 6, [], [1, 2], {'a': [3, 4]})", "assert add_lists(['hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]}], (7, 7, 7, {'a': 9, 'b': 11}, {'a': 9, 'b': 11})) == (7, 7, 7, {'a': 9, 'b': 11}, {'a': 9, 'b': 11}, 'hello', [1, [2, 3]], {'x': [4, 5, {'y': {'z': 6}}]})", "assert add_lists([[1, 2], [4]], ({'a': [7, [8, 9]]}, [5, 6])) == ({'a': [7, [8, 9]]}, [5, 6], [1, 2], [4])", "assert add_lists([[3, 3, 4]], ([5], {'a': [7, [8, 9]]}, [5], [5], [5])) == ([5], {'a': [7, [8, 9]]}, [5], [5], [5], [3, 3, 4])", "assert add_lists([], ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])) == ([7, 8, {'c': {'d': [9, [10, 11]]}}], [8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}], [7, 8, {'c': {'d': [9, [10, 11]]}}])", "assert add_lists([True, True, True, True, True, False, False], (4.5, 44.32264550231051, 0.5, 0.4020733226756738, -1.6326583229058826, 4.5, 55.52796338743434, 0.5)) == (4.5, 44.32264550231051, 0.5, 0.4020733226756738, -1.6326583229058826, 4.5, 55.52796338743434, 0.5, True, True, True, True, True, False, False)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to merge three lists into a single sorted list.\nassert merge_sorted_list([25, 24, 15, 4, 5, 29, 110],[19, 20, 11, 56, 25, 233, 154],[24, 26, 54, 48])==[4, 5, 11, 15, 19, 20, 24, 24, 25, 25, 26, 29, 48, 54, 56, 110, 154, 233]\nYour code should pass the test:\nassert merge_sorted_list([25, 24, 15, 4, 5, 29, 110],[19, 20, 11, 56, 25, 233, 154],[24, 26, 54, 48])==[4, 5, 11, 15, 19, 20, 24, 24, 25, 25, 26, 29, 48, 54, 56, 110, 154, 233]", "test_list": [ "assert merge_sorted_list([25, 24, 15, 4, 5, 29, 110],[19, 20, 11, 56, 25, 233, 154],[24, 26, 54, 48])==[4, 5, 11, 15, 19, 20, 24, 24, 25, 25, 26, 29, 48, 54, 56, 110, 154, 233]", "assert merge_sorted_list([1, 3, 5, 6, 8, 9], [2, 5, 7, 11], [1, 4, 7, 8, 12])==[1, 1, 2, 3, 4, 5, 5, 6, 7, 7, 8, 8, 9, 11, 12]", "assert merge_sorted_list([18, 14, 10, 9, 8, 7, 9, 3, 2, 4, 1],[25, 35, 22, 85, 14, 65, 75, 25, 58],[12, 74, 9, 50, 61, 41])==[1, 2, 3, 4, 7, 8, 9, 9, 9, 10, 12, 14, 14, 18, 22, 25, 25, 35, 41, 50, 58, 61, 65, 74, 75, 85]", "assert merge_sorted_list([1000, 999, 998, 997, 996], [1001, 1002, 1003, 1004], [1000, 999, 998, 997, 996]) == [996, 996, 997, 997, 998, 998, 999, 999, 1000, 1000, 1001, 1002, 1003, 1004]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12], [], [13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24]", "assert merge_sorted_list([100, 200, 300, 400, 500, 600], [25, 50, 75, 200, 225, 250, 275], [350, 400, 450, 500, 550, 600, 650, 700]) == [25, 50, 75, 100, 200, 200, 225, 250, 275, 300, 350, 400, 400, 450, 500, 500, 550, 600, 600, 650, 700]", "assert merge_sorted_list([5, 10, 15, 20, 25, 30, 35], [1, 2, 3, 4, 5, 6, 7], [50, 45, 40, 35, 30, 25, 20, 15, 10]) == [1, 2, 3, 4, 5, 5, 6, 7, 10, 10, 15, 15, 20, 20, 25, 25, 30, 30, 35, 35, 40, 45, 50]", "assert merge_sorted_list([], [], []) == []", "assert merge_sorted_list([-10, -9, -8, -7, -6, -5], [1000, 2000, 3000], [-100, -200, -300, -400, -500]) == [-500, -400, -300, -200, -100, -10, -9, -8, -7, -6, -5, 1000, 2000, 3000]", "assert merge_sorted_list([1.5, 2.5, 3.5, 4.5, 5.5], [0.5, 1.5, 2.5, 3.5, 4.5], [-5.5, -4.5, -3.5, -2.5, -1.5]) == [-5.5, -4.5, -3.5, -2.5, -1.5, 0.5, 1.5, 1.5, 2.5, 2.5, 3.5, 3.5, 4.5, 4.5, 5.5]", "assert merge_sorted_list([10, 20, 30, 40, 50], [5, 15, 25, 35, 45], [1, 2, 3, 4, 5]) == [1, 2, 3, 4, 5, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50]", "assert merge_sorted_list([100, 200, 300, 400, 500], [-100, -200, -300, -400, -500], [0.1, 0.2, 0.3, 0.4, 0.5]) == [-500, -400, -300, -200, -100, 0.1, 0.2, 0.3, 0.4, 0.5, 100, 200, 300, 400, 500]", "assert merge_sorted_list([1, 1, 1, 1, 1, 1, 1], [2, 2, 2, 2, 2, 2, 2], [3, 3, 3, 3, 3, 3, 3]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3, 3]", "assert merge_sorted_list([1, 2, 3, 4, 5], [5, 4, 3, 2, 1], [1, 3, 5, 2, 4]) == [1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5]", "assert merge_sorted_list([10, 20, 30, 40, 50, 60, 70], [5, 15, 25, 35, 45, 55, 65, 75], [1, 2, 3, 4, 5, 6, 7, 8, 9]) == [1, 2, 3, 4, 5, 5, 6, 7, 8, 9, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75]", "assert merge_sorted_list([10, 15, 20, 25, 30], [5, 10, 15, 20, 25], [1, 2, 3, 4, 5]) == [1, 2, 3, 4, 5, 5, 10, 10, 15, 15, 20, 20, 25, 25, 30]", "assert merge_sorted_list([100, 200], [50, 150, 250], [80, 160, 240]) == [50, 80, 100, 150, 160, 200, 240, 250]", "assert merge_sorted_list([10, 20, 30, 40, 50], [15, 25, 35, 45, 55], [10, 20, 30, 40, 50]) == [10, 10, 15, 20, 20, 25, 30, 30, 35, 40, 40, 45, 50, 50, 55]", "assert merge_sorted_list([1, 3, 5, 7, 9], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9]) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 9, 10]", "assert merge_sorted_list([100, 200, 300, 400, 500], [250, 350, 450, 550, 650], [100, 200, 300, 400, 500]) == [100, 100, 200, 200, 250, 300, 300, 350, 400, 400, 450, 500, 500, 550, 650]", "assert merge_sorted_list([1, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50], [2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50], [3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49]) == [1, 2, 3, 4, 5, 5, 6, 7, 8, 9, 10, 10, 11, 12, 13, 14, 15, 15, 16, 17, 18, 19, 20, 20, 21, 22, 23, 24, 25, 25, 26, 27, 28, 29, 30, 30, 31, 32, 33, 34, 35, 35, 36, 37, 38, 39, 40, 40, 41, 42, 43, 44, 45, 45, 46, 47, 48, 49, 50, 50]", "assert merge_sorted_list([12, 80, 160, 240], [650, 200], [12, 80, 160, 240]) == [12, 12, 80, 80, 160, 160, 200, 240, 240, 650]", "assert merge_sorted_list([650, 38], [650, 38], [12, 80, 160, 240]) == [12, 38, 38, 80, 160, 240, 650, 650]", "assert merge_sorted_list([10, 20, 30, 50, 60, 70], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]) == [1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 20, 30, 50, 60, 70]", "assert merge_sorted_list([1, 1, 1, 1, 1, 1, 1], [2, 2, 2, 2, 2, 2, 2], [3, 3, 3, 3, 3, 2, 3]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3]", "assert merge_sorted_list([1, 2, 3, 4, 5], [1, 3, 5, 3, 2, 4], [1, 3, 5, 3, 2, 4]) == [1, 1, 1, 2, 2, 2, 3, 3, 3, 3, 3, 4, 4, 4, 5, 5, 5]", "assert merge_sorted_list([999, 998, 997, 996], [1001, 1002, 1003, 1004], [1000, 999, 998, 997, 996]) == [996, 996, 997, 997, 998, 998, 999, 999, 1000, 1001, 1002, 1003, 1004]", "assert merge_sorted_list([10, 20, 30, 40, 50], [15, 25, 35, 45, 55, 25], [15, 25, 35, 45, 55, 25]) == [10, 15, 15, 20, 25, 25, 25, 25, 30, 35, 35, 40, 45, 45, 50, 55, 55]", "assert merge_sorted_list([11, 239, 80, 41, 240], [650, 38, 650], [11, 239, 80, 41, 240]) == [11, 11, 38, 41, 41, 80, 80, 239, 239, 240, 240, 650, 650]", "assert merge_sorted_list([1, 2, 3, 60, 4, 5], [5, 4, 3, 2, 24], [1, 2, 3, 60, 4, 5]) == [1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 24, 60, 60]", "assert merge_sorted_list([650, 37], [650, 37], [12, 80, 160, 240]) == [12, 37, 37, 80, 160, 240, 650, 650]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]) == [1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9]", "assert merge_sorted_list([100, 300, 400, 500, 600], [25, 50, 75, 200, 225, 250, 275], [350, 400, 450, 500, 550, 600, 650, 700]) == [25, 50, 75, 100, 200, 225, 250, 275, 300, 350, 400, 400, 450, 500, 500, 550, 600, 600, 650, 700]", "assert merge_sorted_list([], [], [50, 150, 250]) == [50, 150, 250]", "assert merge_sorted_list([12, 80, 160, 240], [200], [12, 80, 160, 240]) == [12, 12, 80, 80, 160, 160, 200, 240, 240]", "assert merge_sorted_list([1, 3, 5, 7, 9], [2, 6, 8, 10], [1, 3, 5, 7, 9]) == [1, 1, 2, 3, 3, 5, 5, 6, 7, 7, 8, 9, 9, 10]", "assert merge_sorted_list([1, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50], [2, 4, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50], [3, 5, 7, 9, 11, 13, 15, 17, 19, 15, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49]) == [1, 2, 3, 4, 5, 5, 7, 8, 9, 10, 10, 11, 12, 13, 14, 15, 15, 15, 16, 17, 18, 19, 20, 20, 21, 22, 23, 24, 25, 25, 26, 27, 28, 29, 30, 30, 31, 32, 33, 34, 35, 35, 36, 37, 38, 39, 40, 40, 41, 42, 43, 44, 45, 45, 46, 47, 48, 49, 50, 50]", "assert merge_sorted_list([10, 15, 20, 25, 30], [5, 10, 15, 20], [1, 1, 3, 4, 5]) == [1, 1, 3, 4, 5, 5, 10, 10, 15, 15, 20, 20, 25, 30]", "assert merge_sorted_list([2, 3, 3, 3, 3, 2, 2, 4, 3], [1, 1, 1, 1, 1, 1, 1], [2, 3, 3, 3, 3, 2, 2, 4, 3]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 4, 4]", "assert merge_sorted_list([12, 81, 160, 240], [12, 81, 160, 240], [201, 200]) == [12, 12, 81, 81, 160, 160, 200, 201, 240, 240]", "assert merge_sorted_list([12, 81, 160, 240], [201], [201]) == [12, 81, 160, 201, 201, 240]", "assert merge_sorted_list([1, 2, 3, 60, 4, 5], [5, 4, 3, 3, 2, 24], [1, 2, 3, 60, 4, 5]) == [1, 1, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 5, 5, 5, 24, 60, 60]", "assert merge_sorted_list([1, 3, 5, 7, 9], [1, 3, 5, 9], [1, 3, 5, 9]) == [1, 1, 1, 3, 3, 3, 5, 5, 5, 7, 9, 9, 9]", "assert merge_sorted_list([650, 37], [12, 80, 160, 240], [650, 37]) == [12, 37, 37, 80, 160, 240, 650, 650]", "assert merge_sorted_list([-10, -9, -8, -7, -6, -5], [-100, -200, -300, -400, -500], [-100, -200, -300, -400, -500]) == [-500, -500, -400, -400, -300, -300, -200, -200, -100, -100, -10, -9, -8, -7, -6, -5]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 7, 9, 10, 3, 11, 12], [], [13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24]) == [1, 2, 3, 3, 4, 5, 6, 7, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24]", "assert merge_sorted_list([11, 239, 81, 41, 240], [650, 38, 650], [650, 38, 650]) == [11, 38, 38, 41, 81, 239, 240, 650, 650, 650, 650]", "assert merge_sorted_list([23, 650], [23, 650], [12, 80, 160, 39]) == [12, 23, 23, 39, 80, 160, 650, 650]", "assert merge_sorted_list([5, 10, 15, 20, 25, 30, 35], [1, 2, 3, 4, 1, 6, 7], [50, 45, 40, 35, 30, 25, 20, 15, 10]) == [1, 1, 2, 3, 4, 5, 6, 7, 10, 10, 15, 15, 20, 20, 25, 25, 30, 30, 35, 35, 40, 45, 50]", "assert merge_sorted_list([650, 36], [650, 36], [12, 80, 160, 240]) == [12, 36, 36, 80, 160, 240, 650, 650]", "assert merge_sorted_list([12, 3, 160, 240], [12, 3, 160, 240], [12, 3, 160, 240]) == [3, 3, 3, 12, 12, 12, 160, 160, 160, 240, 240, 240]", "assert merge_sorted_list([10, 20, 30, 40, 50, 60, 70], [10, 20, 30, 40, 50, 60, 70], [10, 20, 30, 40, 50, 60, 70]) == [10, 10, 10, 20, 20, 20, 30, 30, 30, 40, 40, 40, 50, 50, 50, 60, 60, 60, 70, 70, 70]", "assert merge_sorted_list([100, 200], [50, 250], [50, 250]) == [50, 50, 100, 200, 250, 250]", "assert merge_sorted_list([1000, 999, 998, 997, 996], [1000, 999, 998, 997, 996], [1001, 1002, 1003, 1004]) == [996, 996, 997, 997, 998, 998, 999, 999, 1000, 1000, 1001, 1002, 1003, 1004]", "assert merge_sorted_list([1, 1, 1, 1, 1, 1, 1], [1, 1, 1, 1, 1, 1, 1], [3, 3, 3, 3, 3, 2, 3]) == [1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 3, 3, 3, 3, 3, 3]", "assert merge_sorted_list([81, 160, 240], [81, 160, 240], [81, 160, 240]) == [81, 81, 81, 160, 160, 160, 240, 240, 240]", "assert merge_sorted_list([1, 1, 1, 1, 1, 1, 1], [2, 2, 2, 2, 2, 2, 2], [3, 3, 3, 4, 2, 3]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 4]", "assert merge_sorted_list([200, 200], [200, 200], [50, 250, 50]) == [50, 50, 200, 200, 200, 200, 250]", "assert merge_sorted_list([1, 1, -6, 1, 1, 1, 1, 1], [1, 1, -6, 1, 1, 1, 1, 1], [3, 3, 3, 3, 3, 2, 3]) == [-6, -6, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 3, 3, 3, 3, 3, 3]", "assert merge_sorted_list([1, 3, 5, 7, 27, 9], [1, 3, 5, 7, 27, 9], [3, 5, 9]) == [1, 1, 3, 3, 3, 5, 5, 5, 7, 7, 9, 9, 9, 27, 27]", "assert merge_sorted_list([650, 38, 38], [650, 38, 38], [650, 38, 38]) == [38, 38, 38, 38, 38, 38, 650, 650, 650]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 7, 8, 9, 6, 7], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6, 7], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6, 7]) == [1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6, 6, 6, 6, 6, 7, 7, 7, 7, 7, 7, 8, 8, 8, 9, 9, 9]", "assert merge_sorted_list([12, 160, 240], [12, 160, 240], [201, 200]) == [12, 12, 160, 160, 200, 201, 240, 240]", "assert merge_sorted_list([11, 239, 80, 41, 240], [650, 38, 649, 650], [650, 38, 649, 650]) == [11, 38, 38, 41, 80, 239, 240, 649, 649, 650, 650, 650, 650]", "assert merge_sorted_list([1, 18, 3, 5, 9], [1, 18, 3, 5, 9], [1, 18, 3, 5, 9]) == [1, 1, 1, 3, 3, 3, 5, 5, 5, 9, 9, 9, 18, 18, 18]", "assert merge_sorted_list([50, 150], [50, 150], [80, 160, 240]) == [50, 50, 80, 150, 150, 160, 240]", "assert merge_sorted_list([651, 23, 650, 23], [651, 23, 650, 23], [12, 80, 160, 39]) == [12, 23, 23, 23, 23, 39, 80, 160, 650, 650, 651, 651]", "assert merge_sorted_list([1, 1, 1, 1, 1, 1, 1], [2, 2, 2, 3, 2, 2, 2], [3, 3, 3, 3, 3, 3, 3]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3]", "assert merge_sorted_list([10, 20, 30, 50, 60, 70], [1, 2, 3, 4, 5, 6, 8, 9], [1, 2, 3, 4, 5, 6, 8, 9]) == [1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 8, 8, 9, 9, 10, 20, 30, 50, 60, 70]", "assert merge_sorted_list([650, 38, 37], [650, 38, 37], [650, 38, 37]) == [37, 37, 37, 38, 38, 38, 650, 650, 650]", "assert merge_sorted_list([200], [12, 80, 240], [12, 80, 240]) == [12, 12, 80, 80, 200, 240, 240]", "assert merge_sorted_list([650, 38, 650, 649, 650, 650], [650, 38, 650, 649, 650, 650], [650, 38, 650, 649, 650, 650]) == [38, 38, 38, 649, 649, 649, 650, 650, 650, 650, 650, 650, 650, 650, 650, 650, 650, 650]", "assert merge_sorted_list([0.5, 1.5, 2.5, 3.5, 4.5], [-5.5, -4.5, -3.5, -1.5], [0.5, 1.5, 2.5, 3.5, 4.5]) == [-5.5, -4.5, -3.5, -1.5, 0.5, 0.5, 1.5, 1.5, 2.5, 2.5, 3.5, 3.5, 4.5, 4.5]", "assert merge_sorted_list([200], [12, 80, 160, 240], [12, 80, 160, 240]) == [12, 12, 80, 80, 160, 160, 200, 240, 240]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 8, 9, 6, 7, 6], [1, 2, 3, 4, 5, 6, 8, 9, 6, 7, 6], [1, 2, 3, 4, 5, 6, 8, 9, 6, 7, 6]) == [1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6, 6, 6, 6, 6, 6, 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9]", "assert merge_sorted_list([1, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50], [2, 4, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50], [3, 5, 7, 9, 11, 13, 15, 19, 15, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49]) == [1, 2, 3, 4, 5, 5, 7, 8, 9, 10, 10, 11, 12, 13, 14, 15, 15, 15, 16, 18, 19, 20, 20, 21, 22, 23, 24, 25, 25, 26, 27, 28, 29, 30, 30, 31, 32, 33, 34, 35, 35, 36, 37, 38, 39, 40, 40, 41, 42, 43, 44, 45, 45, 46, 47, 48, 49, 50, 50]", "assert merge_sorted_list([650, 37], [650, 37], [650, 37]) == [37, 37, 37, 650, 650, 650]", "assert merge_sorted_list([50, 13, 150, 13], [50, 13, 150, 13], [50, 13, 150, 13]) == [13, 13, 13, 13, 13, 13, 50, 50, 50, 150, 150, 150]", "assert merge_sorted_list([12, 81, 160, 240, 81], [], [12, 81, 160, 240, 81]) == [12, 12, 81, 81, 81, 81, 160, 160, 240, 240]", "assert merge_sorted_list([1, 1, -6, 1, 1, 1, 1, 1], [4, 3, 3, 3, 3, 2, 3], [4, 3, 3, 3, 3, 2, 3]) == [-6, 1, 1, 1, 1, 1, 1, 1, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 4, 4]", "assert merge_sorted_list([160, 240], [160, 240], [-100, 200]) == [-100, 160, 160, 200, 240, 240]", "assert merge_sorted_list([1, 1, 1, 1, 1, 1, 1, 1], [2, 2, 2, 3, 2, 2, 2], [3, 3, 3, 3, 3, 3, 3]) == [1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3]", "assert merge_sorted_list([10, 20, 30, 400, 40, 50], [5, 15, 25, 35, 45], [1, 2, 3, 4, 5]) == [1, 2, 3, 4, 5, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 400]", "assert merge_sorted_list([1, 2, 100, 3, 4, 5, 6, 7, 9, 10, 3, 11, 12], [], [13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24]) == [1, 2, 3, 3, 4, 5, 6, 7, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 100]", "assert merge_sorted_list([650, 38, 650, 650, 650], [650, 38, 650, 650, 650], [650, 38, 650, 650, 650]) == [38, 38, 38, 650, 650, 650, 650, 650, 650, 650, 650, 650, 650, 650, 650]", "assert merge_sorted_list([1, 2, 3, 4, 1, 6, 29], [50, 45, 40, 35, 30, 25, 20, 15, 10], [1, 2, 3, 4, 1, 6, 29]) == [1, 1, 1, 1, 2, 2, 3, 3, 4, 4, 6, 6, 10, 15, 20, 25, 29, 29, 30, 35, 40, 45, 50]", "assert merge_sorted_list([12, 160, 240, 81], [], [12, 160, 240, 81]) == [12, 12, 81, 81, 160, 160, 240, 240]", "assert merge_sorted_list([651, 23], [651, 23], [651, 23]) == [23, 23, 23, 651, 651, 651]", "assert merge_sorted_list([650, 38, 650], [650, 38, 650], [11, 239, 81, 41, 240]) == [11, 38, 38, 41, 81, 239, 240, 650, 650, 650, 650]", "assert merge_sorted_list([10, 20, 30, 40, 50, 10], [15, 25, 35, 45, 55, 25, 15, 25], [15, 25, 35, 45, 55, 25, 15, 25]) == [10, 10, 15, 15, 15, 15, 20, 25, 25, 25, 25, 25, 25, 30, 35, 35, 40, 45, 45, 50, 55, 55]", "assert merge_sorted_list([1, 3, 4, 5], [10, 20, 30, 40], [1, 3, 4, 5]) == [1, 1, 3, 3, 4, 4, 5, 5, 10, 20, 30, 40]", "assert merge_sorted_list([1, 2, 3, 5, 6, 8, 9, 6, 7, 6], [1, 2, 3, 5, 6, 8, 9, 6, 7, 6], [1, 2, 3, 5, 6, 8, 9, 6, 7, 6]) == [1, 1, 1, 2, 2, 2, 3, 3, 3, 5, 5, 5, 6, 6, 6, 6, 6, 6, 6, 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9]", "assert merge_sorted_list([2, 2, 2, 2, 2, 2, 2], [1, 1, 1, 1, 1, 1, 1], [2, 2, 2, 2, 2, 2, 2]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2]", "assert merge_sorted_list([1, 1, -6, 1, 1, 1, 1, 1], [4, 3, 3, 3, 2, 3], [4, 3, 3, 3, 2, 3]) == [-6, 1, 1, 1, 1, 1, 1, 1, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3, 4, 4]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 7, 8, 9, 2], [1, 2, 3, 4, 5, 6, 7, 8, 9, 2], [1, 2, 3, 4, 5, 6, 7, 8, 9, 2]) == [1, 1, 1, 2, 2, 2, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9]", "assert merge_sorted_list([1, 3, 5, 9], [1, 3, 5, 9], [1, 3, 5, 9]) == [1, 1, 1, 3, 3, 3, 5, 5, 5, 9, 9, 9]", "assert merge_sorted_list([1, 2, 3, 4, 5, 6, 7, 9, 3, 11, 12], [], [13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 13]) == [1, 2, 3, 3, 4, 5, 6, 7, 9, 11, 12, 13, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24]", "assert merge_sorted_list([1, 3, 5, 7, 9], [2, 6, 8, 10], [1, 60, 5, 7, 9]) == [1, 1, 2, 3, 5, 5, 6, 7, 7, 8, 9, 9, 10, 60]", "assert merge_sorted_list([10, 20, 30, 400, 40, 50, 10], [10, 20, 30, 400, 40, 50, 10], [1, 2, 3, 4, 5]) == [1, 2, 3, 4, 5, 10, 10, 10, 10, 20, 20, 30, 30, 40, 40, 50, 50, 400, 400]", "assert merge_sorted_list([1, 2, 3, 4, 1, 6, -9], [1, 2, 3, 4, 1, 6, -9], [50, 45, 40, 35, 30, 25, 20, 15, 10]) == [-9, -9, 1, 1, 1, 1, 2, 2, 3, 3, 4, 4, 6, 6, 10, 15, 20, 25, 30, 35, 40, 45, 50]", "assert merge_sorted_list([-100, -200, -300, -400, -500], [-100, -200, -300, -400, -500], [-100, -200, -300, -400, -500]) == [-500, -500, -500, -400, -400, -400, -300, -300, -300, -200, -200, -200, -100, -100, -100]", "assert merge_sorted_list([10, 20, 30, 40, 50], [10, 20, 30, 40], [10, 20, 30, 40]) == [10, 10, 10, 20, 20, 20, 30, 30, 30, 40, 40, 40, 50]", "assert merge_sorted_list([0.5, 1.5, 2.5, 3.5, 4.5], [-4.5, -3.5, -1.5], [0.5, 1.5, 2.5, 3.5, 4.5]) == [-4.5, -3.5, -1.5, 0.5, 0.5, 1.5, 1.5, 2.5, 2.5, 3.5, 3.5, 4.5, 4.5]", "assert merge_sorted_list([12, 27, 240, 15, 81], [12, 27, 240, 15, 81], [12, 27, 240, 15, 81]) == [12, 12, 12, 15, 15, 15, 27, 27, 27, 81, 81, 81, 240, 240, 240]", "assert merge_sorted_list([40, 27, 240, 15, 81], [40, 27, 240, 15, 81], [40, 27, 240, 15, 81]) == [15, 15, 15, 27, 27, 27, 40, 40, 40, 81, 81, 81, 240, 240, 240]", "assert merge_sorted_list([10, 20, 30, 50], [10, 20, 30, 40], [10, 20, 30, 40]) == [10, 10, 10, 20, 20, 20, 30, 30, 30, 40, 40, 50]", "assert merge_sorted_list([1, 1, 1, 1, 38, 1, 1, 1], [1, 1, 1, 1, 38, 1, 1, 1], [3, 3, 3, 3, 3, 2, 3]) == [1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 3, 3, 3, 3, 3, 3, 38, 38]", "assert merge_sorted_list([11, 239, 80, 41, 240], [650, 651, -5, 38, 649, 650], [650, 651, -5, 38, 649, 650]) == [-5, -5, 11, 38, 38, 41, 80, 239, 240, 649, 649, 650, 650, 650, 650, 651, 651]", "assert merge_sorted_list([81, 240], [81, 240], [81, 240]) == [81, 81, 81, 240, 240, 240]", "assert merge_sorted_list([200], [12, 80, 160, 12, 240], [12, 80, 160, 12, 240]) == [12, 12, 12, 12, 80, 80, 160, 160, 200, 240, 240]", "assert merge_sorted_list([-7, 12, 160, 37, 81], [-7, 12, 160, 37, 81], [-7, 12, 160, 37, 81]) == [-7, -7, -7, 12, 12, 12, 37, 37, 37, 81, 81, 81, 160, 160, 160]", "assert merge_sorted_list([1, 2, 3, 4, 1, 6, 29], [50, 45, 40, 35, 30, 25, 20, 15, 10, 10], [1, 2, 3, 4, 1, 6, 29]) == [1, 1, 1, 1, 2, 2, 3, 3, 4, 4, 6, 6, 10, 10, 15, 20, 25, 29, 29, 30, 35, 40, 45, 50]", "assert merge_sorted_list([1, 3, 3, 60, 4, 5], [5, 4, 3, 3, 2, 24], [1, 3, 3, 60, 4, 5]) == [1, 1, 2, 3, 3, 3, 3, 3, 3, 4, 4, 4, 5, 5, 5, 24, 60, 60]", "assert merge_sorted_list([200, 100, 200, 300, 400, 500], [-100, -200, -300, -400, -500], [0.1, 0.2, 0.3, 0.4, 0.5, 0.3]) == [-500, -400, -300, -200, -100, 0.1, 0.2, 0.3, 0.3, 0.4, 0.5, 100, 200, 200, 300, 400, 500]", "assert merge_sorted_list([81, 160, 159, 240], [81, 160, 159, 240], [81, 160, 159, 240]) == [81, 81, 81, 159, 159, 159, 160, 160, 160, 240, 240, 240]", "assert merge_sorted_list([-6, 81, 160, 240], [-6, 81, 160, 240], [-6, 81, 160, 240]) == [-6, -6, -6, 81, 81, 81, 160, 160, 160, 240, 240, 240]", "assert merge_sorted_list([38, 650, 649, 650, 650], [38, 650, 649, 650, 650], [38, 650, 649, 650, 650]) == [38, 38, 38, 649, 649, 649, 650, 650, 650, 650, 650, 650, 650, 650, 650]", "assert merge_sorted_list([10, 20, 40, -500, 50], [10, 20, 40, -500, 50], [10, 20, 40, -500, 50]) == [-500, -500, -500, 10, 10, 10, 20, 20, 20, 40, 40, 40, 50, 50, 50]", "assert merge_sorted_list([651, -7, 652, 23], [651, -7, 652, 23], [651, -7, 652, 23]) == [-7, -7, -7, 23, 23, 23, 651, 651, 651, 652, 652, 652]", "assert merge_sorted_list([1, 1, 1, 1, 38, 1, 1, 1], [4, 3, 3, 3, 3, 3, 2, 3], [4, 3, 3, 3, 3, 3, 2, 3]) == [1, 1, 1, 1, 1, 1, 1, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 4, 4, 38]", "assert merge_sorted_list([-100, -100, -200, -300, -400, -500], [-100, -100, -200, -300, -400, -500], [-100, -100, -200, -300, -400, -500]) == [-500, -500, -500, -400, -400, -400, -300, -300, -300, -200, -200, -200, -100, -100, -100, -100, -100, -100]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the number of numbers with an odd value when rotating a binary string the given number of times.\nassert odd_Equivalent(\"011001\",6) == 3\nYour code should pass the test:\nassert odd_Equivalent(\"011001\",6) == 3", "test_list": [ "assert odd_Equivalent(\"011001\",6) == 3", "assert odd_Equivalent(\"11011\",5) == 4", "assert odd_Equivalent(\"1010\",4) == 2", "assert odd_Equivalent('1100110011', 5) == 3", "assert odd_Equivalent('0000', 3) == 0", "assert odd_Equivalent('10000100110011', 5) == 1", "assert odd_Equivalent('10000100110011', 3) == 1", "assert odd_Equivalent('11001100111100110011', 5) == 3", "assert odd_Equivalent('00011001100110', 4) == 1", "assert odd_Equivalent('1000110011100110', 4) == 1", "assert odd_Equivalent('11001100111100110011', 3) == 2", "assert odd_Equivalent('000110011000', 4) == 1", "assert odd_Equivalent('110011001111001100110001100111001101', 5) == 3", "assert odd_Equivalent('000110011000', 5) == 2", "assert odd_Equivalent('1000110011100110', 3) == 1", "assert odd_Equivalent('110011001111001100111100110011', 5) == 3", "assert odd_Equivalent('11001100111110011001111001100110001100111001101100110011', 5) == 3", "assert odd_Equivalent('00011001100110', 3) == 0", "assert odd_Equivalent('10001110011100110', 4) == 1", "assert odd_Equivalent('1000011001100111001100111100111001111001100110001100111001101', 5) == 1", "assert odd_Equivalent('10001100111001110001100111001100', 3) == 1", "assert odd_Equivalent('10001100111001110001100111001100', 5) == 2", "assert odd_Equivalent('110011001111001100111100110011', 4) == 2", "assert odd_Equivalent('11001100111110011001111001100110001100111001101100110011', 4) == 2", "assert odd_Equivalent('110011001111001100111100110011', 6) == 4", "assert odd_Equivalent('11001100111100110011', 6) == 4", "assert odd_Equivalent('1100110011110011001110100110011', 4) == 2", "assert odd_Equivalent('110011001111100110011110011001100001100110011', 4) == 2", "assert odd_Equivalent('1000000110011000110011100110', 4) == 1", "assert odd_Equivalent('110011001111100110011110011001100011001110101101100110011', 4) == 2", "assert odd_Equivalent('11001100111100110011', 7) == 4", "assert odd_Equivalent('110011001111001100110001100111001101', 7) == 4", "assert odd_Equivalent('1100110011110011001100110011110011001111', 7) == 4", "assert odd_Equivalent('1000111001111001100111100110011100110', 3) == 1", "assert odd_Equivalent('1000000110011000110011100110', 3) == 1", "assert odd_Equivalent('110011001111100110011110011001100011001110101101100110011', 7) == 4", "assert odd_Equivalent('1000011001100111001100111100111001111001100110001100111001101', 7) == 3", "assert odd_Equivalent('11001100111100110011110011001', 4) == 2", "assert odd_Equivalent('00011001100110', 5) == 2", "assert odd_Equivalent('1000011001100111001100111100111001111001100110001100111001101', 6) == 2", "assert odd_Equivalent('0001100110010', 5) == 2", "assert odd_Equivalent('1110011001111001100111100110011001100111110011001111001100110001100111001101100110011', 5) == 3", "assert odd_Equivalent('1100110011110011001100110011110011001111100110011110011001100011001110011011', 7) == 4", "assert odd_Equivalent('1100110011110011001111', 4) == 2", "assert odd_Equivalent('00110011001111001100111010011001100', 3) == 1", "assert odd_Equivalent('0001100110010', 7) == 2", "assert odd_Equivalent('11001100111100111100110011110011001100110011110011001111100110011110011001100011001110011011001111', 4) == 2", "assert odd_Equivalent('1000111001111001100111100110011100110', 4) == 1", "assert odd_Equivalent('1100110011110011001100110011110011001111', 4) == 2", "assert odd_Equivalent('11001100111100111000010011001100111100110011', 5) == 3", "assert odd_Equivalent('00110011001111001100111010011001100', 5) == 2", "assert odd_Equivalent('10001100111001110001100111001100', 2) == 1", "assert odd_Equivalent('1100110011110011100001001100110011110011001100110011001111001100111010011001100', 5) == 3", "assert odd_Equivalent('1000110011100110', 5) == 2", "assert odd_Equivalent('11001100111100110011110011001', 7) == 4", "assert odd_Equivalent('001100110011110011001110100110110011001111001100110011001111001100111110011001111001100110001100111001101101100', 5) == 2", "assert odd_Equivalent('00011110011001111100110011110011001100011001110011011001100110011000', 4) == 1", "assert odd_Equivalent('1100110011110011001111', 6) == 4", "assert odd_Equivalent('10001110011110011001111001100011100110', 4) == 1", "assert odd_Equivalent('11001100111110011001111001100110001100111001101100110011', 3) == 2", "assert odd_Equivalent('1000000110011000110011100110', 2) == 1", "assert odd_Equivalent('1100110011110011001100110011110011001111', 2) == 2", "assert odd_Equivalent('10000100110011', 7) == 2", "assert odd_Equivalent('1100110001111100110011110011001100011001110101101100110011', 7) == 4", "assert odd_Equivalent('110011001111001100110001100111001101', 6) == 4", "assert odd_Equivalent('110011001111001', 4) == 2", "assert odd_Equivalent('1110011001111001100111100110011001100111110011001111001100110001100111001101100110011', 7) == 5", "assert odd_Equivalent('11001100011111001100111100110001100011001110101101100110011', 7) == 4", "assert odd_Equivalent('11001100111100111000010011001100111100110011', 4) == 2", "assert odd_Equivalent('11001100111100110011101001010011', 3) == 2", "assert odd_Equivalent('1000110011100110', 6) == 3", "assert odd_Equivalent('000110011000110011001000110', 4) == 1", "assert odd_Equivalent('1000110011100111000110011100110011001111001100111100110011100', 7) == 3", "assert odd_Equivalent('11001100111100110011101001010011', 2) == 2", "assert odd_Equivalent('110011001111001100011101001010011', 2) == 2", "assert odd_Equivalent('000110011000110011001000110', 2) == 0", "assert odd_Equivalent('11001100111100110011101001010011', 1) == 1", "assert odd_Equivalent('110011001111001110000100110011001111100110011', 5) == 3", "assert odd_Equivalent('110011001111001100101000110011000111110011001111001100011000110011101011011001100111100111001101', 5) == 3", "assert odd_Equivalent('1100110011001100111100110011110011001001100101000110011000111001111001100011000110011101011011001100111100111001101', 5) == 3", "assert odd_Equivalent('111001100111100110011110010110011', 5) == 3", "assert odd_Equivalent('110011001111001100110011001111001110000100110011001111100110011011101001010011', 5) == 3", "assert odd_Equivalent('1000011001100111001100111100111001111001100110001100111001101', 4) == 1", "assert odd_Equivalent('110011001111001100110001100111001101', 8) == 4", "assert odd_Equivalent('110011001111001100110011001111001110000100110011001111100110011011101001010011', 1) == 1", "assert odd_Equivalent('1000110011100110', 7) == 3", "assert odd_Equivalent('110011001111100110011110011001100001100110011', 7) == 4", "assert odd_Equivalent('11001110011001111001100110001100111001101100111100111000010011001100111100110011', 6) == 4", "assert odd_Equivalent('1100110011110011000111001001010011', 5) == 3", "assert odd_Equivalent('110011001111001100111001001010011', 2) == 2", "assert odd_Equivalent('0001100011000110011001000110', 8) == 2", "assert odd_Equivalent('1100110011110011100001001100110011111100110011110011001110100110011100110011', 5) == 3", "assert odd_Equivalent('1000000110011000110011100110', 7) == 1", "assert odd_Equivalent('001100110011110011001110100110110011001111001100110011001111001100111110011001111001100110001100111001101101100', 4) == 2", "assert odd_Equivalent('11001100111100110011110011001', 8) == 4", "assert odd_Equivalent('000110011000110011001000110', 5) == 2", "assert odd_Equivalent('110011001111001100011101001100110011110011001110100110110011001111001100110011001111001100111110011001111001100110001100111001101101100001010011', 2) == 2", "assert odd_Equivalent('11001100111100111100110011110011001100110011110011001111100110011110011001100011001110011011001111', 7) == 4", "assert odd_Equivalent('1100110100110011', 6) == 4", "assert odd_Equivalent('111001100111100110011110010110011', 7) == 5", "assert odd_Equivalent('110011001111001100111001001010011', 6) == 4", "assert odd_Equivalent('11001100111100110011110011001', 5) == 3", "assert odd_Equivalent('11100110011110011001111001100110011001111100110011110011001100011001110011100110011110011001111001100110011001111100110011110011001100011001110011011001100111', 7) == 5", "assert odd_Equivalent('11001100111110011001111001100110001100111001101100110011', 6) == 4", "assert odd_Equivalent('0001110000001100110001100111001101001000110', 4) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to remove first and last occurrence of a given character from the string.\nassert remove_Occ(\"hello\",\"l\") == \"heo\"\nYour code should pass the test:\nassert remove_Occ(\"hello\",\"l\") == \"heo\"", "test_list": [ "assert remove_Occ(\"hello\",\"l\") == \"heo\"", "assert remove_Occ(\"abcda\",\"a\") == \"bcd\"", "assert remove_Occ(\"PHP\",\"P\") == \"H\"", "assert remove_Occ('a', 'a') == ''", "assert remove_Occ('aaa', 'a') == 'a'", "assert remove_Occ('hello world', 'x') == 'hello world'", "assert remove_Occ('worlda', 'a') == 'world'", "assert remove_Occ('x', 'x') == ''", "assert remove_Occ('hello world', 'a') == 'hello world'", "assert remove_Occ('world', 'x') == 'world'", "assert remove_Occ('xx', 'x') == ''", "assert remove_Occ('xworlaaada', 'x') == 'worlaaada'", "assert remove_Occ('axworlaaada', 'x') == 'aworlaaada'", "assert remove_Occ('waaaorlda', 'a') == 'waaorld'", "assert remove_Occ('xhello world', 'a') == 'xhello world'", "assert remove_Occ('xxx', 'x') == 'x'", "assert remove_Occ('worlda', 'x') == 'worlda'", "assert remove_Occ('world', 'a') == 'world'", "assert remove_Occ('hwllo world', 'a') == 'hwllo world'", "assert remove_Occ('axx', 'a') == 'xx'", "assert remove_Occ('hwllo world', 'x') == 'hwllo world'", "assert remove_Occ('hwllo', 'a') == 'hwllo'", "assert remove_Occ('hwl', 'a') == 'hwl'", "assert remove_Occ('ahwllo world', 'a') == 'hwllo world'", "assert remove_Occ('xxx', 'a') == 'xxx'", "assert remove_Occ('hwll', 'a') == 'hwll'", "assert remove_Occ('hhwl', 'a') == 'hhwl'", "assert remove_Occ('ahwllo', 'x') == 'ahwllo'", "assert remove_Occ('whwlloorld', 'a') == 'whwlloorld'", "assert remove_Occ('wda', 'x') == 'wda'", "assert remove_Occ('hwl', 'x') == 'hwl'", "assert remove_Occ('xrworlaaada', 'x') == 'rworlaaada'", "assert remove_Occ('aahwllo', 'a') == 'hwllo'", "assert remove_Occ('a', 'x') == 'a'", "assert remove_Occ('xxwaaaorlda', 'x') == 'waaaorlda'", "assert remove_Occ('wda', 'a') == 'wd'", "assert remove_Occ('hxworlaaadawllo', 'a') == 'hxworlaadwllo'", "assert remove_Occ('aaaa', 'a') == 'aa'", "assert remove_Occ('xrworworldalaaadax', 'x') == 'rworworldalaaada'", "assert remove_Occ('aaawda', 'x') == 'aaawda'", "assert remove_Occ('hello worldx', 'x') == 'hello world'", "assert remove_Occ('xrworworldalaaadax', 'a') == 'xrworworldlaaadx'", "assert remove_Occ('xrworlaaadaworldx', 'x') == 'rworlaaadaworld'", "assert remove_Occ('aahwllo', 'x') == 'aahwllo'", "assert remove_Occ('xworlaaadaaaaa', 'a') == 'xworlaadaaaa'", "assert remove_Occ('xxxx', 'a') == 'xxxx'", "assert remove_Occ('xhello worlda', 'a') == 'xhello world'", "assert remove_Occ('xrworworaldalaaadax', 'a') == 'xrworworldalaaadx'", "assert remove_Occ('xaaaa', 'x') == 'aaaa'", "assert remove_Occ('xxwaahello worldxaorlda', 'x') == 'xwaahello worldaorlda'", "assert remove_Occ('axworlaaada', 'a') == 'xworlaaad'", "assert remove_Occ('worldxaorlda', 'x') == 'worldaorlda'", "assert remove_Occ('hellloa', 'a') == 'helllo'", "assert remove_Occ('xaaa', 'x') == 'aaa'", "assert remove_Occ('aa', 'a') == ''", "assert remove_Occ('xhello', 'a') == 'xhello'", "assert remove_Occ('xrworlaaaada', 'x') == 'rworlaaaada'", "assert remove_Occ('axxxaawda', 'x') == 'axaawda'", "assert remove_Occ('hello worldxxhello worlda', 'a') == 'hello worldxxhello world'", "assert remove_Occ('xhello', 'x') == 'hello'", "assert remove_Occ('hxworlaaadawlolo', 'a') == 'hxworlaadwlolo'", "assert remove_Occ('aa', 'x') == 'aa'", "assert remove_Occ('lo', 'x') == 'lo'", "assert remove_Occ('xaaaa', 'a') == 'xaa'", "assert remove_Occ('waaaorllda', 'a') == 'waaorlld'", "assert remove_Occ('ahwllao', 'x') == 'ahwllao'", "assert remove_Occ('aaa', 'x') == 'aaa'", "assert remove_Occ('xxhello', 'x') == 'hello'", "assert remove_Occ('wdaa', 'a') == 'wd'", "assert remove_Occ('xrworworaldalaaadaxa', 'a') == 'xrworworldalaaadax'", "assert remove_Occ('waaaorlxxwaaaorlda', 'a') == 'waaorlxxwaaaorld'", "assert remove_Occ('aahwllao', 'x') == 'aahwllao'", "assert remove_Occ('hello worldx', 'a') == 'hello worldx'", "assert remove_Occ('lo', 'a') == 'lo'", "assert remove_Occ('hellloa', 'x') == 'hellloa'", "assert remove_Occ('helwdalloa', 'x') == 'helwdalloa'", "assert remove_Occ('worldxxhellox', 'x') == 'worldxhello'", "assert remove_Occ('hello', 'x') == 'hello'", "assert remove_Occ('l', 'x') == 'l'", "assert remove_Occ('waaaorlldalo', 'x') == 'waaaorlldalo'", "assert remove_Occ('xrwax', 'x') == 'rwa'", "assert remove_Occ('waaaorllda', 'x') == 'waaaorllda'", "assert remove_Occ('whwlloorld', 'x') == 'whwlloorld'", "assert remove_Occ('aahhwla', 'x') == 'aahhwla'", "assert remove_Occ('waaaorlda', 'x') == 'waaaorlda'", "assert remove_Occ('llo', 'l') == 'o'", "assert remove_Occ('axaahwllaoworlaaada', 'a') == 'xaahwllaoworlaaad'", "assert remove_Occ('hwllor world', 'a') == 'hwllor world'", "assert remove_Occ('xworlaaadaaaaa', 'x') == 'worlaaadaaaaa'", "assert remove_Occ('waaaorlldal', 'a') == 'waaorlldl'", "assert remove_Occ('aahawllao', 'x') == 'aahawllao'", "assert remove_Occ('lllo', 'l') == 'lo'", "assert remove_Occ('worlaaaadxaorlda', 'x') == 'worlaaaadaorlda'", "assert remove_Occ('hello worldxxhhelloworlda', 'a') == 'hello worldxxhhelloworld'", "assert remove_Occ('hwlll', 'a') == 'hwlll'", "assert remove_Occ('xrworwoxxxraldalaaadaxa', 'a') == 'xrworwoxxxrldalaaadax'", "assert remove_Occ('ll', 'x') == 'll'", "assert remove_Occ('aaahwllaoo', 'a') == 'aahwlloo'", "assert remove_Occ('worldx', 'a') == 'worldx'", "assert remove_Occ('xrworworaldalaaadaxa', 'x') == 'rworworaldalaaadaa'", "assert remove_Occ('hxworlaaadawlolo', 'x') == 'hworlaaadawlolo'", "assert remove_Occ('whello world', 'x') == 'whello world'", "assert remove_Occ('ahwllo', 'a') == 'hwllo'", "assert remove_Occ('ahxworlaaadawlolo', 'a') == 'hxworlaaadwlolo'", "assert remove_Occ('whello', 'x') == 'whello'", "assert remove_Occ('ax', 'a') == 'x'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the common elements in given nested lists.\nassert set(common_in_nested_lists([[12, 18, 23, 25, 45], [7, 12, 18, 24, 28], [1, 5, 8, 12, 15, 16, 18]]))==set([18, 12])\nYour code should pass the test:\nassert set(common_in_nested_lists([[12, 18, 23, 25, 45], [7, 12, 18, 24, 28], [1, 5, 8, 12, 15, 16, 18]]))==set([18, 12])", "test_list": [ "assert set(common_in_nested_lists([[12, 18, 23, 25, 45], [7, 12, 18, 24, 28], [1, 5, 8, 12, 15, 16, 18]]))==set([18, 12])", "assert set(common_in_nested_lists([[12, 5, 23, 25, 45], [7, 11, 5, 23, 28], [1, 5, 8, 18, 23, 16]]))==set([5,23])", "assert set(common_in_nested_lists([[2, 3,4, 1], [4, 5], [6,4, 8],[4, 5], [6, 8,4]]))==set([4])", "assert common_in_nested_lists([[], [], []]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7], [4, 5, 6, 7, 8]]) == [4, 5]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [5, 6, 7, 8, 9]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 3, 5, 7, 9], [2, 4, 6, 8, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]]) == []", "assert common_in_nested_lists([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 3, 4, 5], [3, 4, 5, 6], [4, 5, 6, 7]]) == [4]", "assert common_in_nested_lists([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[], [], [], []]) == []", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 3, 4, 5], [3, 4, 5, 6, 3], [3, 4, 5, 6, 3]]) == [3, 4]", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 3, 4, 5], [2, 4, 5, 6, 3], [2, 4, 5, 6, 3], [2, 4, 5, 6, 3]]) == [2, 3, 4]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [6, 7, 8, 9]]) == [8, 9, 6, 7]", "assert common_in_nested_lists([[], []]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [1, 3, 5, 7, 9], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 15, 4, 5], [2, 15, 4, 5], [3, 4, 5, 6], [4, 5, 6, 7], [2, 15, 4, 5]]) == [4]", "assert common_in_nested_lists([[1, 2, 3, 2], [4, 5, 6], [7, 8, 9], [1, 2, 3, 2], [10, 11, 12], [13, 14, 15]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9], [5, 6, 7, 8, 9]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 3, 4, 5], [2, 4, 5, 6, 3], [2, 4, 5, 6, 3], [2, 4, 5, 6, 3], [1, 2, 3, 4]]) == [2, 3, 4]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 6, 8, 10], [1, 3, 5, 7, 9]]) == []", "assert common_in_nested_lists([[], ['pesDUr', 'hHJC', 'tENrXrt', 'dFybnG', 'z', 'UymdT', 'G', 'UbwECYme'], [], []]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7, 6], [3, 4, 5, 6, 7, 6], [4, 5, 6, 7, 8]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 3, 4, 5], [3, 4, 5, 6, 3], [3, 4, 5, 6, 3], [3, 4, 5, 6, 3]]) == [3, 4]", "assert common_in_nested_lists([[1, 2, 3, 2], [4, 5, 6], [7, 8, 9], [1, 2, 3, 2], [10, 11, 12], [13, 14, 15], [13, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 2], [4, 5, 6], [6, 7, 8, 9], [1, 2, 2], [10, 11, 12], [13, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [13, 6, 7, 8, 9], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [13, 6, 7, 8, 9]]) == [8, 9, 6, 7]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [13, 6, 7, 8, 9], [5, 5, 13, 6, 7, 8, 9], [5, 5, 13, 6, 7, 8, 9], [9, 8, 7, 6, 5], [13, 6, 7, 8, 9]]) == [8, 9, 6, 7]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 8, 10], [1, 3, 5, 7, 9], [1, 3, 5, 7, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [7, 8, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 15, 4, 5, 4], [2, 15, 4, 5, 4], [3, 4, 5, 6], [4, 5, 6, 7], [2, 15, 4, 5, 4], [2, 15, 4, 5, 4]]) == [4]", "assert common_in_nested_lists([[2, 4, 6, 8, 10]]) == [2, 4, 6, 8, 10]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 15, 4, 5, 4, 4], [2, 15, 4, 5, 4, 4], [2, 15, 4, 5, 4, 4], [3, 4, 5, 6], [4, 5, 6, 7], [2, 15, 4, 5, 4, 4], [2, 15, 4, 5, 4, 4], [4, 5, 6, 7]]) == [4]", "assert common_in_nested_lists([[1, 2, 3, 3], [4, 5, 6], [7, 8, 9, 9], [10, 11, 12], [7, 8, 9, 9], [13, 14, 15]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5, 9], [5, 6, 7, 8, 9], [5, 6, 7, 8, 9]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4], [2, 15, 4, 5], [2, 15, 4, 5], [3, 4, 5, 6], [5, 5, 6, 7], [2, 15, 4, 5]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7], [4, 5, 6, 7, 8], [1, 2, 3, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9, 9], [5, 6, 7, 8, 9, 9], [9, 8, 7, 6, 5], [9, 6, 7, 8, 9]]) == [8, 9, 6, 7]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 15, 6, 7, 6], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7, 8], [1, 2, 3, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4, 5, 3], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10]]) == [2, 4]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1]]) == []", "assert common_in_nested_lists([[9, 2, 3], [4, 5, 6], [8, 9, 9], [10, 11, 12], [8, 9, 9], [8, 9, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7], [4, 5, 6, 7, 8], [1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [1, 2, 3, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [13, 6, 7, 8, 9], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [13, 6, 7, 8, 9], [5, 6, 7, 8, 9]]) == [8, 9, 6, 7]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7], [1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [1, 2, 3, 4, 5]]) == [3, 4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4, 5, 3], [2, 4, 14, 8, 10], [2, 4, 14, 8, 10], [2, 4, 6, 8, 10], [2, 4, 14, 8, 10]]) == [2, 4]", "assert common_in_nested_lists([[4, 5, 6, 7, 8, 8], [1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7], [4, 5, 6, 7, 8, 8]]) == [4, 5]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [4, 5, 6, 7], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7, 6], [4, 5, 6, 7]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3], [4, 5, 6], [10, 11, 12], [7, 8, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 15, 6, 7, 6], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7, 8], [1, 2, 3, 4, 5], [2, 3, 4, 5, 6]]) == [4, 5]", "assert common_in_nested_lists([[13, 15, 14, 15], [1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 15, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 6, 8, 7, 6], [3, 4, 5, 6, 8, 7, 6], [3, 4, 5, 6, 8, 7, 6], [4, 5, 6, 7, 8]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4, 5, 3], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10]]) == [2, 4]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [4, 3, 4, 5, 6], [4, 3, 4, 5, 6], [3, 4, 5, 6, 7], [4, 5, 6, 7, 8]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[4, 4, 6], [1, 2, 3], [4, 4, 6], [7, 8, 9], [10, 11, 12]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7, 8], [1, 2, 3, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 3], [4, 5, 6], [10, 11, 12], [7, 8, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9], [2, 4, 6, 8, 10], [1, 2, 3, 4, 5], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[1, 2, 3], [7, 8, 9], [10, 11, 12]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1]]) == []", "assert common_in_nested_lists([[5, 6, 7, 8, 9], [9, 8, 7, 6, 5]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[7, 7, 9, 9], [1, 2, 3, 3], [4, 5, 6], [7, 7, 9, 9], [10, 11, 12], [7, 7, 9, 9], [13, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 3, 2], [4, 5, 6], [7, 8, 9], [1, 2, 3, 2], [10, 1, 11, 12], [13, 14, 15], [1, 2, 3, 2]]) == []", "assert common_in_nested_lists([[12, 1, 2, 3, 3], [4, 5, 6], [10, 11, 12], [7, 8, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 3], [4, 5, 6], [7, 8, 9, 9], [11, 10, 11, 12], [11, 10, 11, 12], [7, 8, 9, 9], [13, 14, 15]]) == []", "assert common_in_nested_lists([[2, 15, 4, 5], [2, 15, 4, 5], [3, 4, 5, 6], [4, 5, 6, 7], [2, 15, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [3, 4, 5, 6], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7, 8], [3, 4, 5, 6], [1, 2, 3, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[12, 1, 2, 3, 3], [4, 5, 6], [10, 11, 11, 12], [7, 2, 8, 9]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5, 1], [1, 3, 5, 7, 9], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[10, 8, 11, 12], [12, 1, 2, 3, 3, 3], [4, 5, 6], [10, 8, 11, 12], [7, 8, 9], [10, 8, 11, 12]]) == []", "assert common_in_nested_lists([[2, 3, 4, 5], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[1, 2, 3, 3], [4, 5, 6], [10, 11, 12], [7, 8, 9], [7, 8, 9]]) == []", "assert common_in_nested_lists([[10, 8, 7, 6, 5], [9, 8, 7, 6, 4], [5, 6, 7, 8, 9], [10, 8, 7, 6, 5]]) == [8, 6, 7]", "assert common_in_nested_lists([[87.07763738802882], [], [], []]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 3, 4, 5, 6], [3, 4, 5, 15, 6, 7, 6], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7, 8]]) == [4, 5]", "assert common_in_nested_lists([[3, 4, 5, 6, 3], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7, 8], [1, 2, 3, 4, 5]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 8, 10], [1, 3, 5, 7, 9], [1, 3, 5, 7, 9], [2, 4, 8, 10]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 1]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 8, 10], [1, 3, 5, 7, 9], [1, 3, 5, 7, 9], [1, 3, 5, 7, 9]]) == []", "assert common_in_nested_lists([[5, 6, 7, 8, 9], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [9, 8, 7, 6, 5]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10]]) == [2, 4]", "assert common_in_nested_lists([[7, 8, 13], [1, 2, 3], [4, 5, 6], [7, 8, 13]]) == []", "assert common_in_nested_lists([[1, 2, 3], [7, 8, 9], [10, 11, 12], [10, 11, 12]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 2, 4, 8, 10], [1, 3, 5, 7, 9], [1, 3, 5, 7, 9], [2, 2, 4, 8, 10]]) == []", "assert common_in_nested_lists([[9, 8, 4, 7, 6, 5], [5, 6, 7, 8, 9], [5, 6, 7, 8, 9]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 8, 10], [1, 3, 5, 7, 9], [2, 4, 8, 10], [2, 4, 8, 10]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5, 8], [9, 8, 7, 6, 5, 8], [5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [9, 8, 7, 6, 5, 8]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[5, 6, 7, 8, 9], [9, 8, 7, 6, 5], [5, 6, 7, 8, 9]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9, 8], [9, 8, 7, 6, 5], [6, 7, 8, 9]]) == [8, 9, 6, 7]", "assert common_in_nested_lists([[4, 5, 6], [6, 7, 8, 9], [1, 2, 2], [10, 11, 12], [13, 14, 15], [1, 2, 2]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 8, 10], [1, 4, 5, 7, 9], [1, 4, 5, 7, 9], [2, 4, 8, 10]]) == [4]", "assert common_in_nested_lists([[1, 2, 3, 3], [4, 5, 6], [7, 7, 9, 9], [7, 7, 9, 9], [13, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 3, 3], [4, 5, 6], [7, 8, 9]]) == []", "assert common_in_nested_lists([[9, 8, 7, 6, 5], [5, 6, 7, 8, 9, 6], [5, 6, 7, 8, 9, 6]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[4, 5, 6], [10, 11, 12], [7, 8, 9]]) == []", "assert common_in_nested_lists([[13, 15, 14, 15], [1, 2, 3], [4, 5, 6], [7, 13, 8, 9], [7, 13, 8, 9], [10, 11, 12], [13, 15, 14, 15]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [2, 4, 6, 8, 10], [2, 4, 6, 8]]) == [2, 4]", "assert common_in_nested_lists([[1, 2, 3, 4, 5, 3], [2, 4, 6, 8, 10], [1, 3, 5, 7, 9], [2, 4, 6, 8, 10]]) == []", "assert common_in_nested_lists([[5, 6, 7, 8, 9, 6], [9, 8, 7, 6, 5]]) == [5, 6, 7, 8, 9]", "assert common_in_nested_lists([[10, 8, 11, 2, 12], [12, 1, 4, 3, 3, 3], [4, 5], [12, 1, 4, 3, 3, 3], [10, 8, 11, 2, 12], [7, 8, 9], [10, 8, 11, 2, 12]]) == []", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [1, 3, 5, 4, 9, 1], [2, 4, 6, 8, 10], [2, 4, 6, 8, 10], [1, 3, 5, 4, 9, 1]]) == [4]", "assert common_in_nested_lists([[1, 2, 3, 4, 5], [3, 4, 5, 6, 7, 6, 7], [2, 3, 4, 5, 6], [3, 4, 5, 6, 7, 6, 7], [3, 4, 5, 6, 7, 6, 7], [4, 5, 6, 7, 8], [3, 4, 5, 6, 7, 6, 7]]) == [4, 5]", "assert common_in_nested_lists([[5, 2, 3, 4, 5], [3, 4, 5, 6], [4, 5, 6, 7], [5, 2, 3, 4, 5], [3, 4, 5, 15, 6, 7, 6], [4, 5, 6, 7], [3, 4, 5, 6], [5, 2, 3, 4, 5], [3, 4, 5, 6]]) == [4, 5]", "assert common_in_nested_lists([[1, 2, 3], [4, 5, 6], [7, 8, 9]]) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if a string represents an integer or not.\nassert check_integer(\"python\")==False\nYour code should pass the test:\nassert check_integer(\"python\")==False", "test_list": [ "assert check_integer(\"python\")==False", "assert check_integer(\"1\")==True", "assert check_integer(\"12345\")==True", "assert check_integer('') == None", "assert check_integer('-5') == True", "assert check_integer('10') == True", "assert check_integer('-100') == True", "assert check_integer('100000') == True", "assert check_integer(' 15') == True", "assert check_integer('25 ') == True", "assert check_integer(' -200 ') == True", "assert check_integer('123a') == False", "assert check_integer('-b456') == False", "assert check_integer('!7890@') == False", "assert check_integer('12ab34') == False", "assert check_integer('5@678') == False", "assert check_integer('123.45') == False", "assert check_integer('1,000') == False", "assert check_integer('1,0') == False", "assert check_integer('+123') == True", "assert check_integer('-987') == True", "assert check_integer(' 1 2 3 ') == False", "assert check_integer(' 1 2 ') == False", "assert check_integer(' ') == None", "assert check_integer('-b45b6') == False", "assert check_integer(' ') == None", "assert check_integer('-9+1237') == False", "assert check_integer('6-b456') == False", "assert check_integer('5 1 2 @678') == False", "assert check_integer(' 1 2 ') == False", "assert check_integer('123.4 -200 ') == False", "assert check_integer('12ab324') == False", "assert check_integer('5 1 2 @678') == False", "assert check_integer('125,000') == False", "assert check_integer('123.4.5') == False", "assert check_integer('12ab341') == False", "assert check_integer('5') == True", "assert check_integer('--5') == False", "assert check_integer('1235') == True", "assert check_integer('6-b 1 2 456') == False", "assert check_integer('456') == True", "assert check_integer('12ab1235341') == False", "assert check_integer('-97') == True", "assert check_integer('6-b 1 2 1235 456') == False", "assert check_integer(' 1 2 3 ') == False", "assert check_integer('123.4 -200 4 ') == False", "assert check_integer('1423.45') == False", "assert check_integer('4') == True", "assert check_integer('1423.5') == False", "assert check_integer('123.4 -212ab34100 ') == False", "assert check_integer('12ab1235123.4 -200 4 341') == False", "assert check_integer('-212ab34100') == False", "assert check_integer('12ab13235123.4 -200 4 341') == False", "assert check_integer('-2132ab341012ab3240') == False", "assert check_integer('@@678') == False", "assert check_integer(' 12ab324 1 1 2 ') == False", "assert check_integer('@678') == False", "assert check_integer('44') == True", "assert check_integer('-9+14422371,000') == False", "assert check_integer('12ab21235341') == False", "assert check_integer('6-b 1 -2002 12355 456') == False", "assert check_integer('-2005') == True", "assert check_integer('12ab1235123.4') == False", "assert check_integer('-2-9+123712ab34100') == False", "assert check_integer(' -2000 ') == True", "assert check_integer('VuNmzvmS') == False", "assert check_integer('3') == True", "assert check_integer('12ab123512312ab1235123.4.4') == False", "assert check_integer('1,0456') == False", "assert check_integer(' ') == None", "assert check_integer('12ab3-b45641') == False", "assert check_integer('142443.45') == False", "assert check_integer('9-97') == False", "assert check_integer('123.4123.4 -2120ab34100 ') == False", "assert check_integer('123.46-b4565') == False", "assert check_integer('125,000-20004') == False", "assert check_integer('123.4') == False", "assert check_integer(' 12ab324 1 1 ') == False", "assert check_integer('!790@') == False", "assert check_integer('-b412ab123-53415b6') == False", "assert check_integer('123.5') == False", "assert check_integer('0 -2000 ') == False", "assert check_integer(' 12ab324 1 1 ') == False", "assert check_integer('11,0') == False", "assert check_integer('444') == True", "assert check_integer('6-b 12ab13235123.4 -200 4 341 1 2 456') == False", "assert check_integer('12aab13235123.4') == False", "assert check_integer('123.4 -206-b 1 2 1235 4560 ') == False", "assert check_integer('-2123.5132ab341012ab3240') == False", "assert check_integer('-200') == True", "assert check_integer('-212a123.4 -212ab34100 34100') == False", "assert check_integer(' 15') == True", "assert check_integer(' 12ab324 a123.45 1 1 2 ') == False", "assert check_integer('@@7678') == False", "assert check_integer('6-b 1 2 1235 456!790@') == False", "assert check_integer('15') == True", "assert check_integer('0 -2000 0 ') == False", "assert check_integer('--55') == False", "assert check_integer(' 1 2 ') == False", "assert check_integer('141,045623.5') == False", "assert check_integer('1123.4 1 2 5') == False", "assert check_integer('12ab123512312a2b1235123.4.4') == False", "assert check_integer('0 -2000 0 -100') == False", "assert check_integer(' 12ab324 a123.4 12ab324 1 1 2 ') == False", "assert check_integer('12a1123.4 1 2 5b123.4..54') == False", "assert check_integer('6-b VuNmzvmS1 2 1235 456') == False", "assert check_integer('456!790@') == False", "assert check_integer('12ab212351,000341') == False", "assert check_integer('b-b45b6') == False", "assert check_integer('1123.4 VuNmzvmS 1 2 5') == False", "assert check_integer('12ab133235123.4') == False", "assert check_integer('12ab3-b 12ab324 a123.45 1 1 2 4564') == False", "assert check_integer('12a1123.4') == False", "assert check_integer('2ab34 1 2 5') == False", "assert check_integer('2 5 ') == False", "assert check_integer('DJm') == False", "assert check_integer('3VuNmzvmS1') == False", "assert check_integer('12136-b 1 -2002 12355 456a') == False", "assert check_integer('b-b456') == False", "assert check_integer('6-b VuNmzNvmS1 2 1235 456') == False", "assert check_integer('125,00 150004') == False", "assert check_integer('12136-b 1-2000 -2002 12355 456a') == False", "assert check_integer('0 -2000 ') == False", "assert check_integer('115') == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a given tuple of positive integers into a single integer.\nassert tuple_to_int((1,2,3))==123\nYour code should pass the test:\nassert tuple_to_int((1,2,3))==123", "test_list": [ "assert tuple_to_int((1,2,3))==123", "assert tuple_to_int((4,5,6))==456", "assert tuple_to_int((5,6,7))==567", "assert tuple_to_int((123, 456, 789)) == 123456789", "assert tuple_to_int((987, 654, 321)) == 987654321", "assert tuple_to_int((999, 888, 777)) == 999888777", "assert tuple_to_int((10000000000000000000, 9999999999999999999, 8888888888888888888)) == 1000000000000000000099999999999999999998888888888888888888", "assert tuple_to_int((1234567891011121314, 9876543210987654321, 1111111111111111111)) == 123456789101112131498765432109876543211111111111111111111", "assert tuple_to_int((999999999999999999, 999999999999999998, 999999999999999997)) == 999999999999999999999999999999999998999999999999999997", "assert tuple_to_int((123456789123456789, 987654321987654321, 123456789123456789)) == 123456789123456789987654321987654321123456789123456789", "assert tuple_to_int((77777777777777777777, 88888888888888888888, 99999999999999999999)) == 777777777777777777778888888888888888888899999999999999999999", "assert tuple_to_int((123456789123456789123456789, 987654321987654321987654321, 123456789123456789123456789)) == 123456789123456789123456789987654321987654321987654321123456789123456789123456789", "assert tuple_to_int((9999999999999999998, 9876543210987654321, 1111111111111111111)) == 999999999999999999898765432109876543211111111111111111111", "assert tuple_to_int((123456789123456789, 987654321987654321, 123456789123456789, 123456789123456789)) == 123456789123456789987654321987654321123456789123456789123456789123456789", "assert tuple_to_int((789, 1234567891011121314, 9876543210987654321, 1111111111111111111)) == 789123456789101112131498765432109876543211111111111111111111", "assert tuple_to_int((10000000000000000000, 8888888888888888888)) == 100000000000000000008888888888888888888", "assert tuple_to_int((10000000000000000000, 8888888888888888888, 10000000000000000000)) == 10000000000000000000888888888888888888810000000000000000000", "assert tuple_to_int((123456789123456789, 987654321987654321, 123456789123456789, 9999999999999999999)) == 1234567891234567899876543219876543211234567891234567899999999999999999999", "assert tuple_to_int((123456789123456789, 999999999999999998, 77777777777777777777)) == 12345678912345678999999999999999999877777777777777777777", "assert tuple_to_int((123456789123456789, 123456789123456789)) == 123456789123456789123456789123456789", "assert tuple_to_int((999, 888, 1234567891011121314)) == 9998881234567891011121314", "assert tuple_to_int((987654321987654321,)) == 987654321987654321", "assert tuple_to_int((123456789123456789, 123456789123456789, 123456789123456789)) == 123456789123456789123456789123456789123456789123456789", "assert tuple_to_int((1234567891011121314, 9876543210987654321, 1234567891011121314, 1111111111111111111)) == 1234567891011121314987654321098765432112345678910111213141111111111111111111", "assert tuple_to_int((456, 789)) == 456789", "assert tuple_to_int((10000000000000000000, 8888888888888888888, 10000000000000000000, 77777777777777777777, 10000000000000000000)) == 100000000000000000008888888888888888888100000000000000000007777777777777777777710000000000000000000", "assert tuple_to_int((987, 321)) == 987321", "assert tuple_to_int((321, 322)) == 321322", "assert tuple_to_int((1111111111111111111,)) == 1111111111111111111", "assert tuple_to_int((1111111111111111110, 1234567891011121314, 9876543210987654321, 1234567891011121314, 1111111111111111111)) == 11111111111111111101234567891011121314987654321098765432112345678910111213141111111111111111111", "assert tuple_to_int((999, 888)) == 999888", "assert tuple_to_int((1111111111111111112,)) == 1111111111111111112", "assert tuple_to_int((10000000000000000000, 9999999999999999999, 322, 77777777777777777777, 10000000000000000000)) == 1000000000000000000099999999999999999993227777777777777777777710000000000000000000", "assert tuple_to_int((999, 654, 888, 777, 888)) == 999654888777888", "assert tuple_to_int((987, 321, 987)) == 987321987", "assert tuple_to_int((10000000000000000000, 9999999999999999999, 8888888888888888889, 8888888888888888887, 8888888888888888888)) == 100000000000000000009999999999999999999888888888888888888988888888888888888878888888888888888888", "assert tuple_to_int((10000000000000000000, 8888888888888888889, 8888888888888888888)) == 1000000000000000000088888888888888888898888888888888888888", "assert tuple_to_int((987, 321, 321)) == 987321321", "assert tuple_to_int((987, 77777777777777777777, 321)) == 98777777777777777777777321", "assert tuple_to_int((999999999999999999, 654)) == 999999999999999999654", "assert tuple_to_int((888, 123456789123456789, 123456789123456789)) == 888123456789123456789123456789123456789", "assert tuple_to_int((10000000000000000000, 1111111111111111110, 8888888888888888889, 8888888888888888887, 8888888888888888888)) == 100000000000000000001111111111111111110888888888888888888988888888888888888878888888888888888888", "assert tuple_to_int((1234567891011121314, 9876543210987654321, 1234567891011121314, 1111111111111111111, 1234567891011121314, 1234567891011121314)) == 123456789101112131498765432109876543211234567891011121314111111111111111111112345678910111213141234567891011121314", "assert tuple_to_int((788, 789, 1234567891011121314, 9876543210987654321, 1111111111111111111)) == 788789123456789101112131498765432109876543211111111111111111111", "assert tuple_to_int((987654321987654321, 987654321987654321)) == 987654321987654321987654321987654321", "assert tuple_to_int((123456789123456789, 8888888888888888887)) == 1234567891234567898888888888888888887", "assert tuple_to_int((123, 456, 122, 789)) == 123456122789", "assert tuple_to_int((987, 321, 987, 987, 987)) == 987321987987987", "assert tuple_to_int((789, 1234567891011121314, 9876543210987654321, 1234567891011121314, 1111111111111111111)) == 7891234567891011121314987654321098765432112345678910111213141111111111111111111", "assert tuple_to_int((987,)) == 987", "assert tuple_to_int((987654321987654321, 987654321987654321, 987654321987654321)) == 987654321987654321987654321987654321987654321987654321", "assert tuple_to_int((999999999999999998, 123456789123456789, 123456789123456789, 123456789123456789)) == 999999999999999998123456789123456789123456789123456789123456789123456789", "assert tuple_to_int((788, 789, 1234567891011121314, 9876543210987654321, 1111111111111111111, 789)) == 788789123456789101112131498765432109876543211111111111111111111789", "assert tuple_to_int((124, 456, 789)) == 124456789", "assert tuple_to_int((123, 456, 789, 123)) == 123456789123", "assert tuple_to_int((10000000000000000000,)) == 10000000000000000000", "assert tuple_to_int((9876543210987654321, 987, 321)) == 9876543210987654321987321", "assert tuple_to_int((999999999999999999, 987654321987654321, 987654321987654321)) == 999999999999999999987654321987654321987654321987654321", "assert tuple_to_int((88888888888888888888, 77777777777777777777, 88888888888888888888, 99999999999999999999, 88888888888888888888)) == 8888888888888888888877777777777777777777888888888888888888889999999999999999999988888888888888888888", "assert tuple_to_int((123456789123456788, 123456789123456789, 123456789123456789123456789)) == 123456789123456788123456789123456789123456789123456789123456789", "assert tuple_to_int((1111111111111111111, 1111111111111111111)) == 11111111111111111111111111111111111111", "assert tuple_to_int((999, 888, 1234567891011121314, 999)) == 9998881234567891011121314999", "assert tuple_to_int((999, 987654321987654321987654321, 888)) == 999987654321987654321987654321888", "assert tuple_to_int((77777777777777777777, 88888888888888888887, 99999999999999999999)) == 777777777777777777778888888888888888888799999999999999999999", "assert tuple_to_int((123, 456, 1234567891011121314, 123)) == 1234561234567891011121314123", "assert tuple_to_int((123, 456, 123)) == 123456123", "assert tuple_to_int((777, 8888888888888888889, 8888888888888888888)) == 77788888888888888888898888888888888888888", "assert tuple_to_int((9999999999999999999, 10000000000000000000)) == 999999999999999999910000000000000000000", "assert tuple_to_int((88888888888888888888, 987654321987654321, 987654321987654321)) == 88888888888888888888987654321987654321987654321987654321", "assert tuple_to_int((123456789123456789, 9999999999999999999, 123456789123456789)) == 1234567891234567899999999999999999999123456789123456789", "assert tuple_to_int((999, 123456789123456789, 987654321987654321, 998, 123456789123456789, 123456789123456789)) == 999123456789123456789987654321987654321998123456789123456789123456789123456789", "assert tuple_to_int((987, 321, 987, 987, 986, 987)) == 987321987987986987", "assert tuple_to_int((123456789123456789, 987654321987654321, 123456789123456789, 123456789123456789, 123456789123456789)) == 123456789123456789987654321987654321123456789123456789123456789123456789123456789123456789", "assert tuple_to_int((9876543210987654321, 654, 321)) == 9876543210987654321654321", "assert tuple_to_int((123456789123456789, 999999999999999998, 77777777777777777777, 123456789123456789)) == 12345678912345678999999999999999999877777777777777777777123456789123456789", "assert tuple_to_int((9999999999999999998, 9876543210987654321)) == 99999999999999999989876543210987654321", "assert tuple_to_int((1234567891011121314, 9876543210987654321, 1234567891011121314, 1111111111111111111, 9999999999999999998, 1234567891011121313, 1234567891011121314)) == 1234567891011121314987654321098765432112345678910111213141111111111111111111999999999999999999812345678910111213131234567891011121314", "assert tuple_to_int((788, 789, 9876543210987654321, 1111111111111111111, 789, 789)) == 78878998765432109876543211111111111111111111789789", "assert tuple_to_int((987, 987)) == 987987", "assert tuple_to_int((123456789123456789, 987654321987654321, 123456789123456788, 123456789123456789, 123456789123456789)) == 123456789123456789987654321987654321123456789123456788123456789123456789123456789123456789", "assert tuple_to_int((123456789123456789, 987654321987654321, 77777777777777777777, 123456789123456789)) == 12345678912345678998765432198765432177777777777777777777123456789123456789", "assert tuple_to_int((123456789123456789, 88888888888888888887, 987654321987654321, 123456789123456789, 123456789123456789, 123456789123456789, 88888888888888888887)) == 1234567891234567898888888888888888888798765432198765432112345678912345678912345678912345678912345678912345678988888888888888888887", "assert tuple_to_int((123456789123456789, 987654321987654321, 123456789123456788, 123456789123456789)) == 123456789123456789987654321987654321123456789123456788123456789123456789", "assert tuple_to_int((123456789123456790, 987654321987654321, 123456789123456789, 9999999999999999999)) == 1234567891234567909876543219876543211234567891234567899999999999999999999", "assert tuple_to_int((321,)) == 321", "assert tuple_to_int((987, 8888888888888888888, 321)) == 9878888888888888888888321", "assert tuple_to_int((88888888888888888888, 77777777777777777777, 88888888888888888888, 99999999999999999999, 9876543210987654321, 99999999999999999998, 88888888888888888888)) == 8888888888888888888877777777777777777777888888888888888888889999999999999999999998765432109876543219999999999999999999888888888888888888888", "assert tuple_to_int((123456789123456789, 123456789123456788, 8888888888888888887)) == 1234567891234567891234567891234567888888888888888888887", "assert tuple_to_int((88888888888888888888, 987654321987654321, 987654321987654321, 987654321987654321)) == 88888888888888888888987654321987654321987654321987654321987654321987654321", "assert tuple_to_int((1000000000000000000, 999999999999999998, 456)) == 1000000000000000000999999999999999998456", "assert tuple_to_int((88888888888888888888, 987654321987654321, 987654321987654321, 987654321987654321, 987654321987654321)) == 88888888888888888888987654321987654321987654321987654321987654321987654321987654321987654321", "assert tuple_to_int((9876543210987654321, 987, 321, 321)) == 9876543210987654321987321321", "assert tuple_to_int((999, 1000, 888, 1234567891011121314)) == 99910008881234567891011121314", "assert tuple_to_int((999, 123456789123456789, 987654321987654321, 998, 987654321987654321, 123456789123456789, 123456789123456789)) == 999123456789123456789987654321987654321998987654321987654321123456789123456789123456789123456789", "assert tuple_to_int((123456789123456789, 987654321987654321, 8888888888888888888, 123456789123456789, 123456789123456789)) == 1234567891234567899876543219876543218888888888888888888123456789123456789123456789123456789", "assert tuple_to_int((123, 456, 124, 789, 789, 123)) == 123456124789789123", "assert tuple_to_int((987, 987, 654, 321)) == 987987654321", "assert tuple_to_int((999999999999999999, 999999999999999998, 999999999999999997, 999999999999999999)) == 999999999999999999999999999999999998999999999999999997999999999999999999", "assert tuple_to_int((999, 888, 999)) == 999888999", "assert tuple_to_int((1000000000000000000, 124, 456, 789, 789)) == 1000000000000000000124456789789", "assert tuple_to_int((888, 123456789123456789, 123456789123456789, 123456789123456789)) == 888123456789123456789123456789123456789123456789123456789", "assert tuple_to_int((88888888888888888888, 77777777777777777777, 88888888888888888888, 99999999999999999998, 88888888888888888888)) == 8888888888888888888877777777777777777777888888888888888888889999999999999999999888888888888888888888", "assert tuple_to_int((999999999999999999, 999999999999999998, 999999999999999997, 999999999999999999, 999999999999999999)) == 999999999999999999999999999999999998999999999999999997999999999999999999999999999999999999", "assert tuple_to_int((1234567891011121314, 9876543210987654321, 888, 1111111111111111111, 9999999999999999998, 1234567891011121313, 1234567891011121314)) == 123456789101112131498765432109876543218881111111111111111111999999999999999999812345678910111213131234567891011121314", "assert tuple_to_int((123456789123456789, 999999999999999999, 8888888888888888887)) == 1234567891234567899999999999999999998888888888888888887", "assert tuple_to_int((10000000000000000000, 8888888888888888889, 8888888888888888888, 10000000000000000000)) == 100000000000000000008888888888888888889888888888888888888810000000000000000000", "assert tuple_to_int((9876543210987654321, 986, 986, 321)) == 9876543210987654321986986321", "assert tuple_to_int((123, 124, 456, 789)) == 123124456789", "assert tuple_to_int((10000000000000000001, 123456789123456788, 10000000000000000000, 9999999999999999999, 8888888888888888888)) == 100000000000000000011234567891234567881000000000000000000099999999999999999998888888888888888888", "assert tuple_to_int((1234567891011121314, 9876543210987654322, 1234567891011121314, 1111111111111111111, 1234567891011121314, 1234567891011121314)) == 123456789101112131498765432109876543221234567891011121314111111111111111111112345678910111213141234567891011121314", "assert tuple_to_int((999999999999999999, 999999999999999998, 999999999999999999)) == 999999999999999999999999999999999998999999999999999999", "assert tuple_to_int((788, 789, 9876543210987654321, 1111111111111111111, 789, 789, 9876543210987654321)) == 788789987654321098765432111111111111111111117897899876543210987654321" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a string to a list of strings split on the space character.\nassert string_to_list(\"python programming\")==['python','programming']\nYour code should pass the test:\nassert string_to_list(\"python programming\")==['python','programming']", "test_list": [ "assert string_to_list(\"python programming\")==['python','programming']", "assert string_to_list(\"lists tuples strings\")==['lists','tuples','strings']", "assert string_to_list(\"write a program\")==['write','a','program']", "assert string_to_list('') == ['']", "assert string_to_list(' python programming ') == ['', '', '', 'python', '', '', '', '', '', 'programming', '', '', '', '']", "assert string_to_list('1234 5678 9101') == ['1234', '5678', '9101']", "assert string_to_list('string1,string2,string3') == ['string1,string2,string3']", "assert string_to_list('My favorite programming language is Python') == ['My', 'favorite', 'programming', 'language', 'is', 'Python']", "assert string_to_list('string1, string2, string3') == ['string1,', '', '', '', '', 'string2,', '', '', '', '', '', '', 'string3']", "assert string_to_list('string1,string2,strin3') == ['string1,string2,strin3']", "assert string_to_list('language') == ['language']", "assert string_to_list('1234 5678 91string1,string2,string301') == ['1234', '5678', '91string1,string2,string301']", "assert string_to_list('string1,string2,3') == ['string1,string2,3']", "assert string_to_list('My') == ['My']", "assert string_to_list('1234') == ['1234']", "assert string_to_list('l') == ['l']", "assert string_to_list('5678') == ['5678']", "assert string_to_list('192314 5678 9101') == ['192314', '5678', '9101']", "assert string_to_list('python') == ['python']", "assert string_to_list('12314') == ['12314']", "assert string_to_list(' ng ') == ['', '', '', 'ng', '', '', '', '']", "assert string_to_list('56678') == ['56678']", "assert string_to_list('favorite') == ['favorite']", "assert string_to_list('string2,') == ['string2,']", "assert string_to_list('AeFmnNDd') == ['AeFmnNDd']", "assert string_to_list('56') == ['56']", "assert string_to_list('programming') == ['programming']", "assert string_to_list('pronggrammin12314g') == ['pronggrammin12314g']", "assert string_to_list('prog') == ['prog']", "assert string_to_list('5striing1,stringg2,strin3') == ['5striing1,stringg2,strin3']", "assert string_to_list('language ng ') == ['language', '', 'ng', '', '', '', '']", "assert string_to_list('favorit') == ['favorit']", "assert string_to_list('gvZn') == ['gvZn']", "assert string_to_list('languPythonage ng ') == ['languPythonage', '', 'ng', '', '', '', '']", "assert string_to_list('Python') == ['Python']", "assert string_to_list('SfDBdGHKU') == ['SfDBdGHKU']", "assert string_to_list('is') == ['is']", "assert string_to_list('5stprogriing1,stringg2,strin3') == ['5stprogriing1,stringg2,strin3']", "assert string_to_list('fvorrite') == ['fvorrite']", "assert string_to_list('porog') == ['porog']", "assert string_to_list('pAeFmnNDdor') == ['pAeFmnNDdor']", "assert string_to_list('propg') == ['propg']", "assert string_to_list('languag5678e ng ') == ['languag5678e', '', 'ng', '', '', '', '']", "assert string_to_list('My favorite programming lamnguage is Python') == ['My', 'favorite', 'programming', 'lamnguage', 'is', 'Python']", "assert string_to_list('12My favorite programming language is Python34 5678 9101') == ['12My', 'favorite', 'programming', 'language', 'is', 'Python34', '5678', '9101']", "assert string_to_list('programmming') == ['programmming']", "assert string_to_list('My favorite prolanguPythonagegramminlg language is Python') == ['My', 'favorite', 'prolanguPythonagegramminlg', 'language', 'is', 'Python']", "assert string_to_list('te') == ['te']", "assert string_to_list('fvorrrite') == ['fvorrrite']", "assert string_to_list('string1, string2, sstring3') == ['string1,', '', '', '', '', 'string2,', '', '', '', '', '', '', 'sstring3']", "assert string_to_list('1234 5678 9101') == ['1234', '5678', '', '9101']", "assert string_to_list('556is78') == ['556is78']", "assert string_to_list('My favorite prol anguPythonagegramminlg lanage is Python') == ['My', 'favorite', 'prol', 'anguPythonagegramminlg', 'lanage', 'is', 'Python']", "assert string_to_list('vksoeiMq') == ['vksoeiMq']", "assert string_to_list('12My favorite programming language is Python34 5678string2,') == ['12My', 'favorite', 'programming', 'language', 'is', 'Python34', '5678string2,']", "assert string_to_list('5striing1,My favorite proMye ythonpstringg2,strin3') == ['5striing1,My', 'favorite', 'proMye', 'ythonpstringg2,strin3']", "assert string_to_list('1234 5678 91string1,sPython342,string301') == ['1234', '5678', '91string1,sPython342,string301']", "assert string_to_list('fvorofrite') == ['fvorofrite']", "assert string_to_list('fvorrreite') == ['fvorrreite']", "assert string_to_list('favoritprogrammming') == ['favoritprogrammming']", "assert string_to_list('Python34') == ['Python34']", "assert string_to_list('556iss78') == ['556iss78']", "assert string_to_list('peMsMC') == ['peMsMC']", "assert string_to_list('ffvorrreite') == ['ffvorrreite']", "assert string_to_list('5striing1,My favorite proMylanguagee ythonpstringg2,strin3') == ['5striing1,My', 'favorite', 'proMylanguagee', 'ythonpstringg2,strin3']", "assert string_to_list('556iss788') == ['556iss788']", "assert string_to_list('spythonring2') == ['spythonring2']", "assert string_to_list('string3') == ['string3']", "assert string_to_list('Pstring3ython') == ['Pstring3ython']", "assert string_to_list('My favorit5678e prol anguPythonagegramminlg lanage is Pgython') == ['My', 'favorit5678e', 'prol', 'anguPythonagegramminlg', 'lanage', 'is', 'Pgython']", "assert string_to_list('12334 5678 9101') == ['12334', '5678', '', '9101']", "assert string_to_list('prol') == ['prol']", "assert string_to_list('langua g5678e ng ') == ['langua', 'g5678e', '', 'ng', '', '', '', '']", "assert string_to_list('rfvorrrite') == ['rfvorrrite']", "assert string_to_list('PlanguPythonage') == ['PlanguPythonage']", "assert string_to_list('123My favorite prolanguPythonagegramminlg language is Python4 5678 9101') == ['123My', 'favorite', 'prolanguPythonagegramminlg', 'language', 'is', 'Python4', '5678', '9101']", "assert string_to_list('12 334 5678 9101') == ['12', '334', '5678', '', '9101']", "assert string_to_list('fvorofritre') == ['fvorofritre']", "assert string_to_list('192314') == ['192314']", "assert string_to_list('string1, st ring2,, string3') == ['string1,', '', '', '', '', 'st', 'ring2,,', '', '', '', '', '', '', 'string3']", "assert string_to_list('lanage') == ['lanage']", "assert string_to_list('gprolanguPythonagegramminlgvZ12n') == ['gprolanguPythonagegramminlgvZ12n']", "assert string_to_list('fvoorrite') == ['fvoorrite']", "assert string_to_list('st') == ['st']", "assert string_to_list('anguPythonagegramminlg') == ['anguPythonagegramminlg']", "assert string_to_list('12My favorite programming glanguage is Python34 5678string2,') == ['12My', 'favorite', 'programming', 'glanguage', 'is', 'Python34', '5678string2,']", "assert string_to_list('12python3My') == ['12python3My']", "assert string_to_list('languPythonage ngn ') == ['languPythonage', '', 'ngn', '', '', '', '']", "assert string_to_list('gg5678e') == ['gg5678e']", "assert string_to_list('rfvorrtristring1, st ring2,, string3te') == ['rfvorrtristring1,', '', '', '', '', 'st', 'ring2,,', '', '', '', '', '', '', 'string3te']", "assert string_to_list('languag5678e') == ['languag5678e']", "assert string_to_list('string1, st ring2,languag5678e ng string3') == ['string1,', '', '', '', '', 'st', 'ring2,languag5678e', '', 'ng', '', '', '', '', '', 'string3']", "assert string_to_list('5stprogriing1,stiringg2,strin3') == ['5stprogriing1,stiringg2,strin3']", "assert string_to_list('My favorite programming language is PytlanguPythonagehon') == ['My', 'favorite', 'programming', 'language', 'is', 'PytlanguPythonagehon']", "assert string_to_list('programmmipng') == ['programmmipng']", "assert string_to_list('flvorofrite') == ['flvorofrite']", "assert string_to_list('tt') == ['tt']", "assert string_to_list('1212314M3y') == ['1212314M3y']", "assert string_to_list('pronggrrammin12314g') == ['pronggrrammin12314g']", "assert string_to_list('string1, st ring2,, string3') == ['string1,', '', '', '', '', 'st', 'ring2,,', '', '', '', '', '', '', '', 'string3']", "assert string_to_list('123My favorite prolanguPythonagegramminlg language is Pythstring1, string2, string3on4 5678 9101') == ['123My', 'favorite', 'prolanguPythonagegramminlg', 'language', 'is', 'Pythstring1,', '', '', '', '', 'string2,', '', '', '', '', '', '', 'string3on4', '5678', '9101']", "assert string_to_list('fvsstring3e') == ['fvsstring3e']", "assert string_to_list('Pst3ring3ython') == ['Pst3ring3ython']", "assert string_to_list('string1, st ring2,languag5678e ng string') == ['string1,', '', '', '', '', 'st', 'ring2,languag5678e', '', 'ng', '', '', '', '', '', 'string']", "assert string_to_list('lan12334 5678 9101gua g5678e ng ') == ['lan12334', '5678', '', '9101gua', 'g5678e', '', 'ng', '', '', '', '']", "assert string_to_list('faorite') == ['faorite']", "assert string_to_list('91nstring1,string2,string301') == ['91nstring1,string2,string301']", "assert string_to_list('prrfvorrtristring1, st ring2,, string3teol') == ['prrfvorrtristring1,', '', '', '', '', 'st', 'ring2,,', '', '', '', '', '', '', 'string3teol']", "assert string_to_list('556667string1,string2,string3') == ['556667string1,string2,string3']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the element that appears only once in a sorted array.\nassert search([1,1,2,2,3]) == 3\nYour code should pass the test:\nassert search([1,1,2,2,3]) == 3", "test_list": [ "assert search([1,1,2,2,3]) == 3", "assert search([1,1,3,3,4,4,5,5,7,7,8]) == 8", "assert search([1,2,2,3,3,4,4]) == 1", "assert search([]) == 0", "assert search([2, 2, 2, 2, 2, 2]) == 0", "assert search([1, 1, 1, 1, 1, 1]) == 0", "assert search([6]) == 6", "assert search([1, 2, 3, 4, 5, 6]) == 7", "assert search([1, 1, 2, 2, 3, 3, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13, 14, 14, 15]) == 11", "assert search([5]) == 5", "assert search([1, 1, 4, 4, 5, 6]) == 3", "assert search([0, 1, 4, 4, 5, 6]) == 2", "assert search([4, 5, 5]) == 4", "assert search([4, 4, 5]) == 5", "assert search([1, 1, 4, 4, 6]) == 6", "assert search([0, 1, 4, 4, 5]) == 4", "assert search([2, 2, 2, 2, 2]) == 2", "assert search([1, 1, 4, 6]) == 2", "assert search([0, 4, 4, 5, 6]) == 3", "assert search([4, 5]) == 1", "assert search([1, 1, 4, 4, 5]) == 5", "assert search([1, 1, 1, 1, 1]) == 1", "assert search([1, 2, 4, 6]) == 1", "assert search([5, 5]) == 0", "assert search([4, 5, 5, 5]) == 1", "assert search([1, 1, 1, 1, 1, 1, 1]) == 1", "assert search([1, 1, 1, 1, 1, 1, 1, 1]) == 0", "assert search([2, 2, 2, 2, 2, 2, 2, 2]) == 0", "assert search([2, 2, 2, 2, 2, 2, 2, 2, 2]) == 2", "assert search([1, 1, 1]) == 1", "assert search([1, 1, 4, 4]) == 0", "assert search([0, 1, 4, 4, 8]) == 9", "assert search([2, 2, 2, 2, 2, 2, 2, 15]) == 13", "assert search([4, 4, 4]) == 4", "assert search([1, 1, 2, 2, 3, 3, 4, 5, 5, 6, 6, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13, 14, 14, 15]) == 12", "assert search([2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2]) == 2", "assert search([False, False]) == 0", "assert search([6, 6, 6]) == 6", "assert search([1, 4, 4]) == 1", "assert search([5, 5, 5]) == 5", "assert search([4, 5, 5, 5, 5]) == 4", "assert search([1, 4]) == 5", "assert search([1, 1]) == 0", "assert search([6, 6]) == 0", "assert search([1, 1, 1, 1, 1, 1, 1, 1, 1]) == 1", "assert search([2, 2, 2, 2, 2, 2, 2, 2, 15]) == 15", "assert search([1, 2, 3, 3, 4, 5, 6]) == 4", "assert search([0, 4, 4, 8]) == 8", "assert search([1, 1, 4]) == 4", "assert search([1, 4, 6]) == 3", "assert search([0, 1, 1, 1, 1, 1, 1, 1, 1]) == 0", "assert search([4, 6]) == 2", "assert search([False, True]) == 1", "assert search([1, 1, 11]) == 11", "assert search([1, 1, 2]) == 2", "assert search([0, 1, 4, 8]) == 13", "assert search([0, 4, 4, 4, 6, 6]) == 4", "assert search([2, 2, 2, 2, 2, 2, 2, 2, 2, 15]) == 13", "assert search([1, 5]) == 4", "assert search([4, 4, 4, 4, 4]) == 4", "assert search([3, 5, 5]) == 3", "assert search([5, 5, 5, 5]) == 0", "assert search([1, 1, 2, 2, 3, 3, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13, 14, 15, 15]) == 10", "assert search([1, 3, 5, 5, 6]) == 4", "assert search([0, 4, 8]) == 12", "assert search([4, 4, 6]) == 6", "assert search([0, 1, 4, 4, 6]) == 7", "assert search([1, 1, 4, 4, 5, 5]) == 0", "assert search([1, 1, 2, 2]) == 0", "assert search([0, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 1", "assert search([1, 1, 11, 11]) == 0", "assert search([True]) == 1", "assert search([4, 4]) == 0", "assert search([False, True, True, True, True, True]) == 1", "assert search([5, 11]) == 14", "assert search([1, 1, 1, 4, 4]) == 1", "assert search([4, 4, 4, 4]) == 0", "assert search([2, 2, 2, 2, 2, 2, 2]) == 2", "assert search([1, 2, 4, 6, 6]) == 7", "assert search([4, 4, 8]) == 8", "assert search([0, 2, 2, 2, 2]) == 0", "assert search([1, 2, 3, 3, 11]) == 8", "assert search([4, 4, 6, 6]) == 0", "assert search([3, 5]) == 6", "assert search([2, 5]) == 7", "assert search([0, 1, 1, 1, 1, 1, 1, 1]) == 1", "assert search([3, 6]) == 5", "assert search([1, 4, 4, 6]) == 7", "assert search([0, 2, 2, 2]) == 2", "assert search([0, 1, 1]) == 0", "assert search([1, 3, 4, 7]) == 1", "assert search([1, 4, 6, 6]) == 5", "assert search([1, 4, 4, 4]) == 5", "assert search([False]) == 0", "assert search([1, 1, 10, 11, 11]) == 10", "assert search([0, 4, 5, 5]) == 4", "assert search([0, 1, 4, 5, 6]) == 6", "assert search([1, 4, 4, 5, 6]) == 2", "assert search([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 1", "assert search([1, 1, 6, 6, 6]) == 6", "assert search([4]) == 4", "assert search([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 0", "assert search([1, 1, 12]) == 12", "assert search([0, 2, 6, 6]) == 2", "assert search([9]) == 9", "assert search([1, 1, 1, 4, 4, 4]) == 5", "assert search([1, 11, 11]) == 1", "assert search([1, 1, 4, 4, 5, 9]) == 12", "assert search([3, 6, 6]) == 3", "assert search([1, 3, 3, 5, 13]) == 9" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort a given matrix in ascending order according to the sum of its rows.\nassert sort_matrix([[1, 2, 3], [2, 4, 5], [1, 1, 1]])==[[1, 1, 1], [1, 2, 3], [2, 4, 5]]\nYour code should pass the test:\nassert sort_matrix([[1, 2, 3], [2, 4, 5], [1, 1, 1]])==[[1, 1, 1], [1, 2, 3], [2, 4, 5]]", "test_list": [ "assert sort_matrix([[1, 2, 3], [2, 4, 5], [1, 1, 1]])==[[1, 1, 1], [1, 2, 3], [2, 4, 5]]", "assert sort_matrix([[1, 2, 3], [-2, 4, -5], [1, -1, 1]])==[[-2, 4, -5], [1, -1, 1], [1, 2, 3]]", "assert sort_matrix([[5,8,9],[6,4,3],[2,1,4]])==[[2, 1, 4], [6, 4, 3], [5, 8, 9]]", "assert sort_matrix([[-5, -8, -9], [-6, -4, -3], [-2, -1, -4]]) == [[-5, -8, -9], [-6, -4, -3], [-2, -1, -4]]", "assert sort_matrix([[1000000, 999999, 999998], [999997, 999996, 999995], [999994, 999993, 999992]]) == [[999994, 999993, 999992], [999997, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[999999999, 999999998, 999999997], [999999996, 999999995, 999999994], [999999993, 999999992, 999999991]]) == [[999999993, 999999992, 999999991], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [3, 2, 1], [0, -1, -2], [-3, -4, -5]]) == [[-3, -4, -5], [0, -1, -2], [3, 2, 1], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[5, -2, 4], [1, -3, 7], [-6, 8, -1], [0, 9, -5]]) == [[-6, 8, -1], [0, 9, -5], [1, -3, 7], [5, -2, 4]]", "assert sort_matrix([[11, -5, 23, 0], [6, 9, -8, 15], [-2, 10, 7, -4], [20, -3, 1, 18]]) == [[-2, 10, 7, -4], [6, 9, -8, 15], [11, -5, 23, 0], [20, -3, 1, 18]]", "assert sort_matrix([[999999999, 999999998, 999999997], [999999996, 999999995, 999999994], [999999993, 999999992, 999999991], [999999999, 999999998, 999999997]]) == [[999999993, 999999992, 999999991], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997]]", "assert sort_matrix([[1000000, 999999, 999998], [999997, 999996, 999995], [999994, 999993, 999992], [999997, 999996, 999995]]) == [[999994, 999993, 999992], [999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[-2, 10, 7, -4], [20, -3, 1, 18]]) == [[-2, 10, 7, -4], [20, -3, 1, 18]]", "assert sort_matrix([[1, -3, 7], [-6, 8, -1]]) == [[-6, 8, -1], [1, -3, 7]]", "assert sort_matrix([[6, 5, 4], [3, 2, 1], [0, -1, -2], [-3, -4, -5]]) == [[-3, -4, -5], [0, -1, -2], [3, 2, 1], [6, 5, 4]]", "assert sort_matrix([[-5, -8, -9], [-6, -4, -3], [-5, -8, -9]]) == [[-5, -8, -9], [-5, -8, -9], [-6, -4, -3]]", "assert sort_matrix([[-5, -8, -9]]) == [[-5, -8, -9]]", "assert sort_matrix([[1000000, 999999, 999998], [999994, 999993, 999999998], [999997, 999996, 999995], [999994, 999993, 999999998], [999997, 999996, 999995]]) == [[999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998], [999994, 999993, 999999998], [999994, 999993, 999999998]]", "assert sort_matrix([[999999999, 999999998, 999999997], [999999996, 999999995, 999999994], [999999993, 999999992, 999999991], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997]]) == [[999999993, 999999992, 999999991], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997]]", "assert sort_matrix([[999999999, 999999998, 999999997], [999999996, 999999995, 999999994], [999999993, 999999992, 999999991], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997]]) == [[999999993, 999999992, 999999991], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997]]", "assert sort_matrix([[-5, -8, -9, -9]]) == [[-5, -8, -9, -9]]", "assert sort_matrix([[-6, -4, -3], [-2, -1, -4]]) == [[-6, -4, -3], [-2, -1, -4]]", "assert sort_matrix([[-5, -8, -9, -9, -5]]) == [[-5, -8, -9, -9, -5]]", "assert sort_matrix([[-5, -8, -9, -9], [-5, -8, -9, -9]]) == [[-5, -8, -9, -9], [-5, -8, -9, -9]]", "assert sort_matrix([[20, -3, 1, 18]]) == [[20, -3, 1, 18]]", "assert sort_matrix([[6, 5, 4], [3, 2, 1], [0, -1, -2], [-3, -4, -5], [0, -1, -2]]) == [[-3, -4, -5], [0, -1, -2], [0, -1, -2], [3, 2, 1], [6, 5, 4]]", "assert sort_matrix([[1000000, 999999, 999998], [999997, 999996, 999995], [999994, 999993, 999992], [1000000, 999999, 999998]]) == [[999994, 999993, 999992], [999997, 999996, 999995], [1000000, 999999, 999998], [1000000, 999999, 999998]]", "assert sort_matrix([[3, 2, 1], [0, -1, -2], [-3, -4, -5], [0, -1, -2]]) == [[-3, -4, -5], [0, -1, -2], [0, -1, -2], [3, 2, 1]]", "assert sort_matrix([[-6, -4, -3], [-2, -1, -4], [-2, -1, -4]]) == [[-6, -4, -3], [-2, -1, -4], [-2, -1, -4]]", "assert sort_matrix([[-5, -8, -9], [-2, -1, -4]]) == [[-5, -8, -9], [-2, -1, -4]]", "assert sort_matrix([[999995, -1, -2], [6, 5, 4], [3, 2, 1], [999995, -1, -2], [-3, -4, -5], [999995, -1, -2]]) == [[-3, -4, -5], [3, 2, 1], [6, 5, 4], [999995, -1, -2], [999995, -1, -2], [999995, -1, -2]]", "assert sort_matrix([[-5, -8, -9], [999999999, -1, -4]]) == [[-5, -8, -9], [999999999, -1, -4]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]) == [[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]", "assert sort_matrix([[1000000, 999999, 999998], [999997, 999996, 999995]]) == [[999997, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[-5, -8, -9, -9, -5], [-5, -8, -9, -9, -5]]) == [[-5, -8, -9, -9, -5], [-5, -8, -9, -9, -5]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]) == [[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]", "assert sort_matrix([[-5, -8, -9], [-6, -4, -3], [-5, -8, -9], [-5, -8, -9]]) == [[-5, -8, -9], [-5, -8, -9], [-5, -8, -9], [-6, -4, -3]]", "assert sort_matrix([[999994, 999993, 1], [1000000, 999999, 999998], [999994, 999993, 1], [999997, 999996, 999995], [999994, 999993, 1], [999997, 999996, 999995]]) == [[999994, 999993, 1], [999994, 999993, 1], [999994, 999993, 1], [999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[5, -2, 4], [-6, 8, -1], [0, 9, -5]]) == [[-6, 8, -1], [0, 9, -5], [5, -2, 4]]", "assert sort_matrix([[1000000, 999999, 999998], [999997, 999996, 999995], [999994, 999993, 999992], [999997, 999996, 999995], [1000000, 999999, 999998]]) == [[999994, 999993, 999992], [999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998], [1000000, 999999, 999998]]", "assert sort_matrix([[-5, -8, 999999991], [-6, -4, -3], [-5, -8, 999999991], [-5, -8, 999999991]]) == [[-6, -4, -3], [-5, -8, 999999991], [-5, -8, 999999991], [-5, -8, 999999991]]", "assert sort_matrix([[999994, 999993, 1], [1000000, 999999, 999998], [999994, 999993, 1], [999997, 999996, 999995], [999997, 999996, 999995], [999997, 999996, 999995]]) == [[999994, 999993, 1], [999994, 999993, 1], [999997, 999996, 999995], [999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[-9, 20, -3, 1, 18]]) == [[-9, 20, -3, 1, 18]]", "assert sort_matrix([[5, -2, 4], [-6, 8, -1]]) == [[-6, 8, -1], [5, -2, 4]]", "assert sort_matrix([[999994, 999993, 1], [1000000, 999999, 999998], [999994, 999993, 1], [999995, 999996, 999995], [999995, 999996, 999995], [999995, 999996, 999995]]) == [[999994, 999993, 1], [999994, 999993, 1], [999995, 999996, 999995], [999995, 999996, 999995], [999995, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[999999996, 999999995, 999999994], [999999993, 999999992, 999999991], [999999999, 999999998, 999999997]]) == [[999999993, 999999992, 999999991], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [3, 2, 1], [0, -1, -2], [-3, -4, -5], [3, 2, 1]]) == [[-3, -4, -5], [0, -1, -2], [3, 2, 1], [3, 2, 1], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[0, 0, -6, 8, -1], [0, 0, -6, 8, -1], [0, 0, -6, 8, -1]]) == [[0, 0, -6, 8, -1], [0, 0, -6, 8, -1], [0, 0, -6, 8, -1]]", "assert sort_matrix([[-1, 999999999, -1, -4], [-1, 999999999, -1, -4]]) == [[-1, 999999999, -1, -4], [-1, 999999999, -1, -4]]", "assert sort_matrix([[6, 5, 4], [3, 2, 1], [0, -1, -2], [-3, -4, -5], [3, 2, 1]]) == [[-3, -4, -5], [0, -1, -2], [3, 2, 1], [3, 2, 1], [6, 5, 4]]", "assert sort_matrix([[-5, -8, 2, -9], [-5, -8, 2, -9], [-5, -8, 2, -9]]) == [[-5, -8, 2, -9], [-5, -8, 2, -9], [-5, -8, 2, -9]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [0, -1, -2], [-3, -4, -5], [3, 2, 1], [3, 2, 1]]) == [[-3, -4, -5], [0, -1, -2], [3, 2, 1], [3, 2, 1], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[-5, -8, -9, -9], [-5, -8, -9, -9], [-5, -8, -9, -9]]) == [[-5, -8, -9, -9], [-5, -8, -9, -9], [-5, -8, -9, -9]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [3, 2, 1], [0, -1, -2], [-3, -4, -5], [0, -1, -2]]) == [[-3, -4, -5], [0, -1, -2], [0, -1, -2], [3, 2, 1], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[-7, -4, -3], [-7, -4, -3]]) == [[-7, -4, -3], [-7, -4, -3]]", "assert sort_matrix([[999999996, 999999994, 999999994], [999999993, 999999992, 999999991]]) == [[999999993, 999999992, 999999991], [999999996, 999999994, 999999994]]", "assert sort_matrix([[-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991]]) == [[-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991], [-5, 999999995, 10, 999999991]]", "assert sort_matrix([[0, 6, 0, -6, 8, -1], [0, 6, 0, -6, 8, -1], [0, 6, 0, -6, 8, -1]]) == [[0, 6, 0, -6, 8, -1], [0, 6, 0, -6, 8, -1], [0, 6, 0, -6, 8, -1]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [0, -1, -2], [-3, -4, -5], [5, 2, 1], [5, 2, 1], [0, -1, -2]]) == [[-3, -4, -5], [0, -1, -2], [0, -1, -2], [5, 2, 1], [5, 2, 1], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5]]) == [[-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5], [-5, 999999995, 10, 999999991, -5]]", "assert sort_matrix([[0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1]]) == [[0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1]]", "assert sort_matrix([[-5, -8, -9, -5]]) == [[-5, -8, -9, -5]]", "assert sort_matrix([[-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6]]) == [[-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6], [-9, -5, -8, -8, -9, 18, -8, -6]]", "assert sort_matrix([[6, 5, 4], [0, -1, -2], [-3, -4, -5], [0, -1, -2]]) == [[-3, -4, -5], [0, -1, -2], [0, -1, -2], [6, 5, 4]]", "assert sort_matrix([[10, -1, -2], [3, 2, 1], [10, -1, -2], [10, -1, -2], [-3, -4, -5], [10, -1, -2], [10, -1, -2]]) == [[-3, -4, -5], [3, 2, 1], [10, -1, -2], [10, -1, -2], [10, -1, -2], [10, -1, -2], [10, -1, -2]]", "assert sort_matrix([[1000000, 999999, 999998], [999994, 999993, 999999998], [999997, 999996, 999995], [999994, 999993, 999999998], [999997, 999996, 999995], [999994, 999993, 999999998]]) == [[999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998], [999994, 999993, 999999998], [999994, 999993, 999999998], [999994, 999993, 999999998]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [0, -1, -2], [3, 2, 1], [3, 2, 1]]) == [[0, -1, -2], [3, 2, 1], [3, 2, 1], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[999997, 999996, 999995]]) == [[999997, 999996, 999995]]", "assert sort_matrix([[20, -3, 18]]) == [[20, -3, 18]]", "assert sort_matrix([[999999996, 999999995, 999999994], [-1, 999999992, 999999991], [-1, 999999992, 999999991], [999999999, 999999998, 999999997]]) == [[-1, 999999992, 999999991], [-1, 999999992, 999999991], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8]]) == [[-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8]]", "assert sort_matrix([[-5, -9, -8, -9, -9, -5], [-5, -9, -8, -9, -9, -5]]) == [[-5, -9, -8, -9, -9, -5], [-5, -9, -8, -9, -9, -5]]", "assert sort_matrix([[5, -2, 4], [-6, 8, -1], [5, -2, 4]]) == [[-6, 8, -1], [5, -2, 4], [5, -2, 4]]", "assert sort_matrix([[999994, 999993, 1], [999994, 999993, 1], [999995, 999996, 999995], [999995, 999996, 999995], [999995, 999996, 999995]]) == [[999994, 999993, 1], [999994, 999993, 1], [999995, 999996, 999995], [999995, 999996, 999995], [999995, 999996, 999995]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8]]) == [[-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8], [-5, -8, -8, -9, 18, -8, -6, -8]]", "assert sort_matrix([[-5, -9, 2, -9], [-5, -9, 2, -9], [-5, -9, 2, -9]]) == [[-5, -9, 2, -9], [-5, -9, 2, -9], [-5, -9, 2, -9]]", "assert sort_matrix([[20, -3, 1, 18], [20, -3, 1, 18]]) == [[20, -3, 1, 18], [20, -3, 1, 18]]", "assert sort_matrix([[-3, 1, 18], [-3, 1, 18], [-3, 1, 18], [-3, 1, 18]]) == [[-3, 1, 18], [-3, 1, 18], [-3, 1, 18], [-3, 1, 18]]", "assert sort_matrix([[999997, 999996, 999995], [999994, 10, 999992], [999997, 999996, 999995]]) == [[999994, 10, 999992], [999997, 999996, 999995], [999997, 999996, 999995]]", "assert sort_matrix([[9, 8, 7], [6, 5, 4], [0, -1, -2], [-3, -4, -5]]) == [[-3, -4, -5], [0, -1, -2], [6, 5, 4], [9, 8, 7]]", "assert sort_matrix([[0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1]]) == [[0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1], [0, 3, 3, -6, 8, -1]]", "assert sort_matrix([[-5, -8, -9], [-5, -8, -9]]) == [[-5, -8, -9], [-5, -8, -9]]", "assert sort_matrix([[-1, 999999999, -1, 2, -4, 2], [-1, 999999999, -1, 2, -4, 2], [-1, 999999999, -1, 2, -4, 2]]) == [[-1, 999999999, -1, 2, -4, 2], [-1, 999999999, -1, 2, -4, 2], [-1, 999999999, -1, 2, -4, 2]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]) == [[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]", "assert sort_matrix([[-5, -8, -9], [-6, -4, -3], [-2, -1, -4], [-2, -1, -4]]) == [[-5, -8, -9], [-6, -4, -3], [-2, -1, -4], [-2, -1, -4]]", "assert sort_matrix([[1000000, 999999, 999998], [999997, 999996, 999995], [1000000, 999999, 999998]]) == [[999997, 999996, 999995], [1000000, 999999, 999998], [1000000, 999999, 999998]]", "assert sort_matrix([[-6, 8, -1, -1]]) == [[-6, 8, -1, -1]]", "assert sort_matrix([[9, 8, 7], [0, -1, -2], [-3, -4, -5]]) == [[-3, -4, -5], [0, -1, -2], [9, 8, 7]]", "assert sort_matrix([[0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8]]) == [[0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8], [0, 999999992, 0, -6, 8, -1, 8]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9]]) == [[-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9]]", "assert sort_matrix([[999999999, 999999998, 999999997], [999999996, 999999995, 999999994], [999999993, 999999992, 999999991], [999999999, 999999998, 999999997], [999999996, 999999995, 999999994]]) == [[999999993, 999999992, 999999991], [999999996, 999999995, 999999994], [999999996, 999999995, 999999994], [999999999, 999999998, 999999997], [999999999, 999999998, 999999997]]", "assert sort_matrix([[-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8]]) == [[-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8], [-8, -8, -9, 18, -8, -6, -8]]", "assert sort_matrix([[6, 5, 4], [0, 0, -2], [3, 2, 1], [0, 0, -2], [-3, -4, -5], [0, 0, -2]]) == [[-3, -4, -5], [0, 0, -2], [0, 0, -2], [0, 0, -2], [3, 2, 1], [6, 5, 4]]", "assert sort_matrix([[-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18]]) == [[-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18], [-2, 2, -3, 1, 18]]", "assert sort_matrix([[11, -5, 23, 0], [-2, 10, 7, -4]]) == [[-2, 10, 7, -4], [11, -5, 23, 0]]", "assert sort_matrix([[-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10]]) == [[-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10], [-5, 999999995, 10, 999999991, 999999995, 10]]", "assert sort_matrix([[8, 1, 7], [8, 1, 7], [8, 1, 7], [-6, 8, -1]]) == [[-6, 8, -1], [8, 1, 7], [8, 1, 7], [8, 1, 7]]", "assert sort_matrix([[-1, 999999999, -1, -4], [-1, 999999999, -1, -4], [-1, 999999999, -1, -4]]) == [[-1, 999999999, -1, -4], [-1, 999999999, -1, -4], [-1, 999999999, -1, -4]]", "assert sort_matrix([[-5, -8, -9], [-6, -4, -3], [-2, -1, -4], [-5, -8, -9]]) == [[-5, -8, -9], [-5, -8, -9], [-6, -4, -3], [-2, -1, -4]]", "assert sort_matrix([[-4, -3], [-4, -3], [-4, -3]]) == [[-4, -3], [-4, -3], [-4, -3]]", "assert sort_matrix([[0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1]]) == [[0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1], [0, 3, -6, 8, -1]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]) == [[-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6], [-5, -8, -8, -9, 18, -8, -6]]", "assert sort_matrix([[999994, 999993, 1], [1000000, 999999, 999998], [999997, 999996, 999995], [999994, 999993, 1], [999997, 999996, 999995]]) == [[999994, 999993, 1], [999994, 999993, 1], [999997, 999996, 999995], [999997, 999996, 999995], [1000000, 999999, 999998]]", "assert sort_matrix([[-1, 999999999, -1, 2, -4, 2], [-1, 999999999, -1, 2, -4, 2]]) == [[-1, 999999999, -1, 2, -4, 2], [-1, 999999999, -1, 2, -4, 2]]", "assert sort_matrix([[999999998, -8, -8, -9, 18, -8, -6], [999999998, -8, -8, -9, 18, -8, -6]]) == [[999999998, -8, -8, -9, 18, -8, -6], [999999998, -8, -8, -9, 18, -8, -6]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9]]) == [[-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9], [-5, -8, -8, -9, 18, -8, 20, -8, 11, -9]]", "assert sort_matrix([[-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9]]) == [[-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9], [-5, -8, -7, -9, 18, -8, -6, -8, -9]]", "assert sort_matrix([[-9, 20, -3, 1, 1000000, 18]]) == [[-9, 20, -3, 1, 1000000, 18]]", "assert sort_matrix([[-5, -8, 2], [-5, -8, 2], [-5, -8, 2]]) == [[-5, -8, 2], [-5, -8, 2], [-5, -8, 2]]", "assert sort_matrix([[-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9]]) == [[-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9], [-5, -8, -8, -9, 18, -8, -6, -8, -9]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum absolute product between numbers in pairs of tuples within a given list.\nassert max_product_tuple([(2, 7), (2, 6), (1, 8), (4, 9)] )==36\nYour code should pass the test:\nassert math.isclose(max_product_tuple([(2, 7), (2, 6), (1, 8), (4, 9)]), 36, rel_tol=0.001)", "test_list": [ "assert math.isclose(max_product_tuple([(2, 7), (2, 6), (1, 8), (4, 9)]), 36, rel_tol=0.001)", "assert math.isclose(max_product_tuple([(10,20), (15,2), (5,10)] ), 200, rel_tol=0.001)", "assert math.isclose(max_product_tuple([(11,44), (10,15), (20,5), (12, 9)] ), 484, rel_tol=0.001)", "assert max_product_tuple([(-10, 20), (15, -2), (-5, 10)]) == 200", "assert max_product_tuple([(1000000, 500000), (2000000, 1000000), (3000000, 1500000)]) == 4500000000000", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(-10, 0), (0, 5)]) == 0", "assert max_product_tuple([(-100, 100), (0, 10)]) == 10000", "assert max_product_tuple([(0, -100), (0, 100)]) == 0", "assert max_product_tuple([(-1000000, 1000000), (0, 100000)]) == 1000000000000", "assert max_product_tuple([(1, 0), (-0.5, 0.5), (2, -2)]) == 4", "assert max_product_tuple([(0.1, 0.1), (0.5, -0.5), (0.2, 0.2)]) == 0.25", "assert max_product_tuple([(-9999999, 9999999), (1e-06, 1000000)]) == 99999980000001", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(-1000000, -1000000), (-999, 0)]) == 1000000000000", "assert max_product_tuple([(0, 0)]) == 0", "assert max_product_tuple([(-1000000, 1000000), (0, 99999)]) == 1000000000000", "assert max_product_tuple([(-10, 20), (15, -2)]) == 200", "assert max_product_tuple([(0.5, -0.5), (0.2, 0.2)]) == 0.25", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(-1000001, -1000000), (0, 100000)]) == 1000001000000", "assert max_product_tuple([(-999, 0)]) == 0", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(-10, 20), (15, -2), (-5, 9), (-5, 10)]) == 200", "assert max_product_tuple([(0.5, -0.5), (0.2, 0.2), (0.5, -0.5)]) == 0.25", "assert max_product_tuple([(10, -1000000)]) == 10000000", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(-10, 20)]) == 200", "assert max_product_tuple([(0.1, 0.1), (0.5, 0.1), (0.2, 0.2)]) == 0.05", "assert max_product_tuple([(-10, 0), (0, 100000)]) == 0", "assert max_product_tuple([(-10, 20), (100000, -2)]) == 200000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(3000000, 1500000)]) == 4500000000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(-10, 20), (-10, 20)]) == 200", "assert max_product_tuple([(-10, 20), (15, -2), (15, -2)]) == 200", "assert max_product_tuple([(-9, 20)]) == 180", "assert max_product_tuple([(-100, 100), (0, 10), (0, 10)]) == 10000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000001, 1000000), (-1000000000, 1000000), (1000000, -1000000000)]) == 1000000001000000", "assert max_product_tuple([(0.5, -0.5), (0.2, 0.2), (0.5, -0.5), (0.2, 0.2)]) == 0.25", "assert max_product_tuple([(-100, 100)]) == 10000", "assert max_product_tuple([(0.1, 0.1), (0.5, 0.1), (0.2, 0.2), (0.1, 0.1)]) == 0.05", "assert max_product_tuple([(-999, 0), (-999, 0)]) == 0", "assert max_product_tuple([(10, -1000001)]) == 10000010", "assert max_product_tuple([(-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(-10, 20), (15, -2), (-5, 9), (-5, 10), (-5, 9)]) == 200", "assert max_product_tuple([(-2, 0), (0, 5)]) == 0", "assert max_product_tuple([(-1000000000, 1000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -1000000000), (1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(-10, 20), (100000, -2), (-10, 20)]) == 200000", "assert max_product_tuple([(0.1, 0.1), (0.5, -0.5), (0.1, 0.1), (0.1, 0.1)]) == 0.25", "assert max_product_tuple([(0, -101), (0, -100), (0, 100), (0, -100), (0, 100)]) == 0", "assert max_product_tuple([(1000000, -1000000000), (9999999, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -1000000000)]) == 9999999000000000", "assert max_product_tuple([(-10, 20), (15, -2), (-5, 9), (-5, 10), (-5, 9), (-5, 9)]) == 200", "assert max_product_tuple([(0, 100000), (0, 100000)]) == 0", "assert max_product_tuple([(1000000, 9999999), (1000000, 500000), (2000000, 1000000), (3000000, 1500000), (3000000, 1500000)]) == 9999999000000", "assert max_product_tuple([(-10, 20), (15, -2), (-5, 9)]) == 200", "assert max_product_tuple([(15, -2), (-5, 9), (-5, 10), (-5, 9), (-5, 9)]) == 50", "assert max_product_tuple([(-10, 20), (-10, 20), (-10, 20)]) == 200", "assert max_product_tuple([(1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (3000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, 0), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(15, -2), (-5, 9)]) == 45", "assert max_product_tuple([(0.1, 0.1), (0.5, 0.1), (0.2, 0.2), (0.1, 0.1), (0.5, 0.1)]) == 0.05", "assert max_product_tuple([(0.2, 0.2), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(0.1, 0.1), (0.5, 0.1), (0.1, 0.14655870166177412), (0.2, 0.2)]) == 0.05", "assert max_product_tuple([(0, 100000)]) == 0", "assert max_product_tuple([(0.1, 0.1), (0.2, 0.2), (0.1, 0.1), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(0.1, 0.1), (0.2, 0.2), (0.1, 0.1), (0.2, 0.2), (0.1, 0.1)]) == 0.04000000000000001", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000001, 1000000), (-1000000000, 1000000), (1000000, -1000000000), (-1000000001, 1000000)]) == 1000000001000000", "assert max_product_tuple([(0.5, -0.5)]) == 0.25", "assert max_product_tuple([(1, 0), (-0.5, 0.5), (2, -2), (2, -2)]) == 4", "assert max_product_tuple([(1000000, 500000), (2000000, 1000000), (3000000, 1500000), (2000000, 1000000)]) == 4500000000000", "assert max_product_tuple([(0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000001, 1000000), (-1000000000, 1000000), (1000000, -1000000000), (-1000000001, 1000000), (-1000000001, 1000000)]) == 1000000001000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -999), (1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000001, 1000000), (-1000000000, 1000000), (1000000, -1000000000), (1000000, -1000000000)]) == 1000000001000000", "assert max_product_tuple([(0.1, 0.1), (0.5, -0.5), (0.1, 0.1), (0.1, 0.1), (0.5, -0.5)]) == 0.25", "assert max_product_tuple([(0.1, 0.1), (0.5, 1e-06), (0.5, -0.5), (0.1, 0.1), (0.1, 0.1), (0.5, -0.5)]) == 0.25", "assert max_product_tuple([(-2, 0), (0, 5), (0, 5)]) == 0", "assert max_product_tuple([(1000000, -1000000000), (9999999, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (9999999, 10), (-1000000000, 1000000), (1000000, -1000000000)]) == 9999999000000000", "assert max_product_tuple([(-10, 0), (-10, 0)]) == 0", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (3000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -1000000000), (1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(0.14228615811571196, 0.1), (0.5, 0.1), (0.2, 0.2)]) == 0.05", "assert max_product_tuple([(10, -1000000), (10, -1000000)]) == 10000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 999999), (-1000000001, 1000000), (-1000000000, 1000000), (1000000, -1000000000)]) == 1000000001000000", "assert max_product_tuple([(-1000000, 1000000), (0, 99999), (-1000000, 1000000)]) == 1000000000000", "assert max_product_tuple([(-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(0.2, 0.2), (0.2, 0.2), (0.2, 0.2), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(-10, 20), (15, -2), (14, -2)]) == 200", "assert max_product_tuple([(0, 10), (-100, 100), (0, 10), (0, 10)]) == 10000", "assert max_product_tuple([(0.1, 0.1), (0.5, -0.5), (0.1, 0.1), (0.1, 0.1), (0.5, -0.5), (0.1, 0.1)]) == 0.25", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(-10, 20), (15, -2), (-5, 9), (-5, 9)]) == 200", "assert max_product_tuple([(100000, -2), (-10, 20)]) == 200000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 0)]) == 1000000000000000", "assert max_product_tuple([(0, 99999), (-1000000, 1000000)]) == 1000000000000", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (1000000, -999999999), (-1000000000, 0)]) == 1000000000000000", "assert max_product_tuple([(0.14228615811571196, 0.1), (0.5, 0.1), (0.2, 0.2), (0.14228615811571196, 0.1)]) == 0.05", "assert max_product_tuple([(0.2, 0.2), (0.1, 0.1), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(1000000, -1000000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -999), (1000000, -1000000000)]) == 1000000000000000", "assert max_product_tuple([(100000, -2), (-10, 3000000), (100000, -2)]) == 30000000", "assert max_product_tuple([(0.2, 0.2), (0.2, 0.2), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(15, -2), (-5, 9), (-5, 10), (-5, 9), (-5, 9), (15, -2)]) == 50", "assert max_product_tuple([(15, -2), (-5, 9), (-5, 10), (-5, 9), (-5, 9), (15, -2), (-5, 9)]) == 50", "assert max_product_tuple([(1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1), (1, -1)]) == 1", "assert max_product_tuple([(100000, -2), (-10, 3000000), (100000, -2), (100000, -2)]) == 30000000", "assert max_product_tuple([(0.1, 0.1), (0.1, 0.1), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(-999, 0), (-999, 0), (-999, 0)]) == 0", "assert max_product_tuple([(0.1, 0.1), (0.5, -0.5), (0.1, 0.1)]) == 0.25", "assert max_product_tuple([(-1000000000, 1000000), (3000000, 1000000), (-1000000000, 1000000), (-1000000000, 1000000), (1000000, -1000000000), (1000000, -1000000000), (-1000000000, 1000000)]) == 1000000000000000", "assert max_product_tuple([(0.1, 0.1), (0.2, 0.2), (0.1, 0.1), (0.2, 0.2), (0.1, 0.1), (0.2, 0.2)]) == 0.04000000000000001", "assert max_product_tuple([(-10, 20), (15, -2), (-10, 21), (15, -2)]) == 210" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sum all amicable numbers from 1 to a specified number.\nassert amicable_numbers_sum(999)==504\nYour code should pass the test:\nassert amicable_numbers_sum(999)==504", "test_list": [ "assert amicable_numbers_sum(999)==504", "assert amicable_numbers_sum(9999)==31626", "assert amicable_numbers_sum(99)==0", "assert amicable_numbers_sum(True) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to get the angle of a complex number.\nassert math.isclose(angle_complex(0,1j), 1.5707963267948966, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(angle_complex(0,1j), 1.5707963267948966, rel_tol=0.001)", "test_list": [ "assert math.isclose(angle_complex(0,1j), 1.5707963267948966, rel_tol=0.001)", "assert math.isclose(angle_complex(2,1j), 0.4636476090008061, rel_tol=0.001)", "assert math.isclose(angle_complex(0,2j), 1.5707963267948966, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum difference between the number of 0s and number of 1s in any sub-string of the given binary string.\nassert find_length(\"11000010001\") == 6\nYour code should pass the test:\nassert find_length(\"11000010001\") == 6", "test_list": [ "assert find_length(\"11000010001\") == 6", "assert find_length(\"10111\") == 1", "assert find_length(\"11011101100101\") == 2", "assert find_length('') == 0", "assert find_length('0000000011111111') == 8", "assert find_length('000000111111') == 6", "assert find_length('0000001110000001111111') == 9", "assert find_length('00000011110000001111111') == 8", "assert find_length('000000000000111111111111') == 12", "assert find_length('00000000000011111111110000001111000000111111111') == 12", "assert find_length('00000011100000101111111') == 8", "assert find_length('000000100000011110000001111111110000001111111') == 13", "assert find_length('0000000000000111111111111') == 13", "assert find_length('100000011100000000111111111000000011111101') == 11", "assert find_length('0000000000001111111111000000111100000011110000001111000000111111111111') == 14", "assert find_length('0000000000001111111101111') == 12", "assert find_length('000000000000011111111110000001111000000111111111') == 13", "assert find_length('0000001000000001111111111111') == 13", "assert find_length('00000000000011111111110000000000000000001111111111111111000000111111111') == 20", "assert find_length('0000001111000000000000111100000011111111111111') == 16", "assert find_length('0000000000001111111111111') == 12", "assert find_length('00000000111000001011111111111111') == 10", "assert find_length('0000001011111') == 6", "assert find_length('0000000000111100000011111111111111') == 12", "assert find_length('00000001111111111110000000010000000000001111111111000000111100000011110000001111000000111111111111111111111111') == 21", "assert find_length('0000000111111101111') == 7", "assert find_length('000000011111111111100000000100000000000001111111111000000111100000011110000001111000000111111111111111111111111') == 22", "assert find_length('000000111110000001111111') == 7", "assert find_length('0000000000000000011111111110000000000000000001111111111111111000000111111111011110000001111111') == 25", "assert find_length('00000000000011111111111111') == 12", "assert find_length('00000000000000000111111111100000000000000000011111111111111110000001111111110111100000011111100000010000000011111111111111') == 25", "assert find_length('00000000011111111') == 9", "assert find_length('0000000100000011110000001111111110000001111111000000000001111111101111') == 15", "assert find_length('000000000000111111111100000000000000000011111111111111110000001') == 20", "assert find_length('000000111000001001111111') == 9", "assert find_length('000000000010111111100000001111111111111') == 10", "assert find_length('0000000100000011100000000111111111000000011111101000111100000011111111111111') == 17", "assert find_length('000011') == 4", "assert find_length('0000000111111111111000000001000000000000111111111100000011110000000000000000000001111111111000000000000000000111111111111111100000011111111101111000000111111111') == 40", "assert find_length('0000011') == 5", "assert find_length('00000011') == 6", "assert find_length('000000111100000010111111') == 8", "assert find_length('0000001110000010011111111') == 9", "assert find_length('00000000000000010000001111000000111111111000000111111111111111') == 22", "assert find_length('00000011100000010011111111') == 10", "assert find_length('000000111000000010011111111') == 11", "assert find_length('00000001111111111110000000010000000000000000000000001111111111000000000000000000111111111111111100000011111111101111111111000000111100000011110000001111000000111111111111111111111111') == 39", "assert find_length('1000000111000000001111111111000000011111101') == 11", "assert find_length('000000000000111000000111111110000001111000000111111111') == 15", "assert find_length('000000000000000111000000010011111111000111111111111') == 20", "assert find_length('00000001111111111110000000010000000000001111111111000000111100000000000000000000011111111110000000000000000001111101111111111100000011111111101111000000111111111') == 40", "assert find_length('000000100000011111111101000001111111') == 11", "assert find_length('0000000000001111111110000001110000000011111111110000000111111011111') == 14", "assert find_length('0000000111111111111000000001000000000000111111111100000011110000001111000000111100000011111111000000001110000010111111111111111111111111111111') == 23", "assert find_length('00000011100000110011111111') == 8", "assert find_length('00000011010000010011111111') == 10", "assert find_length('00000000000000111111111100000000000000000011111111111111110000001000011110000001111111') == 22", "assert find_length('0000000111111111111000000001000000000000011111111110000001111000000111100000011110000001111111111111111111') == 22", "assert find_length('00000000001111000000011111111111111') == 13", "assert find_length('000000001110000010111110000000111111111111000000001000000000000000000000000111111111100000000000000000011111111111111110000001111111110111111111100000011110000001111000000111111111111111111111111111111') == 39", "assert find_length('00000000000000011111111110000000011111111111100000000100000000000011111111110000001111000000111100000011110000001111111111111111111111110000011110000001111111110000111000000010011111111') == 22", "assert find_length('00000000111000001011111000000011111111111100000000100000000000000000000000011111111110000000000000000001111111111111111000000111111111101111111111000000111100000011110000001111111111111111111111111111111') == 39", "assert find_length('000000000000000000000111111111111000111111111100000000000000000011111111111111111000000111111111') == 21", "assert find_length('00001001110000001111111') == 8", "assert find_length('00000001111111111110000000010000000000000000011111111111100000000100000000000011111111110000001111000000000000000000000111111111100000000000000000011111011111111111000000111111111011110000001111111110001111111111000000111100000011110000001111000000111111111111111111111111') == 52", "assert find_length('10000001110000000010000000000000001000000111100000011111111100000011111111111111111111111000000000001111100000011111110011111101') == 32", "assert find_length('00000000000000011111111110000000011100000011111000000111111111111111100000000100000000000011111111110000001111000000111100000011110000001111111111111111111111110000011110000001111111110000111000000010011111111') == 22", "assert find_length('0000001110000001000000001111111111110000000010000000000001111111111000000111100000000000000000000011111111110000000000000000001111101111111111100000011111111101111000000111111111011111111') == 44", "assert find_length('0000001110000001001111111') == 10", "assert find_length('00000011110000000000001111000000111111000000111100000000000011110000001111111111111111111111') == 26", "assert find_length('0000000000001111111111000000000000000000111111011111111110000001') == 20", "assert find_length('0000001111000000000001111111111111') == 13", "assert find_length('0000001110000010011111') == 9", "assert find_length('000000011111111111100000000100000000000011111111110000000001111111111000000000000000000111111111111111100000011111111101111000000111111111') == 26", "assert find_length('0000001110000010111111') == 8", "assert find_length('0000000000000001111111111000000001110000000000011100000101111111011111000000111111111111111100000000100000000000011111111110000001111000000111100000011110000001111111111111111111111110000011110000001111111110000111000000010011111111') == 23", "assert find_length('00000000000010000000011100000101111100000001111111111110000000010000000000000000000000001111111111000000000000000000111111111111111100000011111111101111111111000000111100000011110000001111111111111111111111111111111111111111111') == 50", "assert find_length('00000011110000000000111111111111000000001000000000000111111111100000011110000001111000000111100000011111111000000001110000010111111111111111111111111111111000000001111111111111') == 23", "assert find_length('000000111000100110011111111') == 7", "assert find_length('00000010100000001111111011111111') == 12", "assert find_length('00000010000000011111111111000000000000111111111100000000000000000011111101111111111000000111') == 22", "assert find_length('00000000000011111111100000010000000011111111111111000000111100000011110000001111000000111111111111') == 16", "assert find_length('0000001010000000111111') == 12", "assert find_length('000000000000011111111100000010000000011111111111111000000111100000011110000001111000000111111111111') == 17", "assert find_length('0000000000000000000001111111111110001111111111000000000000000000111111111111111110000001111101111') == 21", "assert find_length('00000000000000000000011111111111100011111111110000000000000000001111111111111111110000001111101111') == 21", "assert find_length('0000000000000001111111111000000001110000000000011100000101111110000000100000000000011111111110000001111000000111100000011110000001111111111111111111111110000011110000001111111110000111000000010011111111') == 37", "assert find_length('000000000000011111111111') == 13", "assert find_length('0000001010000000000111000001011111111111111000001111111011111111') == 17", "assert find_length('0000000111111111111000000001000000000000111111111100000000011111111110000000000000000001111111111111111100000011111111101111000000111111111') == 26", "assert find_length('000000000000000111111111100000000111111111111100000000100000000000011111111110000001111000000111100000011110000001111111111111111111111110000011110000001111111110000111000000010011111111') == 21", "assert find_length('0000001111000000000011111111111100000000100000000000011111111110000001111000000111100000011110000001111111100000000111000001011111111111111111111111111111100000000111111000000000000100000000111000001011111000000011111111111100000000100000000000000000000000011111111110000000000000000001111111111111111000000111111111011111111110000001111000000111100000011111111111111111111111111111111111111111111111111') == 52", "assert find_length('000000000000111111111000000111000000001111111111000000001111000000000011111111111100000000100000000000011111111110000001111000000111100000011110000001111111100000000111000001011111111111111111111111111111100000000111111111111100000111111011111') == 29", "assert find_length('00000001111111111110000000010000000000001111111111000000111100000000000000000000011111111110000000000000000001111111111111111000000111111111011110000100111111111') == 40", "assert find_length('0000000011100000101111100000001111111111110000000010000000000000000000000001111111111000000000000000000111111111111111100000011111111101111111111000000111100000011110100000111111111111111111111111111111') == 39", "assert find_length('000000000111111111') == 9", "assert find_length('00000000000000000000000000111111111111000111111111100000000000000000011111111111111111000000111110111100000000000000000011111111111111110000001000011110000001111111') == 26", "assert find_length('00000111111') == 5", "assert find_length('0000000000000111000001011111111111111000011111111') == 15", "assert find_length('00000001111111111110000000010000000000001111111111000000111100000000000000000000000000000000001111111111000000001110000000000011100000101111110000000100000000000011111111110000001111000000111100000011110000001111111111111111111111110000011110000001111111110000111000000010011111111111101111111111100000011111111101111000000111111111') == 67", "assert find_length('0000001110000001001000000000000011111111000000000000000000000111111111111000111111111100000000000000000011111111111111111000000111110111111000000111100000010111111111111111') == 35", "assert find_length('1110000001010000000000111000001011111111111111000001111111011111111') == 17", "assert find_length('0000000000001111111110000000000000000000001111111111110001111111111000000000000000000111111111111111110000001111101111111') == 24", "assert find_length('0000001110000001111') == 9", "assert find_length('000000101101011') == 6" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of common divisors of two given numbers.\nassert sum(10,15) == 6\nYour code should pass the test:\nassert sum(10,15) == 6", "test_list": [ "assert sum(10,15) == 6", "assert sum(100,150) == 93", "assert sum(4,6) == 3" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to multiply two integers.\nassert multiply_int(10,20)==200\nYour code should pass the test:\nassert multiply_int(10,20)==200", "test_list": [ "assert multiply_int(10,20)==200", "assert multiply_int(5,10)==50", "assert multiply_int(4,8)==32", "assert multiply_int(10000000000000000, 9999999999999999) == 99999999999999990000000000000000", "assert multiply_int(999999999999999999, 999999999999999999) == 999999999999999998000000000000000001", "assert multiply_int(0, 999999999999999999) == 0", "assert multiply_int(-999999999999999999, 999999999999999999) == -999999999999999998000000000000000001", "assert multiply_int(9999999999999999, -999999999999999999) == -9999999999999998990000000000000001", "assert multiply_int(9999999999999999, 9999999999999999) == 99999999999999980000000000000001", "assert multiply_int(0, 0) == 0", "assert multiply_int(10000000000000000, 9999999999999998) == 99999999999999980000000000000000", "assert multiply_int(999999999999999998, 999999999999999998) == 999999999999999996000000000000000004", "assert multiply_int(999999999999999999, 999999999999999998) == 999999999999999997000000000000000002", "assert multiply_int(-999999999999999999, -999999999999999999) == 999999999999999998000000000000000001", "assert multiply_int(-999999999999999999, -1000000000000000000) == 999999999999999999000000000000000000", "assert multiply_int(0, 9999999999999999) == 0", "assert multiply_int(-999999999999999999, -999999999999999998) == 999999999999999997000000000000000002", "assert multiply_int(10000000000000000, 999999999999999999) == 9999999999999999990000000000000000", "assert multiply_int(10000000000000000, 10000000000000000) == 100000000000000000000000000000000", "assert multiply_int(1000000000000000000, 999999999999999999) == 999999999999999999000000000000000000", "assert multiply_int(10000000000000001, -999999999999999999) == -10000000000000000989999999999999999", "assert multiply_int(1000000000000000000, 0) == 0", "assert multiply_int(10000000000000000, -999999999999999998) == -9999999999999999980000000000000000", "assert multiply_int(999999999999999999, 10000000000000001) == 10000000000000000989999999999999999", "assert multiply_int(10000000000000001, 10000000000000001) == 100000000000000020000000000000001", "assert multiply_int(9999999999999999, 999999999999999999) == 9999999999999998990000000000000001", "assert multiply_int(10000000000000000, -999999999999999999) == -9999999999999999990000000000000000", "assert multiply_int(9999999999999999, 9999999999999998) == 99999999999999970000000000000002", "assert multiply_int(1, 0) == 0", "assert multiply_int(9999999999999999, 10000000000000000) == 99999999999999990000000000000000", "assert multiply_int(999999999999999998, 0) == 0", "assert multiply_int(9999999999999999, 0) == 0", "assert multiply_int(-2, 0) == 0", "assert multiply_int(-999999999999999997, -999999999999999998) == 999999999999999995000000000000000006", "assert multiply_int(10000000000000000, 999999999999999998) == 9999999999999999980000000000000000", "assert multiply_int(0, 9999999999999998) == 0", "assert multiply_int(-1, -1) == 1", "assert multiply_int(9999999999999999, -999999999999999998) == -9999999999999998980000000000000002", "assert multiply_int(-999999999999999999, -1) == 999999999999999999", "assert multiply_int(-999999999999999999, 0) == 0", "assert multiply_int(-1000000000000000000, 0) == 0", "assert multiply_int(-999999999999999999, 10000000000000000) == -9999999999999999990000000000000000", "assert multiply_int(9999999999999998, 10000000000000000) == 99999999999999980000000000000000", "assert multiply_int(-1000000000000000000, 1000000000000000000) == -1000000000000000000000000000000000000", "assert multiply_int(1, 10000000000000001) == 10000000000000001", "assert multiply_int(-2, 999999999999999999) == -1999999999999999998", "assert multiply_int(9999999999999998, 9999999999999999) == 99999999999999970000000000000002", "assert multiply_int(10000000000000001, 10000000000000000) == 100000000000000010000000000000000", "assert multiply_int(-999999999999999999, 999999999999999998) == -999999999999999997000000000000000002", "assert multiply_int(999999999999999997, 999999999999999998) == 999999999999999995000000000000000006", "assert multiply_int(10000000000000000, 999999999999999997) == 9999999999999999970000000000000000", "assert multiply_int(9999999999999997, 9999999999999997) == 99999999999999940000000000000009", "assert multiply_int(9999999999999998, 1000000000000000000) == 9999999999999998000000000000000000", "assert multiply_int(0, -1) == 0", "assert multiply_int(10000000000000001, 0) == 0", "assert multiply_int(9999999999999999, -2) == -19999999999999998", "assert multiply_int(9999999999999999, 1) == 9999999999999999", "assert multiply_int(10000000000000000, 10000000000000001) == 100000000000000010000000000000000", "assert multiply_int(10000000000000001, -1) == -10000000000000001", "assert multiply_int(10000000000000001, 9999999999999998) == 99999999999999989999999999999998", "assert multiply_int(9999999999999998, 9999999999999998) == 99999999999999960000000000000004", "assert multiply_int(-1, 0) == 0", "assert multiply_int(-999999999999999997, -999999999999999997) == 999999999999999994000000000000000009", "assert multiply_int(1000000000000000000, -999999999999999998) == -999999999999999998000000000000000000", "assert multiply_int(-3, -1) == 3", "assert multiply_int(999999999999999997, 10000000000000000) == 9999999999999999970000000000000000", "assert multiply_int(1000000000000000000, 1000000000000000000) == 1000000000000000000000000000000000000", "assert multiply_int(10000000000000000, -1) == -10000000000000000", "assert multiply_int(1000000000000000001, -999999999999999998) == -999999999999999998999999999999999998", "assert multiply_int(999999999999999998, -999999999999999999) == -999999999999999997000000000000000002", "assert multiply_int(-3, 9999999999999997) == -29999999999999991", "assert multiply_int(1, 1) == 1", "assert multiply_int(1000000000000000000, 9999999999999997) == 9999999999999997000000000000000000", "assert multiply_int(False, False) == 0", "assert multiply_int(10000000000000000, 0) == 0", "assert multiply_int(1, 999999999999999999) == 999999999999999999", "assert multiply_int(-999999999999999999, 999999999999999997) == -999999999999999996000000000000000003", "assert multiply_int(1000000000000000000, -999999999999999997) == -999999999999999997000000000000000000", "assert multiply_int(1, 1000000000000000001) == 1000000000000000001", "assert multiply_int(1, -999999999999999998) == -999999999999999998", "assert multiply_int(999999999999999998, 10000000000000000) == 9999999999999999980000000000000000", "assert multiply_int(0, 10000000000000001) == 0", "assert multiply_int(1, 2) == 2", "assert multiply_int(999999999999999996, 999999999999999998) == 999999999999999994000000000000000008", "assert multiply_int(-999999999999999998, -3) == 2999999999999999994", "assert multiply_int(9999999999999999, 10000000000000001) == 99999999999999999999999999999999", "assert multiply_int(999999999999999998, 10000000000000001) == 10000000000000000979999999999999998", "assert multiply_int(-999999999999999998, -999999999999999999) == 999999999999999997000000000000000002", "assert multiply_int(10000000000000000, 1000000000000000000) == 10000000000000000000000000000000000", "assert multiply_int(-1, 1000000000000000001) == -1000000000000000001", "assert multiply_int(-999999999999999998, -999999999999999998) == 999999999999999996000000000000000004", "assert multiply_int(1, -1) == -1", "assert multiply_int(10000000000000002, -2) == -20000000000000004", "assert multiply_int(9999999999999999, 1000000000000000001) == 9999999999999999009999999999999999", "assert multiply_int(-999999999999999997, 999999999999999998) == -999999999999999995000000000000000006", "assert multiply_int(-999999999999999998, 0) == 0", "assert multiply_int(10000000000000000, -2) == -20000000000000000", "assert multiply_int(-1, -999999999999999998) == 999999999999999998", "assert multiply_int(9999999999999997, -1) == -9999999999999997", "assert multiply_int(9999999999999997, -999999999999999998) == -9999999999999996980000000000000006", "assert multiply_int(2, 1) == 2", "assert multiply_int(-1, 1) == -1", "assert multiply_int(999999999999999997, 1000000000000000001) == 999999999999999997999999999999999997", "assert multiply_int(9999999999999998, 9999999999999997) == 99999999999999950000000000000006", "assert multiply_int(-999999999999999998, 10000000000000000) == -9999999999999999980000000000000000", "assert multiply_int(999999999999999999, -999999999999999998) == -999999999999999997000000000000000002", "assert multiply_int(-3, -999999999999999998) == 2999999999999999994" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find words that are longer than n characters from a given list of words.\nassert long_words(3,\"python is a programming language\")==['python','programming','language']\nYour code should pass the test:\nassert long_words(3,\"python is a programming language\")==['python','programming','language']", "test_list": [ "assert long_words(3,\"python is a programming language\")==['python','programming','language']", "assert long_words(2,\"writing a program\")==['writing','program']", "assert long_words(5,\"sorting list\")==['sorting']", "assert long_words(0, 'abc def ghi jklm nopqrs tuvwxyz') == ['abc', 'def', 'ghi', 'jklm', 'nopqrs', 'tuvwxyz']", "assert long_words(0, '') == []", "assert long_words(10, 'thisisaverylongword testing wordlengths') == ['thisisaverylongword', 'wordlengths']", "assert long_words(100, 'hello python is a programming language') == []", "assert long_words(0, 'is') == ['is']", "assert long_words(100, 'thisisaverylongwordw testing wordlengths') == []", "assert long_words(0, 'jklm') == ['jklm']", "assert long_words(100, 'thisisaverylongwordw teseting wordlengths') == []", "assert long_words(0, 'thisisaverylongword testing wordlengths') == ['thisisaverylongword', 'testing', 'wordlengths']", "assert long_words(10, 'is') == []", "assert long_words(10, 'hello python is a programming language') == ['programming']", "assert long_words(1, 'thisisaverylongword testing wordlengths') == ['thisisaverylongword', 'testing', 'wordlengths']", "assert long_words(0, 'jklam') == ['jklam']", "assert long_words(100, 'tuvwxyz') == []", "assert long_words(0, 'hello') == ['hello']", "assert long_words(0, 'jkjlam') == ['jkjlam']", "assert long_words(100, '') == []", "assert long_words(1, 'jklam') == ['jklam']", "assert long_words(100, 'thisisaverylongwordnopqrsw teseting wordlengths') == []", "assert long_words(10, 'heogramming language') == ['heogramming']", "assert long_words(10, '') == []", "assert long_words(100, 'i') == []", "assert long_words(11, 'thisisaverylongword testing wordlengths') == ['thisisaverylongword']", "assert long_words(100, 'thisisaverylongword') == []", "assert long_words(2, '') == []", "assert long_words(2, 'heogramming language') == ['heogramming', 'language']", "assert long_words(2, 'hello python is a programming language') == ['hello', 'python', 'programming', 'language']", "assert long_words(100, 'ii') == []", "assert long_words(1, 'thisisaverylongwordw teseting wordlengths') == ['thisisaverylongwordw', 'teseting', 'wordlengths']", "assert long_words(100, 'thisisaveriylongwordw testing wordlengths') == []", "assert long_words(9, 'jklm') == []", "assert long_words(100, 'is') == []", "assert long_words(10, 'helloh python is a programming language') == ['programming']", "assert long_words(100, 'abc def ghi jklm nopqrs tuvwxyz') == []", "assert long_words(2, 'heogramming laneguage') == ['heogramming', 'laneguage']", "assert long_words(0, 'ajklamteseting') == ['ajklamteseting']", "assert long_words(100, 'thisisaveriylongwordw') == []", "assert long_words(100, 'thisisaverylongwordw testheogramming languageing wordlengths') == []", "assert long_words(0, 'thisisaverylongwordnopqrsw teseting wordlengths') == ['thisisaverylongwordnopqrsw', 'teseting', 'wordlengths']", "assert long_words(99, 'thisisaveriylongwordw') == []", "assert long_words(0, 'a') == ['a']", "assert long_words(0, 'hello python is a programming language') == ['hello', 'python', 'is', 'a', 'programming', 'language']", "assert long_words(0, 'aa') == ['aa']", "assert long_words(0, 'thisisaveriylongwordw') == ['thisisaveriylongwordw']", "assert long_words(10, 'python') == []", "assert long_words(10, 'jkl') == []", "assert long_words(1, 'hello python is a programming language') == ['hello', 'python', 'is', 'programming', 'language']", "assert long_words(1, 'jkllm') == ['jkllm']", "assert long_words(100, 'thisisaverylongwordnopqrsw teseting wordlengthsi') == []", "assert long_words(101, 'thisisaverylongwordw testing wordlengths') == []", "assert long_words(99, 'thisisaverylongwordw teseting wordlengths') == []", "assert long_words(99, 'heogramming langualaneguagege') == []", "assert long_words(0, 'ii') == ['ii']", "assert long_words(101, 'thisisaverylongwordw testheogramming languageing wordlengths') == []", "assert long_words(11, 'jkl') == []", "assert long_words(1, '') == []", "assert long_words(101, 'abc def ghi jklm nopqrs tuvwx yz') == []", "assert long_words(0, 'thisisaveriylongwoordw') == ['thisisaveriylongwoordw']", "assert long_words(0, 'hlello') == ['hlello']", "assert long_words(0, 'heogramming language') == ['heogramming', 'language']", "assert long_words(1, 'heogramming language') == ['heogramming', 'language']", "assert long_words(101, 'is') == []", "assert long_words(9, 'thisisaverylongwordnopqrsw teseting wordlengths') == ['thisisaverylongwordnopqrsw', 'wordlengths']", "assert long_words(99, 'hello python is a programming language') == []", "assert long_words(1, 'thisisalanguageverylongwordw teseting wordleths') == ['thisisalanguageverylongwordw', 'teseting', 'wordleths']", "assert long_words(10, 'jkjlam') == []", "assert long_words(0, 'hlelllo') == ['hlelllo']", "assert long_words(100, 'yz') == []", "assert long_words(0, 'ajheogramming languageklamteseting') == ['ajheogramming', 'languageklamteseting']", "assert long_words(9, 'helloh python is a programminlaneguageg language') == ['programminlaneguageg']", "assert long_words(11, 'thisisaveriylongwordw') == ['thisisaveriylongwordw']", "assert long_words(2, 'thisisaverylongwordw teseting wordlengths') == ['thisisaverylongwordw', 'teseting', 'wordlengths']", "assert long_words(2, 'hlelllo') == ['hlelllo']", "assert long_words(1, 'hello python is a prthisisaverylongwordnopqrsw teseting wordlengthsiogramming language') == ['hello', 'python', 'is', 'prthisisaverylongwordnopqrsw', 'teseting', 'wordlengthsiogramming', 'language']", "assert long_words(0, 'abc def ghi jklm thisisaveriylongwordwnopqrs tuvwxyz') == ['abc', 'def', 'ghi', 'jklm', 'thisisaveriylongwordwnopqrs', 'tuvwxyz']", "assert long_words(101, 'aaa') == []", "assert long_words(11, 'heogramming language') == []", "assert long_words(2, 'wordlengthsiogramming') == ['wordlengthsiogramming']", "assert long_words(1, 'thisisalanguageverylthisisaverylongwordnopqrsw teseting wordlengthsiongwordw teseting wordleths') == ['thisisalanguageverylthisisaverylongwordnopqrsw', 'teseting', 'wordlengthsiongwordw', 'teseting', 'wordleths']", "assert long_words(11, 'wordlengthsiongwordw') == ['wordlengthsiongwordw']", "assert long_words(1, 'heogramminghelloh python is a programming languagelanguage') == ['heogramminghelloh', 'python', 'is', 'programming', 'languagelanguage']", "assert long_words(11, 'thisisaverylongword') == ['thisisaverylongword']", "assert long_words(11, 'ljkl') == []", "assert long_words(99, 'thisisalanguageverylongwordw') == []", "assert long_words(1, 'ajheogramming languageklamteseting') == ['ajheogramming', 'languageklamteseting']", "assert long_words(0, 'wordlengthsi') == ['wordlengthsi']", "assert long_words(100, 'thisisaveriylongwordwnopqrs') == []", "assert long_words(102, 'aaa') == []", "assert long_words(102, 'aaaa') == []", "assert long_words(10, 'thisisaveriylongwordw testing wordlengths') == ['thisisaveriylongwordw', 'wordlengths']", "assert long_words(0, 'jkl') == ['jkl']", "assert long_words(10, 'thisisaverylongwordnopqrsw teseting wordlengths') == ['thisisaverylongwordnopqrsw', 'wordlengths']", "assert long_words(10, 'jk') == []", "assert long_words(100, 'thisisaverylongwordnopqrsw tegseting wordlengthsi') == []", "assert long_words(101, 'thisisajklmverylongwordw testing wordlengths') == []", "assert long_words(1, 'heogramming laneguage') == ['heogramming', 'laneguage']", "assert long_words(1, 'ajklamteseting') == ['ajklamteseting']", "assert long_words(100, 'thisisaverylongwordw testheogramming languagein wordlengths') == []", "assert long_words(102, 'thisisaveriylongwordw testing wordlengths') == []", "assert long_words(100, 'thisisavongwordw') == []", "assert long_words(100, 'hlello') == []", "assert long_words(0, 'hello python is heogramming laneguagea programming language') == ['hello', 'python', 'is', 'heogramming', 'laneguagea', 'programming', 'language']", "assert long_words(10, 'wlengthsiongwordw') == ['wlengthsiongwordw']", "assert long_words(99, 'hello pylanguage') == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate whether the matrix is a magic square.\nassert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [9, 6, 15, 4]])==True\nYour code should pass the test:\nassert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [9, 6, 15, 4]])==True", "test_list": [ "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [9, 6, 15, 4]])==True", "assert magic_square_test([[2, 7, 6], [9, 5, 1], [4, 3, 8]])==True", "assert magic_square_test([[2, 7, 6], [9, 5, 1], [4, 3, 7]])==False", "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5]]) == False", "assert magic_square_test([[-2, 7, 6], [9, -5, 1], [4, 3, -7]]) == False", "assert magic_square_test([[4, 19, -3], [12, 7, 1], [0, 9, -16]]) == False", "assert magic_square_test([[1, 2, 3], [4, 5, 6]]) == False", "assert magic_square_test([[4, 19, -3], [0, 9, -16]]) == False", "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11]]) == False", "assert magic_square_test([[7, 1, 14], [7, 1, 14]]) == False", "assert magic_square_test([[7, 1, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [2, 13, 8, 11]]) == False", "assert magic_square_test([[7, 12, 1, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14]]) == False", "assert magic_square_test([[4, 19, -3], [12, 7, 1], [-16, 9, -16], [12, 7, 1]]) == False", "assert magic_square_test([[7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14]]) == False", "assert magic_square_test([[-2, 7, 6], [9, -5, 1]]) == False", "assert magic_square_test([[1, 2, 3], [4, 5, 6], [4, 5, 6]]) == False", "assert magic_square_test([[4, 19, -3], [12, 7, 1], [0, 9, -16], [12, 7, 1]]) == False", "assert magic_square_test([[11, 12, 1, 14], [11, 12, 1, 14], [11, 12, 1, 14], [11, 12, 1, 14], [11, 12, 1, 14]]) == False", "assert magic_square_test([[4, 19, -3], [12, 7, 1], [12, 7, 1]]) == False", "assert magic_square_test([[4, 5, 6]]) == False", "assert magic_square_test([[-2, 7, 6], [9, -5, 1], [4, 3, -7], [9, -5, 1]]) == False", "assert magic_square_test([[0, 9, -16], [4, 19, -3], [12, 7, 1], [0, 9, -16]]) == False", "assert magic_square_test([[0, 9, -16], [4, 19, -3], [12, 7, 1], [0, 9, -16], [0, 9, -16]]) == False", "assert magic_square_test([[9, -5, 1], [4, 3, -7]]) == False", "assert magic_square_test([[7, 12, 1, 2, 14], [7, 12, 1, 2, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14, 12], [7, 12, 1, 14, 12], [7, 12, 1, 14, 12], [7, 12, 1, 14, 12], [7, 12, 1, 14, 12], [7, 12, 1, 14, 12]]) == False", "assert magic_square_test([[7, 1, 14, 1], [7, 1, 14, 1]]) == False", "assert magic_square_test([[7, 12, 1, 2], [7, 12, 1, 2]]) == False", "assert magic_square_test([[7, 14]]) == False", "assert magic_square_test([[12, 7, -3], [4, 19, -3], [12, 7, -3], [0, 9, -16], [12, 7, -3]]) == False", "assert magic_square_test([[12, 7, -3], [4, 19, -3], [12, 7, -3], [12, 7, -3]]) == False", "assert magic_square_test([[9, -5, 1, 9]]) == False", "assert magic_square_test([[7, 12, 2, 14, 12], [7, 12, 2, 14, 12], [7, 12, 2, 14, 12], [7, 12, 2, 14, 12], [7, 12, 2, 14, 12], [7, 12, 2, 14, 12]]) == False", "assert magic_square_test([[1, 14], [1, 14], [1, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14], [7, 12, 1, 14]]) == False", "assert magic_square_test([[7, 1, 14, 1]]) == False", "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [2, 13, 8, 11], [7, 12, 1, 14]]) == False", "assert magic_square_test([[0, 9, -16], [4, 19, -3], [12, 7, 1]]) == False", "assert magic_square_test([[2, 8, 11, 2], [2, 8, 11, 2], [2, 8, 11, 2]]) == False", "assert magic_square_test([[7, 14, 14]]) == False", "assert magic_square_test([[7, 12, 1, 12], [7, 12, 1, 12], [7, 12, 1, 12], [7, 12, 1, 12], [7, 12, 1, 12], [7, 12, 1, 12]]) == False", "assert magic_square_test([[7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6]]) == False", "assert magic_square_test([[0, 9, -16], [4, 19, -3], [0, 9, -16], [0, 9, -16]]) == False", "assert magic_square_test([[7, 12, 1, 14], [16, 3, 10, 5], [2, 13, 8, 11]]) == False", "assert magic_square_test([[7, 12, 16], [7, 12, 16], [7, 12, 16], [7, 12, 16]]) == False", "assert magic_square_test([[7, 7], [7, 7]]) == True", "assert magic_square_test([[7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12]]) == False", "assert magic_square_test([[7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14]]) == False", "assert magic_square_test([[7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13]]) == False", "assert magic_square_test([[9, -5, 1], [4, 3, -6]]) == False", "assert magic_square_test([[7, 12, 1, 2, 14]]) == False", "assert magic_square_test([[12, 8, 7, 1], [12, 8, 7, 1]]) == False", "assert magic_square_test([[7, -5, 14], [7, -5, 14], [7, -5, 14], [7, -5, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14], [7, 12, 1, 14]]) == False", "assert magic_square_test([[7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13], [7, 12, 2, 14, 13]]) == False", "assert magic_square_test([[8, 12, 1, 14], [8, 12, 1, 14], [8, 12, 1, 14], [8, 12, 1, 14], [8, 12, 1, 14], [8, 12, 1, 14], [8, 12, 1, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14, 12, 12], [7, 12, 1, 14, 12, 12], [7, 12, 1, 14, 12, 12], [7, 12, 1, 14, 12, 12], [7, 12, 1, 14, 12, 12]]) == False", "assert magic_square_test([[4, 19, -16], [12, 7, 1]]) == False", "assert magic_square_test([[4, 19, -3], [12, 7, 1], [0, 9, -16], [0, 9, -16]]) == False", "assert magic_square_test([[7, 12, 2, 15], [7, 12, 2, 15], [7, 12, 2, 15], [7, 12, 2, 15], [7, 12, 2, 15], [7, 12, 2, 15], [7, 12, 2, 15], [7, 12, 2, 15]]) == False", "assert magic_square_test([[6, 4, 5, 6]]) == False", "assert magic_square_test([[7, 7, 7], [7, 7, 7], [7, 7, 7]]) == True", "assert magic_square_test([[-6, 7, 12, 1, 12, 12], [-6, 7, 12, 1, 12, 12], [-6, 7, 12, 1, 12, 12], [-6, 7, 12, 1, 12, 12], [-6, 7, 12, 1, 12, 12], [-6, 7, 12, 1, 12, 12], [-6, 7, 12, 1, 12, 12]]) == False", "assert magic_square_test([[7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12]]) == False", "assert magic_square_test([[7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12]]) == False", "assert magic_square_test([[7, 12, 1, 2], [7, 12, 1, 2], [7, 12, 1, 2]]) == False", "assert magic_square_test([[-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7], [-6, 7, 12, 1, 12, 12, 7]]) == False", "assert magic_square_test([[14], [14], [14]]) == False", "assert magic_square_test([[7, 12, 1, 1, 14], [7, 12, 1, 1, 14], [7, 12, 1, 1, 14], [7, 12, 1, 1, 14]]) == False", "assert magic_square_test([[6, 12, 1, 14], [16, 3, 10, 5], [2, 13, 8, 11]]) == False", "assert magic_square_test([[7, 1, 1, 14], [7, 1, 1, 14], [7, 1, 1, 14], [7, 1, 1, 14]]) == False", "assert magic_square_test([[-2, 7, 6]]) == False", "assert magic_square_test([[-5, 13, 8, 11], [7, 12, 1, 14], [-5, 13, 8, 11], [16, 3, 10, 5]]) == False", "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [2, 13, 8, 11]]) == False", "assert magic_square_test([[7, 12, 1, 2, 14], [7, 12, 1, 2, 14], [7, 12, 1, 2, 14], [7, 12, 1, 2, 14]]) == False", "assert magic_square_test([[1, -16, 3], [4, 5, 6], [4, 5, 6]]) == False", "assert magic_square_test([[7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12]]) == False", "assert magic_square_test([[7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6], [7, 12, 1, 6]]) == False", "assert magic_square_test([[7, 12, 2, 15, 2], [7, 12, 2, 15, 2], [7, 12, 2, 15, 2], [7, 12, 2, 15, 2], [7, 12, 2, 15, 2], [7, 12, 2, 15, 2], [7, 12, 2, 15, 2], [7, 12, 2, 15, 2]]) == False", "assert magic_square_test([[7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12]]) == False", "assert magic_square_test([[7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12], [7, 8, 14, 12]]) == False", "assert magic_square_test([[7, 15, 1, 2, 14], [7, 15, 1, 2, 14], [7, 15, 1, 2, 14]]) == False", "assert magic_square_test([[12, 2, 15], [12, 2, 15], [12, 2, 15], [12, 2, 15], [12, 2, 15], [12, 2, 15], [12, 2, 15], [12, 2, 15]]) == False", "assert magic_square_test([[7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13]]) == False", "assert magic_square_test([[7, 12, 1, 14], [14, 13, 8, 11], [16, 3, 10, 5], [14, 13, 8, 11]]) == False", "assert magic_square_test([[7, 14, 14], [7, 14, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14, 14], [7, 12, 1, 14, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [2, 13, 8, 11], [2, 13, 8, 11]]) == False", "assert magic_square_test([[6, 12, 1, 1, 14], [6, 12, 1, 1, 14], [6, 12, 1, 1, 14], [6, 12, 1, 1, 14], [6, 12, 1, 1, 14]]) == False", "assert magic_square_test([[7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12], [7, 12, 2, 13, 14, 12]]) == False", "assert magic_square_test([[7, 12, 1], [7, 12, 1], [7, 12, 1], [7, 12, 1], [7, 12, 1]]) == False", "assert magic_square_test([[12, 7, -3], [4, 19, -3], [12, 7, -3], [12, 7, -3], [12, 7, -3]]) == False", "assert magic_square_test([[7, 12, 1, 14], [16, 3, 10, 5], [14, 13, 8, 11]]) == False", "assert magic_square_test([[7, 12, 1, 14, 12, 11], [7, 12, 1, 14, 12, 11], [7, 12, 1, 14, 12, 11], [7, 12, 1, 14, 12, 11], [7, 12, 1, 14, 12, 11], [7, 12, 1, 14, 12, 11], [7, 12, 1, 14, 12, 11]]) == False", "assert magic_square_test([[2, 8, 2], [2, 8, 2], [2, 8, 2], [2, 8, 2]]) == False", "assert magic_square_test([[7, 15, 1, 2, 14], [7, 15, 1, 2, 14]]) == False", "assert magic_square_test([[7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12], [7, 12, 1, 12, 12]]) == False", "assert magic_square_test([[7, 8, 14, 12, 7], [7, 8, 14, 12, 7], [7, 8, 14, 12, 7], [7, 8, 14, 12, 7], [7, 8, 14, 12, 7], [7, 8, 14, 12, 7], [7, 8, 14, 12, 7], [7, 8, 14, 12, 7]]) == False", "assert magic_square_test([[7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12], [7, 12, 14, 12]]) == False", "assert magic_square_test([[7, 12, 1, 14, 14]]) == False", "assert magic_square_test([[7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13], [7, 11, 2, 14, 13]]) == False", "assert magic_square_test([[7, 12, 1, 10, 14]]) == False", "assert magic_square_test([[6, 1, 1, 14], [6, 1, 1, 14], [6, 1, 1, 14], [6, 1, 1, 14]]) == False", "assert magic_square_test([[7, 12, 1, 14, 12, 12, 12], [7, 12, 1, 14, 12, 12, 12], [7, 12, 1, 14, 12, 12, 12], [7, 12, 1, 14, 12, 12, 12], [7, 12, 1, 14, 12, 12, 12], [7, 12, 1, 14, 12, 12, 12]]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the item with maximum frequency in a given list.\nassert max_occurrences([2,3,8,4,7,9,8,2,6,5,1,6,1,2,3,2,4,6,9,1,2])==2\nYour code should pass the test:\nassert max_occurrences([2,3,8,4,7,9,8,2,6,5,1,6,1,2,3,2,4,6,9,1,2])==2", "test_list": [ "assert max_occurrences([2,3,8,4,7,9,8,2,6,5,1,6,1,2,3,2,4,6,9,1,2])==2", "assert max_occurrences([2,3,8,4,7,9,8,7,9,15,14,10,12,13,16,18])==8", "assert max_occurrences([10,20,20,30,40,90,80,50,30,20,50,10])==20" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to reverse only the vowels of a given string (where y is not a vowel).\nassert reverse_vowels(\"Python\") == \"Python\"\nYour code should pass the test:\nassert reverse_vowels(\"Python\") == \"Python\"", "test_list": [ "assert reverse_vowels(\"Python\") == \"Python\"", "assert reverse_vowels(\"USA\") == \"ASU\"", "assert reverse_vowels(\"ab\") == \"ab\"", "assert reverse_vowels('') == ''", "assert reverse_vowels('BCDFG') == 'BCDFG'", "assert reverse_vowels('BCDFCCG') == 'BCDFCCG'", "assert reverse_vowels('BCDFC') == 'BCDFC'", "assert reverse_vowels('BDCBDFC') == 'BDCBDFC'", "assert reverse_vowels('BDFG') == 'BDFG'", "assert reverse_vowels('BCDCBDFC') == 'BCDCBDFC'", "assert reverse_vowels('BCDFCCGBCDCBDFC') == 'BCDFCCGBCDCBDFC'", "assert reverse_vowels('BCDFCCGBCDCBDFCBCDFCCG') == 'BCDFCCGBCDCBDFCBCDFCCG'", "assert reverse_vowels('BDFGG') == 'BDFGG'", "assert reverse_vowels('BCDBFC') == 'BCDBFC'", "assert reverse_vowels('BCBDCBDFCDBFC') == 'BCBDCBDFCDBFC'", "assert reverse_vowels('BCBDCBDFCDBBCDCBDFCC') == 'BCBDCBDFCDBBCDCBDFCC'", "assert reverse_vowels('BCDFCCGBCDBDFC') == 'BCDFCCGBCDBDFC'", "assert reverse_vowels('BCBDCBCDFCDBFC') == 'BCBDCBCDFCDBFC'", "assert reverse_vowels('BFGG') == 'BFGG'", "assert reverse_vowels('BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCCGDBFC') == 'BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCCGDBFC'", "assert reverse_vowels('CDFCCGBCDBDFC') == 'CDFCCGBCDBDFC'", "assert reverse_vowels('BBBCBDCBDFCDBBCDCBDFCCDCBDDFC') == 'BBBCBDCBDFCDBBCDCBDFCCDCBDDFC'", "assert reverse_vowels('BCBCDFCDFC') == 'BCBCDFCDFC'", "assert reverse_vowels('BCCCGBCDBCDFC') == 'BCCCGBCDBCDFC'", "assert reverse_vowels('DBCBDCBDFCDBBCDCBDFCC') == 'DBCBDCBDFCDBBCDCBDFCC'", "assert reverse_vowels('BBCBDCBCBCDFCDFCBDFCDBFC') == 'BBCBDCBCBCDFCDFCBDFCDBFC'", "assert reverse_vowels('BCBBCBDCBDFCDBFCDCBDFCDBBCDCBDFCC') == 'BCBBCBDCBDFCDBFCDCBDFCDBBCDCBDFCC'", "assert reverse_vowels('DBCDBDCBDFCDBCBDCBDFCDBBCDCBDFCCBBCDCBDFCC') == 'DBCDBDCBDFCDBCBDCBDFCDBBCDCBDFCCBBCDCBDFCC'", "assert reverse_vowels('BDCBDCBCDFCDB') == 'BDCBDCBCDFCDB'", "assert reverse_vowels('BCBDCBCDBFCDBFC') == 'BCBDCBCDBFCDBFC'", "assert reverse_vowels('BCDFCCGBCDBD') == 'BCDFCCGBCDBD'", "assert reverse_vowels('BBBCBDCBDCBDCBCDFCDBBDFCDBBCDCBDFCCDCBDDFC') == 'BBBCBDCBDCBDCBCDFCDBBDFCDBBCDCBDFCCDCBDDFC'", "assert reverse_vowels('BDFGGBCBDCBCDBBBCDFCCGFCDBFC') == 'BDFGGBCBDCBCDBBBCDFCCGFCDBFC'", "assert reverse_vowels('BCDFCCBGBCDCBDFC') == 'BCDFCCBGBCDCBDFC'", "assert reverse_vowels('BBBBCBDCBDFCDBBCDCBDFCCDCBDDFC') == 'BBBBCBDCBDFCDBBCDCBDFCCDCBDDFC'", "assert reverse_vowels('BBCBDCBCBCDFCBCDBFCDFCBDFCDBFC') == 'BBCBDCBCBCDFCBCDBFCDFCBDFCDBFC'", "assert reverse_vowels('CBDFCDBBCDCBDFCC') == 'CBDFCDBBCDCBDFCC'", "assert reverse_vowels('BBCBDCBCBCDFCBCDBFCDCFCBDFCDBFC') == 'BBCBDCBCBCDFCBCDBFCDCFCBDFCDBFC'", "assert reverse_vowels('BG') == 'BG'", "assert reverse_vowels('BCDFCCGBDCDBDFC') == 'BCDFCCGBDCDBDFC'", "assert reverse_vowels('DDBCBDCBDFCDBBCDCBDFCC') == 'DDBCBDCBDFCDBBCDCBDFCC'", "assert reverse_vowels('BDBFG') == 'BDBFG'", "assert reverse_vowels('BDDFGG') == 'BDDFGG'", "assert reverse_vowels('BDFGDBCBDCBDFCDBBCDCBDFCCG') == 'BDFGDBCBDCBDFCDBBCDCBDFCCG'", "assert reverse_vowels('BBBCBDCBDCBDCBCDFCDBBDFBDDFC') == 'BBBCBDCBDCBDCBCDFCDBBDFBDDFC'", "assert reverse_vowels('BCDFCCGBCDCBDFCBDFGDBCBDCBDFCDBBCDCBDFCCG') == 'BCDFCCGBCDCBDFCBDFGDBCBDCBDFCDBBCDCBDFCCG'", "assert reverse_vowels('BBFC') == 'BBFC'", "assert reverse_vowels('CDFCCGBCDBDFCBG') == 'CDFCCGBCDBDFCBG'", "assert reverse_vowels('CDFCCGBCDDBDFC') == 'CDFCCGBCDDBDFC'", "assert reverse_vowels('BCDFCCGBCGDBD') == 'BCDFCCGBCGDBD'", "assert reverse_vowels('BCBDCBCDBFCDBFCC') == 'BCBDCBCDBFCDBFCC'", "assert reverse_vowels('pzpAwF') == 'pzpAwF'", "assert reverse_vowels('DDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDCBDFCBCDFCCGC') == 'DDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDCBDFCBCDFCCGC'", "assert reverse_vowels('BCBDCBCDBFCFDBFC') == 'BCBDCBCDBFCFDBFC'", "assert reverse_vowels('DDDBCBDCBDFCDBBCDCBDFCC') == 'DDDBCBDCBDFCDBBCDCBDFCC'", "assert reverse_vowels('BCBCDFCCGBDCDBDFCBDCBCDFCDBFC') == 'BCBCDFCCGBDCDBDFCBDCBCDFCDBFC'", "assert reverse_vowels('BCDFCCGBCDCBDFCBCCG') == 'BCDFCCGBCDCBDFCBCCG'", "assert reverse_vowels('BCDDFCCGBCDBD') == 'BCDDFCCGBCDBD'", "assert reverse_vowels('CDCFCCGBCDBDFCBG') == 'CDCFCCGBCDBDFCBG'", "assert reverse_vowels('BBBCBDCBDCBDCBCDFCDBCBDDFC') == 'BBBCBDCBDCBDCBCDFCDBCBDDFC'", "assert reverse_vowels('BCBDCBDFCDBFFC') == 'BCBDCBDFCDBFFC'", "assert reverse_vowels('CDFCCGBCFDBBBBBCBDDCBDFCCDCBDDFCDBDFC') == 'CDFCCGBCFDBBBBBCBDDCBDFCCDCBDDFCDBDFC'", "assert reverse_vowels('BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCDBFC') == 'BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCDBFC'", "assert reverse_vowels('DDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDBDFGDFCCGC') == 'DDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDBDFGDFCCGC'", "assert reverse_vowels('DDBCBDCBDFCDBBCDCBDFCCDFCCGBCDDBDFCBCDFCCGBCDBDFGDFCCGC') == 'DDBCBDCBDFCDBBCDCBDFCCDFCCGBCDDBDFCBCDFCCGBCDBDFGDFCCGC'", "assert reverse_vowels('BCDBFBCBCDFCDFCC') == 'BCDBFBCBCDFCDFCC'", "assert reverse_vowels('BCDFCCGBCDCBDFCBCCCG') == 'BCDFCCGBCDCBDFCBCCCG'", "assert reverse_vowels('BDCBDCBCDFCD') == 'BDCBDCBCDFCD'", "assert reverse_vowels('DDDBCBDCBBCDCBDFCC') == 'DDDBCBDCBBCDCBDFCC'", "assert reverse_vowels('BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCFDBFC') == 'BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCFDBFC'", "assert reverse_vowels('BCDCBDBCBDCBCDFCDBFCFC') == 'BCDCBDBCBDCBCDFCDBFCFC'", "assert reverse_vowels('BCDDFCCGBCCDBD') == 'BCDDFCCGBCCDBD'", "assert reverse_vowels('BCBDCBCDBFCFDBFDC') == 'BCBDCBCDBFCFDBFDC'", "assert reverse_vowels('BDBCDFCCGBDCDBDFCGG') == 'BDBCDFCCGBDCDBDFCGG'", "assert reverse_vowels('BCDBBFC') == 'BCDBBFC'", "assert reverse_vowels('DDDBCBDCBBCDCCBDFCC') == 'DDDBCBDCBBCDCCBDFCC'", "assert reverse_vowels('BCDBCCCGBCDBCDFCCCBGBCDCBDFC') == 'BCDBCCCGBCDBCDFCCCBGBCDCBDFC'", "assert reverse_vowels('BCCDFCCGBCDDBDFCDDFCCGBCDBD') == 'BCCDFCCGBCDDBDFCDDFCCGBCDBD'", "assert reverse_vowels('BBBCBDCBDCBDCGBCDDDBCDBDCBDFCDBCBDCBDFCDBBCDCBDFCCBBCDCBDFCCBDFCC') == 'BBBCBDCBDCBDCGBCDDDBCDBDCBDFCDBCBDCBDFCDBBCDCBDFCCBBCDCBDFCCBDFCC'", "assert reverse_vowels('BCBCDBFCDFCCGBDCDBFDFC') == 'BCBCDBFCDFCCGBDCDBFDFC'", "assert reverse_vowels('BCCCGBCDBCDFCC') == 'BCCCGBCDBCDFCC'", "assert reverse_vowels('FIswIZeBBCBDCBDFCBCDFCCGBCDCBDFGCBCDFCFDBFCCDCBDFCD') == 'FeswIZIBBCBDCBDFCBCDFCCGBCDCBDFGCBCDFCFDBFCCDCBDFCD'", "assert reverse_vowels('BCBDCBBCDBFCDBFCC') == 'BCBDCBBCDBFCDBFCC'", "assert reverse_vowels('BCDFCDDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDBDFGDFCCGCCGBCGDBD') == 'BCDFCDDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDBDFGDFCCGCCGBCGDBD'", "assert reverse_vowels('BCDFCCGBCDCBDFCBCD') == 'BCDFCCGBCDCBDFCBCD'", "assert reverse_vowels('CBDFCDBBBBBCBDCBDFCDBBCDCBDFCCDCBDDFCCDCBDFCC') == 'CBDFCDBBBBBCBDCBDFCDBBCDCBDFCCDCBDDFCCDCBDFCC'", "assert reverse_vowels('BCCDFCCGBCDDBDFCDDBDFGCGFCCGBCDBD') == 'BCCDFCCGBCDDBDFCDDBDFGCGFCCGBCDBD'", "assert reverse_vowels('BCDFCCGDBCDCBDFCBCD') == 'BCDFCCGDBCDCBDFCBCD'", "assert reverse_vowels('wqfXCaCb') == 'wqfXCaCb'", "assert reverse_vowels('BCDFCDDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDFCCGBCDCBDFCBCDBCDBDFGDFCCGCCGBCGDBD') == 'BCDFCDDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDFCCGBCDCBDFCBCDBCDBDFGDFCCGCCGBCGDBD'", "assert reverse_vowels('BDFGDBCBDCBDFCDG') == 'BDFGDBCBDCBDFCDG'", "assert reverse_vowels('BCCDFCCBGBCDCBDFC') == 'BCCDFCCBGBCDCBDFC'", "assert reverse_vowels('BCDFCCGBCBCDBFCDBD') == 'BCDFCCGBCBCDBFCDBD'", "assert reverse_vowels('BBBBCBDCBDFCDBBCDCBBCBDCBDFCDBFCDFCCDCBDDFC') == 'BBBBCBDCBDFCDBBCDCBBCBDCBDFCDBFCDFCCDCBDDFC'", "assert reverse_vowels('BCCBDCBCDFCDBFC') == 'BCCBDCBCDFCDBFC'", "assert reverse_vowels('BCDFCCDDBD') == 'BCDFCCDDBD'", "assert reverse_vowels('BDBBFG') == 'BDBBFG'", "assert reverse_vowels('BCDFCCGBCDCBBDFCBCD') == 'BCDFCCGBCDCBBDFCBCD'", "assert reverse_vowels('BBBBCBDCBDFCDBBCDCBBpzpAwFCBDCBDFCDBFFCDFCCDCBDDF') == 'BBBBCBDCBDFCDBBCDCBBpzpAwFCBDCBDFCDBFFCDFCCDCBDDF'", "assert reverse_vowels('BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCDCBFC') == 'BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCDCBFC'", "assert reverse_vowels('BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCCDBFC') == 'BCBDCBDFCBCDFCCGBCDCBDFGCBCDFCCDBFC'", "assert reverse_vowels('BCCDFCCBGBCDCCBDFC') == 'BCCDFCCBGBCDCCBDFC'", "assert reverse_vowels('FIswIZeBBCBDCBDFCBCDFCCGBCDCBDFGCBCDFCFBCDFCDDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDFCCGBCDCBDFCBCDBCDBDFGDFCCGCCGBCGDBDDBFCCDCBDFCD') == 'FeswIZIBBCBDCBDFCBCDFCCGBCDCBDFGCBCDFCFBCDFCDDBCBDCBDFCDBBCDCBDFCBCDFCCGBCDFCCGBCDCBDFCBCDBCDBDFGDFCCGCCGBCGDBDDBFCCDCBDFCD'", "assert reverse_vowels('BCDFCCBBCDFCCBGBCDCBDFCDCBDFC') == 'BCDFCCBBCDFCCBGBCDCBDFCDCBDFC'", "assert reverse_vowels('BDFGGBCBDCBCDBBBCDFC') == 'BDFGGBCBDCBCDBBBCDFC'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a tuple to a string.\nassert tup_string(('e', 'x', 'e', 'r', 'c', 'i', 's', 'e', 's'))==(\"exercises\")\nYour code should pass the test:\nassert tup_string(('e', 'x', 'e', 'r', 'c', 'i', 's', 'e', 's'))==(\"exercises\")", "test_list": [ "assert tup_string(('e', 'x', 'e', 'r', 'c', 'i', 's', 'e', 's'))==(\"exercises\")", "assert tup_string(('p','y','t','h','o','n'))==(\"python\")", "assert tup_string(('p','r','o','g','r','a','m'))==(\"program\")", "assert tup_string(()) == ''", "assert tup_string(('a',)) == 'a'", "assert tup_string(('a', 'a')) == 'aa'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'a', 'a')) == 'ZaZvCAMhNaaa'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'aa', 'a')) == 'ZaZvCAMhNaaaa'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'aa', 'a', 'aa')) == 'ZaZvCAMhNaaaaaa'", "assert tup_string(('ZZ', 'a', 'ZvCAMhN', 'a', 'a', 'a')) == 'ZZaZvCAMhNaaa'", "assert tup_string(('a', 'ZvCAMhN', 'aaZ', 'a', 'aa', 'a')) == 'aZvCAMhNaaZaaaa'", "assert tup_string(('mKxDJT', 'VekfW', 'ZvCAMhN', 'aaZ', 'FiUaYFBklh', 'PBEOJoMiY', 'aFELUEp', 'aaZ', 'ZZ')) == 'mKxDJTVekfWZvCAMhNaaZFiUaYFBklhPBEOJoMiYaFELUEpaaZZZ'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'a', 'a', 'a')) == 'ZaZvCAMhNaaaa'", "assert tup_string(('ZZ', '', 'ZvCAMhN', 'aa', 'a', 'a')) == 'ZZZvCAMhNaaaa'", "assert tup_string(('aa', 'mKxDJTaa', 'a')) == 'aamKxDJTaaa'", "assert tup_string(('aa', 'ZvCAMhN', 'a')) == 'aaZvCAMhNa'", "assert tup_string(('aa', 'VekfW', 'a')) == 'aaVekfWa'", "assert tup_string(('Z', 'ZvCAMhN', 'a', 'a', 'a', 'Z', 'a')) == 'ZZvCAMhNaaaZa'", "assert tup_string(('ZZZ', 'a', 'ZvCAMhN', 'a', 'a', 'a')) == 'ZZZaZvCAMhNaaa'", "assert tup_string(('ZZZ', 'a', 'ZvCAMhN', 'a', 'a')) == 'ZZZaZvCAMhNaa'", "assert tup_string(('aFELUEpZ', 'a', 'ZvCAMhN', 'a', 'aa', 'a', 'aa')) == 'aFELUEpZaZvCAMhNaaaaaa'", "assert tup_string(('aa', 'mKxDJTaa', 'aa')) == 'aamKxDJTaaaa'", "assert tup_string(('a', '')) == 'a'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'tDuJm', 'IWSYg', 'Z')) == 'SkpnaCZaqHPQEqCmPyvCTGaFELUEptDuJmIWSYgZ'", "assert tup_string(('aa', 'ZvCAMhN', 'a', 'aa')) == 'aaZvCAMhNaaa'", "assert tup_string(('ZZ', 'ZvCAMhN', 'aa', 'a', 'a')) == 'ZZZvCAMhNaaaa'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'aa', 'a', 'a')) == 'ZaZvCAMhNaaaaa'", "assert tup_string(('mKxDJT', 'ZvCAMhN', 'aaZ', 'a', 'aa', 'a')) == 'mKxDJTZvCAMhNaaZaaaa'", "assert tup_string(('aa', 'aFELUEpZ')) == 'aaaFELUEpZ'", "assert tup_string(('mKxDJT', 'ZvCAMhN', 'aZ', 'ZZ', 'a', 'aa', 'a')) == 'mKxDJTZvCAMhNaZZZaaaa'", "assert tup_string(('Z', 'aaZ', 'a', 'ZvCAMhN', 'a', 'a', 'a', 'a')) == 'ZaaZaZvCAMhNaaaa'", "assert tup_string(('ZZZ', 'a', 'ZvCAMhN', 'a', 'aFELUEpa', 'a', 'a')) == 'ZZZaZvCAMhNaaFELUEpaaa'", "assert tup_string(('aFELUEp', 'ZvCAMhN', 'a', 'aa', 'a')) == 'aFELUEpZvCAMhNaaaa'", "assert tup_string(('Z', 'aaZ', 'IWSYga', 'a', 'ZvCAMhN', 'a', 'a', 'a', 'a')) == 'ZaaZIWSYgaaZvCAMhNaaaa'", "assert tup_string(('aZZ', 'aFELUEpZ')) == 'aZZaFELUEpZ'", "assert tup_string(('ZZZ', 'tDuJma', 'a', 'ZvCAMhN', 'a', 'a', 'ZZ')) == 'ZZZtDuJmaaZvCAMhNaaZZ'", "assert tup_string(('ZZ', 'ZvCAMhN', 'aa', 'a', 'a', 'ZvCAMhN')) == 'ZZZvCAMhNaaaaZvCAMhN'", "assert tup_string(('aa', 'ZvCAMhN', 'aa')) == 'aaZvCAMhNaa'", "assert tup_string(('Z', 'a', 'a', 'a', 'a')) == 'Zaaaa'", "assert tup_string(('aa', 'ZvCAMhN', 'aa', 'aa')) == 'aaZvCAMhNaaaa'", "assert tup_string(('Z', 'aaZ', 'IWSYga', 'a', 'ZvCAMhN', 'PBEOJoMiYa', 'a', 'a', 'a')) == 'ZaaZIWSYgaaZvCAMhNPBEOJoMiYaaaa'", "assert tup_string(('', 'ZvCAMhN', 'aa', 'a', 'a', 'ZvCAMhN')) == 'ZvCAMhNaaaaZvCAMhN'", "assert tup_string(('a', 'aa', 'a')) == 'aaaa'", "assert tup_string(('amKxDJTaa', 'Z', 'mKxDJTaaa', 'ZvCAMhN', 'a', 'aa', 'a')) == 'amKxDJTaaZmKxDJTaaaZvCAMhNaaaa'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'a', 'FiUaYFBklh')) == 'ZaZvCAMhNaaFiUaYFBklh'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'tDuJm', 'IWSYg', 'Z', 'Z')) == 'SkpnaCZaqHPQEqCmPyvCTGaFELUEptDuJmIWSYgZZ'", "assert tup_string(('Z', 'a', 'a', 'a', 'Z', 'a')) == 'ZaaaZa'", "assert tup_string(('ZZ', 'aaZa', 'ZvCAMhN', 'aa', 'a')) == 'ZZaaZaZvCAMhNaaa'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'SkSpnaC', 'aFELUEp', 'tDuJm', 'IWSYg', 'Z', 'Z')) == 'SkpnaCZaqHPQEqCmPyvCTGSkSpnaCaFELUEptDuJmIWSYgZZ'", "assert tup_string(('ZvCAMhN', 'aaa', 'aa', 'aa', 'aa')) == 'ZvCAMhNaaaaaaaaa'", "assert tup_string(('aa', 'a')) == 'aaa'", "assert tup_string(('ZZ', 'aaZa', 'ZvCAMhN', 'aa', 'a', 'aa')) == 'ZZaaZaZvCAMhNaaaaa'", "assert tup_string(('aFELUEpZ', 'a', 'ZvCAMhN', 'a', 'aa', 'a', 'aa', 'a')) == 'aFELUEpZaZvCAMhNaaaaaaa'", "assert tup_string(('a', 'IWSYga', 'ZvCAMhN', 'IWSYg', 'aVekfW', 'a', 'aa', 'a')) == 'aIWSYgaZvCAMhNIWSYgaVekfWaaaa'", "assert tup_string(('ZZ', 'a', 'ZvCAMhN', 'a', 'aa', 'a', 'ZvCAMhN')) == 'ZZaZvCAMhNaaaaZvCAMhN'", "assert tup_string(('', 'a', 'a', 'a', 'Z', 'a')) == 'aaaZa'", "assert tup_string(('mKxDJT', 'ZvCAMhN', 'aZ', 'ZZ', 'mKxDJT', 'aa', 'aa', 'a')) == 'mKxDJTZvCAMhNaZZZmKxDJTaaaaa'", "assert tup_string(('ZZ', 'SkpnaC', 'FiUaYFBklh', 'a', 'a', 'a', 'a')) == 'ZZSkpnaCFiUaYFBklhaaaa'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'a', 'a', 'a', 'a')) == 'ZaZvCAMhNaaaaa'", "assert tup_string(('a', '', '')) == 'a'", "assert tup_string(('ZZ', 'a', 'ZvCAMhN', 'a', 'a')) == 'ZZaZvCAMhNaa'", "assert tup_string(('ZZZ', 'a', 'a', 'aFELUEpa', 'a')) == 'ZZZaaaFELUEpaa'", "assert tup_string(('', 'a')) == 'a'", "assert tup_string(('ZZ', 'ZvCAMhN', 'PBEOJoMiYa', 'aa', 'a', 'a', 'ZvCAMhN')) == 'ZZZvCAMhNPBEOJoMiYaaaaaZvCAMhN'", "assert tup_string(('Z', 'aaZ', 'IWSYga', 'a', 'ZvCAMhN', 'IWSYga', 'a', 'a', 'a')) == 'ZaaZIWSYgaaZvCAMhNIWSYgaaaa'", "assert tup_string(('Z', 'aaZ', 'IWSYga', 'a', 'ZvCAMhN', 'IWSYga', 'a', 'a')) == 'ZaaZIWSYgaaZvCAMhNIWSYgaaa'", "assert tup_string(('ZZZ', 'a', 'ZvCAMhN', 'a', 'aFFELUEpa', 'a')) == 'ZZZaZvCAMhNaaFFELUEpaa'", "assert tup_string(('ZZ', 'ZvCAMhN', 'a', 'aa', 'a')) == 'ZZZvCAMhNaaaa'", "assert tup_string(('SkpnaC', 'a', 'qHPQEqCm', 'PyvCTG', 'SkSpnaC', 'aFELUEp', 'tDuJm', 'IWSYg', 'Z', 'Z')) == 'SkpnaCaqHPQEqCmPyvCTGSkSpnaCaFELUEptDuJmIWSYgZZ'", "assert tup_string(('a', 'PBEOJoMiY', '')) == 'aPBEOJoMiY'", "assert tup_string(('Z', 'a', 'ZvCAMhN', 'a', 'a', 'a', 'a', 'a', 'a')) == 'ZaZvCAMhNaaaaaa'", "assert tup_string(('Z', 'ZvCAMhN', 'a', 'aa', 'a', 'a', 'Z', 'a')) == 'ZZvCAMhNaaaaaZa'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'aZZ', 'tDuJm', 'IWSYg', 'Z')) == 'SkpnaCZaqHPQEqCmPyvCTGaFELUEpaZZtDuJmIWSYgZ'", "assert tup_string(('Z', 'aaZ', 'IWSYga', 'a', 'ZvCAMhN', 'IWSYga', 'a', 'a', 'a', 'a')) == 'ZaaZIWSYgaaZvCAMhNIWSYgaaaaa'", "assert tup_string(('aFELUEpZ', 'a', 'ZvCAMhN', 'a', 'a', 'aa', 'mKxDJTaa', 'a')) == 'aFELUEpZaZvCAMhNaaaamKxDJTaaa'", "assert tup_string(('aa', 'VekfW', 'aa')) == 'aaVekfWaa'", "assert tup_string(('IWSYg', 'ZZZ', 'a', 'a', 'aFELUEpa', 'a')) == 'IWSYgZZZaaaFELUEpaa'", "assert tup_string(('ZZ', 'SkpnaC', 'FiUaYFBklh', 'a', 'a', 'a', 'a', 'a')) == 'ZZSkpnaCFiUaYFBklhaaaaa'", "assert tup_string(('ZZ', 'aa', 'a', 'aa', 'aa')) == 'ZZaaaaaaa'", "assert tup_string(('aa', 'SkpVekfWnaC', 'aa')) == 'aaSkpVekfWnaCaa'", "assert tup_string(('mKxDJT', 'VekfW', 'ZvCAMhN', 'aaZ', 'FiUaYFBklh', 'PBEOJoMiY', 'aFELUEp', 'aaZamKxDJTaa', 'ZZ', 'VekfW', 'PBEOJoMiY')) == 'mKxDJTVekfWZvCAMhNaaZFiUaYFBklhPBEOJoMiYaFELUEpaaZamKxDJTaaZZVekfWPBEOJoMiY'", "assert tup_string(('SkpnaC', 'ZZ', 'aa', 'a', 'aa', 'aa', 'aa')) == 'SkpnaCZZaaaaaaaaa'", "assert tup_string(('SkpnaC', 'ZZ', 'aa', 'aPBEOJoMiYaa', 'a', 'aa', 'aa', 'aa')) == 'SkpnaCZZaaaPBEOJoMiYaaaaaaaaa'", "assert tup_string(('aa', 'SkfpVekfWnaC', 'aa')) == 'aaSkfpVekfWnaCaa'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'aZZ', 'tDuJm', 'IWSYg', 'aaZamKxDJTaa')) == 'SkpnaCZaqHPQEqCmPyvCTGaFELUEpaZZtDuJmIWSYgaaZamKxDJTaa'", "assert tup_string(('ZZ', 'SkpnaC', 'FiUaYFBklh', 'aaFELUEpa', 'a', 'a', 'a', 'a')) == 'ZZSkpnaCFiUaYFBklhaaFELUEpaaaaa'", "assert tup_string(('ZZ', 'ZvCAMhN', 'PBEOJoMiYa', 'aa', 'a', 'a', 'ZvCAMhN', 'a')) == 'ZZZvCAMhNPBEOJoMiYaaaaaZvCAMhNa'", "assert tup_string(('Z', 'ZvCAMhN', 'aPBEOJoMiYaa', 'a', 'aa', 'a', 'Z', 'a')) == 'ZZvCAMhNaPBEOJoMiYaaaaaaZa'", "assert tup_string(('aFELUEpZ', 'a', 'ZvCAMhN', 'a', 'ZvCACMhN', 'aa', 'a', 'aaFELUEpZ', 'aa')) == 'aFELUEpZaZvCAMhNaZvCACMhNaaaaaFELUEpZaa'", "assert tup_string(('ZZ', 'a', 'ZvCAMhN', 'a', 'ZZZ', 'a', 'a')) == 'ZZaZvCAMhNaZZZaa'", "assert tup_string(('ZZ', 'a', 'tDuJma', 'PBEOJoMiY', 'a', 'aa')) == 'ZZatDuJmaPBEOJoMiYaaa'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'aZZ', 'IWSYg', 'Z')) == 'SkpnaCZaqHPQEqCmPyvCTGaFELUEpaZZIWSYgZ'", "assert tup_string(('Z', 'aaZ', 'a', 'ZvCAMhN', 'a', 'a', 'a', 'a', 'a')) == 'ZaaZaZvCAMhNaaaaa'", "assert tup_string(('mKxDJT', 'ZvCAMhN', 'aZ', 'ZZ', 'mKxDJT', 'aa', 'SkfpVekfWnaC', 'aZtDuJm', 'aa', 'a')) == 'mKxDJTZvCAMhNaZZZmKxDJTaaSkfpVekfWnaCaZtDuJmaaa'", "assert tup_string(('ZvCAMhN', 'ZvCAaFELUEpMhN', 'aaa', 'aaa', 'aa', 'aa')) == 'ZvCAMhNZvCAaFELUEpMhNaaaaaaaaaa'", "assert tup_string(('mKxDJT', 'VekfW', 'ZvCAMhN', 'aaZ', 'aZ', 'PBEOJoMiY', 'aFELUEp', 'aaZ', 'ZZ')) == 'mKxDJTVekfWZvCAMhNaaZaZPBEOJoMiYaFELUEpaaZZZ'", "assert tup_string(('ZZZ', 'a', 'ZvCAMhN', 'a', 'aFELUEpa', 'a', 'ZmKxDJTaaavCAMhN', 'a')) == 'ZZZaZvCAMhNaaFELUEpaaZmKxDJTaaavCAMhNa'", "assert tup_string(('ZvCNAMhN',)) == 'ZvCNAMhN'", "assert tup_string(('SkpnaC', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'tDuJm', 'IWSYg', 'Z', 'Z')) == 'SkpnaCaqHPQEqCmPyvCTGaFELUEptDuJmIWSYgZZ'", "assert tup_string(('Z', 'aaZ', 'IWSYga', 'a', 'ZvCAMhN', 'IWSYga', 'a', 'a', 'a', 'a', 'a')) == 'ZaaZIWSYgaaZvCAMhNIWSYgaaaaaa'", "assert tup_string(('ZvCAMhN', 'aaa', 'aa', 'aa', 'ZMvCAMhN', 'aa')) == 'ZvCAMhNaaaaaaaZMvCAMhNaa'", "assert tup_string(('SkpnaC', 'Z', 'a', 'qHPQEqCm', 'PyvCTG', 'aFELUEp', 'aZZ', 'IWSYg', 'Z', 'Z')) == 'SkpnaCZaqHPQEqCmPyvCTGaFELUEpaZZIWSYgZZ'", "assert tup_string(('ZvCAMhN', 'a', 'aa', 'aa')) == 'ZvCAMhNaaaaa'", "assert tup_string(('Z', 'VekfW', 'ZvCAMhN', 'aaa', 'a', 'a', 'a')) == 'ZVekfWZvCAMhNaaaaaa'", "assert tup_string(('ZZZ', 'a', 'aFELUEpa')) == 'ZZZaaFELUEpa'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate the sum of the negative numbers of a given list of numbers.\nassert sum_negativenum([2, 4, -6, -9, 11, -12, 14, -5, 17])==-32\nYour code should pass the test:\nassert sum_negativenum([2, 4, -6, -9, 11, -12, 14, -5, 17])==-32", "test_list": [ "assert sum_negativenum([2, 4, -6, -9, 11, -12, 14, -5, 17])==-32", "assert sum_negativenum([10,15,-14,13,-18,12,-20])==-52", "assert sum_negativenum([19, -65, 57, 39, 152,-639, 121, 44, 90, -190])==-894", "assert sum_negativenum([]) == 0", "assert sum_negativenum([1, 2, 3, 4, 5]) == 0", "assert sum_negativenum([-1, -2, -3, -4, -5]) == -15", "assert sum_negativenum([10, 15, 14, 13, 18, 12, 20]) == 0", "assert sum_negativenum([3, -5, 1, -7, 2, -8, 4, -6]) == -26", "assert sum_negativenum([-10]) == -10", "assert sum_negativenum([3, -5, 1, -7, 2.5, -8.9, 4, -6]) == -26.9", "assert sum_negativenum([-10, 15, -14.2, 13, -18, 12, -20.7]) == -62.900000000000006", "assert sum_negativenum([3, -5, 1, -7, 2.5, -8.9, 4, -6, 1]) == -26.9", "assert sum_negativenum([2, 3, 4, 5]) == 0", "assert sum_negativenum([2, 3, -7, 6]) == -7", "assert sum_negativenum([3, 2, -5, 1, -7, 2.5, 4, -6, 1]) == -18", "assert sum_negativenum([5, 2, 3, 4, 5]) == 0", "assert sum_negativenum([10, 15, 14, 13, 18, 12, 20, 20]) == 0", "assert sum_negativenum([10, -1, -2, -3, -4, -5]) == -15", "assert sum_negativenum([20, 2, 3, 4, 5]) == 0", "assert sum_negativenum([3, -5, 1, -7, 2.5, -8.9, 4, -6, 1, 1]) == -26.9", "assert sum_negativenum([10, 15, 14, 13, 13, 18, 12, 20, 20, 15, 18]) == 0", "assert sum_negativenum([10, 15, 14, 13, 18, 12, 20, 14, 20]) == 0", "assert sum_negativenum([10, -1, -2, -4, -5]) == -12", "assert sum_negativenum([-6, 3, -5, 1, -7, 2, -8, 4, 2, -6]) == -32", "assert sum_negativenum([3, 2, -5, 1, -7, 4, -6, 1]) == -18", "assert sum_negativenum([1, 2, 3, 1, 5, 1]) == 0", "assert sum_negativenum([1, 2, 4, 5, 2, 2]) == 0", "assert sum_negativenum([0, 2, -5, 1, -7, 4, -6, 1]) == -18", "assert sum_negativenum([1, 2, 3, 0, 1, 5, 1]) == 0", "assert sum_negativenum([10, 14, 15, 14, 13, 18, 12, 20, 20]) == 0", "assert sum_negativenum([10, 15, 14, 1, 13, 18, 12, 20, 14, 20]) == 0", "assert sum_negativenum([5, 2, 20, 4, 4, 6]) == 0", "assert sum_negativenum([3, 2, -5, 1, -7, 2.5, 4, 10, 1]) == -12", "assert sum_negativenum([1, -8, 2, -10, 4, 5, 2, 2]) == -18", "assert sum_negativenum([3, -5, 1, -7, -2, 2.5, -8.9, 4, -6, 1, 1]) == -28.9", "assert sum_negativenum([2, 10, 14, 15, 14, 13, 18, 12, 20, 20]) == 0", "assert sum_negativenum([-6, 3, -5, 1, -7, 2, -8, 2, 2, -6]) == -32", "assert sum_negativenum([0, 2, -5, 1, -7, 4, 1]) == -12", "assert sum_negativenum([0, 2, -5, 1, -7, 1, 4, 1, -7]) == -19", "assert sum_negativenum([3, -5, 0, -7, 2.5, -8.9, 4, -6]) == -26.9", "assert sum_negativenum([1, 2, 3, 4, 2, 5, 2, 3]) == 0", "assert sum_negativenum([-7, 5, 3, -5, 1, -7, 2, -8, 2, 2, -6]) == -33", "assert sum_negativenum([-6, 3, -5, 1, -7, -8, 2, -4, 2, -6]) == -36", "assert sum_negativenum([0, 2, -5, 1, -5, -7, 1, 4, 1, -7]) == -24", "assert sum_negativenum([0, 2, -5, 1, -5, -7, 1, 4, -4, 1, -7]) == -28", "assert sum_negativenum([1, 2, 3, 4, 2, 5, 3]) == 0", "assert sum_negativenum([10, -1, -2, -3, -4, 9, -5, -4]) == -19", "assert sum_negativenum([5, 2, 20, 4, 4]) == 0", "assert sum_negativenum([10, -1, -2, -3, -4, 9, -4]) == -14", "assert sum_negativenum([0, 2, -5, 1, -7, 4, 1, 4, 1, -7]) == -19", "assert sum_negativenum([1, 2, 3, 4, 4]) == 0", "assert sum_negativenum([-10, 15, -14.2, 13, -18, 12, -20.7, 12]) == -62.900000000000006", "assert sum_negativenum([10, 14, 15, 14, 13, 21, 18, 12, 20, 20]) == 0", "assert sum_negativenum([-6, 3, -5, 1, -7, 2, -8, 4, 1, -6]) == -32", "assert sum_negativenum([1, 21, 2, 3, 3, 1, 1, 1]) == 0", "assert sum_negativenum([3, -5, 0, -7, 2.5, -8.9, 4, -6, 0]) == -26.9", "assert sum_negativenum([-1, -2, -3, -4, -5, -1]) == -16", "assert sum_negativenum([10, 14, -5, 15, 14, 13, 21, 18, 12, 20, 20, 14]) == -5", "assert sum_negativenum([-10, -10]) == -20", "assert sum_negativenum([-10, 15, 16, -14.2, 13, -18, 12, -20.7]) == -62.900000000000006", "assert sum_negativenum([-6, 3, -5, -7, 2, -8, 4, 2, -6]) == -32", "assert sum_negativenum([-1, -2, -3, -4, -5, -4]) == -19", "assert sum_negativenum([3, -5, 1, -7, 2, 16, -8, 4, -6]) == -26", "assert sum_negativenum([3, 2, -5, 1, -7, 2.5, 4, -6, 1, 2]) == -18", "assert sum_negativenum([3, -5, -6, 1, -7, 2, 16, 0, 4, -6, 1]) == -24", "assert sum_negativenum([-1, -2, -3, -4, -5, -5]) == -20", "assert sum_negativenum([3, -5, 0, -7, 2.5, -8.9, 4, -6, 0, 4]) == -26.9", "assert sum_negativenum([3, -5, 0, -7, 2.5, -8.686091893944287, 4, -6, 4]) == -26.686091893944287", "assert sum_negativenum([10, 15, 14, 13, 14, 12, 20, 10]) == 0", "assert sum_negativenum([1, 2, 3, 3, 3, 4, 4]) == 0", "assert sum_negativenum([-6, 3, -5, 1, -7, 2, -8, 4, 1, -6, -7]) == -39", "assert sum_negativenum([10, -1, -2, -3, -4, 9, -1, -1, -5]) == -17", "assert sum_negativenum([10, -2, -1, -2, -3, -4, 9, -1, -1, -5]) == -19", "assert sum_negativenum([10, -1, -2, 16, -4, 9, -4]) == -11", "assert sum_negativenum([3, -9.674408997541613, -5, 1, -7, 2.5, -8.9, 4, -6, 1, 1]) == -36.57440899754161", "assert sum_negativenum([10, -1, -2, -3, -4, -5, 10]) == -15", "assert sum_negativenum([3, -5, 1, -7, 2, 16, -8, 20, -6]) == -26", "assert sum_negativenum([10, 15, 14, 13, 13, 18, 12, 20, 20, 15, 18, 12]) == 0", "assert sum_negativenum([-7, 3, -7, 6]) == -14", "assert sum_negativenum([10, 15, 1, 13, 18, 12, 20, 14, 20]) == 0", "assert sum_negativenum([3, -5, 1, -7, 2, 16, 4, -6]) == -18", "assert sum_negativenum([10, -1, -2, -3, -4, -5, -1]) == -16", "assert sum_negativenum([10, -1, -2, -3, -4, 5, -4]) == -14", "assert sum_negativenum([2, 3, 4, 5, 2]) == 0", "assert sum_negativenum([3, 2, -5, 1, -7, 2.5, 20, 4, 10, 1]) == -12", "assert sum_negativenum([10, -1, -2, 16, -4, 9]) == -7", "assert sum_negativenum([1, -6, 2, 3, 4, 2, 5, 3]) == -6", "assert sum_negativenum([2, 10, 15, 14, 13, 18, 12, 20, 20]) == 0", "assert sum_negativenum([-8, 2, -4, -10, 4, 5, 2]) == -22", "assert sum_negativenum([10, 15, 14, 1, 13, 18, 13, 12, 20, 14, 19, 20]) == 0", "assert sum_negativenum([-1, -2, -5, -3, -4, -5, -1]) == -21", "assert sum_negativenum([10, -2, -2, -3, -4, 9, -1, -1]) == -13", "assert sum_negativenum([0, 2, -5, 1, -5, -7, 1, 4, -4, 1, -7, 1]) == -28", "assert sum_negativenum([10, 15, 13, 18, 12, 20, 20]) == 0", "assert sum_negativenum([1, 2, 3, 4, 2, 5, 4]) == 0", "assert sum_negativenum([1, 2, 3, 4, 2, 5, 2, 3, 5, 5]) == 0", "assert sum_negativenum([1, 2, 3, 4, 2, 5, 4, 2, 2]) == 0", "assert sum_negativenum([-18, 2, 3, 1, 5, 1]) == -18", "assert sum_negativenum([2, 9, 15, 21, 18, 12, 20, 20]) == 0", "assert sum_negativenum([3, 2, 1, -7, 2.5, 4, -6, 1, 1]) == -13", "assert sum_negativenum([1, 21, 3, 3, 1, 1, 1]) == 0", "assert sum_negativenum([2, 3, 5, 2]) == 0", "assert sum_negativenum([2, 5, 3, 5, 2]) == 0", "assert sum_negativenum([-1, -3, -4, -5]) == -13", "assert sum_negativenum([10, 14, 15, 14, 13, 21, 18, 12, 20, 20, 14]) == 0", "assert sum_negativenum([-2, 16, -3, -4, -5]) == -14", "assert sum_negativenum([-10, 15, 16, -14.2, 13, -18, 12, -20.7, -18]) == -80.9", "assert sum_negativenum([5, 2, 20, 4, 4, 2]) == 0", "assert sum_negativenum([1, 2, 4, 3, 5, 2, 3]) == 0", "assert sum_negativenum([3, 2, -5, 1, -7, 4, -6, 1, -6]) == -24", "assert sum_negativenum([0, 2, -4, -5, 1, -7, 4, 1, 4, 1, -7]) == -23" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth hexagonal number.\nassert hexagonal_num(10) == 190\nYour code should pass the test:\nassert hexagonal_num(10) == 190", "test_list": [ "assert hexagonal_num(10) == 190", "assert hexagonal_num(5) == 45", "assert hexagonal_num(7) == 91", "assert hexagonal_num(100) == 19900", "assert hexagonal_num(1000) == 1999000", "assert hexagonal_num(10000) == 199990000", "assert hexagonal_num(9999) == 199950003", "assert hexagonal_num(9998) == 199910010", "assert hexagonal_num(10001) == 200030001", "assert hexagonal_num(99) == 19503", "assert hexagonal_num(9997) == 199870021", "assert hexagonal_num(1001) == 2003001", "assert hexagonal_num(10002) == 200070006", "assert hexagonal_num(9996) == 199830036", "assert hexagonal_num(101) == 20301", "assert hexagonal_num(True) == 1", "assert hexagonal_num(90) == 16110", "assert hexagonal_num(98) == 19110", "assert hexagonal_num(97) == 18721", "assert hexagonal_num(1002) == 2007006", "assert hexagonal_num(10003) == 200110015", "assert hexagonal_num(102) == 20706", "assert hexagonal_num(1003) == 2011015", "assert hexagonal_num(62) == 7626", "assert hexagonal_num(1004) == 2015028", "assert hexagonal_num(False) == 0", "assert hexagonal_num(96) == 18336", "assert hexagonal_num(103) == 21115", "assert hexagonal_num(9995) == 199790055", "assert hexagonal_num(104) == 21528", "assert hexagonal_num(63) == 7875", "assert hexagonal_num(64) == 8128", "assert hexagonal_num(91) == 16471", "assert hexagonal_num(61) == 7381", "assert hexagonal_num(1005) == 2019045", "assert hexagonal_num(89) == 15753", "assert hexagonal_num(1006) == 2023066", "assert hexagonal_num(60) == 7140", "assert hexagonal_num(105) == 21945", "assert hexagonal_num(66) == 8646", "assert hexagonal_num(59) == 6903", "assert hexagonal_num(65) == 8385", "assert hexagonal_num(87) == 15051", "assert hexagonal_num(88) == 15400", "assert hexagonal_num(10004) == 200150028", "assert hexagonal_num(9994) == 199750078", "assert hexagonal_num(58) == 6670", "assert hexagonal_num(106) == 22366", "assert hexagonal_num(1007) == 2027091", "assert hexagonal_num(22) == 946", "assert hexagonal_num(92) == 16836", "assert hexagonal_num(10005) == 200190045", "assert hexagonal_num(10006) == 200230066", "assert hexagonal_num(86) == 14706", "assert hexagonal_num(93) == 17205", "assert hexagonal_num(67) == 8911", "assert hexagonal_num(57) == 6441", "assert hexagonal_num(23) == 1035", "assert hexagonal_num(9993) == 199710105", "assert hexagonal_num(68) == 9180", "assert hexagonal_num(85) == 14365", "assert hexagonal_num(39) == 3003", "assert hexagonal_num(21) == 861", "assert hexagonal_num(84) == 14028", "assert hexagonal_num(5) == 45", "assert hexagonal_num(94) == 17578", "assert hexagonal_num(40) == 3160", "assert hexagonal_num(83) == 13695", "assert hexagonal_num(999) == 1995003", "assert hexagonal_num(1008) == 2031120", "assert hexagonal_num(20) == 780", "assert hexagonal_num(41) == 3321", "assert hexagonal_num(42) == 3486", "assert hexagonal_num(10007) == 200270091", "assert hexagonal_num(38) == 2850", "assert hexagonal_num(56) == 6216", "assert hexagonal_num(6) == 66", "assert hexagonal_num(1009) == 2035153", "assert hexagonal_num(107) == 22791", "assert hexagonal_num(69) == 9453", "assert hexagonal_num(82) == 13366", "assert hexagonal_num(55) == 5995", "assert hexagonal_num(9992) == 199670136", "assert hexagonal_num(24) == 1128", "assert hexagonal_num(7) == 91", "assert hexagonal_num(12) == 276", "assert hexagonal_num(8) == 120", "assert hexagonal_num(11) == 231", "assert hexagonal_num(108) == 23220", "assert hexagonal_num(95) == 17955", "assert hexagonal_num(25) == 1225", "assert hexagonal_num(1) == 1", "assert hexagonal_num(9) == 153", "assert hexagonal_num(19) == 703", "assert hexagonal_num(10) == 190", "assert hexagonal_num(36) == 2556", "assert hexagonal_num(0) == 0", "assert hexagonal_num(81) == 13041", "assert hexagonal_num(52) == 5356", "assert hexagonal_num(51) == 5151", "assert hexagonal_num(109) == 23653", "assert hexagonal_num(10008) == 200310120", "assert hexagonal_num(110) == 24090", "assert hexagonal_num(1010) == 2039190", "assert hexagonal_num(10009) == 200350153", "assert hexagonal_num(43) == 3655" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the ratio of zeroes to non-zeroes in an array of integers.\nassert math.isclose(zero_count([0, 1, 2, -1, -5, 6, 0, -3, -2, 3, 4, 6, 8]), 0.181818, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(zero_count([0, 1, 2, -1, -5, 6, 0, -3, -2, 3, 4, 6, 8]), 0.181818, rel_tol=0.001)", "test_list": [ "assert math.isclose(zero_count([0, 1, 2, -1, -5, 6, 0, -3, -2, 3, 4, 6, 8]), 0.181818, rel_tol=0.001)", "assert math.isclose(zero_count([2, 1, 2, -1, -5, 6, 4, -3, -2, 3, 4, 6, 8]), 0.00, rel_tol=0.001)", "assert math.isclose(zero_count([2, 4, -6, -9, 11, -12, 14, -5, 17]), 0.00, rel_tol=0.001)", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]) == inf", "assert zero_count([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 0.0", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1]) == 0.0", "assert zero_count([0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0]) == 1.2", "assert zero_count([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10]) == 0.0", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1]) == 0.5714285714285714", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1]) == 0.8333333333333334", "assert zero_count([0, 1, 0, 2, 0, 3, 0, 4, 0, 5]) == 1.0", "assert zero_count([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0]) == 0.041666666666666664", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1]) == 10.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, -1]) == 10.0", "assert zero_count([-1, -2, -3, -4, -5, -5, -6, -7, -8, -9, -10]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, -7, 0, 0, 1]) == 5.0", "assert zero_count([1, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, -7, 0, 0, 1, -7]) == 3.3333333333333335", "assert zero_count([0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1]) == 1.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, 1]) == 8.0", "assert zero_count([-5, 0, 1, 0, 0, 1, 0, 1, 0, 1, 1]) == 0.8333333333333334", "assert zero_count([-1, -2, -4, -5, -5, -6, -7, -8, -9, -10, -2]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, -1, 0, 0, 0, 1]) == 4.0", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1]) == 0.5", "assert zero_count([0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0]) == 1.4", "assert zero_count([0, 0, 0, 0, 0, 0, 0, -7, 0, 1, -7]) == 2.6666666666666665", "assert zero_count([-5, 0, 1, 0, 0, 1, 0, 1, 0, 1, -3]) == 0.8333333333333334", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1, 1]) == 0.6666666666666666", "assert zero_count([0, 0, 1, 0, 1, 1, 1, 1, 1]) == 0.5", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1]) == 0.7142857142857143", "assert zero_count([0, 0, 0, 1, 1, 1, 1, 1]) == 0.6", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1]) == 0.0", "assert zero_count([-1, 0, 0, 0, 0, 0, 0, 0, 1]) == 3.5", "assert zero_count([-1, -1, -1, -1, 4, -1, -1, -1, -1, -1, -1, -1, -1]) == 0.0", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 0, -7, 0, 0, 1]) == 4.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, 0, -1]) == 9.0", "assert zero_count([-1, -2, -4, -5, -5, -6, -7, -8, -9, -10, -1]) == 0.0", "assert zero_count([0, -1, 0, 0, -8, 0, 0, 0, 0, 1]) == 2.3333333333333335", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1, 1]) == 0.625", "assert zero_count([-5, 0, 1, 0, 1, 0, 1, 1, 1]) == 0.5", "assert zero_count([0, -1, 0, 0, 0, 1, 1, 1, 1, 1, 1]) == 0.5714285714285714", "assert zero_count([-1, 0, 0, 0, 0, 0, -5, 0, 0, 1]) == 2.3333333333333335", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1, 0]) == 0.8571428571428571", "assert zero_count([-5, 0, 1, -1, 0, 1, 0, 1, 0, 1, 1]) == 0.5714285714285714", "assert zero_count([-5, 0, 1, -1, 0, 1, -6, 0, 0, 1, 1]) == 0.5714285714285714", "assert zero_count([0, 0, 1, 0, 1, 1, -2, 1, 1]) == 0.5", "assert zero_count([1, 1, -2, 1, 1, 1, 1, 1, 1, 1]) == 0.0", "assert zero_count([-5, 0, 0, 0, 0, 0, -1, 0, 0, 0, 1]) == 2.6666666666666665", "assert zero_count([-5, 0, 0, 0, 0, -1, 0, 0, 0]) == 3.5", "assert zero_count([0, -1, 0, -1, -8, 0, 0, 0, 0, 1]) == 1.5", "assert zero_count([0, 0, 0, 0, 0, 1, -9, 1, 1, 2, 1, 2, 1]) == 0.625", "assert zero_count([0, 1, 0, 0, 1, 0, 1, 0, 1, 4, 1]) == 0.8333333333333334", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 2, 1]) == 0.5", "assert zero_count([0, 1, 0, 1, 0, 1, 0, 1, 1, 0]) == 1.0", "assert zero_count([0, 0, 1, 0, 1, 1, 0, 1, 0, 1, 0, 0]) == 1.4", "assert zero_count([-5, 0, 1, 3, 0, 1, 0, 1, 0, 1, 1, 0, 1]) == 0.625", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -9, -1, -1, -1]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 0, 1, -9, 1, 1, 2, 1, 2, 1]) == 0.75", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1, -9, 0, 2]) == 0.6666666666666666", "assert zero_count([-1, -1, -1, -1, -1, 0, -1, -1, -1, -1, -1, -1]) == 0.09090909090909091", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 2, 1, 0]) == 0.5555555555555556", "assert zero_count([-1, -2, -4, -5, -5, -6, -7, -8, -9, -9, -10, -2]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 0]) == 1.0", "assert zero_count([0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 1]) == 4.5", "assert zero_count([0, 0, 0, 0, -10, 0, 1, 1, 1, 2, 1, 1]) == 0.7142857142857143", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1]) == 0.8", "assert zero_count([-5, 1, 1, 0, 1, 0, 1, 1, 1]) == 0.2857142857142857", "assert zero_count([0, -2, 0, 0, 0, 0, 0, 0, 0, 1]) == 4.0", "assert zero_count([-1, -2, -1, -1, -1, -1, -1, -1, -9, -1, -1, -1, -1]) == 0.0", "assert zero_count([0, -2, 0, 0, -10, 0, 1, 1, 1, 2, 1, 1]) == 0.5", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 2, -1, -1]) == 0.0", "assert zero_count([0, 0, 0, 0, -1, 1, 1, 1, 1, 1, 1]) == 0.5714285714285714", "assert zero_count([5, 1, 0, 2, 0, 3, 0, 4, 0, 5, 0]) == 0.8333333333333334", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, 0, -1]) == 0.1111111111111111", "assert zero_count([-1, -1, -1, -1, 4, -1, -1, -1, -1, -1, -1, -1, -1, -1]) == 0.0", "assert zero_count([-5, 0, 0, 0, 0, -1, 0, 0]) == 3.0", "assert zero_count([0, 0, 0, 0, -1, 1, 1, 1, 1, -1, 1]) == 0.5714285714285714", "assert zero_count([-2, -3, -5, -5, -6, -7, -8, -9, -10]) == 0.0", "assert zero_count([-5, 0, 1, -1, 0, 1, -6, 0, 0, 1, 1, 0]) == 0.7142857142857143", "assert zero_count([-2, -3, -5, -5, -6, -7, -8, -9, -10, -3]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, -1]) == 8.0", "assert zero_count([0, -1, 0, -10, -1, -8, 0, 0, 0, 0, 1]) == 1.2", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 2, 0]) == 0.625", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, -8, 0, 0]) == 1.0", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 2, -1, -1]) == 0.0", "assert zero_count([0, -6, 0, 0, 0, 1, 1, 1, 1, 1, 1, 2, 0]) == 0.625", "assert zero_count([-1, -1, -1, -1, -1, 0, -1, -1, -1, -1, 0, -1]) == 0.2", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1, 0, 2, 1]) == 0.6666666666666666", "assert zero_count([-1, -2, -4, -5, -6, -7, -8, -9, -10, -2]) == 0.0", "assert zero_count([0, 0, 1, 0, 1, -9, 1, 1, 1, 1, 1]) == 0.375", "assert zero_count([0, 1, 0, -2, 2, 0, 3, 0, 4, 0, 1, 5]) == 0.7142857142857143", "assert zero_count([-1, 0, 0, 0, 0, -8, 0, 0, 1]) == 2.0", "assert zero_count([-2, -3, -5, -5, -5, -7, -8, -9, -10]) == 0.0", "assert zero_count([0, 0, 0, 0, 0, 0, 0, 0, 0, 1]) == 9.0", "assert zero_count([0, -2, 0, 0, -10, 0, 1, 1, 1, 2, 1, 1, 0]) == 0.625", "assert zero_count([-1, -2, -1, -10, -1, -1, -1, -1, -9, -1, -1, -1, -1]) == 0.0", "assert zero_count([1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0]) == 0.09090909090909091", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1, 1, 0]) == 0.75", "assert zero_count([0, 0, 0, 0, 1, 1, 1, 2, 1, 2, 1, 1, 0, 1]) == 0.5555555555555556", "assert zero_count([0, 3, 0, -2, 0, -10, 0, 1, 1, 1, 2, 1, 0]) == 0.625", "assert zero_count([-5, 0, 2, 0, 1, 0, 1, 1, 1, 0]) == 0.6666666666666666", "assert zero_count([-1, 1, 0, 2, 0, 3, 0, 4, 0, 5, 0]) == 0.8333333333333334", "assert zero_count([0, 0, 0, 0, 0, 1, 1, 1, -5, 1, 2, 1, 0]) == 0.8571428571428571", "assert zero_count([1, -5, 0, 1, -1, 0, 1, 0, 1, 0, 1, 1]) == 0.5", "assert zero_count([0, 0, 0, 0, 1, 0, 1, 2, 1, 2, 1, 1, 0, 1]) == 0.75", "assert zero_count([-5, 0, 1, 0, -10, -3, 1, 1]) == 0.3333333333333333", "assert zero_count([-1, -2, -4, -5, -6, -7, -8, -9, -10, -2, -5]) == 0.0", "assert zero_count([-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 2, 0, -1, -1]) == 0.07142857142857142", "assert zero_count([-5, 0, 1, 3, 0, 1, 0, 1, 0, 1, 1, 0, 1, 1, 1]) == 0.5", "assert zero_count([0, 0, 0, 0, 0, 1, -7, 0, 0, 1, 0]) == 2.6666666666666665", "assert zero_count([-5, 1, 1, 0, 1, 0, 1, 1]) == 0.3333333333333333", "assert zero_count([0, 0, 0, 0, 1, 0, 1, 2, 1, 2, 1, 1, 0, 1, 1]) == 0.6666666666666666" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the given number can be represented as sum of non-zero powers of 2 or not.\nassert is_Sum_Of_Powers_Of_Two(10) == True\nYour code should pass the test:\nassert is_Sum_Of_Powers_Of_Two(10) == True", "test_list": [ "assert is_Sum_Of_Powers_Of_Two(10) == True", "assert is_Sum_Of_Powers_Of_Two(7) == False", "assert is_Sum_Of_Powers_Of_Two(14) == True", "assert is_Sum_Of_Powers_Of_Two(123456789) == False", "assert is_Sum_Of_Powers_Of_Two(-14) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483648) == False", "assert is_Sum_Of_Powers_Of_Two(-15) == False", "assert is_Sum_Of_Powers_Of_Two(123456788) == True", "assert is_Sum_Of_Powers_Of_Two(-2147483647) == False", "assert is_Sum_Of_Powers_Of_Two(123456787) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483649) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483650) == False", "assert is_Sum_Of_Powers_Of_Two(True) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483651) == False", "assert is_Sum_Of_Powers_Of_Two(-16) == False", "assert is_Sum_Of_Powers_Of_Two(False) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483646) == False", "assert is_Sum_Of_Powers_Of_Two(123456786) == True", "assert is_Sum_Of_Powers_Of_Two(-17) == False", "assert is_Sum_Of_Powers_Of_Two(-88) == False", "assert is_Sum_Of_Powers_Of_Two(-18) == False", "assert is_Sum_Of_Powers_Of_Two(-19) == False", "assert is_Sum_Of_Powers_Of_Two(-20) == False", "assert is_Sum_Of_Powers_Of_Two(123456785) == False", "assert is_Sum_Of_Powers_Of_Two(-7) == False", "assert is_Sum_Of_Powers_Of_Two(-6) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483652) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483653) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483645) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483654) == False", "assert is_Sum_Of_Powers_Of_Two(123456784) == True", "assert is_Sum_Of_Powers_Of_Two(-86) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483643) == False", "assert is_Sum_Of_Powers_Of_Two(-87) == False", "assert is_Sum_Of_Powers_Of_Two(123456783) == False", "assert is_Sum_Of_Powers_Of_Two(21) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483655) == False", "assert is_Sum_Of_Powers_Of_Two(-85) == False", "assert is_Sum_Of_Powers_Of_Two(-9) == False", "assert is_Sum_Of_Powers_Of_Two(-21) == False", "assert is_Sum_Of_Powers_Of_Two(-10) == False", "assert is_Sum_Of_Powers_Of_Two(19) == False", "assert is_Sum_Of_Powers_Of_Two(-22) == False", "assert is_Sum_Of_Powers_Of_Two(-89) == False", "assert is_Sum_Of_Powers_Of_Two(10) == True", "assert is_Sum_Of_Powers_Of_Two(123456782) == True", "assert is_Sum_Of_Powers_Of_Two(-2147483642) == False", "assert is_Sum_Of_Powers_Of_Two(-23) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483641) == False", "assert is_Sum_Of_Powers_Of_Two(-11) == False", "assert is_Sum_Of_Powers_Of_Two(-8) == False", "assert is_Sum_Of_Powers_Of_Two(-90) == False", "assert is_Sum_Of_Powers_Of_Two(18) == True", "assert is_Sum_Of_Powers_Of_Two(-5) == False", "assert is_Sum_Of_Powers_Of_Two(123456790) == True", "assert is_Sum_Of_Powers_Of_Two(-4) == False", "assert is_Sum_Of_Powers_Of_Two(20) == True", "assert is_Sum_Of_Powers_Of_Two(-2147483640) == False", "assert is_Sum_Of_Powers_Of_Two(9) == False", "assert is_Sum_Of_Powers_Of_Two(123456781) == False", "assert is_Sum_Of_Powers_Of_Two(123456791) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483644) == False", "assert is_Sum_Of_Powers_Of_Two(123456780) == True", "assert is_Sum_Of_Powers_Of_Two(-2147483639) == False", "assert is_Sum_Of_Powers_Of_Two(8) == True", "assert is_Sum_Of_Powers_Of_Two(42) == True", "assert is_Sum_Of_Powers_Of_Two(123456792) == True", "assert is_Sum_Of_Powers_Of_Two(-2147483656) == False", "assert is_Sum_Of_Powers_Of_Two(-13) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483657) == False", "assert is_Sum_Of_Powers_Of_Two(41) == False", "assert is_Sum_Of_Powers_Of_Two(43) == False", "assert is_Sum_Of_Powers_Of_Two(-91) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483638) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483637) == False", "assert is_Sum_Of_Powers_Of_Two(-12) == False", "assert is_Sum_Of_Powers_Of_Two(40) == True", "assert is_Sum_Of_Powers_Of_Two(123456779) == False", "assert is_Sum_Of_Powers_Of_Two(44) == True", "assert is_Sum_Of_Powers_Of_Two(123456793) == False", "assert is_Sum_Of_Powers_Of_Two(28) == True", "assert is_Sum_Of_Powers_Of_Two(29) == False", "assert is_Sum_Of_Powers_Of_Two(45) == False", "assert is_Sum_Of_Powers_Of_Two(123456778) == True", "assert is_Sum_Of_Powers_Of_Two(39) == False", "assert is_Sum_Of_Powers_Of_Two(-55) == False", "assert is_Sum_Of_Powers_Of_Two(82) == True", "assert is_Sum_Of_Powers_Of_Two(-92) == False", "assert is_Sum_Of_Powers_Of_Two(-43) == False", "assert is_Sum_Of_Powers_Of_Two(-3) == False", "assert is_Sum_Of_Powers_Of_Two(27) == False", "assert is_Sum_Of_Powers_Of_Two(11) == False", "assert is_Sum_Of_Powers_Of_Two(-2147483636) == False", "assert is_Sum_Of_Powers_Of_Two(-50) == False", "assert is_Sum_Of_Powers_Of_Two(12) == True", "assert is_Sum_Of_Powers_Of_Two(61) == False", "assert is_Sum_Of_Powers_Of_Two(17) == False", "assert is_Sum_Of_Powers_Of_Two(7) == False", "assert is_Sum_Of_Powers_Of_Two(-75) == False", "assert is_Sum_Of_Powers_Of_Two(81) == False", "assert is_Sum_Of_Powers_Of_Two(-44) == False", "assert is_Sum_Of_Powers_Of_Two(-36) == False", "assert is_Sum_Of_Powers_Of_Two(79) == False", "assert is_Sum_Of_Powers_Of_Two(-45) == False", "assert is_Sum_Of_Powers_Of_Two(-51) == False", "assert is_Sum_Of_Powers_Of_Two(46) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the circumference of a circle.\nassert math.isclose(circle_circumference(10), 62.830000000000005, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(circle_circumference(10), 62.830000000000005, rel_tol=0.001)", "test_list": [ "assert math.isclose(circle_circumference(10), 62.830000000000005, rel_tol=0.001)", "assert math.isclose(circle_circumference(5), 31.415000000000003, rel_tol=0.001)", "assert math.isclose(circle_circumference(4), 25.132, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the volume of a triangular prism.\nassert find_Volume(10,8,6) == 240\nYour code should pass the test:\nassert find_Volume(10,8,6) == 240", "test_list": [ "assert find_Volume(10,8,6) == 240", "assert find_Volume(3,2,2) == 6", "assert find_Volume(1,2,1) == 1", "assert find_Volume(100, 50, 10) == 25000.0", "assert find_Volume(0.5, 0.2, 0.1) == 0.005000000000000001", "assert find_Volume(123456789, 987654321, 12345) == 7.526291655427412e+20", "assert find_Volume(15, 12, 18) == 1620.0", "assert find_Volume(7.5, 3.5, 5.2) == 68.25", "assert find_Volume(50, 25, 35.5) == 22187.5", "assert find_Volume(6.7, 4.9, 3.2) == 52.52800000000001", "assert find_Volume(2.3, 5.6, 4.1) == 26.403999999999996", "assert find_Volume(987654320, 12, 18) == 106666666560.0", "assert find_Volume(12, 987654320, 987654320) == 5.852766334887975e+18", "assert find_Volume(0.5, 0.4312792507522603, 0.5) == 0.05390990634403254", "assert find_Volume(987654321, 14, 51) == 352592592597.0", "assert find_Volume(0.8922229171130629, 0.2, 0.1) == 0.00892222917113063", "assert find_Volume(10, 12, 12345) == 740700.0", "assert find_Volume(12345, 12, 12346) == 914468220.0", "assert find_Volume(15, 12, 987654321) == 88888888890.0", "assert find_Volume(12, 50, 987654320) == 296296296000.0", "assert find_Volume(0.5307408226774875, 0.4312792507522603, 0.5) == 0.05722437608699626", "assert find_Volume(0.5307408226774875, 0.6321031729360945, 0.5) == 0.08387073950528823", "assert find_Volume(6.7, 1.2712163559940908, 0.37719260113270303) == 1.6063029031314886", "assert find_Volume(50, 13, 15) == 4875.0", "assert find_Volume(11, 12, 18) == 1188.0", "assert find_Volume(987654320, 15, 987654320) == 7.315957918609968e+18", "assert find_Volume(12, 15, 987654320) == 88888888800.0", "assert find_Volume(1.2712163559940908, 3.5, 0.37719260113270303) == 0.8391134568597328", "assert find_Volume(2.3, 7.5, 4.1) == 35.3625", "assert find_Volume(0.1, 0.2, 0.2) == 0.0020000000000000005", "assert find_Volume(50, 10, 50) == 12500.0", "assert find_Volume(25, 35.5, 35.5) == 15753.125", "assert find_Volume(10, 12, 13) == 780.0", "assert find_Volume(0.8922229171130629, 0.24784643921729696, 0.1) == 0.011056713649727108", "assert find_Volume(6.7, 7.093315941766064, 0.37719260113270303) == 8.963080073948216", "assert find_Volume(11, 12, 987654321) == 65185185186.0", "assert find_Volume(12, 987654322, 15) == 88888888980.0", "assert find_Volume(0.8922229171130629, 0.2, 0.2) == 0.01784445834226126", "assert find_Volume(11, 12, 987654320) == 65185185120.0", "assert find_Volume(25, 12346, 35.53719707762832) == 5484277.93900499", "assert find_Volume(0.5307408226774875, 4.9, 3.2) == 4.161008049791502", "assert find_Volume(5.8654364659053835, 4.9, 3.2) == 45.985021892698214", "assert find_Volume(12, 12346, 987654320) == 73161481408320.0", "assert find_Volume(12345, 25, 35.5) == 5478093.75", "assert find_Volume(6.7, 0.1, 4.9) == 1.6415000000000002", "assert find_Volume(6.7, 7.114857913414879, 0.33367901527186616) == 7.953163920864196", "assert find_Volume(0.8922229171130629, 0.24784643921729696, 0.8922229171130629) == 0.09865053306243339", "assert find_Volume(12, 18, 987654320) == 106666666560.0", "assert find_Volume(987654322, 10, 987654322) == 4.877305298826399e+18", "assert find_Volume(12345, 25, 12346) == 1905142125.0", "assert find_Volume(50, 25, 50) == 31250.0", "assert find_Volume(0.5, 0.5, 0.5) == 0.0625", "assert find_Volume(1.8063834584596086, 1.2712163559940908, 0.1) == 0.11481520987955135", "assert find_Volume(6.7, 6.958640279396424, 0.30093484569499246) == 7.0152260847358585", "assert find_Volume(1.8063834584596086, 0.6356356838493147, 0.1) == 0.057410089245603174", "assert find_Volume(7.5, 4.737243560970565, 5.2) == 92.37624943892602", "assert find_Volume(11, 15, 987654321) == 81481481482.5", "assert find_Volume(35.5, 6.958640279396424, 6.958640279396424) == 859.5024730501806", "assert find_Volume(987654321, 15, 51) == 377777777782.5", "assert find_Volume(0.5307408226774875, 0.2246713952032357, 0.4312792507522603) == 0.025713360830200257", "assert find_Volume(6.7, 7.114857913414879, 0.6721959532506382) == 16.02163863612505", "assert find_Volume(7.5, 1.2712163559940908, 5.2) == 24.78871894188477", "assert find_Volume(2.3, 7.0513497877662985, 4.1) == 33.247114249318095", "assert find_Volume(50, 987654322, 10) == 246913580500.0", "assert find_Volume(0.1, 4.9, 4.9) == 1.2005000000000001", "assert find_Volume(987654321, 12346, 14) == 85355061729462.0", "assert find_Volume(123456789, 12345, 12345) == 9407347136615362.0", "assert find_Volume(12345, 11, 12345) == 838194637.5", "assert find_Volume(2.3, 0.4312792507522603, 2.3) == 1.1407336182397283", "assert find_Volume(10, 12, 12) == 720.0", "assert find_Volume(50, 100, 50) == 125000.0", "assert find_Volume(2.3, 0.24784643921729696, 0.8922229171130629) == 0.25430441394372344", "assert find_Volume(51, 100, 50) == 127500.0", "assert find_Volume(12345, 25, 18) == 2777625.0", "assert find_Volume(26, 25, 12346) == 4012450.0", "assert find_Volume(25, 10, 35.5) == 4437.5", "assert find_Volume(100, 26, 50) == 65000.0", "assert find_Volume(12345, 25, 11) == 1697437.5", "assert find_Volume(0.4267076249145146, 0.4312792507522603, 7.093315941766064) == 0.6526919798079005", "assert find_Volume(0.6721959532506382, 6.958640279396424, 6.958640279396424) == 16.274762935021045", "assert find_Volume(0.8922229171130629, 0.6356356838493147, 0.1) == 0.028356436203259606", "assert find_Volume(123456789, 12345, 123456789) == 9.407864483555099e+19", "assert find_Volume(50, 10, 12346) == 3086500.0", "assert find_Volume(35.5, 35.5, 35.5) == 22369.4375", "assert find_Volume(0.2, 35.5, 0.2) == 0.7100000000000001", "assert find_Volume(26, 25, 12345) == 4012125.0", "assert find_Volume(0.6721959532506382, 0.6356356838493147, 0.1) == 0.02136358672126057", "assert find_Volume(2.3, 0.1, 5.6) == 0.6439999999999999", "assert find_Volume(0.2, 4.1, 4.1) == 1.6809999999999998", "assert find_Volume(12345, 12345, 12345) == 940682981812.5", "assert find_Volume(12, 12, 987654320) == 71111111040.0", "assert find_Volume(0.5, 0.2, 0.30093484569499246) == 0.015046742284749623", "assert find_Volume(50, 12345, 12345) == 3809975625.0", "assert find_Volume(0.4267076249145146, 0.2804796558775843, 7.093315941766064) == 0.4244739842486375", "assert find_Volume(987654321, 14, 987654321) == 6.828227404529797e+18", "assert find_Volume(2.3, 0.16891917418428634, 0.8922229171130629) == 0.17332059209908857", "assert find_Volume(51, 12, 50) == 15300.0", "assert find_Volume(10, 12345, 11) == 678975.0", "assert find_Volume(0.5, 0.2, 0.41099804295162595) == 0.0205499021475813", "assert find_Volume(987654320, 14, 51) == 352592592240.0", "assert find_Volume(1.2712163559940908, 7.5, 0.1) == 0.476706133497784", "assert find_Volume(0.41099804295162595, 0.33505200659362044, 0.6356356838493147) == 0.04376533443230769", "assert find_Volume(10, 11, 11) == 605.0", "assert find_Volume(12346, 15, 51) == 4722345.0", "assert find_Volume(987654319, 987654320, 987654320) == 4.817091623958257e+26", "assert find_Volume(2.3, 5.6, 0.5050561846753878) == 3.252561829309497", "assert find_Volume(4.748972607227519, 0.2, 0.1) == 0.047489726072275196", "assert find_Volume(0.2, 0.1, 0.2) == 0.0020000000000000005", "assert find_Volume(7.058489893691628, 7.0513497877662985, 7.058489893691628) == 175.6571602689303", "assert find_Volume(7.058489893691628, 7.058489893691628, 2.3) == 57.29562151624887", "assert find_Volume(25, 12347, 987654320) == 152432098613000.0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to flatten the list of lists into a single set of numbers.\nassert set(extract_singly([(3, 4, 5), (4, 5, 7), (1, 4)])) == set([3, 4, 5, 7, 1])\nYour code should pass the test:\nassert extract_singly([(3, 4, 5), (4, 5, 7), (1, 4)]) == set([3, 4, 5, 7, 1])", "test_list": [ "assert extract_singly([(3, 4, 5), (4, 5, 7), (1, 4)]) == set([3, 4, 5, 7, 1])", "assert extract_singly([(1, 2, 3), (4, 2, 3), (7, 8)]) == set([1, 2, 3, 4, 7, 8])", "assert extract_singly([(7, 8, 9), (10, 11, 12), (10, 11)]) == set([7, 8, 9, 10, 11, 12])", "assert extract_singly([[]]) == set()", "assert extract_singly([[1, 2, 3], [4, 5], [6, 7, 8, 9]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([]) == set()", "assert extract_singly([[1, 2, 3], [4, 2, 3], [7, 8, 9], [4, 2, 3]]) == {1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [4, 5], [], [6, 7, 8, 9]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [7], [8, 9, 10]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9, 10}", "assert extract_singly([[1, 2, 3], [], [4, 5], [], [6, 7, 8]]) == {1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3], [2, 3, 4], [4, 2, 3], [7, 8, 9], [4, 2, 3]]) == {1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[10000000, 20000000, 30000000], [40000000, 50000000], [60000000], [70000000, 80000000, 90000000]]) == {10000000, 20000000, 40000000, 30000000, 50000000, 60000000, 70000000, 80000000, 90000000}", "assert extract_singly([[4, 5], [6, 7, 8, 9]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[6, 7, 8, 9, 8], [4, 5], [6, 7, 8, 9, 8], [6, 7, 8, 9, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [8, 9, 10, 8], [1, 2, 3, 4]]) == {1, 2, 3, 4, 5, 6, 8, 9, 10}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [7], [9, 10]]) == {1, 2, 3, 4, 5, 6, 7, 9, 10}", "assert extract_singly([[1, 1, 3], [4, 2, 3], [7, 8, 9], [4, 2, 3]]) == {1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [3, 2, 3], [7, 8, 9], [4, 2, 3]]) == {1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8], [4, 5], [8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[6, 7, 8, 9, 8], [4, 5], [6, 7, 8, 9, 8], [6, 7, 8, 9, 8], [6, 7, 8, 9, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[70000000, 80000000, 80000001, 90000000], [10000000, 20000000, 30000000], [40000000, 50000000], [], [70000000, 80000000, 80000001, 90000000]]) == {70000000, 80000000, 90000000, 80000001, 10000000, 20000000, 30000000, 40000000, 50000000}", "assert extract_singly([[2, 3], [2, 3], [], [4, 5], [], [6, 7, 8]]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[2, 3], [2, 3], [], [4, 5], [], [False, False, True, False]]) == {False, True, 2, 3, 4, 5}", "assert extract_singly([[8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8], [4, 5], [8, 6, 7, 8, 9, 8, 8, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[70000000, 4, 5], [70000000, 4, 5], [6, 7, 8, 9]]) == {70000000, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [4, 40000000, 2, 3], [4, 2, 3], [7, 8, 9], [4, 40000000, 2, 3]]) == {40000000, 1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [], [4, 5], [], [6, 7, 8], []]) == {1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[8, 6, 7, 9, 8, 8, 8], [8, 6, 7, 9, 8, 8, 8], [8, 6, 7, 9, 8, 8, 8], [8, 6, 7, 9, 8, 8, 8], [8, 6, 7, 9, 8, 8, 8], [4, 5], [8, 6, 7, 9, 8, 8, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[6, 7, 8, 10], [6, 7, 8, 10]]) == {8, 10, 6, 7}", "assert extract_singly([[6, 7, 8, 9, 8], [6, 7, 8, 9, 8], [6, 7, 8, 9, 8]]) == {8, 9, 6, 7}", "assert extract_singly([[1, 2, 3], [4, 5], [7, 8, 9], [7, 8, 9]]) == {1, 2, 3, 4, 5, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [4, 5], [6, 7, 8, 9, 6], [4, 5]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [4, 5], [8, 6, 7, 8, 9, 8, 8, 8, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [], [4, 5], [True, False, True, False, True, True, False], [], [6, 7, 8], []]) == {False, 1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[2, 3], [2, 3], [5, 4, 5], [5, 4, 5], [], [6, 7, 8, 7]]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [9, 10, 10], [7], [9, 10, 10], [9, 10, 10]]) == {1, 2, 3, 4, 5, 6, 7, 9, 10}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [9, 10, 10], [7], [9, 10, 10], [9, 10, 10], [9, 10, 10], [9, 10, 10]]) == {1, 2, 3, 4, 5, 6, 7, 9, 10}", "assert extract_singly([[70000000, 80000000, 80000001, 90000000], [10000000, 20000000, 30000000], [9, 50000000], [9, 50000000], [], [70000000, 80000000, 80000001, 90000000], [9, 50000000]]) == {70000000, 80000000, 90000000, 80000001, 10000000, 20000000, 30000000, 50000000, 9}", "assert extract_singly([[2, 3], [2, 3], [5, 4, 5], [5, 4, 5], [], [6, 7, 8, 7], []]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2], [4, 40000000, 2, 3, 3], [4, 2, 3], [7, 8, 9], [4, 40000000, 2, 3, 3]]) == {40000000, 1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 1, 3], [4, 2, 3], [7, 8, 9], [4, 2, 3], [4, 2, 3]]) == {1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[4, 5], [6, 7, 8, 9, 6], [4, 5], [4, 5]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[0, 2, 3, 4], [5, 6], [7], [0, 2, 3, 4], [9, 10]]) == {0, 2, 3, 4, 5, 6, 7, 9, 10}", "assert extract_singly([[70000000, 80000000, 20000000, 90000000], [10000000, 20000000, 30000000], [40000000, 50000000], [], [70000000, 80000000, 20000000, 90000000]]) == {70000000, 80000000, 20000000, 90000000, 10000000, 30000000, 40000000, 50000000}", "assert extract_singly([[1, 2, 3], [], [6, 7, 8, 9], []]) == {1, 2, 3, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [6, 7, 8, 9, 6], [4, 5]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[6, 7, 8, 10], [6, 7, 8, 10], [6, 7, 8, 10]]) == {8, 10, 6, 7}", "assert extract_singly([[1, 2, 3], [6, 7, 8, 9]]) == {1, 2, 3, 6, 7, 8, 9}", "assert extract_singly([[2, 3, 2], [2, 3, 2], [5, 4, 5], [2, 3, 2], [5, 4, 5], [], [6, 7, 8, 7]]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3], [], [6, 7, 8, 9], [], []]) == {1, 2, 3, 6, 7, 8, 9}", "assert extract_singly([[4, 2], [1, 1, 3], [4, 2], [4, 2, 3], [4, 2]]) == {1, 2, 3, 4}", "assert extract_singly([[1, 2, 3], [], [4, 5], [], [False, False, False, False, False, False, True], [6, 7, 8], []]) == {False, 1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [7], [9, 10, 9], [9, 10, 9]]) == {1, 2, 3, 4, 5, 6, 7, 9, 10}", "assert extract_singly([[1, 2, 3], [4, 5], [7, 8, 8], [7, 8, 8], [4, 5]]) == {1, 2, 3, 4, 5, 7, 8}", "assert extract_singly([[1, 2, 3], [], [], [6, 7, 8], []]) == {1, 2, 3, 6, 7, 8}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [10, 10], [10, 10], [10, 10]]) == {1, 2, 3, 4, 5, 6, 10}", "assert extract_singly([[4, 40000000, 2, 3, 3], [4, 2, 3], [7, 8, 9], [4, 40000000, 2, 3, 3], [4, 40000000, 2, 3, 3]]) == {40000000, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 3], [4, 5], [], [6, 7, 8, 9]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 30000000, 3], [], [], [6, 7, 8], [True, False, True, False, False, True, True], [1, 30000000, 3]]) == {30000000, 1, False, 3, 6, 7, 8}", "assert extract_singly([[4, 7, 8, 9]]) == {8, 9, 4, 7}", "assert extract_singly([[2, 3], [5, 4, 5], [5, 4, 5], [], [6, 7, 8, 7], []]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3], [4], [4], [6, 90000000, 8, 9], [], [6, 90000000, 8, 9]]) == {90000000, 1, 2, 3, 4, 6, 8, 9}", "assert extract_singly([[1, 2, 3, 3], [4, 5], [False, False], [], [6, 7, 8, 9], [6, 7, 8, 9]]) == {False, 1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 4], [11, 10], [5, 6], [11, 10], [11, 10], [11, 10]]) == {1, 2, 3, 4, 5, 6, 10, 11}", "assert extract_singly([[4, 2], [1, 1, 3], [4, 30000000, 2, 3], [4, 2], [1, 1, 3]]) == {30000000, 1, 2, 3, 4}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [8, 9, 10, 8, 8], [1, 2, 3, 4]]) == {1, 2, 3, 4, 5, 6, 8, 9, 10}", "assert extract_singly([[7, 8, 11], [7, 8, 11], [7, 8, 11]]) == {8, 11, 7}", "assert extract_singly([[1, 2, 3, 3], [], [-16, 80000000, 5, 1, 70000000, -1, 3, 50000000], [], [False, False], [], [6, 7, 8, 9], [6, 7, 8, 9]]) == {80000000, 1, 2, 3, 70000000, 5, 50000000, False, 6, 7, 8, 9, -16, -1}", "assert extract_singly([[1, 2, 3, 4, 4], [5, 6], [8, 9, 10, 8], [1, 2, 3, 4, 4], [5, 6]]) == {1, 2, 3, 4, 5, 6, 8, 9, 10}", "assert extract_singly([[8, 6, 8, 7, 8, 9, 8, 8, 8, 8], [8, 6, 8, 7, 8, 9, 8, 8, 8, 8], [8, 6, 8, 7, 8, 9, 8, 8, 8, 8], [8, 6, 8, 7, 8, 9, 8, 8, 8, 8], [4, 5], [8, 6, 8, 7, 8, 9, 8, 8, 8, 8]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [7, 8, 9, 6], [4, 5]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[8, 6, 8, 8, 9, 8, 8, 8], [8, 6, 8, 8, 9, 8, 8, 8], [8, 6, 8, 8, 9, 8, 8, 8], [8, 6, 8, 8, 9, 8, 8, 8], [4, 5], [8, 6, 8, 8, 9, 8, 8, 8]]) == {4, 5, 6, 8, 9}", "assert extract_singly([[1, 2], [4, 40000000, 2, 3, 3], [7, 8, 9]]) == {40000000, 1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 30000000, 3], [], [], [6, 7, 8], [True, False, True, False, False, True, True], [1, 30000000, 3], []]) == {30000000, 1, False, 3, 6, 7, 8}", "assert extract_singly([[6, 7, 8, 9, 8], [5, 4, 5], [6, 7, 8, 9, 8], [5, 4, 5]]) == {4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 3], [6, 7, 8, 9, 6], [4, 5], [], [6, 7, 8, 9, 6]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 4], [5, 6], [8, 9, 10, 8, 8, 9], [1, 2, 3, 4], [1, 2, 3, 4], [5, 6]]) == {1, 2, 3, 4, 5, 6, 8, 9, 10}", "assert extract_singly([[1, 2, 3], [6, 7, 8, 9, 6], [4, 5], [4, 5]]) == {1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [4, 40000000, 2, 3, 3], [4, 2, 3], [7, 8, 9], [4, 40000000, 2, 3, 3]]) == {40000000, 1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [], [], [False, False, False, False, False, False, True], [6, 7, 8], [], []]) == {False, 1, 2, 3, 6, 7, 8}", "assert extract_singly([[2, 4, 3], [2, 4, 3], [], [4, 5], []]) == {2, 3, 4, 5}", "assert extract_singly([[1, 2, 3], [5, 6], [8, 9, 10, 8, 8], [1, 2, 3]]) == {1, 2, 3, 5, 6, 8, 9, 10}", "assert extract_singly([[7, 8, 80000001], [7, 8, 80000001], [7, 8, 80000001]]) == {8, 80000001, 7}", "assert extract_singly([[1, 2], [4, 40000000, 2, 3, 3]]) == {40000000, 1, 2, 3, 4}", "assert extract_singly([[1, 2]]) == {1, 2}", "assert extract_singly([[7, 8, 10], [7, 8, 10], [7, 8, 10]]) == {8, 10, 7}", "assert extract_singly([[], []]) == set()", "assert extract_singly([[1, 2, 3, 4, 4], [5, 6], [8, 9, 10, 8, 8, 9], [1, 2, 3, 4, 4], [1, 2, 3, 4, 4], [5, 6]]) == {1, 2, 3, 4, 5, 6, 8, 9, 10}", "assert extract_singly([[70000000, 4, 5], [70000000, 4, 5]]) == {70000000, 4, 5}", "assert extract_singly([[2, 3], [5, 4, 5], [5, 4, 5], [6, 7, 8, 7], []]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3], [4, 2, 3], [4, 40000000, 2, 3, 3], [4, 2, 3], [7, 8, 9], [4, 40000000, 2, 3, 3]]) == {40000000, 1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 4, 4], [5, 6], [8, 9, 10, 8, 8, 9], [1, 2, 3, 4, 4], [5, 6]]) == {1, 2, 3, 4, 5, 6, 8, 9, 10}", "assert extract_singly([[0, 2, 3, 4], [5, 6], [9, 10, 9], [7], [0, 2, 3, 4], [9, 10, 9]]) == {0, 2, 3, 4, 5, 6, 7, 9, 10}", "assert extract_singly([[1, 2], [4, 40000000, 2, 3], [4, 2, 3], [4, 40000000, 2, 3], [7, 8, 9], [4, 40000000, 2, 3]]) == {40000000, 1, 2, 3, 4, 7, 8, 9}", "assert extract_singly([[1, 2, 3, 3], [4, 5], [], [6, False, 7, 8, 9]]) == {False, 1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[2, 3], [5, 4, 5], [5, 4, 5], [], [79, 10, -79, False], [6, 7, 8, 7], []]) == {False, 2, 3, 4, 5, 6, 7, 8, 10, 79, -79}", "assert extract_singly([[1, 2, 3, 3], [], [False, False, False], [-16, 80000000, 5, 1, 70000000, -1, 3, 50000000], [], [False, False, False], [], [6, 7, 8, 9], [6, 7, 8, 9]]) == {False, 1, 2, 3, 80000000, 5, 70000000, 50000000, 6, 7, 8, 9, -16, -1}", "assert extract_singly([[1, 1, 3], [2, 3], [7, 8, 9], [3, 2, 3], [1, 1, 3]]) == {1, 2, 3, 7, 8, 9}", "assert extract_singly([[2, 3], [5, 4, 5], [5, 4, 5], [6, 7, 8, 5, 7], []]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3, 3], [], [False, False, False], [-16, 80000000, 5, 1, 70000000, -1, 3, 50000000], [], [False, False, False], [True, True], [6, 7, 8, 9], [6, 7, 8, 9], [1, 2, 3, 3]]) == {False, 1, 2, 3, 80000000, 5, 70000000, 50000000, 6, 7, 8, 9, -16, -1}", "assert extract_singly([[1, 2, 3], [], [4, 5], [], [6, 7, 8], [6, 7, 8]]) == {1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3], [-67.78782247261685, 83.24602733926832, -64.83209224493669, -32.228902651098196, 69.90886379841328, -35.80770870297867, 93.05813550801312, -42.59408393983315], [4, 5], [], [6, 7, 8], [-67.78782247261685, 83.24602733926832, -64.83209224493669, -32.228902651098196, 69.90886379841328, -35.80770870297867, 93.05813550801312, -42.59408393983315]]) == {-64.83209224493669, 1, 2, 3, -32.228902651098196, 69.90886379841328, 4, 5, 6, 7, 8, -35.80770870297867, 83.24602733926832, 93.05813550801312, -42.59408393983315, -67.78782247261685}", "assert extract_singly([[1, 2, 3, 90000000, 4], [5, 6], [7], [8, 9, 10]]) == {90000000, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10}", "assert extract_singly([[False, 1, 2, 3], [], [4, 5], [], [6, 7, 8], []]) == {False, 1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[6, 7], [1, 2, 3], [], [], [False, False, False, False, False, False, True], [6, 7], [], [], [1, 2, 3]]) == {False, 1, 2, 3, 6, 7}", "assert extract_singly([[1, 2, 3, 3], [4, 10000000, 5], [6, 7, 8, 9, 6], [1, 2, 3, 3], [4, 10000000, 5]]) == {10000000, 1, 2, 3, 4, 5, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [4, 40000000, 2, 3, 3], [4, 6, 3], [7, 8, 9], [4, 40000000, 2, 3, 3]]) == {40000000, 1, 2, 3, 4, 6, 7, 8, 9}", "assert extract_singly([[1, 2, 3], [4, 5], [], [6, 7, 8], [6, 7, 8]]) == {1, 2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[1, 2, 3], [6, 7, 8, 9], [], [1, 2, 3]]) == {1, 2, 3, 6, 7, 8, 9}", "assert extract_singly([[2, 3], [2, 3], [], [4, 5], [93.05813550801312, -34.32335254187532, 69.90886379841328], [6, 7, 8]]) == {2, 3, 4, 5, 69.90886379841328, 6, 7, 8, 93.05813550801312, -34.32335254187532}", "assert extract_singly([[2, 3, 2], [2, 3, 2], [3, 5, 4, 5], [2, 3, 2], [3, 5, 4, 5], [], [6, 7, 8, 7]]) == {2, 3, 4, 5, 6, 7, 8}", "assert extract_singly([[8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [8, 6, 7, 8, 9, 8, 8, 8, 8], [4, 5], [8, 6, 7, 8, 9, 8, 8, 8, 8]]) == {4, 5, 6, 7, 8, 9}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort a list of elements.\nassert pancake_sort([15, 79, 25, 38, 69]) == [15, 25, 38, 69, 79]\nYour code should pass the test:\nassert pancake_sort([15, 79, 25, 38, 69]) == [15, 25, 38, 69, 79]", "test_list": [ "assert pancake_sort([15, 79, 25, 38, 69]) == [15, 25, 38, 69, 79]", "assert pancake_sort([98, 12, 54, 36, 85]) == [12, 36, 54, 85, 98]", "assert pancake_sort([41, 42, 32, 12, 23]) == [12, 23, 32, 41, 42]", "assert pancake_sort([54, 28, 91, 12, 78, 37, 66, 42, 84, 59]) == [12, 28, 37, 42, 54, 59, 66, 78, 84, 91]", "assert pancake_sort([7, 21, 76, 39, 52, 45, 83, 16, 35, 93]) == [7, 16, 21, 35, 39, 45, 52, 76, 83, 93]", "assert pancake_sort([65, 89, 48, 56, 13, 27, 77, 61, 32, 95]) == [13, 27, 32, 48, 56, 61, 65, 77, 89, 95]", "assert pancake_sort([23, 56, 34, 67, 89, 12, 45, 78, 90, 32, 54, 76, 98, 21, 43, 65, 87, 9]) == [9, 12, 21, 23, 32, 34, 43, 45, 54, 56, 65, 67, 76, 78, 87, 89, 90, 98]", "assert pancake_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0]) == [0, 1, 2, 3, 4, 5, 6, 7, 8, 9]", "assert pancake_sort([100, 50, 75, 25, 10, 90, 80, 30, 60, 20, 40, 70, 55, 65, 45, 85, 35, 15, 5, 95]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 100]", "assert pancake_sort([99, 88, 77, 66, 55, 44, 33, 22, 11, 0]) == [0, 11, 22, 33, 44, 55, 66, 77, 88, 99]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 67, 89]) == [12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89]) == [12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([7, 21, 8, 76, 39, 52, 83, 99, 35, 93]) == [7, 8, 21, 35, 39, 52, 76, 83, 93, 99]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89, 12, 21]) == [12, 12, 21, 21, 23, 32, 32, 45, 54, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 35, 89]) == [12, 21, 23, 32, 32, 35, 45, 54, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0, 0]) == [0, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9]", "assert pancake_sort([99, 88, 77, 66, 55, 44, 11, 33, 22, 11, 0, 88, 33]) == [0, 11, 11, 22, 33, 33, 44, 55, 66, 77, 88, 88, 99]", "assert pancake_sort([100, 50, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 95, 100]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95, 55, 100]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 55, 55, 60, 65, 70, 75, 75, 80, 85, 90, 95, 95, 100, 100]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95, 55, 70]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 55, 55, 60, 65, 70, 70, 75, 75, 80, 85, 90, 95, 95, 100]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89, 12, 11]) == [11, 12, 12, 21, 23, 32, 32, 45, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 95, 55, 100, 65]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 75, 80, 85, 90, 95, 95, 100, 100]", "assert pancake_sort([70, 1, 3, 5, 7, 9, 2, 4, 6, 8, -1, 0]) == [-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 70]", "assert pancake_sort([7, 21, 76, 44, 52, 45, 83, 16, 35, 93]) == [7, 16, 21, 35, 44, 45, 52, 76, 83, 93]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 99, 95, 55, 100, 65]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 75, 80, 85, 90, 95, 95, 99, 100, 100]", "assert pancake_sort([70, 1, 3, 5, 7, 71, 9, 2, 4, 6, 8, -1, 0, 70]) == [-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 70, 70, 71]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89, 12]) == [12, 12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89]) == [12, 21, 23, 32, 32, 45, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([99, 88, 77, 66, 55, 44, 33, 22, 11, -1, 99]) == [-1, 11, 22, 33, 44, 55, 66, 77, 88, 99, 99]", "assert pancake_sort([7, 20, 76, 44, 52, 45, 83, 16, 35, 93]) == [7, 16, 20, 35, 44, 45, 52, 76, 83, 93]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 67, 89, 12]) == [12, 12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([99, 88, 77, 33, 66, 55, 44, 33, 11, 0]) == [0, 11, 33, 33, 44, 55, 66, 77, 88, 99]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 56, 91, 32, 76, 21, 54, 76, 32, 89]) == [12, 21, 23, 32, 32, 45, 54, 56, 67, 76, 76, 78, 89, 89, 91]", "assert pancake_sort([70, 1, 3, 5, 7, 71, 9, 2, 4, 6, 8, 42, -1, 0, 70]) == [-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 42, 70, 70, 71]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 54, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95, 55, 70, 45]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 45, 54, 55, 55, 60, 65, 70, 70, 75, 75, 80, 85, 90, 95, 95, 100]", "assert pancake_sort([7, 21, 8, 76, 39, 52, 83, 99, 35, 93, 83, 52]) == [7, 8, 21, 35, 39, 52, 52, 76, 83, 83, 93, 99]", "assert pancake_sort([7, 21, 76, 39, 52, 45, 83, 16, 35, 15, 93]) == [7, 15, 16, 21, 35, 39, 45, 52, 76, 83, 93]", "assert pancake_sort([100, 88, 77, 60, 33, 66, 55, 44, 33, 61, 0]) == [0, 33, 33, 44, 55, 60, 61, 66, 77, 88, 100]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 99, 70, 55, 65, 45, 85, 35, 48, 15, 5, 99, 95, 55, 100, 65, 100]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 75, 80, 85, 90, 95, 95, 99, 99, 100, 100, 100]", "assert pancake_sort([7, 21, 83, 76, 44, 52, 45, 83, 35, 93]) == [7, 21, 35, 44, 45, 52, 76, 83, 83, 93]", "assert pancake_sort([100, 75, 25, 10, 90, 80, 30, 16, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 95, 55, 100, 65]) == [5, 10, 15, 16, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 80, 85, 90, 95, 95, 100, 100]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 67, 12, 89, 12]) == [12, 12, 12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 67, 76, 21, 54, 76, 32, 89, 12, 21]) == [12, 12, 21, 21, 23, 32, 32, 45, 54, 54, 56, 67, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 56, 91, 32, 76, 21, 54, 75, 32, 89]) == [12, 21, 23, 32, 32, 45, 54, 56, 67, 75, 76, 78, 89, 89, 91]", "assert pancake_sort([99, 88, 77, 66, 55, 11, 33, 22, 11, 0, 88, 33]) == [0, 11, 11, 22, 33, 33, 55, 66, 77, 88, 88, 99]", "assert pancake_sort([7, 88, 21, 76, 39, 52, 45, 83, 16, 35, 93]) == [7, 16, 21, 35, 39, 45, 52, 76, 83, 88, 93]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 79, 85, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95, 55, 70]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 55, 55, 60, 65, 70, 70, 75, 75, 79, 85, 85, 90, 95, 95, 100]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 67, 12, 78]) == [12, 12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 67, 76, 76, 78, 78, 89, 90]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 79, 85, 30, 60, 20, 40, 95, 70, 55, 65, 45, 35, 15, 5, 95, 55, 70, 60]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 55, 55, 60, 60, 65, 70, 70, 75, 75, 79, 85, 90, 95, 95, 100]", "assert pancake_sort([99, 88, 66, 66, 55, 44, 44, 33, 66, 22, 11, 0, 88, 32]) == [0, 11, 22, 32, 33, 44, 44, 55, 66, 66, 66, 88, 88, 99]", "assert pancake_sort([65, 89, 48, 56, 14, 27, 77, 32, 95, 14, 14]) == [14, 14, 14, 27, 32, 48, 56, 65, 77, 89, 95]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 33, 89, 12, 11]) == [11, 12, 12, 21, 23, 32, 33, 45, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([100, 50, 75, 25, 10, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95]) == [5, 10, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 95, 100]", "assert pancake_sort([99, 88, 77, 66, 55, 33, 22, 11, 15]) == [11, 15, 22, 33, 55, 66, 77, 88, 99]", "assert pancake_sort([100, 88, 77, 60, 33, 45, 55, 44, 33, 61, 0]) == [0, 33, 33, 44, 45, 55, 60, 61, 77, 88, 100]", "assert pancake_sort([70, 1, 3, 5, 7, 9, 2, 4, 6, 8, -1]) == [-1, 1, 2, 3, 4, 5, 6, 7, 8, 9, 70]", "assert pancake_sort([100, 75, 25, 10, 90, 80, 30, 16, 60, 20, 40, 95, 70, 55, 20, 65, 45, 85, 35, 48, 15, 5, 95, 55, 65]) == [5, 10, 15, 16, 20, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 80, 85, 90, 95, 95, 100]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 33, 76, 32, 89]) == [12, 21, 23, 32, 32, 33, 45, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([100, 50, 75, 25, 10, 90, 80, 30, 60, 27, 20, 40, 70, 55, 65, 45, 85, 35, 15, 5, 95]) == [5, 10, 15, 20, 25, 27, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 100]", "assert pancake_sort([70, 30, 3, 5, 7, 9, 2, 4, 6, 8, -1]) == [-1, 2, 3, 4, 5, 6, 7, 8, 9, 30, 70]", "assert pancake_sort([14, 99, 88, 77, 66, 55, 44, 33, 22, 11, 0]) == [0, 11, 14, 22, 33, 44, 55, 66, 77, 88, 99]", "assert pancake_sort([70, 1, 3, 5, 7, 87, 71, 9, 2, 4, 6, 8, -1, 0, 70, 8]) == [-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 8, 9, 70, 70, 71, 87]", "assert pancake_sort([99, 88, 33, 66, 55, 44, 33, 11, 0]) == [0, 11, 33, 33, 44, 55, 66, 88, 99]", "assert pancake_sort([7, 21, 76, 44, 52, 45, 83, 16, 35, 93, 93]) == [7, 16, 21, 35, 44, 45, 52, 76, 83, 93, 93]", "assert pancake_sort([100, 50, 75, 25, 10, 90, 20, 80, 30, 60, 20, 40, 70, 55, 65, 45, 85, 35, 15, 5, 95]) == [5, 10, 15, 20, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 100]", "assert pancake_sort([99, 88, 77, 66, 55, 33, 22, 11, 56, 99]) == [11, 22, 33, 55, 56, 66, 77, 88, 99, 99]", "assert pancake_sort([99, 88, 67, 77, 66, 55, 33, 22, 11, 56, 99]) == [11, 22, 33, 55, 56, 66, 67, 77, 88, 99, 99]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 95, 40, 95, 99, 70, 55, 65, 45, 85, 35, 48, 15, 6, 99, 95, 55, 100, 65, 100]) == [6, 10, 15, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 75, 80, 85, 90, 95, 95, 95, 99, 99, 100, 100, 100]", "assert pancake_sort([100, 88, 77, 60, 33, 45, 55, 44, 95, 33, 61, 0]) == [0, 33, 33, 44, 45, 55, 60, 61, 77, 88, 95, 100]", "assert pancake_sort([7, 21, 76, 44, 52, 45, 83, 16, 93, 93]) == [7, 16, 21, 44, 45, 52, 76, 83, 93, 93]", "assert pancake_sort([7, 21, 76, 44, 52, 45, 83, 16, 93, 93, 93]) == [7, 16, 21, 44, 45, 52, 76, 83, 93, 93, 93]", "assert pancake_sort([71, 99, 88, 67, 77, 66, 55, 33, 22, 11, 56, 99]) == [11, 22, 33, 55, 56, 66, 67, 71, 77, 88, 99, 99]", "assert pancake_sort([70, 1, 3, 5, 8, 71, 9, 2, 4, 6, 8, 42, -1, 0, 70]) == [-1, 0, 1, 2, 3, 4, 5, 6, 8, 8, 9, 42, 70, 70, 71]", "assert pancake_sort([100, 88, 77, 60, 33, 45, 56, 44, 95, 33, 61, 0]) == [0, 33, 33, 44, 45, 56, 60, 61, 77, 88, 95, 100]", "assert pancake_sort([99, 88, 77, 66, 98, 55, 33, 22, 11, 57, 84, 99]) == [11, 22, 33, 55, 57, 66, 77, 84, 88, 98, 99, 99]", "assert pancake_sort([67, 89, 12, 45, 78, 23, 89, 56, 90, 32, 76, 21, 54, 76, 32, 89]) == [12, 21, 23, 32, 32, 45, 54, 56, 67, 76, 76, 78, 89, 89, 89, 90]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 84, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89, 12]) == [12, 12, 21, 23, 32, 32, 45, 54, 54, 56, 67, 76, 76, 78, 84, 89, 89, 90]", "assert pancake_sort([100, 50, 75, 25, 10, 10, 90, 80, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95, 25]) == [5, 10, 10, 15, 20, 25, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 95, 100]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 79, 85, 30, 60, 20, 40, 95, 70, 55, 65, 45, 35, 5, 95, 55, 70, 60]) == [5, 10, 20, 25, 30, 35, 40, 45, 55, 55, 60, 60, 65, 70, 70, 75, 75, 79, 85, 90, 95, 95, 100]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 79, 85, 30, 60, 20, 40, 95, 70, 90, 55, 65, 45, 35, 15, 5, 95, 55, 70, 60]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 55, 55, 60, 60, 65, 70, 70, 75, 75, 79, 85, 90, 90, 95, 95, 100]", "assert pancake_sort([70, 1, 3, 5, 7, 87, 71, 9, 2, 4, 6, 8, -1, 0, 70, 8, 4]) == [-1, 0, 1, 2, 3, 4, 4, 5, 6, 7, 8, 8, 9, 70, 70, 71, 87]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 79, 85, 30, 60, 20, 40, 95, 70, 55, 65, 45, 15, 5, 95, 55, 70, 60]) == [5, 10, 15, 20, 25, 30, 40, 45, 55, 55, 60, 60, 65, 70, 70, 75, 75, 79, 85, 90, 95, 95, 100]", "assert pancake_sort([99, 88, 77, 66, 55, 44, 33, 16, 11, 45, -1, 99]) == [-1, 11, 16, 33, 44, 45, 55, 66, 77, 88, 99, 99]", "assert pancake_sort([70, 1, 3, 5, 7, 9, 2, 4, 6, 8, -1, 0, 70]) == [-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 70, 70]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 95, 40, 95, 99, 70, 55, 65, 45, 85, 35, 30, 48, 15, 6, 99, 95, 55, 100, 65, 100, 95]) == [6, 10, 15, 20, 25, 30, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 75, 80, 85, 90, 95, 95, 95, 95, 99, 99, 100, 100, 100]", "assert pancake_sort([7, 11, 76, 44, 52, 45, 83, 16, 93, 93]) == [7, 11, 16, 44, 45, 52, 76, 83, 93, 93]", "assert pancake_sort([99, 88, 77, 66, 55, 44, 33, 22, 11, -1, 99, 33]) == [-1, 11, 22, 33, 33, 44, 55, 66, 77, 88, 99, 99]", "assert pancake_sort([100, 75, 25, 10, 90, 80, 30, 16, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 95, 55, 100, 65, 100]) == [5, 10, 15, 16, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 75, 80, 85, 90, 95, 95, 100, 100, 100]", "assert pancake_sort([67, 89, 12, 45, 78, 34, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89]) == [12, 21, 23, 32, 32, 34, 45, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([100, 88, 77, 60, 33, 45, 56, 44, 95, 33, 57, 61, 0, 88]) == [0, 33, 33, 44, 45, 56, 57, 60, 61, 77, 88, 88, 95, 100]", "assert pancake_sort([100, 50, 75, 25, 10, 90, 98, 30, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 15, 5, 95]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 85, 90, 95, 95, 98, 100]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 84, 23, 56, 61, 32, 76, 21, 54, 76, 32, 89, 12]) == [12, 12, 21, 23, 32, 32, 45, 54, 54, 56, 61, 67, 76, 76, 78, 84, 89, 89]", "assert pancake_sort([71, 99, 88, 67, 77, 66, 55, 22, 11, 56, 99]) == [11, 22, 55, 56, 66, 67, 71, 77, 88, 99, 99]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 32, 67, 76, 87, 21, 54, 76, 32, 89, 12, 21]) == [12, 12, 21, 21, 23, 32, 32, 45, 54, 54, 56, 67, 67, 76, 76, 78, 87, 89, 89, 90]", "assert pancake_sort([100, 75, 25, 10, 90, 80, 30, 16, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 95, 55, 100, 67, 65, 100]) == [5, 10, 15, 16, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 67, 70, 75, 80, 85, 90, 95, 95, 100, 100, 100]", "assert pancake_sort([67, 89, 12, 45, 78, 24, 56, 90, 32, 76, 21, 54, 76, 32, 89, 12, 11]) == [11, 12, 12, 21, 24, 32, 32, 45, 54, 56, 67, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([100, 74, 75, 25, 10, 90, 80, 30, 28, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 95, 55, 100, 65, 40]) == [5, 10, 15, 20, 25, 28, 30, 35, 40, 40, 45, 48, 55, 55, 65, 65, 70, 74, 75, 80, 85, 90, 95, 95, 100, 100]", "assert pancake_sort([99, 88, 30, 66, 55, 44, 33, 11, 0]) == [0, 11, 30, 33, 44, 55, 66, 88, 99]", "assert pancake_sort([67, 54, 89, 12, 45, 78, 23, 56, 90, 76, 21, 54, 76, 32, 67, 89, 76]) == [12, 21, 23, 32, 45, 54, 54, 56, 67, 67, 76, 76, 76, 78, 89, 89, 90]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 25, 40, 95, 99, 70, 55, 89, 45, 85, 35, 48, 15, 44, 99, 95, 55, 100, 65, 100]) == [10, 15, 25, 25, 30, 35, 40, 44, 45, 48, 55, 55, 60, 65, 70, 75, 75, 80, 85, 89, 90, 95, 95, 99, 99, 100, 100, 100]", "assert pancake_sort([70, 1, 3, 5, 8, 71, 9, 2, 4, 7, 6, 8, 42, -1, 0, 70, 42]) == [-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 8, 9, 42, 42, 70, 70, 71]", "assert pancake_sort([100, 75, 75, 25, 10, 90, 80, 30, 60, 20, 40, 95, 99, 70, 55, 65, 45, 85, 35, 77, 48, 15, 5, 99, 95, 55, 100, 65, 100, 65]) == [5, 10, 15, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 65, 70, 75, 75, 77, 80, 85, 90, 95, 95, 99, 99, 100, 100, 100]", "assert pancake_sort([100, 75, 25, 10, 90, 80, 30, 16, 60, 20, 40, 95, 70, 55, 65, 45, 85, 35, 48, 15, 5, 95, 55, 100, 65, 70]) == [5, 10, 15, 16, 20, 25, 30, 35, 40, 45, 48, 55, 55, 60, 65, 65, 70, 70, 75, 80, 85, 90, 95, 95, 100, 100]", "assert pancake_sort([14, 99, 88, 77, 66, 55, 55, 44, 33, 22, 11, 0]) == [0, 11, 14, 22, 33, 44, 55, 55, 66, 77, 88, 99]", "assert pancake_sort([70, 1, 3, 5, 7, 87, 71, 12, 2, 4, 6, 8, -1, 0, 70, 8, 4]) == [-1, 0, 1, 2, 3, 4, 4, 5, 6, 7, 8, 8, 12, 70, 70, 71, 87]", "assert pancake_sort([100, 88, 77, 60, 33, 56, 44, 95, 33, 61, 0]) == [0, 33, 33, 44, 56, 60, 61, 77, 88, 95, 100]", "assert pancake_sort([79, 89, 12, 45, 78, 23, 56, 90, 32, 76, 21, 54, 76, 32, 89, 89]) == [12, 21, 23, 32, 32, 45, 54, 56, 76, 76, 78, 79, 89, 89, 89, 90]", "assert pancake_sort([7, 21, 76, 39, 52, 45, 83, 16, 35, 93, 16, 16]) == [7, 16, 16, 16, 21, 35, 39, 45, 52, 76, 83, 93]", "assert pancake_sort([100, 88, 77, 60, 33, 45, 55, 44, 33, 61, 42, 0, 44]) == [0, 33, 33, 42, 44, 44, 45, 55, 60, 61, 77, 88, 100]", "assert pancake_sort([99, 88, 30, 66, 55, 65, 44, 33, 11, 0]) == [0, 11, 30, 33, 44, 55, 65, 66, 88, 99]", "assert pancake_sort([99, 88, 77, 66, 55, 44, 33, 22, 11, -1, 99, 11]) == [-1, 11, 11, 22, 33, 44, 55, 66, 77, 88, 99, 99]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count number items that are identical in the same position of three given lists.\nassert count_samepair([1,2,3,4,5,6,7,8],[2,2,3,1,2,6,7,9],[2,1,3,1,2,6,7,9])==3\nYour code should pass the test:\nassert count_samepair([1,2,3,4,5,6,7,8],[2,2,3,1,2,6,7,9],[2,1,3,1,2,6,7,9])==3", "test_list": [ "assert count_samepair([1,2,3,4,5,6,7,8],[2,2,3,1,2,6,7,9],[2,1,3,1,2,6,7,9])==3", "assert count_samepair([1,2,3,4,5,6,7,8],[2,2,3,1,2,6,7,8],[2,1,3,1,2,6,7,8])==4", "assert count_samepair([1,2,3,4,2,6,7,8],[2,2,3,1,2,6,7,8],[2,1,3,1,2,6,7,8])==5", "assert count_samepair([], [], []) == 0", "assert count_samepair([1, 2, 3, 4, 5], [5, 4, 3, 2, 1], [1, 2, 3, 4, 5, 6]) == 1", "assert count_samepair([1, 2, 3, 4, 5, 6, 7], [2, 3, 4, 5, 6, 7, 8], [1, 3, 5, 7, 9, 11, 13]) == 0", "assert count_samepair([1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5], [1, 2, 3, 4, 5, 6, 7, 8]) == 5", "assert count_samepair(['a', 'b', 'c'], ['x', 'y', 'z'], ['a', 'y', 'c']) == 0", "assert count_samepair(['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry']) == 3", "assert count_samepair([1.5, 2.5, 3.5], [1.5, 2.5, 3.5], [1.5, 2.5, 3.5]) == 3", "assert count_samepair([True, False, True], [False, True, False], [False, False, True]) == 0", "assert count_samepair([], [1, 2, 3], [1, 2, 3]) == 0", "assert count_samepair([1, 2, 3], [], []) == 0", "assert count_samepair([1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5], [1, 2, 3, 4, 5, 6, 7, 8, 7]) == 5", "assert count_samepair([True, False, True], [False, True, False], [False, True, False]) == 0", "assert count_samepair([1, 2, 4, 4, 5], [5, 4, 3, 2, 1], [1, 2, 3, 4, 5, 6]) == 0", "assert count_samepair([1, 2, 4, 4, 5], [5, 1, 4, 3, 2, 1], [1, 2, 3, 1, 5, 6]) == 0", "assert count_samepair(['x', 'y', 'z'], ['a', 'y', 'c'], ['a', 'y', 'c']) == 1", "assert count_samepair([5, 4, 3, 2], [5, 4, 3, 2], [5, 4, 3, 2]) == 4", "assert count_samepair([True, True, False, True], [False, True, False], [False, True, False]) == 2", "assert count_samepair([3, 9, 4, 3, 2], [3, 9, 4, 3, 2], [3, 9, 4, 3, 2]) == 5", "assert count_samepair([1, 2, 4, 4, 5], [5, 1, 4, 3, 2, 1], [1, 2, 3, 1, 5, 6, 5]) == 0", "assert count_samepair([3.5, 2.5, 46.747180223209085, -90.30409553049626, 1.5, 2.5, 3.5, 2.5, 1.5, 88.92985695524146], [], []) == 0", "assert count_samepair([True, False, True], [False, True, False, False], [False, True, False, False]) == 0", "assert count_samepair([1, 2, 3, 1, 5, 6, 5, 2, 2], [5, 1, 4, 3, 2, 1], [1, 2, 3, 1, 5, 6, 5, 2, 2]) == 0", "assert count_samepair([], [0, 2, 2, 3], [1, 2, 3]) == 0", "assert count_samepair([5, 1, 4, 2, 2, 1, 1], [5, 1, 4, 2, 2, 1, 1], [5, 1, 4, 2, 2, 1, 1]) == 7", "assert count_samepair([1, 13, 3], [], []) == 0", "assert count_samepair([1, 2, 1, 5, 6, 6, 2, 2], [1, 2, 1, 5, 6, 6, 2, 2], [5, 1, 4, 3, 2, 1]) == 0", "assert count_samepair([3, 9, 4, 3, 10, 2], [3, 9, 4, 3, 10, 2], [3, 9, 4, 3, 10, 2]) == 6", "assert count_samepair([1.5, 1.9954510959930523, 3.5], [1.5, 2.5, 3.5], [2.5, 3.5]) == 0", "assert count_samepair([1, 3, 5, 7, 9, 11, 13], [2, 3, 4, 5, 6, 8, 6], [1, 3, 5, 7, 9, 11, 13]) == 1", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951], [], []) == 0", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 47.11473580773872, -78.9255438650951], [False, [None, -82, True], 10.63194549113473, False, [10.227858467690481, -80, 91, 79.0496427022359, 'b', 2.5], False, 51.66378356757116, 76.26353952856329], []) == 0", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.5423141340579, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951], ['c', -25, ['c', 'Qtee', 'apple', 'dCFuiLg'], [92, 14, -20, -65, -82, -23, 10], {'SXpaqpmSA': -75, 'mxHFSWBXK': 1, 'aeBJw': -82, 'banana': 55, 'cherry': -80, 'tKeVdUEN': False, 'c': False, 'UziQri': False, '': 41}, True], []) == 0", "assert count_samepair([1, 2, 3, 4, 4, 5], [1, 2, 3, 4, 6, 2], [1, 2, 3, 4, 6, 2]) == 4", "assert count_samepair([1.5, 1.9954510959930523, 3.5], [1.5, 2.5, 3.5, 2.5], [2.5, 3.5]) == 0", "assert count_samepair([3.5], [1.5, 1.9954510959930523, 3.5], [3.5]) == 0", "assert count_samepair([1, 4, 4, 5], [1, 4, 4, 5], [1, 4, 4, 5]) == 4", "assert count_samepair([1, 3, 5, 7, 9, 11, 13], [1, 3, 5, 7, 9, 11, 13], [2, 3, 4, 5, 6, 8, 6]) == 1", "assert count_samepair([1, 2, 4, 4, 5, 4], [1, 2, 4, 4, 5, 4], [5, 1, 4, 3, 2, 1]) == 1", "assert count_samepair([5, 1, 4, 3, 2], [5, 1, 4, 3, 2], [5, 1, 4, 3, 2]) == 5", "assert count_samepair([1, 2, 3], [False, False, False, False, False, True, True], [1, 2, 3]) == 0", "assert count_samepair([1.5, 1.5211736525382962, 3.5, 3.5, 1.5], [1.5, 1.5211736525382962, 3.5, 3.5, 1.5], [1.5, 2.5, 3.5]) == 2", "assert count_samepair([1, 2, 4, 4, 5], [1, 2, 3, 4, 5, 6], [1, 2, 4, 4, 5]) == 4", "assert count_samepair([], ['banana', 'x', 'yRKDhGyhw', '', 'Vt', 'kejsg'], []) == 0", "assert count_samepair([False, [None, -82, True], 10.63194549113473, False, [10.227858467690481, -80, 91, 79.0496427022359, 'b', 2.5], False, 51.66378356757116, 76.26353952856329], [-25, 2, -60, -4, False, -99, 41, 4, -66], [11, 'TJhJsrtQz', 'iBhMiUf', False, 94, False]) == 0", "assert count_samepair([1.5, 1.9954510959930523, 3.5, 3.5], [1.5, 88.92985695524146, 3.5], [1.5, 88.92985695524146, 3.5]) == 2", "assert count_samepair([3, 5, 7, 9, 11, 13, 3], [3, 5, 7, 9, 11, 13, 3], [2, 3, 4, 5, 6, 8, 6]) == 0", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951], [1.9954510959930523, 8.720727078047432, -0.5578301838399966, -48.01840699120381, 51.66378356757116], [25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951]) == 1", "assert count_samepair([1.5211736525382962, 3.5, 3.5, 1.5], [1.5211736525382962, 3.5, 3.5, 1.5], [1.5, 2.5, 3.5]) == 1", "assert count_samepair([2, 3, 4, 5, 6, 7, 8], [1, 3, 5, 7, 9, 11, 13], [1, 3, 5, 7, 9, 11, 13]) == 1", "assert count_samepair([55, 2, 3, 1, 5, 6, 5, 2, 2], [55, 2, 3, 1, 5, 6, 5, 2, 2], [55, 2, 3, 1, 5, 6, 5, 2, 2]) == 9", "assert count_samepair([True, False, True], [False, False, True, False], [False, False, True, False]) == 2", "assert count_samepair([5, 4, 3, 2, 1], [1, 2, 3, 4, 5, 6, 3], [1, 2, 3, 4, 5, 6, 3]) == 1", "assert count_samepair([1.5, 1.5211736525382962, 2.5, 3.5], [1.5, 1.5211736525382962, 2.5, 3.5], [2.5, 3.5]) == 0", "assert count_samepair(['x', 'y', 'z'], ['a', 'y', 'a'], ['a', 'y', 'a']) == 1", "assert count_samepair([1, 14, 3, 4, 5, 6, 3], [1, 14, 3, 4, 5, 6, 3], [1, 14, 3, 4, 5, 6, 3]) == 7", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951, 60.50308501008169], [25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951, 60.50308501008169], []) == 0", "assert count_samepair([1.5, 1.9954510959930523, 13.324652414249229, 3.5], [1.5, 88.92985695524146, 3.5], [1.5, 88.92985695524146, 3.5]) == 1", "assert count_samepair(['apple', 'banana', 'cherry'], ['ale', 'banana'], ['ale', 'banana']) == 1", "assert count_samepair([1.5, 1.9954510959930523, 3.5], [1.5, 2.5, 3.5, 2.5, 2.5], [1.5, 2.5, 3.5, 2.5, 2.5]) == 2", "assert count_samepair([1.140758838768645, 1.5211736525382962, 3.5, 1.5], [1.140758838768645, 1.5211736525382962, 3.5, 1.5], [1.140758838768645, 1.5211736525382962, 3.5, 1.5]) == 4", "assert count_samepair([1.5, 1.9954510959930523, 13.324652414249229, 3.5], [88.92985695524146, 3.5], [88.92985695524146, 3.5]) == 0", "assert count_samepair([1.5, 88.92985695524146, 88.92985695524146, 3.5], [1.5, 88.92985695524146, 88.92985695524146, 3.5], [1.5, 88.92985695524146, 88.92985695524146, 3.5]) == 4", "assert count_samepair(['Vt', 'dCFuiLg', 'INvNd', 'z', 'iBhMiUf', 'dCFuiLg', 'xJSJdyoTrG', 'TAvDgL'], [False, [None, -82, True], 10.63194549113473, False, [10.227858467690481, -80, 91, 79.0496427022359, 'b', 2.5], False, 51.66378356757116, 76.26353952856329], ['Vt', 'dCFuiLg', 'INvNd', 'z', 'iBhMiUf', 'dCFuiLg', 'xJSJdyoTrG', 'TAvDgL']) == 0", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951], [1.9954510959930523, 8.720727078047432, -0.5578301838399966, 46.5423141340579, -48.01840699120381, 51.66378356757116], [25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951]) == 1", "assert count_samepair(['banana', 'kejsg', 'banana', 'MencsXWpFS', 'yRKDhGyhw', 'c', 'wGAHQEc'], [1, 2, 3, 2], [1, 2, 3]) == 0", "assert count_samepair([1, 2, 1, 5, 6, 6, 2, 2], [1, 2, 1, 5, 6, 6, 2, 2], [5, 1, 4, 3, -75, 2, 1]) == 0", "assert count_samepair([1, 2, 4, 4, 5], [5, 4, 3, 2, 1], [1, 2, 3, 4, 5, 6, 6]) == 0", "assert count_samepair([1, 3, 7, 9, 11, 13], [2, 3, 4, 5, 6, 8, 6], [1, 3, 7, 9, 11, 13]) == 1", "assert count_samepair([1, 3, 5, 7, 9, 11, 13, 7], [2, 3, 4, 5, 6, 8, 6], [1, 3, 5, 7, 9, 11, 13, 7]) == 1", "assert count_samepair([1.5, 1.9954510959930523, 3.918769930762264, 1.5], [3.5], [1.5, 1.9954510959930523, 3.918769930762264, 1.5]) == 0", "assert count_samepair([False, [None, -82, True], 10.63194549113473, False, [10.227858467690481, -80, 91, 79.0496427022359, 'b', 2.5], False, 51.66378356757116, 76.26353952856329, False], [False, [None, -82, True], 10.63194549113473, False, [10.227858467690481, -80, 91, 79.0496427022359, 'b', 2.5], False, 51.66378356757116, 76.26353952856329, False], [-25, 2, -60, -4, False, -99, 41, 4, -66]) == 0", "assert count_samepair([1, 3, 5, 7, 9, 11, 13], [1, 3, 5, 7, 9, 11, 13], [1, 3, 5, 7, 9, 11, 13]) == 7", "assert count_samepair([1, 2, 4, 4, 5, 5], [3, 3, -25, 1], [1, 2, 3, 4, 5, 6]) == 0", "assert count_samepair([47.11473580773872, 1.140758838768645, 8.720727078047432, 47.11473580773872, -0.5578301838399966, 2.5, 76.9475439156866], [1, 2, 3], [1, 2, 3, 1]) == 0", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.5423141340579, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951], ['c', -25, ['c', 'Qtee', 'apple', 'dCFuiLg'], [92, 14, -20, -65, -82, -23, 10], {'SXpaqpmSA': -75, 'mxHFSWBXK': 1, 'aeBJw': -82, 'banana': 55, 'cherry': -80, 'tKeVdUEN': False, 'c': False, 'UziQri': False, '': 41}, True], [-61, 9, -80, 'MencsXWpFS']) == 0", "assert count_samepair(['x', 'y', 'z', 'y'], ['a', 'b', 'c'], ['x', 'y', 'z', 'y']) == 0", "assert count_samepair(['', 'bINvNd', 'b', 'c'], ['', 'bINvNd', 'b', 'c'], ['yRKDhGyhw', 'y', 'z']) == 0", "assert count_samepair(['c', -25, ['c', 'Qtee', 'apple', 'dCFuiLg'], [92, 14, -20, -65, -82, -23, 10], {'SXpaqpmSA': -75, 'mxHFSWBXK': 1, 'aeBJw': -82, 'banana': 55, 'cherry': -80, 'tKeVdUEN': False, 'c': False, 'UziQri': False, '': 41}, 'dCFuiLg', True], ['c', -25, ['c', 'Qtee', 'apple', 'dCFuiLg'], [92, 14, -20, -65, -82, -23, 10], {'SXpaqpmSA': -75, 'mxHFSWBXK': 1, 'aeBJw': -82, 'banana': 55, 'cherry': -80, 'tKeVdUEN': False, 'c': False, 'UziQri': False, '': 41}, 'dCFuiLg', True], [-61, 9, -80, 'MencsXWpFS']) == 0", "assert count_samepair(['a', 'b'], ['x', 'y', 'z'], ['a', 'y', 'yRKDhGyhw', 'y']) == 0", "assert count_samepair([55, 2, 3, 1, 5, 6, 5, 2, 2, 55], [55, 2, 3, 1, 5, 6, 5, 2, 2, 55], [55, 2, 3, 1, 5, 6, 5, 2, 2, 55]) == 10", "assert count_samepair([3.5, 2.5, 46.747180223209085, -90.30409553049626, 1.5, 2.5, 3.5, 2.5, 1.5, 88.92985695524146], [], [55, -63]) == 0", "assert count_samepair(['banana', 'kejsg', 'banana', 'MencsXWpFS', 'yRKDhGyhw', 'c', 'wGAHQEc'], [1, 2, 3, 2], [1, 2, 3, 1]) == 0", "assert count_samepair([1, 2, 3, 4, 5, 6, 7, 5], [2, 3, 4, 5, 6, 7, 8], [1, 3, 5, 7, 9, 11, 13]) == 0", "assert count_samepair([1.5, 1.2295760656866848, -78.9255438650951, 1.5], [1.5, 1.2295760656866848, -78.9255438650951, 1.5], [1.5, 1.2295760656866848, -78.9255438650951, 1.5]) == 4", "assert count_samepair([1, 3, 5, 7, 9, 11, 13], [2, 3, 4, -75, 6, 8, 6, 2], [1, 3, 5, 7, 9, 11, 13]) == 1", "assert count_samepair(['bb', 'a', 'b', 'c', 'b', 'bb'], ['x', 'y', 'z', 'y'], ['bb', 'a', 'b', 'c', 'b', 'bb']) == 0", "assert count_samepair([3.5], [1.5, 1.9954510959930523, 3.918769930762264, 1.5], [1.5, 1.9954510959930523, 3.918769930762264, 1.5]) == 0", "assert count_samepair(['x', 'y', 'z', 'y'], ['bb', 'a', 'b', 'c', 'b', 'bb', 'c', 'b'], ['bb', 'a', 'b', 'c', 'b', 'bb', 'c', 'b']) == 0", "assert count_samepair(['bb', 'a', '', 'c', 'b', 'bb'], ['x', 'y', 'z', 'y'], ['bb', 'a', '', 'c', 'b', 'bb']) == 0", "assert count_samepair([-23, 1, 3, 5, 7, 9, 11, 13, 7], [2, 3, 4, 5, 6, 8, 6], [-23, 1, 3, 5, 7, 9, 11, 13, 7]) == 1", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.5423141340579, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085], ['c', -25, ['c', 'Qtee', 'apple', 'dCFuiLg'], [92, 14, -20, -65, -82, -23, 10], {'SXpaqpmSA': -75, 'mxHFSWBXK': 1, 'aeBJw': -82, 'banana': 55, 'cherry': -80, 'tKeVdUEN': False, 'c': False, 'UziQri': False, '': 41}, True], [-61, 'MencsbananaXWpFS', 9, -80, 'MencsXWpFS']) == 0", "assert count_samepair([1, 2, 4, 4, 5, 4, 3, 2], [1, 2, 4, 4, 5, 4, 3, 2], [5, 1, 4, 3, 2, 1]) == 1", "assert count_samepair([2, 3, 4, 5, 6], [1, 3, 5, 7, 9, 11, 13, 9], [1, 3, 5, 7, 9, 11, 13, 9]) == 1", "assert count_samepair([3, 9, 4, 3, -60], [3, 9, 4, 3, -60], [3, 9, 4, 3, -60]) == 5", "assert count_samepair([1, 2, 4, 4, 2, 5], [5, 1, 3, 2, 1], [1, 2, 4, 4, 2, 5]) == 0", "assert count_samepair([55, 2, 3, 5, 6, 5, 2, 2], [55, 2, 3, 5, 6, 5, 2, 2], [55, 2, 3, 5, 6, 5, 2, 2]) == 8", "assert count_samepair([True, False, False], [True, False, False], [True, False, False]) == 3", "assert count_samepair([13.568069498372651, 1.5, 1.9954510959930523, 3.5], [88.92985695524146, 3.5], [88.92985695524146, 3.5]) == 0", "assert count_samepair([1, 3, 5, 2, 7, 9, 11, 13, 11], [1, 3, 5, 2, 7, 9, 11, 13, 11], [1, 3, 5, 2, 7, 9, 11, 13, 11]) == 9", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951, 60.50308501008169, 46.747180223209085], [25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951, 60.50308501008169, 46.747180223209085], [25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951, 60.50308501008169, 46.747180223209085]) == 11", "assert count_samepair([3, 9, 4, 3, -60, 4], [3, 9, 4, 3, -60, 4], [3, 9, 4, 3, -60, 4]) == 6", "assert count_samepair(['abINvNd', 'y', 'yRKDhGyhw', 'y'], ['x', 'y', 'z'], ['abINvNd', 'y', 'yRKDhGyhw', 'y']) == 1", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.747180223209085, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951, 60.50308501008169], [], []) == 0", "assert count_samepair([25.292264331717163, 8.720727078047432, 13.324652414249229, 46.5423141340579, 10.63194549113473, 60.50308501008169, 76.26353952856329, 46.747180223209085, -78.9255438650951], ['c', -25, ['c', 'Qtee', 'cherry', 'apple', 'dCFuiLg'], [92, 14, -20, -65, -82, -23, 10], {'SXpaqpmSA': -75, 'mxHFSWBXK': 1, 'aeBJw': -82, 'banana': 55, 'cherry': -80, 'tKeVdUEN': False, 'c': False, 'UziQri': False, '': 41}, True], []) == 0", "assert count_samepair([1, 5, 5], [1, 5, 5], [1, 5, 5]) == 3", "assert count_samepair([2, 3, 4, 5, 5, 6, 7, 8], [1, 3, 5, 7, 9, 11, 13], [1, 3, 5, 7, 9, 11, 13]) == 1", "assert count_samepair([2, 3, 4, 5, False, 6, 8, 6], [3, 5, 7, 9, 6, 11, 13, 3], [2, 3, 4, 5, False, 6, 8, 6]) == 0", "assert count_samepair([-0.5578301838399966, 3.5], [1.5, 1.5211736525382962, 2.5, 3.5, 1.5], [-0.5578301838399966, 3.5]) == 0", "assert count_samepair([5, 4, 3, 1], [1, 2, 4, 4, 5, 5, 2], [5, 4, 3, 1]) == 0", "assert count_samepair([76.9475439156866, 1.5, 2.5, 3.5], [76.9475439156866, 1.5, 2.5, 3.5], [2.5, 3.5]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the maximum difference between any two elements in a given array.\nassert max_Abs_Diff((2,1,5,3)) == 4\nYour code should pass the test:\nassert max_Abs_Diff((2,1,5,3)) == 4", "test_list": [ "assert max_Abs_Diff((2,1,5,3)) == 4", "assert max_Abs_Diff((9,3,2,5,1)) == 8", "assert max_Abs_Diff((3,2,1)) == 2", "assert max_Abs_Diff([9, -3, 2, 0, -5, 1, 11, -7]) == 18", "assert max_Abs_Diff([1]) == 0", "assert max_Abs_Diff([3, 3, 3, 3]) == 0", "assert max_Abs_Diff([-5, -3, -2, -1]) == 4", "assert max_Abs_Diff([1, 2, 3, 4, 5]) == 4", "assert max_Abs_Diff([-1, 0, 1, 2, -2]) == 4", "assert max_Abs_Diff([-5, -3, 0, -2, -1]) == 5", "assert max_Abs_Diff([-1, 4, 0, 1, 2, -2]) == 6", "assert max_Abs_Diff([2]) == 0", "assert max_Abs_Diff([-5, -3, 0, -3, -1]) == 5", "assert max_Abs_Diff([-7, 2]) == 9", "assert max_Abs_Diff([2, 2]) == 0", "assert max_Abs_Diff([0, 3, 0, 1, 2, -2]) == 5", "assert max_Abs_Diff([-6, -3, 0, -3, -1]) == 6", "assert max_Abs_Diff([1, 1]) == 0", "assert max_Abs_Diff([0, 9, 3, 0, -2]) == 11", "assert max_Abs_Diff([-7, -7, 2]) == 9", "assert max_Abs_Diff([5, -3, 0, -2, -1]) == 8", "assert max_Abs_Diff([-1, -2, 0, 1, 2, -2, 2]) == 4", "assert max_Abs_Diff([1, 2, 3, -3, 5]) == 8", "assert max_Abs_Diff([9, -3, 2, -5, 1, 11, -7]) == 18", "assert max_Abs_Diff([-6, -3, 0, -2, -1]) == 6", "assert max_Abs_Diff([-5, -3, 0, -2, -3, -2]) == 5", "assert max_Abs_Diff([-5, -3, 0, -3, -2, 11, -3, -7]) == 18", "assert max_Abs_Diff([-5, -6, -2, 0, -3, -1]) == 6", "assert max_Abs_Diff([-1, 2, 0, 1, 2, -2, 2]) == 4", "assert max_Abs_Diff([-1, 1, 4, 0, 1, 2, -2]) == 6", "assert max_Abs_Diff([-7, 2, -7]) == 9", "assert max_Abs_Diff([0, 9, 3, 0, 10, -2]) == 12", "assert max_Abs_Diff([2, 3, 3]) == 1", "assert max_Abs_Diff([-5, -3, -2]) == 3", "assert max_Abs_Diff([-5, -3, 0, 0]) == 5", "assert max_Abs_Diff([-5, -3, -2, -1, -1]) == 4", "assert max_Abs_Diff([3, 3, 3]) == 0", "assert max_Abs_Diff([0, 9, 3, 9, 0, 10, -2]) == 12", "assert max_Abs_Diff([-5, 0, 0]) == 5", "assert max_Abs_Diff([0, 3, 0, 1, 2, -2, 0]) == 5", "assert max_Abs_Diff([-7, -7, 3, 2]) == 10", "assert max_Abs_Diff([-23.760842462159786, -91.16655074878469, -69.98937256313435, -23.593017846262015, 49.56089624759201]) == 140.7274469963767", "assert max_Abs_Diff([-5, -3, 0, -2, -3, -3, -2, -5]) == 5", "assert max_Abs_Diff([-5, -3, 0, -2, -3]) == 5", "assert max_Abs_Diff([0, 9, 3, 0, -2, 9, 3]) == 11", "assert max_Abs_Diff([0, 9, 0, -2, 0, 0]) == 11", "assert max_Abs_Diff([3, 4, 3, 3]) == 1", "assert max_Abs_Diff([-8, -2, 3, 2]) == 11", "assert max_Abs_Diff([9, -3, 2, -5, 1, 11, -7, 1]) == 18", "assert max_Abs_Diff([-1, 0, 9, 3, 0, -2, 0]) == 11", "assert max_Abs_Diff([-5, -3, 0, -6, -3, -1]) == 6", "assert max_Abs_Diff([0, 9, 3, 0, -2, 9, 3, 3]) == 11", "assert max_Abs_Diff([-5, -3, -6, -2, 0, -2, -3]) == 6", "assert max_Abs_Diff([2, -8, 1, 1]) == 10", "assert max_Abs_Diff([-6, -3, 0, -3, -1, -3]) == 6", "assert max_Abs_Diff([-6, -3, 0, -3, -1, -2, -3]) == 6", "assert max_Abs_Diff([-5, -3, 0, -2, -3, -3, -2, -5, -5]) == 5", "assert max_Abs_Diff([-6, -3, 0, -3, -1, -2, -3, -6]) == 6", "assert max_Abs_Diff([-1, 4, 0, 1, -2]) == 6", "assert max_Abs_Diff([0, 9, 0, -2, 0, 2]) == 11", "assert max_Abs_Diff([-5, 0, -3, -1]) == 5", "assert max_Abs_Diff([-1, -2, 0, 1, -2, 2]) == 4", "assert max_Abs_Diff([-6, -3, 0, -2, -1, -3]) == 6", "assert max_Abs_Diff([-5, -3, 0, -3, -1, -3]) == 5", "assert max_Abs_Diff([-5, -2, -3, -2]) == 3", "assert max_Abs_Diff([-7, 3, 3, 2]) == 10", "assert max_Abs_Diff([-7, 0, 11, -7, 2]) == 18", "assert max_Abs_Diff([0, 0, 3, 0, -2]) == 5", "assert max_Abs_Diff([9, -6, -3, 5, -3, -1, -2, -3, -6]) == 15", "assert max_Abs_Diff([0, 9, 3, 0, -2, 0]) == 11", "assert max_Abs_Diff([-6, 0, -3, 0, -3, -1, -3]) == 6", "assert max_Abs_Diff([3, 4, 3, 3, 4]) == 1", "assert max_Abs_Diff([-2]) == 0", "assert max_Abs_Diff([1, 2, 3, -3]) == 6", "assert max_Abs_Diff([8, -4, 2, -5, 4, 1, 11, 8, -7, 1]) == 18", "assert max_Abs_Diff([1, 2, 4, 3, -3, 1]) == 7", "assert max_Abs_Diff([3, 3]) == 0", "assert max_Abs_Diff([-1, -4, 4, 0, 1, -2]) == 8", "assert max_Abs_Diff([-5, 0, -1]) == 5", "assert max_Abs_Diff([-7, -7, 2, -7]) == 9", "assert max_Abs_Diff([0, 3, 0, 1, 2, 0, -2, 3]) == 5", "assert max_Abs_Diff([-5, -2, -3, -2, -2]) == 3", "assert max_Abs_Diff([3]) == 0", "assert max_Abs_Diff([1, 2, 2, 4, 5]) == 4", "assert max_Abs_Diff([-4, 8, -4, 2, -5, 4, 1, 11, 8, -7, 8]) == 18", "assert max_Abs_Diff([11, -7, 2]) == 18", "assert max_Abs_Diff([-23.760842462159786, -91.16655074878469, -69.98937256313435, -23.593017846262015]) == 67.57353290252267", "assert max_Abs_Diff([-2, 3, 2]) == 5", "assert max_Abs_Diff([2, 0, 1, 2, -2, 2]) == 4", "assert max_Abs_Diff([0, 3, 1, 2, 0, -2, 3, 3]) == 5", "assert max_Abs_Diff([0, 9, 3, 9, 0, 10, 1, -2]) == 12", "assert max_Abs_Diff([2, 0, 1, 2, 2]) == 2", "assert max_Abs_Diff([-5, -2, -1, -1]) == 4", "assert max_Abs_Diff([-1, -4, 5, 0, 1, -2, 1]) == 9", "assert max_Abs_Diff([-5, -2, -1, 0]) == 5", "assert max_Abs_Diff([-2, 3]) == 5", "assert max_Abs_Diff([-5, 4, 0, -6, -3, -1, -1]) == 10", "assert max_Abs_Diff([-5, -3, 0, -2, -3, -3, -2, -5, -5, -5]) == 5", "assert max_Abs_Diff([2, 3, -6, 3, 3]) == 9", "assert max_Abs_Diff([-6, -3, 0, -3, -1, -7, -2, -3, -6, -3, -1]) == 7", "assert max_Abs_Diff([0, 9, -6, 3, 0, -2, 9, 3, 3]) == 15", "assert max_Abs_Diff([1, 2, 4, 4, -3, 1]) == 7", "assert max_Abs_Diff([2, -4, 4, 5, 4]) == 9", "assert max_Abs_Diff([True, True, False]) == 1", "assert max_Abs_Diff([78, 8, 0, 9, -42, 4, -29, 9, -3, -5]) == 120", "assert max_Abs_Diff([-5, -3, -6, -2, 0, -2, -2]) == 6", "assert max_Abs_Diff([-5, -3, -3, -2]) == 3", "assert max_Abs_Diff([-42, 0, 9, 3, 0, 10, -2, 9, 3]) == 52", "assert max_Abs_Diff([2, 0, 1, 2, -2, 2, 2, 2]) == 4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to that returns true if the input string contains sequences of lowercase letters joined with an underscore and false otherwise.\nassert text_lowercase_underscore(\"aab_cbbbc\")==(True)\nYour code should pass the test:\nassert text_lowercase_underscore(\"aab_cbbbc\")==(True)", "test_list": [ "assert text_lowercase_underscore(\"aab_cbbbc\")==(True)", "assert text_lowercase_underscore(\"aab_Abbbc\")==(False)", "assert text_lowercase_underscore(\"Aaab_abbbc\")==(False)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that returns integers x and y that satisfy ax + by = n as a tuple, or return None if no solution exists.\nassert find_solution(2, 3, 7) == (2, 1)\nYour code should pass the test:\nassert find_solution(2, 3, 7) == (2, 1)", "test_list": [ "assert find_solution(2, 3, 7) == (2, 1)", "assert find_solution(4, 2, 7) == None", "assert find_solution(1, 13, 17) == (4, 1)", "assert find_solution(100, 50, 4000) == (0, 80)", "assert find_solution(25, 10, 500) == (0, 50)", "assert find_solution(7, 11, 123) == (5, 8)", "assert find_solution(25, 123, 500) == (20, 0)", "assert find_solution(100, 4000, 4000) == (0, 1)", "assert find_solution(4000, 4000, 4000) == (0, 1)", "assert find_solution(4000, 50, 4000) == (0, 80)", "assert find_solution(25, 123, 7) == None", "assert find_solution(500, 50, 4000) == (0, 80)", "assert find_solution(50, 500, 50) == (1, 0)", "assert find_solution(6, 122, 7) == None", "assert find_solution(7, 123, 7) == (1, 0)", "assert find_solution(100, 4000, 50) == None", "assert find_solution(500, 50, 500) == (0, 10)", "assert find_solution(4000, 50, 50) == (0, 1)", "assert find_solution(6, 122, 122) == (0, 1)", "assert find_solution(7, 123, 123) == (0, 1)", "assert find_solution(50, 123, 7) == None", "assert find_solution(122, 7, 122) == (1, 0)", "assert find_solution(122, 7, 11) == None", "assert find_solution(123, 25, 50) == (0, 2)", "assert find_solution(4001, 50, 50) == (0, 1)", "assert find_solution(4000, 50, 501) == None", "assert find_solution(122, 101, 100) == None", "assert find_solution(25, 10, 10) == (0, 1)", "assert find_solution(25, 10, 501) == None", "assert find_solution(500, 6, 123) == None", "assert find_solution(7, 123, 500) == None", "assert find_solution(501, 123, 7) == None", "assert find_solution(50, 124, 7) == None", "assert find_solution(100, 122, 100) == (1, 0)", "assert find_solution(123, 26, 25) == None", "assert find_solution(50, 50, 50) == (0, 1)", "assert find_solution(4001, 26, 25) == None", "assert find_solution(499, 50, 4000) == (0, 80)", "assert find_solution(4000, 50, 499) == None", "assert find_solution(103, 102, 102) == (0, 1)", "assert find_solution(123, 7, 123) == (1, 0)", "assert find_solution(50, 3999, 4000) == (80, 0)", "assert find_solution(500, 50, 6) == None", "assert find_solution(4000, 499, 4000) == (1, 0)", "assert find_solution(101, 103, 4001) == (8, 31)", "assert find_solution(25, 500, 123) == None", "assert find_solution(25, 26, 123) == None", "assert find_solution(499, 4000, 499) == (1, 0)", "assert find_solution(4000, 11, 4000) == (1, 0)", "assert find_solution(25, 50, 4000) == (0, 80)", "assert find_solution(49, 7, 7) == (0, 1)", "assert find_solution(7, 7, 123) == None", "assert find_solution(499, 4000, 4000) == (0, 1)", "assert find_solution(6, 500, 50) == None", "assert find_solution(500, 50, 501) == None", "assert find_solution(500, 51, 500) == (1, 0)", "assert find_solution(4001, 4001, 499) == None", "assert find_solution(4001, 4001, 4001) == (0, 1)", "assert find_solution(499, 4000, 6) == None", "assert find_solution(500, 51, 6) == None", "assert find_solution(100, 500, 500) == (0, 1)", "assert find_solution(4000, 7, 124) == None", "assert find_solution(25, 500, 25) == (1, 0)", "assert find_solution(4000, 49, 50) == None", "assert find_solution(499, 499, 4000) == None", "assert find_solution(50, 123, 123) == (0, 1)", "assert find_solution(6, 4000, 50) == None", "assert find_solution(100, 103, 4001) == None", "assert find_solution(50, 121, 122) == None", "assert find_solution(501, 8, 7) == None", "assert find_solution(25, 499, 25) == (1, 0)", "assert find_solution(10, 10, 500) == (0, 50)", "assert find_solution(4000, 4001, 4000) == (1, 0)", "assert find_solution(4000, 3999, 499) == None", "assert find_solution(101, 101, 4001) == None", "assert find_solution(500, 50, 7) == None", "assert find_solution(3999, 123, 7) == None", "assert find_solution(25, 25, 10) == None", "assert find_solution(11, 123, 11) == (1, 0)", "assert find_solution(101, 101, 6) == None", "assert find_solution(50, 4000, 4000) == (0, 1)", "assert find_solution(100, 51, 4000) == (40, 0)", "assert find_solution(10, 500, 10) == (1, 0)", "assert find_solution(101, 25, 50) == (0, 2)", "assert find_solution(501, 7, 7) == (0, 1)", "assert find_solution(50, 4000, 3999) == None", "assert find_solution(10, 500, 25) == None", "assert find_solution(25, 499, 123) == None", "assert find_solution(501, 49, 6) == None", "assert find_solution(102, 102, 102) == (0, 1)", "assert find_solution(121, 4000, 51) == None", "assert find_solution(502, 123, 7) == None", "assert find_solution(50, 3998, 501) == None", "assert find_solution(25, 121, 121) == (0, 1)", "assert find_solution(25, 9, 9) == (0, 1)", "assert find_solution(501, 7, 502) == None", "assert find_solution(11, 25, 11) == (1, 0)", "assert find_solution(3999, 101, 500) == None", "assert find_solution(7, 12, 500) == (8, 37)", "assert find_solution(7, 122, 7) == (1, 0)", "assert find_solution(499, 6, 499) == (1, 0)", "assert find_solution(25, 11, 25) == (1, 0)", "assert find_solution(499, 11, 4000) == None", "assert find_solution(121, 4000, 121) == (1, 0)", "assert find_solution(50, 102, 50) == (1, 0)", "assert find_solution(7, 8, 123) == (5, 11)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove all elements from a given list present in another list.\nassert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [2, 4, 6, 8]) == [1, 3, 5, 7, 9, 10]\nYour code should pass the test:\nassert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [2, 4, 6, 8]) == [1, 3, 5, 7, 9, 10]", "test_list": [ "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [2, 4, 6, 8]) == [1, 3, 5, 7, 9, 10]", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 3, 5, 7]) == [2, 4, 6, 8, 9, 10]", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [5, 7]) == [1, 2, 3, 4, 6, 8, 9, 10]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [2, 4, 6, 8]) == [10, 9, 7, 5, 3, 1]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [5, 7]) == [10, 9, 8, 6, 4, 3, 2, 1]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [1, 3, 5, 7]) == [10, 9, 8, 6, 4, 2]", "assert remove_elements([], []) == []", "assert remove_elements([], [1, 2, 3]) == []", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [2, 4, 6, 8, 10]) == [1, 3, 5, 7, 9]", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 3, 5, 7, 9, 11]) == [2, 4, 6, 8, 10]", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [11, 12, 13, 14, 15]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert remove_elements([1, 2, 2, 3, 4, 5, 5, 6, 7, 8, 8, 9, 10], [2, 5, 8]) == [1, 3, 4, 6, 7, 9, 10]", "assert remove_elements([1, 'apple', [1, 2], [3, 4], {'name': 'John'}, 5.5], [2, 'apple', [3, 4], {'name': 'John'}, 5.5]) == [1, [1, 2]]", "assert remove_elements([], [1, 2, 3, 4, 5]) == []", "assert remove_elements([], [1, 'a', [2, 3], {'name': 'John'}]) == []", "assert remove_elements([2, 4, 6, 8, 'abc'], ['abc', 4.5, 'xyz']) == [2, 4, 6, 8]", "assert remove_elements(['apple', 'banana', ['orange', 'grape'], 10], [['orange', 'grape'], 'pineapple', 10, 20]) == ['apple', 'banana']", "assert remove_elements([[1, 2], [3, 4], [5, 6]], [[3, 4], [7, 8], [9, 10]]) == [[1, 2], [5, 6]]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [5, 7, 5]) == [10, 9, 8, 6, 4, 3, 2, 1]", "assert remove_elements([94.69906992408676], [1, 2, 3, 4, 5]) == [94.69906992408676]", "assert remove_elements([1, 3, 5, 7], [1, 3, 5, 7]) == []", "assert remove_elements([], [1, 2, 3, 4, 5, 2]) == []", "assert remove_elements([], [0, 3]) == []", "assert remove_elements([1, 3, 5, 7, 1], [1, 3, 5, 7, 1]) == []", "assert remove_elements(['iip', 'grape', 'grape'], [1, 2, 3, 4, 5, 2]) == ['iip', 'grape', 'grape']", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [8, 5, 7]) == [10, 9, 6, 4, 3, 2, 1]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [7, 5]) == [10, 9, 8, 6, 4, 3, 2, 1]", "assert remove_elements([1, 3, 5, 7, 10, 11], [1, 3, 5, 7, 10, 11]) == []", "assert remove_elements([[4, 10, 4], [3, 4], [7, 8], [4, 10, 4]], [[4, 10, 4], [3, 4], [7, 8], [4, 10, 4]]) == []", "assert remove_elements([2, 4, 6, 8, 8], [2, 4, 6, 8, 8]) == []", "assert remove_elements([1, 'apple', [1, 2], [3, 4], {'name': 'John'}, 5.5], [2, 'apple', [3, 4], {'name': 'John'}, 5.5, 5.5]) == [1, [1, 2]]", "assert remove_elements([1, 2, 2, 3, 4, 5, 5, 6, 7, 8, 8, 9, 10], [2, 5, 8, 8]) == [1, 3, 4, 6, 7, 9, 10]", "assert remove_elements([1, 0, 3, 5, 7], [1, 0, 3, 5, 7]) == []", "assert remove_elements([[1, 2], [3, 4], [5, 6]], [[3, 4, 4], [3, 4, 4], [7, 8], [9, 10]]) == [[1, 2], [3, 4], [5, 6]]", "assert remove_elements([2, 4, 6, 8, 'abc'], ['grapeabc', 'abc', 4.5, 'xyz']) == [2, 4, 6, 8]", "assert remove_elements(['John'], [1, 2, 3, 4, 5, 2]) == ['John']", "assert remove_elements([1, 3, 5, 7, 1, 7], [1, 3, 5, 7, 1, 7]) == []", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == []", "assert remove_elements([94.69906992408676, 5, 5, False, [4.5, [31, -44, 5, 56, 0, 12, 75], True, None], True, 12, 7], []) == [94.69906992408676, 5, 5, False, [4.5, [31, -44, 5, 56, 0, 12, 75], True, None], True, 12, 7]", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 3, 7, 9, 11, 11]) == [2, 4, 5, 6, 8, 10]", "assert remove_elements([1, 'apple', [1, 2], [3, 4], {'name': 'John'}, 5.5], ['apple', 94.69906992408676, 4.5, [3, 4], {'name': 'John'}, 5.5, 5.5, {'name': 'John'}]) == [1, [1, 2]]", "assert remove_elements([1, 3, 7], [1, 3, 7]) == []", "assert remove_elements([1, 3, 3, 3], [1, 3, 3, 3]) == []", "assert remove_elements([2, 4, 6, 8, 'abc', 8], [2, 4, 6, 8, 'abc', 8]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [5, 2, 7]) == [10, 9, 8, 6, 4, 3, 1]", "assert remove_elements([3, 5, 7], [3, 5, 7]) == []", "assert remove_elements([10, 9, 8, 7, 6, 1, 5, 4, 3, 2, 1], [5, 7]) == [10, 9, 8, 6, 1, 4, 3, 2, 1]", "assert remove_elements([[3, 4], [7, 8], [4, 10, 4], [4, 10, 4]], [[3, 4], [7, 8], [4, 10, 4], [4, 10, 4]]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 3, 2, 1], [10, 9, 8, 7, 6, 5, 3, 2, 1]) == []", "assert remove_elements([1, 2, 2, 1], [1, 2, 2, 1]) == []", "assert remove_elements([2, 3, 5, 6, 7, 8, 9, 10], [2, 3, 5, 6, 7, 8, 9, 10]) == []", "assert remove_elements(['applegrape', 'iip', 'applegrae', 'grape', 'grape', 'grape'], [1, 2, 3, 4, 5, 2]) == ['applegrape', 'iip', 'applegrae', 'grape', 'grape', 'grape']", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 5], [7, 5]) == [10, 9, 8, 6, 4, 3, 2, 1]", "assert remove_elements([1, 2, 3, 4, 5], []) == [1, 2, 3, 4, 5]", "assert remove_elements([[3], [7, 8], [9, 10], [9, 10]], [[3], [7, 8], [9, 10], [9, 10]]) == []", "assert remove_elements([2, 4, 6, 8, 'abc', 6], ['abc', 4.5, 'xyz']) == [2, 4, 6, 8, 6]", "assert remove_elements([[1, 2], [3, 4], [5, 6]], [[3, 4, 4, 4], [3, 4, 4, 4], [7, 8], [9, 10], [3, 4, 4, 4]]) == [[1, 2], [3, 4], [5, 6]]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 1], [8, 5, 7]) == [10, 9, 6, 4, 3, 2, 1, 1]", "assert remove_elements([5, 7], [5, 7]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 1], [10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 1]) == []", "assert remove_elements([3, 5, 7, 7], [3, 5, 7, 7]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 5, 4, 3, 2, 1], [10, 9, 8, 7, 6, 5, 5, 4, 3, 2, 1]) == []", "assert remove_elements([[1, 2], [3, 4], [5, 6]], [[3, 4], [7, 8], [9, 12, 10]]) == [[1, 2], [5, 6]]", "assert remove_elements(['iip', 'grape', 'graapplegrapepe', 'grape'], [1, 2, 3, 4, 5, 2]) == ['iip', 'grape', 'graapplegrapepe', 'grape']", "assert remove_elements([94.69906992408676], [1, 2, 3, 4, 5, 1]) == [94.69906992408676]", "assert remove_elements([2, 3, 5, 6, 7, 8, 9, 10, 2], [2, 3, 5, 6, 7, 8, 9, 10, 2]) == []", "assert remove_elements(['apple', 'banana', ['orange', 'grape'], 10, ['orange', 'grape']], [['orange', 'grape'], 'pineapple', 10, 20]) == ['apple', 'banana']", "assert remove_elements(['applegrape', 'iip', 'applegrae', 'grape', 'gragpe', 'grape'], [2, 1, 2, 3, 4, 5, 2]) == ['applegrape', 'iip', 'applegrae', 'grape', 'gragpe', 'grape']", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 3, 2, 1], [7, 5]) == [10, 9, 8, 6, 4, 3, 3, 2, 1]", "assert remove_elements([10, 9, 8, 6, 5, 5, 4, 3, 2, 1], [10, 9, 8, 6, 5, 5, 4, 3, 2, 1]) == []", "assert remove_elements([76, -83, 79, 76, 15, 31, 45], []) == [76, -83, 79, 76, 15, 31, 45]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 4, 1], [8, 5, 7]) == [10, 9, 6, 4, 3, 2, 4, 1]", "assert remove_elements([-25.992038507469545, 79.87091961628252, 79.87091961628252], [-25.992038507469545, 79.87091961628252, 79.87091961628252]) == []", "assert remove_elements([[1, 2], [3, 4]], [[3, 4, 4, 4], [3, 4, 4, 4], [7, 8], [9, 10], [3, 4, 4, 4]]) == [[1, 2], [3, 4]]", "assert remove_elements([3], [3]) == []", "assert remove_elements([[3, 4, 4], [3, 4, 4], [7, 8]], [[3, 4, 4], [3, 4, 4], [7, 8]]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [8, 5, 7, 5]) == [10, 9, 6, 4, 3, 2, 1]", "assert remove_elements(['applegrape', 'iip', 'applegrae', 'grape', 'grape', 'grape'], [1, 2, 3, 4, 5, 1]) == ['applegrape', 'iip', 'applegrae', 'grape', 'grape', 'grape']", "assert remove_elements([3, 5, 7, 7, 7], [3, 5, 7, 7, 7]) == []", "assert remove_elements([2, 4, 6, 8, 'abc'], ['abc', 'xyz']) == [2, 4, 6, 8]", "assert remove_elements([1, 3, 5, 7, 11], [1, 3, 5, 7, 11]) == []", "assert remove_elements([1, 3, 5, 7, 1, 7, 1], [1, 3, 5, 7, 1, 7, 1]) == []", "assert remove_elements(['iip', 'grape', 'graapplegrapepe', 'banana', 'graapplegrapepe'], [1, 2, 3, 4, 5, 2]) == ['iip', 'grape', 'graapplegrapepe', 'banana', 'graapplegrapepe']", "assert remove_elements([1, 3, 5, 7, 11, 3], [1, 3, 5, 7, 11, 3]) == []", "assert remove_elements([7, 5, 7], [7, 5, 7]) == []", "assert remove_elements(['applegrape', 'iip', 'grape', 'iip'], [2, 1, 2, 3, 4, 5, 2]) == ['applegrape', 'iip', 'grape', 'iip']", "assert remove_elements([[4, 10, 4, 4], [3, 4], [4, 10, 4, 4], [4, 10, 4, 4]], [[4, 10, 4, 4], [3, 4], [4, 10, 4, 4], [4, 10, 4, 4]]) == []", "assert remove_elements([[1, 2], [3, 4], [5, 6, 5]], [[3, 4], [7, 8], [9, 12, 10]]) == [[1, 2], [5, 6, 5]]", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 1, 5], [10, 9, 8, 7, 6, 5, 4, 3, 1, 5]) == []", "assert remove_elements([1, 'apple', [1, 2], [3, 4], {'name': 'John'}, 5.5], [1, 'apple', [1, 2], [3, 4], {'name': 'John'}, 5.5]) == []", "assert remove_elements([1, 3, 5, 7, 1, 1], [1, 3, 5, 7, 1, 1]) == []", "assert remove_elements([1, 2, 3, 4, 5, 6, 7, 8, 10, 2], [1, 2, 3, 4, 5, 6, 7, 8, 10, 2]) == []", "assert remove_elements([10, 8, 6, 5, 5, 4, 3, 2, 1], [10, 8, 6, 5, 5, 4, 3, 2, 1]) == []", "assert remove_elements([2, 3, 5, 6, 7, 8, 9, 10, 2, 2], [2, 3, 5, 6, 7, 8, 9, 10, 2, 2]) == []", "assert remove_elements([2, 4, 6, 8, 'abc'], ['abc', 'xyz', 'xyz']) == [2, 4, 6, 8]", "assert remove_elements([10, 9, 8, 6, 5, 4, 3, 13, 2, 1], [10, 9, 8, 6, 5, 4, 3, 13, 2, 1]) == []", "assert remove_elements([[10, 6, 5], [1, 2], [10, 6, 5]], [[10, 6, 5], [1, 2], [10, 6, 5]]) == []", "assert remove_elements([1, 2, 1], [1, 2, 1]) == []", "assert remove_elements(['iip', 'grape', 'grape'], ['iip', 'grape', 'grape']) == []", "assert remove_elements(['applegrape', 'iip', 'grape', 'iip'], ['applegrape', 'iip', 'grape', 'iip']) == []", "assert remove_elements([94.69906992408676, 94.69906992408676], [1, 14, 3, 4, 5, 1]) == [94.69906992408676, 94.69906992408676]", "assert remove_elements([10, 9, 5, 8, 6, 5, 5, 4, 3, 2, 1], [10, 9, 5, 8, 6, 5, 5, 4, 3, 2, 1]) == []", "assert remove_elements([1, 3, 7, 10, 11], [1, 3, 7, 10, 11]) == []", "assert remove_elements(['apple', 'banana', ['orange', 'grape'], 10], [['orange', 'grape'], 'pineapple', 10, 20, 'pineapple']) == ['apple', 'banana']", "assert remove_elements([8, 5], [8, 5]) == []", "assert remove_elements([10, 9, 8, 5, 7, 6, 5, 4, 3, 3, 2, 1], [10, 9, 8, 5, 7, 6, 5, 4, 3, 3, 2, 1]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [8, 5, 7, -44, 5]) == [10, 9, 6, 4, 3, 2, 1]", "assert remove_elements([2, 4, 6, 8, 'abc'], [4.5, 'xyz']) == [2, 4, 6, 8, 'abc']", "assert remove_elements([10, 9, 8, 6, 5, 3, 3, 13, 2, 1, 8], [10, 9, 8, 6, 5, 3, 3, 13, 2, 1, 8]) == []", "assert remove_elements([[11], [9, 10], [11], [9, 10]], [[11], [9, 10], [11], [9, 10]]) == []", "assert remove_elements([10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [5]) == [10, 9, 8, 7, 6, 4, 3, 2, 1]", "assert remove_elements([2, 4, 6, 8, 'abc', 6], ['abc', 'axyz', 4.5, 'applegrape']) == [2, 4, 6, 8, 6]", "assert remove_elements([4.5], [4.5]) == []", "assert remove_elements(['ape', 'apple', 'banana', ['orange', 'grape'], 10], [['orange', 'grape'], 'pineapple', 10, 20]) == ['ape', 'apple', 'banana']", "assert remove_elements([4, 2, -83], [4, 2, -83]) == []", "assert remove_elements([1, 3, 5, 7, 1, 7, 1, -44], [1, 3, 5, 7, 1, 7, 1, -44]) == []", "assert remove_elements([1, 15, 3, 3, 3, 3], [1, 15, 3, 3, 3, 3]) == []", "assert remove_elements([2, 4, 6, 8, 20], [2, 4, 6, 8, 20]) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate the sum (n - 2*i) from i=0 to n // 2, for instance n + (n-2) + (n-4)... (until n-x =< 0).\nassert sum_series(6) == 12\nYour code should pass the test:\nassert sum_series(0) == 0", "test_list": [ "assert sum_series(0) == 0", "assert sum_series(6) == 12", "assert sum_series(10) == 30", "assert sum_series(9) == 25", "assert sum_series(-5) == 0", "assert sum_series(-100) == 0", "assert sum_series(1000000) == 250000500000", "assert sum_series(462) == 53592", "assert sum_series(1) == 1", "assert sum_series(463) == 53824", "assert sum_series(-99) == 0", "assert sum_series(True) == 1", "assert sum_series(-7) == 0", "assert sum_series(-8) == 0", "assert sum_series(-6) == 0", "assert sum_series(1000001) == 250001000001", "assert sum_series(False) == 0", "assert sum_series(0) == 0", "assert sum_series(77) == 1521", "assert sum_series(464) == 54056", "assert sum_series(465) == 54289", "assert sum_series(461) == 53361", "assert sum_series(78) == 1560", "assert sum_series(2) == 2", "assert sum_series(3) == 4", "assert sum_series(460) == 53130", "assert sum_series(4) == 6", "assert sum_series(-102) == 0", "assert sum_series(459) == 52900", "assert sum_series(999999) == 250000000000", "assert sum_series(466) == 54522", "assert sum_series(-103) == 0", "assert sum_series(-104) == 0", "assert sum_series(21) == 121", "assert sum_series(-1) == 0", "assert sum_series(-2) == 0", "assert sum_series(999998) == 249999500000", "assert sum_series(22) == 132", "assert sum_series(999997) == 249999000001", "assert sum_series(-3) == 0", "assert sum_series(20) == 110", "assert sum_series(18) == 90", "assert sum_series(5) == 9", "assert sum_series(-4) == 0", "assert sum_series(-9) == 0", "assert sum_series(467) == 54756", "assert sum_series(-65) == 0", "assert sum_series(23) == 144", "assert sum_series(19) == 100", "assert sum_series(468) == 54990", "assert sum_series(999996) == 249998500002", "assert sum_series(999995) == 249998000004", "assert sum_series(469) == 55225", "assert sum_series(-98) == 0", "assert sum_series(-33) == 0", "assert sum_series(-64) == 0", "assert sum_series(24) == 156", "assert sum_series(458) == 52670", "assert sum_series(999994) == 249997500006", "assert sum_series(76) == 1482", "assert sum_series(1000002) == 250001500002", "assert sum_series(-66) == 0", "assert sum_series(470) == 55460", "assert sum_series(-34) == 0", "assert sum_series(-10) == 0", "assert sum_series(88) == 1980", "assert sum_series(79) == 1600", "assert sum_series(1000003) == 250002000004", "assert sum_series(999993) == 249997000009", "assert sum_series(-105) == 0", "assert sum_series(-63) == 0", "assert sum_series(-97) == 0", "assert sum_series(1000004) == 250002500006", "assert sum_series(87) == 1936", "assert sum_series(999992) == 249996500012", "assert sum_series(-35) == 0", "assert sum_series(17) == 81", "assert sum_series(457) == 52441", "assert sum_series(16) == 72", "assert sum_series(-101) == 0", "assert sum_series(-32) == 0", "assert sum_series(25) == 169", "assert sum_series(-40) == 0", "assert sum_series(-39) == 0", "assert sum_series(80) == 1640", "assert sum_series(-41) == 0", "assert sum_series(-42) == 0", "assert sum_series(15) == 64", "assert sum_series(-106) == 0", "assert sum_series(471) == 55696", "assert sum_series(75) == 1444", "assert sum_series(71) == 1296", "assert sum_series(-107) == 0", "assert sum_series(472) == 55932", "assert sum_series(-96) == 0", "assert sum_series(-31) == 0", "assert sum_series(81) == 1681", "assert sum_series(50) == 650", "assert sum_series(-62) == 0", "assert sum_series(72) == 1332", "assert sum_series(82) == 1722", "assert sum_series(456) == 52212", "assert sum_series(51) == 676", "assert sum_series(61) == 961", "assert sum_series(-69) == 0", "assert sum_series(86) == 1892", "assert sum_series(62) == 992", "assert sum_series(26) == 182", "assert sum_series(-43) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count the number of characters in a string that occur at the same position in the string as in the English alphabet (case insensitive).\nassert count_char_position(\"xbcefg\") == 2\nYour code should pass the test:\nassert count_char_position(\"xbcefg\") == 2", "test_list": [ "assert count_char_position(\"xbcefg\") == 2", "assert count_char_position(\"ABcED\") == 3", "assert count_char_position(\"AbgdeF\") == 5", "assert count_char_position('xyzXYZ') == 0", "assert count_char_position('TheQuickBrownFoxJumpsOverTheLazyDog') == 1", "assert count_char_position('tthheellqqiiuucckkbbrrggooowwnnffoottjjuummppssvveerrtttthheelllaazzyydogg') == 1", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('') == 0", "assert count_char_position('abcDEF') == 6", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ') == 26", "assert count_char_position('xyyzXYZ') == 0", "assert count_char_position('xyzXxyyzXYZYZ') == 0", "assert count_char_position('tthheellqqiiuucckkbbrrggooowwnnffoottjjuummppssvveerrtttthheelllaazzyydoxyzXxyyzXYZYZg') == 1", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorld') == 2", "assert count_char_position('xyzXxyyzYXYZYZ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('J') == 0", "assert count_char_position('JJ') == 0", "assert count_char_position('xyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZYZ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorlldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDoHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWlorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWoorldHeFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('xyzXxyyzXYZYZJJ') == 0", "assert count_char_position('xyyzX') == 0", "assert count_char_position('abcDE') == 5", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZYZzXYZYZXYZ') == 26", "assert count_char_position('TheQuickBrownFoxJumpsOverTheLazyDogJ') == 1", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHeelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZXYZYZJJ') == 0", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 2", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHellloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('abcdefghijabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWoorldHeFGHIJPQRSTUVWxyzXxyyzXYZYZXYZklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 10", "assert count_char_position('TheQuickBrumazyDog') == 0", "assert count_char_position('xyzXxyZyzYXYZYZ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('JJabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 0", "assert count_char_position('xyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZSYZ') == 0", "assert count_char_position('HelloWorlldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHellorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZXYZYZJJ') == 0", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHellxyyzXYZoWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZXYZYZJJ') == 0", "assert count_char_position('kxyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZSYZ') == 0", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldorldHelloWorld') == 2", "assert count_char_position('xyzXYxyyzYXYZXJJYZ') == 0", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWoJJrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 2", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDoHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWlorldHelloWorldHelloWorldHelloWorabcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWoloWorld') == 2", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHeWlloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYxyzXxyyzYXYZYZZJJ') == 0", "assert count_char_position('xyzXxyyzxyzXxyyzXYZYZJJXYZYZ') == 3", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWyzXxyyzXYhZYZXYZ') == 26", "assert count_char_position('xyzvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZS') == 0", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHeldloWorldHelloWorldHelloWorldHeelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZ') == 26", "assert count_char_position('xyzvwxyzABCDEFGHHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWoJJrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJOPQRSxyzXYZTUVWXYZXxyyzYXYZS') == 0", "assert count_char_position('xyzXxyyzHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldxyzXxyyzXYZYZJJXYZYZ') == 2", "assert count_char_position('HelloWorlldHelloWorldHelloWrorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('xyzZXYZ') == 0", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHellTheQuickBrownFoxJumpsOverTheLazyDogJyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYxyzXxyyzYXYZYZZJJ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTdHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZ') == 26", "assert count_char_position('xyzXHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldYXYZYZ') == 0", "assert count_char_position('xyzXxyyzXYZYZJTheQuickBrownFoxJumpsOverTheLazyDogJ') == 0", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHeWlloWorldHelloWorldxyyzXYZdHelloWorld') == 2", "assert count_char_position('xyzZYZJJabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHeQlloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorlldEFGHIJPQRSTUVWZ') == 26", "assert count_char_position('HelloWorlldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelxyzXYxyyzYXYZXJJYZloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('xyzXHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWolrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldYXYZYZ') == 0", "assert count_char_position('JJJ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJJabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZHexyzXxyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('HelloWorlldHelloWorldHelloWorldHelloWloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('tthheellqqiabcdefghijklmnopqrstuvwxyzABCDoHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWlorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZiuucckkbbrrggooowwnnffoottjjuummppssvveerrtttthheelllaazzyydogg') == 1", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZxyzXxyZyzYXYZYZ') == 26", "assert count_char_position('abcdefghijklmnoxyzZXYZpqrstuvwxyzABCDHelloWorldHeQlloWorldHelloWorldHelloWorldHelloWoxyzXxyzXYZYZrldHelloWorlldEFGHIJPQRSTUVWZ') == 15", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWWoloWorld') == 2", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWoabcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZXYZYZJJ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldxyzXHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWolrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldYXYZYZHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXxyyzXYZYZJJrldHelloWorldHelloWoJJrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 2", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDoHelloWorldHelloWorldHelloWordldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWlorldHelloWorldHelloWorldHelloWorabcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('xyzXHelloWorldHelloHWorldHelloWorldHelloWorldHelloWorldHelloWolrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldYXYZYZ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldxyzXHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWolrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZWorldYXYZYZHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('xyzXHelloWorldHelWloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHeloloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldYXYZYZ') == 0", "assert count_char_position('abcF') == 3", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelxyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZSYZloWorldHeWlloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuHelloWorldHelloWorldHelxyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZSYZloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZxyzXxyZyzYXYZYZ') == 26", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHJelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorlxyzXxyyzXYZYZJJdHelxyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZSYZloWorldHeWlloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorld') == 2", "assert count_char_position('JHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorldorldHelloWorld') == 0", "assert count_char_position('HelloWorlldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelxyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZSYZloWorldHeWlloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHellolWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZ') == 26", "assert count_char_position('xyzXxyZyzYXYyZYZ') == 0", "assert count_char_position('xyzabcdefghisjklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZXxyyzYXYZYZJJabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 0", "assert count_char_position('DabcDEF') == 0", "assert count_char_position('JJabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 0", "assert count_char_position('abcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzwXYZrldHelloWorlldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 26", "assert count_char_position('xyyJJabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWorldHelloWorldHelloWorldHelloWorloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZzXYZ') == 0", "assert count_char_position('tthheellqqiabcdefghijklmnopqrstuvwxyzABCDoHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWlorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzffoottjjuummppssvveerrtttthheelllaazzyydogg') == 1", "assert count_char_position('xyzXxyyZzXYYZYZJJ') == 0", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXxyyzXYZYZJJrldHellJrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 2", "assert count_char_position('HelloWorlldHelloWorldabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldxyzXHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWolrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZWorldYXYZYZHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZHelloWorldHelloWloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('HelloWorlldHxyzXYxyyzYXYZXJJYZelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('xyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorlodHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHellorldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZXYZYZJJ') == 0", "assert count_char_position('xyzXxyyZzXXYYZYZJJ') == 0", "assert count_char_position('HelloWorlldHelloWorldHelloWrorldHelloWorldHlloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('abxyzXxyyzabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHellTheQuickBrownFoxJumpsOverTheLazyDogJyyzXYZYZoWorldHelloWorldEFGHIJPQRSTUVWxyzXxyyzXYxyzXxyyzYXYZYZZJJcdefghijklmnoxyzZXYZpqrstuvwxyzABCDHelloWorldHeQlloWorldHelloWorldHelloWorldHelloWoxyzXxyzXYZYZrldHelloWorlldEFGHIJPQRSTUVWZ') == 2", "assert count_char_position('HelloWorldHelloWorldHelloWorldHelloWorldHelloWoerldHelloWorldHelloWorldHelloWoJJrldHelloWorldHelloWorldHelloWorldrHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldJ') == 2", "assert count_char_position('HelloWorlldHelloWorldabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldxyzXHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWolrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloabcdefghijklmnopqrstuvwxyzABCDoHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWlorldHelloWorldHelloWorldHelloWorabcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxZYZXYZWorldYXYZYZHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZHelloWorldHelloWloWorldHelloWorldHelloWorldJ') == 0", "assert count_char_position('abcdeflghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHexyzXxyyzXYZYZoWorldHelloWorxyzXxyyzXYZYZldEFGHIJPQRSTUVWxyzXxyyzXYZYZXYZ') == 6", "assert count_char_position('DabcDabcFEF') == 0", "assert count_char_position('tthheellqqiiuucckkbbrrggooowwnnffoottjjuummppssvveerabcdefghijklmnopqrstuvwxyzABCDHelloWorldHelloWorldHelTheQuickBrownFoxJumpsOverTheLazyDogloWorldHelloWorldHelloWoxyzXYZrldHelloWorldHelloWorldHelloWorldHelloWorldHelloWorldHelloWWyzXxyyzXYhZYZXYZrtttthheelllaazzyydoxyzXxyyzXYZYZg') == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that counts the number of pairs of integers in a list that xor to an even number.\nassert find_even_pair([5, 4, 7, 2, 1]) == 4\nYour code should pass the test:\nassert find_even_pair([5, 4, 7, 2, 1]) == 4", "test_list": [ "assert find_even_pair([5, 4, 7, 2, 1]) == 4", "assert find_even_pair([7, 2, 8, 1, 0, 5, 11]) == 9", "assert find_even_pair([1, 2, 3]) == 1", "assert find_even_pair([1, 3, 5, 7, 9, 2, 4, 6, 8, 10]) == 20", "assert find_even_pair([-3, -2, -1, 0, 1, 2, 3]) == 9", "assert find_even_pair([17, -12, 33, 4, -9, 0, 21, -7, 8, -5]) == 21", "assert find_even_pair([100, -200, 75, -50, 125, -250, 175, -40, 80, -60]) == 24", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 4]) == 13", "assert find_even_pair([]) == 0", "assert find_even_pair([17, -98, 3, -2, -71, -250, -40, -250]) == 13", "assert find_even_pair([True, True, True, True, True, True, False, False]) == 16", "assert find_even_pair([17, -98, 3, -2, -71, -250]) == 6", "assert find_even_pair([-250, -2, -1, 0, 1, 2, 3]) == 9", "assert find_even_pair([-3, -2, -1, 0, 2, 3]) == 6", "assert find_even_pair([-3, -2, 80, -12, 2, 3]) == 7", "assert find_even_pair([-2, -2, 80, -12, 3, -2]) == 10", "assert find_even_pair([17, -98, 3, -2, -71, -40, -250, -40]) == 13", "assert find_even_pair([True, False, True, False, False, True, False, True, True]) == 16", "assert find_even_pair([1, 2, 1, 3, 2, 1, 1, 3, 4]) == 18", "assert find_even_pair([17, -98, 3, 18, -2, -71, -250]) == 9", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 3, 3]) == 22", "assert find_even_pair([1, 2, 1, 2, 1, 1, 3, 5]) == 16", "assert find_even_pair([1, 2, 1, 3, 2, 1, 1, 3, 4, 3]) == 24", "assert find_even_pair([17, 33, 4, -9, 0, 21, -7, 8, -5]) == 18", "assert find_even_pair([1, 2, 1, 3, 21, 0, 1, 3, 3, 3]) == 29", "assert find_even_pair([1, 2, -40, 1, 3, 2, 1, 4]) == 12", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 3, 3, 3]) == 29", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 3, 3, 3, 2, 1]) == 39", "assert find_even_pair([1, 2, -40, 1, 3, 2, 1, 4, 2, 3]) == 20", "assert find_even_pair([1, 2, -40, 1, 3, 2, 1, -2]) == 12", "assert find_even_pair([17, 33, 4, -9, 0, 21, 75, 8, -5, -9, 17]) == 31", "assert find_even_pair([1, 2, -12, 1, 3, 2, 1, 4, 2, 3]) == 20", "assert find_even_pair([True, False, True, False, False, False, False, True, True, True]) == 20", "assert find_even_pair([1, 3, 5, 7, 9, 2, 2, 4, 6, 8, 10]) == 25", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, -12, 4, 1]) == 21", "assert find_even_pair([-3, -50, -1, 0, 2, 3]) == 6", "assert find_even_pair([17, -98, 3, -2, -71, -250, -40, -250, -250]) == 18", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 3, 3, 3, 3]) == 37", "assert find_even_pair([-3, -2, 0, 2, 3]) == 4", "assert find_even_pair([-50, -2, 0, 2, 3, 2]) == 10", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 4, 2]) == 16", "assert find_even_pair([17, -98, 3, 18, -2, -71, -250, 18]) == 13", "assert find_even_pair([-3, -2, 80, -12, 2, 2, 3]) == 11", "assert find_even_pair([-250, -2, -1, 5, 0, -71, 2, 3]) == 12", "assert find_even_pair([1, 2, 1, 3, 1, 1, 4]) == 11", "assert find_even_pair([100, -98, -50, 125, -250, 175, -40, 80, -60]) == 22", "assert find_even_pair([21, -98, 3, 18, -2, -71, -250, 18, 18]) == 18", "assert find_even_pair([17, -98, 3, 18, -2, -71, -250, -71]) == 12", "assert find_even_pair([True, False, True, False, False, True, True, False]) == 12", "assert find_even_pair([-3, -2, 80, -12, 2, 3, 3]) == 9", "assert find_even_pair([-71, -2, -1, 5, 0, -71, 2, 3]) == 13", "assert find_even_pair([-3, -2, 80, -12, -3, 2, 2, 3]) == 13", "assert find_even_pair([1, 2, 75, 1, 3, 2, 1, 3, 4, 2, 1]) == 27", "assert find_even_pair([17, -98, 3, 18, -2, -71, -250, -71, -2]) == 16", "assert find_even_pair([100, -98, -50, 125, -250, 175, -40, 80, -9, -60]) == 24", "assert find_even_pair([2, 2, 1, 3, 2, 1, 1, 3, 4]) == 16", "assert find_even_pair([1, 2, -40, 1, 3, 2, 1, 4, 3]) == 16", "assert find_even_pair([False, False, False, False]) == 6", "assert find_even_pair([True, False, False, False, False, True, True, False]) == 13", "assert find_even_pair([2, -40, 1, 3, 2, 1, -2]) == 9", "assert find_even_pair([-98, 3, -2, -71, -250, -250, -250]) == 11", "assert find_even_pair([5, -98, 3, -2, -71, -250]) == 6", "assert find_even_pair([-3, 4, -2, 0, 2, 3, 2]) == 11", "assert find_even_pair([-40, 1, 2, 1, 3, 2, 1, 3, 4]) == 16", "assert find_even_pair([17, -98, 3, -2, -71, -40, -250, -40, -71]) == 16", "assert find_even_pair([False, False, False]) == 3", "assert find_even_pair([1, 2, -40, 1, 3, 2, -2]) == 9", "assert find_even_pair([-3, -50, -1, 2, 3]) == 4", "assert find_even_pair([-3, -2, 80, -200, 3]) == 4", "assert find_even_pair([1, 2, 1, 3, 1, 3, 3, 3, 9]) == 28", "assert find_even_pair([1, 2, 3, 2, 1, 3, -12, 4]) == 12", "assert find_even_pair([1, 2, 1, 3, 3, 1, 3, 3, 3]) == 28", "assert find_even_pair([-3, 4, -2, 0, 175, 2, 3, 2, 2]) == 18", "assert find_even_pair([1, 2, 1, 3, 2, 33, 1, 3, 4, 3]) == 24", "assert find_even_pair([-250, -2, -60, 0, 1, 2, 3, -2]) == 16", "assert find_even_pair([-3, -2, -1, 0, 1, 1, 3]) == 11", "assert find_even_pair([100, -98, -50, 125, -250, 175, -40, 80, -9]) == 18", "assert find_even_pair([1, 2, -40, 1, 3, 2, 1, 4, 2, 3, 3]) == 25", "assert find_even_pair([-3, -2, -12, -5, -3, 2, 2, 3]) == 12", "assert find_even_pair([1, 2, 1, 3, 2, 1, 3, 4, 2, 4]) == 20", "assert find_even_pair([5, 1, 2, 1, 3, 2, 1, 1, 9, 3, 4]) == 31", "assert find_even_pair([17, -98, 3, -1, -71, -40, -250, -40, -71]) == 16", "assert find_even_pair([1, 2, 1, 2, 1, 3, 5, 3]) == 16", "assert find_even_pair([1, 2, -40, 1, 3, 2, 1, -41, 4, -3, 3]) == 27", "assert find_even_pair([-3, -2, -1, 0, 1, 2, 3, 0]) == 12", "assert find_even_pair([3, 5, 7, 9, 2, 2, -40, -71, 4, 6, 8, 10, 7]) == 36", "assert find_even_pair([100, -98, -50, 125, -250, 175, -40, 80, -9, -9, -250]) == 27", "assert find_even_pair([17, -98, 3, 18, -2, -71, -250, -71, 17]) == 16", "assert find_even_pair([2, -3, -2, 80, -12, -3, 2, 2, 3]) == 18", "assert find_even_pair([1, 2, 1, 17, 3, 2, 1, 1, 3, 4, 2]) == 27", "assert find_even_pair([-3, -2, -1, 0, 1, 3, 2, 3]) == 13", "assert find_even_pair([2, -40, 1, 3, 2, 4, 2, 3]) == 13", "assert find_even_pair([2, 2, 1, 3, 1, 1, 3, 4]) == 13", "assert find_even_pair([-3, -49, -1, 2, 3]) == 6", "assert find_even_pair([1, 2, 1, 3, 9, 2, 1, 3, 3, 3, 3, 3]) == 46", "assert find_even_pair([-3, -2, -12, -3, 2, 2, 3]) == 9", "assert find_even_pair([1, 2, 1, 3, 2, 1, 5, 3, -12, 4, 1]) == 27", "assert find_even_pair([True, False, True, True, False, False, True, True, False]) == 16", "assert find_even_pair([-3, -2, 80, -12, 2, 80, 3]) == 11", "assert find_even_pair([1, 1, 1, 2, 1, 1, 6, 3]) == 16", "assert find_even_pair([False, False, False, False, True, False]) == 10", "assert find_even_pair([-2, -3, -50, -1, 2, 3]) == 6", "assert find_even_pair([100, -98, -51, 125, 175, -40, 80, -9]) == 12", "assert find_even_pair([-3, 80, -12, 1, 80, 3]) == 6", "assert find_even_pair([17, 33, 4, -9, 0, 75, 8, -5, -9, 75]) == 24", "assert find_even_pair([-40, 0, 2, 1, 3, 2, 1, 4, 4]) == 18", "assert find_even_pair([1, 2, -12, 1, 3, 2, 1, 4, 33, 3]) == 21", "assert find_even_pair([17, -98, 6, -2, -71, -250, -40, -250]) == 16", "assert find_even_pair([17, 33, 4, 2, -9, 0, 75, 8, -5, -9, 75, -5]) == 34" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the smallest power of 2 greater than or equal to n.\nassert next_power_of_2(0) == 1\nYour code should pass the test:\nassert next_power_of_2(0) == 1", "test_list": [ "assert next_power_of_2(0) == 1", "assert next_power_of_2(5) == 8", "assert next_power_of_2(17) == 32", "assert next_power_of_2(1) == 1", "assert next_power_of_2(2) == 2", "assert next_power_of_2(8) == 8", "assert next_power_of_2(128) == 128", "assert next_power_of_2(1000000) == 1048576", "assert next_power_of_2(342788) == 524288", "assert next_power_of_2(567990) == 1048576", "assert next_power_of_2(999999999999) == 1099511627776", "assert next_power_of_2(987654321098) == 1099511627776", "assert next_power_of_2(1000000000000) == 1099511627776", "assert next_power_of_2(1234567890123) == 2199023255552", "assert next_power_of_2(987654321) == 1073741824", "assert next_power_of_2(40) == 64", "assert next_power_of_2(342789) == 524288", "assert next_power_of_2(False) == 1", "assert next_power_of_2(41) == 64", "assert next_power_of_2(1000000000001) == 1099511627776", "assert next_power_of_2(1000001) == 1048576", "assert next_power_of_2(True) == True", "assert next_power_of_2(987654320) == 1073741824", "assert next_power_of_2(10) == 16", "assert next_power_of_2(129) == 256", "assert next_power_of_2(95) == 128", "assert next_power_of_2(39) == 64", "assert next_power_of_2(9) == 16", "assert next_power_of_2(38) == 64", "assert next_power_of_2(342790) == 524288", "assert next_power_of_2(94) == 128", "assert next_power_of_2(987654322) == 1073741824", "assert next_power_of_2(987654321097) == 1099511627776", "assert next_power_of_2(999999999998) == 1099511627776", "assert next_power_of_2(1000000000002) == 1099511627776", "assert next_power_of_2(1000002) == 1048576", "assert next_power_of_2(127) == 128", "assert next_power_of_2(1234567890122) == 2199023255552", "assert next_power_of_2(987654323) == 1073741824", "assert next_power_of_2(1000003) == 1048576", "assert next_power_of_2(55) == 64", "assert next_power_of_2(52) == 64", "assert next_power_of_2(56) == 64", "assert next_power_of_2(0) == 1", "assert next_power_of_2(567989) == 1048576", "assert next_power_of_2(1000000000003) == 1099511627776", "assert next_power_of_2(1000000000004) == 1099511627776", "assert next_power_of_2(567987) == 1048576", "assert next_power_of_2(1000004) == 1048576", "assert next_power_of_2(567986) == 1048576", "assert next_power_of_2(999999999997) == 1099511627776", "assert next_power_of_2(1234567890124) == 2199023255552", "assert next_power_of_2(1000005) == 1048576", "assert next_power_of_2(342787) == 524288", "assert next_power_of_2(7) == 8", "assert next_power_of_2(11) == 16", "assert next_power_of_2(54) == 64", "assert next_power_of_2(999999) == 1048576", "assert next_power_of_2(96) == 128", "assert next_power_of_2(567985) == 1048576", "assert next_power_of_2(1234567890125) == 2199023255552", "assert next_power_of_2(6) == 8", "assert next_power_of_2(57) == 64", "assert next_power_of_2(987654321095) == 1099511627776", "assert next_power_of_2(342791) == 524288", "assert next_power_of_2(93) == 128", "assert next_power_of_2(999998) == 1048576", "assert next_power_of_2(1000006) == 1048576", "assert next_power_of_2(342786) == 524288", "assert next_power_of_2(92) == 128", "assert next_power_of_2(33) == 64", "assert next_power_of_2(97) == 128", "assert next_power_of_2(1234567890126) == 2199023255552", "assert next_power_of_2(36) == 64", "assert next_power_of_2(987654321096) == 1099511627776", "assert next_power_of_2(37) == 64", "assert next_power_of_2(53) == 64", "assert next_power_of_2(35) == 64", "assert next_power_of_2(5) == 8", "assert next_power_of_2(1000007) == 1048576", "assert next_power_of_2(12) == 16", "assert next_power_of_2(1000000000005) == 1099511627776", "assert next_power_of_2(987654319) == 1073741824", "assert next_power_of_2(999999999996) == 1099511627776", "assert next_power_of_2(3) == 4", "assert next_power_of_2(130) == 256", "assert next_power_of_2(22) == 32", "assert next_power_of_2(567988) == 1048576", "assert next_power_of_2(987654318) == 1073741824", "assert next_power_of_2(100) == 128", "assert next_power_of_2(98) == 128", "assert next_power_of_2(1000000000006) == 1099511627776", "assert next_power_of_2(131) == 256", "assert next_power_of_2(67) == 128", "assert next_power_of_2(132) == 256", "assert next_power_of_2(987654317) == 1073741824", "assert next_power_of_2(42) == 64", "assert next_power_of_2(101) == 128", "assert next_power_of_2(987654321094) == 1099511627776", "assert next_power_of_2(77) == 128", "assert next_power_of_2(4) == 4", "assert next_power_of_2(567991) == 1048576", "assert next_power_of_2(342792) == 524288", "assert next_power_of_2(987654321099) == 1099511627776", "assert next_power_of_2(1234567890121) == 2199023255552", "assert next_power_of_2(99) == 128", "assert next_power_of_2(58) == 64", "assert next_power_of_2(1000000000007) == 1099511627776", "assert next_power_of_2(342785) == 524288", "assert next_power_of_2(1000000000008) == 1099511627776", "assert next_power_of_2(51) == 64", "assert next_power_of_2(50) == 64", "assert next_power_of_2(1000000000009) == 1099511627776", "assert next_power_of_2(133) == 256", "assert next_power_of_2(21) == 32" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count the number of occurrences of a number in a given list.\nassert frequency([1,2,3], 4) == 0\nYour code should pass the test:\nassert frequency([1,2,3], 4) == 0", "test_list": [ "assert frequency([1,2,3], 4) == 0", "assert frequency([1,2,2,3,3,3,4], 3) == 3", "assert frequency([0,1,2,3,1,2], 1) == 2", "assert frequency([], 1) == 0", "assert frequency([], 4) == 0", "assert frequency([False], 4) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], 1) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], 1) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], False) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPshwex', 'ICMkS', '', ''], 1) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], 0) == 0", "assert frequency([True, False, False, True, False, True, True, True, False], 2) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPVjygOQshwex', 'VjPshwex', 'ICMkS', '', ''], 1) == 0", "assert frequency([], 2) == 0", "assert frequency([4.779178548584724, 20.12336259087077], 1) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732], True) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 20.12336259087077], False) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPVjygOQshwex', 'VjPshwex', 'ICMkS', '', '', 'CL', 'IV'], 1) == 0", "assert frequency([True, False, False, True, False, True, True, False, True, False], 2) == 0", "assert frequency([6.671642720053646, 72.59056638104303, 92.53457117882732, 20.12336259087077], 4) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPVjygOQshwex', 'VjPshwex', 'ICMkS', 'VjPVjygOQshwVjPshwexex', '', '', 'CL', 'IV'], 5) == 0", "assert frequency([False, False], 4) == 0", "assert frequency([5.159327309211834, 4.779178548584724], 1) == 0", "assert frequency([4.779178548584724, 73.08137236933901, 92.53457117882732, 20.12336259087077], True) == 0", "assert frequency([True, False], 4) == 0", "assert frequency([23.020319535944452, [5, False, -74, -50, -9, 5, 4, -97], '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwVjPshwexex', 'q'], 2) == 1", "assert frequency([4.779178548584724, 20.12336259087077, 4.779178548584724], False) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], 0) == 0", "assert frequency([True, True], 4) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPVjygOQshwex', 'ICMkS', '', '', 'CL', 'IV'], -50) == 0", "assert frequency([5], 2) == 0", "assert frequency([23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwVjPshwexex', 'q', [5, False, -74, -50, -9, 5, 4, -97]], 2) == 1", "assert frequency([5], False) == 0", "assert frequency([23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwex', [5, False, -74, -50, -9, 5, 4, -97]], -50) == 0", "assert frequency([5, 5], False) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], True) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 23.408003718694573, 20.12336259087077, 92.53457117882732], False) == 0", "assert frequency([60, 4, 4, -43, 4, 81, -50, 5, 99, -97], 4) == 3", "assert frequency([5.599696065924146], 4) == 0", "assert frequency([23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], 'VIV', '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwex', [5, False, -74, -50, -9, 5, 4, -97]], -51) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPVjygOQshwex', 'ICMkS', '', '', 'CL', 'IV'], -74) == 0", "assert frequency([], 3) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], -51) == 0", "assert frequency([4.779178548584724, 20.12336259087077], False) == 0", "assert frequency([20.12336259087077], False) == 0", "assert frequency([23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwVjPshwexex', 'q'], 2) == 1", "assert frequency([4.779178548584724, 20.12336259087077, 4.779178548584724], True) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], 2) == 0", "assert frequency([5, 5], True) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 92.53457117882732], True) == 0", "assert frequency([6.671642720053646, 73.08137236933901, 4.779178548584724, 20.12336259087077], 4) == 0", "assert frequency([True], 4) == 0", "assert frequency([True], 1) == 1", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], -9) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 23.408003718694573, 20.12336259087077, 92.53457117882732], True) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], -51) == 0", "assert frequency([5.159327309211834, 4.779178548584724], -97) == 0", "assert frequency([], 5) == 0", "assert frequency([4.779178548584724, 23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], 'VIV', '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwex', [5, False, -74, -50, -9, 5, 4, -97]], -51) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 25.495320338145287, 23.408003718694573, 104.92811756855819, 20.12336259087077, 92.53457117882732], False) == 0", "assert frequency([23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwVjPshwexex', 'q', [5, False, -74, -50, -9, 5, 4, -97]], 3) == 0", "assert frequency([True, False, False, True, False, True, True, True, False], 81) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 20.12336259087077], 1) == 0", "assert frequency([4.779178548584724, 73.08137236933901, 92.53457117882732], True) == 0", "assert frequency([21.457739778830753, 4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], 0) == 0", "assert frequency([5], 1) == 0", "assert frequency([60, 4, 4, -43, 4, 82, -50, 5, 3, 99], 4) == 3", "assert frequency([4.779178548584724, 72.59056638104303, 91.9284337556918, 92.53457117882732, 20.12336259087077], -51) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.95740817891545], -1) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 12.618578392571889, 20.12336259087077, 92.53457117882732], False) == 0", "assert frequency(['CL', 'vGL', 'VjygOQ', 'IV', 'VjPVjygOQshwex', 'ICMkS', '', '', 'CL', 'IV'], -43) == 0", "assert frequency([], -9) == 0", "assert frequency([], 82) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 23.408003718694573, 91.9284337556918, 92.53457117882732], True) == 0", "assert frequency([5], -1) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 91.9284337556918, 92.53457117882732], False) == 0", "assert frequency([False, True, False], 4) == 0", "assert frequency([4.779178548584724, 23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], 'VIV', '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwex', [5, False, -74, -50, -9, 5, 4, -97], 'VIV'], -51) == 0", "assert frequency([99, -31, 82, -60], 3) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732, 92.53457117882732], 4) == 0", "assert frequency([None, 73.08137236933901, -72.0136627571263, -2.6946579959743957, 'grmqd', {}, 'VjPVjygOQshwex', {'-32': 12.618578392571889, '5': [66.8966114578121, -3.026526737101335, 4.779178548584724], '2': True, '-51': 81, '-77': 60}, 81], 5) == 0", "assert frequency([4.779178548584724, 23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], 'VIV', '', [], False, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwex', [5, False, -74, -50, -9, 5, 4, -97], 'VVIV'], -51) == 0", "assert frequency([72.59056638104303, 92.53457117882732, 20.12336259087077], 0) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], False) == 0", "assert frequency([20.95740817891545, 5.599696065924146, 5.599696065924146], 4) == 0", "assert frequency([5, 6], False) == 0", "assert frequency(['vGL', 'GEMQus', 'VjPVjygOQshwex', 'o', '', '', 'ICMkS', 'GHTx', 'grmqd', 'LvGL', 'vGL'], 5) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 20.12336259087077, 72.59056638104303], False) == 0", "assert frequency([20.95740817891545, 5.599696065924146, 5.599696065924146, 5.599696065924146], 4) == 0", "assert frequency([4.638246081712282, 4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732], 2) == 0", "assert frequency([-3.026526737101335, -51.21354843845134, -50.84067158641727], 5) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077], 2) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 93.00370740734236, 20.12336259087077], 1) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732], False) == 0", "assert frequency([23.408003718694573, 93.00370740734236, 72.59056638104303, 25.495320338145287, 104.92811756855819, -72.0136627571263, 104.92811756855819, 59.68770177971405, -62.798823266707295, 5.159327309211834], 4) == 0", "assert frequency([5], 5) == 1", "assert frequency([60, 3, 4, 4, -43, 4, 81, -50, 5, 99, -97], 4) == 3", "assert frequency([4.779178548584724, 20.12336259087077], True) == 0", "assert frequency([20.95740817891545, 5.599696065924146, 4.638246081712282, 5.599696065924146, 5.599696065924146], 4) == 0", "assert frequency([False, False], -43) == 0", "assert frequency([4.779178548584724, 72.59056638104303, 92.53457117882732, 20.12336259087077, 92.53457117882732, 92.53457117882732], 3) == 0", "assert frequency([], -77) == 0", "assert frequency([4.000120888560737, 20.12336259087077], False) == 0", "assert frequency([60, 4, -50, -43, 4, 81, -50, 5, 99, -97, 99], -60) == 0", "assert frequency([23.020319535944452, 'IV', [5, False, -74, -50, -9, 5, 4, -97], '', [], True, 2, 'VjPVjygOQshwex', 'VjPVjygOQshwVjPshwexex', 'q'], 2) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that returns the perimeter of a square given its side length as input.\nassert square_perimeter(10)==40\nYour code should pass the test:\nassert square_perimeter(10)==40", "test_list": [ "assert square_perimeter(10)==40", "assert square_perimeter(5)==20", "assert square_perimeter(4)==16", "assert square_perimeter(3.5) == 14.0", "assert square_perimeter(3.867338210205425) == 15.4693528408217", "assert square_perimeter(4.017438434643324) == 16.069753738573297", "assert square_perimeter(4.487089891527536) == 17.948359566110145", "assert square_perimeter(2.6642890317066636) == 10.657156126826655", "assert square_perimeter(5.887984312046749) == 23.551937248186995", "assert square_perimeter(6.072194086423373) == 24.288776345693492", "assert square_perimeter(3.642116465724614) == 14.568465862898456", "assert square_perimeter(3.695469856787123) == 14.781879427148493", "assert square_perimeter(4.141400647038825) == 16.5656025881553", "assert square_perimeter(6.035071486216641) == 24.140285944866562", "assert square_perimeter(3.271150304405481) == 13.084601217621923", "assert square_perimeter(True) == 4", "assert square_perimeter(84) == 336", "assert square_perimeter(22) == 88", "assert square_perimeter(5.654807546008664) == 22.619230184034656", "assert square_perimeter(4.820511953305605) == 19.28204781322242", "assert square_perimeter(6.577316776519947) == 26.309267106079787", "assert square_perimeter(5.002581120259965) == 20.01032448103986", "assert square_perimeter(6.969535253031167) == 27.87814101212467", "assert square_perimeter(3.718379579422467) == 14.873518317689868", "assert square_perimeter(6.322289576625546) == 25.289158306502184", "assert square_perimeter(5.632673587071418) == 22.53069434828567", "assert square_perimeter(5.3345589524375985) == 21.338235809750394", "assert square_perimeter(6.725440141493683) == 26.901760565974733", "assert square_perimeter(6.516564500761447) == 26.06625800304579", "assert square_perimeter(8.993452545033046) == 35.97381018013218", "assert square_perimeter(5.319836337788916) == 21.279345351155666", "assert square_perimeter(6.043399656495942) == 24.173598625983768", "assert square_perimeter(6.185578656467972) == 24.742314625871888", "assert square_perimeter(4.217038121909214) == 16.868152487636856", "assert square_perimeter(87) == 348", "assert square_perimeter(4.005528059933441) == 16.022112239733765", "assert square_perimeter(6.208925187146142) == 24.835700748584568", "assert square_perimeter(85) == 340", "assert square_perimeter(2.5181655036830994) == 10.072662014732398", "assert square_perimeter(82) == 328", "assert square_perimeter(4.1150925428079805) == 16.460370171231922", "assert square_perimeter(5.484648231650928) == 21.93859292660371", "assert square_perimeter(6.701524882996955) == 26.80609953198782", "assert square_perimeter(21) == 84", "assert square_perimeter(5.568439992700058) == 22.27375997080023", "assert square_perimeter(88) == 352", "assert square_perimeter(6.843276090129513) == 27.373104360518052", "assert square_perimeter(3.4382125488926367) == 13.752850195570547", "assert square_perimeter(6.388475480286746) == 25.553901921146984", "assert square_perimeter(7.660073820339544) == 30.640295281358178", "assert square_perimeter(2.769573374810499) == 11.078293499241996", "assert square_perimeter(6.898645835852767) == 27.594583343411067", "assert square_perimeter(7.826927755593033) == 31.307711022372132", "assert square_perimeter(2.4985782322950842) == 9.994312929180337", "assert square_perimeter(5.8695983810477985) == 23.478393524191194", "assert square_perimeter(4.773486580932547) == 19.093946323730187", "assert square_perimeter(3.001034234443808) == 12.004136937775232", "assert square_perimeter(5.395838439745376) == 21.583353758981502", "assert square_perimeter(3.577918724597513) == 14.311674898390052", "assert square_perimeter(5.170120644837316) == 20.680482579349263", "assert square_perimeter(6.99185332198154) == 27.96741328792616", "assert square_perimeter(3.449246178521576) == 13.796984714086303", "assert square_perimeter(5.5411783354818605) == 22.164713341927442", "assert square_perimeter(6.436883135688541) == 25.747532542754165", "assert square_perimeter(3.49384577169542) == 13.97538308678168", "assert square_perimeter(5.015277110821801) == 20.061108443287203", "assert square_perimeter(3.4631036701381923) == 13.85241468055277", "assert square_perimeter(3.38643188343381) == 13.54572753373524", "assert square_perimeter(1.9894160159593337) == 7.957664063837335", "assert square_perimeter(1.837789735808722) == 7.351158943234888", "assert square_perimeter(5.245639801999035) == 20.98255920799614", "assert square_perimeter(4.465805726769371) == 17.863222907077486", "assert square_perimeter(5.309603748296835) == 21.23841499318734", "assert square_perimeter(3.3070853809486187) == 13.228341523794475", "assert square_perimeter(8.803439557651616) == 35.213758230606466", "assert square_perimeter(5.447584681806455) == 21.79033872722582", "assert square_perimeter(2.6402987239829994) == 10.561194895931997", "assert square_perimeter(5.81268658921342) == 23.25074635685368", "assert square_perimeter(2.203529850744147) == 8.814119402976589", "assert square_perimeter(2.413369661283704) == 9.653478645134816", "assert square_perimeter(2.8444882558095452) == 11.377953023238181", "assert square_perimeter(2.9679176613024727) == 11.87167064520989", "assert square_perimeter(5.635919297098677) == 22.543677188394707", "assert square_perimeter(7.106142255754484) == 28.424569023017938", "assert square_perimeter(3.673088666908028) == 14.692354667632111", "assert square_perimeter(11.501115163046252) == 46.00446065218501", "assert square_perimeter(3.3172795455753574) == 13.26911818230143", "assert square_perimeter(3.2120053514572735) == 12.848021405829094", "assert square_perimeter(6.650019959695511) == 26.600079838782044", "assert square_perimeter(23) == 92", "assert square_perimeter(2.413305987922484) == 9.653223951689936", "assert square_perimeter(3.453597614102104) == 13.814390456408416", "assert square_perimeter(6.8216792009730725) == 27.28671680389229", "assert square_perimeter(1.2676205462665886) == 5.070482185066354", "assert square_perimeter(6.866125113001431) == 27.464500452005723", "assert square_perimeter(4.423165960786375) == 17.6926638431455", "assert square_perimeter(1.9765423457339029) == 7.9061693829356114", "assert square_perimeter(4.395641502661771) == 17.582566010647085", "assert square_perimeter(2.9248802236697493) == 11.699520894678997", "assert square_perimeter(1.6520153932594805) == 6.608061573037922", "assert square_perimeter(8.099418388939899) == 32.397673555759596", "assert square_perimeter(5.066661526673157) == 20.26664610669263", "assert square_perimeter(6.345597309471013) == 25.382389237884052", "assert square_perimeter(2.66964983620433) == 10.67859934481732" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the sum of numbers in a list within a range specified by two indices.\nassert sum_range_list([2,1,5,6,8,3,4,9,10,11,8,12], 8, 10) == 29\nYour code should pass the test:\nassert sum_range_list([2,1,5,6,8,3,4,9,10,11,8,12], 8, 10) == 29", "test_list": [ "assert sum_range_list([2,1,5,6,8,3,4,9,10,11,8,12], 8, 10) == 29", "assert sum_range_list([2,1,5,6,8,3,4,9,10,11,8,12], 5, 7) == 16", "assert sum_range_list([2,1,5,6,8,3,4,9,10,11,8,12], 7, 10) == 38", "assert sum_range_list([-2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8], 3, 7) == 15", "assert sum_range_list([-10, -5, 0, 5, 10, 15, 20, 25, 30], 0, 8) == 90", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12], 0, 11) == 79", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 2, 6) == 30", "assert sum_range_list([0, 1, 1, 2, 3, 5, 8, 13, 21, 34], 1, 9) == 88", "assert sum_range_list([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 3, 9) == 91", "assert sum_range_list([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 5, 8) == 300", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 2, 7) == 45", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12], 8, 11) == 38", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 2, 5) == 18", "assert sum_range_list([-10, -5, 0, 5, 10, -6, 15, 20, 25, 30], 0, 8) == 54", "assert sum_range_list([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 5, 5) == 60", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 11, 18], 2, 5) == 18", "assert sum_range_list([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 7, 5) == 0", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11], 1, 11) == 77", "assert sum_range_list([0, 1, 1, 2, 3, 5, 8, 13, 21, 34], 3, 1) == 0", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 2, 2) == -1", "assert sum_range_list([0, 1, 2, 3, 5, 8, 13, 21, 34], 3, 1) == 0", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11], 1, 1) == 1", "assert sum_range_list([2, 1, 5, 6, 8, 3, 70, 9, 10, 11, 8, 12], 11, 11) == 12", "assert sum_range_list([2, 1, 5, 6, 8, 3, 70, 9, 10, 11, 8, 12], 2, 2) == 5", "assert sum_range_list([-3, 20, -1, 4, 6, 9, 12, 15, 18], 2, 5) == 18", "assert sum_range_list([-3, -8, 16, -1, 4, 6, 9, 12, 15, 18], 2, 2) == 16", "assert sum_range_list([-8, -1, 4, 6, 9, 12, 15, 18], 2, 2) == 4", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11], 1, 0) == 0", "assert sum_range_list([0, 1, 1, 2, 3, 5, 8, 13, 21, 34, 21], 3, 1) == 0", "assert sum_range_list([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 9, 3) == 0", "assert sum_range_list([-10, -5, 0, 5, 10, -6, 15, 20, 25, 30], 0, 9) == 84", "assert sum_range_list([-3, -8, -1, 4, 6, 30, 12, 15, 18, 9], 2, 6) == 51", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 11, 18, -1], 2, 5) == 18", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12], 11, 0) == 0", "assert sum_range_list([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 8, 9) == 36", "assert sum_range_list([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 9, 9) == 19", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 11, 18, 12], 1, 4) == 1", "assert sum_range_list([-10, -5, 0, 5, 10, -6, 15, 0, 20, 25, 30, 15], 0, 8) == 29", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12], 9, 11) == 29", "assert sum_range_list([-3, -8, 5, 6, 12, 15, 18, 9], 2, 7) == 65", "assert sum_range_list([-8, -1, 4, 6, 12, 15, 19, 12], 2, 6) == 56", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11], 1, 12) == 88", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 2, 3) == 3", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 7, 10, 11, 8, 12], 8, 11) == 36", "assert sum_range_list([-3, 40, -8, -1, 4, 6, 9, 12, 15, 18], 2, 2) == -8", "assert sum_range_list([2, 1, 5, 6, 8, 3, 70, 9, 10, 11, 8, 12], 11, 10) == 0", "assert sum_range_list([-2, -1, 0, 1, 2, 3, 5, 6, 7, 8], 3, 7) == 17", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 7, 10, 11, 8, 12], 0, 11) == 77", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11, 6], 1, 11) == 77", "assert sum_range_list([-8, -1, 4, 6, 12, 15, 19, 12, 15], 2, 6) == 56", "assert sum_range_list([-8, -1, 4, 6, 9, -2, 12, 15, 18], 2, 2) == 4", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 7, 7) == 15", "assert sum_range_list([-8, -1, 4, 6, 30, 9, 12, 15, 18], 2, 2) == 4", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 7, 10, 11, 8, 12, 7], 8, 4) == 0", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 7, 10, 11, 8, 12, 7], 9, 4) == 0", "assert sum_range_list([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 4, 3) == 0", "assert sum_range_list([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 2, 9) == 96", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 6, 2) == 0", "assert sum_range_list([1, 3, 5, 7, 11, 13, 15, 17, -5, 19], 4, 3) == 0", "assert sum_range_list([10, 21, 30, 40, 50, 60, 70, 80, 90, 100], 7, 5) == 0", "assert sum_range_list([2, 1, 12, 5, 6, 8, 4, 7, 10, 11, 8, 12], 0, 11) == 86", "assert sum_range_list([10, 21, 30, 40, 50, 60, 70, 80, 90, 100], 8, 5) == 0", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 8], 11, 11) == 12", "assert sum_range_list([2, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11, 6], 1, 11) == 87", "assert sum_range_list([2, 1, 12, 5, -5, 6, 8, 3, 4, 7, 10, 11, 8, 12], 8, 11) == 32", "assert sum_range_list([0, -6, 2, 3, 5, 8, 13, 21, 34], 3, 1) == 0", "assert sum_range_list([2, 1, 12, 5, -5, 6, 8, 3, 4, 7, 10, 11, 8, 12], 9, 8) == 0", "assert sum_range_list([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 5, 7) == 210", "assert sum_range_list([-3, -8, 5, 6, 6, 12, 15, 18, 9], 2, 7) == 62", "assert sum_range_list([10, 21, 30, 40, 50, 60, 70, 80, 90, 100, 100], 7, 5) == 0", "assert sum_range_list([-10, -5, 0, 5, 10, -6, 15, 20, 25, 30], 0, 0) == -10", "assert sum_range_list([-8, -1, 4, 6, 12, 15, 19, 12, 15], 5, 5) == 15", "assert sum_range_list([-8, -1, 4, 6, 12, 15, 19, 12, 15], 5, 6) == 34", "assert sum_range_list([-3, -8, -1, 6, 9, 12, 15, 18], 7, 7) == 18", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 7, 10, 11, 8, 12, 7], 9, 5) == 0", "assert sum_range_list([-3, -1, 4, 6, 9, 12, 15, 18], 2, 5) == 31", "assert sum_range_list([-3, -8, -2, 4, 6, 9, 12, 15, 18], 2, 2) == -2", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, -10, 15, 18], 2, 2) == -1", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 16, 9, 10, 11, 8, 12], 9, 11) == 29", "assert sum_range_list([2, 1, 12, 5, 6, 8, 3, 4, 7, 10, 11, 8, 12, 7], 2, 5) == 31", "assert sum_range_list([-10, -5, 0, 5, 10, -6, 15, 0, 20, 25, 30, 15, 30], 0, 3) == -10", "assert sum_range_list([9, 2, 1, 5, 6, 8, 3, 4, 16, 10, 11, 8, 12, 11], 11, 11) == 8", "assert sum_range_list([0, 1, 1, 2, 3, 5, 8, 13, 34, 21, 34], 3, 1) == 0", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 11, 18, 12], 1, 5) == 10", "assert sum_range_list([-3, 20, -1, 4, 6, 9, 12, 15, 18, 20], 2, 5) == 18", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 8, 6], 11, 11) == 12", "assert sum_range_list([-10, -5, 0, 5, 26, 10, -6, 15, 0, 20, 25, 30, 15], 0, 8) == 35", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 1, 7) == 37", "assert sum_range_list([0, 1, 2, 3, 5, 8, 13, 21, 34], 3, 0) == 0", "assert sum_range_list([-3, 50, -1, 4, 6, 9, 12, 15, 11, 3, 12], 1, 5) == 68", "assert sum_range_list([-3, -8, -1, 4, 6, 100, 9, 12, 15, 18], 2, 5) == 109", "assert sum_range_list([70, -8, -1, 4, 6, 9, 12, 15, 18, 4], 2, 2) == -1", "assert sum_range_list([-10, -5, 0, 5, 10, -6, 15, 0, 20, 25, 30, 15, 30, 15], 0, 3) == -10", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 18], 1, 2) == -9", "assert sum_range_list([1, 3, 5, 7, 13, 15, 17, -5, 19], 4, 3) == 0", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 8, 11], 11, 11) == 12", "assert sum_range_list([-3, -8, 16, -1, 4, 6, 9, 12, 15, 18], 1, 1) == -8", "assert sum_range_list([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 5, 9) == 400", "assert sum_range_list([-3, 40, -8, -1, 4, 6, 9, 12, 15, 18], 2, 4) == -5", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 8, 11], 10, 11) == 20", "assert sum_range_list([-8, -1, 4, 6, 12, 15, 19, 12, 15], 2, 2) == 4", "assert sum_range_list([2, 1, 5, 6, 8, 3, 4, 9, 10, 11, 8, 12, 11, 6, 9], 1, 11) == 77", "assert sum_range_list([-3, 20, -1, 4, 6, 9, 12, 15, 18], 6, 2) == 0", "assert sum_range_list([-3, -8, -1, 4, 6, 9, 12, 15, 11, 18, 12], 2, 1) == 0", "assert sum_range_list([1, 2, 3, 5, 7, 9, 11, 13, 15, 17, 19], 3, 9) == 77", "assert sum_range_list([-2, -1, 0, 1, 2, 3, 5, 6, 7, 8], 2, 7) == 17", "assert sum_range_list([1, -8, -1, 4, 6, 9, 12, 15, 11, 18, 12], 6, 1) == 0", "assert sum_range_list([2, 1, 5, 6, 8, 3, 70, 9, 10, 11, 8, 12, 1], 11, 11) == 12", "assert sum_range_list([-3, 20, -1, 4, 6, 9, 12, 15, 18, 20], 1, 2) == 19", "assert sum_range_list([10, 21, 30, 40, 50, 60, 70, 80, 90, 100], 7, 4) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the perimeter of a regular pentagon from the length of its sides.\nassert perimeter_pentagon(5) == 25\nYour code should pass the test:\nassert perimeter_pentagon(5) == 25", "test_list": [ "assert perimeter_pentagon(5) == 25", "assert perimeter_pentagon(10) == 50", "assert perimeter_pentagon(15) == 75", "assert perimeter_pentagon(0) == 0", "assert perimeter_pentagon(-10) == -50", "assert perimeter_pentagon(1000000) == 5000000", "assert perimeter_pentagon(3.5) == 17.5", "assert perimeter_pentagon(1.5) == 7.5", "assert perimeter_pentagon(1.0505829058331777) == 5.2529145291658885", "assert perimeter_pentagon(0.8232153234250026) == 4.116076617125013", "assert perimeter_pentagon(-11) == -55", "assert perimeter_pentagon(1.1423795213926284) == 5.711897606963142", "assert perimeter_pentagon(0.09982566847914054) == 0.4991283423957027", "assert perimeter_pentagon(-1) == -5", "assert perimeter_pentagon(False) == 0", "assert perimeter_pentagon(1000001) == 5000005", "assert perimeter_pentagon(-2) == -10", "assert perimeter_pentagon(0.8077261706133441) == 4.038630853066721", "assert perimeter_pentagon(True) == 5", "assert perimeter_pentagon(1.1028493478364014) == 5.514246739182007", "assert perimeter_pentagon(-0.6792391618130493) == -3.3961958090652464", "assert perimeter_pentagon(0.909551532381226) == 4.54775766190613", "assert perimeter_pentagon(1000002) == 5000010", "assert perimeter_pentagon(-0.005504686729706451) == -0.027523433648532252", "assert perimeter_pentagon(0.9868175569774722) == 4.934087784887361", "assert perimeter_pentagon(-9) == -45", "assert perimeter_pentagon(0.9232556249681736) == 4.616278124840868", "assert perimeter_pentagon(1000003) == 5000015", "assert perimeter_pentagon(0.6965793033660621) == 3.4828965168303103", "assert perimeter_pentagon(0.6294263989650178) == 3.1471319948250893", "assert perimeter_pentagon(0.6535078983353) == 3.2675394916764997", "assert perimeter_pentagon(1.6349329383768112) == 8.174664691884056", "assert perimeter_pentagon(0.7902235974897384) == 3.9511179874486917", "assert perimeter_pentagon(1.5172735829864554) == 7.586367914932277", "assert perimeter_pentagon(-0.934803278457003) == -4.674016392285015", "assert perimeter_pentagon(-1.1192650882858737) == -5.596325441429368", "assert perimeter_pentagon(1.2342082553789273) == 6.171041276894637", "assert perimeter_pentagon(-1.698603118139952) == -8.493015590699759", "assert perimeter_pentagon(0.5935859571226136) == 2.967929785613068", "assert perimeter_pentagon(1.6830234032997775) == 8.415117016498888", "assert perimeter_pentagon(0.785792688601003) == 3.9289634430050153", "assert perimeter_pentagon(31.370495378968002) == 156.85247689484", "assert perimeter_pentagon(84.01235804122422) == 420.0617902061211", "assert perimeter_pentagon(1.1276189613088303) == 5.638094806544151", "assert perimeter_pentagon(107.78498426566843) == 538.9249213283422", "assert perimeter_pentagon(-0.0029078677287501745) == -0.014539338643750873", "assert perimeter_pentagon(-12) == -60", "assert perimeter_pentagon(75.6566983607087) == 378.2834918035435", "assert perimeter_pentagon(1.554842829586259) == 7.774214147931295", "assert perimeter_pentagon(-15.68855646866227) == -78.44278234331135", "assert perimeter_pentagon(0.5528325585260435) == 2.7641627926302177", "assert perimeter_pentagon(1.9252801407864577) == 9.626400703932289", "assert perimeter_pentagon(0.7737942113653675) == 3.8689710568268376", "assert perimeter_pentagon(1.2772250645310455) == 6.386125322655227", "assert perimeter_pentagon(0.3658008762332865) == 1.8290043811664325", "assert perimeter_pentagon(1.2131766463211393) == 6.065883231605697", "assert perimeter_pentagon(0.9390038351214784) == 4.695019175607392", "assert perimeter_pentagon(2.2831918031216305) == 11.415959015608152", "assert perimeter_pentagon(1.882254037648374) == 9.41127018824187", "assert perimeter_pentagon(-8) == -40", "assert perimeter_pentagon(0.13542016819864997) == 0.6771008409932499", "assert perimeter_pentagon(0.1399805018824617) == 0.6999025094123085", "assert perimeter_pentagon(-0.021518766852972826) == -0.10759383426486413", "assert perimeter_pentagon(1.2249594487730122) == 6.124797243865061", "assert perimeter_pentagon(4.73142092326178) == 23.6571046163089", "assert perimeter_pentagon(2.5041511619949257) == 12.520755809974629", "assert perimeter_pentagon(-29.226547220922924) == -146.13273610461462", "assert perimeter_pentagon(1.232187069270112) == 6.16093534635056", "assert perimeter_pentagon(0.9315663577437784) == 4.657831788718892", "assert perimeter_pentagon(0.16130662172278876) == 0.8065331086139438", "assert perimeter_pentagon(-3) == -15", "assert perimeter_pentagon(1.2353805704290877) == 6.176902852145439", "assert perimeter_pentagon(-0.23618264271757206) == -1.1809132135878602", "assert perimeter_pentagon(-1.9412533512158896) == -9.706266756079447", "assert perimeter_pentagon(0.7590332508942004) == 3.7951662544710016", "assert perimeter_pentagon(1.8855707948477347) == 9.427853974238673", "assert perimeter_pentagon(0.12461000378614799) == 0.62305001893074", "assert perimeter_pentagon(3.713397178947464) == 18.56698589473732", "assert perimeter_pentagon(1.1646860674476625) == 5.823430337238312", "assert perimeter_pentagon(5.061520744124105) == 25.307603720620527", "assert perimeter_pentagon(2.362488974509084) == 11.81244487254542", "assert perimeter_pentagon(1.8219258427481917) == 9.10962921374096", "assert perimeter_pentagon(0.7781797011317402) == 3.8908985056587007", "assert perimeter_pentagon(16.251173065770736) == 81.25586532885367", "assert perimeter_pentagon(1.2275912517626453) == 6.137956258813226", "assert perimeter_pentagon(0.26717467520648097) == 1.3358733760324049", "assert perimeter_pentagon(-7) == -35", "assert perimeter_pentagon(0.7750635059012929) == 3.8753175295064644", "assert perimeter_pentagon(0.9746470744694342) == 4.873235372347171", "assert perimeter_pentagon(0.8564961031500605) == 4.2824805157503025", "assert perimeter_pentagon(-0.8398787134682071) == -4.199393567341035", "assert perimeter_pentagon(0.6562631390141311) == 3.2813156950706555", "assert perimeter_pentagon(0.860561999847218) == 4.30280999923609", "assert perimeter_pentagon(0.9087877034647631) == 4.543938517323816", "assert perimeter_pentagon(89.7106724186805) == 448.5533620934025", "assert perimeter_pentagon(-0.575457086018061) == -2.8772854300903052", "assert perimeter_pentagon(-28.33971230831976) == -141.6985615415988", "assert perimeter_pentagon(0.11108589002626337) == 0.5554294501313168", "assert perimeter_pentagon(0.38766169842712256) == 1.9383084921356128", "assert perimeter_pentagon(-4) == -20", "assert perimeter_pentagon(0.7952111107175209) == 3.9760555535876048", "assert perimeter_pentagon(0.2900179424349849) == 1.4500897121749245", "assert perimeter_pentagon(-15.637668202519894) == -78.18834101259947", "assert perimeter_pentagon(1.4496382242194237) == 7.248191121097118", "assert perimeter_pentagon(147.8513725235397) == 739.2568626176985", "assert perimeter_pentagon(-0.7256171557364777) == -3.6280857786823884", "assert perimeter_pentagon(-1.8438320948223208) == -9.219160474111604", "assert perimeter_pentagon(-0.1244805889183841) == -0.6224029445919205" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count the number of occurence of the string 'std' in a given string.\nassert count_occurance(\"letstdlenstdporstd\") == 3\nYour code should pass the test:\nassert count_occurance(\"letstdlenstdporstd\") == 3", "test_list": [ "assert count_occurance(\"letstdlenstdporstd\") == 3", "assert count_occurance(\"truststdsolensporsd\") == 1", "assert count_occurance(\"makestdsostdworthit\") == 2", "assert count_occurance(\"stds\") == 1", "assert count_occurance(\"\") == 0", "assert count_occurance('stdstdstdstd') == 4", "assert count_occurance('stdstdststdstdstdstddstd') == 7", "assert count_occurance('stdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstd') == 15", "assert count_occurance('stdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstd') == 15", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 22", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 43", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 42", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 40", "assert count_occurance('stdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 64", "assert count_occurance('stdstdstdsttstdstdstdsttdststdstdstdstddstd') == 11", "assert count_occurance('stdsdtdstdstd') == 3", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 62", "assert count_occurance('st') == 0", "assert count_occurance('stdstdstdstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 22", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 21", "assert count_occurance('stdsdttdstd') == 2", "assert count_occurance('sst') == 0", "assert count_occurance('stdsdttdstdstd') == 3", "assert count_occurance('stdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstd') == 22", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddst') == 21", "assert count_occurance('sttdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstd') == 14", "assert count_occurance('stdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 38", "assert count_occurance('stdstdststdssstdsdtdstdstdtdstdstdsttstdstdstdsttdststdstdstdstddssttdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdtdtdstdstddstd') == 32", "assert count_occurance('stdstdststdstdstdstdddstd') == 7", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdsstdstdstdstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtddstdstdstdststdstdstdstddst') == 55", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstsstdstdsstdsttstdstdstdsstdtstdstdddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 62", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdststdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstddstdststdstdstdstddd') == 40", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdstdstddstdtdstdstdstddstdstdstdstdstd') == 22", "assert count_occurance('stdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdsttd') == 37", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdstdstddstdtdstdstdstddstdstdd') == 19", "assert count_occurance('sststdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdsttd') == 37", "assert count_occurance('stdstdstdsttsstdstdstdstttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 38", "assert count_occurance('stdstdstdstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddststdstdstdsttsstdstdstdstttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 59", "assert count_occurance('stdsdstdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstdttdstd') == 24", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdsstdstdstdsstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtddstdstdstdststdstdstdstddst') == 55", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdstdstddstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 46", "assert count_occurance('stdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstdstdstd') == 53", "assert count_occurance('stdstdststdstdstdsssttdddstd') == 6", "assert count_occurance('tstdstdststdd') == 3", "assert count_occurance('stddstdstdstd') == 4", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsststdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstddstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 61", "assert count_occurance('stdstdsttstdstdstdstddstdtdstdstdstdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstddstdstdstdstdstd') == 79", "assert count_occurance('stdstdstdstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsdstdstdstddstd') == 21", "assert count_occurance('stdstdsttstdstdstdstddstdtdstdtstdstddstdstdststtdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstddstdstd') == 28", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdstdstddstdtdstdstdstddstdstddstddstdstdstdstdstdstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstsstdstdsstdsttstdstdstdsstdtstdstdddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 71", "assert count_occurance('stdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 72", "assert count_occurance('stdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdstdstdstdstdstd') == 62", "assert count_occurance('stdsdttdsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdstdstddstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstd') == 48", "assert count_occurance('stdstdstdsttstdstdstdsttdststdstdstdsttddstd') == 10", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsststdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstddstdsstdsttstdstdstdsstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 59", "assert count_occurance('sttdstdsttstdstdstdstdddtdstdtstdstddstdstdstdstdstd') == 13", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdstdstddstdtdstdstdstddstdstddstdstdsttstdstdstdstddstdtdstdstdstdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstddstdstdstdstdstd') == 98", "assert count_occurance('stdstdsstdstdstdsssttdddstd') == 6", "assert count_occurance('stdstdstdstststdstdstdstddsstdstdstdsttstdstdstdsttdststdstdstdstddstdtdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddststdstdstdsttsstdstdstdstttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 69", "assert count_occurance('stdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddsdtdsdtdstdstdstdstdststdstdstdstddstdtdstdsttd') == 36", "assert count_occurance('stdstdsstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstd') == 22", "assert count_occurance('sststdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdsstdstdsstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstdtdstdststdstdstdstddstdtdstdsttd') == 58", "assert count_occurance('stdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdttdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 64", "assert count_occurance('ssst') == 0", "assert count_occurance('stdsdttdsstdstdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstdstdstddstddstdtdstd') == 50", "assert count_occurance('stdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdsstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 64", "assert count_occurance('stdsdttdsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdstdstddstdstdstdstdstsstdstdstdsttsstdstdststdstdstdstdddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstd') == 54", "assert count_occurance('stdstdstdstststdstdstdstddsstdstdstdsttstdstdstdsttdststdstdstdstddstdtdtdstdtstdstddstdstdstdstdstdstdststsdstdstdstddststdstdstdsttsstdstdstdstttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 68", "assert count_occurance('stdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdststdstdststdstdstdstddststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstd') == 49", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdsttdstdststdstdstdstddstd') == 20", "assert count_occurance('stdstdstdsttstdsttddstd') == 5", "assert count_occurance('sssst') == 0", "assert count_occurance('stdsdttdsstdstdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdsstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdstddstdtdstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstdstdstddstddstdtdstd') == 63", "assert count_occurance('sttdstdsttstdstdstdstddsststdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdsttddtdstdtstdstddstdstdstdstdstd') == 50", "assert count_occurance('stdstdststdssstdsdtdstdsttdtdstdstdsttstdstdstdsttdststdstdstdstddssttdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdtdtdstdstddstd') == 31", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddststdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdststdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstddstdststdstdstdstdddddstd') == 82", "assert count_occurance('stddsdttdstdstd') == 3", "assert count_occurance('sststdstdstdsttstddstdstdstddstdtdstdtstsdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdsstdstdsstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstdtdstdststdstdstdstddstdtdstdsttd') == 57", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsststdstdstdststdstdstdstddstdstdsttstdstdsstdstddstdtdstdstdstddstdstdstdstdstddstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 61", "assert count_occurance('dstdstdstdsttstdsttdddstd') == 5", "assert count_occurance('sststdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdsstdstdsstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstdtdstdststdstdstdstddstdtdstdsttd') == 83", "assert count_occurance('sststdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstdtd') == 38", "assert count_occurance('stdsdstdstdstdststdstdstdstddsstdsdttdsstdstdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdsstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdstddstdtdstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstdstdstddstddstdtdstdtdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstdttdstd') == 86", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdssttdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstsstdstdsstdsttstdstdstdsstdtstdstdddstdsdtdstdstdstdstdststdstdstdstddstdtdsdstddstd') == 74", "assert count_occurance('stdstdsttstdstdstdstddstdtdstdstdstdstdstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdssttdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstsstdstdsstdsttstdstdstdsstdtstdstdddstdsdtdstdstdstdstdststdstdstdstddstdtdsdstddstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstddstdstdstdstdstd') == 153", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdsttdsstdstdstdsttstddstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdsttdtdststdstdstdstddstd') == 56", "assert count_occurance('stdstdstdstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdststdstdsstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstddststdstdstdstddstd') == 43", "assert count_occurance('stdstdstdsttdstdstdstdstddstdtdstdtstdstddstdststdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdsstdstdstdsstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtddstdstdstdststdstdstdstddst') == 55", "assert count_occurance('sststdstdstdsttstddstsstdsdtdstdstdstdstdststdstdstdstddstdtdstdsttd') == 15", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdststdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdsttdstdststdstdstdststdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdstdstdstdstdstdddstddstddstdtdstdstdstddstdstdstdstdstd') == 102", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdstdstddstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstd') == 66", "assert count_occurance('stdtstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstdddstddstd') == 62", "assert count_occurance('stdstdsstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsststdstdstdststdstdstdstddstdstdsttstdstdsstdstddstdtdstdstdstddstdstdstdstdstddstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 61", "assert count_occurance('ststtdddstd') == 1", "assert count_occurance('stdsdttdsstdstdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdsdtdstdstsdstdstdststdstdstdstddstdtdstdstddstddstdstdstddstddstdtdstd') == 49", "assert count_occurance('stdstdstdststdstdstdsstdstdstdstststdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddststdstdstdsttsstdstdstdstttstdstdstdstddstdtdstdstdstdstdstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtddstdstdssttstdstdstdstddstdtdstdstdstddstdstdd') == 77", "assert count_occurance('sststdstdstdsttstddstsstdsdtdstdstdstdstdstsdtdstdstdstddstdtdstdsttd') == 14", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtsttdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdststdstdstdstddstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdsstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstd') == 65", "assert count_occurance('stdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdsdtdstd') == 21", "assert count_occurance('stdstdstdstststdstdstdstddstdtdstdtstdstddstdstdsttdstdstdstdstsdstdstdstddstd') == 20", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdststdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdsttdstdststdstdstdststdstdstdststdstdstdstddstdstdsttstdstdstdstddstdtdststdstdstdsttstdstdstdstdstdsdttdsstdstdststdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdsdtdstdstsdstdstdststdstdstdstddstdtdstdstddstddstdstdstddstddstdtdstddstdtdstdtstdstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdstdstdstdstdstdddstddstddstdtdstdstdstddstdstdstdstdstd') == 151", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdstdstddstdtdstdstdstddstdstddstdstdsttstdstdstdstddstdtdstdstdstdstdstdsttsstdstdstdsttstdsttdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdsstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdstddstdstdstdstdstd') == 97", "assert count_occurance('stdstdstdststdstdstdstddstdstdssttstdstdstdstddstdtdstdstdstddstdstddstdstdsttstdstdstdstddstdtdsstdstdstdstdstdsttsstdstdstdsttstdsttdstdstddstdtdstdtstddstddstdstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdsstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstdstd') == 88", "assert count_occurance('stdstdstdstststdstdsttdstddstdtdstdtstdstddstdstdstdstdststdstdstdstststdstdsttdstddstdtdstsststdstdstdsttstddstdstdstddstdtdstdtstsdstddstdstdstdstdstdstdstsstdstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdsstdstdsstdststdstdstdstddstdstdsttstdstdstdstddstdtdstdstdstddstdstdstdstdstdtdstdststdstdstdstddstdtdstdsttddtstdstddstdstdstdstdstdstdststdstdstdstddstddstdststdstdstdstddd') == 96", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsststdstdstdststdstdstdstddstdstdsttstdstdsstdstddstdtdstdstdstddstdstdstdstdstddstdsstdsttstdstdstdsststdstdstdsttsstdstdstdsttstdstdstdstddstdtdstdtstddstddstdsstdstdstdstdstdstsstdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstdtdstdstddstddstdtdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdststdstdstdstddstddtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 124", "assert count_occurance('stdstdstdsttstdstdstdstddstdtdstdtstdstddstdstdstdstdstdstdstsststdstdstdststdstdststdstdstdsttstdstdstdsttdststdstdstdstddstddstddstdstdsttstdstdsstdstddstdtdstdstdstddstdstdstdstdstddstdsstdsttstdstdstdsstdtstdstddstdsdtdstdstdstdstdststdstdstdstddstdtdstdstddstddstd') == 71" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove characters from the first string which are present in the second string.\nassert remove_dirty_chars(\"probasscurve\", \"pros\") == 'bacuve'\nYour code should pass the test:\nassert remove_dirty_chars(\"probasscurve\", \"pros\") == 'bacuve'", "test_list": [ "assert remove_dirty_chars(\"probasscurve\", \"pros\") == 'bacuve'", "assert remove_dirty_chars(\"digitalindia\", \"talent\") == 'digiidi'", "assert remove_dirty_chars(\"exoticmiles\", \"toxic\") == 'emles'", "assert remove_dirty_chars('The quick brown fox jumps over the lazy dog', 'fox') == 'The quick brwn jumps ver the lazy dg'", "assert remove_dirty_chars('This is a sample string', 'i a') == 'Thsssmplestrng'", "assert remove_dirty_chars('1234567890', '01234') == '56789'", "assert remove_dirty_chars('abcd efgh', 'ab cd') == 'efgh'", "assert remove_dirty_chars('This is a sampile string', 'i a') == 'Thsssmplestrng'", "assert remove_dirty_chars('abcd efgh', 'This is a sampile string') == 'bcdf'", "assert remove_dirty_chars('a', '01234') == 'a'", "assert remove_dirty_chars('This is a sample string', 'a') == 'This is smple string'", "assert remove_dirty_chars('abcabgh', 'ab') == 'cgh'", "assert remove_dirty_chars('i a', 'This is a sampile string') == ''", "assert remove_dirty_chars('dog', 'This is a sampile string') == 'do'", "assert remove_dirty_chars('01234', '01234') == ''", "assert remove_dirty_chars('abcabgh', 'a') == 'bcbgh'", "assert remove_dirty_chars('The quick brown fox jumps otver the lazy dog', 'fox') == 'The quick brwn jumps tver the lazy dg'", "assert remove_dirty_chars('do', 'This is a sampile string') == 'do'", "assert remove_dirty_chars('abcabggh', 'a') == 'bcbggh'", "assert remove_dirty_chars('This is a sample string', 'This') == ' a ample trng'", "assert remove_dirty_chars('ia', 'This is a sampile string') == ''", "assert remove_dirty_chars('ia', 'This is a sample stringsample') == ''", "assert remove_dirty_chars('This is a sasmple string', 'This is a sample strin1234567890g') == ''", "assert remove_dirty_chars('sis', 'dog') == 'sis'", "assert remove_dirty_chars('abcd efgh', 'bab cd') == 'efgh'", "assert remove_dirty_chars('bab cd', 'bab cd') == ''", "assert remove_dirty_chars('bab cd', 'This is a sample stringsample') == 'bbcd'", "assert remove_dirty_chars('This is a sampile string', 'This is a sampile string') == ''", "assert remove_dirty_chars('do', 'do') == ''", "assert remove_dirty_chars('This is a sample stringsample', 'Thish is a sampile string') == ''", "assert remove_dirty_chars('a', '1234567890') == 'a'", "assert remove_dirty_chars('dog', 'dog') == ''", "assert remove_dirty_chars('Thiss is a sampring', 'This is a sampring') == ''", "assert remove_dirty_chars('The quick brown fox jumps over the lazy dog', 'This is a sampile string') == 'quckbowfoxjuovzydo'", "assert remove_dirty_chars('brownabcd', 'iaquick') == 'brownbd'", "assert remove_dirty_chars('This is a sasmple string', 'This is a sample strin1234567g') == ''", "assert remove_dirty_chars('This is a sample stringsamplae', 'This is a sample stringsample') == ''", "assert remove_dirty_chars('Thish is a sampile string', 'Thish is a sampile string') == ''", "assert remove_dirty_chars('1234567890', '1234567890') == ''", "assert remove_dirty_chars('a', '0123') == 'a'", "assert remove_dirty_chars('This is a sample stringsam', 'This is a sample stringsample') == ''", "assert remove_dirty_chars('This is a sample stringsample', 'stringsam') == 'Th ple ple'", "assert remove_dirty_chars('bab cd', 'bdab cd') == ''", "assert remove_dirty_chars('This is a sampThis is a sample stringsamplele stringsample', 'Thish is a sampile string') == ''", "assert remove_dirty_chars('i a', 'i a') == ''", "assert remove_dirty_chars('aa', 'a') == ''", "assert remove_dirty_chars('1234567890', 'This is a sampThis is a sample stringsamplele stringsample') == '1234567890'", "assert remove_dirty_chars('a', 'dog') == 'a'", "assert remove_dirty_chars('i a', 'ia') == ' '", "assert remove_dirty_chars('The quickfox jumps otver the lazy dog', 'fox') == 'The quick jumps tver the lazy dg'", "assert remove_dirty_chars('bdab', 'The quick brown fox jumps over the lazy dog') == ''", "assert remove_dirty_chars('This is a sample stringsample', 'bab cd') == 'Thisissmplestringsmple'", "assert remove_dirty_chars('This is a sasmple string', 'Thiss is a sampring') == 'let'", "assert remove_dirty_chars('The quickfox jumpsg otver the latzy dog', 'The quickfox jumpsg otver the latzy dog') == ''", "assert remove_dirty_chars('This is a sample stringsam', 'stringsam') == 'Th ple '", "assert remove_dirty_chars('The quick brown fox jumps otver the lazy dog', 'The quickfox jumpsg otver the latzy dog') == 'bwn'", "assert remove_dirty_chars('Tthis is a sampile sstring', 'This is a sampile string') == ''", "assert remove_dirty_chars('The quick brown fox jumps otver the lazy dog', 'sampile') == 'Th quck brown fox ju otvr th zy dog'", "assert remove_dirty_chars('Thish is a sampile string', 'This is a sampile string') == ''", "assert remove_dirty_chars('0123', '01234') == ''", "assert remove_dirty_chars('012strin1234567g34', '01234') == 'strin567g'", "assert remove_dirty_chars('aab', 'ab') == ''", "assert remove_dirty_chars('abdog', 'ab') == 'dog'", "assert remove_dirty_chars('stringsamplea', 'a') == 'stringsmple'", "assert remove_dirty_chars('stringsamplea', 'stringsamplea') == ''", "assert remove_dirty_chars('1234567890', 'This is asampThis sampThis is a sample stringsamplele stringsample') == '1234567890'", "assert remove_dirty_chars('The quick brown fox jumps otver the lazy dog', 'foox') == 'The quick brwn jumps tver the lazy dg'", "assert remove_dirty_chars('Thiss is a sampring', 'The quickfox jumpsg otver the latzy dog') == 'n'", "assert remove_dirty_chars('dThis is a sampile stri', 'dThis is a sampile stri') == ''", "assert remove_dirty_chars('ab cd', 'ab cd') == ''", "assert remove_dirty_chars('jumpsg', 'jumpsg') == ''", "assert remove_dirty_chars('fstringsampleaox', 'fox') == 'stringsamplea'", "assert remove_dirty_chars('the', '01234') == 'the'", "assert remove_dirty_chars('bdab cd', '1234567890') == 'bdab cd'", "assert remove_dirty_chars('This is a sample stringsample', 'This is a sample stringsample') == ''", "assert remove_dirty_chars('stri', 'stringsam') == ''", "assert remove_dirty_chars('brownabcd', 'brownabcd') == ''", "assert remove_dirty_chars('This issasmple a sampile string', 'This is a sampile string') == ''", "assert remove_dirty_chars('0123', '0123') == ''", "assert remove_dirty_chars('bdabb cd', '1234567890') == 'bdabb cd'", "assert remove_dirty_chars('over', 'The quickfox jumpsg otver the latzy dog') == ''", "assert remove_dirty_chars('01234', '0134') == '2'", "assert remove_dirty_chars('This is a sasmring', 'This is a sasmple string') == ''", "assert remove_dirty_chars('bdab cd', 'bdab cd') == ''", "assert remove_dirty_chars('ia', 'ia') == ''", "assert remove_dirty_chars('fstrix', 'The quickfox jumps otver the lazy dog') == ''", "assert remove_dirty_chars('aasampThisb', 'ab') == 'smpThis'", "assert remove_dirty_chars('Thiss', 'bab cd') == 'Thiss'", "assert remove_dirty_chars('stri', 'sampile') == 'tr'", "assert remove_dirty_chars('This is a sample strimplae', 'This is a sample stringsample') == ''", "assert remove_dirty_chars('a', 'a') == ''", "assert remove_dirty_chars('bab cd', 'babstringsamplea cd') == ''", "assert remove_dirty_chars('abrownabcd', 'The quickfox jumps otver the lazy dog') == 'bwnb'", "assert remove_dirty_chars('bdabcdab', 'This is a sample strin1234567g') == 'bdbcdb'", "assert remove_dirty_chars('i aThis is a sasmple string', 'This is a sample strin1234567g') == ''", "assert remove_dirty_chars('Thish is a sampile string', 'stringsam') == 'Thh ple '", "assert remove_dirty_chars('bdabb cd', '0123') == 'bdabb cd'", "assert remove_dirty_chars('This is a sampring', 'This is a sample strin1234567g') == ''", "assert remove_dirty_chars('The quick brown fox jumg', 'The quickfox jumpsg otver the latzy dog') == 'bwn'", "assert remove_dirty_chars('This is a sasmple string', 'This is a sample stringsample') == ''", "assert remove_dirty_chars('1234567890', 'fox') == '1234567890'", "assert remove_dirty_chars('foox', 'This is a sample strimplae') == 'foox'", "assert remove_dirty_chars('This is a sasmple sstringstring', 'This is a sasmple sstringstring') == ''", "assert remove_dirty_chars('03134', '0134') == ''", "assert remove_dirty_chars('0123', 'llae') == '0123'", "assert remove_dirty_chars('bdabb cd', '01223') == 'bdabb cd'", "assert remove_dirty_chars('aquickfox', 'dog') == 'aquickfx'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find whether a given array of integers contains any duplicate element.\nassert test_duplicate(([1,2,3,4,5]))==False\nYour code should pass the test:\nassert test_duplicate(([1,2,3,4,5]))==False", "test_list": [ "assert test_duplicate(([1,2,3,4,5]))==False", "assert test_duplicate(([1,2,3,4, 4]))==True", "assert test_duplicate([1,1,2,2,3,3,4,4,5])==True", "assert test_duplicate([2, 5, 1, 4, 3, 6, 7, 8, 9, 10]) == False", "assert test_duplicate([]) == False", "assert test_duplicate([-81, True, False]) == False", "assert test_duplicate([-81, False, True, False]) == True", "assert test_duplicate([2, 5, 1, 4, 3, 3, 6, False, 7, 8, 9, 10, 7]) == True", "assert test_duplicate([False, -81, True, False]) == True", "assert test_duplicate([False, -81, True, True, False, True]) == True", "assert test_duplicate([False, -81, True, True, False, True, True]) == True", "assert test_duplicate([-82, True, False]) == False", "assert test_duplicate([False, -81, True, False, True, True, True]) == True", "assert test_duplicate([5, 1, 4, 3, 6, 7, 8, 9, 10]) == False", "assert test_duplicate([False, True, True, False, True, True]) == True", "assert test_duplicate([-81, False, False]) == True", "assert test_duplicate([2, 5, 1, 6, 4, 3, 6, 7, 8, 9, 10]) == True", "assert test_duplicate([True, True, -81, True, False, True, True, True]) == True", "assert test_duplicate([False, -81, True, False, True, True, True, False]) == True", "assert test_duplicate([True, False, -81, False, True, True, True]) == True", "assert test_duplicate([True, False, False, True, True, True, True]) == True", "assert test_duplicate([2, 5, 1, 4, 3, 3, 6, False, 3, 8, 9, 10, 7]) == True", "assert test_duplicate([False, -81, False, True, True, True, True]) == True", "assert test_duplicate([-81, True, True, False, False]) == True", "assert test_duplicate([False, False, True, True, False, True, True]) == True", "assert test_duplicate([False, False, False]) == True", "assert test_duplicate([False, -81, True, False, True]) == True", "assert test_duplicate([True, False, False, True, True, True, True, True, True]) == True", "assert test_duplicate([True, False, True, True, True, True, True, True]) == True", "assert test_duplicate([True, True, True, -81, True, False, True, True, True]) == True", "assert test_duplicate([2, 5, 1, 4, 3, 6, 7, 9, 10, 10]) == True", "assert test_duplicate([-81, False, False, False, -81]) == True", "assert test_duplicate([True, True, True, -81, True, False, True, True, True, True]) == True", "assert test_duplicate([False, -81, True, False, True, True, True, False, -81, False]) == True", "assert test_duplicate([False, True, False]) == True", "assert test_duplicate([False, 9, False, True, False, True, True, True, False]) == True", "assert test_duplicate([2, 1, 4, 3, 3, 6, False, 7, 8, 9, 10, 7]) == True", "assert test_duplicate([False, -81, True, False, True, True, False, True, False]) == True", "assert test_duplicate([False, False, -81, True, False, True]) == True", "assert test_duplicate([-56, 3, 7, 10, 3, 7]) == True", "assert test_duplicate([-56, 3, -82, 10, 3, 7]) == True", "assert test_duplicate([False, False]) == True", "assert test_duplicate([True, False, False, True, True, True, True, True]) == True", "assert test_duplicate([False, False, -81, True, True, False, True, True]) == True", "assert test_duplicate([-56, 3, -82, 4, 10, 3, 7, 10]) == True", "assert test_duplicate([False, -81, True, False, True, True, True, True]) == True", "assert test_duplicate([2, 5, 1, 4, 3, 1, 7, 9, 10, 10]) == True", "assert test_duplicate([2, 5, 1, 6, 4, 3, 6, 7, 5, 9, 10, 7]) == True", "assert test_duplicate([2, 5, 1, 4, 3, 6, 7, 8, 9, 10, 3]) == True", "assert test_duplicate([-81, False, False, False]) == True", "assert test_duplicate([False, -81, False, True, True, True, True, True]) == True", "assert test_duplicate([-56, 3, 10, -56, 3, 7]) == True", "assert test_duplicate([False, -81, True, True, False, True, True, True, True]) == True", "assert test_duplicate([2, 5, 1, 6, 3, 4, 3, 6, 7, 9, 10, 8]) == True", "assert test_duplicate([False, False, -81, False, False, False, False, True, False]) == True", "assert test_duplicate([True, False, True, False]) == True", "assert test_duplicate([-82, True, False, False, False]) == True", "assert test_duplicate([2, -82, 1, 10, 3, 3, 6, False, 7, 8, 9, 10, 7, 10]) == True", "assert test_duplicate([2, 5, 1, 9, 4, 3, 3, 6, False, 2, 8, 9, 10, 7, 3]) == True", "assert test_duplicate([2, 5, 3, 4, 3, 3, 6, False, 3, 8, 9, 10, 7]) == True", "assert test_duplicate([False, -81, True, False, True, True, False, True, False, False, False]) == True", "assert test_duplicate([2, 5, 1, 9, 4, 3, 3, 6, False, 2, 8, 9, 10, 3]) == True", "assert test_duplicate([2, -82, 1, 10, 4, 3, 6, False, 7, 8, 9, 10, 7, 10]) == True", "assert test_duplicate([False, False, True, False, False, True, True]) == True", "assert test_duplicate([2, 5, 1, False, 3, 4, 3, 6, 7, 9, 10, 8]) == True", "assert test_duplicate([2, 5, 1, 6, 5, 3, 6, 7, 9, 10, 8, 9]) == True", "assert test_duplicate([2, 5, 1, False, 3, 4, 3, 6, 7, 9, 10, 8, 3]) == True", "assert test_duplicate([False, True, False, -81, True, True, False, True, True]) == True", "assert test_duplicate([5, 1, 4, 3, 6, 7, 8, 9, 11]) == False", "assert test_duplicate([False, -81, False]) == True", "assert test_duplicate([False, -81, True, False, True, True, True, False, False, -81]) == True", "assert test_duplicate([False, -81, True, False, True, -81]) == True", "assert test_duplicate([2, 5, 1, 9, 4, 3, 6, False, 2, 8, 9, 10, 7, 3]) == True", "assert test_duplicate([True, -81, True, True, False, True, True, True, True]) == True", "assert test_duplicate([True, False, -81, False, True, True]) == True", "assert test_duplicate([2, 5, 1, 4, 3, 6, 7, 8, 9, 10, 3, 9]) == True", "assert test_duplicate([False, -81, True, False, True, False, True, False]) == True", "assert test_duplicate([False, False, True, False, True]) == True", "assert test_duplicate([2, 1, 3, 3, 6, False, 7, 8, 9, 10, 7]) == True", "assert test_duplicate([False, True, False, True, False, True, False]) == True", "assert test_duplicate([2, 5, 1, 9, 6, 4, 3, 6, 7, 4, 9, 10, 7]) == True", "assert test_duplicate([False, -81, True, False, True, False]) == True", "assert test_duplicate([2, 1, 3, 3, 6, 8, False, 7, 8, 9, 10, 7]) == True", "assert test_duplicate([5, 9, 6, 4, 3, 6, 7, 4, 9, 10, 7]) == True", "assert test_duplicate([-80, False, True, False, True]) == True", "assert test_duplicate([False, False, True, False, True, False]) == True", "assert test_duplicate([5, 1, 4, 3, 6, 7, 8, 9, 11, 3]) == True", "assert test_duplicate([False, -81, True, False, True, True, False, False]) == True", "assert test_duplicate([5, 1, 4, 3, 6, 7, 8, 9, 10, 3, 9, 6]) == True", "assert test_duplicate([5, 1, 4, 3, 6, 7, 5, 9, 10, 7, 8]) == True", "assert test_duplicate([-81, True, False, True, True, False, -81, False]) == True", "assert test_duplicate([-82, True, False, False]) == True", "assert test_duplicate([5, 9, 6, 4, 3, 6, 7, 4, 9, 8, 7]) == True", "assert test_duplicate([True, -81, True, True, False, True, True, True, True, True]) == True", "assert test_duplicate([False, -81, False, True, True, True, True, True, True]) == True", "assert test_duplicate([-56, 3, 7, 10, 11, 3, 7, 3]) == True", "assert test_duplicate([True, False, -81, False, False, False, False, False, True, False]) == True", "assert test_duplicate([2, 1, 3, 3, 6, False, 8, False, 7, 8, 9, 10, 7]) == True", "assert test_duplicate([-82, 7, True, False, False, False]) == True", "assert test_duplicate([10, 2, 5, 1, 4, 3, 3, 6, False, 7, 8, 5, 9, 10, 7]) == True", "assert test_duplicate([False, True, False, True]) == True", "assert test_duplicate([-81, True, False, False, False, -81]) == True", "assert test_duplicate([-81, True, False, True, True, False, True, False, False, False]) == True", "assert test_duplicate([10, 2, 5, 1, False, 3, 3, 6, False, 7, 8, 5, 9, 10, 7]) == True", "assert test_duplicate([False, True, False, False]) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the shared elements from the given two lists.\nassert set(similar_elements((3, 4, 5, 6),(5, 7, 4, 10))) == set((4, 5))\nYour code should pass the test:\nassert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)", "test_list": [ "assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)", "assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)", "assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)", "assert similar_elements((), ()) == ()", "assert similar_elements((1, 2, 3), ()) == ()", "assert similar_elements((), (4, 5, 6)) == ()", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (11, 12, 13, 14, 15, 16, 17, 18, 19, 20)) == ()", "assert similar_elements((1, 2, 2, 3, 3, 4, 4, 5, 5), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9)) == (5,)", "assert similar_elements((100, 200, 300, 400, 500), (100, 200, 400, 500)) == (200, 100, 500, 400)", "assert similar_elements((10, 20, 30, 40, 50), (50, 60, 70, 80)) == (50,)", "assert similar_elements((1, 2, 3, 4, 4, 5, 5), (4, 5, 6)) == (4, 5)", "assert similar_elements((), (True, False, False, False, False, True)) == ()", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 15)) == ()", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (11, 12, 13, 14, 15, 16, 17, 19, 20, 15)) == ()", "assert similar_elements((1, 2, 3, 1), ()) == ()", "assert similar_elements(('kx', 'DHBNiditD'), (4, 5, 6)) == ()", "assert similar_elements((1, 2, 2, 70, 3, 4, 4, 5, 5, 4, 3), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9)) == (5,)", "assert similar_elements((False, False, False, False, True), (False, False, False, False, False)) == (False,)", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert similar_elements((8.514020219858878, -25.802494572247724, 5.873698915603498, 38.044354120134614, 11.222647627029431, 26.914534243589074, 78.41454157921689, -80.88414039955265), ('ceRuVEV', 'aAXslGdbD', 'DHBNiditD', 'fHRtFowQVh', 'ITntCqEvPi', 'SmJpP', 'DHBNiditD', 'kx', 'x')) == ()", "assert similar_elements((False, False, False, False, False), (False, False, False, False, False)) == (False,)", "assert similar_elements((), (5, 6)) == ()", "assert similar_elements((1, 2, 2, 70, 3, 4, 4, 5, 5, 4, 3, 2), (1, 2, 2, 70, 3, 4, 4, 5, 5, 4, 3, 2)) == (1, 2, 3, 4, 5, 70)", "assert similar_elements((1, 2, 3, 4, 5, 6, 12, 7, 8, 9, 0, 10), (1, 3, 4, 5, 6, 7, 8, 9, 0, 10)) == (0, 1, 3, 4, 5, 6, 7, 8, 9, 10)", "assert similar_elements((1, 2, 3, 4, 5, 6, 12, 7, 8, 9, 0, 10, 10), (1, 3, 4, 5, 6, 7, 8, 9, 0, 10)) == (0, 1, 3, 4, 5, 6, 7, 8, 9, 10)", "assert similar_elements((), (True, False, False, False)) == ()", "assert similar_elements((4, 5, 16, 5), (1, 6, 3, 4, 4, 5, 5)) == (4, 5)", "assert similar_elements(('DRwvS', 'FdzAtAvnsS', 'ITntCqEvPi', 'nlUsIhET', 'ITntCqEvPi', 'x'), (True, False, True, False, True, False, True)) == ()", "assert similar_elements((1, 2, 20), ()) == ()", "assert similar_elements((11, 12, 13, 14, 15, 16, 17, 19, 20, 15), (11, 12, 13, 14, 15, 16, 17, 19, 20, 15)) == (11, 12, 13, 14, 15, 16, 17, 19, 20)", "assert similar_elements((1, 2, 3, 4, 5, 6, 12, 7, 8, 9, 0, 10, 10), (300, 1, 3, 4, 5, 6, 7, 8, 9, 0, 9)) == (0, 1, 3, 4, 5, 6, 7, 8, 9)", "assert similar_elements((False, False, False, False, False), (False, False, False, False)) == (False,)", "assert similar_elements((1, 400, 3, 4, 4, 5, 5), (1, 400, 3, 4, 4, 5, 5, 5)) == (1, 3, 4, 5, 400)", "assert similar_elements((), (6,)) == ()", "assert similar_elements((1, 2, 2, 3, 3, 4, 4, 5, 5), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 7)) == (5,)", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 2, 10), (1, 2, 3, 4, 5, 6, 7, 8, 60, 10, 1)) == (1, 2, 3, 4, 5, 6, 7, 8, 10)", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 4, 6, 7, 8, 9, 10)) == (1, 2, 3, 4, 6, 7, 8, 9, 10)", "assert similar_elements((1, 2, 2, 3, 3, 4, 4, 5, 5, 3), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9)) == (5,)", "assert similar_elements((100, 200, 300, 400, 500, 400, 300), (100, 200, 400, 500)) == (200, 100, 500, 400)", "assert similar_elements(('DRwvS', 'ITntCqEvPi', 'tUqF', 'ITntCqEvPi'), (4, 6, 6)) == ()", "assert similar_elements((5, 2, 3), (1, 2, 3)) == (2, 3)", "assert similar_elements((), (500, -45, 96, 22)) == ()", "assert similar_elements((1, 2, 2, 70, 3, 4, 4, 5, 69, 5, 4, 3, 2), (1, 2, 2, 70, 3, 4, 4, 5, 69, 5, 4, 3, 2)) == (1, 2, 3, 4, 5, 70, 69)", "assert similar_elements((5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 7), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9)) == (5, 6, 7, 8, 9)", "assert similar_elements((1, 2, 2, 2, 70, 3, 4, 4, 5, 5, 4, 3), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9)) == (5,)", "assert similar_elements((1, 2, 2, 3, 3, 4, 4, 5, 5, 3), (1, 2, 2, 3, 3, 4, 4, 5, 5, 3)) == (1, 2, 3, 4, 5)", "assert similar_elements(('DRwvS', 'ITntCqEvPi', 'SmJpP', 'tUqF', 'ITntCqEvPi'), (4, 6, 6)) == ()", "assert similar_elements((5, 5, 6, 6, 7, 8, 9, 9), (5, 5, 6, 6, 7, 7, 8, 9, 9)) == (5, 6, 7, 8, 9)", "assert similar_elements((1, 2, 20), (1, 2, 20)) == (1, 2, 20)", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10), (11, 12, 13, 14, 15, 16, 17, 19, 20, 15)) == ()", "assert similar_elements((12, 2, 20), (1, 2, 19)) == (2,)", "assert similar_elements((11, 12, 13, 14, 15, 16, 17, 19, 20, 15), (11, 12, 13, 14, 15, 16, 17, 19, 20, 15, 20)) == (11, 12, 13, 14, 15, 16, 17, 19, 20)", "assert similar_elements((12, 2, 21), (12, 2, 20)) == (2, 12)", "assert similar_elements((1, 2, 3, 5, 6, 12, 7, 8, 9, 10, 10), (1, 2, 3, 4, 5, 6, 12, 7, 8, 12, 0, 10, 10)) == (1, 2, 3, 5, 6, 7, 8, 10, 12)", "assert similar_elements((12, 2, 20, 20), (12, 2, 20)) == (2, 12, 20)", "assert similar_elements((6,), (6,)) == (6,)", "assert similar_elements(('LsgdJOGUO', 'nsDO', 'ceRuVEV', 'BohovaWqz', 'vovSNBB', 'BohovaWqz'), (True, False, False)) == ()", "assert similar_elements(('DRwvS', 'ITntCqEvPi', 'SmJpP', 'DRwvS'), ('DRwvS', 'ITntCqEvPi', 'SmJpP', 'tUqF', 'ITntCqEvPi')) == ('DRwvS', 'SmJpP', 'ITntCqEvPi')", "assert similar_elements((300, 1, 3, 4, 5, 6, 8, 9, 0, 9), (300, 1, 3, 4, 5, 6, 7, 8, 9, 0, 9)) == (0, 1, 3, 4, 5, 6, 8, 9, 300)", "assert similar_elements((False, True, False, True, False, False, True, False, True), (False, True, False, True, False, False, True, False, True)) == (False, True)", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9), (11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 15)) == ()", "assert similar_elements((1, 3, 2, 3), (1, 3, 2, 3)) == (1, 2, 3)", "assert similar_elements((False, False, False, False, False), (False, False, False, False, True, False)) == (False,)", "assert similar_elements(('kx', 'DHBNiditD', 'DHBNiditD'), (4, 5, 6)) == ()", "assert similar_elements((1, 1, 2, 3, 1), ()) == ()", "assert similar_elements((1, 2, 3, 5, 6, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 6, 7, 8, 9, 10)) == (1, 2, 3, 5, 6, 7, 8, 9, 10)", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, -45, 8, 9, 2, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 2, 10)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert similar_elements((26, True, 26.914534243589074, -44), ()) == ()", "assert similar_elements((11, 12, 13, 14, 15, 70, 17, 18, 19, 20, 15), (11, 12, 13, 14, 15, 70, 17, 18, 19, 20, 15)) == (70, 11, 12, 13, 14, 15, 17, 18, 19, 20)", "assert similar_elements((300, 1, 3, 2, 4, 5, 6, 8, 9, 0, 9), (300, 1, 3, 4, 5, 6, 7, 8, 9, 0, 9)) == (0, 1, 3, 4, 5, 6, 8, 9, 300)", "assert similar_elements((100, 201, 300, 400, 500), (100, 200, 300, 400, 500)) == (400, 100, 500, 300)", "assert similar_elements((1, 2, 3, 4, 5, 6, 12, 7, 8, 9, 0, 10, 10), (7, 1, 2, 3, 4, 5, 6, 12, 7, 8, 9, 0, 10, 10)) == (0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 12)", "assert similar_elements((False, True, False, False), (False, False, False, False)) == (False,)", "assert similar_elements((7, 1, 2, 3, 4, 4, 6, 12, 7, 8, 9, 0, 10, 10), (7, 1, 2, 3, 4, 5, 6, 12, 7, 8, 9, 0, 10, 10)) == (0, 1, 2, 3, 4, 6, 7, 8, 9, 10, 12)", "assert similar_elements((4, 16, 5), (4, 5, 16, 5)) == (16, 4, 5)", "assert similar_elements((1, 2, 3, 4, 5, 6, 6, 7, 8, 9, 9), (1, 2, 3, 5, 6, 6, 7, 8, 9, 10)) == (1, 2, 3, 5, 6, 7, 8, 9)", "assert similar_elements((11, 12, 13, 14, 15, 16, 17, 19, 20, 15), (11, 12, 13, 4, 15, 16, 17, 19, 20, 15, 20)) == (11, 12, 13, 15, 16, 17, 19, 20)", "assert similar_elements((7, 7), (6,)) == ()", "assert similar_elements((1, 2, 2, 3, 3, 4, 4, 5, 5, 3, 4), (5, 5, 6, 6, 7, 7, 8, 8, 9, 9)) == (5,)", "assert similar_elements((100, 200, 300, 400, 500, 400, 300), (499, 200, 400, 500)) == (200, 500, 400)", "assert similar_elements((False, False, False, False, False, False), (False, False, False, False, False, False)) == (False,)", "assert similar_elements((), (4, 6, 6)) == ()", "assert similar_elements((4, 5, 6), (4, 4, 5, 6)) == (4, 5, 6)", "assert similar_elements((12, 2, 20, 20, 2), (12, 2, 20, 20)) == (2, 12, 20)", "assert similar_elements((11, 12, 13, 14, 15, 16, 17, 19, 20, 15, 11), (11, 12, 13, 14, 15, 16, 17, 19, 20, 15)) == (11, 12, 13, 14, 15, 16, 17, 19, 20)", "assert similar_elements((16, 1, 2, 3), (1, 2, 3)) == (1, 2, 3)", "assert similar_elements((1, 2, 3, 4, 5, 6, 6, 7, 8, 9, 10), (1, 2, 3, 5, 6, 6, 7, 8, 9, 10)) == (1, 2, 3, 5, 6, 7, 8, 9, 10)", "assert similar_elements((30.445411706111912, 18.10848826924409, 24.97646124690165, -55.873347006206544), (500, -45, 96, 22)) == ()", "assert similar_elements((12, 2, 20), (12, 2, 20, 20)) == (2, 12, 20)", "assert similar_elements((2, 3), (1, 2, 3)) == (2, 3)", "assert similar_elements((1, 3, 2, 3), (1, 3, 3)) == (1, 3)", "assert similar_elements((12, 20), (12, 18, 20)) == (12, 20)", "assert similar_elements((False, False, False, False, False), (False, True, False, False, False, False)) == (False,)", "assert similar_elements((4, 6, 6, 4), (4, 6, 6)) == (4, 6)", "assert similar_elements((1, 1, 2, 3, 4, 5, 6, 7, 8, 9), (11, 15, 12, 13, 14, 15, 16, 17, 18, 19, 20, 16)) == ()", "assert similar_elements((5, 5, 19, 6, 6, 7, 7, 8, 9, 9), (5, 5, 6, 6, 7, 7, 8, 9, 9)) == (5, 6, 7, 8, 9)", "assert similar_elements((5, 19, 5, 16, 5), (1, 6, 3, 4, 4, 5, 5)) == (5,)", "assert similar_elements((-95.16136488545524, 8.514020219858878, -25.802494572247724, 5.873698915603498, 38.044354120134614, 11.222647627029431, 26.914534243589074, 78.41454157921689, -80.88414039955265), ('ceRuVEV', 'aAXslGdbD', 'DHBNiditD', 'fHRtFowQVh', 'ITntCqEvPi', 'SmJpP', 'DHBNiditD', 'kx', 'x')) == ()", "assert similar_elements((100, 200, 300, 400), (100, 200, 300, 400)) == (200, 100, 400, 300)", "assert similar_elements((1, 2, 20, 2), (1, 2, 20)) == (1, 2, 20)", "assert similar_elements((False, False, False, False), (False, True, False, False)) == (False,)", "assert similar_elements((1, 2, 3, 4, 4, 6, 7, 8, 9, 10), (1, 2, 3, 4, 4, 6, 7, 8, 9, 10)) == (1, 2, 3, 4, 6, 7, 8, 9, 10)", "assert similar_elements((False, False, False, False), (False, True, False, False, True)) == (False,)", "assert similar_elements((1, 400, 3, 4, 4, 5, 5, 5, 3), (1, 400, 3, 4, 12, 4, 5, 5, 5, 3)) == (1, 3, 4, 5, 400)", "assert similar_elements(('DRwvS', 'ITntCqEvPi', 'SmJpP', 'tUqF', 'kx', 'tUqF'), ('DRwvS', 'ITntCqEvPi', 'SmJpP', 'tUqF', 'kx', 'tUqF')) == ('SmJpP', 'DRwvS', 'kx', 'ITntCqEvPi', 'tUqF')", "assert similar_elements((1, 2, 3, 5, 6, 12, 7, 8, 9, 0, 10), (1, 3, 4, 5, 6, 7, 8, 9, 0, 10)) == (0, 1, 3, 5, 6, 7, 8, 9, 10)", "assert similar_elements(('DRwvS', 'ITntCqEvPi', 'SmJpP', 'tUqF', 'kx', 'SmITntCqEvPiJpP', 'tUqF'), ('DRwvS', 'ITntCqEvPi', 'SmJpP', 'tUqF', 'kx', 'tUqF')) == ('SmJpP', 'DRwvS', 'kx', 'ITntCqEvPi', 'tUqF')", "assert similar_elements((1, 2, 3, 4, 5, 6, 7, 8, 9), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)) == (1, 2, 3, 4, 5, 6, 7, 8, 9)", "assert similar_elements((11, 12, 13, 14, 15, 26, 16, 17, 19, 20, 15), (11, 12, 13, 14, 15, 16, 17, 19, 20, 15)) == (11, 12, 13, 14, 15, 16, 17, 19, 20)", "assert similar_elements((5, 19, 5, 16, 5, 5), (5, 19, 5, 6, 5)) == (19, 5)", "assert similar_elements((1, 2, 3, 6, 12, 7, 8, 9, 10, 10), (1, 2, 3, 5, 6, 12, 7, 8, 9, 10, 10)) == (1, 2, 3, 6, 7, 8, 9, 10, 12)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if the given number is woodball or not.\nassert is_woodall(383) == True\nYour code should pass the test:\nassert is_woodall(383) == True", "test_list": [ "assert is_woodall(383) == True", "assert is_woodall(254) == False", "assert is_woodall(200) == False", "assert is_woodall(123456789) == False", "assert is_woodall(123456788) == False", "assert is_woodall(123456790) == False", "assert is_woodall(-71) == False", "assert is_woodall(-43.858003490436445) == False", "assert is_woodall(-29.61114685387961) == False", "assert is_woodall(123456791) == False", "assert is_woodall(True) == True", "assert is_woodall(-26.959954047393943) == False", "assert is_woodall(-36.19806730921029) == False", "assert is_woodall(False) == False", "assert is_woodall(123456792) == False", "assert is_woodall(123456793) == False", "assert is_woodall(-29.871125367901588) == False", "assert is_woodall(-29.522652685174876) == False", "assert is_woodall(-28.83173048562741) == False", "assert is_woodall(-36.46340914477242) == False", "assert is_woodall(-21.3952610510801) == False", "assert is_woodall(-54.31098212859848) == False", "assert is_woodall(-29.97825041127243) == False", "assert is_woodall(-69.13149487461008) == False", "assert is_woodall(-69.25331473635698) == False", "assert is_woodall(-30.672425597981977) == False", "assert is_woodall(-70) == False", "assert is_woodall(-31.492472971818966) == False", "assert is_woodall(-23.37512371019188) == False", "assert is_woodall(-26.87584184061303) == False", "assert is_woodall(-68.8018442158572) == False", "assert is_woodall(-72) == False", "assert is_woodall(-68.9582596167829) == False", "assert is_woodall(-38.639304621786174) == False", "assert is_woodall(-36.762574512172826) == False", "assert is_woodall(-29.71114112102485) == False", "assert is_woodall(-29.147181618179903) == False", "assert is_woodall(-45.96312293984687) == False", "assert is_woodall(-62.29011681998471) == False", "assert is_woodall(-102.18510964864885) == False", "assert is_woodall(-37.926042220673814) == False", "assert is_woodall(-21.669838537346024) == False", "assert is_woodall(-58.62219921432578) == False", "assert is_woodall(-49.3200214561046) == False", "assert is_woodall(-20.415110882873073) == False", "assert is_woodall(-70.16424320159742) == False", "assert is_woodall(-40.25945493003661) == False", "assert is_woodall(-70.28083008878951) == False", "assert is_woodall(-29.42426596564329) == False", "assert is_woodall(-36.42835541123631) == False", "assert is_woodall(-68.24706572951847) == False", "assert is_woodall(-69.41855382525948) == False", "assert is_woodall(-14.166058474029754) == False", "assert is_woodall(-62.72457764448362) == False", "assert is_woodall(-67.51407654646718) == False", "assert is_woodall(-43.87699809663642) == False", "assert is_woodall(-20.51986489168823) == False", "assert is_woodall(-15.085356836638901) == False", "assert is_woodall(-67.0567942382996) == False", "assert is_woodall(-19.580182972529585) == False", "assert is_woodall(-39.15390942077779) == False", "assert is_woodall(-35.784031914737916) == False", "assert is_woodall(-60.94797432645206) == False", "assert is_woodall(-30.593131467080347) == False", "assert is_woodall(-28.30344245006401) == False", "assert is_woodall(-29.774227963592523) == False", "assert is_woodall(88.42189273276318) == False", "assert is_woodall(123456794) == False", "assert is_woodall(-31.744787544004495) == False", "assert is_woodall(-68.40811941759871) == False", "assert is_woodall(-56.99871844685891) == False", "assert is_woodall(92.98004923674453) == False", "assert is_woodall(-29.38824771469962) == False", "assert is_woodall(-28.112821077251972) == False", "assert is_woodall(-59.66653455441657) == False", "assert is_woodall(-28.408958976827417) == False", "assert is_woodall(-34.246016042728264) == False", "assert is_woodall(-37.459933039490544) == False", "assert is_woodall(-69.08278583390873) == False", "assert is_woodall(-31.39943780262713) == False", "assert is_woodall(-27.08300242071865) == False", "assert is_woodall(-32.23443641065063) == False", "assert is_woodall(-16.35377974137643) == False", "assert is_woodall(-34.49166282951802) == False", "assert is_woodall(-80.04075575777426) == False", "assert is_woodall(-15.990708397802807) == False", "assert is_woodall(-37.17075988866512) == False", "assert is_woodall(-12.266024087946377) == False", "assert is_woodall(-42.995821326318705) == False", "assert is_woodall(-36.571652101601906) == False", "assert is_woodall(-36.40347054615233) == False", "assert is_woodall(-70.43269469508628) == False", "assert is_woodall(-28.726570985744708) == False", "assert is_woodall(-14.941982364755784) == False", "assert is_woodall(-26.521563448513206) == False", "assert is_woodall(-52.0451679843239) == False", "assert is_woodall(-41.16822642698813) == False", "assert is_woodall(-27.427877745731756) == False", "assert is_woodall(93.65722410276985) == False", "assert is_woodall(-61.5774096007493) == False", "assert is_woodall(-32.14674769877757) == False", "assert is_woodall(-21.464380924877055) == False", "assert is_woodall(-67.55449156821463) == False", "assert is_woodall(91.99125730826226) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if all the elements in tuple have same data type or not.\nassert check_type((5, 6, 7, 3, 5, 6) ) == True\nYour code should pass the test:\nassert check_type((5, 6, 7, 3, 5, 6) ) == True", "test_list": [ "assert check_type((5, 6, 7, 3, 5, 6) ) == True", "assert check_type((1, 2, \"4\") ) == False", "assert check_type((3, 2, 1, 4, 5) ) == True", "assert check_type((5.5, 7.3, 9.2, 3.1, 6.4)) == True", "assert check_type(('apple', 'banana', 'cherry', 'date')) == True", "assert check_type(([1, 2, 3], [4, 5, 6], [7, 8, 9])) == True", "assert check_type(({'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob', 'age': 35})) == True", "assert check_type(([1, 2], [3, 4], [5, 6])) == True", "assert check_type((True, False, False, True)) == True", "assert check_type((1, 'apple', [3, 4], {'name': 'John'})) == False", "assert check_type(([[1, 2], [3]], [[4, 5], [6]], [[7, 8], [9]])) == True", "assert check_type(([{'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob', 'age': 35}], [{'name': 'Alice', 'age': 28}, {'name': 'Eve', 'age': 22}])) == True", "assert check_type((['red', 'green', 'blue'], ['purple', 'orange', 'yellow'])) == True", "assert check_type(([[1, 2, 3], [4, 5, 6], [8, 9, 7]], [[10, 11, 12], [13, 14, 15]])) == True", "assert check_type(([], [1, 2, '3'], {'1': 'one', '2': 'two', '3': 'three'})) == False", "assert check_type(([], {'1': [1, 2, 3], '2': [4, 5, 6]}, [{'a': 1, 'b': 2}, {'c': 3, 'd': 4}])) == False", "assert check_type(([[1, 2, 3], [4, 5, 6], [8, 9, 7]], {'10': [10, 20, 30], '11': [40, 50, 60]}, [[1, 2, 3], [4, 5, 6]])) == False", "assert check_type(([1, 2, 3], {'a': 'apple', 'b': 'banana', 'c': 'cherry'}, [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']])) == False", "assert check_type(([['b', 'a'], ['c', 'd']], [1, 2, 3], [4, 5, 6], [[[1], [2], [3]], [[4], [5], [6]]])) == True", "assert check_type(({'1': 'one'}, {'2': 'two'}, {'3': 'three'})) == True", "assert check_type(([1, 2, 'apple'], [3.14, 'banana', 'cherry'], ['date', 20, True])) == True", "assert check_type(([[1, 2], [3.14, 'banana'], ['c', 'b', 'a']], [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']])) == True", "assert check_type(({'1': 'apple', '2': 'banana', '3': 'cherry'}, {'4': [10, 20, 30], '5': [40, '50', 60]}, [[1, 2, 3], [4, 5, 6]])) == False", "assert check_type(([[], [], []], [[], [], []])) == True", "assert check_type(([[[], []], [[], []]], [[[[], []], [[], []]], [[[], []], [[], []]]])) == True", "assert check_type(([{'1': True, '2': False}, {'3': True, '4': True}], [{'5': False, '6': False}, {'7': False, '8': False}])) == True", "assert check_type(([{'9': [1, 2, 3], '10': [4, 5, 6]}, {'11': [7, 8, 9], '12': [10, 11, 12]}], [{'13': [13, 14, 15], '14': [16, 17, 18]}, {'19': [19, 20, 21], '20': [22, 23, 24]}])) == True", "assert check_type((1, 'apple')) == False", "assert check_type((4.0, 5.0, 6.0)) == True", "assert check_type((1, 'apple', True, [1, 2, 3], {'a': 1, 'b': 2})) == False", "assert check_type((1.5, 'banana', [1, 2, 3], {'a': 1, 'b': 2}, ['apple', 'banana'])) == False", "assert check_type(('dattwo', 'apple', 'banana', 'cherry', 'date')) == True", "assert check_type(([{'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob', 'age': 35}, {'name': 'Jane', 'age': 30}], [{'name': 'Alice', 'age': 28}, {'name': 'Eve', 'age': 22}], [{'name': 'Alice', 'age': 28}, {'name': 'Eve', 'age': 22}])) == True", "assert check_type(([[60, 1, 2], [3.14, 'banana'], ['c', 'b', 'a']], [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']])) == True", "assert check_type(([], [1, 2, '3'])) == True", "assert check_type(('chercry', 'dattwo', 'apple', 'banana', 'cherry', 'date')) == True", "assert check_type(('apple', 'banana', 'cherry', 'ccherry', 'date')) == True", "assert check_type(([], {})) == False", "assert check_type((30, [3, 4], {'name': 'John'})) == False", "assert check_type(({'1': 'apple', '2': 'banana', '3': 'cherry', '11': 'pple'}, {'4': [10, 20, 30], '5': [40, '50', 60]}, [[1, 2, 3], [4, 5, 6]])) == False", "assert check_type(({'name': 'John', 'age': 25}, {'age': 30}, {'name': 'Bob', 'age': 35})) == True", "assert check_type((True, True, False, True, False, True, False)) == True", "assert check_type(('chercry', 'dattwo', 'apple', 'banana', 'cherry', 'date', 'banana')) == True", "assert check_type((1, 'green', 1)) == False", "assert check_type((2, 1, 'apple', 1, 1)) == False", "assert check_type((1, 'apple', False, True, [1, 2, 3], {'a': 1, 'b': 2})) == False", "assert check_type(({'1': 'apple', '2': 'banana', '3': 'cherry', '11': 'pple'}, [[1, 2, 3]], {'4': [10, 20, 30], '5': [40, '50', 60]}, [[1, 2, 3]])) == False", "assert check_type(('dattwo', 'apple', 'banana', 'cherry', 'date', 'banana')) == True", "assert check_type(({'1': 'apple', '2': 'banana', '3': 'cherry', '11': 'pplJanee'}, {'4': [10, 20, 30], '5': [40, '50', 60]}, [[1, 2, 3], [4, 5, 6]])) == False", "assert check_type(([[1, 2], [3]], [[4, 5], [6]], [[7, 8], [9]], [[4, 5], [6]])) == True", "assert check_type((True, True, False, True, False, True, False, False)) == True", "assert check_type(([[], [], []], [[], [], []], [[], [], []])) == True", "assert check_type((1, 'green', 1, 1)) == False", "assert check_type(({'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob'}, {'name': 'Bob'})) == True", "assert check_type(([{'1': True, '2': False}, {'3': True, '4': True}], [{'1': True, '2': False}, {'3': True, '4': True}])) == True", "assert check_type(('apple', 'banana', 'ccherrry', 'cherry', 'ccherry', 'date')) == True", "assert check_type(([[1, 2, 3]],)) == True", "assert check_type(([{'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob', 'age': 35}], [{'name': 'Alice', 'age': 28, 'agge': 'Aliredce'}, {'name': 'Eve', 'age': 22}], [{'name': 'Alice', 'age': 28, 'agge': 'Aliredce'}, {'name': 'Eve', 'age': 22}])) == True", "assert check_type(([1, 2], [3, 4], [5, 6], [5, 6])) == True", "assert check_type(([{'1': True, '2': False}, {'3': True, '4': True}], [{'1': True, '2': False}, {'3': True, '4': True}], [{'5': False, '6': False}, {'7': False, '8': False}])) == True", "assert check_type(([], {'20': -27.237212019107332, '41': 7.3, '-10': 5.5, '9': 3.1, '96': 4.0, '25': 5.0})) == False", "assert check_type(([[1, 2], [3]], [[1, 2], [3]], [[4, 5], [6]], [[7, 8], [9], [9]], [[7, 8], [9]])) == True", "assert check_type(([{'1': False, '2': False}, {'1': False, '2': False}, {'3': True, '4': True}], [{'5': False, '6': False}, {'7': False}], [{'5': False, '6': False}, {'7': False}], [{'1': False, '2': False}, {'1': False, '2': False}, {'3': True, '4': True}], [{'1': False, '2': False}, {'1': False, '2': False}, {'3': True, '4': True}])) == True", "assert check_type(([],)) == True", "assert check_type(([],)) == True", "assert check_type(([{'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob', 'age': 35}], [{'name': 'Alice', 'age': 28, 'agge': 'Aliredce', '3': 'c'}, {'name': 'Alice', 'age': 28, 'agge': 'Aliredce', '3': 'c'}, {'name': 'Eve', 'age': 22}], [{'name': 'Alice', 'age': 28, 'agge': 'Aliredce', '3': 'c'}, {'name': 'Alice', 'age': 28, 'agge': 'Aliredce', '3': 'c'}, {'name': 'Eve', 'age': 22}], [{'name': 'Alice', 'age': 28, 'agge': 'Aliredce', '3': 'c'}, {'name': 'Alice', 'age': 28, 'agge': 'Aliredce', '3': 'c'}, {'name': 'Eve', 'age': 22}])) == True", "assert check_type(([{'3': True}, {'3': True}], [{'3': True}, {'3': True}], [{'3': True}, {'3': True}], [{'3': True}, {'3': True}], [{'3': True}, {'3': True}])) == True", "assert check_type(({'1': 'one'}, {'2': 'two'}, {'3': 'three', '20': 'Alice'}, {'3': 'three', '20': 'Alice'})) == True", "assert check_type(('banana', 'ccherrry', 'cherry', 'ccherry', 'date')) == True", "assert check_type(({'name': 'John', 'age': 25}, {'name': 'Jnane', 'age': 30}, {'name': 'Jnane', 'age': 30}, {'name': 'Bob', 'age': 35})) == True", "assert check_type(([[], [], []],)) == True", "assert check_type(([], {}, [])) == False", "assert check_type(([['b', 'a'], ['c', 'd'], ['b', 'a']], [1, 2, 3], [4, 5, 6, 5], [[[1], [2], [3]], [[4], [5], [6]]])) == True", "assert check_type(([1, 2, 3], {'a': 'apple', 'b': 'banana', 'c': 'cherry'}, [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']], [1, 2, 3])) == False", "assert check_type(([{'3': True}], [{'3': True}], [{'3': True}], [{'3': True}], [{'3': True}])) == True", "assert check_type(({'name': '3John', 'age': 25}, {'age': 17}, {'age': 17}, {'age': 17}, {'name': 'Bob', 'age': 35})) == True", "assert check_type((False, True, False, True, False, True, False)) == True", "assert check_type(([{'1': True, '2': False}, {'3': True, '4': True}], [{'1': True, '2': False}, {'3': True, '4': True}], [{'5': False, '6': False}, {'7': False, '8': False}], [{'1': True, '2': False}, {'3': True, '4': True}])) == True", "assert check_type((1.5, 'banana', [1, 2, 3], {'b': 2}, ['apple', 'banana'])) == False", "assert check_type(([{'1': False, '2': False}, {'1': False, '2': False}], [{'5': False, '6': False}, {'7': False}], [{'5': False, '6': False}, {'7': False}], [{'1': False, '2': False}, {'1': False, '2': False}], [{'1': False, '2': False}, {'1': False, '2': False}], [{'1': False, '2': False}, {'1': False, '2': False}], [{'5': False, '6': False}, {'7': False}])) == True", "assert check_type(({'32': 'P', '6': '3John', '96': 'apple', '50': 'oIZ', '9': 'Alice', '-60': 'Jane'}, [], {})) == False", "assert check_type(([2, 3, 4, 4], {'name': 'John'})) == False", "assert check_type((2, 1, 1, 1)) == True", "assert check_type(([['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []], [['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []], [[], [], []])) == True", "assert check_type(('apple', 'banana', 'cherry', 'cherry', 'date')) == True", "assert check_type(('chercry', 'dattwo', 'apple', 'banana', 'cherry')) == True", "assert check_type(([1, 2, '3', '3'], [], [1, 2, '3'], [93.91696605104102, 9.2, -41.18839790246442, 7.3], {'1': 'one', '2': 'two', '3': 'three'})) == False", "assert check_type(([['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []], [['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []], [[], [], []], [['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []])) == True", "assert check_type((2, 'green', 1, 1)) == False", "assert check_type(([[60, 1, 2], ['c', 'b', 'a']], [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']], [[60, 1, 2], ['c', 'b', 'a']], [[60, 1, 2], ['c', 'b', 'a']])) == True", "assert check_type((30, [3, False, 4], {})) == False", "assert check_type((1, 1, 'gnamereen', 1, 1, 1, 1, 1)) == False", "assert check_type(({'1': 'one', '2': 'two', '3': 'tbhree', '25': 'c'}, {'1': 'one', '2': 'two', '3': 'tbhree', '25': 'c'}, [], [1, 2, '3'], {'1': 'one', '2': 'two', '3': 'tbhree', '25': 'c'})) == False", "assert check_type(([[1, 2, 3], [4, 5, 6], [8, 9, 7]], {'10': [10, 20, 30], '11': [40, 50, 60]}, [[1, 2, 3], [4, 5, 6]], [[1, 2, 3], [4, 5, 6]])) == False", "assert check_type(([{'3': True}, {'3': True}], [{'3': True}, {'3': True}], [{'3': True}, {'3': True}], [{'3': True}, {'3': True}])) == True", "assert check_type((1, 'green', 1, 1, 1)) == False", "assert check_type((1.5, 'banana', [1, 2, 3], {'b': 2}, ['apple', 'banana'], {'b': 2})) == False", "assert check_type(([[3.14, 'banana'], ['c', 'b', 'a']], [[3.14, 'banana'], ['c', 'b', 'a']])) == True", "assert check_type((2, 'green', 1, 'Aliredce', 1, 'Aliredce')) == False", "assert check_type(('chercry', 'dattwo', 'apple', 'banana', 'cherry', 'cherry', 'dattwo')) == True", "assert check_type(([1, 1, 3], {'a': 'apple', 'b': 'banana', 'c': 'cherry'}, [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']])) == False", "assert check_type((1, 'apple', False, True, [17, 1, 2, 3], [17, 1, 2, 3], {'a': 1, 'b': 2})) == False", "assert check_type(([{}], [{}], [{}], [{}], [{}], [{}])) == True", "assert check_type(([{'1': True, '2': False}, {'3': True, '4': True}], [{'1': True, '2': False}, {'3': True, '4': True}], [{'7': False, '8': False}], [{'1': True, '2': False}, {'3': True, '4': True}])) == True", "assert check_type(([True, 26, 8.278263346367723, 'Jane', 'XRuBLHNn', False, -80], [])) == True", "assert check_type((['tbhree', 'vDRltNQ', 'pplJanee', 'cherry'], {})) == False", "assert check_type(([{'1': False}, {'1': False}, {'1': False}, {'3': True, '4': True}], [{'5': False, '6': False}, {'7': False}], [{'5': False, '6': False}, {'7': False}], [{'1': False}, {'1': False}, {'1': False}, {'3': True, '4': True}], [{'1': False}, {'1': False}, {'1': False}, {'3': True, '4': True}])) == True", "assert check_type(([['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []], [['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []], [[3.1, 93.91696605104102, -9.674549136974946, 9.2, 4.0, 1.5, -41.18839790246442, 11.974815865245986], [], [], []], [['d', 'TdZQiyPXDo', 'c', 'two', 'LYbdegAC', 'm', 'one', 'Jane', 'lOgg'], [], [], []])) == True", "assert check_type((['green', 'blue'], ['purple', 'orange', 'yellow'])) == True", "assert check_type(([[1, 2], [3]], [[1, 2], [3]], [[4, 5], [6]], [[7, 8], [9], [9]], [[7, 8], [9]], [[1, 2], [3]])) == True", "assert check_type((19, 'green', 1, 1, 1)) == False", "assert check_type(([[], [], []], [[], []])) == True", "assert check_type(({'name': 'Bob'}, {'name': 'John', 'age': 25}, {'name': 'Jane', 'age': 30}, {'name': 'Bob'})) == True", "assert check_type(('dattwo', 'apple', 'baapplenana', 'cherry', 'date')) == True", "assert check_type(([[], [], [-74.25370956493562, -12.399945640410806, 8.278263346367723, -9.674549136974946, -89.51696270839595, 4.0, 6.4, -98.76694370423638, 5.0], []], [[], [], [-74.25370956493562, -12.399945640410806, 8.278263346367723, -9.674549136974946, -89.51696270839595, 4.0, 6.4, -98.76694370423638, 5.0], []], [[], [], [-74.25370956493562, -12.399945640410806, 8.278263346367723, -9.674549136974946, -89.51696270839595, 4.0, 6.4, -98.76694370423638, 5.0], []])) == True", "assert check_type(([[], [], [], []], [[], []])) == True", "assert check_type(([[4, 5, 6]], {'1': 'apple', '2': 'banana', '3': 'cherry', '11': 'pplJanee'}, {'4': [10, 20, 30], '5': [40, '50', 60]}, [[4, 5, 6]])) == False", "assert check_type(({'1': 'apple', '2': 'banana', '3': 'cherry', '11': 'pple'}, [[1, 2, 3], [1, 2, 3], [1, 2, 3]], {'4': [10, 20, 30], '5': [40, '50', 60]}, [[1, 2, 3], [1, 2, 3], [1, 2, 3]])) == False", "assert check_type(('dattwo', 'apple', 'banana', 'd', 'cherry', 'date')) == True", "assert check_type(('apple', 'apple')) == True", "assert check_type(([['b', 'a'], ['c', 'd']], [4, 5, 6], [[[1], [2], [3]], [[4], [5], [6]]])) == True", "assert check_type(([1, 2, '3'],)) == True", "assert check_type(([2, 3, 4, 4, 2], [2, 3, 4, 4, 2], [2, 3, 4, 4, 2], [2, 3, 4, 4, 2])) == True", "assert check_type(('chercry', 'dattwo', 'applae', 'banana', 'cherry', 'cherry', 'dattwo')) == True", "assert check_type(({'1': 'one'}, {'2': 'two'}, {'3': 'three', '20': 'Alice'})) == True", "assert check_type(([[1, 2], [3]], [[1, 2], [3]], [[4, 5], [6]], [[7, 8], [9], [9]], [[7, 8], [9]], [[4, 5], [6]])) == True", "assert check_type(([[60, 1, 2]], [[60, 1, 2]], [['red', 'green', 'blue'], ['purple', 'yellow', 'orange']], [[60, 1, 2]], [[60, 1, 2]], [[60, 1, 2]])) == True", "assert check_type(('apple', [3, 4], {'name': 'John'})) == False", "assert check_type(([[1, 2], [3]], [[7, 8], [9], [9]], [[7, 8], [9]])) == True", "assert check_type((1.5, 'banana', [1, 2, 3], {'b': 2}, ['apple', 'banana'], {'b': 2}, 1.5)) == False", "assert check_type((0, 'apple')) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a sorted array, its length (n), and an element and returns whether the element is the majority element in the given sorted array. (The majority element is the element that occurs more than n/2 times.)\nassert is_majority([1, 2, 3, 3, 3, 3, 10], 7, 3) == True\nYour code should pass the test:\nassert is_majority([1, 2, 3, 3, 3, 3, 10], 7, 3) == True", "test_list": [ "assert is_majority([1, 2, 3, 3, 3, 3, 10], 7, 3) == True", "assert is_majority([1, 1, 2, 4, 4, 4, 6, 6], 8, 4) == False", "assert is_majority([1, 1, 1, 2, 2], 5, 1) == True", "assert is_majority([], 0, 1) == False", "assert is_majority([], 1, 0) == False", "assert is_majority([], 1, 1) == False", "assert is_majority([], 0, 0) == False", "assert is_majority([], 0, -1) == False", "assert is_majority([True], 1, 2) == False", "assert is_majority([], 2, 0) == False", "assert is_majority([], 2, -1) == False", "assert is_majority([], 2, 2) == False", "assert is_majority([], 1, 2) == False", "assert is_majority([], 2, 1) == False", "assert is_majority([], 0, 2) == False", "assert is_majority([52], 2, 0) == False", "assert is_majority([], 1, -1) == False", "assert is_majority([52], 2, 2) == False", "assert is_majority([], 3, 2) == False", "assert is_majority([], 52, 2) == False", "assert is_majority([], 53, 2) == False", "assert is_majority([], 52, 1) == False", "assert is_majority([], 52, 53) == False", "assert is_majority([True], 2, 2) == False", "assert is_majority([52], 3, 2) == False", "assert is_majority([], 52, 52) == False", "assert is_majority([], 53, 53) == False", "assert is_majority([], 52, -1) == False", "assert is_majority([], 3, 0) == False", "assert is_majority([], 53, 3) == False", "assert is_majority([], 52, 0) == False", "assert is_majority([], 2, 53) == False", "assert is_majority([52, 52], 3, 2) == False", "assert is_majority([52, 52], 4, 2) == False", "assert is_majority([52], 3, 0) == False", "assert is_majority([], 4, 1) == False", "assert is_majority([52, 52, 52], 52, 2) == False", "assert is_majority([52, 52], 53, 53) == False", "assert is_majority([52, 52, 52, 52], 52, 2) == False", "assert is_majority([52, 52, 52], 53, 53) == False", "assert is_majority([52], 2, 1) == False", "assert is_majority([52, 52], 2, -1) == False", "assert is_majority([], 52, 4) == False", "assert is_majority([], 3, -1) == False", "assert is_majority([52], 53, 53) == False", "assert is_majority([28.804254987535558], 3, 3) == False", "assert is_majority([], 4, -1) == False", "assert is_majority([], 3, 3) == False", "assert is_majority([52, 52, 52], 52, 3) == False", "assert is_majority([], 4, 4) == False", "assert is_majority([53], 3, 3) == False", "assert is_majority([], 4, 53) == False", "assert is_majority([28.804254987535558], 53, 2) == False", "assert is_majority([28.804254987535558], 4, 2) == False", "assert is_majority([True], 52, 2) == False", "assert is_majority([True], 53, 2) == False", "assert is_majority([28.804254987535558], 4, 3) == False", "assert is_majority([], 54, 53) == False", "assert is_majority([25.39355163010451], 54, 3) == False", "assert is_majority([], 2, 3) == False", "assert is_majority([True], 2, 0) == False", "assert is_majority([True], 54, 0) == False", "assert is_majority([52, 52], 52, 53) == False", "assert is_majority([52], 1, 4) == False", "assert is_majority([], 54, -1) == False", "assert is_majority([52, 52], 53, 2) == False", "assert is_majority([53], 3, 2) == False", "assert is_majority([], 54, 2) == False", "assert is_majority([], 4, 2) == False", "assert is_majority([25.39355163010451], 3, 3) == False", "assert is_majority([], 3, 53) == False", "assert is_majority([53], 4, 3) == False", "assert is_majority([True], 2, 3) == False", "assert is_majority([28.804254987535558, 28.804254987535558], 4, 3) == False", "assert is_majority([True, True], 53, 52) == False", "assert is_majority([], 53, 52) == False", "assert is_majority([True, True], 4, 4) == False", "assert is_majority([True, True], 3, 4) == False", "assert is_majority([52], 1, 2) == False", "assert is_majority([False, False, True], 52, 52) == False", "assert is_majority([28.804254987535558, 28.804254987535558], 2, 4) == False", "assert is_majority([52, 52, 52, 52], 52, 1) == False", "assert is_majority([51, 52, 52], 52, 53) == False", "assert is_majority([28.804254987535558], 5, 2) == False", "assert is_majority([52, 52, 52, 52], 52, 0) == False", "assert is_majority([], 3, 4) == False", "assert is_majority([True], 52, 53) == False", "assert is_majority([True, True, True], 53, 2) == False", "assert is_majority([True, True, True], 4, 4) == False", "assert is_majority([True, True], 54, 0) == False", "assert is_majority([52, 52, 52], 51, 51) == False", "assert is_majority([28.804254987535558, 28.804254987535558], 53, 2) == False", "assert is_majority([True], 2, 4) == False", "assert is_majority([23.860250214479723], 52, 2) == False", "assert is_majority([28.804254987535558], 5, 1) == False", "assert is_majority([True], 54, 4) == False", "assert is_majority([52], 3, 3) == False", "assert is_majority([28.804254987535558], 5, 3) == False", "assert is_majority([28.804254987535558, 28.804254987535558], 53, 53) == False", "assert is_majority([52, 52], 53, 54) == False", "assert is_majority([52, 52], 52, 54) == False", "assert is_majority([52], 4, 3) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of set bits (binary digits with value 1) in a given number.\nassert count_Set_Bits(2) == 1\nYour code should pass the test:\nassert count_Set_Bits(2) == 1", "test_list": [ "assert count_Set_Bits(2) == 1", "assert count_Set_Bits(4) == 1", "assert count_Set_Bits(6) == 2", "assert count_Set_Bits(999999999) == 21", "assert count_Set_Bits(1000000000) == 13", "assert count_Set_Bits(True) == 1", "assert count_Set_Bits(False) == 0", "assert count_Set_Bits(1000000001) == 14", "assert count_Set_Bits(999999998) == 20", "assert count_Set_Bits(67) == 3", "assert count_Set_Bits(999999997) == 20", "assert count_Set_Bits(999999996) == 19", "assert count_Set_Bits(1000000002) == 14", "assert count_Set_Bits(1000000003) == 15", "assert count_Set_Bits(66) == 2", "assert count_Set_Bits(999999995) == 20", "assert count_Set_Bits(65) == 2", "assert count_Set_Bits(999999994) == 19", "assert count_Set_Bits(68) == 2", "assert count_Set_Bits(69) == 3", "assert count_Set_Bits(71) == 4", "assert count_Set_Bits(72) == 2", "assert count_Set_Bits(999999993) == 19", "assert count_Set_Bits(1000000004) == 14", "assert count_Set_Bits(1) == 1", "assert count_Set_Bits(2) == 1", "assert count_Set_Bits(73) == 3", "assert count_Set_Bits(70) == 3", "assert count_Set_Bits(64) == 1", "assert count_Set_Bits(1000000005) == 15", "assert count_Set_Bits(74) == 3", "assert count_Set_Bits(98) == 3", "assert count_Set_Bits(63) == 6", "assert count_Set_Bits(0) == 0", "assert count_Set_Bits(999999992) == 18", "assert count_Set_Bits(1000000006) == 15", "assert count_Set_Bits(3) == 2", "assert count_Set_Bits(61) == 5", "assert count_Set_Bits(62) == 5", "assert count_Set_Bits(97) == 3", "assert count_Set_Bits(999999991) == 20", "assert count_Set_Bits(75) == 4", "assert count_Set_Bits(4) == 1", "assert count_Set_Bits(11) == 3", "assert count_Set_Bits(95) == 6", "assert count_Set_Bits(1000000007) == 16", "assert count_Set_Bits(94) == 5", "assert count_Set_Bits(93) == 5", "assert count_Set_Bits(96) == 2", "assert count_Set_Bits(92) == 4", "assert count_Set_Bits(76) == 3", "assert count_Set_Bits(12) == 2", "assert count_Set_Bits(77) == 4", "assert count_Set_Bits(9) == 2", "assert count_Set_Bits(44) == 3", "assert count_Set_Bits(13) == 3", "assert count_Set_Bits(10) == 2", "assert count_Set_Bits(1000000008) == 14", "assert count_Set_Bits(14) == 3", "assert count_Set_Bits(91) == 5", "assert count_Set_Bits(78) == 4", "assert count_Set_Bits(79) == 5", "assert count_Set_Bits(59) == 5", "assert count_Set_Bits(99) == 4", "assert count_Set_Bits(80) == 2", "assert count_Set_Bits(90) == 4", "assert count_Set_Bits(999999990) == 19", "assert count_Set_Bits(85) == 4", "assert count_Set_Bits(60) == 4", "assert count_Set_Bits(57) == 4", "assert count_Set_Bits(1000000009) == 15", "assert count_Set_Bits(58) == 4", "assert count_Set_Bits(84) == 3", "assert count_Set_Bits(100) == 3", "assert count_Set_Bits(43) == 4", "assert count_Set_Bits(101) == 4", "assert count_Set_Bits(48) == 2", "assert count_Set_Bits(6) == 2", "assert count_Set_Bits(23) == 4", "assert count_Set_Bits(1000000010) == 15", "assert count_Set_Bits(56) == 3", "assert count_Set_Bits(86) == 4", "assert count_Set_Bits(55) == 5", "assert count_Set_Bits(102) == 4", "assert count_Set_Bits(5) == 2", "assert count_Set_Bits(53) == 4", "assert count_Set_Bits(46) == 4", "assert count_Set_Bits(81) == 3", "assert count_Set_Bits(47) == 5", "assert count_Set_Bits(52) == 3", "assert count_Set_Bits(49) == 3", "assert count_Set_Bits(54) == 4", "assert count_Set_Bits(83) == 4", "assert count_Set_Bits(45) == 4", "assert count_Set_Bits(16) == 1", "assert count_Set_Bits(50) == 3", "assert count_Set_Bits(30) == 4", "assert count_Set_Bits(28) == 3", "assert count_Set_Bits(82) == 3", "assert count_Set_Bits(42) == 3", "assert count_Set_Bits(33) == 2", "assert count_Set_Bits(17) == 2", "assert count_Set_Bits(31) == 5", "assert count_Set_Bits(41) == 3", "assert count_Set_Bits(51) == 4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to remove the characters which have odd index values of a given string.\nassert odd_values_string('abcdef') == 'ace'\nYour code should pass the test:\nassert odd_values_string('abcdef') == 'ace'", "test_list": [ "assert odd_values_string('abcdef') == 'ace'", "assert odd_values_string('python') == 'pto'", "assert odd_values_string('data') == 'dt'", "assert odd_values_string('lambs') == 'lms'", "assert odd_values_string('') == ''", "assert odd_values_string('abcdefghijklmnopqrstuvwxyz') == 'acegikmoqsuwy'", "assert odd_values_string('bbbbbbbb') == 'bbbb'", "assert odd_values_string('abcdijklmnopqrstuvwxyz') == 'acikmoqsuwy'", "assert odd_values_string('ZD') == 'Z'", "assert odd_values_string('ZZD') == 'ZD'", "assert odd_values_string('abcdefghiZDjklmnopqrstuvwxyz') == 'acegiDkmoqsuwy'", "assert odd_values_string('babcdefghijklmnopqrstuvwxyzbbbbbbb') == 'bbdfhjlnprtvxzbbb'", "assert odd_values_string('bbbbbbbbb') == 'bbbbb'", "assert odd_values_string('abcdefghbbbbbbbbbijklabcdijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjlbdjlnprtvxznprtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabcdijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjkacikmoqsuwymoqsuwy'", "assert odd_values_string('abcdijkljmnopqrstuvwxyz') == 'acikjnprtvxz'", "assert odd_values_string('bbbbbbbbbZZD') == 'bbbbbZ'", "assert odd_values_string('abcdlefghijklmnopqrstuvwxyz') == 'aclfhjlnprtvxz'", "assert odd_values_string('abcdlmnopqrstuvwxyz') == 'aclnprtvxz'", "assert odd_values_string('babcdefghijklmnopqrstuvwxyzbbbbbbbb') == 'bbdfhjlnprtvxzbbbb'", "assert odd_values_string('bbbbbbbbbbb') == 'bbbbbb'", "assert odd_values_string('abcdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjlbdikmoqsuwymoqsuwy'", "assert odd_values_string('abcdefghijkqrstuvwxyz') == 'acegikrtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabcdijklmnopqrbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjkacikmoqbbdfhjlnprtvxzbbbsuwymoqsuwy'", "assert odd_values_string('ZDZD') == 'ZZ'", "assert odd_values_string('DAxuCd') == 'DxC'", "assert odd_values_string('abicdijklmnopqrstuvwxyz') == 'aidjlnprtvxz'", "assert odd_values_string('ababcdefghiZDjklmnopqrstuvwxyzcdefghbbbbbbbbbijklabcdijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'aacegiDkmoqsuwycegbbbbbjlbdjlnprtvxznprtvxz'", "assert odd_values_string('abcdefghiZDjkelmnopqrstuvwxyz') == 'acegiDklnprtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjkabdjlnpracegikmoqsuwybbbbtvxznprtvxz'", "assert odd_values_string('abicdijklmnopqrwstuvwxyz') == 'aidjlnprsuwy'", "assert odd_values_string('babcdefghijklmnopqrsabcdlefghijklmnopqrstuvwxyz') == 'bbdfhjlnpraclfhjlnprtvxz'", "assert odd_values_string('bbbb') == 'bb'", "assert odd_values_string('bbbbbbbabcdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyzbbZZD') == 'bbbbbdfhbbbbikacmjlnprtvxznprtvxzbZ'", "assert odd_values_string('zz') == 'z'", "assert odd_values_string('abcdefghijkqrstuvwxwyz') == 'acegikrtvxy'", "assert odd_values_string('ZDDZD') == 'ZDD'", "assert odd_values_string('xy') == 'x'", "assert odd_values_string('abcdefghijkqrstuvwxyzbabcdefghijklmnopqrsabcdlefghijklmnopqrstuvwxyz') == 'acegikrtvxzacegikmoqsbdegikmoqsuwy'", "assert odd_values_string('abcdefghiZDjokelmnopqrstuvwxyz') == 'acegiDoemoqsuwy'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopyzmnopqrstuvwxy') == 'acegbbbbbjkabdjlnpracegikmoymoqsuwy'", "assert odd_values_string('abcdlmnwxyz') == 'aclnxz'", "assert odd_values_string('abcdlefghijklmnabcdefghijkqrstuvwxwyzopqrstuvwxyz') == 'aclfhjlnbdfhjqsuwwzprtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklazbbbbbbbstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjkabbbbtvxznprtvxz'", "assert odd_values_string('xabcdijklmnopqrstuvwxmyz') == 'xbdjlnprtvxy'", "assert odd_values_string('abcdefghabcdefghijkqrstuvwxyzbbbbbbbbbijpklabcdijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'acegacegikrtvxzbbbbiplbdjlnprtvxznprtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabcdijklmnopqrstuvwxyzmnoZDpqrstuvwxyz') == 'acegbbbbbjkacikmoqsuwymoDqsuwy'", "assert odd_values_string('ababcdefghbbbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopyzmnopqrstuvwxycdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'aacegbbbbbjkabdjlnpracegikmoymoqsuwydfhbbbbikacmjlnprtvxznprtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqruvwxyz') == 'acegbbbbbjkabdjlnpracegikmoqsuwybbbbtvxznprvxz'", "assert odd_values_string('babcdbefghijklmnopqrszztuvwxyzbbbbbbbb') == 'bbdegikmoqszuwybbbb'", "assert odd_values_string('abcdefghbbbbbbbbbiojpklabcdijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'acegbbbbboplbdjlnprtvxznprtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpkbabcdefghijklmnopqrstuvwxyzbbbbbbbblabcdijklmnopqbabcdbefghijklmnopqrszztuvwxyzbbbbbbbbrstuvwxyzmnopqrstuvwxyz') == 'acegbbbbbjkacegikmoqsuwybbbblbdjlnpbbdegikmoqszuwybbbbrtvxznprtvxz'", "assert odd_values_string('zabicdijklmnopqrstuvwxyz') == 'zbcikmoqsuwy'", "assert odd_values_string('bbbbbbbabcdbefghijklmnopqrszztuvwxyzbbbbbbbb') == 'bbbbbdegikmoqszuwybbbb'", "assert odd_values_string('babcdefghijklmnopqrstuabicdijklmnopqrstuvwxyzzbbbbbbb') == 'bbdfhjlnprtaidjlnprtvxzbbbb'", "assert odd_values_string('abcdefghbbbbbbbbbiqrabcdefghijklmnopqrstuvwxyzwxyz') == 'acegbbbbbqacegikmoqsuwywy'", "assert odd_values_string('ababcdefghbubbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopyzmnopqrstuvwxycdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'aacegbbbbbiplbcikmoqbbdfhjlnpznprtvxcegbbbbbjlbdikmoqsuwymoqsuwy'", "assert odd_values_string('babcdefbabcdefghijklmnopqrsabcdlefghijklmnopqrstuvwxyzghijklmnopqrstuvwuxyzbbbbbbbb') == 'bbdfacegikmoqsbdegikmoqsuwygikmoqsuwxzbbbb'", "assert odd_values_string('bbababcdefghiZDjklmnopqrstuvwxyzcdefghbbbbbbbbbijklabcdijklmnopqrstuvwxyzmnopqrstuvwxyzbbbbbb') == 'baacegiDkmoqsuwycegbbbbbjlbdjlnprtvxznprtvxzbbb'", "assert odd_values_string('ababcdeffghbubbbbbbbbijpklabbcdwijklmnopqrbabcdefghijklmnopyzmnopqrstuvwxycdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'aacefhubbbbjkabdikmoqbbdfhjlnpznprtvxcegbbbbbjlbdikmoqsuwymoqsuwy'", "assert odd_values_string('babcdefghijklmnopqrstuvbbababcdefghiZDjklmnopqrstuvwxyzcdefghbbbbbbbbbijklabcdijklmnopqrstuvwxyzmnopqrstuvwxyzbbbbbbbbb') == 'bbdfhjlnprtvbbbdfhZjlnprtvxzdfhbbbbikacikmoqsuwymoqsuwybbbbb'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabbcdijklmnopqrbbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqruvwxyz') == 'acegbbbbbjkabdjlnprbbdfhjlnprtvxzbbbsuwymoquwy'", "assert odd_values_string('abcdefghiZDjklmnopqrstuvabcdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyzwxyz') == 'acegiDkmoqsuacegbbbbbjlbdikmoqsuwymoqsuwywy'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabcdijklmnopqrstuvwxyzmnoZDpqrstuvwxy') == 'acegbbbbbjkacikmoqsuwymoDqsuwy'", "assert odd_values_string('abcdefghbbbbbbbbbijpkuvwxyz') == 'acegbbbbbjkvxz'", "assert odd_values_string('abcdefghiZDjklmnvopqrstuvabcdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyzwxyz') == 'acegiDkmvprtvbdfhbbbbikacmjlnprtvxznprtvxzxz'", "assert odd_values_string('ZZZD') == 'ZZ'", "assert odd_values_string('bbababcdefghiZDjklmnopqrstuvwxyzcdefghbbbbbbbbbijklabcdijklmnopqrstuvwxyzmnopqrstuvwxyzbbbbb') == 'baacegiDkmoqsuwycegbbbbbjlbdjlnprtvxznprtvxzbb'", "assert odd_values_string('zabicdijklmnopqrjstuvwxyz') == 'zbcikmoqjtvxz'", "assert odd_values_string('abcdefghbbbbbbbbbijpklabcdijkzmnoZDpqrstuvwxyz') == 'acegbbbbbjkacikmoDqsuwy'", "assert odd_values_string('abcdlefghijklmnabcdefghijkqrstustuvwxyz') == 'aclfhjlnbdfhjqsutvxz'", "assert odd_values_string('abicdijklmnopqrstbabcdefghijklmnopqrstuvwxyzbbbbbbbbuvwxyz') == 'aidjlnprtacegikmoqsuwybbbbuwy'", "assert odd_values_string('aibcdlefghijklabcdefghbbbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopyzmnopqrstuvwxymnopqrstuvwxyz') == 'abdegikacegbbbbbjkabdjlnpracegikmoymoqsuwynprtvxz'", "assert odd_values_string('abcdefghbbpbbbbbbbiojpklabcdijklmnopqrstuvwxyzmnopqrstuvwxyz') == 'acegbpbbbijkacikmoqsuwymoqsuwy'", "assert odd_values_string('bbababcdefghiZDjklmnopqrstuvwxyzcdefghbbbbbbbbbijklabcdijklmnopqrstuvwxy') == 'baacegiDkmoqsuwycegbbbbbjlbdjlnprtvx'", "assert odd_values_string('zabicdipqrstuvwxyz') == 'zbciqsuwy'", "assert odd_values_string('bbbbbbbabcdefghbbbbbbbbbijklabcbdmijklmnopqrstuvwxyzmnopqrstuvwxyzbbZZD') == 'bbbbbdfhbbbbikacdikmoqsuwymoqsuwybZD'", "assert odd_values_string('babcdefghijklmnopqrsabcdmnopqrstuvwxyz') == 'bbdfhjlnpracmoqsuwy'", "assert odd_values_string('abcdefghabcdefghijkqrstuvwxyzbbbbbbbbbijpklabcdijklmnopwqrstuvwxyzmnopqrstuvwxyz') == 'acegacegikrtvxzbbbbiplbdjlnpqsuwymoqsuwy'", "assert odd_values_string('abicdijklmnabcdlefghijklmnabcdefghibjkqrstustuvwxyzopqrwstuvwxyz') == 'aidjlnbdegikmacegijqsutvxzprsuwy'", "assert odd_values_string('abicdipqrwstuvwxayz') == 'aidprsuwaz'", "assert odd_values_string('abcdefghbbbbbbbbbiqrabcdefghijklmnbopqrstuvwxyzwxyz') == 'acegbbbbbqacegikmbprtvxzxz'", "assert odd_values_string('abcdijklmnopqrstababcdefghiZDjklmnopqrstuvwxyzcdefghbbbbbbbbbbijklabcdijklmnopyqrstuvwxyzmnopqrstuvwxyzuvwxyz') == 'acikmoqsaacegiDkmoqsuwycegbbbbbikacikmoyrtvxznprtvxzvxz'", "assert odd_values_string('ZabcdefghbbbbbbbbbijpklabcdijklmnopqrbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqrstuvwxyzDZD') == 'ZbdfhbbbbiplbdjlnpracegikmoqsuwybbbbtvxznprtvxzZ'", "assert odd_values_string('bbbbbbbbbbbbbbbbbbb') == 'bbbbbbbbbb'", "assert odd_values_string('abcdefghijkrstuvwxwyz') == 'acegiksuwwz'", "assert odd_values_string('bbbDAxuCdbbbbbbZZD') == 'bbAudbbbZ'", "assert odd_values_string('abicbabcdefghijklmnopqrstuvbbababcdefghiZDjklmnqrwstuvwxayz') == 'aibbdfhjlnprtvbbbdfhZjlnrsuwaz'", "assert odd_values_string('ZZDD') == 'ZD'", "assert odd_values_string('abicdijklmnabcdlefghijklmjnabcdefghibjkqrstustuvwxyzopqrwstuvwxyz') == 'aidjlnbdegikmnbdfhbkrtsuwyoqwtvxz'", "assert odd_values_string('babcdefghijklmnopqrsabcdlefghijkmlmnopqrstuvwxyz') == 'bbdfhjlnpraclfhjmmoqsuwy'", "assert odd_values_string('uI') == 'u'", "assert odd_values_string('zabicdipqabicdijklmnotuvwxyzrstuvwxyz') == 'zbciqbcikmouwyrtvxz'", "assert odd_values_string('jabcdefghbbbbbbbbbijpkuvwxyzZZZD') == 'jbdfhbbbbipuwyZZ'", "assert odd_values_string('abcdefghiZDjklmnopqrstuqvwxyz') == 'acegiDkmoqsuvxz'", "assert odd_values_string('abicdijklmnabcdlefghijklmnabcdefghibjkqrvwxyzopqrwstuvwxyz') == 'aidjlnbdegikmacegijqvxzprsuwy'", "assert odd_values_string('babcdbefghijklmnopqrszztuvwxyzkbbbbbbbb') == 'bbdegikmoqszuwykbbbb'", "assert odd_values_string('abcdefghiZDjklmnopqrstuvabcdefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyizwxyz') == 'acegiDkmoqsuacegbbbbbjlbdikmoqsuwymoqsuwyzxz'", "assert odd_values_string('abcdefghbbbbbbbbbiqrabcdefghijklmnopqrabcdefghabcdefghijkqrstuvwxyzbbbbbbbbbijpklabcdijklmnopwqrstuvwxyzmnopqrstuvwxyzstuvwxyzwxyz') == 'acegbbbbbqacegikmoqacegacegikrtvxzbbbbiplbdjlnpqsuwymoqsuwysuwywy'", "assert odd_values_string('aibcdlefghijklabcdefghbbbbbbbabcdefghbbbbbbbbbijpklabbcdijklmnopqrbbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqruvwxyzbbijpklabbcdijklmnopqrbabcdefghijklmnopyzmnopqrstuvwxymnopqrstuvwxyz') == 'abdegikacegbbbbbdfhbbbbiplbcikmoqbacegikmoqsuwybbbbtvxznprvxzbjkabdjlnpracegikmoymoqsuwynprtvxz'", "assert odd_values_string('babcdefghijklmnopqdrstuvwxyzbbbbbbb') == 'bbdfhjlnpdsuwybbbb'", "assert odd_values_string('ZabcdefghbbxybbbbbbbijpkltabcdijklmnopqrbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqrstuvwxyzDZD') == 'ZbdfhbybbbiplacikmoqbbdfhjlnprtvxzbbbsuwymoqsuwyDD'", "assert odd_values_string('babcdefbabcdefghijklmnopqrsabcdlefghijklmnopqrstuvwxyzlghijklmnopqrstuvwuxyzbbbbbbbb') == 'bbdfacegikmoqsbdegikmoqsuwylhjlnprtvuybbbb'", "assert odd_values_string('abcdefghiZDjklmnopqrstuvabcdabcdefghbbbbbbbbbijpklabbcdijklmnopqrbabcdefghijklmnopqrstuvwxyzbbbbbbbstuvwxyzmnopqruvwxyzefghbbbbbbbbbijklabcdmijklmnopqrstuvwxyzmnopqrstuvwxyizwxyz') == 'acegiDkmoqsuacacegbbbbbjkabdjlnpracegikmoqsuwybbbbtvxznprvxzfhbbbbikacmjlnprtvxznprtvxiwy'", "assert odd_values_string('aZDbcdefghijkqrstuvwxyz') == 'aDcegikrtvxz'", "assert odd_values_string('abcdefghbbbbbbebbbijklabcdijklmnopqrstuvwxzabicdijklmnopqrstuvwxyzyzmnopqrstuvwxyz') == 'acegbbbebikacikmoqsuwzbcikmoqsuwyymoqsuwy'", "assert odd_values_string('abcadijklmnopqrstuvwxyz') == 'acdjlnprtvxz'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find minimum of three numbers.\nassert min_of_three(10,20,0)==0\nYour code should pass the test:\nassert min_of_three(10,20,0)==0", "test_list": [ "assert min_of_three(10,20,0)==0", "assert min_of_three(19,15,18)==15", "assert min_of_three(-10,-20,-30)==-30", "assert min_of_three(1000000, 2000000, 3000000) == 1000000", "assert min_of_three(1000000000, 999999999, 999999998) == 999999998", "assert min_of_three(1.5, 2.5, 3.5) == 1.5", "assert min_of_three(-1.75, 0.25, 1.5) == -1.75", "assert min_of_three(10.75, -2.5, 5.25) == -2.5", "assert min_of_three(-1.3812949223956517, 0.25, 0.25) == -1.3812949223956517", "assert min_of_three(1000000, 2000000, 2000000) == 1000000", "assert min_of_three(999999, 2000000, 2000000) == 999999", "assert min_of_three(999999999, 2000000, 2000000) == 2000000", "assert min_of_three(0.20488397953788226, 0.25, 1.5) == 0.20488397953788226", "assert min_of_three(1.5, 2.5, 3.3437604275080233) == 1.5", "assert min_of_three(0.25, 1.5, 0.25) == 0.25", "assert min_of_three(2000000, 1000000000, 3000000) == 2000000", "assert min_of_three(1000000000, 3000000, 1000000000) == 3000000", "assert min_of_three(0.25, 0.25, 0.25) == 0.25", "assert min_of_three(-1.75, 0.25, 0.25) == -1.75", "assert min_of_three(0.20488397953788226, 2.497409389352824, 3.3437604275080233) == 0.20488397953788226", "assert min_of_three(0.17611024919184165, -1.75, 0.25) == -1.75", "assert min_of_three(999999, 1000000000, 3000000) == 999999", "assert min_of_three(1.5, 10.75, 3.5) == 1.5", "assert min_of_three(3.7890029635472247, 2.5, 3.9317345052748065) == 2.5", "assert min_of_three(1.5, -1.3812949223956517, 3.3437604275080233) == -1.3812949223956517", "assert min_of_three(0.25, 1.5, 1.5) == 0.25", "assert min_of_three(-2.5, 3.7890029635472247, 5.25) == -2.5", "assert min_of_three(-1.918312672054964, 0.25, 2.497409389352824) == -1.918312672054964", "assert min_of_three(-1.918312672054964, 0.25, 2.183076392319643) == -1.918312672054964", "assert min_of_three(0.17611024919184165, -1.75, -1.75) == -1.75", "assert min_of_three(2.5612669577905645, 2.7101763997809707, 2.497409389352824) == 2.497409389352824", "assert min_of_three(2.5, 3.9317345052748065, 3.9317345052748065) == 2.5", "assert min_of_three(1.5, 1.272867059860154, 1.5) == 1.272867059860154", "assert min_of_three(10.75, 3.006337625967327, 3.5) == 3.006337625967327", "assert min_of_three(-1.75, 10.75, -2.661664813980879) == -2.661664813980879", "assert min_of_three(-2.5, 3.7890029635472247, -2.5) == -2.5", "assert min_of_three(-1.1167380933821645, 10.75, -2.661664813980879) == -2.661664813980879", "assert min_of_three(999999998, 999999, 1000000001) == 999999", "assert min_of_three(2.5, 10.75, 3.5) == 2.5", "assert min_of_three(1.5, 1.272867059860154, 0.7953338906861538) == 0.7953338906861538", "assert min_of_three(-2.860283823066491, 3.7890029635472247, 0.20488397953788226) == -2.860283823066491", "assert min_of_three(2.5, 11.067988481984312, 10.75) == 2.5", "assert min_of_three(2.183076392319643, 10.75, 10.75) == 2.183076392319643", "assert min_of_three(-1.3322026502757378, 0.20321740000095526, 0.25) == -1.3322026502757378", "assert min_of_three(0.20488397953788226, -1.3322026502757378, 3.3437604275080233) == -1.3322026502757378", "assert min_of_three(0.25, 0.20321740000095526, 0.25) == 0.20321740000095526", "assert min_of_three(2.542576612131854, 3.339994408063236, 2.497409389352824) == 2.497409389352824", "assert min_of_three(999999, 999999999, 999999998) == 999999", "assert min_of_three(2000000, 1000000000, 999999999) == 2000000", "assert min_of_three(999999, 3000000, 1000000000) == 999999", "assert min_of_three(1000001, 999999998, 2000000) == 1000001", "assert min_of_three(0.25, 2.497409389352824, 2.497409389352824) == 0.25", "assert min_of_three(0.23138836931395312, 1.5, 0.25) == 0.23138836931395312", "assert min_of_three(1.5, -1.784944220031555, 3.3437604275080233) == -1.784944220031555", "assert min_of_three(-2.860283823066491, -1.1167380933821645, 0.2317946251259954) == -2.860283823066491", "assert min_of_three(-2.5, -1.75, -1.75) == -2.5", "assert min_of_three(0.20488397953788226, 3.3437604275080233, 3.3437604275080233) == 0.20488397953788226", "assert min_of_three(0.2317946251259954, -1.784944220031555, 1.5) == -1.784944220031555", "assert min_of_three(1.5, 1.5, 1.7539550971097109) == 1.5", "assert min_of_three(0.2057319869888941, 1.5, 1.7159542385547792) == 0.2057319869888941", "assert min_of_three(3000000, 999999998, 1000000000) == 3000000", "assert min_of_three(0.25, 0.16771769444791357, 0.25) == 0.16771769444791357", "assert min_of_three(2.5, 2.005042027615088, 3.9317345052748065) == 2.005042027615088", "assert min_of_three(0.20488397953788226, 0.8948515726423616, 1.7321264212932135) == 0.20488397953788226", "assert min_of_three(-3.0180377045824702, 3.7890029635472247, -2.5) == -3.0180377045824702", "assert min_of_three(0.17611024919184165, -1.75, 0.2057319869888941) == -1.75", "assert min_of_three(0.7449345921902422, 2.655338717321931, 3.3437604275080233) == 0.7449345921902422", "assert min_of_three(1000000000, 2000000, 999999998) == 2000000", "assert min_of_three(5.25, -1.1167380933821645, 10.75) == -1.1167380933821645", "assert min_of_three(2.655338717321931, 3.3437604275080233, 3.3437604275080233) == 2.655338717321931", "assert min_of_three(-1.1167380933821645, 10.75, 3.006337625967327) == -1.1167380933821645", "assert min_of_three(-1.918312672054964, 2.487800059617913, 2.497409389352824) == -1.918312672054964", "assert min_of_three(999999, 2000000, 3000000) == 999999", "assert min_of_three(999999998, 1000001, 1000000001) == 1000001", "assert min_of_three(0.2178481359441579, 0.25, 0.25) == 0.2178481359441579", "assert min_of_three(3.3437604275080233, 3.3437604275080233, 3.382112374954924) == 3.3437604275080233", "assert min_of_three(999999999, 999999999, 999999998) == 999999998", "assert min_of_three(2000001, 1000000000, 1000000000) == 2000001", "assert min_of_three(0.25, 0.7822054945762149, 0.16771769444791357) == 0.16771769444791357", "assert min_of_three(2000001, 1000001, 1000000000) == 1000001", "assert min_of_three(5.25, 3.3437604275080233, 3.382112374954924) == 3.3437604275080233", "assert min_of_three(-2.860283823066491, 0.2317946251259954, -1.1167380933821645) == -2.860283823066491", "assert min_of_three(0.20488397953788226, 3.3437604275080233, 0.9749443969127325) == 0.20488397953788226", "assert min_of_three(-2.5, 3.5054779127270486, -1.9832450617287465) == -2.5", "assert min_of_three(-3.684200358639524, 5.551432150054553, 10.75) == -3.684200358639524", "assert min_of_three(-2.419583301611894, 3.382112374954924, 2.5) == -2.419583301611894", "assert min_of_three(-2.5, 3.7890029635472247, -1.3322026502757378) == -2.5", "assert min_of_three(0.2057319869888941, 1.5, 3.5) == 0.2057319869888941", "assert min_of_three(999999999, 999999997, 999999997) == 999999997", "assert min_of_three(-1.75, -1.75, -1.75) == -1.75", "assert min_of_three(2000000, 3000001, 3000000) == 2000000", "assert min_of_three(1.226646627958301, 3.3364402247615583, 2.487800059617913) == 1.226646627958301", "assert min_of_three(1.226646627958301, 2.487800059617913, 2.487800059617913) == 1.226646627958301", "assert min_of_three(3.9317345052748065, 1.272867059860154, 0.7953338906861538) == 0.7953338906861538", "assert min_of_three(0.12182452942816296, 0.20488397953788226, 1.7321264212932135) == 0.12182452942816296", "assert min_of_three(3.339994408063236, 0.2178481359441579, 1.272867059860154) == 0.2178481359441579", "assert min_of_three(0.20488397953788226, 3.3437604275080233, -1.784944220031555) == -1.784944220031555", "assert min_of_three(3.477734585733067, 0.20488397953788226, 3.3437604275080233) == 0.20488397953788226", "assert min_of_three(3.3437604275080233, 3.382112374954924, 3.382112374954924) == 3.3437604275080233", "assert min_of_three(2000001, 1000000000, 3000000) == 2000001", "assert min_of_three(0.20488397953788226, 3.5, 0.20488397953788226) == 0.20488397953788226", "assert min_of_three(0.17611024919184165, 2.5, 0.2178481359441579) == 0.17611024919184165", "assert min_of_three(1.5, 10.75, 4.169373639575513) == 1.5", "assert min_of_three(-2.860283823066491, -3.1548052929478647, -2.249476681153046) == -3.1548052929478647", "assert min_of_three(2.183076392319643, 2.5612669577905645, 3.382112374954924) == 2.183076392319643", "assert min_of_three(1.226646627958301, 2.487800059617913, 1.5) == 1.226646627958301", "assert min_of_three(2.487800059617913, 1.5, 2.487800059617913) == 1.5", "assert min_of_three(0.20488397953788226, 3.3437604275080233, 0.45168629516729597) == 0.20488397953788226" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a string and character, replaces blank spaces in the string with the character, and returns the string.\nassert replace_blank(\"hello people\",'@')==(\"hello@people\")\nYour code should pass the test:\nassert replace_blank(\"hello people\",'@')==(\"hello@people\")", "test_list": [ "assert replace_blank(\"hello people\",'@')==(\"hello@people\")", "assert replace_blank(\"python program language\",'$')==(\"python$program$language\")", "assert replace_blank(\"blank space\",\"-\")==(\"blank-space\")", "assert replace_blank('pythonprogramlanguage', '$') == 'pythonprogramlanguage'", "assert replace_blank(' ', '*') == '****'", "assert replace_blank('a_A_b', '!') == 'a_A_b'", "assert replace_blank('Testing one, two, three!', ' ') == 'Testing one, two, three!'", "assert replace_blank('pythonprogTesting one, two, three!ramlanguage', '$') == 'pythonprogTesting$one,$two,$three!ramlanguage'", "assert replace_blank('pythonprogramlanguage', ' ') == 'pythonprogramlanguage'", "assert replace_blank('pytho!nprogramlanguage', '$') == 'pytho!nprogramlanguage'", "assert replace_blank('pythonprogTesting one, two, three!ramlanguage ', ' ') == 'pythonprogTesting one, two, three!ramlanguage '", "assert replace_blank('pythonprogTesting one, two, three!ramlanguage', ' ') == 'pythonprogTesting one, two, three!ramlanguage'", "assert replace_blank('$', '$') == '$'", "assert replace_blank('pythonprogTest * a_A_b', ' ') == 'pythonprogTest * a_A_b'", "assert replace_blank('pythonprogTpythonprogTesting one, two, three!ramlanguageramlanguage', '!') == 'pythonprogTpythonprogTesting!one,!two,!three!ramlanguageramlanguage'", "assert replace_blank('pythonprogramlanguage ', ' ') == 'pythonprogramlanguage '", "assert replace_blank('pythonprogTest * a_A_b ', ' ') == 'pythonprogTest * a_A_b '", "assert replace_blank('pytoho!nprogramlanguage', '$') == 'pytoho!nprogramlanguage'", "assert replace_blank('pythonprtwo,oggramlanguage', ' ') == 'pythonprtwo,oggramlanguage'", "assert replace_blank('pythonprogTst * a_A_b ', '$') == 'pythonprogTst$*$$$a_A_b$'", "assert replace_blank(' ', ' ') == ' '", "assert replace_blank('!!', '!') == '!!'", "assert replace_blank('a_A_b', '$') == 'a_A_b'", "assert replace_blank('pythonprtwo,oggramnguage', ' ') == 'pythonprtwo,oggramnguage'", "assert replace_blank('pythonprogTst * a_A_b ', '$') == 'pythonprogTst$*$$$$a_A_b$'", "assert replace_blank('pythonprogTst * a_A_b ', ' ') == 'pythonprogTst * a_A_b '", "assert replace_blank(' ', '*') == '*****'", "assert replace_blank(' ', ' ') == ' '", "assert replace_blank(' pythonprogTest ', ' ') == ' pythonprogTest '", "assert replace_blank('!', '!') == '!'", "assert replace_blank('pythonprtwo,oggramngupytho!nprogramlanguageage', ' ') == 'pythonprtwo,oggramngupytho!nprogramlanguageage'", "assert replace_blank('pypythonprtwo,oggramngupytho!nprogramlanguageagethonprogTest * a_A_b', ' ') == 'pypythonprtwo,oggramngupytho!nprogramlanguageagethonprogTest * a_A_b'", "assert replace_blank('pytho!nprogramlanguagpe', '$') == 'pytho!nprogramlanguagpe'", "assert replace_blank('three!', '$') == 'three!'", "assert replace_blank('ppythonprtwo,oggramlanguagee', ' ') == 'ppythonprtwo,oggramlanguagee'", "assert replace_blank('p ytho!nprogramlanguage', '*') == 'p*ytho!nprogramlanguage'", "assert replace_blank('Testing one, two, three!', 'p') == 'Testingpone,ptwo,pthree!'", "assert replace_blank('pytho!nprogramlanguag ', '!') == 'pytho!nprogramlanguag!!'", "assert replace_blank('! !', '!') == '!!!!'", "assert replace_blank('pythonprogTpythonprogTesting one, two, three!ramlanguageramlanguage', ' ') == 'pythonprogTpythonprogTesting one, two, three!ramlanguageramlanguage'", "assert replace_blank('p!', '!') == 'p!'", "assert replace_blank(' ', ' ') == ' '", "assert replace_blank('!!', ' ') == '!!'", "assert replace_blank('pytho!nprogramlangnuage', '$') == 'pytho!nprogramlangnuage'", "assert replace_blank('pythonprogTest * a_A', ' ') == 'pythonprogTest * a_A'", "assert replace_blank('pythonprogTsto * a_A_b ', ' ') == 'pythonprogTsto * a_A_b '", "assert replace_blank('a_A_a_A', '$') == 'a_A_a_A'", "assert replace_blank('*', '*') == '*'", "assert replace_blank('pythonprogramlanguag$e', ' ') == 'pythonprogramlanguag$e'", "assert replace_blank('pytho!nprogramlanguag !', '!') == 'pytho!nprogramlanguag!!!'", "assert replace_blank('pythor!nprogramlanguage', '*') == 'pythor!nprogramlanguage'", "assert replace_blank('pytho!nprogramlanguage', '!') == 'pytho!nprogramlanguage'", "assert replace_blank('pythonprogTst * h a_A_b ', ' ') == 'pythonprogTst * h a_A_b '", "assert replace_blank('pytho!nprpythonprogTstoogramlanguage', '$') == 'pytho!nprpythonprogTstoogramlanguage'", "assert replace_blank('pytho!nprogramlanguag', ' ') == 'pytho!nprogramlanguag'", "assert replace_blank('h$$', '$') == 'h$$'", "assert replace_blank(' ', '!') == '!!!'", "assert replace_blank('p', ' ') == 'p'", "assert replace_blank('pngupytho!nprogramlanguageage', ' ') == 'pngupytho!nprogramlanguageage'", "assert replace_blank('ppythonprtwo,oggramlanguagee', 'p') == 'ppythonprtwo,oggramlanguagee'", "assert replace_blank('pythonprogramlanguag$e', '$') == 'pythonprogramlanguag$e'", "assert replace_blank('h$', '$') == 'h$'", "assert replace_blank(' pythonprogTest ', '!') == '!pythonprogTest!'", "assert replace_blank('pythonprogmlanguag$e', ' ') == 'pythonprogmlanguag$e'", "assert replace_blank('$', ' ') == '$'", "assert replace_blank('pythonprogTsto * a_A_b ', '!') == 'pythonprogTsto!*!!!!a_A_b!!'", "assert replace_blank('!!pythonprogramlanguag$e', ' ') == '!!pythonprogramlanguag$e'", "assert replace_blank('pythonprogramlanguagee ', ' ') == 'pythonprogramlanguagee '", "assert replace_blank('pytoho!nprogramlanguage', '!') == 'pytoho!nprogramlanguage'", "assert replace_blank('Testing one, two, three!pythonprogTst * a_A_b !', '!') == 'Testing!one,!two,!three!pythonprogTst!*!!!!a_A_b!!!'", "assert replace_blank('pythonprogTesting one, two, three!ramlapytho!nprogramlangnuagenguage ', ' ') == 'pythonprogTesting one, two, three!ramlapytho!nprogramlangnuagenguage '", "assert replace_blank('pytoho!nprogramlangua ge', '!') == 'pytoho!nprogramlangua!ge'", "assert replace_blank('pythonprogmlpythonprogTstuag$e', ' ') == 'pythonprogmlpythonprogTstuag$e'", "assert replace_blank('pythonprogramlanguagee $', '$') == 'pythonprogramlanguagee$$'", "assert replace_blank('ppythonprpytho!nprogramlanguag two,oggramlanguagee', ' ') == 'ppythonprpytho!nprogramlanguag two,oggramlanguagee'", "assert replace_blank('!pythonprogTst * a_A_b !pythonprogramlanguag$e', '!') == '!pythonprogTst!*!!!!a_A_b!!!pythonprogramlanguag$e'", "assert replace_blank('pythonprogTpythonprogTesting one, two, three!ramlanguageramlangpythonprogTest * a_A_b ge', ' ') == 'pythonprogTpythonprogTesting one, two, three!ramlanguageramlangpythonprogTest * a_A_b ge'", "assert replace_blank('p ytho!nprogramlanguae', '*') == 'p*ytho!nprogramlanguae'", "assert replace_blank('pytho!nprogramlaanguag ', '!') == 'pytho!nprogramlaanguag!!'", "assert replace_blank('!pythonprogramlanguag$e*', '*') == '!pythonprogramlanguag$e*'", "assert replace_blank('two,', '*') == 'two,'", "assert replace_blank('h$', ' ') == 'h$'", "assert replace_blank('ttwo,', '*') == 'ttwo,'", "assert replace_blank('pythonprtwo,oggramngupypytho!nprogramlangnuagetho!nprogramlanguageage', ' ') == 'pythonprtwo,oggramngupypytho!nprogramlangnuagetho!nprogramlanguageage'", "assert replace_blank('ppythonprtwo,oggramlanguagee$$', ' ') == 'ppythonprtwo,oggramlanguagee$$'", "assert replace_blank('pythothree!ramlapytho!nprogramlangnuagenguage!nprogramlanguage', '$') == 'pythothree!ramlapytho!nprogramlangnuagenguage!nprogramlanguage'", "assert replace_blank('', ' ') == ''", "assert replace_blank('*', ' ') == '*'", "assert replace_blank('pythonprtwo,oggramlanguage!', '!') == 'pythonprtwo,oggramlanguage!'", "assert replace_blank('pythonprogTesting one, twoe, three!ramlapytho!nprogramlangnuagenguage ', ' ') == 'pythonprogTesting one, twoe, three!ramlapytho!nprogramlangnuagenguage '", "assert replace_blank('pytho!nprogramlangp ytho!nprogramlanguaenuage', '$') == 'pytho!nprogramlangp$ytho!nprogramlanguaenuage'", "assert replace_blank('pytho!nprogramlanguaggpe', ' ') == 'pytho!nprogramlanguaggpe'", "assert replace_blank('pytthor!nprogramlanguage', '*') == 'pytthor!nprogramlanguage'", "assert replace_blank('pypythonprtwo,oggramngupytho!nprogramlanguageagethonprogTest * a_A_b', '$') == 'pypythonprtwo,oggramngupytho!nprogramlanguageagethonprogTest$*$$$a_A_b'", "assert replace_blank('pypythonprtwo,oggramngupytho!nprogramlangguageagethonprogTest', ' ') == 'pypythonprtwo,oggramngupytho!nprogramlangguageagethonprogTest'", "assert replace_blank('$$', '$') == '$$'", "assert replace_blank('pytho!nprogramlanguag !', ' ') == 'pytho!nprogramlanguag !'", "assert replace_blank('p', '$') == 'p'", "assert replace_blank('pythothree!ramlapytho!nprogramlangnuagenguage!nprogramlanguaage', '$') == 'pythothree!ramlapytho!nprogramlangnuagenguage!nprogramlanguaage'", "assert replace_blank('hh$', '$') == 'hh$'", "assert replace_blank('pytoho!nprogramlangpythonprogTstua ge', '!') == 'pytoho!nprogramlangpythonprogTstua!ge'", "assert replace_blank(' pythonprogramlanguage ', ' ') == ' pythonprogramlanguage '", "assert replace_blank('p', 'p') == 'p'", "assert replace_blank('pythonprogTesting one$$, two, three!ramlanguage', '$') == 'pythonprogTesting$one$$,$two,$three!ramlanguage'", "assert replace_blank('pythothreae!ramlapytho!nprogramlangnuagenguage!nprogramlanguaage', '$') == 'pythothreae!ramlapytho!nprogramlangnuagenguage!nprogramlanguaage'", "assert replace_blank('pytho!nprogramlaanguag ', ' ') == 'pytho!nprogramlaanguag '", "assert replace_blank('pythonprogramlanguagee ', 'p') == 'pythonprogramlanguageep'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list and an integer n and returns a list containing the n largest items from the list.\nassert set(larg_nnum([10, 20, 50, 70, 90, 20, 50, 40, 60, 80, 100],2))==set([100,90])\nYour code should pass the test:\nassert set(larg_nnum([10, 20, 50, 70, 90, 20, 50, 40, 60, 80, 100],2))==set([100,90])", "test_list": [ "assert set(larg_nnum([10, 20, 50, 70, 90, 20, 50, 40, 60, 80, 100],2))==set([100,90])", "assert set(larg_nnum([10, 20, 50, 70, 90, 20, 50, 40, 60, 80, 100],5))==set([100,90,80,70,60])", "assert set(larg_nnum([10, 20, 50, 70, 90, 20, 50, 40, 60, 80, 100],3))==set([100,90,80])" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the lateral surface area of a cylinder.\nassert math.isclose(lateralsuface_cylinder(10,5), 314.15000000000003, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(lateralsuface_cylinder(10,5), 314.15000000000003, rel_tol=0.001)", "test_list": [ "assert math.isclose(lateralsuface_cylinder(10,5), 314.15000000000003, rel_tol=0.001)", "assert math.isclose(lateralsuface_cylinder(4,5), 125.66000000000001, rel_tol=0.001)", "assert math.isclose(lateralsuface_cylinder(4,10), 251.32000000000002, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the volume of a cube given its side length.\nassert volume_cube(3)==27\nYour code should pass the test:\nassert volume_cube(3)==27", "test_list": [ "assert volume_cube(3)==27", "assert volume_cube(2)==8", "assert volume_cube(5)==125", "assert volume_cube(2.5) == 15.625", "assert volume_cube(1.768116407397588) == 5.527548510985869", "assert volume_cube(1.5330053387267233) == 3.60272407657992", "assert volume_cube(1.9409769466405233) == 7.312420064813221", "assert volume_cube(1.0356135456814313) == 1.110690780489667", "assert volume_cube(1.037763337581918) == 1.1176220748919186", "assert volume_cube(1.028168921286162) == 1.0869095799423387", "assert volume_cube(2.7426133283647474) == 20.629739628309085", "assert volume_cube(1.765616780512917) == 5.504138369769065", "assert volume_cube(3.9316946516263895) == 60.777012038622395", "assert volume_cube(0.9973720595122996) == 0.9921368786017752", "assert volume_cube(2.500545981587986) == 15.635239390656697", "assert volume_cube(1.5471918358270063) == 3.7036718034835703", "assert volume_cube(1.8932750500326467) == 6.786426269944785", "assert volume_cube(1.3384468899118565) == 2.397747399677655", "assert volume_cube(0.7724375366243361) == 0.4608823859374136", "assert volume_cube(3.1594535359035825) == 31.538128515139373", "assert volume_cube(1.3824667962587152) == 2.6421905076428107", "assert volume_cube(2.7470452952934243) == 20.729912135983366", "assert volume_cube(0.9156953778182462) == 0.7678087657634949", "assert volume_cube(34) == 39304", "assert volume_cube(3.819138685765539) == 55.70527057559712", "assert volume_cube(1.4852904495738046) == 3.2766810208367367", "assert volume_cube(0.23333006553317204) == 0.01270316997048562", "assert volume_cube(1.4833943990344491) == 3.264148471480185", "assert volume_cube(1.5762124498957681) == 3.9160142232646056", "assert volume_cube(2.1453705140814767) == 9.87431374210725", "assert volume_cube(2.0656643626262605) == 8.814126334787979", "assert volume_cube(1.998117239983417) == 7.977428141838705", "assert volume_cube(0.7317945310911964) == 0.3918929751831229", "assert volume_cube(0.7070489633316177) == 0.35346667090205675", "assert volume_cube(1.5058980780463802) == 3.4149687749523077", "assert volume_cube(0.6138472691338149) == 0.231302850187366", "assert volume_cube(1.886424605194764) == 6.7130264330930105", "assert volume_cube(0.08168965641450154) == 0.0005451314123358604", "assert volume_cube(0.18480474894634202) == 0.006311598748872661", "assert volume_cube(1.366617929835222) == 2.5523565506559613", "assert volume_cube(1.6299804234811697) == 4.330590963315395", "assert volume_cube(0.26349775076805804) == 0.018294929371295655", "assert volume_cube(0.1547548264158745) == 0.0037062320503769043", "assert volume_cube(1.4522052790699127) == 3.062555963620937", "assert volume_cube(1.352441827883809) == 2.4737498567340093", "assert volume_cube(0.38606015130413257) == 0.05753934710120098", "assert volume_cube(1.7757473200891363) == 5.59942592542983", "assert volume_cube(0.614856877384917) == 0.23244601513693203", "assert volume_cube(1.092355188478646) == 1.3034417497632207", "assert volume_cube(0.3278779481525271) == 0.03524817417861327", "assert volume_cube(1.2118163861770028) == 1.7795510953072182", "assert volume_cube(1.749229601188382) == 5.352300076411245", "assert volume_cube(0.7956349837789919) == 0.5036648137672733", "assert volume_cube(3.058711440212882) == 28.616434564938977", "assert volume_cube(1.4631345109269929) == 3.132223635468333", "assert volume_cube(1.1100051438831426) == 1.3676500134233704", "assert volume_cube(2.0112906528412884) == 8.136254146464301", "assert volume_cube(1.768699928888167) == 5.533022994325652", "assert volume_cube(3.328031163589532) == 36.86057902655699", "assert volume_cube(1.2766431508113951) == 2.080695647837792", "assert volume_cube(1.4012381668068086) == 2.751286861561789", "assert volume_cube(2.0974957803273613) == 9.227908666058601", "assert volume_cube(1.7965130249661876) == 5.798172218845618", "assert volume_cube(0.0013239186479343523) == 2.320512425630895e-09", "assert volume_cube(True) == 1", "assert volume_cube(4.251410459943179) == 76.84207966579191", "assert volume_cube(0.8009116513441019) == 0.5137523659979722", "assert volume_cube(29) == 24389", "assert volume_cube(0.7710089491068963) == 0.4583299703333985", "assert volume_cube(2.5816025535251335) == 17.205533593665916", "assert volume_cube(3.0782604418271386) == 29.168633521601656", "assert volume_cube(0.03179620192173771) == 3.2145911070142355e-05", "assert volume_cube(0.8071981441876176) == 0.525945161671074", "assert volume_cube(0.7514475069968345) == 0.42432238546222384", "assert volume_cube(0.8414426924543517) == 0.5957631394211611", "assert volume_cube(1.569979981693539) == 3.8697449725166546", "assert volume_cube(1.5211274206864358) == 3.519628175807826", "assert volume_cube(1.8099459378857916) == 5.929209677193095", "assert volume_cube(0.0017356944757310683) == 5.229014470311105e-09", "assert volume_cube(0.3907431982365772) == 0.05965876800788504", "assert volume_cube(0.7382628147228494) == 0.4023768463283627", "assert volume_cube(0.9555707899605295) == 0.8725465327475976", "assert volume_cube(2.725023494814321) == 20.23535152055444", "assert volume_cube(4.283520965958573) == 78.59640661216115", "assert volume_cube(1.51773208972581) == 3.4961121026242994", "assert volume_cube(2.1318839221754122) == 9.689261185389284", "assert volume_cube(3.6634136940364126) == 49.165209432593905", "assert volume_cube(3.0123612083786675) == 27.33512971026337", "assert volume_cube(2.356275015399078) == 13.082114164226816", "assert volume_cube(2.1281846741167216) == 9.638910195675743", "assert volume_cube(0.797257273379254) == 0.5067519983742301", "assert volume_cube(3.473310475795803) == 41.90162044610182", "assert volume_cube(1.7076616217920995) == 4.979726082965412", "assert volume_cube(0.25816778679886393) == 0.01720703947612758", "assert volume_cube(3.8940301896154903) == 59.04701431144044", "assert volume_cube(3.6099763184907694) == 47.044955146684266", "assert volume_cube(0.781946355279999) == 0.4781133596497995", "assert volume_cube(2.9534714352068647) == 25.763112186629208", "assert volume_cube(77.01634556267851) == 456823.8002457137", "assert volume_cube(77.21550881078151) == 460376.9938014504", "assert volume_cube(0.0013626847553614187) == 2.530382598179229e-09", "assert volume_cube(3.522566373363042) == 43.70967274548998", "assert volume_cube(0.3181745290034501) == 0.03221040827734677", "assert volume_cube(0.6136495769697746) == 0.2310794459056456" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to set all even bits of a given number.\nassert even_bit_set_number(10) == 10\nYour code should pass the test:\nassert even_bit_set_number(10) == 10", "test_list": [ "assert even_bit_set_number(10) == 10", "assert even_bit_set_number(20) == 30", "assert even_bit_set_number(30) == 30", "assert even_bit_set_number(999999999) == 1002105855", "assert even_bit_set_number(1000000000) == 1002105514", "assert even_bit_set_number(1000000001) == 1002105515", "assert even_bit_set_number(False) == False", "assert even_bit_set_number(True) == True", "assert even_bit_set_number(1000000002) == 1002105514", "assert even_bit_set_number(999999998) == 1002105854", "assert even_bit_set_number(49) == 59", "assert even_bit_set_number(48) == 58", "assert even_bit_set_number(1000000003) == 1002105515", "assert even_bit_set_number(999999997) == 1002105855", "assert even_bit_set_number(1000000004) == 1002105518", "assert even_bit_set_number(50) == 58", "assert even_bit_set_number(999999996) == 1002105854", "assert even_bit_set_number(1000000005) == 1002105519", "assert even_bit_set_number(999999995) == 1002105851", "assert even_bit_set_number(58) == 58", "assert even_bit_set_number(57) == 59", "assert even_bit_set_number(59) == 59", "assert even_bit_set_number(47) == 47", "assert even_bit_set_number(51) == 59", "assert even_bit_set_number(44) == 46", "assert even_bit_set_number(46) == 46", "assert even_bit_set_number(52) == 62", "assert even_bit_set_number(53) == 63", "assert even_bit_set_number(43) == 43", "assert even_bit_set_number(89) == 123", "assert even_bit_set_number(42) == 42", "assert even_bit_set_number(60) == 62", "assert even_bit_set_number(90) == 122", "assert even_bit_set_number(1000000006) == 1002105518", "assert even_bit_set_number(45) == 47", "assert even_bit_set_number(61) == 63", "assert even_bit_set_number(91) == 123", "assert even_bit_set_number(1000000007) == 1002105519", "assert even_bit_set_number(999999994) == 1002105850", "assert even_bit_set_number(62) == 62", "assert even_bit_set_number(92) == 126", "assert even_bit_set_number(41) == 43", "assert even_bit_set_number(1000000008) == 1002105514", "assert even_bit_set_number(54) == 62", "assert even_bit_set_number(56) == 58", "assert even_bit_set_number(93) == 127", "assert even_bit_set_number(1000000009) == 1002105515", "assert even_bit_set_number(94) == 126", "assert even_bit_set_number(82) == 122", "assert even_bit_set_number(95) == 127", "assert even_bit_set_number(55) == 63", "assert even_bit_set_number(96) == 106", "assert even_bit_set_number(88) == 122", "assert even_bit_set_number(81) == 123", "assert even_bit_set_number(999999993) == 1002105851", "assert even_bit_set_number(63) == 63", "assert even_bit_set_number(80) == 122", "assert even_bit_set_number(1000000010) == 1002105514", "assert even_bit_set_number(97) == 107", "assert even_bit_set_number(83) == 123", "assert even_bit_set_number(40) == 42", "assert even_bit_set_number(1000000011) == 1002105515", "assert even_bit_set_number(999999992) == 1002105850", "assert even_bit_set_number(24) == 26", "assert even_bit_set_number(99) == 107", "assert even_bit_set_number(23) == 31", "assert even_bit_set_number(39) == 47", "assert even_bit_set_number(22) == 30", "assert even_bit_set_number(84) == 126", "assert even_bit_set_number(999999991) == 1002105855", "assert even_bit_set_number(98) == 106", "assert even_bit_set_number(66) == 106", "assert even_bit_set_number(25) == 27", "assert even_bit_set_number(87) == 127", "assert even_bit_set_number(20) == 30", "assert even_bit_set_number(85) == 127", "assert even_bit_set_number(86) == 126", "assert even_bit_set_number(67) == 107", "assert even_bit_set_number(19) == 27", "assert even_bit_set_number(68) == 110", "assert even_bit_set_number(79) == 111", "assert even_bit_set_number(999999990) == 1002105854", "assert even_bit_set_number(64) == 106", "assert even_bit_set_number(1000000012) == 1002105518", "assert even_bit_set_number(69) == 111", "assert even_bit_set_number(70) == 110", "assert even_bit_set_number(78) == 110", "assert even_bit_set_number(26) == 26", "assert even_bit_set_number(72) == 106", "assert even_bit_set_number(999999989) == 1002105855", "assert even_bit_set_number(21) == 31", "assert even_bit_set_number(38) == 46", "assert even_bit_set_number(71) == 111", "assert even_bit_set_number(999999988) == 1002105854", "assert even_bit_set_number(37) == 47", "assert even_bit_set_number(999999987) == 1002105851", "assert even_bit_set_number(73) == 107", "assert even_bit_set_number(65) == 107", "assert even_bit_set_number(28) == 30", "assert even_bit_set_number(1000000013) == 1002105519", "assert even_bit_set_number(36) == 46", "assert even_bit_set_number(18) == 26", "assert even_bit_set_number(1000000014) == 1002105518", "assert even_bit_set_number(15) == 15", "assert even_bit_set_number(27) == 27" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list of tuples and returns a dictionary mapping each unique tuple to the number of times it occurs in the list.\nassert check_occurences([(3, 1), (1, 3), (2, 5), (5, 2), (6, 3)] ) == {(1, 3): 2, (2, 5): 2, (3, 6): 1}\nYour code should pass the test:\nassert check_occurences([(3, 1), (1, 3), (2, 5), (5, 2), (6, 3)] ) == {(1, 3): 2, (2, 5): 2, (3, 6): 1}", "test_list": [ "assert check_occurences([(3, 1), (1, 3), (2, 5), (5, 2), (6, 3)] ) == {(1, 3): 2, (2, 5): 2, (3, 6): 1}", "assert check_occurences([(4, 2), (2, 4), (3, 6), (6, 3), (7, 4)] ) == {(2, 4): 2, (3, 6): 2, (4, 7): 1}", "assert check_occurences([(13, 2), (11, 23), (12, 25), (25, 12), (16, 23)] ) == {(2, 13): 1, (11, 23): 1, (12, 25): 2, (16, 23): 1}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of non-empty substrings of a given string.\nassert number_of_substrings(\"abc\") == 6\nYour code should pass the test:\nassert number_of_substrings(\"abc\") == 6", "test_list": [ "assert number_of_substrings(\"abc\") == 6", "assert number_of_substrings(\"abcd\") == 10", "assert number_of_substrings(\"abcde\") == 15", "assert number_of_substrings('') == 0", "assert number_of_substrings('aaaaaa') == 21", "assert number_of_substrings('aaaaaaa') == 28", "assert number_of_substrings('aaaaa') == 15", "assert number_of_substrings('aaaaaaaaaaaa') == 78", "assert number_of_substrings('aaaaaaaaaaa') == 66", "assert number_of_substrings('aaaaaaaa') == 36", "assert number_of_substrings('aaaaaaaaaaaaaaa') == 120", "assert number_of_substrings('aaaaaaaaaaaaa') == 91", "assert number_of_substrings('a') == 1", "assert number_of_substrings('aaaaaaaaaaaaaaaa') == 136", "assert number_of_substrings('aaaaaaaaaaaaaa') == 105", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaa') == 210", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaa') == 231", "assert number_of_substrings('TLPpppcX') == 36", "assert number_of_substrings('aaaaaaaaaaaaaaaaaa') == 171", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaa') == 190", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaa') == 253", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaa') == 325", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaa') == 276", "assert number_of_substrings('aa') == 3", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 465", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1326", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2926", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2016", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1770", "assert number_of_substrings('emHJqf') == 21", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 861", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 561", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 496", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1275", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 4371", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 435", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2145", "assert number_of_substrings('TLPPp') == 15", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1035", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1081", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1891", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1378", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 780", "assert number_of_substrings('nBHaRIQKSz') == 55", "assert number_of_substrings('aaTLPPp') == 28", "assert number_of_substrings('nBHaRIQKSzaaaaaaaaaaaaaaaaaaaaaaaaa') == 630", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1953", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 595", "assert number_of_substrings('nBHaRIaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaQKSz') == 2701", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 903", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaanBHaRIQKSz') == 1540", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 6105", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2080", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 6328", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 4753", "assert number_of_substrings('aaaa') == 10", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 4851", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1540", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 630", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2278", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 16290", "assert number_of_substrings('nBHaRIQSz') == 45", "assert number_of_substrings('TLPpppccX') == 45", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaa') == 300", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1128", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 5253", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 10153", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaa') == 351", "assert number_of_substrings('emmHJqf') == 28", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 17205", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 3741", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2211", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 53628", "assert number_of_substrings('nBHaRIaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaQKSz') == 5565", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaanBHaRIQKSaaaaaaaaaaaaaaaaaaaaaaaaaz') == 3240", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 1830", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 8128", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 4560", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaTLPPp') == 11476", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaemHJqfaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2701", "assert number_of_substrings('HemmHJqf') == 36", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 16471", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 19503", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 8515", "assert number_of_substrings('QYbgEVf') == 28", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 2628", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaemmHJqfaaaaaaaaa') == 1431", "assert number_of_substrings('eJmmHJqf') == 36", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaanBHaRIQSzaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaemHJqfaaa') == 4186", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 92235", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 17391", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 86320", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaanBHaRIQSza') == 9316", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 16653", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 4465", "assert number_of_substrings('QYbaagEVf') == 45", "assert number_of_substrings('aaaaaaaaaaaaaaaaa') == 153", "assert number_of_substrings('emmaaaaHJqf') == 66", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 86736", "assert number_of_substrings('TLemmHTJqfPp') == 78", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 4950", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 12561", "assert number_of_substrings('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaemHJqfaaaaaanBHaRIQKSz') == 1891", "assert number_of_substrings('TLPpppcpcX') == 55", "assert number_of_substrings('TLPPPp') == 21" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in positive integers m and n and finds the number of possible sequences of length n, such that each element is a positive integer and is greater than or equal to twice the previous element but less than or equal to m.\nassert get_total_number_of_sequences(10, 4) == 4\nYour code should pass the test:\nassert get_total_number_of_sequences(10, 4) == 4", "test_list": [ "assert get_total_number_of_sequences(10, 4) == 4", "assert get_total_number_of_sequences(5, 2) == 6", "assert get_total_number_of_sequences(16, 3) == 84", "assert get_total_number_of_sequences(100, 10) == 0", "assert get_total_number_of_sequences(50, 5) == 2264", "assert get_total_number_of_sequences(20, 8) == 0", "assert get_total_number_of_sequences(200, 6) == 2598596", "assert get_total_number_of_sequences(20, 20) == 0", "assert get_total_number_of_sequences(199, 6) == 2519482", "assert get_total_number_of_sequences(49, 6) == 238", "assert get_total_number_of_sequences(5, 6) == 0", "assert get_total_number_of_sequences(200, 100) == 0", "assert get_total_number_of_sequences(5, 5) == 0", "assert get_total_number_of_sequences(49, 49) == 0", "assert get_total_number_of_sequences(49, 50) == 0", "assert get_total_number_of_sequences(199, 20) == 0", "assert get_total_number_of_sequences(50, 6) == 284", "assert get_total_number_of_sequences(50, 49) == 0", "assert get_total_number_of_sequences(199, 8) == 42774", "assert get_total_number_of_sequences(10, 8) == 0", "assert get_total_number_of_sequences(49, 5) == 2028", "assert get_total_number_of_sequences(20, 5) == 10", "assert get_total_number_of_sequences(49, 20) == 0", "assert get_total_number_of_sequences(7, 6) == 0", "assert get_total_number_of_sequences(20, 10) == 0", "assert get_total_number_of_sequences(8, 200) == 0", "assert get_total_number_of_sequences(8, 5) == 0", "assert get_total_number_of_sequences(11, 10) == 0", "assert get_total_number_of_sequences(200, 200) == 0", "assert get_total_number_of_sequences(6, 6) == 0", "assert get_total_number_of_sequences(50, 50) == 0", "assert get_total_number_of_sequences(49, 199) == 0", "assert get_total_number_of_sequences(199, 199) == 0", "assert get_total_number_of_sequences(5, 20) == 0", "assert get_total_number_of_sequences(11, 7) == 0", "assert get_total_number_of_sequences(11, 12) == 0", "assert get_total_number_of_sequences(200, 20) == 0", "assert get_total_number_of_sequences(50, 201) == 0", "assert get_total_number_of_sequences(9, 8) == 0", "assert get_total_number_of_sequences(100, 100) == 0", "assert get_total_number_of_sequences(8, 10) == 0", "assert get_total_number_of_sequences(100, 6) == 35484", "assert get_total_number_of_sequences(200, 50) == 0", "assert get_total_number_of_sequences(198, 100) == 0", "assert get_total_number_of_sequences(10, 10) == 0", "assert get_total_number_of_sequences(8, 9) == 0", "assert get_total_number_of_sequences(9, 9) == 0", "assert get_total_number_of_sequences(12, 11) == 0", "assert get_total_number_of_sequences(51, 6) == 330", "assert get_total_number_of_sequences(20, 6) == 0", "assert get_total_number_of_sequences(8, 8) == 0", "assert get_total_number_of_sequences(201, 50) == 0", "assert get_total_number_of_sequences(9, 10) == 0", "assert get_total_number_of_sequences(10, 9) == 0", "assert get_total_number_of_sequences(9, 6) == 0", "assert get_total_number_of_sequences(49, 200) == 0", "assert get_total_number_of_sequences(201, 201) == 0", "assert get_total_number_of_sequences(20, 21) == 0", "assert get_total_number_of_sequences(6, 201) == 0", "assert get_total_number_of_sequences(202, 202) == 0", "assert get_total_number_of_sequences(21, 21) == 0", "assert get_total_number_of_sequences(20, 200) == 0", "assert get_total_number_of_sequences(200, 202) == 0", "assert get_total_number_of_sequences(198, 20) == 0", "assert get_total_number_of_sequences(5, 100) == 0", "assert get_total_number_of_sequences(21, 12) == 0", "assert get_total_number_of_sequences(7, 8) == 0", "assert get_total_number_of_sequences(198, 101) == 0", "assert get_total_number_of_sequences(8, 6) == 0", "assert get_total_number_of_sequences(198, 198) == 0", "assert get_total_number_of_sequences(9, 50) == 0", "assert get_total_number_of_sequences(198, 199) == 0", "assert get_total_number_of_sequences(8, 51) == 0", "assert get_total_number_of_sequences(10, 5) == 0", "assert get_total_number_of_sequences(51, 21) == 0", "assert get_total_number_of_sequences(199, 101) == 0", "assert get_total_number_of_sequences(4, 50) == 0", "assert get_total_number_of_sequences(50, 198) == 0", "assert get_total_number_of_sequences(13, 13) == 0", "assert get_total_number_of_sequences(52, 51) == 0", "assert get_total_number_of_sequences(8, 7) == 0", "assert get_total_number_of_sequences(5, 9) == 0", "assert get_total_number_of_sequences(7, 101) == 0", "assert get_total_number_of_sequences(202, 7) == 1015208", "assert get_total_number_of_sequences(6, 7) == 0", "assert get_total_number_of_sequences(49, 7) == 0", "assert get_total_number_of_sequences(201, 52) == 0", "assert get_total_number_of_sequences(12, 7) == 0", "assert get_total_number_of_sequences(12, 8) == 0", "assert get_total_number_of_sequences(51, 202) == 0", "assert get_total_number_of_sequences(12, 12) == 0", "assert get_total_number_of_sequences(7, 7) == 0", "assert get_total_number_of_sequences(100, 101) == 0", "assert get_total_number_of_sequences(13, 12) == 0", "assert get_total_number_of_sequences(201, 200) == 0", "assert get_total_number_of_sequences(6, 200) == 0", "assert get_total_number_of_sequences(202, 9) == 0", "assert get_total_number_of_sequences(202, 12) == 0", "assert get_total_number_of_sequences(12, 9) == 0", "assert get_total_number_of_sequences(199, 50) == 0", "assert get_total_number_of_sequences(9, 201) == 0", "assert get_total_number_of_sequences(101, 100) == 0", "assert get_total_number_of_sequences(9, 51) == 0", "assert get_total_number_of_sequences(13, 100) == 0", "assert get_total_number_of_sequences(202, 52) == 0", "assert get_total_number_of_sequences(5, 50) == 0", "assert get_total_number_of_sequences(20, 51) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in two lists and replaces the last element of the first list with the elements of the second list.\nassert replace_list([1, 3, 5, 7, 9, 10],[2, 4, 6, 8])==[1, 3, 5, 7, 9, 2, 4, 6, 8]\nYour code should pass the test:\nassert replace_list([1, 3, 5, 7, 9, 10],[2, 4, 6, 8])==[1, 3, 5, 7, 9, 2, 4, 6, 8]", "test_list": [ "assert replace_list([1, 3, 5, 7, 9, 10],[2, 4, 6, 8])==[1, 3, 5, 7, 9, 2, 4, 6, 8]", "assert replace_list([1,2,3,4,5],[5,6,7,8])==[1,2,3,4,5,6,7,8]", "assert replace_list([\"red\",\"blue\",\"green\"],[\"yellow\"])==[\"red\",\"blue\",\"yellow\"]", "assert replace_list([1, 2, 3, 4], []) == [1, 2, 3]", "assert replace_list([1, 2, 3], []) == [1, 2]", "assert replace_list([1, 2, 3, 4, 5, 6, 7, 8, 9], [10, 11, 12]) == [1, 2, 3, 4, 5, 6, 7, 8, 10, 11, 12]", "assert replace_list([1, 3, 5, 7, 9], [2, 4, 6, 8, 10]) == [1, 3, 5, 7, 2, 4, 6, 8, 10]", "assert replace_list([5], [1, 2, 3, 4, 5]) == [1, 2, 3, 4, 5]", "assert replace_list([1, 3, 5, 7, 9, 11, 13, 15], [2, 4, 6, 8, 10, 12, 14, 16]) == [1, 3, 5, 7, 9, 11, 13, 2, 4, 6, 8, 10, 12, 14, 16]", "assert replace_list([1, 2], [3, 4, 5]) == [1, 3, 4, 5]", "assert replace_list([10, 50, 100, 500, 1000], [1, 2, 3, 4, 5, 6, 7, 8, 9]) == [10, 50, 100, 500, 1, 2, 3, 4, 5, 6, 7, 8, 9]", "assert replace_list([1, 3, [5, [7, [9], 10]], [2, [4, [6, [8]]]]], [[11, [13, [15]]], [12, [14, [16]]]]) == [1, 3, [5, [7, [9], 10]], [11, [13, [15]]], [12, [14, [16]]]]", "assert replace_list([1, [2, [3, [4, [5]]]]], [[6, [7, [8]]], [9, [10, [11]]]]) == [1, [6, [7, [8]]], [9, [10, [11]]]]", "assert replace_list([[1, 2, 3, 4, 5], [6, 7, 8, 9, 10]], [[11, 12, 13], [14, 15]]) == [[1, 2, 3, 4, 5], [11, 12, 13], [14, 15]]", "assert replace_list([1, 'two', True, 4.5], ['five', False, 6, 'seven']) == [1, 'two', True, 'five', False, 6, 'seven']", "assert replace_list([{'1': 'one'}, [2, 'two'], {'three': 3}], [[4, 'four'], {'five': 5}]) == [{'1': 'one'}, [2, 'two'], [4, 'four'], {'five': 5}]", "assert replace_list(['red', 'blue', 'green'], [[]]) == ['red', 'blue', []]", "assert replace_list([['apple', 1], ['banana', 2]], [None, ['cherry', 3]]) == [['apple', 1], None, ['cherry', 3]]", "assert replace_list([1, 'two', True, 4.5, True], ['five', False, 6, 'seven']) == [1, 'two', True, 4.5, 'five', False, 6, 'seven']", "assert replace_list([10, 50, 100, 500, 1000], [1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12]) == [10, 50, 100, 500, 1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12]", "assert replace_list([1, 3, 5, 7, 9], [4, 6, 8]) == [1, 3, 5, 7, 4, 6, 8]", "assert replace_list([1, 'two', True, 4.5], ['five', False, 6, 'cherryfive', 'seven']) == [1, 'two', True, 'five', False, 6, 'cherryfive', 'seven']", "assert replace_list([1, 2, 3, 4], [-9, 1, 6, 91, 9, 56]) == [1, 2, 3, -9, 1, 6, 91, 9, 56]", "assert replace_list([10, 50, 1000], [10, 50, 1000]) == [10, 50, 10, 50, 1000]", "assert replace_list([1, 3, 5, 7, 9], [1, 3, 5, 7, 9]) == [1, 3, 5, 7, 1, 3, 5, 7, 9]", "assert replace_list([2, 4, 6, 8, 10, 12, 14, 16, 10], [2, 4, 6, 8, 10, 12, 14, 16, 10]) == [2, 4, 6, 8, 10, 12, 14, 16, 2, 4, 6, 8, 10, 12, 14, 16, 10]", "assert replace_list([1, 3, 5, 7, 9, 7], [1, 3, 5, 7, 9, 7]) == [1, 3, 5, 7, 9, 1, 3, 5, 7, 9, 7]", "assert replace_list([3, 4, 5, 3], [3, 4, 5, 3]) == [3, 4, 5, 3, 4, 5, 3]", "assert replace_list([{'three': 3}, {'three': 3}], [{'three': 3}, {'three': 3}]) == [{'three': 3}, {'three': 3}, {'three': 3}]", "assert replace_list([3, 4], [3, 4]) == [3, 3, 4]", "assert replace_list([{'1': 'one'}, [2, 'two'], {'three': 3}], [{'five': 5, 'fifve': 14}, [4, 'four'], {'five': 5, 'fifve': 14}]) == [{'1': 'one'}, [2, 'two'], {'five': 5, 'fifve': 14}, [4, 'four'], {'five': 5, 'fifve': 14}]", "assert replace_list([3, 5, 7, 9], [3, 5, 7, 9]) == [3, 5, 7, 3, 5, 7, 9]", "assert replace_list([2, 4, 6, 8, 10, 12, 14, 11], [2, 4, 6, 8, 10, 12, 14, 11]) == [2, 4, 6, 8, 10, 12, 14, 2, 4, 6, 8, 10, 12, 14, 11]", "assert replace_list([10, 999], [10, 999]) == [10, 10, 999]", "assert replace_list([{'five': 5, 'red': 9}, [4, 'four'], {'five': 5, 'red': 9}], [{'1': 'one'}, [2, 'two'], {'three': 3}]) == [{'five': 5, 'red': 9}, [4, 'four'], {'1': 'one'}, [2, 'two'], {'three': 3}]", "assert replace_list([3, 5, 2, 7, 4, 9], [3, 5, 2, 7, 4, 9]) == [3, 5, 2, 7, 4, 3, 5, 2, 7, 4, 9]", "assert replace_list([-9, 1, 6, 91, 9, 56], [-9, 1, 6, 91, 9, 56]) == [-9, 1, 6, 91, 9, -9, 1, 6, 91, 9, 56]", "assert replace_list([1, 3, 5, 7, 9, 9, 9, 3], [1, 3, 5, 7, 9, 9, 9, 3]) == [1, 3, 5, 7, 9, 9, 9, 1, 3, 5, 7, 9, 9, 9, 3]", "assert replace_list([['apple', 1], ['banana', 2]], [['cherry', 3]]) == [['apple', 1], ['cherry', 3]]", "assert replace_list([2, 4, 6, 8, 10, 12, 11, 8], [2, 4, 6, 8, 10, 12, 11, 8]) == [2, 4, 6, 8, 10, 12, 11, 2, 4, 6, 8, 10, 12, 11, 8]", "assert replace_list([3, 1, 5, 2, 7, 4, 9], [3, 1, 5, 2, 7, 4, 9]) == [3, 1, 5, 2, 7, 4, 3, 1, 5, 2, 7, 4, 9]", "assert replace_list([3, 4, 3], [3, 4, 3]) == [3, 4, 3, 4, 3]", "assert replace_list([1, 3, 5, 7, 9], [4, 5, 8]) == [1, 3, 5, 7, 4, 5, 8]", "assert replace_list([4, 6, 9, 8], [4, 6, 9, 8]) == [4, 6, 9, 4, 6, 9, 8]", "assert replace_list([10, 50, 1000, 10], [10, 50, 1000, 10]) == [10, 50, 1000, 10, 50, 1000, 10]", "assert replace_list([{'1': 'one'}, [2, 'two'], {'three': 3}], [[4, 'four']]) == [{'1': 'one'}, [2, 'two'], [4, 'four']]", "assert replace_list([0, 1, 2, 3], [4, False, 'vBHB', -94, 46.84204088708893, False, 80.50554519978891, 59]) == [0, 1, 2, 4, False, 'vBHB', -94, 46.84204088708893, False, 80.50554519978891, 59]", "assert replace_list([[False, False]], [[False, False]]) == [[False, False]]", "assert replace_list([10, 50, 2, 100, 500, 1000], [1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12]) == [10, 50, 2, 100, 500, 1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12]", "assert replace_list([{'1': 'one'}, [2, 'two'], {'three': 3}], [{'1': 'one'}, [2, 'two'], {'three': 3}]) == [{'1': 'one'}, [2, 'two'], {'1': 'one'}, [2, 'two'], {'three': 3}]", "assert replace_list([2, 4, 6, 8, 10], [1, 3, 5, 7, 9]) == [2, 4, 6, 8, 1, 3, 5, 7, 9]", "assert replace_list([{'five': 5, 'red': 9}, [4, 'four'], {'five': 5, 'red': 9}], [{'five': 5, 'red': 9}, [4, 'four'], {'five': 5, 'red': 9}]) == [{'five': 5, 'red': 9}, [4, 'four'], {'five': 5, 'red': 9}, [4, 'four'], {'five': 5, 'red': 9}]", "assert replace_list([1, 3, 5, 7, 9], [9, 4, 6, 8]) == [1, 3, 5, 7, 9, 4, 6, 8]", "assert replace_list([{'three': 10}, {'three': 10}], [{'three': 10}, {'three': 10}]) == [{'three': 10}, {'three': 10}, {'three': 10}]", "assert replace_list([2, 4, 6, 8, 10, 12, 14], [1, 3, 14, 5, 7, 9, 11, 13, 15]) == [2, 4, 6, 8, 10, 12, 1, 3, 14, 5, 7, 9, 11, 13, 15]", "assert replace_list([1, False, True, 4.5, True], [1, False, True, 4.5, True]) == [1, False, True, 4.5, 1, False, True, 4.5, True]", "assert replace_list([10, 1000, 10, 10], [10, 1000, 10, 10]) == [10, 1000, 10, 10, 1000, 10, 10]", "assert replace_list([499, 10, 50, 100, 500, 1000], [499, 10, 50, 100, 500, 1000]) == [499, 10, 50, 100, 500, 499, 10, 50, 100, 500, 1000]", "assert replace_list([[1, 2, 3, 4, 5], [6, 7, 8, 9, 10]], [[1, 2, 3, 4, 5], [6, 7, 8, 9, 10]]) == [[1, 2, 3, 4, 5], [1, 2, 3, 4, 5], [6, 7, 8, 9, 10]]", "assert replace_list([7, 2, 4, 6, 8, 10, 12, 14], [1, 3, 14, 5, 7, 9, 11, 13, 15]) == [7, 2, 4, 6, 8, 10, 12, 1, 3, 14, 5, 7, 9, 11, 13, 15]", "assert replace_list([{'1': 'one'}, [2, 'two'], {}], [[4, 'four'], {}]) == [{'1': 'one'}, [2, 'two'], [4, 'four'], {}]", "assert replace_list([1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12], [1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12]) == [1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 1, 2, 3, 4, 5, 6, 7, 12, 8, 9, 12]", "assert replace_list([10, 999, 998, 999], [10, 999, 998, 999]) == [10, 999, 998, 10, 999, 998, 999]", "assert replace_list([{'1': 'one'}, [2, 'two'], {'three': 3}], [{'five': 5, 'fifve': 14}, [4, 'four'], {'five': 5, 'fifve': 14}, [4, 'four']]) == [{'1': 'one'}, [2, 'two'], {'five': 5, 'fifve': 14}, [4, 'four'], {'five': 5, 'fifve': 14}, [4, 'four']]", "assert replace_list([4, False, 'vBHB', -94, 46.84204088708893, False, 80.50554519978891, 59], [4, False, 'vBHB', -94, 46.84204088708893, False, 80.50554519978891, 59]) == [4, False, 'vBHB', -94, 46.84204088708893, False, 80.50554519978891, 4, False, 'vBHB', -94, 46.84204088708893, False, 80.50554519978891, 59]", "assert replace_list([499, 9, 50, 51, 100, 500, 1000, 50], [499, 9, 50, 51, 100, 500, 1000, 50]) == [499, 9, 50, 51, 100, 500, 1000, 499, 9, 50, 51, 100, 500, 1000, 50]", "assert replace_list([4], [4]) == [4]", "assert replace_list([4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 59, 4, 80.50554519978891], [4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 59, 4, 80.50554519978891]) == [4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 59, 4, 4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 59, 4, 80.50554519978891]", "assert replace_list([4, False, 'cherryfive', 46.84204088708893, False, 80.50554519978891, 59], [4, False, 'cherryfive', 46.84204088708893, False, 80.50554519978891, 59]) == [4, False, 'cherryfive', 46.84204088708893, False, 80.50554519978891, 4, False, 'cherryfive', 46.84204088708893, False, 80.50554519978891, 59]", "assert replace_list([10, 1000, 10], [10, 1000, 10]) == [10, 1000, 10, 1000, 10]", "assert replace_list([1, 2, 3, 16, 4, 5, 6, 7, 8, 9], [1, 2, 3, 16, 4, 5, 6, 7, 8, 9]) == [1, 2, 3, 16, 4, 5, 6, 7, 8, 1, 2, 3, 16, 4, 5, 6, 7, 8, 9]", "assert replace_list([4, 6, 10, 8], [4, 6, 10, 8]) == [4, 6, 10, 4, 6, 10, 8]", "assert replace_list([[3, 2, 'two'], {'1': 'one'}, [3, 2, 'two'], {'three': 3}], [[3, 2, 'two'], {'1': 'one'}, [3, 2, 'two'], {'three': 3}]) == [[3, 2, 'two'], {'1': 'one'}, [3, 2, 'two'], [3, 2, 'two'], {'1': 'one'}, [3, 2, 'two'], {'three': 3}]", "assert replace_list([51, 3, 5, 7, 9, 11, 13, 15], [2, 4, 6, 8, 10, 12, 14, 16]) == [51, 3, 5, 7, 9, 11, 13, 2, 4, 6, 8, 10, 12, 14, 16]", "assert replace_list([2, 4, 6, 8, 10, 12, 14, 11, 6], [2, 4, 6, 8, 10, 12, 14, 11, 6]) == [2, 4, 6, 8, 10, 12, 14, 11, 2, 4, 6, 8, 10, 12, 14, 11, 6]", "assert replace_list([4, 4.5, False, 'vBHB', -94, 46.84204088708893, True, 80.50554519978891, 59], [4, 4.5, False, 'vBHB', -94, 46.84204088708893, True, 80.50554519978891, 59]) == [4, 4.5, False, 'vBHB', -94, 46.84204088708893, True, 80.50554519978891, 4, 4.5, False, 'vBHB', -94, 46.84204088708893, True, 80.50554519978891, 59]", "assert replace_list([4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891], [4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891]) == [4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 60, 4, 4, False, 'vBvHB', -94, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891]", "assert replace_list([1, 3, 6, 5, 7, 9, 11, 13, 15], [2, 4, 6, 8, 10, 12, 14, 16]) == [1, 3, 6, 5, 7, 9, 11, 13, 2, 4, 6, 8, 10, 12, 14, 16]", "assert replace_list([4, 6, 8, 10, 14, 11], [4, 6, 8, 10, 14, 11]) == [4, 6, 8, 10, 14, 4, 6, 8, 10, 14, 11]", "assert replace_list([3, 14, 5, 2, 7, 4, 9], [3, 14, 5, 2, 7, 4, 9]) == [3, 14, 5, 2, 7, 4, 3, 14, 5, 2, 7, 4, 9]", "assert replace_list([[1, 2, 3, 4, 5], [6, 7, 8, 9, 10]], [[15], [11, 12, 13], [15]]) == [[1, 2, 3, 4, 5], [15], [11, 12, 13], [15]]", "assert replace_list([10, 9, 1000, 10], [10, 9, 1000, 10]) == [10, 9, 1000, 10, 9, 1000, 10]", "assert replace_list([10, 50, 1000, 9, 10], [10, 50, 1000, 9, 10]) == [10, 50, 1000, 9, 10, 50, 1000, 9, 10]", "assert replace_list([499, 999, 10, 100, 500, 1000], [499, 999, 10, 100, 500, 1000]) == [499, 999, 10, 100, 500, 499, 999, 10, 100, 500, 1000]", "assert replace_list([[1, 2, 3, 4, 5], [6, 7, 8, 9, 10]], [[15, 11, 12, 60], [15, 11, 12, 60], [14, 15]]) == [[1, 2, 3, 4, 5], [15, 11, 12, 60], [15, 11, 12, 60], [14, 15]]", "assert replace_list([1, [[3, [4, [3], [3]], [4, [3], [3]]], 2, [3, [4, [3], [3]], [4, [3], [3]]]]], [1, [[3, [4, [3], [3]], [4, [3], [3]]], 2, [3, [4, [3], [3]], [4, [3], [3]]]]]) == [1, 1, [[3, [4, [3], [3]], [4, [3], [3]]], 2, [3, [4, [3], [3]], [4, [3], [3]]]]]", "assert replace_list([4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB'], [4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB']) == [4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB']", "assert replace_list([{'three': 9}, {'three': 9}], [{'three': 9}, {'three': 9}]) == [{'three': 9}, {'three': 9}, {'three': 9}]", "assert replace_list([4, 6, 4, 8], [4, 6, 4, 8]) == [4, 6, 4, 4, 6, 4, 8]", "assert replace_list([-9, 1, 6, 91, 9, 56, 1], [-9, 1, 6, 91, 9, 56, 1]) == [-9, 1, 6, 91, 9, 56, -9, 1, 6, 91, 9, 56, 1]", "assert replace_list([5, 5], [1, 2, 3, 4, 5]) == [5, 1, 2, 3, 4, 5]", "assert replace_list([2, 4, 6, 50, 7, 10, 12, 14, 11, 6], [2, 4, 6, 50, 7, 10, 12, 14, 11, 6]) == [2, 4, 6, 50, 7, 10, 12, 14, 11, 2, 4, 6, 50, 7, 10, 12, 14, 11, 6]", "assert replace_list([499, 10, 100, 500, 1000], [499, 10, 100, 500, 1000]) == [499, 10, 100, 500, 499, 10, 100, 500, 1000]", "assert replace_list([{'three': 3, 't': 499}, {'three': 3, 't': 499}], [{'three': 3, 't': 499}, {'three': 3, 't': 499}]) == [{'three': 3, 't': 499}, {'three': 3, 't': 499}, {'three': 3, 't': 499}]", "assert replace_list([4, False, 'vBHB', -94, True, 46.84204088708893, False, 16, False, 80.50554519978891, 59, 'vBHB'], [4, False, 'vBHB', -94, True, 46.84204088708893, False, 16, False, 80.50554519978891, 59, 'vBHB']) == [4, False, 'vBHB', -94, True, 46.84204088708893, False, 16, False, 80.50554519978891, 59, 4, False, 'vBHB', -94, True, 46.84204088708893, False, 16, False, 80.50554519978891, 59, 'vBHB']", "assert replace_list([1, 3, 5, 7, 9, 11, 13, 15], [1, 3, 5, 7, 9, 11, 13, 15]) == [1, 3, 5, 7, 9, 11, 13, 1, 3, 5, 7, 9, 11, 13, 15]", "assert replace_list([10, 50, 100, 500, 1000], [10, 50, 100, 500, 1000]) == [10, 50, 100, 500, 10, 50, 100, 500, 1000]", "assert replace_list([2, 4, 6, 13, 7, 10, 12, 13, 14, 11, 6, 6], [2, 4, 6, 13, 7, 10, 12, 13, 14, 11, 6, 6]) == [2, 4, 6, 13, 7, 10, 12, 13, 14, 11, 6, 2, 4, 6, 13, 7, 10, 12, 13, 14, 11, 6, 6]", "assert replace_list([3, 6, 5, 15, 9, 11, 13, 15], [3, 6, 5, 15, 9, 11, 13, 15]) == [3, 6, 5, 15, 9, 11, 13, 3, 6, 5, 15, 9, 11, 13, 15]", "assert replace_list([4, 4], [4, 4]) == [4, 4, 4]", "assert replace_list([4, 'vBvHB', -94, 80.4210480089324, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891, 4], [4, 'vBvHB', -94, 80.4210480089324, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891, 4]) == [4, 'vBvHB', -94, 80.4210480089324, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891, 4, 'vBvHB', -94, 80.4210480089324, 46.84204088708893, False, 80.50554519978891, 60, 4, 80.50554519978891, 4]", "assert replace_list([1, 2, 3, 4, 5, 6, 14, 8, 9, 12, 14], [1, 2, 3, 4, 5, 6, 14, 8, 9, 12, 14]) == [1, 2, 3, 4, 5, 6, 14, 8, 9, 12, 1, 2, 3, 4, 5, 6, 14, 8, 9, 12, 14]", "assert replace_list([499, 10, 100, 100, 1000, 499], [499, 10, 100, 100, 1000, 499]) == [499, 10, 100, 100, 1000, 499, 10, 100, 100, 1000, 499]", "assert replace_list([1, 'two', True, 4.5, True], [1, 'two', True, 4.5, True]) == [1, 'two', True, 4.5, 1, 'two', True, 4.5, True]", "assert replace_list([1, 3, 14, 5, 7, 9, 11, 13, 15, 9], [1, 3, 14, 5, 7, 9, 11, 13, 15, 9]) == [1, 3, 14, 5, 7, 9, 11, 13, 15, 1, 3, 14, 5, 7, 9, 11, 13, 15, 9]", "assert replace_list([4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB', 59, 'vBHB'], [4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB', 59, 'vBHB']) == [4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB', 59, 4, False, 'vBHB', -94, 46.84204088708893, False, 16, 80.50554519978891, 59, 'vBHB', 59, 'vBHB']", "assert replace_list([{}, {}], [{}, {}]) == [{}, {}, {}]", "assert replace_list([1, 3, 14, 5, 7, 9, 11, 15], [1, 3, 14, 5, 7, 9, 11, 15]) == [1, 3, 14, 5, 7, 9, 11, 1, 3, 14, 5, 7, 9, 11, 15]", "assert replace_list([1, 2, 3, 4], [-9, 1, 6, 91, 9, 56, 56]) == [1, 2, 3, -9, 1, 6, 91, 9, 56, 56]", "assert replace_list([56, 4], [56, 4]) == [56, 56, 4]", "assert replace_list([2, 4, 6, 8, 10, 12, 14, 16, 60, 10, 10], [2, 4, 6, 8, 10, 12, 14, 16, 60, 10, 10]) == [2, 4, 6, 8, 10, 12, 14, 16, 60, 10, 2, 4, 6, 8, 10, 12, 14, 16, 60, 10, 10]", "assert replace_list(['Mhrbldw', None, 29.04635642164004, 'two', ['vBvHB', 'red', 'banana', 'fzAKPhIsu'], 4.5, False, 17, 'cdL'], []) == ['Mhrbldw', None, 29.04635642164004, 'two', ['vBvHB', 'red', 'banana', 'fzAKPhIsu'], 4.5, False, 17]", "assert replace_list([[[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [9, [10, [11]]]], [[[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [9, [10, [11]]]]) == [[[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [[[8, 8], 7, [8, 8]], 5, [[8, 8], 7, [8, 8]]], [9, [10, [11]]]]", "assert replace_list([4, 10, 1, 3, 5, 7, 9], [4, 10, 1, 3, 5, 7, 9]) == [4, 10, 1, 3, 5, 7, 4, 10, 1, 3, 5, 7, 9]", "assert replace_list([1, 3, 14, 5, 7, 9, 13, 15, 9], [1, 3, 14, 5, 7, 9, 13, 15, 9]) == [1, 3, 14, 5, 7, 9, 13, 15, 1, 3, 14, 5, 7, 9, 13, 15, 9]", "assert replace_list([4, 6, 8, 10, 14, 11, 8], [4, 6, 8, 10, 14, 11, 8]) == [4, 6, 8, 10, 14, 11, 4, 6, 8, 10, 14, 11, 8]", "assert replace_list([2, 4, 8, 10, 12, 14, 16], [2, 4, 8, 10, 12, 14, 16]) == [2, 4, 8, 10, 12, 14, 2, 4, 8, 10, 12, 14, 16]", "assert replace_list([{'1': 'one'}, [2, 'two'], {'three': 3}], [{'five': 5, 'fifve': 14, 'fivfe': 5}, [4, 'four'], {'five': 5, 'fifve': 14, 'fivfe': 5}, [4, 'four']]) == [{'1': 'one'}, [2, 'two'], {'five': 5, 'fifve': 14, 'fivfe': 5}, [4, 'four'], {'five': 5, 'fifve': 14, 'fivfe': 5}, [4, 'four']]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count the total number of characters in a string.\nassert count_charac(\"python programming\")==18\nYour code should pass the test:\nassert count_charac(\"python programming\")==18", "test_list": [ "assert count_charac(\"python programming\")==18", "assert count_charac(\"language\")==8", "assert count_charac(\"words\")==5", "assert count_charac('') == 0", "assert count_charac('a') == 1", "assert count_charac('ɢᴜᴍɪᴇꜱ') == 6", "assert count_charac('cMPNwvV') == 7", "assert count_charac('ccMPNwvV') == 8", "assert count_charac('ccMPcMPNwvVNwvV') == 15", "assert count_charac('accMPNwvV') == 9", "assert count_charac('aaccMPNwvV') == 10", "assert count_charac('ccMPNwV') == 7", "assert count_charac('ccMPNwvVcMPNwvV') == 15", "assert count_charac('aaccMPNwv') == 9", "assert count_charac('ccMPcMPNwvVNvV') == 14", "assert count_charac('ɢᴜaaccMPNwvᴍɪᴇꜱ') == 15", "assert count_charac('aacccMPNwvVMPNwv') == 16", "assert count_charac('aaaccccMPcMPNwvVNwvVNwv') == 23", "assert count_charac('cccMPcMPNwvVNvV') == 15", "assert count_charac('aaccMPNw') == 8", "assert count_charac('cNMPNwvV') == 8", "assert count_charac('cNMPNwvcNMPNwvVV') == 16", "assert count_charac('ccMPV') == 5", "assert count_charac('accaaccMPNwvMPNwvV') == 18", "assert count_charac('aaccccMPNwvVcMPNwvVMPNwvV') == 25", "assert count_charac('aaaccccMPcMPNwvcMPNwvVVNwvVNwv') == 30", "assert count_charac('ccMPccccMPcMPNwvVNvVMPNwvVNwvV') == 30", "assert count_charac('aaccMPaccaaccMPNwvMPNwvVNw') == 26", "assert count_charac('aaaaccMPNcMPNwvVwv') == 18", "assert count_charac('ccMPccccMPcMPNwvVNvVMPNwvVNcwvV') == 31", "assert count_charac('ccMPcMPNwvVNwvvV') == 16", "assert count_charac('accV') == 4", "assert count_charac('cNMPNwvcNMwPNwvVV') == 17", "assert count_charac('accaaccMPNwccMPcMPNwvVNwvvVvMPccMPVNwvV') == 39", "assert count_charac('aaacccccMPcMPNwvVNwvVcNwv') == 25", "assert count_charac('ɢᴜᴍccMPcMPNwvVNvVɪᴇꜱaccMPNwvV') == 29", "assert count_charac('ccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvV') == 39", "assert count_charac('ɢᴜaaccMPNwvᴍaccaaccMPNwccMPcMPNwvVNwvvVvMPccMPVNwvVɪᴇꜱ') == 54", "assert count_charac('ccMPNwaccMPNwvVVvV') == 18", "assert count_charac('aaccMPaNwvMPNwvVNw') == 18", "assert count_charac('accaaccMPNwccMPcMPNwvVNwvvVvMPMccvV') == 35", "assert count_charac('ccMPcMPNwvVNvaaacccaaccMPNwccMPcMPNwvVNwvVcNwvV') == 47", "assert count_charac('aaccMPNww') == 9", "assert count_charac('aaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNwvVVvV') == 53", "assert count_charac('aaaaaccMPNcMPNwvVwv') == 19", "assert count_charac('acacVcccMPcMPNwvVNvV') == 20", "assert count_charac('ccMPccccMPcMPNNwvVNvVMPNwvVNcwvV') == 32", "assert count_charac('cNMPNwv') == 7", "assert count_charac('ɢᴜaaɢccMPNwvᴍɪᴇꜱ') == 16", "assert count_charac('aaacMPNwvVNwvVcNwv') == 18", "assert count_charac('aaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNccMPNwVVV') == 56", "assert count_charac('accaaccMPNPwvMPNwvV') == 19", "assert count_charac('ɢᴜᴍV') == 4", "assert count_charac('accaaccMPccMPNwVNPwaacccMwPNwvVMPNwv') == 36", "assert count_charac('ccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVccMPcMPNwvVNwvV') == 54", "assert count_charac('cMPNwccMPcMPNwvVNwvvVvMPMccvV') == 29", "assert count_charac('aaccccMPNwvVcV') == 14", "assert count_charac('aaccccMPNwvNwvV') == 15", "assert count_charac('ɢᴜaaccMPNwvᴍaacccMPNwvVMPNwvɪᴇꜱ') == 31", "assert count_charac('ccMPcMPNwvVNvaaacccaacɢᴜaaccMPNwvᴍaacccMPNwvVMPNwvɪᴇꜱcMPNwccMPcMPNwvVNwvVcNwvV') == 78", "assert count_charac('ccMPcMPNwNwvVNwvVcNwvV') == 22", "assert count_charac('aaccMPaccaaccMPwNwvMPNwvVNwV') == 28", "assert count_charac('accaaccMPNwccMPcccMPVvMPNwvVNwvvVvMPccMPVNwvV') == 45", "assert count_charac('ccMPcMPNwvVNvaaccMPNwwV') == 23", "assert count_charac('ccMPcccccMPcMPNNwvVNvVMPNVwvVNcwvV') == 34", "assert count_charac('aaccaaccVaccMPNwvVNMPNwcNMccMPcMPNwvVNvaaacccaacɢᴜaaccMPNwvᴍaacccMPNwvVMPNwvɪᴇꜱcMPNwccMPcMPNwvVNwvVcNwvVPNwvcNMaacccMPNwvVMPNwvwPNccMPNwVVV') == 139", "assert count_charac('ccMPccccMPcMPNccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVNwvVNvVMPNwvVNcwvaaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNwvVVvVV') == 124", "assert count_charac('ccMccMPNwVPcMPccMPccccMPcMPNccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVNwvVNvVMPNwvVNcwvaaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNwvVVvVV') == 138", "assert count_charac('aacccMPNwaaacccccMPcMPNwvVNwvVcNwvvVMPNwv') == 41", "assert count_charac('ccMPcMPNwvaaaacMPNwvVNwvVcNwvaaaccMPNcMPNwvVwvVNwvV') == 51", "assert count_charac('ccMPcccPcMPNwvVNvVMPNwvVNwvV') == 28", "assert count_charac('aaccccMPNwvVcMPNwvVccMPcccccMPcMPNNwvVNvVMPNVwvVNcwvVMPNwvV') == 59", "assert count_charac('aaccMPaMNwvMPNwvVNw') == 19", "assert count_charac('ɢᴜaaccMPNwvᴍaccaacccMccMPNwVPcMPccMPccccMPcMPNccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVNwvVNvVMPNwvVNcwvaaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNwvVVvVVcMPNwccMPcMPNwvVNwvvVvMPccMPVNwvVɪᴇꜱ') == 192", "assert count_charac('accaaccMPccMPNwVNPwaacccMwPNaaccMPNwvVwv') == 40", "assert count_charac('cccMaaccccMPNwvNwvVPcMPNwvVNvV') == 30", "assert count_charac('aaccccMPNwvVwcV') == 15", "assert count_charac('ɢᴜᴍ') == 3", "assert count_charac('accaaccMPaNwccMPcccMPVvMPNwVNwvvVvMPccMPVNwvV') == 45", "assert count_charac('ccMPccccMPcMccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVccMPcMPNwvVNwvVPNwvVNvVMPNwvVNcwvV') == 85", "assert count_charac('aaacMPNwvVNwvVcNwvv') == 19", "assert count_charac('aaccccMPcccPcMPNwvVNvVMPNwvVNwvVMv') == 34", "assert count_charac('ɢᴜaaɢccMPNwvᴍᴍɪᴇꜱ') == 17", "assert count_charac('accaaccMPNwccMPcccMPVvMPNwvVNwvcMPNwccMPcMPNwvVNwvvVvMPMccvVvVvMPccMPVNwvV') == 74", "assert count_charac('ccMPcMPNPwvVNvaaacccaacɢᴜaaccMPNwvᴍaacccMPNwvVMPNwvɪᴇꜱcMPNwccMPcMPNwvVNwvVcNwvV') == 79", "assert count_charac('aaccMPNwaaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNwvVVvVw') == 62", "assert count_charac('ɢᴜᴍccMPcMPNwvVNɢvVɪᴇꜱaccMPNwvV') == 30", "assert count_charac('ccMPVaaacMPNwvVNwvVcNwvv') == 24", "assert count_charac('acacVcccVNvV') == 12", "assert count_charac('accaaccMPcccMPNwVNPwaacccMwPNaaccMPNwvVwv') == 41", "assert count_charac('cccMPcMPPNwvVNvV') == 16", "assert count_charac('aaccaaccMPNwvVMPNwcNMPNwvcNMaaaacccMPNwvVMPNwvcccMPNwvVMPNwvwPNwvVVvV') == 69", "assert count_charac('aaccMPNwvccMPcMPNwvVNvaaacccaaccMPvNwccMPcMPNwvVNwvVcNwvV') == 57", "assert count_charac('cccMPcɢᴜᴍɪᴇꜱMPPNwvVNvVaaccMPNwvV') == 32", "assert count_charac('accaaccMPNwɢᴜaaɢccMPNwvᴍɪᴇꜱccMPcMPNwvVNwvvVvMPMccvV') == 51", "assert count_charac('aaaccMPNwvV') == 11", "assert count_charac('ccMPNcccccMPcMPNNwvVNvVMPNVwvVNcwvV') == 35", "assert count_charac('aaaccccMPcvcMPNwvVVNwvVNwv') == 26", "assert count_charac('aaccaaccVaccMPNwvVNMPNwcNMvccMPcMPNwvVNvaaacccaacɢᴜaaccMPNwvᴍaacccMPNwvVMPNwvɪᴇꜱcMPNwccMPcMPNwvVNwvVcNwvVPNwvcNMaacccMPNwvVMPNwvwPNccMPNwVVV') == 140", "assert count_charac('ccMPccccMPcMccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVccMPcMPNwvVNwvVPNwvVMPNwvVNcwvV') == 82", "assert count_charac('aaccMPNaaccMPaMNwvMPNwvVNww') == 27", "assert count_charac('ccMPcccMPccccMPcMPNccMPcMPNwvVNvaaacccccMPcMPNwvVNwvVcNwvVNwvVNvVMPNwvVNcwvaaccaaccMPNwvVMPNwcNMPNwvcNMaacccMPNwvVMPNwvwPNwvVVvVVPcMPNwvVNvVMPNwvVNcwvV') == 151", "assert count_charac('cccMaccccMPNwvNwvVPcMPNwvVNvV') == 29", "assert count_charac('waccMPNwvV') == 10", "assert count_charac('cccMPcMPNaaaccccMPcMPNwvcMPNwvVVNwvVNwv') == 39", "assert count_charac('ccMPNcccccMPcMPNNwvVNvVMPNVVwvVNcwvV') == 36" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the next perfect square greater than a given number.\nassert next_Perfect_Square(35) == 36\nYour code should pass the test:\nassert next_Perfect_Square(35) == 36", "test_list": [ "assert next_Perfect_Square(35) == 36", "assert next_Perfect_Square(6) == 9", "assert next_Perfect_Square(9) == 16", "assert next_Perfect_Square(-5) == 0", "assert next_Perfect_Square(-10) == 0", "assert next_Perfect_Square(-11) == 0", "assert next_Perfect_Square(-1) == 0", "assert next_Perfect_Square(-22.844596598850202) == 0", "assert next_Perfect_Square(-78.55181920500208) == 0", "assert next_Perfect_Square(-77.542809657578) == 0", "assert next_Perfect_Square(-12) == 0", "assert next_Perfect_Square(-9) == 0", "assert next_Perfect_Square(-6) == 0", "assert next_Perfect_Square(-80) == 0", "assert next_Perfect_Square(-21.849993780773154) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes an array and finds the maximum sum of a bitonic subsequence for the given array, where a sequence is bitonic if it is first increasing and then decreasing.\nassert max_sum([1, 15, 51, 45, 33, 100, 12, 18, 9]) == 194\nYour code should pass the test:\nassert max_sum([1, 15, 51, 45, 33, 100, 12, 18, 9]) == 194", "test_list": [ "assert max_sum([1, 15, 51, 45, 33, 100, 12, 18, 9]) == 194", "assert max_sum([80, 60, 30, 40, 20, 10]) == 210", "assert max_sum([2, 3 ,14, 16, 21, 23, 29, 30]) == 138", "assert max_sum([10, 9, 8, 7, 6, 5, 4, 3, 2, 1]) == 55", "assert max_sum([10, 9, 8, 7, 6, 5, 4, 4, 3, 2, 1]) == 55", "assert max_sum([10, 9, 8, 7, 6, 5, 4, 4, 3, 3, 1, 6]) == 53", "assert max_sum([10, 9, 8, 7, 6, 4, 3, 2, 1]) == 50", "assert max_sum([10, 8, 7, 6, 5, 4, 4, 3, 3, 1, 6]) == 44", "assert max_sum([10, 9, 8, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9]) == 53", "assert max_sum([10, 9, 8, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 10]) == 53", "assert max_sum([9, 8, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 10]) == 43", "assert max_sum([10, 9, 8, 7, 6, 5, 3, 3, 2, 1]) == 51", "assert max_sum([1, 9, 8, 7, 7, 5, 4, 4, 3, 3, 1, 6]) == 38", "assert max_sum([1, 9, 8, 7, 7, 5, 4, 4, 3, 3, 1, 5, 8]) == 38", "assert max_sum([10, 9, 9, 7, 6, 5, 3, 3, 2, 1, 9]) == 43", "assert max_sum([6, 9, 6, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9]) == 41", "assert max_sum([10, 7, 10, 5, 4, 4, 3, 1, 6]) == 30", "assert max_sum([0, 10, 8, 7, 6, 5, 4, 4, 3, 3, 1, 5, 6]) == 44", "assert max_sum([10, 8, 8, 7, 6, 5, 3, 3, 2, 10]) == 41", "assert max_sum([10, 4, 9, 8, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9]) == 53", "assert max_sum([10, 9, 9, 7, 5, 3, 3, 2, 1, 9]) == 37", "assert max_sum([10, 4, 9, 8, 7, 6, 5, 9, 4, 4, 3, 6, 9]) == 52", "assert max_sum([6, 9, 6, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9, 9, 9]) == 41", "assert max_sum([10, 9, 9, 7, 5, 3, 3, 2, 9]) == 36", "assert max_sum([0, 10, 7, 7, 6, 5, 4, 4, 3, 3, 1, 5, 6]) == 36", "assert max_sum([6, 9, 6, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9, 9]) == 41", "assert max_sum([10, 9, 8, 7, 4, 5, 4, 4, 3, 3, 1, 6]) == 47", "assert max_sum([1, 5, 9, 8, 7, 7, 5, 4, 0, 3, 3, 1, 6]) == 43", "assert max_sum([10, 9, 8, 7, 4, 5, 4, 4, 3, 3, 9, 1, 6]) == 47", "assert max_sum([10, 9, 8, 7, 6, 5, 4, 4, 5, 3, 2, 1]) == 55", "assert max_sum([10, 9, 8, 7, 4, 4, 3, 2, 1]) == 44", "assert max_sum([6, 9, 6, 2, 7, 0, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9]) == 41", "assert max_sum([0, 10, 7, 7, 6, 4, 3, 3, 1, 5, 6, 6]) == 31", "assert max_sum([6, 9, 6, 2, 7, 0, 6, 5, 9, 4, 4, 3, 3, 1, 6, 6]) == 41", "assert max_sum([6, 9, 6, 2, 7, 0, 6, 5, 9, 4, 8, 2, 4, 3, 3, 1, 6, 6, 4]) == 41", "assert max_sum([10, 8, 7, 4, 4, 3, 2, 1, 7]) == 35", "assert max_sum([10, 9, 9, 7, 5, 3, 3, 2, 0, 9]) == 36", "assert max_sum([7, 10, 5, 4, 4, 3, 1, 6]) == 30", "assert max_sum([10, 8, 7, 6, 5, 4, 4, 3, 1, 6, 6]) == 44", "assert max_sum([10, 9, 9, 7, 6, 5, 4, 4, 3, 2, 1]) == 47", "assert max_sum([0, 10, 7, 6, 4, 3, 3, 6, 1, 5, 6, 6]) == 31", "assert max_sum([10, 8, 7, 6, 5, 4, 4, 3, 1, 6]) == 44", "assert max_sum([10, 9, 8, 9, 7, 5, 3, 3, 2, 1, 9]) == 45", "assert max_sum([10, 10, 5, 4, 4, 3, 1, 6, 7]) == 23", "assert max_sum([10, 9, 9, 8, 7, 6, 5, 4, 3, 2, 1]) == 55", "assert max_sum([1, 5, 9, 9, 7, 7, 5, 4, 0, 3, 3, 1, 6]) == 35", "assert max_sum([10, 9, 8, 7, 6, 5, 4, 4, 5, 3, 2, 1, 2]) == 55", "assert max_sum([10, 6, 9, 8, 7, 6, 5, 4, 5, 3, 2]) == 54", "assert max_sum([6, 9, 6, 2, 7, 0, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9, 6]) == 41", "assert max_sum([9, 9, 8, 7, 4, 5, 4, 4, 7, 3, 1, 6]) == 37", "assert max_sum([10, 9, 8, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9, 9]) == 53", "assert max_sum([10, 10, 9, 8, 7, 6, 4, 3, 2, 2]) == 49", "assert max_sum([9, 9, 7, 5, 3, 3, 2, 1]) == 27", "assert max_sum([10, 9, 8, 7, 6, 5, 4, 4, 5, 3, 2, 1, 2, 5]) == 55", "assert max_sum([10, 9, 7, 6, 5, 9, 9, 4, 4, 3, 3, 1, 6, 10]) == 45", "assert max_sum([10, 9, 9, 7, 5, 4, 4, 3, 2, 1]) == 41", "assert max_sum([10, 9, 9, 7, 9, 5, 3, 3, 2, 1, 9]) == 37", "assert max_sum([10, 8, 0, 5, 4, 4, 3, 1, 6, 7]) == 31", "assert max_sum([10, 9, 7, 9, 7, 6, 5, 3, 2, 1, 9]) == 43", "assert max_sum([1, 9, 8, 7, 7, 5, 4, 3, 3, 1, 6]) == 38", "assert max_sum([10, 9, 9, 7, 7, 5, 3, 3, 2, 1, 9, 9]) == 37", "assert max_sum([11, 9, 8, 7, 0, 5, 3, 1]) == 44", "assert max_sum([True, False]) == 1", "assert max_sum([10, 4, 9, 8, 7, 6, 5, 4, 4, 3, 3, 1, 6, 9]) == 53", "assert max_sum([10, 7, 9, 9, 7, 5, 3, 2, 9]) == 36", "assert max_sum([1, 9, 8, 7, 4, 5, 4, 4, 3, 3, 9, 1, 6]) == 38", "assert max_sum([0, 10, 7, 6, 4, 3, 3, 6, 5, 6, 6, 3]) == 31", "assert max_sum([10, 9, 9, 7, 6, 5, 4, 9, 3, 2, 1, 9]) == 47", "assert max_sum([9, 8, 7, 4, 4, 3, 2, 1]) == 34", "assert max_sum([10, 8, 0, 5, 4, 4, 1, 6, 7]) == 28", "assert max_sum([10, 1, 8, 7, 6, 5, 4, 3, 11, 1, 11]) == 44", "assert max_sum([10, 9, 7, 10, 5, 9, 9, 4, 4, 3, 3, 1, 6, 10]) == 39", "assert max_sum([10, 7, 7, 6, 5, 4, 4, 3, 3, 1, 5, 6]) == 36", "assert max_sum([True, True, False]) == 1", "assert max_sum([10, 8, 8, 7, 4, 6, 5, 3, 3, 2, 10]) == 41", "assert max_sum([1, 5, 9, 8, 7, 7, 5, 4, 0, 3, 3, 3, 1, 6]) == 43", "assert max_sum([6, 9, 6, 7, 5, 9, 4, 4, 3, 8, 3, 1, 6, 9]) == 36", "assert max_sum([10, 9, 7, 5, 4, 4, 3, 2, 1]) == 41", "assert max_sum([6, 9, 6, 7, 6, 5, 9, 4, 4, 3, 3, 1, 6, 9, 6, 9]) == 41", "assert max_sum([True, True, True, False]) == 1", "assert max_sum([10, 9, 8, 7, 4, 5, 4, 4, 3, 0, 7, 1, 6]) == 47", "assert max_sum([7, 9, 9, 7, 5, 3, 2, 9]) == 33", "assert max_sum([2, 10, 8, 8, 7, 6, 5, 3, 3, 2, 10]) == 43", "assert max_sum([10, 4, 9, 8, 7, 5, 9, 4, 4, 3, 6, 9]) == 46", "assert max_sum([10, 10, 9, 8, 7, 6, 6, 4, 3, 2, 2]) == 49", "assert max_sum([8, 9, 8, 7, 4, 3, 2, 1]) == 42", "assert max_sum([10, 9, 7, 5, 4, 4, 3, 2, 2, 4]) == 40", "assert max_sum([11, 9, 9, 7, 5, 3, 3, 2, 1, 9]) == 38", "assert max_sum([10, 4, 9, 8, 7, 6, 5, 4, 4, 3, 3, 1, 5, 9]) == 53", "assert max_sum([10, 9, 7, 5, 3, 4, 3, 2, 4]) == 40", "assert max_sum([10, 9, 8, 7, 6, 1, 5, 4, 3, 2, 1]) == 55", "assert max_sum([10, 9, 9, 7, 6, 5, 3, 3, 2, 1, 9, 3]) == 43", "assert max_sum([1, 9, 8, 7, 4, 5, 4, 4, 3, 3, 9, 1, 6, 3]) == 38", "assert max_sum([10, 9, 7, 10, 5, 9, 9, 9, 4, 4, 3, 3, 1, 6, 10]) == 39", "assert max_sum([10, 9, 8, 7, 6, 4, 3, 2, 1, 10]) == 50", "assert max_sum([1, 9, 8, 7, 7, 4, 4, 4, 3, 3, 1, 5, 8]) == 33", "assert max_sum([6, 9, 6, 7, 0, 6, 5, 9, 4, 4, 3, 1, 6, 6]) == 41", "assert max_sum([10, 9, 8, 7, 6, 4, 0, 3, 2, 1]) == 50", "assert max_sum([1, 9, 8, 4, 5, 4, 4, 3, 3, 9, 1, 6]) == 31", "assert max_sum([7, 9, 7, 5, 3, 2, 9]) == 33", "assert max_sum([1, 9, 2, 7, 4, 5, 6, 4, 4, 3, 3, 9, 1, 6]) == 33", "assert max_sum([1, 9, 8, 7, 4, 5, 4, 4, 3, 1, 6, 3]) == 38", "assert max_sum([10, 8, 0, 5, 4, 4, 1, 7]) == 28", "assert max_sum([10, 9, 8, 8, 9, 7, 5, 3, 3, 2, 1, 9]) == 45" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the length of the longest palindromic subsequence in the given string.\nassert lps(\"TENS FOR TENS\") == 5\nYour code should pass the test:\nassert lps(\"TENS FOR TENS\") == 5", "test_list": [ "assert lps(\"TENS FOR TENS\") == 5", "assert lps(\"CARDIO FOR CARDS\") == 7", "assert lps(\"PART OF THE JOURNEY IS PART\") == 9", "assert lps('NDZWBHEJKTPQGAOSLYCRMYEX') == 5", "assert lps('AAAAAAA') == 7", "assert lps('BBBBBBBBB') == 9", "assert lps('CCCCCCCCCCCC') == 12", "assert lps('CCCCCCCAAAAAAACCCCC') == 17", "assert lps('CCCCCCCAAAAAABBBBBBBBBCCCCC') == 19", "assert lps('BBBBBBBBBB') == 10", "assert lps('CCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCC') == 15", "assert lps('CCCCCCCAACCCCCCCCCCCCCAAAAACCCCC') == 27", "assert lps('NDZWBCCCCCCCAACCCCCCCCCCCCCAAAAACCCCCHCRMYEX') == 29", "assert lps('CCCCCCCCCCCCCCCCCCCAAAAAAACCCCC') == 24", "assert lps('BNDZWBHEJKTPQGAOSLYCRMYEXBBBBBBBBB') == 11", "assert lps('CCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 41", "assert lps('CCCCCCCCCCCCCCCCCCCCAAAAAAACCCCC') == 25", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 51", "assert lps('AAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCA') == 44", "assert lps('CCCCCCCCCCCCC') == 13", "assert lps('CCCCCCCCCCCCCCCCCCCCAAAAAA') == 20", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCGAOSLYCRMYEXCCCCCAAAACCCCC') == 75", "assert lps('CCCCCCCCCAAAAACCCCC') == 15", "assert lps('CCCCCCCCCCCCCCCCCCCCCCCCAAAAAACCCCCCCCCCCCCCCCAAAAAA') == 40", "assert lps('BBBBBBBAAAAAAABBB') == 13", "assert lps('AAAACCCCCCCAAAAAABBBBBBBBBCCCCCAAA') == 25", "assert lps('CCCCCCCAACCCCCCCCCCCCCAAAACCC') == 23", "assert lps('AAAAAACCCCCCCCCCCCCCCCCCCCAAAAAA') == 32", "assert lps('CCCCCCCAACCCCCCCCCCCCCAAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 48", "assert lps('CCCCCCCAAAAAABBBBBBBBBCCCCCCCCCCCCCCCCCC') == 25", "assert lps('CCCCCCCAACCCCCCCCCCCCCCAAAACYCCCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCCCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 89", "assert lps('BBBBBBBBBBB') == 11", "assert lps('CCCCAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCACCCCCAAAAACCCCC') == 63", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCC') == 75", "assert lps('CCCCCCCBBBBBBBBBAAAAAAACCCCC') == 19", "assert lps('BBBBBBBBBBBB') == 12", "assert lps('CCCCCCCCCCCCCCCAAAAAAACCCCCAAAAAA') == 20", "assert lps('CCCCCCCCCCCCCCCAAAAAAACCCCAAAAAA') == 19", "assert lps('BCCCCCCCBBBBBBBBBAAAAAAACCCCC') == 19", "assert lps('CCCCCCCACACCCCCCCCCCCCCAAAAACCCCC') == 27", "assert lps('BBBBBBBBAAAAAAABBB') == 13", "assert lps('CCCCCCNDZWBCCCCCCCAACCCCCCCCCCCCCAAAAACCCCCHCRMYEXCCCCCC') == 41", "assert lps('CCCCCCCACAACCCCCCCCCCCCCAAAAACCCCC') == 29", "assert lps('CCCCCCCAAACCCCCCCCCCCCCAAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 50", "assert lps('CCCCCCCAAAAAABBCCCCCCCCCCCCCCCCCCCCAAAAAABBBBBBBCCCCCCCCCCCCCCCCCC') == 46", "assert lps('AAAAAACCCCCCCAACCCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCA') == 45", "assert lps('CCCCCCCCAACCCCCCCCCCCCCAAAAACCCCC') == 27", "assert lps('CCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 119", "assert lps('CCCCCCCCCCCCCCCCCCCCCCCCAAAAAACCCCCCCCCCCCCCCCACCCCCCCBBBBBBBBBAAAAAAACCCCCAAAAA') == 54", "assert lps('AAAACCCCCCCAAAAAABBBBBBBCCCCCAAA') == 23", "assert lps('CCCCCCCCCCCCACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 53", "assert lps('NDZWBHEJKTPQGAOSLDYCRMYEX') == 5", "assert lps('CCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCACCCCCAAAAACCCCCCCCC') == 179", "assert lps('AAAACCCCCCCCAAAAAABBBBBBCCCCAAA') == 20", "assert lps('CCCCCCCACAACCCCCCCCCCCCCAAAAACCCCCC') == 31", "assert lps('AAAAAACCCCCCCAACCACCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCA') == 44", "assert lps('CCCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 51", "assert lps('AAAACCCCCCCCAAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCAAAAAABBBBBBCCCCAAA') == 67", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAA') == 60", "assert lps('CCCCCCCACACCCCCCNDZWBHEJKTPQGAOSLDYCRMYEXCCCCCCCAAAAACCCCC') == 31", "assert lps('AAAAAACCCCCCCAACCACCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCACAAACCCCCA') == 44", "assert lps('CCCCCCNDZWBCCCCCCCAACCCCCCCCCCCCCCCAAAAACCCCCHCRMYEXCCCCCC') == 43", "assert lps('CCCCCCCCCCACACCCCCCNDZWBHEJKTPQGAOSLDYCRMYEXCCCCCCCAAAAACCCCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 156", "assert lps('CCCCCCCAAAAAABBCCCCCCCCCCCCCCCCCCCCAAAACCCCCCCCCAAAAACCCCCAABBBBBBBCCCCCCCCCCCCCCCCCC') == 63", "assert lps('CCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCACCCCCAAAAACCCCCCCCC') == 299", "assert lps('AAAACCAAA') == 8", "assert lps('CCCCCCCAAAAAABBBB') == 7", "assert lps('M') == 1", "assert lps('CCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCCCCACACACCCCCCCCCCCCCAAAAACCCCCCCCCAAAACCCCC') == 47", "assert lps('xZQOogNh') == 1", "assert lps('CCCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCACACCCCCCCCCCCCCAAAAACCCCCMYEXCCCCCAAAACCCCC') == 78", "assert lps('AAAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCAAAAACCCCCCCCCCCCCCCCCCCCAAAAAA') == 73", "assert lps('ACCCCCCCCCCACACCCCCCNDZWBHEJKTPQGAOSLDYCRMYEXCCCCCCCAAAAACCCCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCCRMYEXCCCCCAAAACCCCCAAACCCCCCCAAAAAABBBBBBBCCCCCAAA') == 205", "assert lps('NDZWBHEJKOSLDYCRMYEX') == 5", "assert lps('ACCCCCCCCCCACACCCCCCNDZWBHEJKTPQGAOSLDYCRMYEXCCCCCCCAAAAACCCCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAACCCCCCCCCCCCCCCAAAAAAACCCCCAAAAAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCCRMYEXCCCCCAAAACCCCCAAACCCCCCCAAAAAABBBBBBBCCCCCAAA') == 227", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZAAAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCAAAAACCCCCCCCCCCCCCCCCCCCAAAAAAWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAA') == 133", "assert lps('CCCCCCCC') == 8", "assert lps('CCCCNDZWCBHEJKTPQGAOSLYCRMYEXCCCCCCCCACACACCCCCCCCCCCCCAAAAACCCCCCCCCAAAACCCCC') == 49", "assert lps('BBBBNDZWBHEJKTPQGAOSLDYCRMYEXBBBBBB') == 15", "assert lps('AAAAAAAA') == 8", "assert lps('Q') == 1", "assert lps('CCCCCCAAABBBBBBBBBCCCCC') == 19", "assert lps('CCCCCCCABAAAAAABBBB') == 8", "assert lps('LCCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCC') == 15", "assert lps('NDZWBCCCCCCBCCCCCCCBBBBBBBBBAAAAAAACCCCCCCCHCRMYEX') == 27", "assert lps('BNDZWACCCCCCCCCCACACCCCCCNDZWBHEJKTPQGAOSLDYCRMYEXCCCCCCCAAAAACCCCCCCCCAAACCCCCCCCCCCCCACCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAAACCCCCRMYEXCCCCCAACCCCCCCCCCCCCCCAAAAAAACCCCCAAAAAAAACCCCCAAAAAAACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCCRMYEXCCCCCAAAACCCCCAAACCCCCCCAAAAAABBBBBBBCCCCCAAABHEJKTPQGAOSLYCRMYEXBBBBBBBBB') == 231", "assert lps('NDZWBHEEJKOSLDYCRMYEX') == 5", "assert lps('CCCCCCBAAABBBBBBBBBCCCCC') == 20", "assert lps('CCCCCCBAAAABBBBBBBBBCCCCC') == 20", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZAAAAAAAACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCCAAAAACCCCCCCCCCCCCCCCCCCCAAAAAAWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAAAAA') == 133", "assert lps('CCCCCNDZWBCCCCCCCAACCCCCCCCCCCCCAAAAACCCCCHCRMYEXCCAAAAAABBBB') == 33", "assert lps('CCCCCCCCCCCCCCCCCCAAAAAAACCCCC') == 23", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCCCCCCCCCCCCCAAACCCCCCCAAAAAABBBBBBBBBCCCCCAAAACCCCCRMYEXCCCCCAAAACCCCC') == 89", "assert lps('CCWCCCCCNDZWBHEJKTPQGAOSLYCRMNDZWBHEJKTPQGAOSLDYCRMYEXYEXCCCCC') == 19", "assert lps('CCCCCCCCCCCCACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQCGAOSLYCRMYEXCCCCCAAAACCCCC') == 53", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZCWBHEJKTPQGAOSLYCRMYEXCCCCCAAAACCCCC') == 53", "assert lps('CCCCCCNDZWBCCCCCCCAACCCCCCCCCCCCCAAAAACCCCCHCRMYEXCBBBBBBBAAAAAAABBBCCCCC') == 43", "assert lps('CCCCCCBAAABBBBBBBBBCCCCCC') == 22", "assert lps('AAAAAACCCCCCCAACCACCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSCLYCRMYEXCCCCCACAAACCCCCA') == 46", "assert lps('BCCCCCCCAAAAACCCCC') == 15", "assert lps('NDZWBCCCCCCCAACCCCCCCCCCCCCAAAAACCCCCHCRMYEXNDAAAAAACCCCCCCAACCACCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCRMYEXCCCCCACAAACCCCCAZWBHEJKTPQGAOSLDYCRMYEX') == 74", "assert lps('CCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGCCCCCCCACAACCCCCCCCCCCCCAAAAACCCCCCAOSLYCCCCCCCCCCCCCCCCCCCCAAACCCCCCCAAAAAABBBBBBBBBCCCCCAAAACCCCCRMYEXCCCCCAAAACCCCC') == 118", "assert lps('BBBBBBCCCCCCCCCCCCCCCAAAAAAACCCCCAAAAAABBBBB') == 30", "assert lps('CCCxZQOogNhCCCCCCCCCACCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQCGAOSLYCRMYEXCCCCCAAAACCCCC') == 53", "assert lps('BBBBNDZWBHEBBBBBB') == 11", "assert lps('CCCCCCCACACCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCAACCCCCCCCCCCCCACCCCCCCNDZWBHEJKTPQGAOSLYCCCCCCCCACACCCCCCCCCCCCCAAAAACCCCCMYEXCCCCCAAAACCCCCCCAAAAACCCCC') == 106", "assert lps('CCCCCCCCCCAACCCC') == 14" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function that takes in a tuple and an element and counts the occcurences of the element in the tuple.\nassert count_X((10, 8, 5, 2, 10, 15, 10, 8, 5, 8, 8, 2),4) == 0\nYour code should pass the test:\nassert count_X((10, 8, 5, 2, 10, 15, 10, 8, 5, 8, 8, 2),4) == 0", "test_list": [ "assert count_X((10, 8, 5, 2, 10, 15, 10, 8, 5, 8, 8, 2),4) == 0", "assert count_X((10, 8, 5, 2, 10, 15, 10, 8, 5, 8, 8, 2),10) == 3", "assert count_X((10, 8, 5, 2, 10, 15, 10, 8, 5, 8, 8, 2),8) == 4", "assert count_X((5, 10, 15, 20, 25, 30), 15) == 1", "assert count_X((1.5, 2.3, 4.7, 1.5, 7.8, 9.1, 1.5), 1.5) == 3", "assert count_X(('apple', 'banana', 'cherry', 'apple', 'banana', 'apple'), 'apple') == 3", "assert count_X(('apple', 1, 3.14, 'banana', 1, 'apple', 'banana', 3.14), 'apple') == 2", "assert count_X((), 10) == 0", "assert count_X((), 'apple') == 0", "assert count_X((), '') == 0", "assert count_X((['apple', 'banana'], ['cherry', 'apple', 'banana'], ['apple', 'cherry']), 'apple') == 0", "assert count_X((), 5) == 0", "assert count_X(([1, 2, 3], [4, 5, 6], [7, 8, 9, 10]), [1, 2, 3]) == 1", "assert count_X((1, 'hello', True, 5.5, [1, 2, 3], [4, 5, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False), 'hello') == 3", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True), 'apple') == 2", "assert count_X((), []) == 0", "assert count_X((['cherry', 'apple', 'banana'], ['apple', 'cherry']), 'apple') == 0", "assert count_X((1, True, 5.5, [1, 2, 3], [4, 5, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False), 'hello') == 2", "assert count_X((5, 10, 15, 25, 30), 7) == 0", "assert count_X((1, 2, 3), [1, 5, 2, 3]) == 0", "assert count_X((7, 10, 15, 20, 25, 30), 15) == 1", "assert count_X((1, 2, 3), [1, 5, 2, 3, 2]) == 0", "assert count_X((5, 10, 15, 20, 25, 30), 16) == 0", "assert count_X((24, 1, 2, 25, 3), [1, 5, 2, 5, 3, 2]) == 0", "assert count_X((0, 24, 1, 2, 3), [1, 5, 2, 5, 3, 2]) == 0", "assert count_X((5, 10, 15, 20, 25, 30), [5, 10, 15, 20, 25, 30]) == 0", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True), [10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True]) == 0", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True), [10, 15, 9, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True]) == 0", "assert count_X(([1, 2, 3], [4, 5, 6]), [[1, 2, 3], [4, 5, 6], [7, 8, 9, 20]]) == 0", "assert count_X((1, 5, 2, 5, 3, 2), [1, 5, 2, 5, 3, 2]) == 0", "assert count_X(('banana',), 10) == 0", "assert count_X((5, 10, 15, 20, 25, 30), 25) == 1", "assert count_X((), 'aepple') == 0", "assert count_X((1, 5, 2, 3), [1, 5, 2, 3]) == 0", "assert count_X((0, 24, 1, 2, 3), [0, 24, 1, 2, 3]) == 0", "assert count_X((5, 6, 10, 15, 20, 25, 30), 16) == 0", "assert count_X((1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False), [[4, 6], 1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False]) == 0", "assert count_X((None, 74, None, 5.5, False, 'cherry', 9.1, -51, True), []) == 0", "assert count_X((1, 5, 2, 5, 3, 2), [1, 5, 2, 5, 3, 2, 2]) == 0", "assert count_X(('apple', 'a', 'JMv', 'MzMX'), 5) == 0", "assert count_X(('baJMva', 'banana', 'banana'), 10) == 0", "assert count_X((None, 74, None, 5.5, False, 'cherry', 9.1, -51, True), [True, False, False, False]) == 0", "assert count_X((1, 'hello', True, 5.5, [1, 2, 3], [4, 5, 6], {'a': 1, 'b': 3}, True, 'hello', 'hello', False), 'hello') == 3", "assert count_X((False, True, True), []) == 0", "assert count_X((56.56098853425999, 69, 8), []) == 0", "assert count_X(('banana',), ['banana']) == 0", "assert count_X(('apple', 'a', 'JJMv', 'MzMX', 'apple'), ['apple', 'a', 'JMv', 'MzMX', 'apple']) == 0", "assert count_X(('apple', 'banana', 'chrerry', 'apple', 'banana', 'apple'), 'apple') == 3", "assert count_X((7.20597881844995, 5.5, 5.5, 12.262087321967073, 2.3, -43.60056353102604), []) == 0", "assert count_X((False, False, True, False, True, False, True, False), 'aepple') == 0", "assert count_X((1, 5, 3), [1, 5, 2, 3]) == 0", "assert count_X((), -51) == 0", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True, True), [10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True]) == 0", "assert count_X((['cherry', 'apple', 'banana'], ['apple', 'cherry']), [['cherry', 'apple', 'banana'], ['apple', 'cherry']]) == 0", "assert count_X(('apple', 1, 3.14, 'banana', 1, 'apple', 'banana', 6, 3.14), 'apple') == 2", "assert count_X(('a', 'MzMX', 'apple'), ['apple', 'a', 'JMv', 'MzMX', 'apple', 'apple']) == 0", "assert count_X(([1, 2, 3], [4, 5, 6], [4, 5, 6]), [[1, 2, 3], [4, 5, 6]]) == 0", "assert count_X((1, 5, 2, 6, 5, 3, 2), [1, 5, 2, 5, 3, 2]) == 0", "assert count_X(('apple', 7, 3.14, 1, 'apple', 'banana', 6, 3.14), 'cherry') == 0", "assert count_X(('apple', 1, 3.14, 'banana', 1, 'apple', 'banana', 3.14, 'apple'), 'cherry') == 0", "assert count_X((1, 2, 5, 3), [1, 5, 2, 3]) == 0", "assert count_X((1.5, 2.3, 4.7, 1.019517386952951, 7.8, 9.1, 1.5), 1.5) == 2", "assert count_X((1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False), [[4, 6], 1, True, 5.5, [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False]) == 0", "assert count_X(([1, 2, 3], [4, 5, 6], [7, 8, 9, 10], [4, 5, 6]), [[1, 2, 3], [4, 5, 6], [7, 8, 9, 10]]) == 0", "assert count_X(('bananaapple', 'a', 'JJMv', 'MzMX', 'apple'), ['apple', 'a', 'JJMv', 'MzMX', 'apple']) == 0", "assert count_X(('apple', 'a', 'MzMX', 'a'), 5) == 0", "assert count_X((False, False, True, True, False), []) == 0", "assert count_X(('a', 'MzMX', 'aaepplepple'), ['a', 'MzMX', 'apple']) == 0", "assert count_X(('apple', 'banana', 'chrerrhelloy', 'chrerry', 'banana', 'baanana', 'apple'), ['apple', 'banana', 'chrerry', 'banana', 'apple']) == 0", "assert count_X((1, 2, 3, 2), [1, 5, 2, 3, 2]) == 0", "assert count_X(('MzMX', 'aaepplepple'), ['a', 'MzMX', 'a', 'apple']) == 0", "assert count_X((30, 0, 24, 1, 2, 3, 0, 2), [30, 0, 24, 1, 2, 3, 0]) == 0", "assert count_X(('baJMva', 'banana', 'banana'), 1) == 0", "assert count_X(('apple', 'a', 'JJMv', 'aaaepplepple', 'MzMX', 'apple', 'apple'), ['apple', 'a', 'JJMv', 'MzMX', 'apple', 'apple']) == 0", "assert count_X(('MzMX', 'aaepplepple'), ['a', 'MzMX', 'apple']) == 0", "assert count_X((5, 6, 10, 15, 25, 30), 17) == 0", "assert count_X((30, 0, 24, 1, 2, 3, 25, 0, 2), [30, 0, 24, 1, 2, 3, 25, 0, 2]) == 0", "assert count_X((2.3, 7.20597881844995, 5.5, 5.5, 12.262087321967073, 2.3, -43.60056353102604, 12.262087321967073), [2.3, 7.20597881844995, 5.5, 5.5, 12.262087321967073, 2.3, -43.60056353102604]) == 0", "assert count_X((), [['apple', 'cherry']]) == 0", "assert count_X((24, 1, 2, 25, 3), [24, 1, 2, 24, 3]) == 0", "assert count_X((1, 2, 3, 3, 2, 3), [1, 5, 2, 3, 2]) == 0", "assert count_X(('apple', 3.14, 'banana', 1, 'apple', 'banana', 6, 3.14), ['apple', 1, 3.14, 'banana', 1, 'apple', 'banana', 6, 3.14]) == 0", "assert count_X((0, 24, 1, 2, 3, 24), [3, 0, 24, 1, 2, 3]) == 0", "assert count_X((56.56098853425999, 69, 8), [74, 20, False, -89]) == 0", "assert count_X((1, 5, 2, 2, 5), [1, 2, 3]) == 0", "assert count_X((1, 2, 5, 3, 2), [1, 5, 2, 3]) == 0", "assert count_X((30, 0, 24, 1, 2, 3, 25, 0, 2), [30, 0, 1, 2, 3, 25, 0, 2]) == 0", "assert count_X((1, 2, 7), [1, 2, 2]) == 0", "assert count_X((1, 6, 2, 3), [1, 2, 4, 5, 3]) == 0", "assert count_X((1, 2, 3), [1, 2, 3, 2]) == 0", "assert count_X((5, 6, 10, 15, 20, 25, 31, 30), 6) == 1", "assert count_X((False, False, True, False, True, False, False, True, False), [False, False, True, False, True, False, False, True, False]) == 0", "assert count_X((24, 1, 2, 26, 3), [24, 1, 2, 26, 3, 26]) == 0", "assert count_X(('apple', 1, 3.14, 'banana', 1, 'apple', 'banana', 'appple', 3.14, 'apple'), ['apple', 1, 3.14, 'banana', 1, 'apple', 3.14, 'apple']) == 0", "assert count_X((1, 5, 2, 3), [3, 1, 5, 2, 3]) == 0", "assert count_X((30, 0, 24, 1, 2, 4, 0), [30, 24, 1, 2, 3, 0]) == 0", "assert count_X((30, 0, 24, 1, 2, 3, 0, 2), [30, 0, 24, 1, 2, 2, 3, 0, 2]) == 0", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', True, False, True, True, 'apple'), [10, 15, 9, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True]) == 0", "assert count_X((5, 6, 10, 15, 20, 25, 31, 30), -51) == 0", "assert count_X((30, 0, 24, 1, 2, 3, 0, 2), [30, 0, 24, 1, 2, 3, 0, 2]) == 0", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True), [10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True]) == 0", "assert count_X(('apple', 'banana', 'chrerry', 'apple', 'banana', 'apple'), 'applehello') == 0", "assert count_X((1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', False), [1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False]) == 0", "assert count_X((7, 10, 15, 20, 25), 9) == 0", "assert count_X((0, 24, 1, 2, 3, 0, 2), [30, 0, 24, 1, 2, 3, 0]) == 0", "assert count_X((1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', False, 'hello'), [1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False]) == 0", "assert count_X((10, 15, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True, True, 'apple'), [10, 15, 9, 20, 'apple', 'banana', 'apple', 'cherry', True, False, True]) == 0", "assert count_X(([1, 2, 3], [4, 6], [7, 8, 9, 10], [4, 5, 6]), [[1, 2, 3], [4, 6, 5, 6], [7, 8, 9, 10]]) == 0", "assert count_X((24, 1, 2, 26, 3, 26), [24, 1, 2, 26, 3, 26]) == 0", "assert count_X(('apple', 'banana', 1, 'apple', 'banana', 6, 3.14), ['apple', 1, 3.14, 'banana', 1, 'apple', 'banana', 6, 3.14]) == 0", "assert count_X((1, 2, 3, 2), [1, 2, 3, 2]) == 0", "assert count_X(([1, 2, 3], [1, 2, 3], [4, 5, 6, 4], [4, 5, 7], [7, 8, 9, 10], [4, 5, 6]), [[1, 2, 3], [4, 5, 6, 4], [4, 5, 7], [7, 8, 9, 10], [4, 5, 6]]) == 0", "assert count_X(('apple', 'a', 'JMv', 'MzMX'), False) == 0", "assert count_X((1, True, 5.5, [1, 16, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', False), [1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False, 1]) == 0", "assert count_X((1, True, 5.5, [1, 2, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', 'hello', False, 25), [1, True, 5.5, [1, 0, 16, 3], [4, 6], {'a': 1, 'b': 2}, True, 'hello', False]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list and an element and inserts the element before each element in the list, and returns the resulting list.\nassert insert_element(['Red', 'Green', 'Black'] ,'c')==['c', 'Red', 'c', 'Green', 'c', 'Black']\nYour code should pass the test:\nassert insert_element(['Red', 'Green', 'Black'] ,'c')==['c', 'Red', 'c', 'Green', 'c', 'Black']", "test_list": [ "assert insert_element(['Red', 'Green', 'Black'] ,'c')==['c', 'Red', 'c', 'Green', 'c', 'Black']", "assert insert_element(['python', 'java'] ,'program')==['program', 'python', 'program', 'java']", "assert insert_element(['happy', 'sad'] ,'laugh')==['laugh', 'happy', 'laugh', 'sad']", "assert insert_element([], 'hello') == []", "assert insert_element([], '') == []", "assert insert_element([], 'a') == []", "assert insert_element([], 'test') == []", "assert insert_element([-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628], 'a') == ['a', -94.19039842971628, 'a', -3.4031380684866406, 'a', -22.045351968568852, 'a', -94.19039842971628]", "assert insert_element([-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628]) == [[-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -3.196651036104, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -94.19039842971628]", "assert insert_element([-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628]) == [[-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -3.196651036104, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -22.045351968568852, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -94.19039842971628, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -94.19039842971628, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -22.045351968568852, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -3.196651036104, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -94.19039842971628]", "assert insert_element([], []) == []", "assert insert_element([], [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852]) == []", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], 'KKt') == ['KKt', False, 'KKt', None, 'KKt', True, 'KKt', 'KFgDNCb', 'KKt', True, 'KKt', None, 'KKt', -3.196651036104, 'KKt', -94.19039842971628]", "assert insert_element([-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628]) == [[-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -110.18868196148436, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -3.4031380684866406, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -3.196651036104, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628], -94.19039842971628]", "assert insert_element(['hello', '', 'WDPtUNwkN'], []) == [[], 'hello', [], '', [], 'WDPtUNwkN']", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628]) == [[False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], False, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], None, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], True, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], 'KFgDNCb', [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], True, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], None, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], -3.196651036104, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], 'hello') == ['hello', False, 'hello', 'aCPbIjyB', 'hello', -21.852741451510866, 'hello', 'vQqwG', 'hello', -2.803921953211244, 'hello', False, 'hello', -3.196651036104, 'hello', False, 'hello', -3.4031380684866406]", "assert insert_element([-22.045351968568852, -82.8763282419803, -2.803921953211244, -21.852741451510866], '') == ['', -22.045351968568852, '', -82.8763282419803, '', -2.803921953211244, '', -21.852741451510866]", "assert insert_element([-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628], [-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628]) == [[-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-94.19039842971628, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], 'KK') == ['KK', False, 'KK', None, 'KK', True, 'KK', 'KFgDNCb', 'KK', True, 'KK', None, 'KK', -3.196651036104, 'KK', -94.19039842971628]", "assert insert_element([-3.4031380684866406, -22.045351968568852, -94.19039842971628], [-3.4031380684866406, -22.045351968568852, -94.19039842971628]) == [[-3.4031380684866406, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-3.4031380684866406, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-3.4031380684866406, -22.045351968568852, -94.19039842971628], -94.19039842971628]", "assert insert_element([True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852]) == [[True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], None, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 13, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'hello', [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104]) == [[-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -3.196651036104, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -22.045351968568852, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -94.19039842971628, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -94.19039842971628, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -3.196651036104]", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628]) == [[False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], False, [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], None, [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], True, [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], 'KFgDNCb', [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], True, [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], None, [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], -2.57707920570307, [False, None, True, 'KFgDNCb', True, None, -2.57707920570307, -94.19039842971628], -94.19039842971628]", "assert insert_element([True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852]) == [[True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], None, [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], False, [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 13, [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'hello', [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852]) == [[True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], None, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 13, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], [False, True, False], [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'hello', [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'Kt', [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element(['hello', 'hello', 'WDPtUNwkN'], ['hello', 'hello', 'WDPtUNwkN']) == [['hello', 'hello', 'WDPtUNwkN'], 'hello', ['hello', 'hello', 'WDPtUNwkN'], 'hello', ['hello', 'hello', 'WDPtUNwkN'], 'WDPtUNwkN']", "assert insert_element(['hello', 'test', '', 'WDPtUNwkN'], ['hello', 'test', '', 'WDPtUNwkN']) == [['hello', 'test', '', 'WDPtUNwkN'], 'hello', ['hello', 'test', '', 'WDPtUNwkN'], 'test', ['hello', 'test', '', 'WDPtUNwkN'], '', ['hello', 'test', '', 'WDPtUNwkN'], 'WDPtUNwkN']", "assert insert_element([-3.4031380684866406, -25.009170281817564, -94.19039842971628], [-3.4031380684866406, -25.009170281817564, -94.19039842971628]) == [[-3.4031380684866406, -25.009170281817564, -94.19039842971628], -3.4031380684866406, [-3.4031380684866406, -25.009170281817564, -94.19039842971628], -25.009170281817564, [-3.4031380684866406, -25.009170281817564, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], 'hellvQqwGo') == ['hellvQqwGo', False, 'hellvQqwGo', 'aCPbIjyB', 'hellvQqwGo', -21.852741451510866, 'hellvQqwGo', 'vQqwG', 'hellvQqwGo', -2.803921953211244, 'hellvQqwGo', False, 'hellvQqwGo', -3.196651036104, 'hellvQqwGo', False, 'hellvQqwGo', -3.4031380684866406]", "assert insert_element([-3.4031380684866406, -25.009170281817564, -94.19039842971628, -3.4031380684866406], [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -3.4031380684866406]) == [[-3.4031380684866406, -25.009170281817564, -94.19039842971628, -3.4031380684866406], -3.4031380684866406, [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -3.4031380684866406], -25.009170281817564, [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -3.4031380684866406], -94.19039842971628, [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -3.4031380684866406], -3.4031380684866406]", "assert insert_element([True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852]) == [[True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], None, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], 13, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [False, True], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], 'a', [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([False, None, True, True, None, -3.196651036104, -94.19039842971628], 'KKt') == ['KKt', False, 'KKt', None, 'KKt', True, 'KKt', True, 'KKt', None, 'KKt', -3.196651036104, 'KKt', -94.19039842971628]", "assert insert_element([-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628]) == [[-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -110.18868196148436, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -3.4031380684866406, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -86.22192429070427, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -127.70265372891836, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -3.196651036104, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -3.4031380684866406, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628], -94.19039842971628]", "assert insert_element([[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852]) == [[[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [False, False, False], [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], True, [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], None, [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], False, [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], 13, [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], True, [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [False, True], [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], [False, True, False], [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], 'a', [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], 'Kt', [[False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([], ['hello', 'Qsu', 'gQF', '', 'WDPtUNwkN', 'KKt', 'pgSRk', 'phsacmTi']) == []", "assert insert_element([False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628]) == [[False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], False, [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], None, [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], None, [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], True, [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], 'KFgDNCb', [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], True, [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], -3.196651036104, [False, None, None, True, 'KFgDNCb', True, -3.196651036104, -94.19039842971628], -94.19039842971628]", "assert insert_element(['hello', ''], []) == [[], 'hello', [], '']", "assert insert_element([-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628]) == [[-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -110.18868196148436, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -3.4031380684866406, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -3.196651036104, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406]) == [[False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], 'aCPbIjyB', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], -21.852741451510866, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], 'vQqwG', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], -2.803921953211244, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], -3.196651036104, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406], -3.4031380684866406]", "assert insert_element(['tesst', '', 'WDPtUNwkN'], ['tesst', '', 'WDPtUNwkN']) == [['tesst', '', 'WDPtUNwkN'], 'tesst', ['tesst', '', 'WDPtUNwkN'], '', ['tesst', '', 'WDPtUNwkN'], 'WDPtUNwkN']", "assert insert_element([True, False, True, False, False, False, False, False, True], [True, False, True, False, False, False, False, False, True]) == [[True, False, True, False, False, False, False, False, True], True, [True, False, True, False, False, False, False, False, True], False, [True, False, True, False, False, False, False, False, True], True, [True, False, True, False, False, False, False, False, True], False, [True, False, True, False, False, False, False, False, True], False, [True, False, True, False, False, False, False, False, True], False, [True, False, True, False, False, False, False, False, True], False, [True, False, True, False, False, False, False, False, True], False, [True, False, True, False, False, False, False, False, True], True]", "assert insert_element([], 'KKta') == []", "assert insert_element([-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852]) == [[-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -86.22192429070427, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -127.70265372891836, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -3.196651036104, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852], -22.045351968568852]", "assert insert_element([False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628]) == [[False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], False, [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], None, [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], False, [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], 'KFgDNCb', [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], True, [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], None, [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], -3.196651036104, [False, None, False, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], -94.19039842971628]", "assert insert_element([-3.4031380684866406, -2.57707920570307, -94.19039842971628], [-3.4031380684866406, -2.57707920570307, -94.19039842971628]) == [[-3.4031380684866406, -2.57707920570307, -94.19039842971628], -3.4031380684866406, [-3.4031380684866406, -2.57707920570307, -94.19039842971628], -2.57707920570307, [-3.4031380684866406, -2.57707920570307, -94.19039842971628], -94.19039842971628]", "assert insert_element([True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852]) == [[True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], True, [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], None, [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], False, [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], 13, [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], True, [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], [False, True], [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], [False, True, False], [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], 'a', [True, None, False, 13, True, [False, True], [False, True, False], 'a', -22.045351968568852], -22.045351968568852]", "assert insert_element(['tesst', '', 'WDPtUNwkN', ''], ['tesst', '', 'WDPtUNwkN', '']) == [['tesst', '', 'WDPtUNwkN', ''], 'tesst', ['tesst', '', 'WDPtUNwkN', ''], '', ['tesst', '', 'WDPtUNwkN', ''], 'WDPtUNwkN', ['tesst', '', 'WDPtUNwkN', ''], '']", "assert insert_element([False, True, True, True, True, True, True], []) == [[], False, [], True, [], True, [], True, [], True, [], True, [], True]", "assert insert_element([False, False, False, True, True, True, True], [False, False, False, True, True, True, True]) == [[False, False, False, True, True, True, True], False, [False, False, False, True, True, True, True], False, [False, False, False, True, True, True, True], False, [False, False, False, True, True, True, True], True, [False, False, False, True, True, True, True], True, [False, False, False, True, True, True, True], True, [False, False, False, True, True, True, True], True]", "assert insert_element([[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a']) == [[[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], [True, False, True], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], [False, False, False], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], True, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], None, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], False, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], 13, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], True, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], [False, True], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], [False, True, False], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], 'a', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], 'Kt', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], -22.045351968568852, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], 'Kt', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a'], 'a']", "assert insert_element([True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852]) == [[True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], None, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], 13, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], [False, True], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], 'WDPtUNwkN', [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104]) == [[-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -3.196651036104, [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -94.19039842971628, [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -94.19039842971628, [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -22.045351968568852, [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -3.196651036104, [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -94.19039842971628, [-3.196651036104, -94.19039842971628, -94.19039842971628, -22.045351968568852, -3.196651036104, -94.19039842971628, -3.196651036104], -3.196651036104]", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], 'heKKtallo') == ['heKKtallo', False, 'heKKtallo', None, 'heKKtallo', True, 'heKKtallo', 'KFgDNCb', 'heKKtallo', True, 'heKKtallo', None, 'heKKtallo', -3.196651036104, 'heKKtallo', -94.19039842971628]", "assert insert_element([69.06024154700933, -43.46372371400851, -22.045351968568852, -40.40554092503732, 73.33460451864283, -46.34526064348461, -110.18868196148436, 73.33460451864283], 'test') == ['test', 69.06024154700933, 'test', -43.46372371400851, 'test', -22.045351968568852, 'test', -40.40554092503732, 'test', 73.33460451864283, 'test', -46.34526064348461, 'test', -110.18868196148436, 'test', 73.33460451864283]", "assert insert_element([[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a']) == [[[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], [True, False, True], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], [False, False, False], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], True, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], None, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], False, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], 13, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], True, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], [False, True], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], [False, True, False], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], 'a', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], 'Kt', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], -22.045351968568852, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], 'Kt', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], 'a', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'a', 'a'], 'a']", "assert insert_element([True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852]) == [[True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], None, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], 13, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], 'a', [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, -94.19039842971628, True, [False, True, False], 'a', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628], 'WDPtUNwkN') == ['WDPtUNwkN', False, 'WDPtUNwkN', None, 'WDPtUNwkN', True, 'WDPtUNwkN', 'KFgDNCb', 'WDPtUNwkN', True, 'WDPtUNwkN', None, 'WDPtUNwkN', -3.196651036104, 'WDPtUNwkN', -94.19039842971628]", "assert insert_element([False], 'a') == ['a', False]", "assert insert_element([True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852]) == [[True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], None, [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], 13, [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], [False, True, True], [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], 'WDPtUNwkN', [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, -94.19039842971628, False, [False, True, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element(['', 'WDPtUNwkN'], ['', 'WDPtUNwkN']) == [['', 'WDPtUNwkN'], '', ['', 'WDPtUNwkN'], 'WDPtUNwkN']", "assert insert_element([-22.045351968568852], [-22.045351968568852]) == [[-22.045351968568852], -22.045351968568852]", "assert insert_element([True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13]) == [[True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], True, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], None, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], 13, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], -94.19039842971628, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], True, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], [False, True, False], [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], 'hello', [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], 'Kt', [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], -22.045351968568852, [True, None, 13, -94.19039842971628, True, [False, True, False], 'hello', 'Kt', -22.045351968568852, 13], 13]", "assert insert_element([False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628]) == [[False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], False, [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], None, [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], None, [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], True, [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], 'KFgDNCb', [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], False, [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], -3.196651036104, [False, None, None, True, 'KFgDNCb', False, -3.196651036104, -94.19039842971628], -94.19039842971628]", "assert insert_element(['hello', 'heello', ''], []) == [[], 'hello', [], 'heello', [], '']", "assert insert_element([True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello']) == [[True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], True, [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], None, [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], 13, [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], -94.19039842971628, [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], True, [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], [False, True, False], [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], [False, True], [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], 'hello', [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], 'Kt', [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], -22.045351968568852, [True, None, 13, -94.19039842971628, True, [False, True, False], [False, True], 'hello', 'Kt', -22.045351968568852, 'hello'], 'hello']", "assert insert_element([-3.4031380684866406, -25.009170281817564, -94.19039842971628, -94.19039842971628], [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -94.19039842971628]) == [[-3.4031380684866406, -25.009170281817564, -94.19039842971628, -94.19039842971628], -3.4031380684866406, [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -94.19039842971628], -25.009170281817564, [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-3.4031380684866406, -25.009170281817564, -94.19039842971628, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, 'miBGIG', 'hello', {}, -47.901138589551515, [False, None, True, 34.46298598167968, [-52, 57, False, -20, -60]], True, [80.80611394097215, 91.28180027393006, -127.70265372891836, -86.37155595068646], 'a'], []) == [[], False, [], 'miBGIG', [], 'hello', [], {}, [], -47.901138589551515, [], [False, None, True, 34.46298598167968, [-52, 57, False, -20, -60]], [], True, [], [80.80611394097215, 91.28180027393006, -127.70265372891836, -86.37155595068646], [], 'a']", "assert insert_element(['tesst', '', 'WDPtUNwkN', 'Kt'], ['tesst', '', 'WDPtUNwkN', 'Kt']) == [['tesst', '', 'WDPtUNwkN', 'Kt'], 'tesst', ['tesst', '', 'WDPtUNwkN', 'Kt'], '', ['tesst', '', 'WDPtUNwkN', 'Kt'], 'WDPtUNwkN', ['tesst', '', 'WDPtUNwkN', 'Kt'], 'Kt']", "assert insert_element(['hello', '', 'hello'], [True, True, True]) == [[True, True, True], 'hello', [True, True, True], '', [True, True, True], 'hello']", "assert insert_element([-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628]) == [[-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -86.22192429070427, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -110.61432450803059, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -127.70265372891836, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.196651036104, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628]", "assert insert_element([-3.4031380684866406, -25.009170281817564, -3.4031380684866406], [-3.4031380684866406, -25.009170281817564, -3.4031380684866406]) == [[-3.4031380684866406, -25.009170281817564, -3.4031380684866406], -3.4031380684866406, [-3.4031380684866406, -25.009170281817564, -3.4031380684866406], -25.009170281817564, [-3.4031380684866406, -25.009170281817564, -3.4031380684866406], -3.4031380684866406]", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None]) == [[False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], False, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], None, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], True, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], 'KFgDNCb', [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], True, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], None, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], -3.196651036104, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], -94.19039842971628, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, -94.19039842971628, None], None]", "assert insert_element([-50.04786752277453, -3.4031380684866406, -22.045351968568852, -94.19039842971628], [-50.04786752277453, -3.4031380684866406, -22.045351968568852, -94.19039842971628]) == [[-50.04786752277453, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -50.04786752277453, [-50.04786752277453, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-50.04786752277453, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-50.04786752277453, -3.4031380684866406, -22.045351968568852, -94.19039842971628], -94.19039842971628]", "assert insert_element([-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628]) == [[-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -110.18868196148436, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -3.4031380684866406, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], 73.33460451864283, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -3.196651036104, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-110.18868196148436, -22.045351968568852, -3.4031380684866406, -94.19039842971628, -22.045351968568852, 73.33460451864283, -3.196651036104, -94.19039842971628, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104]) == [[False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], 'aCPbIjyB', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], -21.852741451510866, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], 'vQqwG', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], -2.803921953211244, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], -3.196651036104, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], -3.4031380684866406, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104], -3.196651036104]", "assert insert_element([-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059], [-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059]) == [[-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059], -110.61432450803059, [-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059], -3.4031380684866406, [-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059], -94.19039842971628, [-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059], -3.4031380684866406, [-110.61432450803059, -3.4031380684866406, -94.19039842971628, -3.4031380684866406, -110.61432450803059], -110.61432450803059]", "assert insert_element([True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852]) == [[True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], None, [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], False, [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], 13, [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], -94.19039842971628, [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'hello', [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, -94.19039842971628, [False, True, False], 'hello', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([False, True, True, True, True, True, True, True], []) == [[], False, [], True, [], True, [], True, [], True, [], True, [], True, [], True]", "assert insert_element([-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628]) == [[-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -86.22192429070427, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -110.61432450803059, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -127.70265372891836, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.196651036104, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628], -94.19039842971628]", "assert insert_element([-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628]) == [[-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -3.196651036104, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628], -94.19039842971628]", "assert insert_element(['KKta', 'tesst', 'WDPtUNwkN', ''], ['KKta', 'tesst', 'WDPtUNwkN', '']) == [['KKta', 'tesst', 'WDPtUNwkN', ''], 'KKta', ['KKta', 'tesst', 'WDPtUNwkN', ''], 'tesst', ['KKta', 'tesst', 'WDPtUNwkN', ''], 'WDPtUNwkN', ['KKta', 'tesst', 'WDPtUNwkN', ''], '']", "assert insert_element(['tesst', '', ''], ['tesst', '', '']) == [['tesst', '', ''], 'tesst', ['tesst', '', ''], '', ['tesst', '', ''], '']", "assert insert_element([False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None]) == [[False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], False, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], None, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], True, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], 'KFgDNCb', [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], True, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], None, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], -3.196651036104, [False, None, True, 'KFgDNCb', True, None, -3.196651036104, None], None]", "assert insert_element([True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852]) == [[True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], None, [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], False, [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], 13, [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], True, [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], 'Ktest', [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], [False, True, False], [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], 'hello', [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], 'Kt', [True, None, False, 13, True, 'Ktest', [False, True, False], 'hello', 'Kt', -22.045351968568852], -22.045351968568852]", "assert insert_element([-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169]) == [[-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -93.5229606452169, [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -3.196651036104, [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -22.045351968568852, [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -94.19039842971628, [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -94.19039842971628, [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -3.196651036104, [-93.5229606452169, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104, -93.5229606452169], -93.5229606452169]", "assert insert_element([-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], [-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104]) == [[-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -2.556941464179389, [-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -22.045351968568852, [-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -94.19039842971628, [-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -94.19039842971628, [-2.556941464179389, -22.045351968568852, -94.19039842971628, -94.19039842971628, -3.196651036104], -3.196651036104]", "assert insert_element([-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628]) == [[-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], -3.196651036104, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], -22.045351968568852, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.19039842971628, -94.19039842971628, -94.19039842971628], -94.19039842971628]", "assert insert_element([], [27, 54, 81, -99, 44, -83, 11, 13, 48, -60]) == []", "assert insert_element([False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866]) == [[False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], 'aCPbIjyB', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], -21.852741451510866, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], 'vQqwG', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], -2.803921953211244, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], -3.196651036104, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], -3.4031380684866406, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], -3.196651036104, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, False, -3.4031380684866406, -3.196651036104, -21.852741451510866], -21.852741451510866]", "assert insert_element([[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]]) == [[[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], [True, False, True], [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], [False, False, False], [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], True, [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], None, [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], False, [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], [False, True], [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], [False, True, False], [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], 'a', [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], 'Kt', [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], -22.045351968568852, [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], 'Kt', [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], 'aa', [[True, False, True], [False, False, False], True, None, False, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa', [True, False, True]], [True, False, True]]", "assert insert_element([[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa']) == [[[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], [True, False, True], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], [False, False, False], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], True, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], None, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], False, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], 13, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], True, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], [False, True], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], [False, True, False], [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], 'a', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], 'Kt', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], -22.045351968568852, [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], 'Kt', [[True, False, True], [False, False, False], True, None, False, 13, True, [False, True], [False, True, False], 'a', 'Kt', -22.045351968568852, 'Kt', 'aa'], 'aa']", "assert insert_element([False], [False]) == [[False], False]", "assert insert_element([False, True, True, True, True, True, True, True, True], [False, True, True, True, True, True, True, True, True]) == [[False, True, True, True, True, True, True, True, True], False, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True, [False, True, True, True, True, True, True, True, True], True]", "assert insert_element([-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059]) == [[-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -86.22192429070427, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -110.61432450803059, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -127.70265372891836, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -3.196651036104, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -3.4031380684866406, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -22.045351968568852, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -94.19039842971628, [-22.045351968568852, -3.4031380684866406, -86.22192429070427, -3.4031380684866406, -94.19039842971628, -94.19039842971628, -22.045351968568852, -110.61432450803059, -127.70265372891836, -3.196651036104, -3.4031380684866406, -94.19039842971628, -22.045351968568852, -94.19039842971628, -110.61432450803059], -110.61432450803059]", "assert insert_element([-31.812214775047895, -22.045351968568852], [-31.812214775047895, -22.045351968568852]) == [[-31.812214775047895, -22.045351968568852], -31.812214775047895, [-31.812214775047895, -22.045351968568852], -22.045351968568852]", "assert insert_element([-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104]) == [[-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], -3.196651036104, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], -22.045351968568852, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], -94.81098849960834, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], -94.19039842971628, [-94.19039842971628, -3.196651036104, -22.045351968568852, -94.81098849960834, -94.19039842971628, -3.196651036104], -3.196651036104]", "assert insert_element([True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt']) == [[True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], True, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], None, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], False, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], 13, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], True, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], 'Ktest', [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], 'hello', [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], 'Kt', [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], -22.045351968568852, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], 13, [True, None, False, 13, True, 'Ktest', 'hello', 'Kt', -22.045351968568852, 13, 'Kt'], 'Kt']", "assert insert_element(['hello', '', 'WDPtUNwkN'], [-49.20601520980918, -34.97265878807312, -97.55747426953346, -2.556941464179389, 61.877729171555785, 39.82666015791048, -0.4221719048091046]) == [[-49.20601520980918, -34.97265878807312, -97.55747426953346, -2.556941464179389, 61.877729171555785, 39.82666015791048, -0.4221719048091046], 'hello', [-49.20601520980918, -34.97265878807312, -97.55747426953346, -2.556941464179389, 61.877729171555785, 39.82666015791048, -0.4221719048091046], '', [-49.20601520980918, -34.97265878807312, -97.55747426953346, -2.556941464179389, 61.877729171555785, 39.82666015791048, -0.4221719048091046], 'WDPtUNwkN']", "assert insert_element([False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855]) == [[False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], 'aCPbIjyB', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], -21.852741451510866, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], 'vQqwG', [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], -2.803921953211244, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], -3.196651036104, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], True, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], False, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], -3.4031380684866406, [False, 'aCPbIjyB', -21.852741451510866, 'vQqwG', -2.803921953211244, False, -3.196651036104, True, False, -3.4031380684866406, -3.6401136548919855], -3.6401136548919855]", "assert insert_element([-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], [-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628]) == [[-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], -94.70818325523408, [-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], -94.19039842971628, [-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], -3.4031380684866406, [-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], -22.045351968568852, [-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], 61.877729171555785, [-94.70818325523408, -94.19039842971628, -3.4031380684866406, -22.045351968568852, 61.877729171555785, -94.19039842971628], -94.19039842971628]", "assert insert_element([False, True, False, True, True, True, True], [False, True, False, True, True, True, True]) == [[False, True, False, True, True, True, True], False, [False, True, False, True, True, True, True], True, [False, True, False, True, True, True, True], False, [False, True, False, True, True, True, True], True, [False, True, False, True, True, True, True], True, [False, True, False, True, True, True, True], True, [False, True, False, True, True, True, True], True]", "assert insert_element([False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None]) == [[False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], False, [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], None, [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], True, [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], 'KgFgDNCb', [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], True, [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], None, [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], -3.196651036104, [False, None, True, 'KgFgDNCb', True, None, -3.196651036104, None], None]", "assert insert_element(['phsacmTi', 'WDPtUNwkN'], ['phsacmTi', 'WDPtUNwkN']) == [['phsacmTi', 'WDPtUNwkN'], 'phsacmTi', ['phsacmTi', 'WDPtUNwkN'], 'WDPtUNwkN']", "assert insert_element([-22.045351968568852, -82.8763282419803, -2.803921953211244, -25.644850042784427], 'hellvQqwGo') == ['hellvQqwGo', -22.045351968568852, 'hellvQqwGo', -82.8763282419803, 'hellvQqwGo', -2.803921953211244, 'hellvQqwGo', -25.644850042784427]", "assert insert_element([True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True]) == [[True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], True, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], None, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], False, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], 13, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], -94.19039842971628, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], True, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], [False, True], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], [False, True, False], [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], 'WDPtUNwkN', [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], 'Kt', [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], -22.045351968568852, [True, None, False, 13, -94.19039842971628, True, [False, True], [False, True, False], 'WDPtUNwkN', 'Kt', -22.045351968568852, True], True]", "assert insert_element([True, True], [True, True]) == [[True, True], True, [True, True], True]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to convert complex numbers to polar coordinates.\nassert convert(1) == (1.0, 0.0)\nYour code should pass the test:\nassert convert(1) == (1.0, 0.0)", "test_list": [ "assert convert(1) == (1.0, 0.0)", "assert convert(4) == (4.0,0.0)", "assert convert(5) == (5.0,0.0)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function that returns the number of integer elements in a given list.\nassert count_integer([1,2,'abc',1.2]) == 2\nYour code should pass the test:\nassert count_integer([1,2,'abc',1.2]) == 2", "test_list": [ "assert count_integer([1,2,'abc',1.2]) == 2", "assert count_integer([1,2,3]) == 3", "assert count_integer([1,1.2,4,5.1]) == 2", "assert count_integer([1, [2, 3], 'abc', {'4': 5}, [6, 7]]) == 1", "assert count_integer([]) == 0", "assert count_integer([[1, 2, 3], [4, 5, 6], [7, 8, 9]]) == 0", "assert count_integer([[1, 2], [3, 4], [5, 6], [7, 8]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [7, 8]]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[[9]]]]) == 0", "assert count_integer([1, 2, 3, 4, 5]) == 5", "assert count_integer([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9], [10, 11, 12]]]) == 0", "assert count_integer([1, [2, [3, [4, [5]]]]]) == 1", "assert count_integer([[[1], [2], [3]], [[4], [5], [6]], [[7], [8], [9]]]) == 0", "assert count_integer([[['a', 'b'], ['c', 'd']], [['e', 'f'], ['g', 'h']]]) == 0", "assert count_integer([[[1, 'a'], ['b', 2]], [[3, 'c'], ['d', 4]]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[[5, 6]]]]) == 0", "assert count_integer([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9], [10, 11, 12]], [[13, 14, 15], [16, 17, 18]]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6]], [[[9]]]]) == 0", "assert count_integer([11, 1]) == 2", "assert count_integer([11, 1, 1]) == 3", "assert count_integer([[1, 2], [1, 4], [5, 6], [7, 8], [5, 6]]) == 0", "assert count_integer([[1, 4], [5, 6], [7, 8], [5, 6]]) == 0", "assert count_integer([[3, 4], [5, 6], [7, 8]]) == 0", "assert count_integer([[3, 4, 3], [5, 6], [7, 8]]) == 0", "assert count_integer([[[1], [2], [3]], [[7], [8], [9]]]) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'f', 'g', 'abc', 'LBmjm', 'Us', 'abc', 'a']) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'f', 'g', 'abc', 'LBmjm', 'Us', 'abbc', 'a', 'g']) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6]], [], []]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [[1, 2, 3], [4, 6]], [[10, 11, 12]], [[10, 11, 12]]]) == 0", "assert count_integer([[[[9], [9]]], [[1, 2], [3, 4]], [[5, 6]], [[[9], [9]]], [[[9], [9]]]]) == 0", "assert count_integer([1, [2, 3, 2], 'abc', {'4': 5}, [6, 7]]) == 1", "assert count_integer([[[1], [2], [3]], [[7], [8], [9]], [[7], [8], [9]]]) == 0", "assert count_integer([1, [2, 3], [2, 7], 'abc', {'4': 5}, [6, 7]]) == 1", "assert count_integer([[[1, 'a'], ['b', 2], [1, 'a']], [[3, 'c'], ['d', 4], ['d', 4]]]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [[1, 2, 3], [4, 6]], [], [], []]) == 0", "assert count_integer([1, [2, 3], [2, 7], 'abc', {'4': 5}, [6, 7], [2, 3]]) == 1", "assert count_integer([1, [2, 3], [2, 7], 'abc', {'4': 5}, [7], [2, 3]]) == 1", "assert count_integer([[[1, 1], [], [1, 1], [2], []], [[7], [8], [9]], [[1, 1], [], [1, 1], [2], []], [[1, 1], [], [1, 1], [2], []], [[7], [8], [9]]]) == 0", "assert count_integer([[3, 4], [5, 6], [7], [7]]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [[1, 2, 3], [4, 6]], [], [], [], []]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g'], [[1, 2, 3], [4, 6]], [], []]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g'], [[1, 2, 3], [4, 6]], [], [], []]) == 0", "assert count_integer([[['a', 'b'], ['c', 'd'], ['a', 'b']], [['e', 'f'], ['g', 'h']]]) == 0", "assert count_integer([[[1, 2, 3], [4, 5, 6]]]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [[1, 2, 3], [4, 6]], [False, 3, 'kPNXDG', 9, ['e'], None], [], [True, True, False, False, False, False, False, False, True]]) == 0", "assert count_integer([[['cc', 'd'], ['a', 'b'], ['cc', 'd']], [['e', 'f'], ['g', 'h']]]) == 0", "assert count_integer([[[1, 2, 3], [4, 5, 6]], [[1, 2, 3], [4, 5, 6]]]) == 0", "assert count_integer([[2, 3], 'abc', {'4': 5}, [6, 7]]) == 0", "assert count_integer([1, 1]) == 2", "assert count_integer([[3, 4], [5, 6, 5], [5, 6, 5], [7, 11]]) == 0", "assert count_integer([[[1, 'a'], ['b', 2]], [[3, 'c'], ['dd', 4]], [[3, 'c'], ['dd', 4]]]) == 0", "assert count_integer([[[1], [2, 2], [3]], [[4], [5], [6]], [[7], [8], [9]]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[[5, 6]]], [[[5, 6]]]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [5, 6]], [], []]) == 0", "assert count_integer([[[1, 2], [3, 4]], [], [], [], []]) == 0", "assert count_integer([11, 1, 0]) == 3", "assert count_integer([[1, 2], [5, 6, 5], [1, 4], [5, 6, 5], [7, 8, 8], [5, 6, 5], [5, 6, 5]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6]], [], [[5, 6]], []]) == 0", "assert count_integer([[[1, 'a'], ['b', 2]], [[3, 'c'], ['dd', 4]]]) == 0", "assert count_integer([[[1, 2, 3], [4, 5], [4, 5]], [[1, 2, 3], [4, 5], [4, 5]], [[1, 2, 3], [4, 5], [4, 5]]]) == 0", "assert count_integer([[4], [5, 6, 5, 5], [5, 6, 5, 5], [5, 6, 5, 5], [7, 11]]) == 0", "assert count_integer([1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]) == 1", "assert count_integer([[3, 4], [5, 6], [], []]) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'f', 'g', 'abc', 'LBmjm', 'Us', 'abc', 'a', 'abc']) == 0", "assert count_integer([[4], [5, 6, 5, 5], [5, 6, 5, 5], [7, 11], [5, 6, 5, 5]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [5, 6], [5, 6]], [[5, 6], [5, 6], [5, 6]], [], []]) == 0", "assert count_integer([1]) == 1", "assert count_integer([[['c'], ['c'], ['d', 4]], [[1, 'a'], ['b', 2]], [['c'], ['c'], ['d', 4]]]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [[1, 2, 3], [4, 6]], [False, 3, 'kPNXDG', 9, ['e'], None], [], [True, True, False, False, False, False, False, False, False, True]]) == 0", "assert count_integer([[2, 4], [5, 6], [], []]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [], []]) == 0", "assert count_integer([[['e', 'f'], ['g', 'h'], ['e', 'f']], [['cc', 'd'], ['a', 'b'], ['cc', 'd']], [['e', 'f'], ['g', 'h'], ['e', 'f']], [['e', 'f'], ['g', 'h'], ['e', 'f']]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[5, 6], [7, 8]]]) == 0", "assert count_integer([[[[9], [9], [9]]], [], [[1, 2], [3, 4]], [], [[[9], [9], [9]]], [[[9], [9], [9]]]]) == 0", "assert count_integer([[[1, 2, 3], [4, 5, 6]], [[1, 2, 3], [4, 5, 6]], [[1, 2, 3], [4, 5, 6]]]) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'g', 'abc', 'LBmjm', 'Us', 'abc', 'a']) == 0", "assert count_integer([[[1, 2], [3, 4]], [], [True, False, False, True, False, True, True, True, True, False], [], [], []]) == 0", "assert count_integer([[[5, 6], [1, 2, 3], [5, 6], [1, 2, 3]], [[5, 6], [1, 2, 3], [5, 6], [1, 2, 3]], [[5, 6], [1, 2, 3], [5, 6], [1, 2, 3]]]) == 0", "assert count_integer([[['e', 'f'], ['g', '', 'h'], ['e', 'f']], [['a', 'bb'], ['cc', 'd'], ['a', 'bb'], ['cc', 'd']], [['a', 'bb'], ['cc', 'd'], ['a', 'bb'], ['cc', 'd']], [['e', 'f'], ['g', '', 'h'], ['e', 'f']], [['e', 'f'], ['g', '', 'h'], ['e', 'f']], [['e', 'f'], ['g', '', 'h'], ['e', 'f']], [['e', 'f'], ['g', '', 'h'], ['e', 'f']]]) == 0", "assert count_integer([[1, 2], [1, 4], [5, 6], [7, 8], [5, 6], [1, 2]]) == 0", "assert count_integer([[[1, 2]], [[5, 6], [7, 8]], [[[9]]]]) == 0", "assert count_integer([1, [2, 3], {'4': 13}, [2, 7], 'abc', {'4': 13}, 15, [6, 7]]) == 2", "assert count_integer([[1, 2], [1, 4], [5, 6], [5, 6]]) == 0", "assert count_integer([1, [2, 3], '', {'4': 5}, [6, 7]]) == 1", "assert count_integer([[[1, 2], [3, 4]], [True, False, False, True, False, True, True, True, True, False], [], [], []]) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'g', 'abc', 'LBmjm', 'Us', 'abc', 'a', 'SHDvQ']) == 0", "assert count_integer([[[1, 2], [8, 3, 4]], [[5, 6]], [[1, 2], [8, 3, 4]], [[[9]]], [[1, 2], [8, 3, 4]]]) == 0", "assert count_integer([[[1], [2], [3]], [[4], [5], [6]], [[7], [8], [9]], [[7], [8], [9]]]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[5, 6], [7, 8]], [[5, 6], [7, 8]]]) == 0", "assert count_integer([4]) == 1", "assert count_integer([[3, 4, 3], [5, 6], [7, 8], [5, 6]]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g', 'JUVQOY'], [[1, 2, 3], [4, 6]], [], ['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g', 'JUVQOY'], [], [[[59, 11, 30]], False, 11.194887701191348, -32.617974916245785, False, -30, 'h', False], []]) == 0", "assert count_integer([[['e', 'f'], ['hh', 'g', '', 'h']], [['e', 'f'], ['hh', 'g', '', 'h']], [['a', 'bb'], ['cc', 'd'], ['a', 'bb'], ['cc', 'd']], [['a', 'bb'], ['cc', 'd'], ['a', 'bb'], ['cc', 'd']], [['e', 'f'], ['hh', 'g', '', 'h']], [['e', 'f'], ['hh', 'g', '', 'h']], [['e', 'f'], ['hh', 'g', '', 'h']], [['e', 'f'], ['hh', 'g', '', 'h']]]) == 0", "assert count_integer([[[1, 2], [8, 3, 4]], [[5, 6]], [[1, 2], [8, 3, 4]], [[[9]]]]) == 0", "assert count_integer([11]) == 1", "assert count_integer([[[1], [2], [3]], [[7], [8], [9]], [[1], [2], [3]]]) == 0", "assert count_integer([[3, 4, 3], [5, 6], [7, 8], [5, 6], [5, 6]]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g'], [[1, 2, 3], [4, 6]], [True, False, False, True, True, False, True], [], []]) == 0", "assert count_integer([[[1, 2], [3, 4]], [[5, 6], [5, 6]], [], [], []]) == 0", "assert count_integer([[3, 11, 3], [5, 6], [3, 11, 3], [7, 8]]) == 0", "assert count_integer([[['a', 'b'], ['c', 'd']], [['c', 'e', 'f'], ['c', 'e', 'f'], ['g', 'h']], [['c', 'e', 'f'], ['c', 'e', 'f'], ['g', 'h']]]) == 0", "assert count_integer([[2], {'4': 5}, [6, 7]]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g'], [[1, 2, 3], [4, 6]], [True, False, False, True, True, False, True], [], ['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g']]) == 0", "assert count_integer([[[1, 2, 3], [4, 6]], [[1, 2, 3], [4, 6]], [[13, 10, 11, 12], [13, 10, 11, 12]], [[13, 10, 11, 12], [13, 10, 11, 12]]]) == 0", "assert count_integer([[], [], [], [False, [True, True], 8.958597109125321, [-32.617974916245785, -32.617974916245785], 'vxnCJetyq', -57.174621216111944, -51, 50, 11.194887701191348]]) == 0", "assert count_integer([[['e', 'f'], ['g', 'h']], [['e', 'f'], ['g', 'h']]]) == 0", "assert count_integer([-32.617974916245785, 56.289568976775286, 65.82961136010562, 65.82961136010562]) == 0", "assert count_integer([[[1, 2], [8, 3, 4]], [[5, 6]], [[1, 2], [8, 3, 4]], [[1, 2], [8, 3, 4]]]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g'], [[4, 6]], [True, False, False, True, True, False, True], [], [], []]) == 0", "assert count_integer([[4, 5, 6, 6], [1, 2, 3], [4, 5, 6, 6], [7, 8, 9], [1, 2, 3]]) == 0", "assert count_integer([['abbc', 'abbc', 'SHDvQ', 'JUVQOY', 'ysuXY', 'g'], [[4, 6]], [True, False, False, True, True, False, True], [], [], [True, True, False, True]]) == 0", "assert count_integer([[3, 4], [6, 6], [6, 6], [7, 8]]) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'g', 'abc', 'LBmjm', 'Us', 'abc', 'SHDvQ']) == 0", "assert count_integer([[[1, 1, 3], [4, 5, 6]]]) == 0", "assert count_integer(['kPNXDG', 'SHDvQ', 'f', 'g', 'abc', 'Us', 'abc', 'a', 'abc']) == 0", "assert count_integer([[[1], [2], [3]]]) == 0", "assert count_integer(['kPNXDG', 'aa', 'SHDvQ', 'f', 'g', 'abc', 'LBmjm', 'Us', 'abbc', 'a', 'g', 'a']) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list and length n, and generates all combinations (with repetition) of the elements of the list and returns a list with a tuple for each combination.\nassert combinations_colors( [\"Red\",\"Green\",\"Blue\"],1)==[('Red',), ('Green',), ('Blue',)]\nYour code should pass the test:\nassert combinations_colors( [\"Red\",\"Green\",\"Blue\"],1)==[('Red',), ('Green',), ('Blue',)]", "test_list": [ "assert combinations_colors( [\"Red\",\"Green\",\"Blue\"],1)==[('Red',), ('Green',), ('Blue',)]", "assert combinations_colors( [\"Red\",\"Green\",\"Blue\"],2)==[('Red', 'Red'), ('Red', 'Green'), ('Red', 'Blue'), ('Green', 'Green'), ('Green', 'Blue'), ('Blue', 'Blue')]", "assert combinations_colors( [\"Red\",\"Green\",\"Blue\"],3)==[('Red', 'Red', 'Red'), ('Red', 'Red', 'Green'), ('Red', 'Red', 'Blue'), ('Red', 'Green', 'Green'), ('Red', 'Green', 'Blue'), ('Red', 'Blue', 'Blue'), ('Green', 'Green', 'Green'), ('Green', 'Green', 'Blue'), ('Green', 'Blue', 'Blue'), ('Blue', 'Blue', 'Blue')]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function that takes in a non-negative number and returns the number of prime numbers less than the given non-negative number.\nassert count_Primes_nums(5) == 2\nYour code should pass the test:\nassert count_Primes_nums(5) == 2", "test_list": [ "assert count_Primes_nums(5) == 2", "assert count_Primes_nums(10) == 4", "assert count_Primes_nums(100) == 25", "assert count_Primes_nums(1000) == 168", "assert count_Primes_nums(1001) == 168", "assert count_Primes_nums(1002) == 168", "assert count_Primes_nums(1003) == 168", "assert count_Primes_nums(999) == 168", "assert count_Primes_nums(True) == 0", "assert count_Primes_nums(False) == 0", "assert count_Primes_nums(998) == 168", "assert count_Primes_nums(65) == 18", "assert count_Primes_nums(66) == 18", "assert count_Primes_nums(67) == 18", "assert count_Primes_nums(997) == 167", "assert count_Primes_nums(68) == 19", "assert count_Primes_nums(64) == 18", "assert count_Primes_nums(1004) == 168", "assert count_Primes_nums(1005) == 168", "assert count_Primes_nums(99) == 25", "assert count_Primes_nums(996) == 167", "assert count_Primes_nums(63) == 18", "assert count_Primes_nums(995) == 167", "assert count_Primes_nums(1006) == 168", "assert count_Primes_nums(1007) == 168", "assert count_Primes_nums(1008) == 168", "assert count_Primes_nums(62) == 18", "assert count_Primes_nums(994) == 167", "assert count_Primes_nums(86) == 23", "assert count_Primes_nums(1009) == 168", "assert count_Primes_nums(85) == 23", "assert count_Primes_nums(61) == 17", "assert count_Primes_nums(87) == 23", "assert count_Primes_nums(60) == 17", "assert count_Primes_nums(44) == 14", "assert count_Primes_nums(1010) == 169", "assert count_Primes_nums(1011) == 169", "assert count_Primes_nums(45) == 14", "assert count_Primes_nums(59) == 16", "assert count_Primes_nums(80) == 22", "assert count_Primes_nums(100) == 25", "assert count_Primes_nums(69) == 19", "assert count_Primes_nums(70) == 19", "assert count_Primes_nums(71) == 19", "assert count_Primes_nums(98) == 25", "assert count_Primes_nums(97) == 24", "assert count_Primes_nums(79) == 21", "assert count_Primes_nums(1012) == 169", "assert count_Primes_nums(2) == 0", "assert count_Primes_nums(1013) == 169", "assert count_Primes_nums(84) == 23", "assert count_Primes_nums(56) == 16", "assert count_Primes_nums(1) == 0", "assert count_Primes_nums(0) == 0", "assert count_Primes_nums(81) == 22", "assert count_Primes_nums(78) == 21", "assert count_Primes_nums(43) == 13", "assert count_Primes_nums(1014) == 170", "assert count_Primes_nums(72) == 20", "assert count_Primes_nums(1015) == 170", "assert count_Primes_nums(90) == 24", "assert count_Primes_nums(42) == 13", "assert count_Primes_nums(41) == 12", "assert count_Primes_nums(46) == 14", "assert count_Primes_nums(88) == 23", "assert count_Primes_nums(3) == 1", "assert count_Primes_nums(1016) == 170", "assert count_Primes_nums(57) == 16", "assert count_Primes_nums(4) == 2", "assert count_Primes_nums(38) == 12", "assert count_Primes_nums(993) == 167", "assert count_Primes_nums(1017) == 170", "assert count_Primes_nums(77) == 21", "assert count_Primes_nums(101) == 25", "assert count_Primes_nums(1018) == 170", "assert count_Primes_nums(83) == 22", "assert count_Primes_nums(82) == 22", "assert count_Primes_nums(76) == 21", "assert count_Primes_nums(58) == 16", "assert count_Primes_nums(73) == 20", "assert count_Primes_nums(39) == 12", "assert count_Primes_nums(74) == 21", "assert count_Primes_nums(89) == 23", "assert count_Primes_nums(40) == 12", "assert count_Primes_nums(75) == 21", "assert count_Primes_nums(1019) == 170", "assert count_Primes_nums(96) == 24", "assert count_Primes_nums(47) == 14", "assert count_Primes_nums(94) == 24", "assert count_Primes_nums(95) == 24", "assert count_Primes_nums(55) == 16", "assert count_Primes_nums(48) == 15", "assert count_Primes_nums(5) == 2", "assert count_Primes_nums(54) == 16", "assert count_Primes_nums(1020) == 171", "assert count_Primes_nums(102) == 26", "assert count_Primes_nums(53) == 15", "assert count_Primes_nums(91) == 24", "assert count_Primes_nums(992) == 167", "assert count_Primes_nums(1021) == 171", "assert count_Primes_nums(991) == 166", "assert count_Primes_nums(11) == 4", "assert count_Primes_nums(92) == 24", "assert count_Primes_nums(37) == 11" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in two numbers and returns a tuple with the second number and then the first number.\nassert swap_numbers(10,20)==(20,10)\nYour code should pass the test:\nassert swap_numbers(10,20)==(20,10)", "test_list": [ "assert swap_numbers(10,20)==(20,10)", "assert swap_numbers(15,17)==(17,15)", "assert swap_numbers(100,200)==(200,100)", "assert swap_numbers(-5, -10) == (-10, -5)", "assert swap_numbers(-100, -200) == (-200, -100)", "assert swap_numbers(-7, -3) == (-3, -7)", "assert swap_numbers(3.14, 2.718) == (2.718, 3.14)", "assert swap_numbers(1.0, -0.5) == (-0.5, 1.0)", "assert swap_numbers(-100.5, 200.75) == (200.75, -100.5)", "assert swap_numbers(5, 5) == (5, 5)", "assert swap_numbers(-10, -10) == (-10, -10)", "assert swap_numbers(1.23, 1.23) == (1.23, 1.23)", "assert swap_numbers(2.718, -0.5) == (-0.5, 2.718)", "assert swap_numbers(3.5839953593217544, 2.718) == (2.718, 3.5839953593217544)", "assert swap_numbers(5, -10) == (-10, 5)", "assert swap_numbers(-5, -11) == (-11, -5)", "assert swap_numbers(-8, -9) == (-9, -8)", "assert swap_numbers(-8, -10) == (-10, -8)", "assert swap_numbers(-8, -8) == (-8, -8)", "assert swap_numbers(1.0, 200.75) == (200.75, 1.0)", "assert swap_numbers(200.75, 200.75) == (200.75, 200.75)", "assert swap_numbers(-5, -8) == (-8, -5)", "assert swap_numbers(-100, -100) == (-100, -100)", "assert swap_numbers(200.0168272694265, 200.75) == (200.75, 200.0168272694265)", "assert swap_numbers(6, -9) == (-9, 6)", "assert swap_numbers(1.7816735844630143, -0.5) == (-0.5, 1.7816735844630143)", "assert swap_numbers(-5, -9) == (-9, -5)", "assert swap_numbers(-100.5, 1.7816735844630143) == (1.7816735844630143, -100.5)", "assert swap_numbers(1.110891875212232, 200.0168272694265) == (200.0168272694265, 1.110891875212232)", "assert swap_numbers(-4, -11) == (-11, -4)", "assert swap_numbers(-5, -4) == (-4, -5)", "assert swap_numbers(-5, -5) == (-5, -5)", "assert swap_numbers(-102, -10) == (-10, -102)", "assert swap_numbers(0.9096439911291, 200.75) == (200.75, 0.9096439911291)", "assert swap_numbers(-0.5, 200.75) == (200.75, -0.5)", "assert swap_numbers(-8, -5) == (-5, -8)", "assert swap_numbers(-101, -100) == (-100, -101)", "assert swap_numbers(6, -11) == (-11, 6)", "assert swap_numbers(-9, -9) == (-9, -9)", "assert swap_numbers(-11, -11) == (-11, -11)", "assert swap_numbers(-4, -4) == (-4, -4)", "assert swap_numbers(-7, -10) == (-10, -7)", "assert swap_numbers(-11, -100) == (-100, -11)", "assert swap_numbers(-100.5, -0.6246510737114712) == (-0.6246510737114712, -100.5)", "assert swap_numbers(1.110891875212232, 199.9586278490392) == (199.9586278490392, 1.110891875212232)", "assert swap_numbers(199.80254729935734, 200.75) == (200.75, 199.80254729935734)", "assert swap_numbers(200.0168272694265, 200.0168272694265) == (200.0168272694265, 200.0168272694265)", "assert swap_numbers(-10, -200) == (-200, -10)", "assert swap_numbers(1.110891875212232, -100.5) == (-100.5, 1.110891875212232)", "assert swap_numbers(-4, -10) == (-10, -4)", "assert swap_numbers(-4, -12) == (-12, -4)", "assert swap_numbers(-0.34485327561456525, -0.5) == (-0.5, -0.34485327561456525)", "assert swap_numbers(-4, -100) == (-100, -4)", "assert swap_numbers(-10, -12) == (-12, -10)", "assert swap_numbers(5, -3) == (-3, 5)", "assert swap_numbers(-7, -4) == (-4, -7)", "assert swap_numbers(-8, -7) == (-7, -8)", "assert swap_numbers(2.490084004197559, 1.7816735844630143) == (1.7816735844630143, 2.490084004197559)", "assert swap_numbers(201.10785660080364, 200.75) == (200.75, 201.10785660080364)", "assert swap_numbers(-10, -8) == (-8, -10)", "assert swap_numbers(-10, -11) == (-11, -10)", "assert swap_numbers(109.06389054379079, 200.75) == (200.75, 109.06389054379079)", "assert swap_numbers(1.110891875212232, 167.10351385707486) == (167.10351385707486, 1.110891875212232)", "assert swap_numbers(-102, -101) == (-101, -102)", "assert swap_numbers(2.1330119070118485, -100.5) == (-100.5, 2.1330119070118485)", "assert swap_numbers(True, 1.23) == (1.23, True)", "assert swap_numbers(124.61838179160847, 200.75) == (200.75, 124.61838179160847)", "assert swap_numbers(-100, -10) == (-10, -100)", "assert swap_numbers(-9, -10) == (-10, -9)", "assert swap_numbers(-12, -10) == (-10, -12)", "assert swap_numbers(3.5839953593217544, -100.5) == (-100.5, 3.5839953593217544)", "assert swap_numbers(2.1330119070118485, 124.14572872953535) == (124.14572872953535, 2.1330119070118485)", "assert swap_numbers(2.718, 200.0168272694265) == (200.0168272694265, 2.718)", "assert swap_numbers(-13, -10) == (-10, -13)", "assert swap_numbers(2.1330119070118485, 200.75) == (200.75, 2.1330119070118485)", "assert swap_numbers(-102, -8) == (-8, -102)", "assert swap_numbers(-5, -13) == (-13, -5)", "assert swap_numbers(3.5839953593217544, 199.80254729935734) == (199.80254729935734, 3.5839953593217544)", "assert swap_numbers(0.9096439911291, 198.1727902022114) == (198.1727902022114, 0.9096439911291)", "assert swap_numbers(-10, -4) == (-4, -10)", "assert swap_numbers(201.10785660080364, 201.10785660080364) == (201.10785660080364, 201.10785660080364)", "assert swap_numbers(-13, -12) == (-12, -13)", "assert swap_numbers(-13, -13) == (-13, -13)", "assert swap_numbers(124.61838179160847, -0.24953757954867695) == (-0.24953757954867695, 124.61838179160847)", "assert swap_numbers(-12, -12) == (-12, -12)", "assert swap_numbers(-5, 6) == (6, -5)", "assert swap_numbers(2.22631597518509, 1.7816735844630143) == (1.7816735844630143, 2.22631597518509)", "assert swap_numbers(-9, -8) == (-8, -9)", "assert swap_numbers(-10, -9) == (-9, -10)", "assert swap_numbers(199.80254729935734, 247.7275752312867) == (247.7275752312867, 199.80254729935734)", "assert swap_numbers(1.430105248193135, 200.75) == (200.75, 1.430105248193135)", "assert swap_numbers(2.154236201660944, 2.4273044050861996) == (2.4273044050861996, 2.154236201660944)", "assert swap_numbers(1.7816735844630143, 1.7816735844630143) == (1.7816735844630143, 1.7816735844630143)", "assert swap_numbers(-0.6246510737114712, 1.7816735844630143) == (1.7816735844630143, -0.6246510737114712)", "assert swap_numbers(False, 266.8266128826292) == (266.8266128826292, False)", "assert swap_numbers(4.42809307831693, 2.718) == (2.718, 4.42809307831693)", "assert swap_numbers(-7, -12) == (-12, -7)", "assert swap_numbers(124.61838179160847, 2.4273044050861996) == (2.4273044050861996, 124.61838179160847)", "assert swap_numbers(-13, -9) == (-9, -13)", "assert swap_numbers(-12, -11) == (-11, -12)", "assert swap_numbers(-0.6246510737114712, -0.6246510737114712) == (-0.6246510737114712, -0.6246510737114712)", "assert swap_numbers(-200, -11) == (-11, -200)", "assert swap_numbers(200.68795799999515, 200.75) == (200.75, 200.68795799999515)", "assert swap_numbers(266.8266128826292, 266.8266128826292) == (266.8266128826292, 266.8266128826292)", "assert swap_numbers(-7, -13) == (-13, -7)", "assert swap_numbers(0.4054844111976208, -0.5) == (-0.5, 0.4054844111976208)", "assert swap_numbers(1.7816735844630143, 2.490084004197559) == (2.490084004197559, 1.7816735844630143)", "assert swap_numbers(4, 5) == (5, 4)", "assert swap_numbers(-5, -101) == (-101, -5)", "assert swap_numbers(-5, -100) == (-100, -5)", "assert swap_numbers(5, -9) == (-9, 5)", "assert swap_numbers(-11, -10) == (-10, -11)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to maximize the given two tuples.\nassert maximize_elements(((1, 3), (4, 5), (2, 9), (1, 10)), ((6, 7), (3, 9), (1, 1), (7, 3))) == ((6, 7), (4, 9), (2, 9), (7, 10))\nYour code should pass the test:\nassert maximize_elements(((1, 3), (4, 5), (2, 9), (1, 10)), ((6, 7), (3, 9), (1, 1), (7, 3))) == ((6, 7), (4, 9), (2, 9), (7, 10))", "test_list": [ "assert maximize_elements(((1, 3), (4, 5), (2, 9), (1, 10)), ((6, 7), (3, 9), (1, 1), (7, 3))) == ((6, 7), (4, 9), (2, 9), (7, 10))", "assert maximize_elements(((2, 4), (5, 6), (3, 10), (2, 11)), ((7, 8), (4, 10), (2, 2), (8, 4))) == ((7, 8), (5, 10), (3, 10), (8, 11))", "assert maximize_elements(((3, 5), (6, 7), (4, 11), (3, 12)), ((8, 9), (5, 11), (3, 3), (9, 5))) == ((8, 9), (6, 11), (4, 11), (9, 12))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8)), ((8, 7), (6, 5), (4, 3), (2, 1))) == ((8, 7), (6, 5), (5, 6), (7, 8))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8)), ((1, 2), (5, 6), (7, 8), (7, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8)), ((1, 2), (3, 4), (5, 6), (7, 8))) == ((1, 2), (3, 4), (5, 6), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (7, 8)), ((1, 2), (5, 6), (7, 8), (7, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (7, 8)), ((1, 2), (3, 4), (5, 6), (7, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8)), ((1, 2), (5, 6), (7, 8))) == ((1, 2), (5, 6), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (7, 8)), ((1, 2), (4, 6), (7, 8), (7, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (3, 8)), ((1, 2), (4, 6), (7, 8), (7, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (1, 2)), ((1, 2), (4, 6), (7, 8), (7, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (3, 8)), ((1, 2), (5, 6), (7, 8), (3, 8))) == ((1, 2), (5, 6), (7, 8), (3, 8))", "assert maximize_elements(((1, 2), (4, 6), (7, 8), (7, 8)), ((1, 2), (4, 6), (7, 8), (7, 8))) == ((1, 2), (4, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (4, 6), (7, 8), (7, 8)), ((1, 2), (5, 6), (7, 8), (3, 8))) == ((1, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (3, 8), (7, 8)), ((1, 2), (5, 6), (7, 8), (3, 8), (7, 8))) == ((1, 2), (5, 6), (7, 8), (3, 8), (7, 8))", "assert maximize_elements(((8, 7), (6, 5), (4, 3), (2, 1)), ((8, 7), (6, 5), (4, 3), (2, 1))) == ((8, 7), (6, 5), (4, 3), (2, 1))", "assert maximize_elements(((1, 2), (4, 6), (7, 8), (7, 8)), ((1, 2), (4, 4), (7, 8), (7, 8))) == ((1, 2), (4, 6), (7, 8), (7, 8))", "assert maximize_elements(((5, 6), (7, 8), (7, 8)), ((5, 6), (7, 8), (5, 6))) == ((5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (4, 4), (7, 8), (7, 8)), ((1, 2), (4, 4), (7, 8), (7, 8))) == ((1, 2), (4, 4), (7, 8), (7, 8))", "assert maximize_elements(((5, 6), (5, 6)), ((5, 6), (5, 6))) == ((5, 6), (5, 6))", "assert maximize_elements(((5, 6), (7, 8), (5, 6)), ((5, 6), (7, 8), (5, 6))) == ((5, 6), (7, 8), (5, 6))", "assert maximize_elements(((5, 6), (7, 8), (7, 8)), ((5, 3), (7, 8), (5, 6))) == ((5, 6), (7, 8), (7, 8))", "assert maximize_elements(((7, 8), (5, 6), (7, 8)), ((7, 8), (5, 6), (7, 8))) == ((7, 8), (5, 6), (7, 8))", "assert maximize_elements(((1, 2), (7, 8)), ((1, 2), (7, 8))) == ((1, 2), (7, 8))", "assert maximize_elements(((7, 8), (5, 6), (7, 8), (7, 8)), ((7, 8), (5, 6), (7, 8), (7, 8))) == ((7, 8), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (1, 2)), ((1, 2), (5, 6), (7, 8), (1, 2))) == ((1, 2), (5, 6), (7, 8), (1, 2))", "assert maximize_elements(((5, 6), (7, 8), (5, 6)), ((5, 6), (7, 5), (5, 6))) == ((5, 6), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (4, 6), (7, 8)), ((1, 2), (4, 6), (7, 8))) == ((1, 2), (4, 6), (7, 8))", "assert maximize_elements(((5, 2), (5, 6), (7, 8), (7, 8)), ((5, 2), (5, 6), (7, 8), (7, 8))) == ((5, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (5, 6)), ((1, 2), (3, 4), (5, 6), (7, 8), (5, 6))) == ((1, 2), (3, 4), (5, 6), (7, 8), (5, 6))", "assert maximize_elements(((5, 6), (7, 8), (5, 6)), ((3, 6), (7, 8), (5, 6))) == ((5, 6), (7, 8), (5, 6))", "assert maximize_elements(((3, 5), (3, 4), (5, 6), (7, 8)), ((3, 5), (3, 4), (5, 6), (7, 8))) == ((3, 5), (3, 4), (5, 6), (7, 8))", "assert maximize_elements(((5, 6), (7, 8)), ((5, 6), (7, 8))) == ((5, 6), (7, 8))", "assert maximize_elements(((5, 6), (7, 5), (5, 6), (7, 5)), ((5, 6), (7, 5), (5, 6), (7, 5))) == ((5, 6), (7, 5), (5, 6), (7, 5))", "assert maximize_elements(((1, 2), (4, 6), (7, 8)), ((1, 2), (4, 6), (4, 6))) == ((1, 2), (4, 6), (7, 8))", "assert maximize_elements(((8, 7), (6, 5), (7, 3), (2, 1)), ((8, 7), (6, 5), (4, 3), (2, 1))) == ((8, 7), (6, 5), (7, 3), (2, 1))", "assert maximize_elements(((5, 6), (7, 5), (5, 6), (7, 5)), ((4, 6), (7, 5), (5, 6), (7, 5))) == ((5, 6), (7, 5), (5, 6), (7, 5))", "assert maximize_elements(((1, 2), (4, 5), (7, 8), (7, 8), (7, 8), (7, 8)), ((1, 2), (4, 5), (7, 8), (7, 8), (7, 8), (7, 8))) == ((1, 2), (4, 5), (7, 8), (7, 8), (7, 8), (7, 8))", "assert maximize_elements(((5, 6), (7, 5), (5, 6)), ((5, 6), (7, 5), (5, 6))) == ((5, 6), (7, 5), (5, 6))", "assert maximize_elements(((3, 5), (3, 4), (5, 6)), ((3, 5), (3, 4), (5, 6))) == ((3, 5), (3, 4), (5, 6))", "assert maximize_elements(((5, 3), (7, 8), (5, 6)), ((5, 3), (7, 8), (5, 6))) == ((5, 3), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (4, 6), (4, 6)), ((1, 2), (4, 6), (4, 6))) == ((1, 2), (4, 6), (4, 6))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (7, 8)), ((7, 7), (8, 7), (6, 5), (4, 3), (2, 1))) == ((7, 7), (8, 7), (6, 6), (7, 8), (7, 8))", "assert maximize_elements(((7, 8), (5, 6), (7, 8), (7, 8), (5, 6)), ((7, 8), (5, 6), (7, 8), (7, 8), (5, 6))) == ((7, 8), (5, 6), (7, 8), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8)), ((6, 5), (4, 3), (2, 1), (2, 1))) == ((6, 5), (4, 4), (5, 6), (7, 8))", "assert maximize_elements(((2, 2), (2, 4), (5, 6), (7, 8)), ((1, 2), (5, 7), (7, 8), (7, 8))) == ((2, 2), (5, 7), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (1, 2)), ((2, 2), (5, 6), (7, 8), (1, 2))) == ((2, 2), (5, 6), (7, 8), (1, 2))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (7, 8), (5, 6)), ((7, 7), (8, 7), (6, 5), (4, 3), (2, 1), (8, 7))) == ((7, 7), (8, 7), (6, 6), (7, 8), (7, 8), (8, 7))", "assert maximize_elements(((1, 2), (3, 2), (5, 6), (7, 8), (7, 8)), ((1, 2), (3, 4), (5, 6), (7, 8), (7, 8))) == ((1, 2), (3, 4), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((8, 7), (6, 5), (4, 3), (2, 1)), ((1, 2), (3, 4), (5, 6), (7, 8))) == ((8, 7), (6, 5), (5, 6), (7, 8))", "assert maximize_elements(((2, 2), (2, 4), (5, 6), (7, 8)), ((2, 2), (2, 4), (5, 6), (7, 8))) == ((2, 2), (2, 4), (5, 6), (7, 8))", "assert maximize_elements(((4, 6), (7, 5), (5, 6), (7, 5)), ((5, 6), (7, 5), (5, 6), (7, 5))) == ((5, 6), (7, 5), (5, 6), (7, 5))", "assert maximize_elements(((1, 2), (4, 6), (7, 8), (4, 6)), ((1, 2), (4, 6), (7, 8), (4, 6))) == ((1, 2), (4, 6), (7, 8), (4, 6))", "assert maximize_elements(((2, 2), (5, 6), (7, 8), (1, 2)), ((2, 2), (5, 6), (7, 8), (1, 2))) == ((2, 2), (5, 6), (7, 8), (1, 2))", "assert maximize_elements(((3, 4), (5, 6), (7, 8), (7, 8), (5, 6), (7, 8)), ((7, 7), (8, 7), (6, 5), (4, 3), (2, 1), (8, 7))) == ((7, 7), (8, 7), (7, 8), (7, 8), (5, 6), (8, 8))", "assert maximize_elements(((5, 6), (7, 5)), ((5, 6), (7, 5))) == ((5, 6), (7, 5))", "assert maximize_elements(((2, 2), (2, 4), (5, 4), (7, 8)), ((2, 2), (2, 4), (5, 6), (7, 8))) == ((2, 2), (2, 4), (5, 6), (7, 8))", "assert maximize_elements(((5, 6), (7, 8), (7, 8)), ((5, 6), (7, 8), (7, 8))) == ((5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (3, 4)), ((1, 2), (3, 4), (5, 6), (7, 8), (3, 4))) == ((1, 2), (3, 4), (5, 6), (7, 8), (3, 4))", "assert maximize_elements(((6, 5), (2, 1), (2, 1)), ((6, 5), (2, 1), (2, 1))) == ((6, 5), (2, 1), (2, 1))", "assert maximize_elements(((5, 6), (7, 8), (7, 8), (5, 6)), ((5, 6), (7, 8), (7, 8), (5, 6))) == ((5, 6), (7, 8), (7, 8), (5, 6))", "assert maximize_elements(((1, 5), (4, 6), (7, 8), (7, 8)), ((1, 2), (4, 6), (7, 8), (7, 8))) == ((1, 5), (4, 6), (7, 8), (7, 8))", "assert maximize_elements(((6, 3), (7, 8), (5, 6)), ((5, 3), (7, 8), (5, 6))) == ((6, 3), (7, 8), (5, 6))", "assert maximize_elements(((1, 6), (7, 8), (5, 6)), ((3, 6), (7, 8), (5, 6))) == ((3, 6), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (3, 4), (3, 4)), ((1, 2), (3, 4), (5, 6), (7, 8), (3, 4), (1, 2))) == ((1, 2), (3, 4), (5, 6), (7, 8), (3, 4), (3, 4))", "assert maximize_elements(((3, 6), (7, 8), (5, 6)), ((3, 6), (7, 8), (5, 6))) == ((3, 6), (7, 8), (5, 6))", "assert maximize_elements(((6, 3), (7, 8), (5, 6), (7, 8)), ((5, 3), (7, 8), (5, 6), (5, 3))) == ((6, 3), (7, 8), (5, 6), (7, 8))", "assert maximize_elements(((1, 2), (4, 6), (4, 6), (4, 6)), ((1, 2), (4, 6), (4, 6), (4, 6))) == ((1, 2), (4, 6), (4, 6), (4, 6))", "assert maximize_elements(((5, 2), (7, 8), (5, 6), (7, 8), (7, 8)), ((5, 2), (5, 6), (7, 8), (7, 8), (7, 8))) == ((5, 2), (7, 8), (7, 8), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (4, 6), (7, 8), (7, 8), (1, 2)), ((1, 2), (4, 6), (7, 8), (7, 8), (1, 2))) == ((1, 2), (4, 6), (7, 8), (7, 8), (1, 2))", "assert maximize_elements(((5, 3), (7, 8)), ((5, 3), (7, 8))) == ((5, 3), (7, 8))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (7, 8)), ((1, 2), (3, 4), (5, 6), (7, 8), (7, 8))) == ((1, 2), (3, 4), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (5, 6)), ((1, 1), (3, 4), (5, 6), (7, 8), (5, 6))) == ((1, 2), (3, 4), (5, 6), (7, 8), (5, 6))", "assert maximize_elements(((6, 3), (7, 8), (5, 6)), ((6, 3), (7, 8), (5, 6))) == ((6, 3), (7, 8), (5, 6))", "assert maximize_elements(((5, 6), (7, 5), (5, 6), (7, 5)), ((5, 6), (7, 5), (5, 6), (5, 6))) == ((5, 6), (7, 5), (5, 6), (7, 6))", "assert maximize_elements(((1, 2), (1, 2)), ((1, 2), (1, 2))) == ((1, 2), (1, 2))", "assert maximize_elements(((3, 4), (5, 6), (7, 8), (7, 8), (5, 6), (7, 8), (7, 8)), ((3, 4), (5, 6), (7, 8), (7, 2), (7, 8), (5, 6), (7, 8))) == ((3, 4), (5, 6), (7, 8), (7, 8), (7, 8), (7, 8), (7, 8))", "assert maximize_elements(((5, 6), (7, 8), (5, 6)), ((5, 6), (5, 6), (5, 6))) == ((5, 6), (7, 8), (5, 6))", "assert maximize_elements(((4, 6), (7, 5), (5, 6), (7, 5)), ((4, 6), (7, 5), (5, 6), (7, 5))) == ((4, 6), (7, 5), (5, 6), (7, 5))", "assert maximize_elements(((3, 2), (5, 6), (7, 8), (1, 2)), ((2, 2), (5, 6), (7, 8), (1, 2))) == ((3, 2), (5, 6), (7, 8), (1, 2))", "assert maximize_elements(((1, 2), (5, 6), (7, 8), (7, 8), (5, 6)), ((1, 2), (5, 6), (7, 8), (7, 8), (5, 6))) == ((1, 2), (5, 6), (7, 8), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (4, 6), (7, 8), (4, 6), (4, 6), (1, 2)), ((1, 2), (4, 6), (7, 8), (4, 6), (4, 6), (1, 2))) == ((1, 2), (4, 6), (7, 8), (4, 6), (4, 6), (1, 2))", "assert maximize_elements(((1, 2), (5, 6), (1, 2)), ((1, 2), (5, 6), (7, 8))) == ((1, 2), (5, 6), (7, 8))", "assert maximize_elements(((4, 6), (7, 3), (5, 6), (7, 5)), ((4, 6), (7, 5), (5, 6), (7, 5))) == ((4, 6), (7, 5), (5, 6), (7, 5))", "assert maximize_elements(((5, 6), (7, 8), (1, 2), (5, 6)), ((2, 2), (5, 6), (7, 8), (1, 2))) == ((5, 6), (7, 8), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (3, 4), (5, 6), (7, 8), (3, 4), (1, 2)), ((1, 2), (3, 4), (5, 6), (7, 8), (3, 4), (1, 2))) == ((1, 2), (3, 4), (5, 6), (7, 8), (3, 4), (1, 2))", "assert maximize_elements(((2, 2), (5, 6), (7, 8), (1, 2)), ((2, 2), (5, 6), (7, 6), (1, 2))) == ((2, 2), (5, 6), (7, 8), (1, 2))", "assert maximize_elements(((4, 6), (4, 6)), ((1, 2), (4, 6))) == ((4, 6), (4, 6))", "assert maximize_elements(((1, 6), (7, 8), (5, 6)), ((1, 6), (7, 8), (5, 6))) == ((1, 6), (7, 8), (5, 6))", "assert maximize_elements(((8, 7), (6, 5), (4, 3), (2, 1), (8, 7)), ((8, 7), (6, 5), (4, 3), (2, 1), (8, 7))) == ((8, 7), (6, 5), (4, 3), (2, 1), (8, 7))", "assert maximize_elements(((6, 5), (2, 1), (2, 1)), ((6, 5), (2, 2), (2, 1))) == ((6, 5), (2, 2), (2, 1))", "assert maximize_elements(((1, 2), (3, 4), (7, 8)), ((6, 5), (2, 1), (2, 1))) == ((6, 5), (3, 4), (7, 8))", "assert maximize_elements(((3, 2), (5, 6), (1, 2)), ((2, 2), (7, 8), (1, 2))) == ((3, 2), (7, 8), (1, 2))", "assert maximize_elements(((5, 3), (7, 8), (4, 6)), ((5, 3), (7, 8), (5, 6))) == ((5, 3), (7, 8), (5, 6))", "assert maximize_elements(((1, 1), (3, 4), (5, 6), (7, 8), (5, 6)), ((1, 1), (3, 4), (5, 6), (7, 8), (5, 6))) == ((1, 1), (3, 4), (5, 6), (7, 8), (5, 6))", "assert maximize_elements(((1, 2), (5, 6), (5, 6)), ((1, 2), (5, 6), (7, 8))) == ((1, 2), (5, 6), (7, 8))", "assert maximize_elements(((4, 6), (7, 3), (7, 5)), ((4, 6), (7, 3), (7, 5))) == ((4, 6), (7, 3), (7, 5))", "assert maximize_elements(((1, 2), (3, 5), (5, 6), (7, 8)), ((1, 2), (3, 5), (5, 6), (7, 8))) == ((1, 2), (3, 5), (5, 6), (7, 8))", "assert maximize_elements(((6, 5), (4, 3), (2, 1), (2, 1)), ((6, 5), (4, 3), (2, 1), (2, 1))) == ((6, 5), (4, 3), (2, 1), (2, 1))", "assert maximize_elements(((1, 2), (4, 6), (7, 8)), ((1, 2), (7, 8), (7, 8))) == ((1, 2), (7, 8), (7, 8))", "assert maximize_elements(((7, 2), (3, 4), (5, 6), (7, 8)), ((1, 2), (5, 6), (7, 8), (7, 8))) == ((7, 2), (5, 6), (7, 8), (7, 8))", "assert maximize_elements(((8, 7), (6, 5), (7, 3), (2, 1)), ((8, 7), (6, 5), (7, 3), (2, 1))) == ((8, 7), (6, 5), (7, 3), (2, 1))", "assert maximize_elements(((5, 2), (5, 6), (7, 8), (7, 8)), ((5, 2), (5, 6), (7, 7), (7, 8))) == ((5, 2), (5, 6), (7, 8), (7, 8))" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth newman–shanks–williams prime number.\nassert newman_prime(3) == 7\nYour code should pass the test:\nassert newman_prime(3) == 7", "test_list": [ "assert newman_prime(3) == 7", "assert newman_prime(4) == 17", "assert newman_prime(5) == 41", "assert newman_prime(100) == 94741125149636933417873079920900017937", "assert newman_prime(0) == 1", "assert newman_prime(1) == 1", "assert newman_prime(1234) == 11070461126469704445857205916408248777637956359108202247215567087245825411034542077193285208673662845530406197378038600783464071372920693359444016222180381389905980991065467353785957406443700192367685007467808265165494745282947594232503881714323669003012421472088007464953255009113988416485898248182055555334568195832616562650493206887176361720012543749370964796592752997488572076292805796271780579414934813536994670467398341684200726289390769416703100723934120098628466883", "assert newman_prime(99) == 39243058951466341909004733505464609607", "assert newman_prime(False) == 1", "assert newman_prime(1235) == 26726457393247291889557573546484894579129028929470427166997651185354021529309348385731516503113542214113143845255684430905440019857803445972891666327686790045204345937734740031840934833502727814815953317516311045532396295877859837047475730738741659146213440989820973420566950241209391541905044182616152832551833331445823328577412432142459322340111432290826209209527350668554892399746055490736189176091160755409375364812889302698610658364513902852989763894454253210942694759", "assert newman_prime(True) == 1", "assert newman_prime(1233) == 4585535140307882997843161713668397023853116211254022672566517010862370707240264231344946085766216523052331450499607229338511877111962059254003633883326027265392383955603805324269020020615327430080583302580694515201406805311964648582467967310094321140188598045644958490660440222981414708933247686252041721882696939780590203276426018368106598900086344792084279616341844673577748247160443898192628017261291128335386023878092619330209205785732364019583562446586013013685760993", "assert newman_prime(98) == 16255007246704249599863612909970798723", "assert newman_prime(97) == 6733044458057842709277507685523012161", "assert newman_prime(87) == 1001047369445486500122677053453007", "assert newman_prime(2) == 3", "assert newman_prime(1232) == 1899390845853938450170882489071454729931723936600156902082533065521083996554013614503393037141229799425743296378824142106440317148996574851436748455528326859121213079857856705247917365213045332206518402306419234762681134659018297067567947094135026722635225380798090483632374563151158998619402875677972111569174316271436156097641170150963163919839854165202405563909063650333075581971917999886524544892352556866222622711213103023782314717926041377535975830762094071256944897", "assert newman_prime(1236) == 64523375912964288224972353009378037935896014218049056581210869457953868469653238848656318214900747273756693887889407462594344111088527585305227348877553961480314672866534947417467827073449155821999591642500430356230287337038667268327455343191806987295439303451729954306087155491532771500295986613414361220438234858724263219805318071172095006400235408331023383215647454334598356875784916777744158931597256324355745400093176947081422043018418575122682628512842626520513856401", "assert newman_prime(1231) == 786753448600006097501396735525487563989668338053708868401450879820202714132237002338160011483756924200844857741958945125631242813968909551130136972269373547149957795888091913773185290189236765667546497967856045676044535993928054447332073121824267694918147284048777523395691096679096711694441934896097498744348307237717891081143678066180271060406636461679468488523717372911597083216607898419578927476586014602940778455666413282644576349880281264511610785061824871171871199", "assert newman_prime(101) == 228725309250740208744750893347264645481", "assert newman_prime(88) == 2416742135893203745440147513823297", "assert newman_prime(1237) == 155773209219175868339502279565240970450921057365568540329419390101261758468615826083044152932915036761626531621034499356094128242034858616583346364082794713005833691670804634866776588980401039458815136602517171757992970969955194373702386417122355633737092047893280882032741261224274934542497017409444875273428303048894349768188048574486649335140582248952872975640822259337751606151315889046224507039285673404120866164999243196861454744401351053098355020920139506251970407561", "assert newman_prime(86) == 414647397002230745194793406917283", "assert newman_prime(20) == 22619537", "assert newman_prime(21) == 54608393", "assert newman_prime(89) == 5834531641231893991002972081099601", "assert newman_prime(102) == 552191743651117350907374866615429308899", "assert newman_prime(103) == 1333108796552974910559500626578123263279", "assert newman_prime(6) == 99", "assert newman_prime(96) == 2788918330588564181308597538924774401", "assert newman_prime(1230) == 325883948653926255168089018020479601952387260492739165279631305880678568289539609827073014173715951024053580894906251855177831521058755749176474510989579764821297488081672877701546784834571800871425406370707143410592062671162188172903800850486491332798930812700535436840992369792965575230519005885777114080477701796000373935353814018602621799026581241843468586861628904509881415538702203047366689939180527660341065799880276458493162018165478848512754260638444328913202499", "assert newman_prime(104) == 3218409336757067172026376119771675835457", "assert newman_prime(91) == 34006142477945877445895155433144599", "assert newman_prime(1239) == 907912797921807918147456103844960928126397315263940814809518689422216529282385608112533401094376678355646045880951311705659329432351348253527186518169081487989797804087093069168818599048903508938074866297586719502425429523853306405166842771995392143276338846369864318775880617104440215713077060274053098808017984961920275280550879014777436688503382061426411644635406205357954744508149278786610853059622879669315821625182569878470117808043592415737140361626382784300879750607", "assert newman_prime(92) == 82098090374248746619236402542311697", "assert newman_prime(3) == 7", "assert newman_prime(22) == 131836323", "assert newman_prime(90) == 14085805418356991727446091676022499", "assert newman_prime(7) == 239", "assert newman_prime(1238) == 376069794351316024903976912139859978837738128949186137240049649660477385406884891014744624080730820797009757129958406174782600595158244818471920077043143387491982056208144217151021005034251234739629864847534773872216229276949056015732228177436518254769623399238291718371569677940082640585290021432304111767294840956512962756181415220145393676681399906236769334497291973010101569178416694870193173010168603132597477730091663340804331531821120681319392670353121639024454671523", "assert newman_prime(23) == 318281039", "assert newman_prime(95) == 1155207796880714346660312607673463359", "assert newman_prime(1229) == 134985551292153587165218699484528360084893817068230537842188268058845577553157782684013983136325022152737695952146441415275579771851398052777187950290214017507362819724746158370091720520093163924695685226441758854860410651603678101524471420851285029320285658647706649713706357093165561233403923124543270583392903645717143210436050028975027462353473977992531314800459563891834252139203492324845547598224959282258646855905860365658252313549323567486102263784936213345466201", "assert newman_prime(10) == 3363", "assert newman_prime(19) == 9369319", "assert newman_prime(85) == 171752575441025009733090239618441", "assert newman_prime(1240) == 2191895390194931861198889119829781835090532759477067766859087028504910443971656107239811426269484177508301848891861029586101259459860941325526293113381306363471577664382330355488658203132058252615779597442708212877067088324655668826065913721427302541322301091978020355923330912148963072011444141980410309383330810880353513317283173249700267053688164029089592623768104383726011058194715252443414879129414362471229120980456803097744567147908305512793673393605887207626214172737", "assert newman_prime(5) == 41", "assert newman_prime(11) == 8119", "assert newman_prime(8) == 577", "assert newman_prime(1241) == 5291703578311671640545234343504524598307462834218076348527692746432037417225697822592156253633345033372249743664673370877861848352073230904579772744931694214932953132851753780146135005313020014169634061183003145256559606173164644057298670214849997225920941030325905030622542441402366359735965344234873717574679606722627301915117225514177970795879710119605596892171614972809976860897579783673440611318451604611774063586096176073959252103860203441324487148838157199553308096081", "assert newman_prime(18) == 3880899", "assert newman_prime(84) == 71142246120180725728612927680401", "assert newman_prime(24) == 768398401", "assert newman_prime(9) == 1393", "assert newman_prime(93) == 198202323226443370684367960517767993", "assert newman_prime(94) == 478502736827135487987972323577847683", "assert newman_prime(1228) == 55912846069619080837651619051422881782599626356278089595254769762987413183224044459045047901065906718578188990613369024626671977355959643622098610409151729806571848632180560961363343794385473022034035917823625700871241367954831969854858008783921274158359495405122137413579655606634452763711159636690572913691894504566087514481713960652566874319633285858405957260709776726212911260295218397675594742730609095823772088068555727176657391066831713540549733068571902222270097", "assert newman_prime(17) == 1607521", "assert newman_prime(83) == 29468083200663558275864384257639", "assert newman_prime(12) == 19601", "assert newman_prime(13) == 47321", "assert newman_prime(82) == 12206079718853609176884159165123", "assert newman_prime(25) == 1855077841", "assert newman_prime(1227) == 23159859152915425489915461381682596519694564355674358651678728532870751186709693765923887334193208715581317970919703366022235817139478765532990729471910557894219122460385036447365032931322217880627613390794507453117927915694014161814755403283442481003566667837462374886547045879896655705981603851162124756009114636584968181472622107669893713714207406275719400279040010439408429618613055529494358112763741090611102679768748911304937531415660140405002797647792408900926007", "assert newman_prime(4) == 17", "assert newman_prime(67) == 22127936779729111812853639", "assert newman_prime(81) == 5055923762956339922096065927393", "assert newman_prime(1226) == 9593127763788229857820696288057688743210497644929372291897312697245910809804656927197273232679489287415553048773962292582200343077002112556117151465330614018133603711410488066633277931741037260778809136234610794635385536566803646225347202217036312151226159730197387640485563846841141351747951934366323401673665231396151151536469745312779446891218473306967156702629755847396052023069107338686878517203126914601566728531057904566782328235511432730544137772987084420418083", "assert newman_prime(1225) == 3973603625338965774274068805567219033273569065815614067884103138378929567100379911529340868834230140750211873371778780857835130985474540420756426541249329857951915037564060314098477067840143359069995118325285863847156842560406869364060998849369856701114348377067599605575918186214373002485699982429477952661784173792665878399682617044334819931770459661785086873780498744616325572474840852120601078357487261407969222706633102171372874944637274943914522101818240060089841", "assert newman_prime(26) == 4478554083", "assert newman_prime(1242) == 12775302546818275142289357806838831031705458427913220463914472521368985278423051752424123933536174244252801336221207771341824956164007403134685838603244694793337483930085837915780928213758098280955047719808714503390186300670984956940663254151127296993164183152629830417168415794953695791483374830450157744532690024325608117147517624278056208645447584268300786408111334329345964779989874819790296101766317571694777248152649155245663071355628712395442647691282201606732830364899", "assert newman_prime(68) == 53421565080956452077519377", "assert newman_prime(1243) == 30842308671948221925123949957182186661718379690044517276356637789170007974071801327440404120705693521877852416107088913561511760680088037173951449951421083801607920993023429611707991432829216576079729500800432152036932207515134557938625178517104591212249307335585565864959374031309757942702715005135189206640059655373843536210152474070290388086774878656207169708394283631501906420877329423254032814851086748001328559891394486565285394815117628232209782531402560413018968825879", "assert newman_prime(16) == 665857", "assert newman_prime(73) == 4381219722279095887999111921", "assert newman_prime(105) == 7769927470067109254612252866121474934193", "assert newman_prime(1224) == 1645920513110298309272558676923250676663359513298144156129106420488051675603897104138591495011029005915129302030404730866530081106053031714604298382831954302229773636282367438436323796060750542638818899584039066941071851445989907497225204518296598748997462976062188429333727474412395346776551969507367496350096883810819394737104511224109807027677553983396982955068758358163400878119425634445676360488152391785628283117791700224036578346236882842715093569350604300238401", "assert newman_prime(66) == 9165691521498228451812099", "assert newman_prime(65) == 3796553736732654909229441", "assert newman_prime(14) == 114243", "assert newman_prime(1223) == 681762599118369155728951451720717679946850039219325755625890297402826215892585703252157878812172128919953269310969319124774968773368476991547829775585421253492367764999325437225829475718642273792357319157207729965013139668427054369610589812776659203119422424943222746908463237389582308932596043414742959961590406171027088925473594596115205876415351694991120963642982028289523816235989583229248357381182477836712656471049701723299718252163509258484334963117031459613039", "assert newman_prime(74) == 10577200073262678228000529443", "assert newman_prime(75) == 25535619868804452344000170807", "assert newman_prime(64) == 1572584048032918633353217", "assert newman_prime(15) == 275807", "assert newman_prime(27) == 10812186007", "assert newman_prime(106) == 18758264276891285681250881852014625703843", "assert newman_prime(72) == 1814760628704486452002305601", "assert newman_prime(80) == 2094232192940929332692027310337", "assert newman_prime(62) == 269812766699283348307203", "assert newman_prime(43) == 14398739476117879", "assert newman_prime(78) == 359313438791966819268004696899", "assert newman_prime(76) == 61648439810871582916000871057", "assert newman_prime(44) == 34761632124320657", "assert newman_prime(69) == 128971066941642015967892393", "assert newman_prime(79) == 867459377074481256712011306719", "assert newman_prime(70) == 311363698964240484013304163", "assert newman_prime(45) == 83922003724759193", "assert newman_prime(46) == 202605639573839043", "assert newman_prime(1244) == 74459919890714718992537257721203204355142217808002255016627748099709001226566654407304932174947561288008506168435385598464848477524183477482588738506086862396553325916132697139196911079416531433114506721409578807464050715701254072817913611185336479417662797823800962147087163857573211676888804840720536157812809335073295189567822572418636984818997341580715125824899901592349777621744533666298361731468491067697434367935438128376233860985863968859862212754087322432770768016657", "assert newman_prime(42) == 5964153172084899", "assert newman_prime(107) == 45286456023849680617114016570150726341879", "assert newman_prime(29) == 63018038201", "assert newman_prime(61) == 111760107268250945908601", "assert newman_prime(108) == 109331176324590646915478914992316078387601", "assert newman_prime(71) == 751698464870122983994500719" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in two tuples and performs mathematical division operation element-wise across the given tuples.\nassert division_elements((10, 4, 6, 9),(5, 2, 3, 3)) == (2, 2, 2, 3)\nYour code should pass the test:\nassert division_elements((10, 4, 6, 9),(5, 2, 3, 3)) == (2, 2, 2, 3)", "test_list": [ "assert division_elements((10, 4, 6, 9),(5, 2, 3, 3)) == (2, 2, 2, 3)", "assert division_elements((12, 6, 8, 16),(6, 3, 4, 4)) == (2, 2, 2, 4)", "assert division_elements((20, 14, 36, 18),(5, 7, 6, 9)) == (4, 2, 6, 2)", "assert division_elements((0, 0, 0, 0), (5, 2, 3, 3)) == (0.0, 0.0, 0.0, 0.0)", "assert division_elements((5, 2, 3, 3), (5, 2, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((5, 2, 3, 3, 3), (5, 2, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((5, 3, 3), (5, 3, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((5, 3, 3, 3), (5, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((5, 2, 3, 3), (5, 2, 3, 4)) == (1.0, 1.0, 1.0, 0.75)", "assert division_elements((3, 3, 3), (3, 3, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((3, 2, 3, 3), (3, 2, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 2, 3, 3, 3), (3, 2, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 3, 3), (4, 3, 3)) == (0.75, 1.0, 1.0)", "assert division_elements((3, 1, 2, 3), (3, 2, 3, 3)) == (1.0, 0.5, 0.6666666666666666, 1.0)", "assert division_elements((3, 1, 3, 2, 3), (3, 2, 3, 3, 2)) == (1.0, 0.5, 1.0, 0.6666666666666666, 1.5)", "assert division_elements((3, 4, 3), (4, 3, 3)) == (0.75, 1.3333333333333333, 1.0)", "assert division_elements((4, 4, 4, 3), (4, 4, 4, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((4, 3, 3), (4, 3, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((5, 3, 0, 3), (5, 3, 3, 3)) == (1.0, 1.0, 0.0, 1.0)", "assert division_elements((3, 4, 2), (4, 3, 3)) == (0.75, 1.3333333333333333, 0.6666666666666666)", "assert division_elements((5, 3, 3, 3), (5, 3, 3, 5)) == (1.0, 1.0, 1.0, 0.6)", "assert division_elements((4, 2, 0, 3), (4, 2, 4, 3)) == (1.0, 1.0, 0.0, 1.0)", "assert division_elements((4, 4, 3, 3), (4, 4, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((0, 0, 0, 2), (5, 2, 3, 3)) == (0.0, 0.0, 0.0, 0.6666666666666666)", "assert division_elements((3, 4, 1, 2), (4, 3, 3, 4)) == (0.75, 1.3333333333333333, 0.3333333333333333, 0.5)", "assert division_elements((5, 3, 3, 3), (5, 3, 2, 3)) == (1.0, 1.0, 1.5, 1.0)", "assert division_elements((4, 2, 4, 3), (4, 2, 4, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((4, 3, 3), (3, 4, 4)) == (1.3333333333333333, 0.75, 0.75)", "assert division_elements((3, 2, 2, 3), (3, 2, 3, 3)) == (1.0, 1.0, 0.6666666666666666, 1.0)", "assert division_elements((3, 5, 2), (3, 1, 2)) == (1.0, 5.0, 1.0)", "assert division_elements((0, 0, 0), (5, 2, 3)) == (0.0, 0.0, 0.0)", "assert division_elements((3, 4, 3, 4), (3, 4, 4, 4)) == (1.0, 1.0, 0.75, 1.0)", "assert division_elements((4, 2, 2, 4, 3), (4, 2, 4, 3, 4)) == (1.0, 1.0, 0.5, 1.3333333333333333, 0.75)", "assert division_elements((3, 4, 3), (3, 4, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((3, 1, 2, 1), (3, 1, 2, 1)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((1, 3, 3), (3, 4, 4)) == (0.3333333333333333, 0.75, 0.75)", "assert division_elements((3, 4, 3, 4), (3, 4, 3, 4)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((5, 3, 4), (5, 3, 3)) == (1.0, 1.0, 1.3333333333333333)", "assert division_elements((3, 3, 4), (3, 3, 3)) == (1.0, 1.0, 1.3333333333333333)", "assert division_elements((5, 3, 3), (4, 3, 3)) == (1.25, 1.0, 1.0)", "assert division_elements((3, 4, 3), (2, 4, 3)) == (1.5, 1.0, 1.0)", "assert division_elements((4, 2, 3, 3), (4, 2, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((4, 3, 3), (5, 3, 3)) == (0.8, 1.0, 1.0)", "assert division_elements((3, 4, 1, 4), (3, 4, 4, 4)) == (1.0, 1.0, 0.25, 1.0)", "assert division_elements((3, 5, 2, 2), (3, 5, 2, 2)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((5, 2, 3, 2, 3), (5, 2, 3, 2, 3)) == (1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 4, 1, 4), (3, 5, 4, 4)) == (1.0, 0.8, 0.25, 1.0)", "assert division_elements((5, 1, 3, 3), (5, 2, 3, 4)) == (1.0, 0.5, 1.0, 0.75)", "assert division_elements((2, 3, 3, 3), (2, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((4, 3, 3, 5), (4, 3, 3, 5)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 4, 1, 4), (3, 4, 1, 4)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 4, 3), (2, 4, 4)) == (1.5, 1.0, 0.75)", "assert division_elements((2, 5, 3, 3, 3), (1, 5, 3, 3, 3)) == (2.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((2, 3, 3), (2, 3, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((3, 3, 3, 3), (3, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 4, 3, 3), (4, 4, 3, 3)) == (0.75, 1.0, 1.0, 1.0)", "assert division_elements((3, 3), (3, 3)) == (1.0, 1.0)", "assert division_elements((3,), (3,)) == (1.0,)", "assert division_elements((4, 3), (4, 3)) == (1.0, 1.0)", "assert division_elements((3, 1, 3), (3, 1, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((1, 2, 3, 3, 3), (3, 2, 3, 3, 4)) == (0.3333333333333333, 1.0, 1.0, 1.0, 0.75)", "assert division_elements((3, 2, 3, 3, 4), (3, 2, 3, 3, 4)) == (1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 3, 3, 4), (3, 4, 4, 4)) == (1.0, 0.75, 0.75, 1.0)", "assert division_elements((1, 3, 3, 3), (4, 4, 4, 4)) == (0.25, 0.75, 0.75, 0.75)", "assert division_elements((3, 1, 2), (4, 3, 3)) == (0.75, 0.3333333333333333, 0.6666666666666666)", "assert division_elements((3, 5, 4, 4), (3, 5, 4, 4)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 4, 4, 4), (3, 4, 3, 4)) == (1.0, 1.0, 1.3333333333333333, 1.0)", "assert division_elements((4, 3, 2), (4, 3, 3)) == (1.0, 1.0, 0.6666666666666666)", "assert division_elements((3, 4, 4, 3), (4, 4, 4, 3)) == (0.75, 1.0, 1.0, 1.0)", "assert division_elements((3, 4, 4), (4, 3, 3)) == (0.75, 1.3333333333333333, 1.3333333333333333)", "assert division_elements((4, 3, 3, 4), (3, 4, 4, 3)) == (1.3333333333333333, 0.75, 0.75, 1.3333333333333333)", "assert division_elements((5, 2, 3, 3, 2), (2, 5, 2, 3, 3)) == (2.5, 0.4, 1.5, 1.0, 0.6666666666666666)", "assert division_elements((3, 2, 3, 3, 3, 3), (3, 4, 2, 3, 3, 3)) == (1.0, 0.5, 1.5, 1.0, 1.0, 1.0)", "assert division_elements((2, 5, 3, 3, 3), (1, 5, 3, 3, 2)) == (2.0, 1.0, 1.0, 1.0, 1.5)", "assert division_elements((2, 3, 3, 5), (2, 3, 3, 5)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((4, 3, 3, 4), (4, 3, 3, 4)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((5, 1, 3, 3), (5, 2, 3, 3)) == (1.0, 0.5, 1.0, 1.0)", "assert division_elements((5, 4), (5, 4)) == (1.0, 1.0)", "assert division_elements((5, 3), (4, 3)) == (1.25, 1.0)", "assert division_elements((5, 3), (4, 1)) == (1.25, 3.0)", "assert division_elements((6, 5, 3, 3), (6, 5, 3, 3)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 2, 3), (3, 1, 3)) == (1.0, 2.0, 1.0)", "assert division_elements((3, 1, 2), (4, 3, 5)) == (0.75, 0.3333333333333333, 0.4)", "assert division_elements((3, 5, 2), (3, 5, 2)) == (1.0, 1.0, 1.0)", "assert division_elements((3, 1, 3, 2, 3), (2, 2, 3, 3, 2)) == (1.5, 0.5, 1.0, 0.6666666666666666, 1.5)", "assert division_elements((3, 4, 0, 2), (4, 3, 3, 4)) == (0.75, 1.3333333333333333, 0.0, 0.5)", "assert division_elements((5, 2, 3, 3), (5, 1, 3, 3)) == (1.0, 2.0, 1.0, 1.0)", "assert division_elements((6, 5, 3, 3), (5, 5, 3, 3)) == (1.2, 1.0, 1.0, 1.0)", "assert division_elements((3, 2, 3, 3, 6, 2), (3, 2, 3, 3, 6, 2)) == (1.0, 1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 5), (3, 5)) == (1.0, 1.0)", "assert division_elements((3, 1, 0, 3, 3), (3, 1, 2, 3, 3)) == (1.0, 1.0, 0.0, 1.0, 1.0)", "assert division_elements((3, 2, 3, 3, 4, 3), (3, 2, 3, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0, 1.3333333333333333, 1.0)", "assert division_elements((3, 5, 5, 4), (3, 5, 4, 4)) == (1.0, 1.0, 1.25, 1.0)", "assert division_elements((4, 3, 3, 4, 3), (3, 4, 4, 3, 3)) == (1.3333333333333333, 0.75, 0.75, 1.3333333333333333, 1.0)", "assert division_elements((4, 3, 2), (4, 3, 2)) == (1.0, 1.0, 1.0)", "assert division_elements((3, 4, 6, 4), (3, 4, 6, 4)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((2, 4, 3), (3, 4, 3)) == (0.6666666666666666, 1.0, 1.0)", "assert division_elements((2, 4, 3, 4), (2, 4, 3, 4)) == (1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 2, 4, 1), (3, 2, 4, 3)) == (1.0, 1.0, 1.0, 0.3333333333333333)", "assert division_elements((4, 4, 3), (4, 4, 3)) == (1.0, 1.0, 1.0)", "assert division_elements((4, 4, 3, 4, 4), (4, 4, 3, 4, 4)) == (1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((3, 2, 3, 3, 3, 3), (3, 2, 3, 3, 3, 3)) == (1.0, 1.0, 1.0, 1.0, 1.0, 1.0)", "assert division_elements((4, 3, 4), (4, 3, 4)) == (1.0, 1.0, 1.0)", "assert division_elements((3, 2, 4, 1), (3, 5, 4, 3)) == (1.0, 0.4, 1.0, 0.3333333333333333)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list and an integer L and splits the given list into two parts where the length of the first part of the list is L, and returns the resulting lists in a tuple.\nassert split_two_parts([1,1,2,3,4,4,5,1],3)==([1, 1, 2], [3, 4, 4, 5, 1])\nYour code should pass the test:\nassert split_two_parts([1,1,2,3,4,4,5,1],3)==([1, 1, 2], [3, 4, 4, 5, 1])", "test_list": [ "assert split_two_parts([1,1,2,3,4,4,5,1],3)==([1, 1, 2], [3, 4, 4, 5, 1])", "assert split_two_parts(['a', 'b', 'c', 'd'],2)==(['a', 'b'], ['c', 'd'])", "assert split_two_parts(['p', 'y', 't', 'h', 'o', 'n'],4)==(['p', 'y', 't', 'h'], ['o', 'n'])", "assert split_two_parts([1, 2, 3, 4, 5, 6, 7, 8, 9], 0) == ([], [1, 2, 3, 4, 5, 6, 7, 8, 9])", "assert split_two_parts([], 0) == ([], [])", "assert split_two_parts([1, 1, 1, 2, 2, 3, 3], 4) == ([1, 1, 1, 2], [2, 3, 3])", "assert split_two_parts(['apple', 'banana', 'cherry', 'date'], 2) == (['apple', 'banana'], ['cherry', 'date'])", "assert split_two_parts(['a', 1, True, [1, 2, 3], ['x', 'y', 'z']], 3) == (['a', 1, True], [[1, 2, 3], ['x', 'y', 'z']])", "assert split_two_parts([-5, -10, -15, -20, -25], 2) == ([-5, -10], [-15, -20, -25])", "assert split_two_parts([None, 10, None, 20, None, 30], 3) == ([None, 10, None], [20, None, 30])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banana', ''], 4) == (['', '', 'apple', 'apple'], ['', 'banana', ''])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.1], 3) == ([0.5, 1.23, 4.56], [7.89, 10.1])", "assert split_two_parts([7.89, 1.23, 4.56, 7.89, 10.1], 3) == ([7.89, 1.23, 4.56], [7.89, 10.1])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.1], 2) == ([0.5, 1.23], [4.56, 7.89, 10.1])", "assert split_two_parts([1, 1, 1, 2, 2, 3, -5], 4) == ([1, 1, 1, 2], [2, 3, -5])", "assert split_two_parts([None, 10, None, None, 30], 2) == ([None, 10], [None, None, 30])", "assert split_two_parts([4, 8, 45, 4, 57, -47, -25], 0) == ([], [4, 8, 45, 4, 57, -47, -25])", "assert split_two_parts(['a', 1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3]], 3) == (['a', 1, True], [[1, 2, 3], ['x', 'y', 'z'], [1, 2, 3]])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.722160024930544, 10.1], 3) == ([0.5, 1.23, 4.56], [7.89, 10.722160024930544, 10.1])", "assert split_two_parts([None, 10, None, 20, 9, None, 30], 2) == ([None, 10], [None, 20, 9, None, 30])", "assert split_two_parts([1, 1, 1, 2, 2, 2, 3, 3, 1], 2) == ([1, 1], [1, 2, 2, 2, 3, 3, 1])", "assert split_two_parts([1.23, 1.23, 1.23, 0.5, -55.23706380927258, 89.6402161175196, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316], 0) == ([], [1.23, 1.23, 1.23, 0.5, -55.23706380927258, 89.6402161175196, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316])", "assert split_two_parts([None, None, 20, 9, None, 30], 2) == ([None, None], [20, 9, None, 30])", "assert split_two_parts(['a', 1, True, [1, 2, 3], ['x', 'y', 'z']], 4) == (['a', 1, True, [1, 2, 3]], [['x', 'y', 'z']])", "assert split_two_parts([-5, -10, -15, -20, -20, -25], 1) == ([-5], [-10, -15, -20, -20, -25])", "assert split_two_parts([-5, -10, -15, -20, -20, -25, -20], 1) == ([-5], [-10, -15, -20, -20, -25, -20])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.722160024930544, 10.1, 7.89], 4) == ([0.5, 1.23, 4.56, 7.89], [10.722160024930544, 10.1, 7.89])", "assert split_two_parts([1, 1, 1, 2, 2, 3, 2, -5], 4) == ([1, 1, 1, 2], [2, 3, 2, -5])", "assert split_two_parts([7.89, 1.23, 4.56, 7.89, 10.1, 1.23], 3) == ([7.89, 1.23, 4.56], [7.89, 10.1, 1.23])", "assert split_two_parts(['a', 1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a'], 3) == (['a', 1, True], [[1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a'])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banana', ''], 5) == (['', '', 'apple', 'apple', ''], ['banana', ''])", "assert split_two_parts([7.89, 1.23, 4.56, 7.89, 10.1], 2) == ([7.89, 1.23], [4.56, 7.89, 10.1])", "assert split_two_parts([-5, -10, 8, -15, -20, -20, -25], 1) == ([-5], [-10, 8, -15, -20, -20, -25])", "assert split_two_parts([1, True, [1, 2, 3], ['x', 'y', 'z']], 3) == ([1, True, [1, 2, 3]], [['x', 'y', 'z']])", "assert split_two_parts([1, True, ['x', 'y', 'z']], 3) == ([1, True, ['x', 'y', 'z']], [])", "assert split_two_parts(['', '', 'applee', 'apple', '', 'banana', ''], 4) == (['', '', 'applee', 'apple'], ['', 'banana', ''])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.722160024930544, 10.1, 7.89], 2) == ([0.5, 1.23], [4.56, 7.89, 10.722160024930544, 10.1, 7.89])", "assert split_two_parts([0.5, 11.340237585890215, 1.23, 4.56, 7.89, 10.722160024930544, 10.1, 7.89, 10.1], 3) == ([0.5, 11.340237585890215, 1.23], [4.56, 7.89, 10.722160024930544, 10.1, 7.89, 10.1])", "assert split_two_parts([1, 2, 3, 4, 5, 6, 7, 8, 9, 7], 0) == ([], [1, 2, 3, 4, 5, 6, 7, 8, 9, 7])", "assert split_two_parts(['', '', 'applee', '', 'banana', ''], 4) == (['', '', 'applee', ''], ['banana', ''])", "assert split_two_parts([1.23, 1.23, 1.23, 0.5, -55.23706380927258, 90.13486538547112, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316], 0) == ([], [1.23, 1.23, 1.23, 0.5, -55.23706380927258, 90.13486538547112, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316])", "assert split_two_parts([None, 10, None, None, 30], 3) == ([None, 10, None], [None, 30])", "assert split_two_parts([1, 1, 1, 2, 2, 3, -5], 3) == ([1, 1, 1], [2, 2, 3, -5])", "assert split_two_parts([9, 2, 3, 4, 5, 6, 7, 8, 9], 4) == ([9, 2, 3, 4], [5, 6, 7, 8, 9])", "assert split_two_parts(['a', 1, True, [1, 2, 3], ['x', 'y'], [1, 2, 3]], 3) == (['a', 1, True], [[1, 2, 3], ['x', 'y'], [1, 2, 3]])", "assert split_two_parts([1, 1, 1, 2, 2, 3, 3, 3], 4) == ([1, 1, 1, 2], [2, 3, 3, 3])", "assert split_two_parts([None, 20, 9, None, 30], 2) == ([None, 20], [9, None, 30])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.1, 10.1], 2) == ([0.5, 1.23], [4.56, 7.89, 10.1, 10.1])", "assert split_two_parts([7.89, 1.23, 4.56, 8.010812766922186, 7.89, 10.1], 2) == ([7.89, 1.23], [4.56, 8.010812766922186, 7.89, 10.1])", "assert split_two_parts([0.5, 1.164606856585469, 4.56, 7.89, 10.722160024930544, 10.1, 89.6402161175196, 7.89], 7) == ([0.5, 1.164606856585469, 4.56, 7.89, 10.722160024930544, 10.1, 89.6402161175196], [7.89])", "assert split_two_parts(['', '', 'applee', 'apple', '', 'banana', ''], 5) == (['', '', 'applee', 'apple', ''], ['banana', ''])", "assert split_two_parts([30, 'a', 1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a', 1], 4) == ([30, 'a', 1, True], [[1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a', 1])", "assert split_two_parts(['a', 1, True, [1, 2, 3], [1, 2, 3], 'a'], 3) == (['a', 1, True], [[1, 2, 3], [1, 2, 3], 'a'])", "assert split_two_parts([7.89, 1.23, 4.56, 7.89, 10.1, 1.23], 2) == ([7.89, 1.23], [4.56, 7.89, 10.1, 1.23])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.722160024930544, 10.1, 7.89], 3) == ([0.5, 1.23, 4.56], [7.89, 10.722160024930544, 10.1, 7.89])", "assert split_two_parts([4, 8, 45, 4, 57, -47, -25], 3) == ([4, 8, 45], [4, 57, -47, -25])", "assert split_two_parts([None, 10, None, None, 30, 10], 3) == ([None, 10, None], [None, 30, 10])", "assert split_two_parts([1, 1, 1, 2, 2, 3, -5], 2) == ([1, 1], [1, 2, 2, 3, -5])", "assert split_two_parts([30, 'a', 1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a', 1, 1], 4) == ([30, 'a', 1, True], [[1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a', 1, 1])", "assert split_two_parts([4, 8, 45, 3, 57, -47, -25, 8], 3) == ([4, 8, 45], [3, 57, -47, -25, 8])", "assert split_two_parts([1, 1, -10, 4, 2, 2, 3, 3, 3], 4) == ([1, 1, -10, 4], [2, 2, 3, 3, 3])", "assert split_two_parts([8.350167246320567, 1.23, 4.56, 7.89, 10.1, 1.23, 7.89], 3) == ([8.350167246320567, 1.23, 4.56], [7.89, 10.1, 1.23, 7.89])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banana', '', 'apple'], 5) == (['', '', 'apple', 'apple', ''], ['banana', '', 'apple'])", "assert split_two_parts([1.23, 1.23, 1.23, 0.5, -55.23706380927258, 90.13486538547112, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316], 2) == ([1.23, 1.23], [1.23, 0.5, -55.23706380927258, 90.13486538547112, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316])", "assert split_two_parts(['apple', 'a', 1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a', 1], 4) == (['apple', 'a', 1, True], [[1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a', 1])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banana', 'date', 'apple'], 6) == (['', '', 'apple', 'apple', '', 'banana'], ['date', 'apple'])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.1, 10.1], 1) == ([0.5], [1.23, 4.56, 7.89, 10.1, 10.1])", "assert split_two_parts(['', '', 'apple', '', 'banana', 'date', 'apple'], 6) == (['', '', 'apple', '', 'banana', 'date'], ['apple'])", "assert split_two_parts([-5, 8, -15, -20, -20, -25], 1) == ([-5], [8, -15, -20, -20, -25])", "assert split_two_parts([1.23, 4.56, 7.89, 10.1, 4.56], 3) == ([1.23, 4.56, 7.89], [10.1, 4.56])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.722160024930544, 10.1, 7.89], 5) == ([0.5, 1.23, 4.56, 7.89, 10.722160024930544], [10.1, 7.89])", "assert split_two_parts([1, 1, 2, 2, 3, -5], 4) == ([1, 1, 2, 2], [3, -5])", "assert split_two_parts([4, 8, 45, 3, 57, -47, -25, 8, -47], 3) == ([4, 8, 45], [3, 57, -47, -25, 8, -47])", "assert split_two_parts([0.3227382585908316, 1.23, 90.13486538547112, 1.164606856585469], 0) == ([], [0.3227382585908316, 1.23, 90.13486538547112, 1.164606856585469])", "assert split_two_parts(['a', 1, True, [1, 2, 3], [1, 2, 3], False, 'a'], 3) == (['a', 1, True], [[1, 2, 3], [1, 2, 3], False, 'a'])", "assert split_two_parts([None, 10, None, None, 30, 10], 4) == ([None, 10, None, None], [30, 10])", "assert split_two_parts([0.5, 4.56, 7.89, 10.722160024930544, 10.1, 7.89], 5) == ([0.5, 4.56, 7.89, 10.722160024930544, 10.1], [7.89])", "assert split_two_parts([['x', 'y', 'z', 'z'], 'a', True, 1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a'], 3) == ([['x', 'y', 'z', 'z'], 'a', True], [1, True, [1, 2, 3], ['x', 'y', 'z'], [1, 2, 3], 'a'])", "assert split_two_parts([None, None, -25, 20, 9, None, 30], 2) == ([None, None], [-25, 20, 9, None, 30])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banayna', ''], 5) == (['', '', 'apple', 'apple', ''], ['banayna', ''])", "assert split_two_parts(['', 'x', 'applee', '', 'banana', ''], 4) == (['', 'x', 'applee', ''], ['banana', ''])", "assert split_two_parts([None, 10, 20, None, 30], 4) == ([None, 10, 20, None], [30])", "assert split_two_parts(['', '', 'applee', 'apple', '', 'banana', ''], 6) == (['', '', 'applee', 'apple', '', 'banana'], [''])", "assert split_two_parts([1, 1, 1, 2, 2, 3, 3, 3], 3) == ([1, 1, 1], [2, 2, 3, 3, 3])", "assert split_two_parts([None, 20, 9, None, 30], 3) == ([None, 20, 9], [None, 30])", "assert split_two_parts([4, 8, 45, 3, 57, -47, -25, 8, 8], 3) == ([4, 8, 45], [3, 57, -47, -25, 8, 8])", "assert split_two_parts([-5, -10, -15, -20, -20, -25], 0) == ([], [-5, -10, -15, -20, -20, -25])", "assert split_two_parts([-5, -10, -15, -20, -25], 3) == ([-5, -10, -15], [-20, -25])", "assert split_two_parts([1, True, ['x', 'y', 'z'], True], 3) == ([1, True, ['x', 'y', 'z']], [True])", "assert split_two_parts([None, 10, None, 20, None, 30], 4) == ([None, 10, None, 20], [None, 30])", "assert split_two_parts(['', '', 'applee', 'apple', '', 'banana', '', ''], 4) == (['', '', 'applee', 'apple'], ['', 'banana', '', ''])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banana', 'date', 'apple', ''], 6) == (['', '', 'apple', 'apple', '', 'banana'], ['date', 'apple', ''])", "assert split_two_parts([4, 8, 45, 3, 57, -47, -25, 8, 8, 4], 3) == ([4, 8, 45], [3, 57, -47, -25, 8, 8, 4])", "assert split_two_parts(['', '', 'applee', 'apple', '', '', ''], 5) == (['', '', 'applee', 'apple', ''], ['', ''])", "assert split_two_parts(['a', -47, True, [1, 2, 3], [1, 2, 3], 'a'], 3) == (['a', -47, True], [[1, 2, 3], [1, 2, 3], 'a'])", "assert split_two_parts(['apple', 'a', 1, True, [2, 3], ['x', 'y', 'z'], [2, 3], 'a', 1], 4) == (['apple', 'a', 1, True], [[2, 3], ['x', 'y', 'z'], [2, 3], 'a', 1])", "assert split_two_parts(['a', 1, True, [1, 2, 3], 'aa', ['x', 'y', 'z'], [1, 2, 3], 'a'], 3) == (['a', 1, True], [[1, 2, 3], 'aa', ['x', 'y', 'z'], [1, 2, 3], 'a'])", "assert split_two_parts([None, 10, 20, None, 30, None], 4) == ([None, 10, 20, None], [30, None])", "assert split_two_parts([1, True, ['cherry', 'y', 'z'], ['x', 'y', 'z']], 3) == ([1, True, ['cherry', 'y', 'z']], [['x', 'y', 'z']])", "assert split_two_parts([0.5, 1.164606856585469, 4.56, 7.89, 10.722160024930544, 10.1, 89.6402161175196, 7.89], 8) == ([0.5, 1.164606856585469, 4.56, 7.89, 10.722160024930544, 10.1, 89.6402161175196, 7.89], [])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 0.48611073602407395, 10.722160024930544, 10.1, 7.89], 2) == ([0.5, 1.23], [4.56, 7.89, 0.48611073602407395, 10.722160024930544, 10.1, 7.89])", "assert split_two_parts([0.5, 4.56, 7.89, 10.1, 10.1], 1) == ([0.5], [4.56, 7.89, 10.1, 10.1])", "assert split_two_parts([0.5, 1.23, 5.399620468840612, 7.89, 10.722160024930544, 10.1, 7.89], 4) == ([0.5, 1.23, 5.399620468840612, 7.89], [10.722160024930544, 10.1, 7.89])", "assert split_two_parts([0.5, 1.23, 5.399620468840612, 10.722160024930544, 10.1, 7.89], 4) == ([0.5, 1.23, 5.399620468840612, 10.722160024930544], [10.1, 7.89])", "assert split_two_parts([0.5, 1.23, 4.56, 7.89, 10.722160024930544, 10.1, 7.89, 10.1], 5) == ([0.5, 1.23, 4.56, 7.89, 10.722160024930544], [10.1, 7.89, 10.1])", "assert split_two_parts([0.5, 1.23, 5.399620468840612, 7.89, 10.722160024930544, 10.1, 7.89, 10.1], 4) == ([0.5, 1.23, 5.399620468840612, 7.89], [10.722160024930544, 10.1, 7.89, 10.1])", "assert split_two_parts(['', '', 'apple', 'apple', '', 'banana', 'date', ''], 6) == (['', '', 'apple', 'apple', '', 'banana'], ['date', ''])", "assert split_two_parts([7, 4, 8, 45, 3, 56, -47, -25, 8, 4, 8, 4], 3) == ([7, 4, 8], [45, 3, 56, -47, -25, 8, 4, 8, 4])", "assert split_two_parts([1, 1, 1, 2, 2, 1, 3, 3, 3], 3) == ([1, 1, 1], [2, 2, 1, 3, 3, 3])", "assert split_two_parts([45, None, None, 10, None, 30, None], 4) == ([45, None, None, 10], [None, 30, None])", "assert split_two_parts([0.3227382585908316, 1.23, 90.13486538547112, 1.164606856585469], 1) == ([0.3227382585908316], [1.23, 90.13486538547112, 1.164606856585469])", "assert split_two_parts([90.13486538547112, 1.23, 1.23, 0.5, -55.23706380927258, 89.6402161175196, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316], 0) == ([], [90.13486538547112, 1.23, 1.23, 0.5, -55.23706380927258, 89.6402161175196, 10.722160024930544, -86.73696244780378, 63.86224907290719, 0.3227382585908316])" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate a dog's age in dog's years.\nassert dog_age(12)==61\nYour code should pass the test:\nassert dog_age(12)==61", "test_list": [ "assert dog_age(12)==61", "assert dog_age(15)==73", "assert dog_age(24)==109", "assert dog_age(100) == 413", "assert dog_age(0) == 0.0", "assert dog_age(30) == 133", "assert dog_age(29) == 129", "assert dog_age(99) == 409", "assert dog_age(101) == 417", "assert dog_age(28) == 125", "assert dog_age(98) == 405", "assert dog_age(27) == 121", "assert dog_age(26) == 117", "assert dog_age(True) == 10.5", "assert dog_age(False) == 0.0", "assert dog_age(97) == 401", "assert dog_age(25) == 113", "assert dog_age(24) == 109", "assert dog_age(31) == 137", "assert dog_age(32) == 141", "assert dog_age(33) == 145", "assert dog_age(23) == 105", "assert dog_age(21) == 97", "assert dog_age(34) == 149", "assert dog_age(1) == 10.5", "assert dog_age(35) == 153", "assert dog_age(2) == 21.0", "assert dog_age(22) == 101", "assert dog_age(36) == 157", "assert dog_age(3) == 25", "assert dog_age(96) == 397", "assert dog_age(95) == 393", "assert dog_age(4) == 29", "assert dog_age(102) == 421", "assert dog_age(56) == 237", "assert dog_age(5) == 33", "assert dog_age(55) == 233", "assert dog_age(54) == 229", "assert dog_age(6) == 37", "assert dog_age(20) == 93", "assert dog_age(37) == 161", "assert dog_age(39) == 169", "assert dog_age(19) == 89", "assert dog_age(38) == 165", "assert dog_age(7) == 41", "assert dog_age(53) == 225", "assert dog_age(57) == 241", "assert dog_age(8) == 45", "assert dog_age(93) == 385", "assert dog_age(43) == 185", "assert dog_age(103) == 425", "assert dog_age(104) == 429", "assert dog_age(9) == 49", "assert dog_age(18) == 85", "assert dog_age(17) == 81", "assert dog_age(52) == 221", "assert dog_age(64) == 269", "assert dog_age(16) == 77", "assert dog_age(65) == 273", "assert dog_age(94) == 389", "assert dog_age(40) == 173", "assert dog_age(66) == 277", "assert dog_age(92) == 381", "assert dog_age(41) == 177", "assert dog_age(67) == 281", "assert dog_age(58) == 245", "assert dog_age(63) == 265", "assert dog_age(68) == 285", "assert dog_age(105) == 433", "assert dog_age(60) == 253", "assert dog_age(69) == 289", "assert dog_age(59) == 249", "assert dog_age(106) == 437", "assert dog_age(51) == 217", "assert dog_age(70) == 293", "assert dog_age(42) == 181", "assert dog_age(88) == 365", "assert dog_age(89) == 369", "assert dog_age(107) == 441", "assert dog_age(50) == 213", "assert dog_age(71) == 297", "assert dog_age(91) == 377", "assert dog_age(62) == 261", "assert dog_age(49) == 209", "assert dog_age(10) == 53", "assert dog_age(48) == 205", "assert dog_age(108) == 445", "assert dog_age(44) == 189", "assert dog_age(61) == 257", "assert dog_age(87) == 361", "assert dog_age(109) == 449", "assert dog_age(90) == 373", "assert dog_age(110) == 453", "assert dog_age(111) == 457", "assert dog_age(15) == 73", "assert dog_age(45) == 193", "assert dog_age(11) == 57", "assert dog_age(46) == 197", "assert dog_age(47) == 201", "assert dog_age(12) == 61", "assert dog_age(72) == 301", "assert dog_age(112) == 461", "assert dog_age(76) == 317", "assert dog_age(86) == 357", "assert dog_age(113) == 465", "assert dog_age(114) == 469" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list and an integer n and splits a list for every nth element, returning a list of the resulting lists.\nassert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n'],3)==[['a', 'd', 'g', 'j', 'm'], ['b', 'e', 'h', 'k', 'n'], ['c', 'f', 'i', 'l']]\nYour code should pass the test:\nassert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n'],3)==[['a', 'd', 'g', 'j', 'm'], ['b', 'e', 'h', 'k', 'n'], ['c', 'f', 'i', 'l']]", "test_list": [ "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n'],3)==[['a', 'd', 'g', 'j', 'm'], ['b', 'e', 'h', 'k', 'n'], ['c', 'f', 'i', 'l']]", "assert list_split([1,2,3,4,5,6,7,8,9,10,11,12,13,14],3)==[[1,4,7,10,13], [2,5,8,11,14], [3,6,9,12]]", "assert list_split(['python','java','C','C++','DBMS','SQL'],2)==[['python', 'C', 'DBMS'], ['java', 'C++', 'SQL']]", "assert list_split([], 1) == [[]]", "assert list_split([], 2) == [[], []]", "assert list_split([], 3) == [[], [], []]", "assert list_split(['a', 'a', 'b', 'b', 'c', 'c', 'd'], 3) == [['a', 'b', 'd'], ['a', 'c'], ['b', 'c']]", "assert list_split([1, 'abc', True, 2.5, 'def', False, 3, 'ghi'], 4) == [[1, 'def'], ['abc', False], [True, 3], [2.5, 'ghi']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j'], 3) == [['a', 'd', 'g', 'j'], ['b', 'e', 'h'], ['c', 'f', 'i']]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9]], 2) == [[[1, 2, 3], [7, 8, 9]], [[4, 5, 6]]]", "assert list_split([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[9, 10], [11, 12]]], 3) == [[[[1, 2], [3, 4]]], [[[5, 6], [7, 8]]], [[[9, 10], [11, 12]]]]", "assert list_split([[1, 2, 3], [4, 5], [6, 7, 8, 9, 10]], 2) == [[[1, 2, 3], [6, 7, 8, 9, 10]], [[4, 5]]]", "assert list_split([[1, 2, 3, 4], [], [5, 6, 7], [8, 9]], 3) == [[[1, 2, 3, 4], [8, 9]], [[]], [[5, 6, 7]]]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [8, 9, 10], [11, 12, 13], [14]], 4) == [[[1, 2], [11, 12, 13]], [[3], [14]], [[4, 5, 6, 7]], [[8, 9, 10]]]", "assert list_split(['a', 'b', 'c', 'c', 'd'], 3) == [['a', 'c'], ['b', 'd'], ['c']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j'], 14) == [['a'], ['b'], ['c'], ['d'], ['e'], ['f'], ['g'], ['h'], ['i'], ['j'], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'g', 'h', 'i', 'j'], 14) == [['a'], ['b'], ['c'], ['d'], ['e'], ['g'], ['h'], ['i'], ['j'], [], [], [], [], []]", "assert list_split([[1, 2, 3, 4], [], [5, 6, 7], [8, 9]], 4) == [[[1, 2, 3, 4]], [[]], [[5, 6, 7]], [[8, 9]]]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [8, 9, 10], [11, 12, 13], [14]], 5) == [[[1, 2], [14]], [[3]], [[4, 5, 6, 7]], [[8, 9, 10]], [[11, 12, 13]]]", "assert list_split([[1, 2, 3], [4, 5], [6, 7, 8, 9, 10]], 13) == [[[1, 2, 3]], [[4, 5]], [[6, 7, 8, 9, 10]], [], [], [], [], [], [], [], [], [], []]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9], [7, 8, 9]], 2) == [[[1, 2, 3], [7, 8, 9]], [[4, 5, 6], [7, 8, 9]]]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'g', 'h', 'i', 'j', 'c'], 13) == [['a'], ['b'], ['c'], ['d'], ['e'], ['g'], ['h'], ['i'], ['j'], ['c'], [], [], []]", "assert list_split(['dghi', 'a', 'a', 'b', 'b', 'c', 'c', 'd'], 3) == [['dghi', 'b', 'c'], ['a', 'b', 'd'], ['a', 'c']]", "assert list_split(['a', 'dghi', 'c', 'd'], 4) == [['a'], ['dghi'], ['c'], ['d']]", "assert list_split(['a', 'dghi', 'c', 'd', 'd'], 5) == [['a'], ['dghi'], ['c'], ['d'], ['d']]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9], [7, 8, 9], [7, 8, 9]], 1) == [[[1, 2, 3], [4, 5, 6], [7, 8, 9], [7, 8, 9], [7, 8, 9]]]", "assert list_split(['a', 'dghi', 'c', 'd', 'd'], 1) == [['a', 'dghi', 'c', 'd', 'd']]", "assert list_split([None, True, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], 3) == [[None, True, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], [True, 'b'], [False, 5]]", "assert list_split([None, True, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], 12) == [[None], [True], [False], [True], ['b'], [5], [[-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], [], [], [], [], []]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [8, 9, 10], [11, 12, 13], [14], [14]], 11) == [[[1, 2]], [[3]], [[4, 5, 6, 7]], [[8, 9, 10]], [[11, 12, 13]], [[14]], [[14]], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j'], 4) == [['a', 'e', 'i'], ['b', 'f', 'j'], ['c', 'g'], ['d', 'h']]", "assert list_split(['a', 'b', 'c', 'e', 'f', 'g', 'h', 'i', 'j'], 14) == [['a'], ['b'], ['c'], ['e'], ['f'], ['g'], ['h'], ['i'], ['j'], [], [], [], [], []]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9], [1, 2, 3]], 2) == [[[1, 2, 3], [7, 8, 9]], [[4, 5, 6], [1, 2, 3]]]", "assert list_split([-19.284629521995882, -53.96698092094727, -63.59002692746978], 1) == [[-19.284629521995882, -53.96698092094727, -63.59002692746978]]", "assert list_split(['a', 'b', 'c', 'c', 'd', 'd'], 3) == [['a', 'c'], ['b', 'd'], ['c', 'd']]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [11, 12, 13], [14]], 4) == [[[1, 2], [14]], [[3]], [[4, 5, 6, 7]], [[11, 12, 13]]]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [8, 9, 10], [14]], 4) == [[[1, 2], [14]], [[3]], [[4, 5, 6, 7]], [[8, 9, 10]]]", "assert list_split([], 8) == [[], [], [], [], [], [], [], []]", "assert list_split([False, False, False, True], 8) == [[False], [False], [False], [True], [], [], [], []]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9], [7, 8, 9], [7, 8, 9]], 3) == [[[1, 2, 3], [7, 8, 9]], [[4, 5, 6], [7, 8, 9]], [[7, 8, 9]]]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9], [7, 8, 9], [7, 8, 9]], 2) == [[[1, 2, 3], [7, 8, 9], [7, 8, 9]], [[4, 5, 6], [7, 8, 9]]]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j'], 8) == [['a', 'i'], ['b', 'j'], ['c'], ['d'], ['e'], ['f'], ['g'], ['h']]", "assert list_split([[1, 2, 3], [6, 7, 8, 9, 10]], 13) == [[[1, 2, 3]], [[6, 7, 8, 9, 10]], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split([-19.284629521995882, 1.849713974754394, -53.96698092094727, -80.9136857934034, -63.59002692746978, -63.59002692746978, -84.92256440771797, 34.022656421356885, 2.5], 2) == [[-19.284629521995882, -53.96698092094727, -63.59002692746978, -84.92256440771797, 2.5], [1.849713974754394, -80.9136857934034, -63.59002692746978, 34.022656421356885]]", "assert list_split([[1, 2, 3], [4, 5, 6], [8, 9], [8, 9], [8, 9]], 2) == [[[1, 2, 3], [8, 9], [8, 9]], [[4, 5, 6], [8, 9]]]", "assert list_split(['a', 'b', 'c', 'def', 'd', 'e', 'g', 'h', 'i', 'j', 'c'], 12) == [['a'], ['b'], ['c'], ['def'], ['d'], ['e'], ['g'], ['h'], ['i'], ['j'], ['c'], []]", "assert list_split(['a', 'b', 'c', 'c', 'd'], 2) == [['a', 'c', 'd'], ['b', 'c']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'hh', 'i', 'j'], 8) == [['a', 'i'], ['b', 'j'], ['c'], ['d'], ['e'], ['f'], ['g'], ['hh']]", "assert list_split(['', 'djM', 'etJiRi', 'i', 'c', 'FjRZCu', 'dghi', 'c', 'f'], 1) == [['', 'djM', 'etJiRi', 'i', 'c', 'FjRZCu', 'dghi', 'c', 'f']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'g', 'h', 'i', 'j', 'c'], 3) == [['a', 'd', 'h', 'c'], ['b', 'e', 'i'], ['c', 'g', 'j']]", "assert list_split(['dgabchi', 'a', 'dghi', 'c', 'd'], True) == [['dgabchi', 'a', 'dghi', 'c', 'd']]", "assert list_split(['a', 'b', 'c', 'e', 'f', 'g', 'h', 'i', 'j'], 13) == [['a'], ['b'], ['c'], ['e'], ['f'], ['g'], ['h'], ['i'], ['j'], [], [], [], []]", "assert list_split([-1.5316450765312055, -53.96698092094727, 97.65103377714536, 1.849713974754394], 1) == [[-1.5316450765312055, -53.96698092094727, 97.65103377714536, 1.849713974754394]]", "assert list_split(['a', 'dghi', 'c', 'c', 'd', 'd'], 1) == [['a', 'dghi', 'c', 'c', 'd', 'd']]", "assert list_split([93, 2, 60, 6, 9], 1) == [[93, 2, 60, 6, 9]]", "assert list_split([[1, 3], [1, 3], [4, 5, 6], [7, 8, 9]], 2) == [[[1, 3], [4, 5, 6]], [[1, 3], [7, 8, 9]]]", "assert list_split([[1, 2], [3, 3], [4, 5, 6, 7], [8, 9, 10], [14]], 4) == [[[1, 2], [14]], [[3, 3]], [[4, 5, 6, 7]], [[8, 9, 10]]]", "assert list_split([None, True, False, True, 'b', 5], 12) == [[None], [True], [False], [True], ['b'], [5], [], [], [], [], [], []]", "assert list_split([[1, 2, 3, 3], [6, 7, 8, 9, 10]], 13) == [[[1, 2, 3, 3]], [[6, 7, 8, 9, 10]], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split(['cg', 'a', 'dghi', 'c', 'd', 'd', 'd'], 5) == [['cg', 'd'], ['a', 'd'], ['dghi'], ['c'], ['d']]", "assert list_split(['etJiRi', 'def', 'h', 'def', 'WwcZ', ''], 1) == [['etJiRi', 'def', 'h', 'def', 'WwcZ', '']]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [11, 12, 13], [14]], 10) == [[[1, 2]], [[3]], [[4, 5, 6, 7]], [[11, 12, 13]], [[14]], [], [], [], [], []]", "assert list_split([1, 'abc', True, 2.5, 'def', False, 3, 'ghi'], 3) == [[1, 2.5, 3], ['abc', 'def', 'ghi'], [True, False]]", "assert list_split([[1, 2, 3], [13, 7, 8, 9], [4, 5, 6], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]], 2) == [[[1, 2, 3], [4, 5, 6], [13, 7, 8, 9]], [[13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]]]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [11, 12, 13], [14], [1, 2]], 10) == [[[1, 2]], [[3]], [[4, 5, 6, 7]], [[11, 12, 13]], [[14]], [[1, 2]], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'e', 'f', 'g', 'h', 'i', 'djMe', 'j'], 13) == [['a'], ['b'], ['c'], ['e'], ['f'], ['g'], ['h'], ['i'], ['djMe'], ['j'], [], [], []]", "assert list_split(['cg', 'a', 'dghi', 'c', 'd', 'd', 'd'], 3) == [['cg', 'c', 'd'], ['a', 'd'], ['dghi', 'd']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'hh', 'i', 'j'], 9) == [['a', 'j'], ['b'], ['c'], ['d'], ['e'], ['f'], ['g'], ['hh'], ['i']]", "assert list_split([[1, 2, 3, 4], [], [8, 9, 9], [5, 6, 7], [8, 9, 9]], 4) == [[[1, 2, 3, 4], [8, 9, 9]], [[]], [[8, 9, 9]], [[5, 6, 7]]]", "assert list_split(['a', 'b', 'c', 'c', 'bb', 'd'], 13) == [['a'], ['b'], ['c'], ['c'], ['bb'], ['d'], [], [], [], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j'], 2) == [['a', 'c', 'e', 'g', 'i'], ['b', 'd', 'f', 'h', 'j']]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 9, 7]], 2) == [[[1, 2, 3], [7, 8, 9, 7]], [[4, 5, 6]]]", "assert list_split(['dgabchi', 'a', 'dghi', 'c', 'd', 'dghi'], True) == [['dgabchi', 'a', 'dghi', 'c', 'd', 'dghi']]", "assert list_split([None, True, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], 2) == [[None, False, 'b', [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], [True, True, 5]]", "assert list_split([False, False, True, False, True, True, False, False, False, True], 1) == [[False, False, True, False, True, True, False, False, False, True]]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'h', 'i', 'j'], 14) == [['a'], ['b'], ['c'], ['d'], ['e'], ['h'], ['i'], ['j'], [], [], [], [], [], []]", "assert list_split([], 14) == [[], [], [], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [8, 9, 10], [11, 12, 13]], 11) == [[[1, 2]], [[3]], [[4, 5, 6, 7]], [[8, 9, 10]], [[11, 12, 13]], [], [], [], [], [], []]", "assert list_split([[1, 2, 3], [13, 7, 8], [13, 7, 8], [4, 5, 6], [13, 7, 8], [13, 7, 8], [13, 7, 8]], 2) == [[[1, 2, 3], [13, 7, 8], [13, 7, 8], [13, 7, 8]], [[13, 7, 8], [4, 5, 6], [13, 7, 8]]]", "assert list_split(['a', 'b', 'c', 'c', 'g'], 2) == [['a', 'c', 'g'], ['b', 'c']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'ghi', 'f', 'g', 'h', 'i', 'j'], 8) == [['a', 'h'], ['b', 'i'], ['c', 'j'], ['d'], ['e'], ['ghi'], ['f'], ['g']]", "assert list_split([[1, 2, 3], [13, 7, 8, 9], [4, 5, 6], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]], 3) == [[[1, 2, 3], [13, 7, 8, 9]], [[13, 7, 8, 9], [13, 7, 8, 9]], [[4, 5, 6], [13, 7, 8, 9]]]", "assert list_split([[1, 2, 3], [4, 5, 6], [7, 8, 6], [7, 8, 6], [7, 8, 6], [7, 8, 6]], 1) == [[[1, 2, 3], [4, 5, 6], [7, 8, 6], [7, 8, 6], [7, 8, 6], [7, 8, 6]]]", "assert list_split([[1, 2, 3, 3], [1, 2, 3, 3], [13, 7, 8, 9], [4, 5, 6], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]], 2) == [[[1, 2, 3, 3], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]], [[1, 2, 3, 3], [4, 5, 6], [13, 7, 8, 9]]]", "assert list_split([-19.284629521995882, 1.849713974754394, -53.96698092094727, -80.9136857934034, -63.59002692746978, -63.59002692746978, -84.92256440771797, 34.022656421356885, 2.5], 93) == [[-19.284629521995882], [1.849713974754394], [-53.96698092094727], [-80.9136857934034], [-63.59002692746978], [-63.59002692746978], [-84.92256440771797], [34.022656421356885], [2.5], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'def', 'd', 'e', 'h', 'i', 'j', 'c', 'a'], 12) == [['a'], ['b'], ['c'], ['def'], ['d'], ['e'], ['h'], ['i'], ['j'], ['c'], ['a'], []]", "assert list_split([None, True, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], 1) == [[None, True, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]]]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [8, 9, 10], [11, 12, 13]], 12) == [[[1, 2]], [[3]], [[4, 5, 6, 7]], [[8, 9, 10]], [[11, 12, 13]], [], [], [], [], [], [], []]", "assert list_split([None, True, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5], [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], 3) == [[None, True, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], [True, 'b', [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], [False, 5]]", "assert list_split([[1, 2], [3], [8, 9, 10], [11, 12, 13], [11, 12, 13]], 11) == [[[1, 2]], [[3]], [[8, 9, 10]], [[11, 12, 13]], [[11, 12, 13]], [], [], [], [], [], []]", "assert list_split([False, None, True, 'bb', False, True, 'b', 5], 10) == [[False], [None], [True], ['bb'], [False], [True], ['b'], [5], [], []]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'hh', 'i', 'j'], 10) == [['a'], ['b'], ['c'], ['d'], ['e'], ['f'], ['g'], ['hh'], ['i'], ['j']]", "assert list_split([-19.284629521995882, -53.96698092094727, -63.59002692746978, -19.284629521995882], 1) == [[-19.284629521995882, -53.96698092094727, -63.59002692746978, -19.284629521995882]]", "assert list_split(['dgabchi', 'a', 'dghi', 'c', 'dghi'], True) == [['dgabchi', 'a', 'dghi', 'c', 'dghi']]", "assert list_split(['a', 'b', 'c', 'f', 'g', 'h', 'i', 'djMe', 'j'], 13) == [['a'], ['b'], ['c'], ['f'], ['g'], ['h'], ['i'], ['djMe'], ['j'], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'hh', 'i', 'j'], 11) == [['a'], ['b'], ['c'], ['d'], ['e'], ['f'], ['g'], ['hh'], ['i'], ['j'], []]", "assert list_split(['dghi', 'c', 'FjRZCud', 'd', 'd'], 5) == [['dghi'], ['c'], ['FjRZCud'], ['d'], ['d']]", "assert list_split(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'hh', 'i', 'd'], 11) == [['a'], ['b'], ['c'], ['d'], ['e'], ['f'], ['g'], ['hh'], ['i'], ['d'], []]", "assert list_split(['cg', 'a', 'dghi', 'c', 'd', 'd', 'd', 'd'], 3) == [['cg', 'c', 'd'], ['a', 'd', 'd'], ['dghi', 'd']]", "assert list_split([28.72990406606783, -53.96698092094727, False, True, -11.801379885851944, -84.92256440771797, -68.8837440787106], 1) == [[28.72990406606783, -53.96698092094727, False, True, -11.801379885851944, -84.92256440771797, -68.8837440787106]]", "assert list_split([-19.284629521995882, 1.849713974754394, -53.96698092094727, -80.9136857934034, -63.59002692746978, -84.92256440771797, 34.022656421356885, 2.5], 93) == [[-19.284629521995882], [1.849713974754394], [-53.96698092094727], [-80.9136857934034], [-63.59002692746978], [-84.92256440771797], [34.022656421356885], [2.5], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split(['a', 'b', 'c', 'c', 'g'], 5) == [['a'], ['b'], ['c'], ['c'], ['g']]", "assert list_split([[1, 2, 3, 3], [1, 2, 3, 3], [13, 7, 8, 9], [4, 5, 6], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]], 2) == [[[1, 2, 3, 3], [13, 7, 8, 9], [13, 7, 8, 9], [13, 7, 8, 9]], [[1, 2, 3, 3], [4, 5, 6], [13, 7, 8, 9], [13, 7, 8, 9]]]", "assert list_split([-19.284629521995882, 1.849713974754394, -53.96698092094727, -80.9136857934034, -63.59002692746978, -84.92256440771797, 34.022656421356885, 2.5, -19.284629521995882], 93) == [[-19.284629521995882], [1.849713974754394], [-53.96698092094727], [-80.9136857934034], [-63.59002692746978], [-84.92256440771797], [34.022656421356885], [2.5], [-19.284629521995882], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split(['a', 'dghi', 'c', 'd'], 60) == [['a'], ['dghi'], ['c'], ['d'], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]", "assert list_split([[1, 2], [3], [4, 5, 6, 7], [11, 12, 13], [14], [14]], 4) == [[[1, 2], [14]], [[3], [14]], [[4, 5, 6, 7]], [[11, 12, 13]]]", "assert list_split([[7, 8, 9, 8], [1, 2, 3], [4, 5, 6], [7, 8, 9, 8], [7, 8, 9, 8], [7, 8, 9, 8]], 2) == [[[7, 8, 9, 8], [4, 5, 6], [7, 8, 9, 8]], [[1, 2, 3], [7, 8, 9, 8], [7, 8, 9, 8]]]", "assert list_split(['cg', 'a', 'dghi', 'c', 'd', 'd', 'd'], 4) == [['cg', 'd'], ['a', 'd'], ['dghi', 'd'], ['c']]", "assert list_split([None, True, None, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]], 1) == [[None, True, None, False, True, 'b', 5, [-50, -19.284629521995882, ['h'], 'qgSu', False, True, False, 'g', 2.5]]]", "assert list_split(['a', 'dghi', 'c', 'd', 'd'], 6) == [['a'], ['dghi'], ['c'], ['d'], ['d'], []]", "assert list_split([[1, 2, 3], [4, 5, 6], [8, 9], [8, 9], [8, 9], [8, 9]], 2) == [[[1, 2, 3], [8, 9], [8, 9]], [[4, 5, 6], [8, 9], [8, 9]]]", "assert list_split([False, False, True, True, True, False, False, False, True], 3) == [[False, True, False], [False, True, False], [True, False, True]]", "assert list_split(['a', 'a', 'c', 'd', 'd', 'd'], 1) == [['a', 'a', 'c', 'd', 'd', 'd']]", "assert list_split([-19.284629521995882, -53.96698092094727, -1.5316450765312055, -19.284629521995882], 1) == [[-19.284629521995882, -53.96698092094727, -1.5316450765312055, -19.284629521995882]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the lateral surface area of a cube given its side length.\nassert lateralsurface_cube(5)==100\nYour code should pass the test:\nassert lateralsurface_cube(5)==100", "test_list": [ "assert lateralsurface_cube(5)==100", "assert lateralsurface_cube(9)==324", "assert lateralsurface_cube(10)==400", "assert lateralsurface_cube(100) == 40000", "assert lateralsurface_cube(256) == 262144", "assert lateralsurface_cube(500) == 1000000", "assert lateralsurface_cube(1000) == 4000000", "assert lateralsurface_cube(498) == 992016", "assert lateralsurface_cube(501) == 1004004", "assert lateralsurface_cube(99) == 39204", "assert lateralsurface_cube(66.89191997931741) == 17898.115834077613", "assert lateralsurface_cube(499) == 996004", "assert lateralsurface_cube(101) == 40804", "assert lateralsurface_cube(58.21525080612692) == 13556.061705681042", "assert lateralsurface_cube(255) == 260100", "assert lateralsurface_cube(56.54995057201372) == 12791.58763878878", "assert lateralsurface_cube(66.89685310561087) == 17900.755821734718", "assert lateralsurface_cube(83.57157718204266) == 27936.83405077645", "assert lateralsurface_cube(257) == 264196", "assert lateralsurface_cube(56.515998521878785) == 12776.23235570002", "assert lateralsurface_cube(502) == 1008016", "assert lateralsurface_cube(94) == 35344", "assert lateralsurface_cube(44.81065373727037) == 8031.978753446172", "assert lateralsurface_cube(57.988194173394064) == 13450.522653965012", "assert lateralsurface_cube(258) == 266256", "assert lateralsurface_cube(254) == 258064", "assert lateralsurface_cube(44.14277592544646) == 7794.338665616701", "assert lateralsurface_cube(56.21634924802973) == 12641.11169110581", "assert lateralsurface_cube(89.96609117849408) == 32375.59024774844", "assert lateralsurface_cube(66.1048816215708) == 17479.421496807554", "assert lateralsurface_cube(88.13624919640782) == 31071.99368964519", "assert lateralsurface_cube(79.6724987089057) == 25390.828202082324", "assert lateralsurface_cube(39.52432765735469) == 6248.689907063731", "assert lateralsurface_cube(True) == 4", "assert lateralsurface_cube(90.07330615375426) == 32452.80192587178", "assert lateralsurface_cube(88.87446543484394) == 31594.68242531708", "assert lateralsurface_cube(80.34469028251331) == 25821.077026371957", "assert lateralsurface_cube(49.60482371300252) == 9842.554142392228", "assert lateralsurface_cube(72.10961391578658) == 20799.185676335208", "assert lateralsurface_cube(45.66474918863301) == 8341.077273843037", "assert lateralsurface_cube(49.36550800651825) == 9747.81352296647", "assert lateralsurface_cube(96.36174327164798) == 37142.34226540398", "assert lateralsurface_cube(49.5519341974717) == 9821.576730842262", "assert lateralsurface_cube(46.77734594153838) == 8752.480373337428", "assert lateralsurface_cube(58.60446127338968) == 13737.931524576923", "assert lateralsurface_cube(43.96898505055638) == 7733.0865855042", "assert lateralsurface_cube(71.53271932911613) == 20467.71973847242", "assert lateralsurface_cube(74.8787595686315) == 22427.31453814769", "assert lateralsurface_cube(503) == 1012036", "assert lateralsurface_cube(46.16814427525153) == 8525.990183281761", "assert lateralsurface_cube(111.66234638131426) == 49873.91839752243", "assert lateralsurface_cube(88.08382305305746) == 31035.039534569347", "assert lateralsurface_cube(49.49303485405071) == 9798.241996257115", "assert lateralsurface_cube(61.37019967563893) == 15065.20563291117", "assert lateralsurface_cube(32.91553737053482) == 4333.730401564298", "assert lateralsurface_cube(66.36780157713834) == 17618.740344729624", "assert lateralsurface_cube(57.29823626732467) == 13132.351517384639", "assert lateralsurface_cube(22.379094693696736) == 2003.2955172377815", "assert lateralsurface_cube(54.96499328054807) == 12084.601945322778", "assert lateralsurface_cube(36.1581754122743) == 5229.654596579192", "assert lateralsurface_cube(66.92178864353467) == 17914.103180999704", "assert lateralsurface_cube(46.768786306758976) == 8749.277490429144", "assert lateralsurface_cube(45.70770179810679) == 8356.776014658619", "assert lateralsurface_cube(167.1370719989952) == 111739.20334558922", "assert lateralsurface_cube(47.58561323936907) == 9057.562349467267", "assert lateralsurface_cube(177.1807622449919) == 125572.0900388654", "assert lateralsurface_cube(88.511622782816) == 31337.229470590053", "assert lateralsurface_cube(75.47079545748679) == 22783.363867943233", "assert lateralsurface_cube(131.7505984206982) == 69432.88073684832", "assert lateralsurface_cube(47.072828054103255) == 8863.404564044682", "assert lateralsurface_cube(44.70281907116363) == 7993.368131636764", "assert lateralsurface_cube(39.63955404134835) == 6285.1769783879045", "assert lateralsurface_cube(204.65193122740226) == 167529.65182042154", "assert lateralsurface_cube(74.5525427247953) == 22232.326506929716", "assert lateralsurface_cube(99.26181704026428) == 39411.6332885396", "assert lateralsurface_cube(21.120055544612296) == 1784.2269848300343", "assert lateralsurface_cube(79.31702556710835) == 25164.762179253277", "assert lateralsurface_cube(74.78374726509155) == 22370.435420036352", "assert lateralsurface_cube(76.34666896378033) == 23315.255447460237", "assert lateralsurface_cube(87.40201417119114) == 30556.448324724388", "assert lateralsurface_cube(81.44166666320646) == 26530.98027552334", "assert lateralsurface_cube(103.47341378006003) == 42826.98943719806", "assert lateralsurface_cube(80.48426490964339) == 25910.867592182614", "assert lateralsurface_cube(150.05803234410334) == 90069.65228393585", "assert lateralsurface_cube(83.47216295269475) == 27870.4079520049", "assert lateralsurface_cube(149.60372427578594) == 89525.09726874153", "assert lateralsurface_cube(58.449276101423614) == 13665.271507121799", "assert lateralsurface_cube(89.42036866377818) == 31984.00932786401", "assert lateralsurface_cube(261.58475368046663) == 273706.3334322816", "assert lateralsurface_cube(74.10117623814627) == 21963.937279507252", "assert lateralsurface_cube(88.29944030057857) == 31187.16462958175", "assert lateralsurface_cube(44.370912453575414) == 7875.111487851415", "assert lateralsurface_cube(71.18054521166749) == 20266.68006652096", "assert lateralsurface_cube(90.63536438039682) == 32859.07710546922", "assert lateralsurface_cube(235.15522010358956) == 221191.9101678706", "assert lateralsurface_cube(149.81299725780573) == 89775.73658946923", "assert lateralsurface_cube(82) == 26896", "assert lateralsurface_cube(22) == 1936", "assert lateralsurface_cube(55.29773209779792) == 12231.35670063932", "assert lateralsurface_cube(57.762852719453875) == 13346.188617157279", "assert lateralsurface_cube(33.23388199757163) == 4417.9636505140625", "assert lateralsurface_cube(78.68210551259803) == 24763.494911582435", "assert lateralsurface_cube(86.74383027879837) == 30097.968365747907", "assert lateralsurface_cube(54.974906483559266) == 12088.961371504347", "assert lateralsurface_cube(16.361378713598747) == 1070.7788536392086", "assert lateralsurface_cube(82.82980927890722) == 27443.10922072058", "assert lateralsurface_cube(62.87886571752386) == 15815.007015689589" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function that takes in an integer n and returns the sum of the squares of the first n odd natural numbers.\nassert square_Sum(2) == 10\nYour code should pass the test:\nassert square_Sum(2) == 10", "test_list": [ "assert square_Sum(2) == 10", "assert square_Sum(3) == 35", "assert square_Sum(4) == 84", "assert square_Sum(1000000.0) == 1.333333333333e+18", "assert square_Sum(10000000.0) == 1.33333333333333e+21", "assert square_Sum(100000000.0) == 1.3333333333333333e+24", "assert square_Sum(1) == 1.0", "assert square_Sum(10) == 1330.0", "assert square_Sum(100) == 1333300.0", "assert square_Sum(123456789) == 2.5089018290522064e+24", "assert square_Sum(999999999) == 1.3333333293333333e+27", "assert square_Sum(5) == 165.0", "assert square_Sum(7) == 455.0", "assert square_Sum(15) == 4495.0", "assert square_Sum(50000) == 166666666650000.0", "assert square_Sum(999999) == 1.333329333337e+18", "assert square_Sum(1234567890) == 2.508901829052206e+27", "assert square_Sum(3) == 35.0", "assert square_Sum(4) == 84.0", "assert square_Sum(2) == 10.0", "assert square_Sum(3) == 35.0", "assert square_Sum(4) == 84.0", "assert square_Sum(14) == 3654.0", "assert square_Sum(8) == 680.0", "assert square_Sum(6) == 286.0", "assert square_Sum(9) == 969.0", "assert square_Sum(16) == 5456.0", "assert square_Sum(1000000000) == 1.3333333333333333e+27", "assert square_Sum(999999998) == 1.3333333253333334e+27", "assert square_Sum(95) == 1143135.0", "assert square_Sum(13) == 2925.0", "assert square_Sum(123456788) == 2.508901768085892e+24", "assert square_Sum(101) == 1373701.0", "assert square_Sum(123456787) == 2.5089017071195784e+24", "assert square_Sum(17) == 6545.0", "assert square_Sum(True) == 1.0", "assert square_Sum(12) == 2300.0", "assert square_Sum(89) == 939929.0", "assert square_Sum(1234567891) == 2.508901835148838e+27", "assert square_Sum(102) == 1414910.0", "assert square_Sum(90) == 971970.0", "assert square_Sum(1000000001) == 1.3333333373333335e+27", "assert square_Sum(88) == 908600.0", "assert square_Sum(26) == 23426.0", "assert square_Sum(1000000) == 1.333333333333e+18", "assert square_Sum(98) == 1254890.0", "assert square_Sum(96) == 1179616.0", "assert square_Sum(23) == 16215.0", "assert square_Sum(24) == 18424.0", "assert square_Sum(103) == 1456935.0", "assert square_Sum(25) == 20825.0", "assert square_Sum(91) == 1004731.0", "assert square_Sum(1234567889) == 2.508901822955575e+27", "assert square_Sum(1000000002) == 1.3333333413333334e+27", "assert square_Sum(27) == 26235.0", "assert square_Sum(1000000003) == 1.3333333453333333e+27", "assert square_Sum(11) == 1771.0", "assert square_Sum(97) == 1216865.0", "assert square_Sum(999998) == 1.333325333349e+18", "assert square_Sum(18) == 7770.0", "assert square_Sum(50002) == 166686667450010.0", "assert square_Sum(104) == 1499784.0", "assert square_Sum(99) == 1293699.0", "assert square_Sum(1000000004) == 1.3333333493333333e+27", "assert square_Sum(49999) == 166656666849999.0", "assert square_Sum(50001) == 166676666850001.0", "assert square_Sum(19) == 9139.0", "assert square_Sum(94) == 1107414.0", "assert square_Sum(93) == 1072445.0", "assert square_Sum(22) == 14190.0", "assert square_Sum(20) == 10660.0", "assert square_Sum(1234567892) == 2.5089018412454697e+27", "assert square_Sum(74) == 540274.0", "assert square_Sum(59) == 273819.0", "assert square_Sum(92) == 1038220.0", "assert square_Sum(28) == 29260.0", "assert square_Sum(77) == 608685.0", "assert square_Sum(1000001) == 1.333337333337e+18", "assert square_Sum(58) == 260130.0", "assert square_Sum(999997) == 1.333321333369e+18", "assert square_Sum(999996) == 1.333317333397e+18", "assert square_Sum(75) == 562475.0", "assert square_Sum(999999997) == 1.3333333213333334e+27", "assert square_Sum(60) == 287980.0", "assert square_Sum(123456790) == 2.508901890018522e+24", "assert square_Sum(50003) == 166696668450035.0", "assert square_Sum(50004) == 166706669850084.0", "assert square_Sum(87) == 877975.0", "assert square_Sum(78) == 632710.0", "assert square_Sum(76) == 585276.0", "assert square_Sum(999995) == 1.333313333433e+18", "assert square_Sum(21) == 12341.0", "assert square_Sum(999994) == 1.3333093334769997e+18", "assert square_Sum(50005) == 166716671650165.0", "assert square_Sum(123456791) == 2.5089019509848386e+24", "assert square_Sum(29) == 32509.0", "assert square_Sum(85) == 818805.0", "assert square_Sum(73) == 518665.0", "assert square_Sum(49998) == 166646667449990.0", "assert square_Sum(50006) == 166726673850286.0", "assert square_Sum(123456792) == 2.508902011951156e+24", "assert square_Sum(1234567888) == 2.5089018168589433e+27", "assert square_Sum(999999996) == 1.3333333173333335e+27", "assert square_Sum(57) == 246905.0", "assert square_Sum(1234567893) == 2.508901847342101e+27", "assert square_Sum(86) == 848046.0", "assert square_Sum(84) == 790244.0", "assert square_Sum(1234567887) == 2.508901810762312e+27", "assert square_Sum(83) == 762355.0", "assert square_Sum(50007) == 166736676450455.0", "assert square_Sum(49997) == 166636668449965.0", "assert square_Sum(79) == 657359.0", "assert square_Sum(30) == 35990.0", "assert square_Sum(50008) == 166746679450680.0", "assert square_Sum(31) == 39711.0", "assert square_Sum(64) == 349504.0", "assert square_Sum(105) == 1543465.0", "assert square_Sum(1234567886) == 2.5089018046656805e+27", "assert square_Sum(61) == 302621.0", "assert square_Sum(62) == 317750.0", "assert square_Sum(1234567885) == 2.508901798569049e+27", "assert square_Sum(999999994) == 1.3333333093333334e+27" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the n'th star number.\nassert find_star_num(3) == 37\nYour code should pass the test:\nassert find_star_num(3) == 37", "test_list": [ "assert find_star_num(3) == 37", "assert find_star_num(4) == 73", "assert find_star_num(5) == 121", "assert find_star_num(1000000) == 5999994000001", "assert find_star_num(543210) == 1770459365341", "assert find_star_num(98765432) == 58527662756287153", "assert find_star_num(999999) == 5999982000013", "assert find_star_num(999998) == 5999970000037", "assert find_star_num(543211) == 1770465883861", "assert find_star_num(543212) == 1770472402393", "assert find_star_num(999997) == 5999958000073", "assert find_star_num(True) == 1", "assert find_star_num(543213) == 1770478920937", "assert find_star_num(543214) == 1770485439493", "assert find_star_num(1000001) == 6000006000001", "assert find_star_num(999996) == 5999946000121", "assert find_star_num(1000002) == 6000018000013", "assert find_star_num(1000004) == 6000042000073", "assert find_star_num(1000003) == 6000030000037", "assert find_star_num(98765433) == 58527663941472337", "assert find_star_num(543215) == 1770491958061", "assert find_star_num(543209) == 1770452846833", "assert find_star_num(1000005) == 6000054000121", "assert find_star_num(98765434) == 58527665126657533", "assert find_star_num(67) == 26533", "assert find_star_num(98765435) == 58527666311842741", "assert find_star_num(98765430) == 58527660385916821", "assert find_star_num(98765431) == 58527661571101981", "assert find_star_num(77) == 35113", "assert find_star_num(76) == 34201", "assert find_star_num(75) == 33301", "assert find_star_num(78) == 36037", "assert find_star_num(999995) == 5999934000181", "assert find_star_num(53) == 16537", "assert find_star_num(1000006) == 6000066000181", "assert find_star_num(74) == 32413", "assert find_star_num(73) == 31537", "assert find_star_num(52) == 15913", "assert find_star_num(98765429) == 58527659200731673", "assert find_star_num(1000007) == 6000078000253", "assert find_star_num(98765428) == 58527658015546537", "assert find_star_num(999994) == 5999922000253", "assert find_star_num(54) == 17173", "assert find_star_num(543216) == 1770498476641", "assert find_star_num(72) == 30673", "assert find_star_num(543208) == 1770446328337", "assert find_star_num(543207) == 1770439809853", "assert find_star_num(999993) == 5999910000337", "assert find_star_num(71) == 29821", "assert find_star_num(543217) == 1770504995233", "assert find_star_num(68) == 27337", "assert find_star_num(50) == 14701", "assert find_star_num(66) == 25741", "assert find_star_num(55) == 17821", "assert find_star_num(543206) == 1770433291381", "assert find_star_num(51) == 15301", "assert find_star_num(70) == 28981", "assert find_star_num(98765427) == 58527656830361413", "assert find_star_num(543205) == 1770426772921", "assert find_star_num(56) == 18481", "assert find_star_num(17) == 1633", "assert find_star_num(49) == 14113", "assert find_star_num(1000008) == 6000090000337", "assert find_star_num(543204) == 1770420254473", "assert find_star_num(57) == 19153", "assert find_star_num(1000009) == 6000102000433", "assert find_star_num(98765436) == 58527667497027961", "assert find_star_num(999992) == 5999898000433", "assert find_star_num(24) == 3313", "assert find_star_num(1000010) == 6000114000541", "assert find_star_num(1000011) == 6000126000661", "assert find_star_num(1000012) == 6000138000793", "assert find_star_num(16) == 1441", "assert find_star_num(59) == 20533", "assert find_star_num(58) == 19837", "assert find_star_num(23) == 3037", "assert find_star_num(1000013) == 6000150000937", "assert find_star_num(93) == 51337", "assert find_star_num(15) == 1261", "assert find_star_num(22) == 2773", "assert find_star_num(94) == 52453", "assert find_star_num(48) == 13537", "assert find_star_num(543218) == 1770511513837", "assert find_star_num(14) == 1093", "assert find_star_num(98765426) == 58527655645176301", "assert find_star_num(95) == 53581", "assert find_star_num(79) == 36973", "assert find_star_num(92) == 50233", "assert find_star_num(98765437) == 58527668682213193", "assert find_star_num(18) == 1837", "assert find_star_num(69) == 28153", "assert find_star_num(1000014) == 6000162001093", "assert find_star_num(46) == 12421", "assert find_star_num(543219) == 1770518032453", "assert find_star_num(98765425) == 58527654459991201", "assert find_star_num(91) == 49141", "assert find_star_num(45) == 11881", "assert find_star_num(25) == 3601", "assert find_star_num(98765423) == 58527652089621037", "assert find_star_num(21) == 2521", "assert find_star_num(13) == 937", "assert find_star_num(47) == 12973", "assert find_star_num(27) == 4213", "assert find_star_num(80) == 37921", "assert find_star_num(1000015) == 6000174001261", "assert find_star_num(26) == 3901" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the ascii value of a character.\nassert ascii_value('A')==65\nYour code should pass the test:\nassert ascii_value('A')==65", "test_list": [ "assert ascii_value('A')==65", "assert ascii_value('R')==82", "assert ascii_value('S')==83", "assert ascii_value('@') == 64", "assert ascii_value('®') == 174", "assert ascii_value('!') == 33", "assert ascii_value(' ') == 32", "assert ascii_value('ص') == 1589", "assert ascii_value('&') == 38", "assert ascii_value('\\n') == 10", "assert ascii_value('€') == 8364", "assert ascii_value('^') == 94", "assert ascii_value('ä') == 228", "assert ascii_value('π') == 960", "assert ascii_value('~') == 126", "assert ascii_value('\\t') == 9", "assert ascii_value('©') == 169", "assert ascii_value('๑') == 3665", "assert ascii_value('$') == 36", "assert ascii_value('7') == 55", "assert ascii_value('%') == 37", "assert ascii_value('[') == 91", "assert ascii_value('{') == 123", "assert ascii_value('é') == 233", "assert ascii_value('\\x00') == 0", "assert ascii_value('\\x1d') == 29", "assert ascii_value('♥') == 9829", "assert ascii_value('\\uffff') == 65535", "assert ascii_value('\\x7f') == 127", "assert ascii_value('\\x80') == 128", "assert ascii_value('™') == 8482", "assert ascii_value('文') == 25991", "assert ascii_value('→') == 8594", "assert ascii_value('R') == 82", "assert ascii_value('A') == 65", "assert ascii_value('F') == 70", "assert ascii_value('q') == 113", "assert ascii_value('E') == 69", "assert ascii_value('o') == 111", "assert ascii_value('W') == 87", "assert ascii_value('U') == 85", "assert ascii_value('O') == 79", "assert ascii_value('K') == 75", "assert ascii_value('v') == 118", "assert ascii_value('Z') == 90", "assert ascii_value('N') == 78", "assert ascii_value('P') == 80", "assert ascii_value('b') == 98", "assert ascii_value('y') == 121", "assert ascii_value('l') == 108", "assert ascii_value('V') == 86", "assert ascii_value('D') == 68", "assert ascii_value('u') == 117", "assert ascii_value('s') == 115", "assert ascii_value('I') == 73", "assert ascii_value('h') == 104", "assert ascii_value('H') == 72", "assert ascii_value('B') == 66", "assert ascii_value('k') == 107", "assert ascii_value('X') == 88", "assert ascii_value('L') == 76", "assert ascii_value('S') == 83", "assert ascii_value('p') == 112", "assert ascii_value('Y') == 89", "assert ascii_value('c') == 99", "assert ascii_value('J') == 74", "assert ascii_value('T') == 84", "assert ascii_value('a') == 97", "assert ascii_value('e') == 101", "assert ascii_value('r') == 114", "assert ascii_value('G') == 71", "assert ascii_value('j') == 106", "assert ascii_value('m') == 109", "assert ascii_value('z') == 122", "assert ascii_value('n') == 110", "assert ascii_value('g') == 103", "assert ascii_value('t') == 116", "assert ascii_value('i') == 105", "assert ascii_value('d') == 100", "assert ascii_value('M') == 77", "assert ascii_value('x') == 120", "assert ascii_value('f') == 102", "assert ascii_value('C') == 67", "assert ascii_value('Q') == 81", "assert ascii_value('w') == 119" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of even numbers at even positions of a list.\nassert sum_even_and_even_index([5, 6, 12, 1, 18, 8]) == 30\nYour code should pass the test:\nassert sum_even_and_even_index([5, 6, 12, 1, 18, 8]) == 30", "test_list": [ "assert sum_even_and_even_index([5, 6, 12, 1, 18, 8]) == 30", "assert sum_even_and_even_index([3, 20, 17, 9, 2, 10, 18, 13, 6, 18]) == 26", "assert sum_even_and_even_index([5, 6, 12, 1]) == 12", "assert sum_even_and_even_index([]) == 0", "assert sum_even_and_even_index([2]) == 2", "assert sum_even_and_even_index([2, 4, 8, 16, 32, 64, 128, 256, 512, 1024]) == 682", "assert sum_even_and_even_index([1, 3, 5, 7, 9]) == 0", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 4, 9, 7]) == 10", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 3, 9, 7]) == 10", "assert sum_even_and_even_index([1, 3, 7, 9]) == 0", "assert sum_even_and_even_index([1, 2, 3, 7, 9, 1]) == 0", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 2, 3, 9, 7, 3]) == 10", "assert sum_even_and_even_index([3, 1, 8, 7, 6, 2, 4, 9, 7]) == 18", "assert sum_even_and_even_index([128, 1, 8, 6, 4, 9, 7]) == 140", "assert sum_even_and_even_index([1024, 2, 3, 7, 9]) == 1024", "assert sum_even_and_even_index([1, 3, 7]) == 0", "assert sum_even_and_even_index([9, 90]) == 0", "assert sum_even_and_even_index([1, 3, 7, 0, 1, 1]) == 0", "assert sum_even_and_even_index([1024, 7, 9, 1]) == 1024", "assert sum_even_and_even_index([128, 1, 8, 6, 4, 90, 7, 128]) == 140", "assert sum_even_and_even_index([1, 2, 90, 7, 10, 2]) == 100", "assert sum_even_and_even_index([3, 1, 8, 6, 3, 9, 7]) == 8", "assert sum_even_and_even_index([3, 1, 6, 2, 4, 9, 7]) == 10", "assert sum_even_and_even_index([1, 8, 3, 7]) == 0", "assert sum_even_and_even_index([256, 1, 8, 6, 2, 3, 9, 7, 3]) == 266", "assert sum_even_and_even_index([128, 1, 8, 6, 4, 9, 0, 7]) == 140", "assert sum_even_and_even_index([0, 256, 1, 8, 6, 2, 3, 8, 7, 3, 3]) == 6", "assert sum_even_and_even_index([1, 2, 3, 7, 9, 1, 2]) == 2", "assert sum_even_and_even_index([3, 1, 5, 7, 6, 2, 4, 9, 7]) == 10", "assert sum_even_and_even_index([3]) == 0", "assert sum_even_and_even_index([3, 1, 2, 4, 9, 7]) == 2", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 3, 3, 9, 7]) == 10", "assert sum_even_and_even_index([128, 2, 8, 6, 90, 7, 128]) == 354", "assert sum_even_and_even_index([1, 3, 7, 0, 1, 0]) == 0", "assert sum_even_and_even_index([1, 3, 2, 7]) == 2", "assert sum_even_and_even_index([1, 3, 5, 7, 9, 1]) == 0", "assert sum_even_and_even_index([128, 1, 1, 6, 8, 6, 0, 7]) == 136", "assert sum_even_and_even_index([2, 4, 8, 16, 32, 64, 128, 128, 512, 1024]) == 682", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 2, 3, 9, 7, 3, 3]) == 10", "assert sum_even_and_even_index([1, 8, 3, 7, 1]) == 0", "assert sum_even_and_even_index([3, 4, 8, 32, 64, 128, 128, 1024, 1024]) == 1224", "assert sum_even_and_even_index([1, 2, 9, 7, 10, 2]) == 10", "assert sum_even_and_even_index([128, 1, 8, 6, 4, 10, 0, 7, 1]) == 140", "assert sum_even_and_even_index([1, 5, 7, 1]) == 0", "assert sum_even_and_even_index([1, 9, 7, 10, 2]) == 2", "assert sum_even_and_even_index([3, 1, 2, 8, 6, 2, 4, 9, 7, 1, 4]) == 16", "assert sum_even_and_even_index([1, 8, 3, 1, 1]) == 0", "assert sum_even_and_even_index([128, 1, 8, 32, 4, 9, 0, 7]) == 140", "assert sum_even_and_even_index([3, 1, 10, 8, 6, 2, 4, 9, 7, 3]) == 20", "assert sum_even_and_even_index([1, 5, 7, 9]) == 0", "assert sum_even_and_even_index([128, 2, 8, 6, 4, 9, 7]) == 140", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 2, 3, 9, 2, 7, 3]) == 12", "assert sum_even_and_even_index([1, 5, 7, 9, 9]) == 0", "assert sum_even_and_even_index([1, 7, 5, 7, 9]) == 0", "assert sum_even_and_even_index([128, 8, 1, 8, 6, 4, 90, 7, 128]) == 352", "assert sum_even_and_even_index([1, 8, 3, 1, 128, 1]) == 128", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 2, 3, 9, 3, 1]) == 10", "assert sum_even_and_even_index([1024, 2, 7, 9]) == 1024", "assert sum_even_and_even_index([1024, 1, 2, 7, 9]) == 1026", "assert sum_even_and_even_index([129, 1, 1, 6, 8, 6, 0, 7, 128]) == 136", "assert sum_even_and_even_index([1, 8, 3, 1, 128, 1, 3]) == 128", "assert sum_even_and_even_index([1024, 1, 2, 7, 9, 7]) == 1026", "assert sum_even_and_even_index([1024, 7, 9]) == 1024", "assert sum_even_and_even_index([32, 1, 8, 3, 2, 128, 1, 3]) == 42", "assert sum_even_and_even_index([1, 9, 7, 9, 2]) == 2", "assert sum_even_and_even_index([512, 8, 256, 3, 1, 1]) == 768", "assert sum_even_and_even_index([128, 1, 8, 6, 4, 90, 7, 5, 128]) == 268", "assert sum_even_and_even_index([4, 1, 2, 4, 9, 7]) == 6", "assert sum_even_and_even_index([3, 9, 1, 2, 8, 6, 4, 8, 7, 1, 4]) == 16", "assert sum_even_and_even_index([3, 3, 1, 10, 8, 6, 2, 4, 9, 7, 3]) == 10", "assert sum_even_and_even_index([128, 1, 6, 9, 8, 6, 0, 7]) == 142", "assert sum_even_and_even_index([1, 9, 7, 10, 2, 9]) == 2", "assert sum_even_and_even_index([4, 1, 9, 7, 9, 2, 7]) == 4", "assert sum_even_and_even_index([4, 1, 4, 9, 7, 1]) == 8", "assert sum_even_and_even_index([5, 1, 9, 8, 7, 6, 1, 4, 9, 7]) == 0", "assert sum_even_and_even_index([1, 5, 7, 9, 7]) == 0", "assert sum_even_and_even_index([128, 1, 6, 9, 8, 1024, 0, 7, 6]) == 148", "assert sum_even_and_even_index([256, 1, 8, 6, 2, 3, 9, 7, 2, 3]) == 268", "assert sum_even_and_even_index([128, 1, 8, 6, 4, 10, 0, 7, 1, 128]) == 140", "assert sum_even_and_even_index([32, 1, 8, 6, 2, 3, 3, 9, 7]) == 42", "assert sum_even_and_even_index([16, 1, 8, 6, 2, 4, 9, 7]) == 26", "assert sum_even_and_even_index([3, 1, 2, 4, 9, 7, 7]) == 2", "assert sum_even_and_even_index([1, 1024, 2, 3, 7, 9, 1]) == 2", "assert sum_even_and_even_index([128, 1, 8, 6, 7, 4, 90, 7]) == 226", "assert sum_even_and_even_index([1, 8, 7, 9, 2]) == 2", "assert sum_even_and_even_index([1024, 7, 3, 1024]) == 1024", "assert sum_even_and_even_index([1, 3, 7, 8, 0, 1, 1]) == 0", "assert sum_even_and_even_index([1, 7, 10, 7, 9]) == 10", "assert sum_even_and_even_index([128, 1, 1, 6, 8, 6, 0, 7, 128]) == 264", "assert sum_even_and_even_index([128, 1, 6, 8, 9, 8, 1024, 0, 7, 6, 0, 6]) == 1158", "assert sum_even_and_even_index([1, 9, 8, 7, 9, 2]) == 8", "assert sum_even_and_even_index([1, 512, 7, 10, 9]) == 0", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 2, 3, 9, 7, 3, 2, 3]) == 12", "assert sum_even_and_even_index([1, 3, 7, 1, 0]) == 0", "assert sum_even_and_even_index([4, 1, 8, 6, 2, 2, 3, 9, 7, 3, 7, 3]) == 14", "assert sum_even_and_even_index([256, 1, 8, 6, 2, 3, 9, 8, 3]) == 266", "assert sum_even_and_even_index([32, 1, 8, 3, 2, 128, 10, 3, 10]) == 62", "assert sum_even_and_even_index([1024, 9, 5]) == 1024", "assert sum_even_and_even_index([3, 1, 8, 6, 2, 2, 3, 2, 9, 7, 3, 3]) == 10", "assert sum_even_and_even_index([7, 1]) == 0", "assert sum_even_and_even_index([129, 1, 1, 6, 8, 6, 0, 128]) == 8", "assert sum_even_and_even_index([1, 3, 7, 0, 1, 1, 7]) == 0", "assert sum_even_and_even_index([3, 9, 1, 2, 8, 0, 4, 8, 7, 1, 4, 9]) == 16", "assert sum_even_and_even_index([4, 1, 9, 6, 9, 2, 16]) == 20", "assert sum_even_and_even_index([128, 1, 8, 8, 32, 4, 9, 0, 7]) == 168", "assert sum_even_and_even_index([3, 1, 7, 6, 2, 2, 3, 9, 1, 7, 3, 2, 3]) == 2", "assert sum_even_and_even_index([1, 3, 4, 5, 7, 9, 1]) == 4", "assert sum_even_and_even_index([4, 1, 7, 6, 2, 2, 3, 9, 1, 7, 3, 2, 3, 3]) == 6" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function that takes in an integer n and finds the sum of the first n even natural numbers that are raised to the fifth power.\nassert even_Power_Sum(2) == 1056\nYour code should pass the test:\nassert even_Power_Sum(2) == 1056", "test_list": [ "assert even_Power_Sum(2) == 1056", "assert even_Power_Sum(3) == 8832", "assert even_Power_Sum(1) == 32", "assert even_Power_Sum(10) == 7066400", "assert even_Power_Sum(100) == 5494666640000", "assert even_Power_Sum(1000) == 5349346666664000000", "assert even_Power_Sum(1000000) == 5333349333346666666666664000000000000", "assert even_Power_Sum(500000) == 83333833334166666666666000000000000", "assert even_Power_Sum(250000) == 1302098958385416666666500000000000", "assert even_Power_Sum(100000) == 5333493334666666666640000000000", "assert even_Power_Sum(249999) == 1302067708385416666666500000000000", "assert even_Power_Sum(999) == 5317346666664000000", "assert even_Power_Sum(101) == 5830989856032", "assert even_Power_Sum(62) == 317789722656", "assert even_Power_Sum(11) == 12220032", "assert even_Power_Sum(249998) == 1302036459010411666686499960000032", "assert even_Power_Sum(99) == 5174666640000", "assert even_Power_Sum(499999) == 83332833334166666666666000000000000", "assert even_Power_Sum(61) == 288473472032", "assert even_Power_Sum(102) == 6184295713056", "assert even_Power_Sum(63) == 349547692032", "assert even_Power_Sum(249997) == 1302005210260391666846499320001056", "assert even_Power_Sum(64) == 383907430400", "assert even_Power_Sum(999999) == 5333317333346666666666664000000000000", "assert even_Power_Sum(35) == 10664438400", "assert even_Power_Sum(997) == 5253825069541281056", "assert even_Power_Sum(36) == 12599356032", "assert even_Power_Sum(100001) == 5333813350666986669840016000032", "assert even_Power_Sum(1000001) == 5333381333506666986666984000160000032", "assert even_Power_Sum(9) == 3866400", "assert even_Power_Sum(499997) == 83330833364166466667385998640001056", "assert even_Power_Sum(True) == 32", "assert even_Power_Sum(996) == 5222302198168328832", "assert even_Power_Sum(499996) == 83329833394166106669545992160008832", "assert even_Power_Sum(499995) == 83328833434165466674665971680041600", "assert even_Power_Sum(250001) == 1302130209010421666686500040000032", "assert even_Power_Sum(37) == 14818362656", "assert even_Power_Sum(98) == 4870349824032", "assert even_Power_Sum(65) == 421036730400", "assert even_Power_Sum(97) == 4581095169056", "assert even_Power_Sum(999998) == 5333285333506666346666983999840000032", "assert even_Power_Sum(34) == 8983738400", "assert even_Power_Sum(60) == 261446390400", "assert even_Power_Sum(59) == 236563190400", "assert even_Power_Sum(12) == 20182656", "assert even_Power_Sum(500001) == 83334833344166706666746000080000032", "assert even_Power_Sum(66) == 461111372832", "assert even_Power_Sum(13) == 32064032", "assert even_Power_Sum(93) == 3562921830432", "assert even_Power_Sum(67) == 504315376256", "assert even_Power_Sum(500002) == 83335833364166866667386001360001056", "assert even_Power_Sum(92) == 3340301552256", "assert even_Power_Sum(103) == 6555263416832", "assert even_Power_Sum(68) == 550841250432", "assert even_Power_Sum(100002) == 5334133382668266695440272001056", "assert even_Power_Sum(1000002) == 5333413333826668266669544002720001056", "assert even_Power_Sum(1000003) == 5333445334306671146678184015680008832", "assert even_Power_Sum(995) == 5190937098607401600", "assert even_Power_Sum(94) == 3797771117600", "assert even_Power_Sum(500003) == 83336833394167226669546007840008832", "assert even_Power_Sum(8) == 1976832", "assert even_Power_Sum(1001) == 5381506986984160032", "assert even_Power_Sum(80) == 1451076249600", "assert even_Power_Sum(96) == 4306300280832", "assert even_Power_Sum(1003) == 5446311158199688832", "assert even_Power_Sum(499998) == 83331833344166626666745999920000032", "assert even_Power_Sum(79) == 1346218649600", "assert even_Power_Sum(95) == 4045381017600", "assert even_Power_Sum(78) == 1247752844832", "assert even_Power_Sum(90) == 2929705178400", "assert even_Power_Sum(999997) == 5333253333826665066669543997280001056", "assert even_Power_Sum(499994) == 83327833484164466684665921680141600", "assert even_Power_Sum(29) == 3509997600", "assert even_Power_Sum(91) == 3129395464832", "assert even_Power_Sum(1) == 32", "assert even_Power_Sum(30) == 4287597600", "assert even_Power_Sum(28) == 2853640832", "assert even_Power_Sum(999996) == 5333221334306662186678183984320008832", "assert even_Power_Sum(100003) == 5334453430671146781841568008832", "assert even_Power_Sum(999995) == 5333189334946657066698663943360041600", "assert even_Power_Sum(1002) == 5413828269546721056", "assert even_Power_Sum(2) == 1056", "assert even_Power_Sum(998) == 5285506346983840032", "assert even_Power_Sum(999994) == 5333157335746649066738663843360141600", "assert even_Power_Sum(100004) == 5334773494676266986645664041600", "assert even_Power_Sum(89) == 2740748378400", "assert even_Power_Sum(250002) == 1302161460260441666846500680001056", "assert even_Power_Sum(58) == 213685612832", "assert even_Power_Sum(999993) == 5333125336706637546807783636000390432", "assert even_Power_Sum(994) == 5159729138507501600", "assert even_Power_Sum(26) == 1843744032", "assert even_Power_Sum(999991) == 5333061339106601387081382596481976832", "assert even_Power_Sum(88) == 2562058476032", "assert even_Power_Sum(33) == 7529804832", "assert even_Power_Sum(1000004) == 5333477334946676266698664056640041600", "assert even_Power_Sum(100005) == 5335093574684267386655664141600", "assert even_Power_Sum(999990) == 5333029340546575467314661546723866400", "assert even_Power_Sum(81) == 1562653350432", "assert even_Power_Sum(1000005) == 5333509335746684266738664156640141600", "assert even_Power_Sum(99999) == 5333173334666666666640000000000", "assert even_Power_Sum(57) == 192682196256", "assert even_Power_Sum(1000006) == 5333541336706695786807784364000390432", "assert even_Power_Sum(32) == 6277472256", "assert even_Power_Sum(87) == 2393184262656", "assert even_Power_Sum(249996) == 1301973962135346667386496080008832", "assert even_Power_Sum(999992) == 5333093337826621866917543251840928256", "assert even_Power_Sum(993) == 5128677687420390432", "assert even_Power_Sum(104) == 6944592345600", "assert even_Power_Sum(82) == 1681290100256", "assert even_Power_Sum(76) == 1068746172032" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list of tuples and returns a list containing the rear element of each tuple.\nassert rear_extract([(1, 'Rash', 21), (2, 'Varsha', 20), (3, 'Kil', 19)]) == [21, 20, 19]\nYour code should pass the test:\nassert rear_extract([(1, 'Rash', 21), (2, 'Varsha', 20), (3, 'Kil', 19)]) == [21, 20, 19]", "test_list": [ "assert rear_extract([(1, 'Rash', 21), (2, 'Varsha', 20), (3, 'Kil', 19)]) == [21, 20, 19]", "assert rear_extract([(1, 'Sai', 36), (2, 'Ayesha', 25), (3, 'Salman', 45)]) == [36, 25, 45]", "assert rear_extract([(1, 'Sudeep', 14), (2, 'Vandana', 36), (3, 'Dawood', 56)]) == [14, 36, 56]", "assert rear_extract([]) == []", "assert rear_extract([(1, ['Rash', 21]), (2, ['Varsha', 20]), (3, ['Kil', 19])]) == [['Rash', 21], ['Varsha', 20], ['Kil', 19]]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]])]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]]]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4]), (['E', 5], ['F', 6])]) == [['B', 2], ['D', 4], ['F', 6]]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4]), (['E', 5], ['F', 6]), (['G', 7], ['H', 8])]) == [['B', 2], ['D', 4], ['F', 6], ['H', 8]]", "assert rear_extract([(['A', 'x'], [1, 'y']), ([True, 3.14], ['hello', 'world'])]) == [[1, 'y'], ['hello', 'world']]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], ['E', 9])]) == [[2, 3], ['C', 6], ['E', 9]]", "assert rear_extract([(['A', 1], ['B', 'C']), ('D', 2), ([3, 4], 5)]) == [['B', 'C'], 2, 5]", "assert rear_extract([(['A', ['B', ['C', ['D', ['E', 'F']]]]], 1)]) == [1]", "assert rear_extract([([[1, 'a'], [2, 'b']], [[3, 'c'], [4, 'd']]), ([[5, 'e'], [6, 'f']], [[7, 'g'], [8, 'h']])]) == [[[3, 'c'], [4, 'd']], [[7, 'g'], [8, 'h']]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ([['g', 'h'], ['i', 'j']], ['k', 'l'])]) == [['e', 'f'], ['k', 'l']]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', 'l']], ['m', 'n'])]) == [['e', 'f'], 'h', ['m', 'n']]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', 1]], ['l', 2])]) == [['e', 'f'], 'h', ['l', 2]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2])]) == [['e', 'f'], 'h', ['n', 2]]", "assert rear_extract([([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'])]) == [['G', 'H'], ['N', 'O']]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4]), (['E', 5], ['F', 6]), (['G', 7], ['H', 8]), (['G', 7], ['H', 8])]) == [['B', 2], ['D', 4], ['F', 6], ['H', 8], ['H', 8]]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2])]) == [['e', 'f'], 'h', ['n', 2]]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [[2, 3], ['C', 6], ['E', 9], ['C', 6]]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (3, ['Alice', ['Johnson', 28]])]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], ['Alice', ['Johnson', 28]]]", "assert rear_extract([(['A'], ['A', ['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['B', ['C', ['D', ['E', 'F']]]]], 1)]) == [1, 1]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h')]) == [['e', 'f'], 'h']", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['B', ['C', ['D', ['E', 'F']]]]], 1)]) == [1, 1]", "assert rear_extract([('h',), ([['a', 'b'], ['c', 'd']], ['e', 'f']), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2]), ([['a', 'b'], ['c', 'd']], ['e', 'f'])]) == ['h', ['e', 'f'], ['n', 2], ['e', 'f']]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1)]) == [1, 1]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4]), (['E', 5], ['F', 6], ['F', 6])]) == [['B', 2], ['D', 4], ['F', 6]]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [[2, 3], ['C', 6], ['C', 6, 6], ['E', 9], ['C', 6]]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (1, [['Doe', 25]], ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (3, ['Alice', ['Johnson', 28]])]) == [['John', ['Doe', 25]], ['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], ['Alice', ['Johnson', 28]]]", "assert rear_extract([(['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'])]) == [['G', 'H'], ['G', 'H'], ['N', 'O']]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (2,), (2, [['Smitth', 30], 'Jane', ['Smith', 30]]), (3,)]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], 2, [['Smitth', 30], 'Jane', ['Smith', 30]], 3]", "assert rear_extract([(['A', 'x'], ['A'], [1, 'y']), (['A', 'x', 'A'], [1, 'y']), (['A', 'x'], [1, 'y'])]) == [[1, 'y'], [1, 'y'], [1, 'y']]", "assert rear_extract([(['C', 3], ['D', 4]), (['E', 6, 5], ['F', 6]), (['E', 5], ['F', 6])]) == [['D', 4], ['F', 6], ['F', 6]]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], [['D', 7], 1], ['E', 9])]) == [[2, 3], ['C', 6], ['E', 9]]", "assert rear_extract([(['C'], [4, ['B', 5]], ['C', 6]), (['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [['C', 6], [2, 3], ['C', 6], ['E', 9], ['C', 6]]", "assert rear_extract([(['A', 'x'], ['d'], ['A'], [1, 'y'], ['A']), (['A', 'x'], ['A'], [1, 'y'], ['A']), (['A', 'x', 'A'], [1, 'y']), (['A', 'x'], [1, 'y'])]) == [['A'], ['A'], [1, 'y'], [1, 'y']]", "assert rear_extract([(['Rash', 21],), (2, ['Varsha', 20]), (3, ['Kil', 19])]) == [['Rash', 21], ['Varsha', 20], ['Kil', 19]]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['B', ['C', ['D', ['E', 'F']]]]], 1, 1)]) == [1, 1]", "assert rear_extract([(1, ['John', ['Doe', 25]], ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]])]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]]]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6], ['C', 6]), ([['D', 7], 8], ['E', 9])]) == [[2, 3], ['C', 6], ['C', 6], ['E', 9]]", "assert rear_extract([([['g', 'h'], ['i', 'j']], ['k', 'l'])]) == [['k', 'l']]", "assert rear_extract([(['A', 1], ['c', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [[2, 3], ['C', 6], ['C', 6, 6], ['E', 9], ['C', 6]]", "assert rear_extract([(['Rash', 21],), (2, ['Varsha', 20]), (3, ['Kil', 19]), (2, ['Varsha', 20])]) == [['Rash', 21], ['Varsha', 20], ['Kil', 19], ['Varsha', 20]]", "assert rear_extract([(['A', 'x'], [1, 'y'], [1, 'y']), ([True, 3.14], ['hello', 'world'], ['hello', 'world']), ([True, 3.14], ['hello', 'world'])]) == [[1, 'y'], ['hello', 'world'], ['hello', 'world']]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6], ['C', 6]), ([['D', 7], 8], ['E', 9])]) == [[2, 3], ['C', 6], ['E', 9]]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['B', ['C', ['D', ['E', 'F']]]]], 1, ['A'], 1)]) == [1, 1]", "assert rear_extract([([['g', 'h'], ['i', 'j']], ['k', 'l']), ([['g', 'h'], ['i', 'j']], ['k', 'l'])]) == [['k', 'l'], ['k', 'l']]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2]), ([['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2])]) == [['e', 'f'], 'h', ['n', 2], ['n', 2], ['n', 2]]", "assert rear_extract([(['A', 'x'], ['A'], [1, 'y'])]) == [[1, 'y']]", "assert rear_extract([([['g', 'h'], ['i', 'j']], ['ll', 'k', 'l']), ([['g', 'h'], ['i', 'j']], ['k', 'l'])]) == [['ll', 'k', 'l'], ['k', 'l']]", "assert rear_extract([([['g', 'h'], ['i', 'j']], ['k', 'l'], ['k', 'l']), ([['g', 'h'], ['i', 'j']], ['k', 'l'])]) == [['k', 'l'], ['k', 'l']]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6], ['C', 6]), ([['D', 7], 8], ['E', 9]), ([['D', 7], 8], ['E', 9])]) == [[2, 3], ['C', 6], ['C', 6], ['E', 9], ['E', 9]]", "assert rear_extract([(['Rash', 21],), (1, ['Rash', 21]), (2, ['Varsha', 20]), (3, ['Kil', 19])]) == [['Rash', 21], ['Rash', 21], ['Varsha', 20], ['Kil', 19]]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h')]) == [['e', 'f'], 'h']", "assert rear_extract([(['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O']), (['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), (['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H'])]) == [['G', 'H'], ['G', 'H'], ['N', 'O'], ['G', 'H'], ['G', 'H']]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1)]) == [1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1]", "assert rear_extract([(['A', ['B', ['C', ['D', ['E', 'F']]]]], 1, ['A', ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['B', ['C', ['D', ['E', 'F']]]]], 1)]) == [['A', ['B', ['C', ['D', ['E', 'F']]]]], 1]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', 'l']], ['m', 'n']), ('g', 'h')]) == [['e', 'f'], 'h', ['m', 'n'], 'h']", "assert rear_extract([('h',), ([['a', 'b'], ['c', 'd']], ['e', 'f']), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2])]) == ['h', ['e', 'f'], ['n', 2]]", "assert rear_extract([([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([['B', 5]], ['C', 6])]) == [['C', 6], ['C', 6, 6], ['E', 9], ['C', 6]]", "assert rear_extract([('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2])]) == ['h', ['n', 2]]", "assert rear_extract([(['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'])]) == [['G', 'H'], ['N', 'O']]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], [['D', 7], 1], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [[2, 3], ['C', 6], ['E', 9], ['C', 6]]", "assert rear_extract([(['A', 1], [2, 3]), ([['D', 7], 8], ['E', 9])]) == [[2, 3], ['E', 9]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', 1]], ['l', 2]), ([['i', 'j'], ['k', 1]], ['l', 2])]) == [['e', 'f'], 'h', ['l', 2], ['l', 2]]", "assert rear_extract([(1, ['John', ['Doe', 25]], ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (3, ['Alice', ['Johnson', 28]])]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], ['Alice', ['Johnson', 28]]]", "assert rear_extract([(['A', 1], [2, 3], ['A', 1]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], [['D', 7], 1], ['E', 9])]) == [['A', 1], ['C', 6], ['E', 9]]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4])]) == [['B', 2], ['D', 4]]", "assert rear_extract([('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2])]) == ['h', ['n', 2], ['n', 2]]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (1, [['Doe', 25]], ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (3,)]) == [['John', ['Doe', 25]], ['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], 3]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]])]) == [1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f'])]) == [['e', 'f']]", "assert rear_extract([(['A', 1], ['c', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6])]) == [[2, 3], ['C', 6], ['C', 6, 6], ['E', 9], ['C', 6], ['C', 6, 6]]", "assert rear_extract([(1, ['John', ['Doe', 25]], ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]], ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (1, ['John', ['Doe', 25]], ['John', ['Doe', 25]])]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], ['John', ['Doe', 25]]]", "assert rear_extract([(['A', 'x'], [1, 'y']), ([True, 3.14], ['hello', 'world']), (['A', 'x'], [1, 'y'])]) == [[1, 'y'], ['hello', 'world'], [1, 'y']]", "assert rear_extract([(['B'], ['A', 1], ['B', 'C']), (['A', 1], ['B', 'C']), ('D', 2), ([3, 4], 5)]) == [['B', 'C'], ['B', 'C'], 2, 5]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', 'l']], ['m', 'n']), ([['a', 'b'], ['c', 'd']], ['e', 'f'])]) == [['e', 'f'], 'h', ['m', 'n'], ['e', 'f']]", "assert rear_extract([(2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (3,)]) == [['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], 3]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']],), ('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2])]) == [[['a', 'aa', 'b'], ['c', 'd']], 'h', ['n', 2]]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2])]) == [['e', 'f'], 'h', ['n', 2], ['n', 2]]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['B', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], ['A', ['B', ['C', ['D', ['E', 'F']]]]], 1, 1)]) == [1, 1]", "assert rear_extract([(['A', 1], ['c', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [[2, 3], ['C', 6], ['E', 9], ['C', 6]]", "assert rear_extract([(['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H'], ['G', 'H']), ([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'])]) == [['G', 'H'], ['G', 'H'], ['G', 'H'], ['N', 'O']]", "assert rear_extract([([2, 'C', 6], [4, ['B', 5]], ['C', 6]), (['A', 1], ['c', 1], [2, 3]), ([4, ['B', 5], ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [['C', 6], [2, 3], ['C', 6], ['C', 6, 6], ['E', 9], ['C', 6]]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g',), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2]), ([['k', ['l', 'm']]], ['n', 2])]) == [['e', 'f'], 'g', ['n', 2], ['n', 2]]", "assert rear_extract([([['g', 'h'], ['i', 'j']],), ([['g', 'h'], ['i', 'j']], ['k', 'l'])]) == [[['g', 'h'], ['i', 'j']], ['k', 'l']]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['f']), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2])]) == [['f'], ['n', 2], ['n', 2]]", "assert rear_extract([(['A', 1], [2, 3], ['A', 1]), (['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [['A', 1], [2, 3], ['C', 6], ['C', 6, 6], ['E', 9], ['C', 6]]", "assert rear_extract([(['A', 1], ['B', 'C']), ('D', 2), ([3, 5, 4], 5)]) == [['B', 'C'], 2, 5]", "assert rear_extract([([4, ['B', 5]], ['C', 6]), (['C', 6, 6],), ([['D', 7], 8], ['E', 9]), ([['B', 5]], ['C', 6])]) == [['C', 6], ['C', 6, 6], ['E', 9], ['C', 6]]", "assert rear_extract([(['A', ['B', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], ['A', ['B', ['C', ['D', ['E', 'F']]]]], 1, 1)]) == [1]", "assert rear_extract([(['C', 3], ['D', 4]), (['E', 5], ['F', 6])]) == [['D', 4], ['F', 6]]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28], ['Johnson', 28]], ['Alice', ['Johnson', 28]]), (1, ['John', ['Doe', 25]])]) == [['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], ['John', ['Doe', 25]]]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('gF', 'g', 'h'), ([['a', 'aa', 'b'], ['c', 'd']],), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2], [['k', ['l', 'm']]])]) == [['e', 'f'], 'h', [['a', 'aa', 'b'], ['c', 'd']], ['n', 2], [['k', ['l', 'm']]]]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], [['k', ['l', 'm']]], ['n', 2]), ('g', 'h')]) == [['e', 'f'], 'h', ['n', 2], 'h']", "assert rear_extract([(['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H'], ['G', 'H']), ([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O']), (['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H'])]) == [['G', 'H'], ['G', 'H'], ['G', 'H'], ['N', 'O'], ['G', 'H']]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4]), (['E', 5], ['F', 6]), (['G', 7], ['H', 8]), (['E', 5], ['F', 6])]) == [['B', 2], ['D', 4], ['F', 6], ['H', 8], ['F', 6]]", "assert rear_extract([(1, ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]], 2), (3, ['Alice', ['Johnson', 28], ['Johnson', 28]], ['Alice', ['Johnson', 28]]), (3, ['Alice', ['Johnson', 28], ['Johnson', 28]], ['Alice', ['Johnson', 28]])]) == [['John', ['Doe', 25]], 2, ['Alice', ['Johnson', 28]], ['Alice', ['Johnson', 28]]]", "assert rear_extract([(['A', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6], ['C', 6]), ([['D', 7], 8], ['E', 9]), (['A', 1], [2, 3]), (['A', 1], [2, 3])]) == [[2, 3], ['C', 6], ['C', 6], ['E', 9], [2, 3], [2, 3]]", "assert rear_extract([(['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), (['SmithH', 'G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]]), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'])]) == [['G', 'H'], [['A', 'B'], ['C', ['D', ['E', 'F']]]], ['N', 'O']]", "assert rear_extract([([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['a', 'aa', 'b'], ['c', 'd']], ['e', 'f'])]) == [['e', 'f'], 'h', ['e', 'f']]", "assert rear_extract([([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'])]) == [['G', 'H'], ['N', 'O'], ['N', 'O']]", "assert rear_extract([(['A', 1], ['B', 2]), (['C', 3], ['D', 4]), (['E', 5], ['F', 6]), (['A', 1], ['B', 2])]) == [['B', 2], ['D', 4], ['F', 6], ['B', 2]]", "assert rear_extract([([4, ['B', 5], 4], [4, ['B', 5]], ['C', 6]), (['A', 1], ['c', 1], [2, 3]), ([4, ['B', 5]], ['C', 6]), ([['D', 7], 8], ['E', 9]), ([4, ['B', 5]], ['C', 6])]) == [['C', 6], [2, 3], ['C', 6], ['E', 9], ['C', 6]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ([['i', 'j'], ['k', 'l']], ['m', 'n'])]) == [['e', 'f'], ['m', 'n']]", "assert rear_extract([([3.14], [True, 3.14], ['hello', 'world']), (['A', 'x'], [1, 'y']), ([True, 3.14],)]) == [['hello', 'world'], [1, 'y'], [True, 3.14]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ([['a', 'b'], ['c', 'd']], ['e', 'f'])]) == [['e', 'f'], ['e', 'f']]", "assert rear_extract([(['A', 'x'],), (['A', 'x'], [1, 'y']), ([True, 3.14], ['hello', 'world'])]) == [['A', 'x'], [1, 'y'], ['hello', 'world']]", "assert rear_extract([(['C', 3], ['D', 4]), ([3], ['D', 4]), (['E', 5], ['F', 6])]) == [['D', 4], ['D', 4], ['F', 6]]", "assert rear_extract([([['A', 'B'], ['C', ['D', ['E', 'F']]]], ['G', 'H']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'], ['N', 'O']), ([['I', 'J'], ['K', ['L', 'M']]], ['N', 'O'], ['N', 'O'])]) == [['G', 'H'], ['N', 'O'], ['N', 'O']]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f']), ('g', 'h'), ([['i', 'F', 'j'], ['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2])]) == [['e', 'f'], 'h', ['n', 2], ['n', 2]]", "assert rear_extract([('g', 'h'), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']], ['i', 'j']], ['n', 2]), ([['i', 'j'], ['k', ['l', 'm']]],)]) == ['h', ['n', 2], ['n', 2], ['n', 2], [['i', 'j'], ['k', ['l', 'm']]]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e']), ([['a', 'b'], ['c', 'd']], ['e', 'f'])]) == [['e'], ['e', 'f']]", "assert rear_extract([(['John', ['Doe', 25]], ['John', ['Doe', 25]]), (1, ['John', ['Doe', 25]], ['John', ['Doe', 25]]), (2, ['Jane', ['Smith', 30]]), (3, ['Alice', ['Johnson', 28]]), (['John', ['Doe', 25]], ['John', ['Doe', 25]])]) == [['John', ['Doe', 25]], ['John', ['Doe', 25]], ['Jane', ['Smith', 30]], ['Alice', ['Johnson', 28]], ['John', ['Doe', 25]]]", "assert rear_extract([([['a', 'b'], ['c', 'd']], ['e', 'f'], ['e', 'f']), ([['a', 'b'], ['c', 'd']], ['e', 'f'])]) == [['e', 'f'], ['e', 'f']]", "assert rear_extract([([4, ['B', 5]], [['B', 5]], ['C', 6, 6]), ([4, ['B', 5]], ['C', 6]), ([4, ['B', 5]], ['C', 6, 6]), ([['D', 7], 8], ['E', 9]), ([['B', 5]], ['C', 6]), ([['D', 7], 8], ['E', 9])]) == [['C', 6, 6], ['C', 6], ['C', 6, 6], ['E', 9], ['C', 6], ['E', 9]]", "assert rear_extract([(['A'], [['B', ['C', ['D', ['E', 'F']]]]], 1), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]]), (['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, 1)]) == [1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1, ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], ['A', ['', ['C', ['D', ['E', 'F']]]], ['B', ['C', ['D', ['E', 'F']]]]], 1]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in two tuples and subtracts the elements of the first tuple by the elements of the second tuple with the same index.\nassert substract_elements((10, 4, 5), (2, 5, 18)) == (8, -1, -13)\nYour code should pass the test:\nassert substract_elements((10, 4, 5), (2, 5, 18)) == (8, -1, -13)", "test_list": [ "assert substract_elements((10, 4, 5), (2, 5, 18)) == (8, -1, -13)", "assert substract_elements((11, 2, 3), (24, 45 ,16)) == (-13, -43, -13)", "assert substract_elements((7, 18, 9), (10, 11, 12)) == (-3, 7, -3)", "assert substract_elements((1000000000000, 2000000000000), (900000000000, 3000000000000)) == (100000000000, -1000000000000)", "assert substract_elements((999999999999, 555555555555), (123456789012, 987654321098)) == (876543210987, -432098765543)", "assert substract_elements((999999999999999999, 1000000000000000000), (1000000000000000000, 999999999999999999)) == (-1, 1)", "assert substract_elements((1000000000000000000, 999999999999999999), (1000000000000000000, 999999999999999999)) == (0, 0)", "assert substract_elements((1000000000000000000, 999999999999999999), (999999999999999999, 999999999999999999)) == (1, 0)", "assert substract_elements((987654321098, 2000000000000), (900000000000, 3000000000000)) == (87654321098, -1000000000000)", "assert substract_elements((123456789012, 987654321098, 123456789012), (123456789012, 987654321098, 123456789012)) == (0, 0, 0)", "assert substract_elements((999999999999, 555555555555), (999999999999, 555555555555)) == (0, 0)", "assert substract_elements((1000000000000, 2000000000000), (1000000000000, 2000000000000)) == (0, 0)", "assert substract_elements((987654321098, 999999999999), (900000000000, 3000000000000)) == (87654321098, -2000000000001)", "assert substract_elements((999999999999999999, 999999999999999999), (999999999999999999, 999999999999999999)) == (0, 0)", "assert substract_elements((999999999999999999, 1000000000000000000), (999999999999999999, 999999999999999999)) == (0, 1)", "assert substract_elements((900000000000, 3000000000000, 3000000000000), (900000000000, 3000000000000, 3000000000000)) == (0, 0, 0)", "assert substract_elements((999999999999999999, 999999999999999999), (1000000000000000000, 999999999999999999)) == (-1, 0)", "assert substract_elements((999999999999, 555555555555), (1000000000000, 555555555555)) == (-1, 0)", "assert substract_elements((900000000000, 3000000000000), (900000000000, 3000000000000)) == (0, 0)", "assert substract_elements((555555555555, 999999999999999999), (999999999999999999, 999999999999999999)) == (-999999444444444444, 0)", "assert substract_elements((987654321098, 999999999999), (987654321098, 999999999999)) == (0, 0)", "assert substract_elements((123456789012, 555555555555, 123456789012), (123456789012, 987654321098, 123456789012)) == (0, -432098765543, 0)", "assert substract_elements((555555555555, 123456789012, 987654321098), (123456789012, 987654321098, 987654321098)) == (432098766543, -864197532086, 0)", "assert substract_elements((555555555555, 123456789012, 987654321098), (3000000000000, 987654321098, 987654321098)) == (-2444444444445, -864197532086, 0)", "assert substract_elements((999999999999999999, 1000000000000, 999999999999999999), (999999999999999998, 999999999999999999, 999999999999999999)) == (1, -999998999999999999, 0)", "assert substract_elements((999999999999999999, 1000000000000000000), (999999999999999999, 999999999999)) == (0, 999999000000000001)", "assert substract_elements((123456789012, 987654321098, 123456789011), (123456789012, 987654321098, 123456789012)) == (0, 0, -1)", "assert substract_elements((123456789012, 987654321098, 123456789012, 123456789012), (123456789012, 987654321098, 123456789012, 123456789012)) == (0, 0, 0, 0)", "assert substract_elements((999999999999999999, 999999999999999999), (1000000000000, 999999999999999999)) == (999998999999999999, 0)", "assert substract_elements((1000000000000, 900000000001, 3000000000000, 3000000000000), (900000000000, 900000000001, 3000000000000, 3000000000000)) == (100000000000, 0, 0, 0)", "assert substract_elements((555555555555, 999999999999, 987654321098), (3000000000000, 987654321098, 987654321098)) == (-2444444444445, 12345678901, 0)", "assert substract_elements((1000000000000000000, 999999999999999999), (1000000000000000000, 1000000000000000000)) == (0, -1)", "assert substract_elements((555555555555, 999999999999999999), (555555555555, 999999999999999999)) == (0, 0)", "assert substract_elements((987654321098,), (987654321098,)) == (0,)", "assert substract_elements((1000000000000, 2000000000000, 2000000000000), (1000000000000, 2000000000000, 2000000000000)) == (0, 0, 0)", "assert substract_elements((999999999999, 555555555554), (999999999999, 555555555555)) == (0, -1)", "assert substract_elements((555555555554, 3000000000000, 987654321098, 987654321098, 987654321098), (555555555554, 3000000000000, 987654321098, 987654321098, 987654321098)) == (0, 0, 0, 0, 0)", "assert substract_elements((555555555554, 3000000000000, 987654321098, 987654321098, 987654321097), (555555555554, 3000000000000, 987654321098, 987654321098, 987654321098)) == (0, 0, 0, 0, -1)", "assert substract_elements((999999999999,), (555555555555,)) == (444444444444,)", "assert substract_elements((555555555555, 123456789012, 987654321098), (555555555555, 123456789012, 987654321098)) == (0, 0, 0)", "assert substract_elements((555555555554, 3000000000000, 1000000000000, 987654321098, 987654321098), (555555555554, 3000000000000, 987654321098, 987654321098, 987654321098)) == (0, 0, 12345678902, 0, 0)", "assert substract_elements((987654321098,), (900000000000,)) == (87654321098,)", "assert substract_elements((987654321098, 987654321098), (987654321098, 987654321098)) == (0, 0)", "assert substract_elements((900000000000, 3000000000000), (987654321098, 999999999999)) == (-87654321098, 2000000000001)", "assert substract_elements((999999999999, 123456789011), (1000000000000, 555555555555)) == (-1, -432098766544)", "assert substract_elements((123456789012, 999999999999999999, 999999999999), (123456789012, 999999999999999999, 999999999999)) == (0, 0, 0)", "assert substract_elements((3000000000000, 987654321098, 987654321098), (3000000000000, 987654321098, 987654321098)) == (0, 0, 0)", "assert substract_elements((123456789012, 987654321098, 123456789012, 987654321098), (123456789012, 987654321098, 123456789012, 987654321098)) == (0, 0, 0, 0)", "assert substract_elements((900000000000, 2999999999999), (900000000000, 2999999999999)) == (0, 0)", "assert substract_elements((1000000000000, 555555555555), (1000000000000, 999999999999999999)) == (0, -999999444444444444)", "assert substract_elements((999999999999, 123456789011), (999999999999, 123456789011)) == (0, 0)", "assert substract_elements((999999999999999999, 1000000000000000000), (999999999999999999, 1000000000000000000)) == (0, 0)", "assert substract_elements((1000000000000000000, 999999999999999999, 1000000000000000000), (999999999999999999, 999999999999999999, 999999999999999999)) == (1, 0, 1)", "assert substract_elements((987654321098, 2000000000000), (899999999999, 3000000000000)) == (87654321099, -1000000000000)", "assert substract_elements((555555555555,), (555555555555,)) == (0,)", "assert substract_elements((987654321098, 987654321097, 2000000000000), (987654321098, 987654321097, 2000000000000)) == (0, 0, 0)", "assert substract_elements((999999999999,), (999999999999,)) == (0,)", "assert substract_elements((1000000000000, 555555555555), (1000000000000, 555555555555)) == (0, 0)", "assert substract_elements((999999999999, 555555555555), (999999999999, 123456789011)) == (0, 432098766544)", "assert substract_elements((1000000000000000000, 900000000001, 1000000000000000000), (1000000000000000000, 900000000001, 1000000000000000000)) == (0, 0, 0)", "assert substract_elements((1000000000000, 900000000001, 3000000000000, 3000000000000), (900000000000, 900000000001, 899999999999, 3000000000000)) == (100000000000, 0, 2100000000001, 0)", "assert substract_elements((1000000000000, 999999999999999999, 1000000000000), (1000000000000000000, 999999999999999999, 999999999999999999)) == (-999999000000000000, 0, -999998999999999999)", "assert substract_elements((999999999998, 555555555555), (987654321099, 987654321098)) == (12345678899, -432098765543)", "assert substract_elements((123456789012, 999999999999999999, 123456789011, 999999999999), (123456789012, 999999999999999999, 123456789011, 999999999999)) == (0, 0, 0, 0)", "assert substract_elements((999999999999999998, 999999999999), (987654321098, 999999999999)) == (999999012345678900, 0)", "assert substract_elements((999999999999999999, 1000000000000, 999999999999999999), (999999999999999999, 1000000000000, 999999999999999999)) == (0, 0, 0)", "assert substract_elements((555555555554, 3000000000000, 1000000000000, 123456789012, 987654321098), (555555555554, 3000000000000, 987654321098, 987654321098, 987654321098)) == (0, 0, 12345678902, -864197532086, 0)", "assert substract_elements((1000000000000000001, 999999999999999999, 1000000000000000000), (1000000000000000001, 999999999999999999, 1000000000000000000)) == (0, 0, 0)", "assert substract_elements((555555555555, 999999999998, 987654321098), (3000000000000, 987654321098, 900000000001)) == (-2444444444445, 12345678900, 87654321097)", "assert substract_elements((555555555555, 1000000000000), (555555555555, 1000000000000)) == (0, 0)", "assert substract_elements((1000000000000, 999999999999, 123456789011, 123456789011), (999999999999, 123456789011, 123456789011, 999999999999)) == (1, 876543210988, 0, -876543210988)", "assert substract_elements((3000000000000, 987654321098, 900000000001), (3000000000000, 987654321098, 900000000001)) == (0, 0, 0)", "assert substract_elements((555555555554, 3000000000000, 987654321098, 987654321098, 987654321097, 3000000000000), (555555555554, 3000000000000, 987654321098, 987654321098, 987654321097, 555555555554)) == (0, 0, 0, 0, 0, 2444444444446)", "assert substract_elements((1000000000000, 555555555555), (987654321099, 555555555555)) == (12345678901, 0)", "assert substract_elements((987654321098, 987654321097, 999999999998), (987654321098, 987654321097, 999999999998)) == (0, 0, 0)", "assert substract_elements((1000000000000000000, 999999999999999999, 999999999999999999), (1000000000000, 999999999999999999, 1000000000000)) == (999999000000000000, 0, 999998999999999999)", "assert substract_elements((999999999999, 555555555555), (1000000000001, 555555555555)) == (-2, 0)", "assert substract_elements((987654321099, 999999999998, 555555555555), (987654321099, 999999999998, 555555555555)) == (0, 0, 0)", "assert substract_elements((1000000000000000000, 999999999999999999, 1000000000000000000), (987654321098, 999999999999999999, 999999999999999999)) == (999999012345678902, 0, 1)", "assert substract_elements((999999999999999999, 555555555554, 1000000000000000000, 1000000000000000000), (999999999999999999, 555555555554, 1000000000000000000, 1000000000000000000)) == (0, 0, 0, 0)", "assert substract_elements((3000000000000, 987654321098, 900000000001), (3000000000000, 987654321098, 900000000000)) == (0, 0, 1)", "assert substract_elements((1000000000000,), (1000000000000,)) == (0,)", "assert substract_elements((1000000000000000000, 999999999999999999, 999999999999999999), (1000000000000000000, 999999999999999999, 999999999999999999)) == (0, 0, 0)", "assert substract_elements((1000000000000,), (999999999999,)) == (1,)", "assert substract_elements((987654321099, 999999999998, 999999999999, 555555555555), (987654321099, 999999999998, 999999999999, 555555555555)) == (0, 0, 0, 0)", "assert substract_elements((999999999999, 999999999999), (999999999999, 999999999999)) == (0, 0)", "assert substract_elements((999999999999999999, 123456789011), (999999999999999999, 1000000000000000000)) == (0, -999999876543210989)", "assert substract_elements((123456789012, 987654321098, 1000000000000, 987654321098), (123456789012, 987654321098, 123456789012, 987654321098)) == (0, 0, 876543210988, 0)", "assert substract_elements((555555555555, 123456789012, 987654321098), (3000000000000, 987654321099, 987654321098)) == (-2444444444445, -864197532087, 0)", "assert substract_elements((987654321099, 987654321098), (999999999998, 555555555555)) == (-12345678899, 432098765543)", "assert substract_elements((2999999999999, 987654321098, 987654321098, 987654321099, 987654321098), (3000000000000, 987654321098, 987654321098, 987654321099, 987654321098)) == (-1, 0, 0, 0, 0)", "assert substract_elements((1000000000001, 999999999999), (987654321098, 999999999999)) == (12345678903, 0)", "assert substract_elements((123456789012, 1000000000000, 555555555555), (123456789012, 1000000000000, 555555555555)) == (0, 0, 0)", "assert substract_elements((123456789012, 987654321097, 123456789012), (123456789012, 987654321098, 123456789012)) == (0, -1, 0)", "assert substract_elements((987654321098, 2000000000000), (987654321099, 3000000000000)) == (-1, -1000000000000)", "assert substract_elements((), ()) == ()", "assert substract_elements((999999999999, 987654321098, 123456789011), (999999999999, 987654321098, 123456789011)) == (0, 0, 0)", "assert substract_elements((987654321099, 2000000000000), (899999999999, 900000000000)) == (87654321100, 1100000000000)", "assert substract_elements((3000000000000, 987654321098, 900000000001, 900000000001), (3000000000000, 987654321098, 900000000001, 3000000000000)) == (0, 0, 0, -2099999999999)", "assert substract_elements((987654321098, 2000000000001), (987654321099, 3000000000000)) == (-1, -999999999999)", "assert substract_elements((999999999999, 123456789011, 123456789011, 999999999999, 123456789011), (999999999998, 123456789011, 123456789011, 999999999999, 899999999999)) == (1, 0, 0, 0, -776543210988)", "assert substract_elements((123456789012, 987654321098, 987654321097, 987654321098), (123456789012, 987654321098, 123456789012, 987654321098)) == (0, 0, 864197532085, 0)", "assert substract_elements((2999999999999, 987654321098, 123456789012, 987654321098), (2999999999999, 987654321098, 123456789012, 987654321098)) == (0, 0, 0, 0)", "assert substract_elements((999999999999999999, 123456789012, 1000000000000), (123456789012, 1000000000000, 555555555555)) == (999999876543210987, -876543210988, 444444444445)", "assert substract_elements((987654321098, 2000000000000), (987654321098, 2000000000000)) == (0, 0)", "assert substract_elements((1000000000000000000, 999999999999999999, 1000000000000000000, 1000000000000000000), (1000000000000000000, 999999999999999999, 1000000000000000000, 1000000000000000000)) == (0, 0, 0, 0)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function that takes in a positive integer n and finds the sum of even index binomial coefficients.\nassert even_binomial_Coeff_Sum(4) == 8\nYour code should pass the test:\nassert even_binomial_Coeff_Sum(4) == 8", "test_list": [ "assert even_binomial_Coeff_Sum(4) == 8", "assert even_binomial_Coeff_Sum(6) == 32", "assert even_binomial_Coeff_Sum(2) == 2", "assert even_binomial_Coeff_Sum(10) == 512", "assert even_binomial_Coeff_Sum(20) == 524288", "assert even_binomial_Coeff_Sum(100) == 633825300114114700748351602688", "assert even_binomial_Coeff_Sum(8) == 128", "assert even_binomial_Coeff_Sum(9) == 256", "assert even_binomial_Coeff_Sum(11) == 1024", "assert even_binomial_Coeff_Sum(19) == 262144", "assert even_binomial_Coeff_Sum(101) == 1267650600228229401496703205376", "assert even_binomial_Coeff_Sum(True) == 1", "assert even_binomial_Coeff_Sum(7) == 64", "assert even_binomial_Coeff_Sum(12) == 2048", "assert even_binomial_Coeff_Sum(68) == 147573952589676412928", "assert even_binomial_Coeff_Sum(6) == 32", "assert even_binomial_Coeff_Sum(67) == 73786976294838206464", "assert even_binomial_Coeff_Sum(18) == 131072", "assert even_binomial_Coeff_Sum(5) == 16", "assert even_binomial_Coeff_Sum(13) == 4096", "assert even_binomial_Coeff_Sum(102) == 2535301200456458802993406410752", "assert even_binomial_Coeff_Sum(17) == 65536", "assert even_binomial_Coeff_Sum(82) == 2417851639229258349412352", "assert even_binomial_Coeff_Sum(15) == 16384", "assert even_binomial_Coeff_Sum(4) == 8", "assert even_binomial_Coeff_Sum(66) == 36893488147419103232", "assert even_binomial_Coeff_Sum(103) == 5070602400912917605986812821504", "assert even_binomial_Coeff_Sum(64) == 9223372036854775808", "assert even_binomial_Coeff_Sum(70) == 590295810358705651712", "assert even_binomial_Coeff_Sum(14) == 8192", "assert even_binomial_Coeff_Sum(3) == 4", "assert even_binomial_Coeff_Sum(81) == 1208925819614629174706176", "assert even_binomial_Coeff_Sum(65) == 18446744073709551616", "assert even_binomial_Coeff_Sum(45) == 17592186044416", "assert even_binomial_Coeff_Sum(71) == 1180591620717411303424", "assert even_binomial_Coeff_Sum(83) == 4835703278458516698824704", "assert even_binomial_Coeff_Sum(104) == 10141204801825835211973625643008", "assert even_binomial_Coeff_Sum(84) == 9671406556917033397649408", "assert even_binomial_Coeff_Sum(63) == 4611686018427387904", "assert even_binomial_Coeff_Sum(24) == 8388608", "assert even_binomial_Coeff_Sum(72) == 2361183241434822606848", "assert even_binomial_Coeff_Sum(69) == 295147905179352825856", "assert even_binomial_Coeff_Sum(73) == 4722366482869645213696", "assert even_binomial_Coeff_Sum(74) == 9444732965739290427392", "assert even_binomial_Coeff_Sum(47) == 70368744177664", "assert even_binomial_Coeff_Sum(2) == 2", "assert even_binomial_Coeff_Sum(23) == 4194304", "assert even_binomial_Coeff_Sum(85) == 19342813113834066795298816", "assert even_binomial_Coeff_Sum(44) == 8796093022208", "assert even_binomial_Coeff_Sum(62) == 2305843009213693952", "assert even_binomial_Coeff_Sum(48) == 140737488355328", "assert even_binomial_Coeff_Sum(46) == 35184372088832", "assert even_binomial_Coeff_Sum(80) == 604462909807314587353088", "assert even_binomial_Coeff_Sum(16) == 32768", "assert even_binomial_Coeff_Sum(105) == 20282409603651670423947251286016", "assert even_binomial_Coeff_Sum(49) == 281474976710656", "assert even_binomial_Coeff_Sum(50) == 562949953421312", "assert even_binomial_Coeff_Sum(51) == 1125899906842624", "assert even_binomial_Coeff_Sum(22) == 2097152", "assert even_binomial_Coeff_Sum(21) == 1048576", "assert even_binomial_Coeff_Sum(43) == 4398046511104", "assert even_binomial_Coeff_Sum(99) == 316912650057057350374175801344", "assert even_binomial_Coeff_Sum(25) == 16777216", "assert even_binomial_Coeff_Sum(1) == 1", "assert even_binomial_Coeff_Sum(28) == 134217728", "assert even_binomial_Coeff_Sum(86) == 38685626227668133590597632", "assert even_binomial_Coeff_Sum(75) == 18889465931478580854784", "assert even_binomial_Coeff_Sum(26) == 33554432", "assert even_binomial_Coeff_Sum(29) == 268435456", "assert even_binomial_Coeff_Sum(106) == 40564819207303340847894502572032", "assert even_binomial_Coeff_Sum(94) == 9903520314283042199192993792", "assert even_binomial_Coeff_Sum(93) == 4951760157141521099596496896", "assert even_binomial_Coeff_Sum(79) == 302231454903657293676544", "assert even_binomial_Coeff_Sum(27) == 67108864", "assert even_binomial_Coeff_Sum(92) == 2475880078570760549798248448", "assert even_binomial_Coeff_Sum(98) == 158456325028528675187087900672", "assert even_binomial_Coeff_Sum(107) == 81129638414606681695789005144064", "assert even_binomial_Coeff_Sum(52) == 2251799813685248", "assert even_binomial_Coeff_Sum(61) == 1152921504606846976", "assert even_binomial_Coeff_Sum(108) == 162259276829213363391578010288128", "assert even_binomial_Coeff_Sum(109) == 324518553658426726783156020576256", "assert even_binomial_Coeff_Sum(53) == 4503599627370496", "assert even_binomial_Coeff_Sum(95) == 19807040628566084398385987584", "assert even_binomial_Coeff_Sum(76) == 37778931862957161709568", "assert even_binomial_Coeff_Sum(60) == 576460752303423488", "assert even_binomial_Coeff_Sum(42) == 2199023255552", "assert even_binomial_Coeff_Sum(78) == 151115727451828646838272", "assert even_binomial_Coeff_Sum(41) == 1099511627776", "assert even_binomial_Coeff_Sum(87) == 77371252455336267181195264", "assert even_binomial_Coeff_Sum(55) == 18014398509481984", "assert even_binomial_Coeff_Sum(91) == 1237940039285380274899124224", "assert even_binomial_Coeff_Sum(54) == 9007199254740992", "assert even_binomial_Coeff_Sum(96) == 39614081257132168796771975168", "assert even_binomial_Coeff_Sum(97) == 79228162514264337593543950336", "assert even_binomial_Coeff_Sum(89) == 309485009821345068724781056", "assert even_binomial_Coeff_Sum(110) == 649037107316853453566312041152512", "assert even_binomial_Coeff_Sum(90) == 618970019642690137449562112", "assert even_binomial_Coeff_Sum(37) == 68719476736", "assert even_binomial_Coeff_Sum(36) == 34359738368", "assert even_binomial_Coeff_Sum(88) == 154742504910672534362390528", "assert even_binomial_Coeff_Sum(77) == 75557863725914323419136", "assert even_binomial_Coeff_Sum(38) == 137438953472", "assert even_binomial_Coeff_Sum(39) == 274877906944", "assert even_binomial_Coeff_Sum(40) == 549755813888", "assert even_binomial_Coeff_Sum(30) == 536870912", "assert even_binomial_Coeff_Sum(111) == 1298074214633706907132624082305024" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in the radius and height of a cylinder and returns the the volume.\nassert math.isclose(volume_cylinder(10,5), 1570.7500000000002, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(volume_cylinder(10,5), 1570.7500000000002, rel_tol=0.001)", "test_list": [ "assert math.isclose(volume_cylinder(10,5), 1570.7500000000002, rel_tol=0.001)", "assert math.isclose(volume_cylinder(4,5), 251.32000000000002, rel_tol=0.001)", "assert math.isclose(volume_cylinder(4,10), 502.64000000000004, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a dictionary and integer n and filters the dictionary to only include entries with values greater than or equal to n.\nassert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190},170)=={'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}\nYour code should pass the test:\nassert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190},170)=={'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}", "test_list": [ "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190},170)=={'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190},180)=={ 'Alden Cantrell': 180, 'Pierre Cox': 190}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190},190)=={ 'Pierre Cox': 190}", "assert dict_filter({}, 0) == {}", "assert dict_filter({}, -5) == {}", "assert dict_filter({}, -10) == {}", "assert dict_filter({}, 10) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190}, 200) == {}", "assert dict_filter({}, 8) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grorangeape': -10}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10}", "assert dict_filter({}, -1) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Kierra Gentry': 165, 'Pierre Cox': 190}, 201) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180, 'Pierre': 12}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180, 'Pierre': 12}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5, '10': -94}, 165) == {}", "assert dict_filter({'Cantrell': 10, 'Gentry': -31, 'apple': 44, 'Nw': -33, 'IhVdpFDGMV': 200, 'abM': 20, 'JDnQ': -11}, -5) == {'Cantrell': 10, 'apple': 44, 'IhVdpFDGMV': 200, 'abM': 20}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}, -11) == {'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5}, 165) == {}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}, 200) == {}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5}, 164) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grorangeape': -10}, -10) == {'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grorangeape': -10}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94}, 165) == {}", "assert dict_filter({}, 180) == {}", "assert dict_filter({'-72': -33}, 0) == {}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5}, -33) == {'-1': 12, '201': -11, '-58': -5}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, 166) == {}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}, 199) == {}", "assert dict_filter({'75.87572329200214': False, '79.71274224615752': False}, 8) == {}", "assert dict_filter({'-1': 12, '10': -94}, 165) == {}", "assert dict_filter({'175': False, '-57': True, '-32': True, '5': False}, 8) == {}", "assert dict_filter({'-1': 12, '-58': 199, '10': -94}, 190) == {'-58': 199}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}, 165) == {'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, -1) == {'-1': 12}", "assert dict_filter({'Alden Cantrell': False, 'Vega': False, 'Cierra Vega': True, 'x': True, 'abM': True}, 11) == {}", "assert dict_filter({'-1': 12, '201': -11, '-58': -31}, 8) == {'-1': 12}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5, '10': -94}, True) == {'-1': 12}", "assert dict_filter({'15': False}, 8) == {}", "assert dict_filter({'-72': -34}, 20) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}, -12) == {'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}", "assert dict_filter({'Alden Cantrell': False, 'Vega': False, 'Cierra Vega': True, 'x': True, 'abM': True}, 201) == {}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, 167) == {}", "assert dict_filter({'Alden Cantrell': False, 'Vega': False, 'Cierra Vega': True, 'x': True, 'abM': True}, -11) == {'Alden Cantrell': False, 'Vega': False, 'Cierra Vega': True, 'x': True, 'abM': True}", "assert dict_filter({'Cierra Vega': 176, 'Alden Cantrell': 180, 'Pierre Cox': 190}, 165) == {'Cierra Vega': 176, 'Alden Cantrell': 180, 'Pierre Cox': 190}", "assert dict_filter({}, 9) == {}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94}, -58) == {'-1': 12, '-58': -5}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5, '10': -94, '-57': -93, '0': -1}, True) == {'-1': 12}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, 0) == {'-1': 12}", "assert dict_filter({'apple': 5, 'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180, 'Pierre': 12, 'kikwi': 6}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180, 'Pierre': 12}", "assert dict_filter({'-58': -5}, 165) == {}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190, 'Alden Cantrel': -57}, 200) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 11}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 11}", "assert dict_filter({'-1': 12, '-58': 199, '10': -94, '166': -93}, 190) == {'-58': 199}", "assert dict_filter({'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 176, 'ore': 11}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 176, 'ore': 11}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'Cantrel': True}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10}", "assert dict_filter({'Alden Cantrell': 180, 'Pierre Cox': 190}, 199) == {}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5}, 8) == {'-1': 12}", "assert dict_filter({'Alden Cantrell': 180, 'Pierre Cox': 190}, 165) == {'Alden Cantrell': 180, 'Pierre Cox': 190}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, 20) == {}", "assert dict_filter({'75.87572329200214': False, '79.71274224615752': False}, 9) == {}", "assert dict_filter({'-1': 12, '201': -11, '-58': -31, '200': 12}, 9) == {'-1': 12, '200': 12}", "assert dict_filter({'-1': 12, '-58': 199, '10': -94, '166': -93}, 189) == {'-58': 199}", "assert dict_filter({'Alden Cantrell': False, 'Vega': False, 'Cierra Vega': True, 'abM': True}, -11) == {'Alden Cantrell': False, 'Vega': False, 'Cierra Vega': True, 'abM': True}", "assert dict_filter({'15': False}, 15) == {}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94}, 44) == {}", "assert dict_filter({'-1': 12, '10': -94, '0': -93}, 167) == {}", "assert dict_filter({'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}, -12) == {'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -92, '-2': -32}, 166) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'Cantrel': True}, 167) == {}", "assert dict_filter({'Pierre Cox': 190}, 198) == {}", "assert dict_filter({'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 176, 'ore': 11, 'kiwigrape': 20}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 176, 'ore': 11, 'kiwigrape': 20}", "assert dict_filter({'-1': 12, '10': -94}, 164) == {}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5, '10': -94, '-57': -93, '0': -1}, False) == {'-1': 12}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 166, 'watermelon': 20, 'kiwi': 10, 'grorangeape': -10}, 10) == {'banana': 12, 'grape': 166, 'watermelon': 20, 'kiwi': 10}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, 199) == {}", "assert dict_filter({}, 165) == {}", "assert dict_filter({'175': False, '-57': True, '-32': True, '5': False}, -94) == {'175': False, '-57': True, '-32': True, '5': False}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, -93) == {'-1': 12, '-58': -5, '0': -93}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 11}, 167) == {}", "assert dict_filter({'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}, 9) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}", "assert dict_filter({'Cantrell': 10, 'Gentry': -31, 'apple': 44, 'Nw': -33, 'IhVdpFDGMV': 200, 'abM': 20, 'JDnQ': -93}, -5) == {'Cantrell': 10, 'apple': 44, 'IhVdpFDGMV': 200, 'abM': 20}", "assert dict_filter({'75.87572329200214': True, '79.71274224615752': True}, 180) == {}", "assert dict_filter({'-58': 199, '10': -94}, 190) == {'-58': 199}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 11, 'appKierrae': 5}, 167) == {}", "assert dict_filter({'-1': 12, '10': -94, '0': -93}, -93) == {'-1': 12, '0': -93}", "assert dict_filter({'Pierre Cox': 190}, 166) == {'Pierre Cox': 190}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '190': -93}, 165) == {}", "assert dict_filter({'-1': 12, '10': -94, '0': -93, '176': -34}, -93) == {'-1': 12, '0': -93, '176': -34}", "assert dict_filter({'Alden Cantrell': False, 'Cierra Vega': True, 'x': True, 'abM': True}, 44) == {}", "assert dict_filter({'-1': 12, '10': -94, '-2': -32}, 166) == {}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, 11) == {'-1': 12}", "assert dict_filter({'-72': -34}, -33) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180, 'Pierre': 12, 'oraCantrelnge': 44}, 10) == {'banana': 12, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180, 'Pierre': 12, 'oraCantrelnge': 44}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '-57': -93, '0': -1}, True) == {'-1': 12}", "assert dict_filter({'-1': 12, '201': -11, '-58': -5}, 5) == {'-1': 12}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, -94) == {'-1': 12, '-58': -5, '10': -94, '0': -93}", "assert dict_filter({'-1': 12, '-58': -5, '10': -94, '0': -93}, -95) == {'-1': 12, '-58': -5, '10': -94, '0': -93}", "assert dict_filter({'-72': -33}, 1) == {}", "assert dict_filter({}, 19) == {}", "assert dict_filter({'75.87572329200214': False, '79.71274224615752': False, '95.84649191478275': False}, 9) == {}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'grrape': 180}, 175) == {'grrape': 180}", "assert dict_filter({'Cierra Vega': 175, 'Alden Cantrell': 180, 'Pierre Cox': 190, 'Alden Cantrel': -57, 'Alden CantreAldenl': -12}, 200) == {}", "assert dict_filter({'-1': 12, '10': -94}, 180) == {}", "assert dict_filter({'-58': 199, '10': -94, '166': -93, '176': 200}, 190) == {'-58': 199, '176': 200}", "assert dict_filter({'-72': -34, '-73': 165}, 20) == {'-73': 165}", "assert dict_filter({'75.87572329200214': True, '79.71274224615752': True}, 5) == {}", "assert dict_filter({'-1': 12, '-58': 199, '10': -94, '-73': -94}, 190) == {'-58': 199}", "assert dict_filter({'-1': 12, '-58': 199, '10': -94, '166': -93}, 191) == {'-58': 199}", "assert dict_filter({'apple': 5, 'banana': 12, 'orange': 8, 'grape': 15, 'watermelon': 20, 'kiwi': 10, 'wamtermelon': 11, 'appKierrae': 5}, 166) == {}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the number of elements that occurs before the tuple element in the given tuple.\nassert count_first_elements((1, 5, 7, (4, 6), 10) ) == 3\nYour code should pass the test:\nassert count_first_elements((1, 5, 7, (4, 6), 10) ) == 3", "test_list": [ "assert count_first_elements((1, 5, 7, (4, 6), 10) ) == 3", "assert count_first_elements((2, 9, (5, 7), 11) ) == 2", "assert count_first_elements((11, 15, 5, 8, (2, 3), 8) ) == 4", "assert count_first_elements((1, 2, 3, (4, 5), 6, 7)) == 3", "assert count_first_elements((1, 2, (3, 4), (5, [6, 7]), 8, ([9, 10], 11))) == 2", "assert count_first_elements((1, (2, [3, [4, [5, [6, 7]]]]), 8, (9, 10))) == 1", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 7, ([8, 9], [10, [11, [12, [13, 14]]]]))) == 0", "assert count_first_elements((1, 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]))) == 3", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6]), 7)) == 0", "assert count_first_elements((([[[[1, 2], [3, 4]], 5], [6, 7]], 8), (9, 10))) == 0", "assert count_first_elements((([[[[[[[1, 2], 3], 4], [5, 6]], 7], 8], 9], 10), (11, 12), 13)) == 0", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14), 15)) == 0", "assert count_first_elements((1, 2, 3, 4, 5, 6)) == 5", "assert count_first_elements(((1, 2), ([3, 4], [5, [6, [7, [8, 9]]]]))) == 0", "assert count_first_elements((([[1, 2], 3], [4, 5]), ([[6, 7], 8], [9, [10, [11, [12, [13, [14, [15, [16, 17]]]]]]]]))) == 0", "assert count_first_elements(((1, [2, [3, [4, 5]]]), (6, [7, [8, [9, 10]]]), (11, [12, [13, 14]]), ([[15, 16], [17, 18]], [19, 20]))) == 0", "assert count_first_elements((1, 2, 3, ([[4]],), 5)) == 3", "assert count_first_elements((1, ([2],), ([3], [4, [5]]), 6)) == 1", "assert count_first_elements((([1], [2]), ([3], [4]), ([5], [6]), ([7], [8]))) == 0", "assert count_first_elements((([1], [[2]]), ([[3]],))) == 0", "assert count_first_elements(((1, [2, 3], [4, 5], [6, [7, 8, [9, 10]]]), ([11, 12, 13], [14, 15, 16, [17]]), (18, [19], [[20], [21, 22, 23]]), (24, [25]))) == 0", "assert count_first_elements(((1,), (2,), (3,), (4,), (5,), (6,), (7,), (8,), (9,), (10,))) == 0", "assert count_first_elements((([[[[[]]]]],),)) == 0", "assert count_first_elements(('a', ('b', ['c', ['d', ['e', ['f', ['g', ['h', ['i', ['j', ['k', ['l', ['m', ['n', ['o', ['p', ['q', ['r', ['s', ['t', ['u', ['v', ['w', ['x', ['y', ['z']]]]]]]]]]]]]]]]]]]]]]]]))) == 1", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 7, ([8, 9], [10, [11, [12, [13, 14]]]]), ([1, 2], [3, 4], [5, 6]))) == 0", "assert count_first_elements((2, 1, 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]), (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]))) == 4", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6]), 7, ([[[1, 2], 3], 4], [5, 6]))) == 0", "assert count_first_elements((1, (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10), (13, 2, [3, [4, [5, [6, 7]]]]))) == 1", "assert count_first_elements((1, (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10), (13, 2, [3, [4, [5, [6, 7]]]]), (13, 2, [3, [4, [5, [6, 7]]]]))) == 1", "assert count_first_elements(((1, [2, 3], [4, 5], [6, [7, 8, [9, 10]]]), ([11, 12, 13], [14, 15, 16, [17]]), (18, [19], [[20], [21, 22, 23]]), (24, [25]), ([11, 12, 13], [14, 15, 16, [17]]))) == 0", "assert count_first_elements((([16, 1], [2]), ([3], [4]), ([5], [6]), ([7], [8]))) == 0", "assert count_first_elements(((1, [2, [3, [4, 5]]]), (6, [7, [8, [9, 10]]]), ([[15, 16], [17, 18]], [19, 20]))) == 0", "assert count_first_elements((15,)) == 0", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 7, ([3, 4], [5, 6]), ([10, [11, [12, [13, 14]]]],))) == 0", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6]), 7, ([[[1, 2], 3], 4], [5, 6]), ([[[1, 2], 3], 4], [5, 6]))) == 0", "assert count_first_elements((7, ([[[1, 2], 3], 4], [5, 6]), ([[[1, 2], 3], 4], [5, 6]))) == 1", "assert count_first_elements((7, 8, ([[[1, 2], 3], 4], [5, 6]), ([[[1, 2], 3], 4], [5, 6]))) == 2", "assert count_first_elements((([16, 1], [2]), ([6],), ([7], [8]))) == 0", "assert count_first_elements((([11, 12, 13], [14, 15, 16, [17]]), (18, [19], [[20], [21, 22, 23]]), (24, [25]), ([11, 12, 13], [14, 15, 16, [17]]))) == 0", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6, 5]), 7)) == 0", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14), 15, ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14))) == 0", "assert count_first_elements(('a', (['c', ['d', ['e', ['f', ['g', ['h', ['i', ['j', ['k', ['l', ['m', ['n', ['o', ['p', ['q', ['r', ['s', ['t', ['u', ['v', ['w', ['x', ['y', ['z']]]]]]]]]]]]]]]]]]]]]]]],))) == 1", "assert count_first_elements(((1,), (2,), (3,), (4,), (5,), (6,), (7,), (8,), (9,), (10,), (1,))) == 0", "assert count_first_elements((1, (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10), (13, 2, [3, [4, [5, [6, 7]]]]), (13, 2, [3, [4, [5, [6, 7]]]]), (2, [3, [4, [5, [6, 7]]]]))) == 1", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 6)) == 0", "assert count_first_elements((1, (2, [3, [4, [5, [6, 7]]]]), 8, (9, 10), 8)) == 1", "assert count_first_elements((2, ([[[1, 2], 3], 4], [5, 6]), 7, ([[[1, 2], 3], 4], [5, 6]))) == 1", "assert count_first_elements(((),)) == 0", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6, 5]), 7, ([[[1, 2], 3], 4], [5, 6, 5]))) == 0", "assert count_first_elements((15, 15)) == 1", "assert count_first_elements(((1, [2, 3], [4, 5], [6, [7, 8, [9, 10]]]), ([11, 12, 13], [14, 15, 16, [17]]), (18, [19], [[20], [21, 22, 23]]), (18, [19]), (24, [25]), ([11, 12, 13], [14, 15, 16, [17]]))) == 0", "assert count_first_elements((1, 12, (3, 4), (5, [6, 7]), ([9, 10], 11))) == 2", "assert count_first_elements((1, (2, [3, [4, [5, [6, 7]]]], 2), 8, (9, 10), 8)) == 1", "assert count_first_elements((7, 8, ([[[1, 2], 3], 4], [5, 6]), ([[[1, 2], 3], 4], [5, 6]), ([[[1, 2], 3], 4], [5, 6]))) == 2", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 7, ([1, 2], [3, 4], [5, 6, 6]), ([8, 9], [10, [11, [12, [13, 14]]]]), ([8, 9], [10, [11, [12, [13, 14]]]]))) == 0", "assert count_first_elements((7, ([[[1, 2], 3], 4], [5, 6]), 2, ([[[1, 2], 3], 4], [5, 6]))) == 1", "assert count_first_elements(((1, [2, [3, [4, 5]]]), (6, [7, [8, [9, 10]]]))) == 0", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14, 14), ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14), 15, ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14))) == 0", "assert count_first_elements((([16, 1], [2]), ([16, 1, 1], [2]), ([6],), ([7], [8]))) == 0", "assert count_first_elements(((1,), (2,), (4,), (5,), (6,), (7,), (8,), (9,), (10,), (1,))) == 0", "assert count_first_elements(((), ())) == 0", "assert count_first_elements((([1], [[2]]),)) == 0", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 7, ([3, 4], [5, 6]), 24, ([10, [11, [12, [13, 14]]]],))) == 0", "assert count_first_elements((1, 1, 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]))) == 4", "assert count_first_elements((1, 1, 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]), 3)) == 4", "assert count_first_elements((([1], []), ([5], [6]), ([7], [8]))) == 0", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 6, ([3, 4], [5, 6]), ([10, [11, [12, [13, 14]]]],))) == 0", "assert count_first_elements(('a', 'aa', (['c', ['d', ['e', ['f', ['g', ['h', ['i', ['j', ['k', ['l', ['m', ['n', ['o', ['p', ['q', ['r', ['s', ['t', ['u', ['v', ['w', ['x', ['y', ['z']]]]]]]]]]]]]]]]]]]]]]]],))) == 2", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6]), 25, 7, 7)) == 0", "assert count_first_elements((7, ([8, 9], [10, [11, [12, [13, 14]]]]), ([1, 2], [3, 4], [5, 6]), ([1, 2], [3, 4], [5, 6]))) == 1", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6, 5]), 6)) == 0", "assert count_first_elements((15, 15, 15)) == 2", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6, 5]), 7, ([[[1, 2], 3]], [[[1, 2], 3], 4], [5, 6, 5]))) == 0", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 7, ([3, 4], [5, 6]), 24, ([10, [11, [12, [13, 14]]]],), (), ([1, 2], [3, 4], [5, 6]))) == 0", "assert count_first_elements((([1], [], []), ([1], []), ([[3]],))) == 0", "assert count_first_elements((([1], []), ([7], [8]))) == 0", "assert count_first_elements((([[[1, 2], 3], 4],), ([[[1, 2], 3], 4], [5, 6]), 6, ([[[1, 2], 3], 4], [5, 6]))) == 0", "assert count_first_elements((1, (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10), (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10))) == 1", "assert count_first_elements((([[[1, 2], 3], 4], [5, 6], [[[1, 2], 3], 4]),)) == 0", "assert count_first_elements((7, ([8, 9], [10, [11, [12, [13, 14]]]]), ([1, 2], [3, 4], [5, 6]), ([1, 2], [3, 4], [4, 6], [5, 6]), ([1, 2], [3, 4], [5, 6]))) == 1", "assert count_first_elements((1, (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10), (13, 2, [3, [4, [5, [6, 7]]]]), (2, [3, [4, [5, [6, 7]]]]))) == 1", "assert count_first_elements((1, (2, [3, [4, [5, [6, 7]]]]), 8, (10, 9, 10), 8)) == 1", "assert count_first_elements((1, 1, 1, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]), 3)) == 4", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14, 14), ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14), 3, 15, ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14), 15)) == 0", "assert count_first_elements((1, 2, 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]))) == 4", "assert count_first_elements((([[[[[[[1, 2], 3], 4], [5, 6]], 7], 8], 9], 10), (12, 12), 13)) == 0", "assert count_first_elements((1, 1, 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]), 2, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]))) == 4", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14, 14), 15, ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14))) == 0", "assert count_first_elements((8, ([[[1, 2], 3], 4], [5, 6]), ([[[1, 2], 3], 4], [5, 6]))) == 1", "assert count_first_elements((1, (13, 2, [3, [4, [5, [6, 7]]]], [3, [4, [5, [6, 7]]]]), (13, 2, [3, [4, [5, [6, 7]]]]), (9, 10), (13, 2, [3, [4, [5, [6, 7]]]]), (2, [3, [4, [5, [6, 7]]]]))) == 1", "assert count_first_elements((([[[[[], []]]]], [[[[[]]]]]),)) == 0", "assert count_first_elements((([[[[[]]]], [[[[]]]]],), ([[[[[]]]]],))) == 0", "assert count_first_elements((([1], []),)) == 0", "assert count_first_elements((8, 1, (2, [3, [4, [5, [6, 7]]]], 2), 8, (9, 10), 8, 1)) == 2", "assert count_first_elements(((1, [2, 3], [4, 5], [6, [7, 8, [9, 10]]]), ([11, 12, 13], [14, 15, 16, [17]]), (18, [19], [[20], [21, 22, 23]]), (24, [25], [25]), (24, [25]))) == 0", "assert count_first_elements((([11, 12, 13], [14, 15, 16, [17]]), (18, [19], [[20], [21, 22, 23]]), (24, [26, 25]), ([11, 12, 13], [14, 15, 16, [17]]))) == 0", "assert count_first_elements((([[[1, 2], 3], 4], [5, 7, 5]), 6)) == 0", "assert count_first_elements((15, 15, 15, 15)) == 3", "assert count_first_elements((15, 15, 15, 18)) == 3", "assert count_first_elements((7, 8, ([[[1, 2], 3], 4], [5, 6]), ([5, 9], [[[1, 2], 3], 4], [5, 6]))) == 2", "assert count_first_elements((([1], []), ([5], [6]), ([7], [8]), ([7],))) == 0", "assert count_first_elements((7, ([[[1, 2], 3], 4], [5, 6]))) == 1", "assert count_first_elements((([[[[[]]]], [[[[]]]]],), ([[[[[]]]], [[[[]]]]],))) == 0", "assert count_first_elements((([1], []), ([1], [[2]]))) == 0", "assert count_first_elements((([16, 1],), ([16, 1, 1], [2]), ([6],), ([7], [8]))) == 0", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14, 14), ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13],), 3, 15, ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, 14), 15)) == 0", "assert count_first_elements(((1, [4, 5], [6, [7, 8, [9, 10]]]), (1, [2, 3], [4, 5], [6, [7, 8, [9, 10]]]), ([11, 12, 13], [14, 15, 16, [17]]), (18, [19]), (24, [25]), ([11, 12, 13], [14, 15, 16, [17]]))) == 0", "assert count_first_elements((([1, 2], [3, 4], [5, 6]), 6, 19, ([3, 4], [5, 6]), ([10, [11, [12, [13, 14]]]],))) == 0", "assert count_first_elements((7, ([[[1, 2], 3], 4], [5, 6]), 2, ([[[1, 2], 3], 4], [5, 6]), 7)) == 1", "assert count_first_elements((([[[[[]]]], [[[[]]]]],), ())) == 0", "assert count_first_elements((1, 2, 3, ([[4]],))) == 3", "assert count_first_elements((1, 2, (3, 4), (5, [6, 7]), ([9, 10], 11))) == 2", "assert count_first_elements((([1, 2], [3, 4], [5, 6], [1, 2]), 7, ([8, 9], [10, [11, [12, [13, 14]]]]))) == 0", "assert count_first_elements((([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14, [[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13]), ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14), 15, ([[[[[[[1, 2], [3, [[[4, 5], 6], 7]]], 8], 9], [10, 11]], 12], 13], 14))) == 0", "assert count_first_elements((([1], [1, 1], [[2]]), ([[3]],))) == 0", "assert count_first_elements(((1, [2, [3, [4, 5]], [3, [4, 5]]]), (6, [7, [8, [9, 10]]]))) == 0", "assert count_first_elements((2, 13, 3, (4, [5, 6, [7, 8, [9, 10, [11, 12, [13, 14]]]]]))) == 3", "assert count_first_elements((True, True, False, False)) == 3", "assert count_first_elements((8, ([[[1, 2], 3], 4], [5, 6]), 7, ([[[1, 2], 3], 4], [5, 6]))) == 1", "assert count_first_elements(((), (-55.31819741812587, -80.16469052312337, 40.47580807039117, -33.01552653406965, 21.97711941774041, 63.723553557234595))) == 0", "assert count_first_elements((([[[], [[[]]]]],), ([[[[[]]]]],))) == 0", "assert count_first_elements((1, 2, (3, 3, 4), (5, [6, 7]), ([9, 10], 11))) == 2", "assert count_first_elements((7, ([[[1, 2], 3], 4], [5, 6]), 7)) == 1", "assert count_first_elements((([1], [], []), ([7], [8]))) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth decagonal number.\nassert is_num_decagonal(3) == 27\nYour code should pass the test:\nassert is_num_decagonal(3) == 27", "test_list": [ "assert is_num_decagonal(3) == 27", "assert is_num_decagonal(7) == 175", "assert is_num_decagonal(10) == 370", "assert is_num_decagonal(1000000) == 3999997000000", "assert is_num_decagonal(987654) == 3901838731902", "assert is_num_decagonal(123456789) == 60966314630391717", "assert is_num_decagonal(987654321) == 3901844228196921201", "assert is_num_decagonal(1) == 1", "assert is_num_decagonal(3141592653589793238462643383279) == 39478417604357434475337963999482540904898557959867970857017527", "assert is_num_decagonal(987654321012345678901234567890) == 3901844231257430268900472488836177412026970583762796372504730", "assert is_num_decagonal(1000000000000000000000000000000) == 3999999999999999999999999999997000000000000000000000000000000", "assert is_num_decagonal(123456789876543212345678987654) == 60966315866483770400853499161025831429510257568940100731902", "assert is_num_decagonal(9999999999999999999999999999999) == 399999999999999999999999999999890000000000000000000000000000007", "assert is_num_decagonal(10000000000000000000000000000000) == 399999999999999999999999999999970000000000000000000000000000000", "assert is_num_decagonal(3141592653589793238462643383280) == 39478417604357434475337963999507673646127276305775672004083760", "assert is_num_decagonal(1000001) == 4000005000001", "assert is_num_decagonal(2) == 10", "assert is_num_decagonal(999999999999999999999999999999) == 3999999999999999999999999999989000000000000000000000000000007", "assert is_num_decagonal(3141592653589793238462643383281) == 39478417604357434475337963999532806387355994651683373151150001", "assert is_num_decagonal(1000000000000000000000000000001) == 4000000000000000000000000000005000000000000000000000000000001", "assert is_num_decagonal(36) == 5076", "assert is_num_decagonal(999999999999999999999999999997) == 3999999999999999999999999999973000000000000000000000000000045", "assert is_num_decagonal(987654321012345678901234567891) == 3901844231257430268900472488844078646595069349194006249047851", "assert is_num_decagonal(123456789876543212345678987653) == 60966315866483770400853499160038177110497911870174668830677", "assert is_num_decagonal(3) == 27", "assert is_num_decagonal(987654322) == 3901844236098155770", "assert is_num_decagonal(True) == 1", "assert is_num_decagonal(35) == 4795", "assert is_num_decagonal(9999999999999999999999999999998) == 399999999999999999999999999999810000000000000000000000000000022", "assert is_num_decagonal(123456790) == 60966315618046030", "assert is_num_decagonal(987655) == 3901846633135", "assert is_num_decagonal(123456791) == 60966316605700351", "assert is_num_decagonal(73) == 21097", "assert is_num_decagonal(999999999999999999999999999996) == 3999999999999999999999999999965000000000000000000000000000076", "assert is_num_decagonal(987654321012345678901234567892) == 3901844231257430268900472488851979881163168114625216125590980", "assert is_num_decagonal(10000000000000000000000000000001) == 400000000000000000000000000000050000000000000000000000000000001", "assert is_num_decagonal(4) == 52", "assert is_num_decagonal(999999999999999999999999999995) == 3999999999999999999999999999957000000000000000000000000000115", "assert is_num_decagonal(999999999999999999999999999998) == 3999999999999999999999999999981000000000000000000000000000022", "assert is_num_decagonal(987654323) == 3901844243999390347", "assert is_num_decagonal(37) == 5365", "assert is_num_decagonal(123456792) == 60966317593354680", "assert is_num_decagonal(987654324) == 3901844251900624932", "assert is_num_decagonal(1000000000000000000000000000002) == 4000000000000000000000000000013000000000000000000000000000010", "assert is_num_decagonal(3141592653589793238462643383278) == 39478417604357434475337963999457408163669839613960269709951302", "assert is_num_decagonal(3141592653589793238462643383277) == 39478417604357434475337963999432275422441121268052568562885085", "assert is_num_decagonal(38) == 5662", "assert is_num_decagonal(9999999999999999999999999999997) == 399999999999999999999999999999730000000000000000000000000000045", "assert is_num_decagonal(987654325) == 3901844259801859525", "assert is_num_decagonal(123456789876543212345678987656) == 60966315866483770400853499163001140067534948966470964534376", "assert is_num_decagonal(89) == 31417", "assert is_num_decagonal(1000000000000000000000000000003) == 4000000000000000000000000000021000000000000000000000000000027", "assert is_num_decagonal(72) == 20520", "assert is_num_decagonal(123456789876543212345678987657) == 60966315866483770400853499163988794386547294665236396435625", "assert is_num_decagonal(123456789876543212345678987655) == 60966315866483770400853499162013485748522603267705532633135", "assert is_num_decagonal(9999999999999999999999999999996) == 399999999999999999999999999999650000000000000000000000000000076", "assert is_num_decagonal(9999999999999999999999999999995) == 399999999999999999999999999999570000000000000000000000000000115", "assert is_num_decagonal(123456789876543212345678987658) == 60966315866483770400853499164976448705559640364001828336882", "assert is_num_decagonal(3141592653589793238462643383283) == 39478417604357434475337963999583071869813431343498775445282507", "assert is_num_decagonal(999999999999999999999999999994) == 3999999999999999999999999999949000000000000000000000000000162", "assert is_num_decagonal(3141592653589793238462643383284) == 39478417604357434475337963999608204611042149689406476592348772", "assert is_num_decagonal(123456788) == 60966313642737412", "assert is_num_decagonal(88) == 30712", "assert is_num_decagonal(12) == 540", "assert is_num_decagonal(987654321012345678901234567893) == 3901844231257430268900472488859881115731266880056426002134117", "assert is_num_decagonal(90) == 32130", "assert is_num_decagonal(123456789876543212345678987652) == 60966315866483770400853499159050522791485566171409236929460", "assert is_num_decagonal(3141592653589793238462643383282) == 39478417604357434475337963999557939128584712997591074298216250", "assert is_num_decagonal(999999999999999999999999999993) == 3999999999999999999999999999941000000000000000000000000000217", "assert is_num_decagonal(1000000000000000000000000000004) == 4000000000000000000000000000029000000000000000000000000000052", "assert is_num_decagonal(999999999999999999999999999992) == 3999999999999999999999999999933000000000000000000000000000280", "assert is_num_decagonal(999999999999999999999999999991) == 3999999999999999999999999999925000000000000000000000000000351", "assert is_num_decagonal(987653) == 3901830830677", "assert is_num_decagonal(1000002) == 4000013000010", "assert is_num_decagonal(987652) == 3901822929460", "assert is_num_decagonal(987654321012345678901234567894) == 3901844231257430268900472488867782350299365645487635878677262", "assert is_num_decagonal(45) == 7965", "assert is_num_decagonal(123456789876543212345678987651) == 60966315866483770400853499158062868472473220472643805028251", "assert is_num_decagonal(123456793) == 60966318581009017", "assert is_num_decagonal(91) == 32851", "assert is_num_decagonal(3141592653589793238462643383276) == 39478417604357434475337963999407142681212402922144867415818876", "assert is_num_decagonal(56) == 12376", "assert is_num_decagonal(1000003) == 4000021000027", "assert is_num_decagonal(123456789876543212345678987650) == 60966315866483770400853499157075214153460874773878373127050", "assert is_num_decagonal(987654321012345678901234567896) == 3901844231257430268900472488883584819435563176350055631763576", "assert is_num_decagonal(987654321012345678901234567889) == 3901844231257430268900472488828276177458871818331586495961617", "assert is_num_decagonal(13) == 637", "assert is_num_decagonal(987654321012345678901234567897) == 3901844231257430268900472488891486054003661941781265508306745", "assert is_num_decagonal(3141592653589793238462643383275) == 39478417604357434475337963999382009939983684576237166268752675", "assert is_num_decagonal(14) == 742", "assert is_num_decagonal(1000004) == 4000029000052", "assert is_num_decagonal(5) == 85", "assert is_num_decagonal(987654327) == 3901844275604328735", "assert is_num_decagonal(57) == 12825", "assert is_num_decagonal(987654326) == 3901844267703094126", "assert is_num_decagonal(987654320) == 3901844220295686640", "assert is_num_decagonal(987654321012345678901234567895) == 3901844231257430268900472488875683584867464410918845755220415", "assert is_num_decagonal(71) == 19951", "assert is_num_decagonal(33) == 4257", "assert is_num_decagonal(10000000000000000000000000000002) == 400000000000000000000000000000130000000000000000000000000000010", "assert is_num_decagonal(987654321012345678901234567898) == 3901844231257430268900472488899387288571760707212475384849922", "assert is_num_decagonal(1000000000000000000000000000005) == 4000000000000000000000000000037000000000000000000000000000085", "assert is_num_decagonal(3141592653589793238462643383285) == 39478417604357434475337963999633337352270868035314177739415045", "assert is_num_decagonal(58) == 13282", "assert is_num_decagonal(999999) == 3999989000007", "assert is_num_decagonal(987654328) == 3901844283505563352", "assert is_num_decagonal(3141592653589793238462643383274) == 39478417604357434475337963999356877198754966230329465121686482", "assert is_num_decagonal(34) == 4522", "assert is_num_decagonal(15) == 855", "assert is_num_decagonal(46) == 8326", "assert is_num_decagonal(987656) == 3901854534376", "assert is_num_decagonal(987654329) == 3901844291406797977", "assert is_num_decagonal(47) == 8695", "assert is_num_decagonal(32) == 4000" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in an array and element and returns a tuple containing a boolean that indicates if the element is in the array and the index position of the element (or -1 if the element is not found).\nassert sequential_search([11,23,58,31,56,77,43,12,65,19],31) == (True, 3)\nYour code should pass the test:\nassert sequential_search([11,23,58,31,56,77,43,12,65,19],31) == (True, 3)", "test_list": [ "assert sequential_search([11,23,58,31,56,77,43,12,65,19],31) == (True, 3)", "assert sequential_search([12, 32, 45, 62, 35, 47, 44, 61],61) == (True, 7)", "assert sequential_search([9, 10, 17, 19, 22, 39, 48, 56],48) == (True, 6)", "assert sequential_search([], 10) == (False, -1)", "assert sequential_search([], 5) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8], 5) == (True, 4)", "assert sequential_search([-3, -2, -1, 0, 1, 2], -2) == (True, 1)", "assert sequential_search([1000000000, 2000000000, 3000000000, 4000000000], 2000000000) == (True, 1)", "assert sequential_search([9, 10, 17, 19, 22, 39, 48, 56], 50) == (False, -1)", "assert sequential_search([], 2) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 5) == (True, 4)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8, 8], 3000000000) == (False, -1)", "assert sequential_search([], []) == (False, -1)", "assert sequential_search([1000000000, 2000000000, 3000000000, 999999999, 4000000000], [1000000000, 2000000000, 3000000000, 999999999, 4000000000]) == (False, -1)", "assert sequential_search([4000000000, 2000000000, 999999999, 4000000000], [4000000000, 2000000000, 999999999, 4000000000]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8, 8], 1) == (True, 0)", "assert sequential_search([-3, -2, -1, 0, 1, 2, -2], [-3, -2, -1, 0, 1, 2, -2]) == (False, -1)", "assert sequential_search([9, 10, 3, 19, 22, 39, 48, 56], 50) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 22, 39, 48, 56], 2) == (False, -1)", "assert sequential_search([1000000000, 2000000000, 3000000000, 999999999, 4000000000, 3000000000], [1000000000, 2000000000, 3000000000, 999999999, 4000000000, 3000000000]) == (False, -1)", "assert sequential_search([5, -2, -1, 0, 1, 2], -2) == (True, 1)", "assert sequential_search([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 1], 5) == (True, 4)", "assert sequential_search([9, 10, 17, 19, 22, 39, 48, 56, 9], [9, 10, 17, 19, 22, 39, 48, 56, 9]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8, 5], 5) == (True, 4)", "assert sequential_search(['VgBMzYA', 'vPdnkp', 'YfFpcqtFRz', 'VUS', 'RfrFzbvRve', 'lWGk', 'fCyMNDqiso', 'vSEYYDj'], [2000000000, 'RB']) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 6, 7, 8, 8], 6) == (True, 6)", "assert sequential_search([4000000000, 2000000000, 8, 4000000000], [4000000000, 2000000000, 8, 4000000000]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 2, 6, 7, 8], 5) == (True, 4)", "assert sequential_search([9, 10, 3, 19, 22, 39, 48, 56], 48) == (True, 6)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 3000000000, 8], [1, 2, 3, 4, 5, 5, 5, 6, 7, 3000000000, 8]) == (False, -1)", "assert sequential_search([-3, -2, -1, 0, 1, 2], -1) == (True, 2)", "assert sequential_search([1, 2, 3, 4, 5, 5, 6, 7, 3000000000, 8, 3000000000], [1, 2, 3, 4, 5, 5, 6, 7, 3000000000, 8, 3000000000]) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 22, 39, 1000000000, 48, 56, 9], [9, 10, 17, 19, 22, 39, 1000000000, 48, 56, 9]) == (False, -1)", "assert sequential_search([], 4) == (False, -1)", "assert sequential_search([9, 19, 19, 10, 17, 19, 22, 39, 48, 56, 9, 19], [9, 19, 19, 10, 17, 19, 22, 39, 48, 56, 9, 19]) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 22, 39, 1000000000, 48, 56, 9, 56], [9, 10, 17, 19, 22, 39, 1000000000, 48, 56, 9, 56]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 6, 7, 8, 8], 5) == (True, 4)", "assert sequential_search([9, 10, 17, 19, 22, 39, 56], 2) == (False, -1)", "assert sequential_search([9, 10, 3, 19, 22, 39, 48, 56], 47) == (False, -1)", "assert sequential_search([2000000000, 8, 4000000000, 4000000000], [2000000000, 8, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([8, 2000000000, 999999999, 4000000000, 2000000000, 4000000000], [8, 2000000000, 999999999, 4000000000, 2000000000, 4000000000]) == (False, -1)", "assert sequential_search([6, 1, 2, 3, 4, 5, 6, 8, 9, 10, 1, 6], [6, 1, 2, 3, 4, 5, 6, 8, 9, 10, 1, 6]) == (False, -1)", "assert sequential_search([8, 2000000000, 4000000000, 2000000000, 4000000000], [8, 2000000000, 4000000000, 2000000000, 4000000000]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 6) == (True, 5)", "assert sequential_search([1, 2, 3, 4, 5, -1, 5, 6, 7, 3000000000, 8, 7], [1, 2, 3, 4, 5, -1, 5, 6, 7, 3000000000, 8, 7]) == (False, -1)", "assert sequential_search([], 7) == (False, -1)", "assert sequential_search([-2, -1, 0, 1, 2], [-2, -1, 0, 1, 2]) == (False, -1)", "assert sequential_search([False, True, True, False], 2) == (False, -1)", "assert sequential_search([2000000000, 1000000000, 8, 4000000000, 4000000000], [2000000000, 1000000000, 8, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([-3, -2, -1, 0, 1, 2, -1], [-3, -2, -1, 0, 1, 2, -1]) == (False, -1)", "assert sequential_search([2000000000, 39, 1000000000, 8, 4000000000, 4000000000], [2000000000, 39, 1000000000, 8, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([4000000000, 2000000000, 8, 4000000000, 4000000000], [4000000000, 2000000000, 8, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8, 8, 7], [1, 2, 3, 4, 5, 5, 5, 6, 7, 8, 8, 7]) == (False, -1)", "assert sequential_search([1000000000, 2, 2000000000, 3000000000, 999999999, 4000000000], [1000000000, 2, 2000000000, 3000000000, 999999999, 4000000000]) == (False, -1)", "assert sequential_search([9, 10, 3, 19, 22, 39, 48, 56], [9, 10, 3, 19, 22, 39, 48, 56]) == (False, -1)", "assert sequential_search([8, 10, 3, 19, 22, 39, 48, 56], [8, 10, 3, 19, 22, 39, 48, 56]) == (False, -1)", "assert sequential_search([1000000000, 8, 3999999999, -1, 4000000000, 1000000000], [1000000000, 8, 3999999999, -1, 4000000000, 1000000000]) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 47, 22, 1000000000, 48, 9, 56], [9, 10, 17, 19, 47, 22, 1000000000, 48, 9, 56]) == (False, -1)", "assert sequential_search([9, 10, 17, 22, 39, 48, 56], 22) == (True, 3)", "assert sequential_search([10, 3, 19, 22, 39, 48, 56], [10, 3, 19, 22, 39, 48, 56]) == (False, -1)", "assert sequential_search([3999999999, 48, 2000000000, 999999999, 4000000000], [3999999999, 48, 2000000000, 999999999, 4000000000]) == (False, -1)", "assert sequential_search([1000000000, 8, 3999999999, -1, 4000000000], [1000000000, 8, 3999999999, -1, 4000000000]) == (False, -1)", "assert sequential_search([1000000000, -3, -2, -1, 0, 1, 2, -2, 0], [1000000000, -3, -2, -1, 0, 1, 2, -2, 0]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 7, 9, 9, 10], [1, 2, 3, 4, 5, 7, 9, 9, 10]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8, 5], 4) == (True, 3)", "assert sequential_search([False, True], [False, True]) == (False, -1)", "assert sequential_search([9, 19, 19, 10, 17, 19, 22, 39, 48, 56, 19], [9, 19, 19, 10, 17, 19, 22, 39, 48, 56, 19]) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 22, 38, 48, 56], 50) == (False, -1)", "assert sequential_search([1000000000, 2, 2000000000, 3000000000, 999999999, 4000000000, 4000000000], [1000000000, 2, 2000000000, 3000000000, 999999999, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([9, 10, 17, 22, 39, 48, 56, 22, 48], 21) == (False, -1)", "assert sequential_search([1, 2, 3, 4, 5, 5, 5, 6, 7, 8], 4) == (True, 3)", "assert sequential_search([4000000000, 2000000000, 7, 8, 4000000000], [4000000000, 2000000000, 7, 8, 4000000000]) == (False, -1)", "assert sequential_search([10, 3, 19, 22, 39, 48, 56, 3, 22], [10, 3, 19, 22, 39, 48, 56, 3, 22]) == (False, -1)", "assert sequential_search([5, -2, -1, 0, 1, 2, -2], [5, -2, -1, 0, 1, 2, -2]) == (False, -1)", "assert sequential_search([21, 2000000000, 8, 4000000000, 4000000000], [21, 2000000000, 8, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([1000000000, 8, 3999999999, -1, 4000000000, 3999999998, 1000000000, 8], [1000000000, 8, 3999999999, -1, 4000000000, 3999999998, 1000000000, 8]) == (False, -1)", "assert sequential_search([8, 10, 3, 19, 22, 39, 56], [8, 10, 3, 19, 22, 39, 56]) == (False, -1)", "assert sequential_search([], 999999999) == (False, -1)", "assert sequential_search([True, True, False, False, False], 21) == (False, -1)", "assert sequential_search([9, 10, 3, 19, 22, 39, 48, 56, 48], 6) == (False, -1)", "assert sequential_search([1000000000, 999999999, 1000000000, 2000000000, 3000000000, 999999999, 4000000000, 3000000000], [1000000000, 999999999, 1000000000, 2000000000, 3000000000, 999999999, 4000000000, 3000000000]) == (False, -1)", "assert sequential_search([1, 2, 1, 3, 4, 5, 5, 5, 6, 7, 8, 8, 7], [1, 2, 1, 3, 4, 5, 5, 5, 6, 7, 8, 8, 7]) == (False, -1)", "assert sequential_search([1, 2, 4, 4, 5, 5, 5, 6, 7, 8, 8], 3000000000) == (False, -1)", "assert sequential_search([10, 3, 19, 39, 56, 3], [10, 3, 19, 39, 56, 3]) == (False, -1)", "assert sequential_search([8, 10, 3, 19, 22, 39, 21, 57], [8, 10, 3, 19, 22, 39, 21, 57]) == (False, -1)", "assert sequential_search([9, 10, 3, 19, 22, 39, 48, 56, 48, 39], [9, 10, 3, 19, 22, 39, 48, 56, 48, 39]) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 22, 39, 1000000000, 56, 9], [9, 10, 17, 19, 22, 39, 1000000000, 56, 9]) == (False, -1)", "assert sequential_search([9, 10, 17, 19, 22, 39, 56, 17], 2) == (False, -1)", "assert sequential_search([1000000000, 2, 3000000001, 2000000000, 3000000000, 999999999, 4000000000], [1000000000, 2, 3000000001, 2000000000, 3000000000, 999999999, 4000000000]) == (False, -1)", "assert sequential_search([-3, -2, -1, 0, 1, 21, 2, -2], [-3, -2, -1, 0, 1, 21, 2, -2]) == (False, -1)", "assert sequential_search([1, 3, 4, 5, 7, 9, 9, 10], [1, 3, 4, 5, 7, 9, 9, 10]) == (False, -1)", "assert sequential_search([8, 3999999999, 3, 2, 19, 22, 39, 21, 57], [8, 3999999999, 3, 2, 19, 22, 39, 21, 57]) == (False, -1)", "assert sequential_search([-2, -1, 0, 1, 3], [-2, -1, 0, 1, 3]) == (False, -1)", "assert sequential_search([10, 17, 19, 47, 22, 1000000000, 48, 9, 56], [10, 17, 19, 47, 22, 1000000000, 48, 9, 56]) == (False, -1)", "assert sequential_search([2000000001, 8, 2000000000, 4000000000, 2000000000, 4000000000], [2000000001, 8, 2000000000, 4000000000, 2000000000, 4000000000]) == (False, -1)", "assert sequential_search([False, False], []) == (False, -1)", "assert sequential_search([True, False, False, False], 21) == (False, -1)", "assert sequential_search([3000000000, 7], [False]) == (False, -1)", "assert sequential_search([9, 10, 17, 22, 39, 48, 56], [9, 10, 17, 22, 39, 48, 56]) == (False, -1)", "assert sequential_search([10, 3, 19, 22, 23, 39, 48, 56, 22, 10], [10, 3, 19, 22, 23, 39, 48, 56, 22, 10]) == (False, -1)", "assert sequential_search([-20, 57, 3999999998, -83, 21, -24, 8, 1000000000, -99], [-20, 57, 3999999998, -83, 21, -24, 8, 1000000000, -99]) == (False, -1)", "assert sequential_search([8, 10, 2, 3, 19, 22, 22, 21, 57, 57], [8, 10, 2, 3, 19, 22, 22, 21, 57, 57]) == (False, -1)", "assert sequential_search([10, 17, 19, 47, 22, 1000000000, 48, 9, 56, 19], [10, 17, 19, 47, 22, 1000000000, 48, 9, 56, 19]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, -83, 5, 5, 5, 6, 7, 8, 8, 7], [1, 2, 3, 4, -83, 5, 5, 5, 6, 7, 8, 8, 7]) == (False, -1)", "assert sequential_search([1, 2, 3, 4, -83, -83, 5, 5, 5, 6, 7, 8, 8, 7], [1, 2, 3, 4, -83, -83, 5, 5, 5, 6, 7, 8, 8, 7]) == (False, -1)", "assert sequential_search([9, 10, 2, 19, 22, 39, 48, 19, 9], [9, 10, 2, 19, 22, 39, 48, 19, 9]) == (False, -1)", "assert sequential_search([3000000000], [3000000000]) == (False, -1)", "assert sequential_search([8, 10, 3, 19, 23, 39, 56], [8, 10, 3, 19, 23, 39, 56]) == (False, -1)", "assert sequential_search([3999999999, 8, 4000000000, 4000000000], [3999999999, 8, 4000000000, 4000000000]) == (False, -1)", "assert sequential_search([38, 10, 17, 19, 22, 39, 47, 1000000000, 48, 56, 9], [38, 10, 17, 19, 22, 39, 47, 1000000000, 48, 56, 9]) == (False, -1)", "assert sequential_search([8, 3, 19, 23, 39, 56], [8, 3, 19, 23, 39, 56]) == (False, -1)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check if the elements of a given list are unique or not.\nassert all_unique([1,2,3]) == True\nYour code should pass the test:\nassert all_unique([1,2,3]) == True", "test_list": [ "assert all_unique([1,2,3]) == True", "assert all_unique([1,2,1,2]) == False", "assert all_unique([1,2,3,4,5]) == True", "assert all_unique([1, 2, 3, 4, 1]) == False", "assert all_unique([1, 'a', 2.5, 'b', 1, 2.5, 'c']) == False", "assert all_unique([]) == True", "assert all_unique([1]) == True", "assert all_unique([1, 'a', 2.5, 'b', 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, 'b', 'b', 2.5, 'c', 'c']) == False", "assert all_unique(['', 1, 'a', 2.5, 'b', 1, 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, 'b', 2.5, 'c', 2.5]) == False", "assert all_unique([1, 'a', 2.5, 'b', 1, 2.5, 'c', 'b']) == False", "assert all_unique([1, 'a', 2.5, 2.4132043402592354, 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 2.5, 'c', 'b']) == False", "assert all_unique([1, 'a', 'b', 1, 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, 'b', 2.5, 'c', 2.5, 'b']) == False", "assert all_unique([2]) == True", "assert all_unique([1, 2, 3, 4, 1, 4]) == False", "assert all_unique([1, 'a', 2.5, 'b', 1, 2.5, 'c', 'b', 2.5]) == False", "assert all_unique([2, 2]) == False", "assert all_unique([1, 'c', 'b', 1, 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, 2.5, 'c']) == False", "assert all_unique([1, 1]) == False", "assert all_unique([1, 'a', 2.5, 'b', 2.5, 'c', 'c']) == False", "assert all_unique([1, 'a', 'b', 2.5, 'c', 'cc']) == True", "assert all_unique([1, 'a', 2.5, 'b', 'b', 2.5, 'ac', 'c', 'c']) == False", "assert all_unique([1, 'a', 2.5, 'b', 'b', 'ac', 'c', 'c']) == False", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 2.5, 'b']) == False", "assert all_unique([1, 2, 3, 4, 1, 1]) == False", "assert all_unique([2, 'a', 2.5, '', 'b', 1, 2.5, 'b']) == False", "assert all_unique(['', 1, 'a', 2.5, 'b', 1, 2.5, 'c', '']) == False", "assert all_unique([1, 2]) == True", "assert all_unique([1, 2, 5, 3, 4, 1, 4, 5, 2]) == False", "assert all_unique([1, 'c', 'cb', 1, 2.4132043402592354, 'c']) == False", "assert all_unique([1, 'a', 2.5, 'b', 1, 2.5, 'c', 'b', 'a']) == False", "assert all_unique([1, 2, 3, 2, 1, 4, 2]) == False", "assert all_unique(['', 1, 'a', 2.5, 'cb', 1, 2.5, 'c', '']) == False", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 2.5, 2.5, 'b', 2.5]) == False", "assert all_unique([1, 'a', 2.4132043402592354, 2.5, 'c']) == True", "assert all_unique([3, 5, 3, 4, 1, 4, 5, 2]) == False", "assert all_unique([1, 2, 3, 3, 2, 2, 4, 2]) == False", "assert all_unique([-97.72133553330038, -22.07383795649666, 2.5, -29.118774451154366, -56.59753538486449, 12.066693167589861, 44.74013652952752, 2.5, -21.841980273620436, 2.4132043402592354]) == False", "assert all_unique([1, 'a', 2.5, 'b', 'b', 'c', 'c']) == False", "assert all_unique([2, 2, 2]) == False", "assert all_unique([1, 2, 3, 3, 2, 2, 4, 2, 2]) == False", "assert all_unique([1, 'a', 2.0407928337162407, 'b', 2.5, 'c']) == True", "assert all_unique([3]) == True", "assert all_unique([5, 4, 5, 5]) == False", "assert all_unique([1, 'a', 2.5, 1, 2.5, 'c', 'b', 1]) == False", "assert all_unique([1, 'a', 2.5, 'b', 2.5, 'c', 'b', 2.5, 'b']) == False", "assert all_unique([1, 'a', 'cc', 'b', 'ac', 'c', 'c']) == False", "assert all_unique(['a', 2.5, 'b', 1, 'bb', 2.5, 'c', '']) == False", "assert all_unique([1, 'a', 2.0407928337162407, 'b', 'c']) == True", "assert all_unique([1, 'a', 2.5, 2.311342558914553, 'c', 2.5]) == False", "assert all_unique([-13, 1]) == True", "assert all_unique([1, 'a', 2.5, 'b', 2.5, 'c', 'c', 'c', 1]) == False", "assert all_unique([2, 3]) == True", "assert all_unique([1, 2, 2, 2]) == False", "assert all_unique([1, 'a', 2.5, 'b', 'b', 'c', 'c', 'a']) == False", "assert all_unique([1, 'c', 'b', 1, 2.5, 'c', 'b']) == False", "assert all_unique([1, 'a', 2.5, 'b', 'b', 'b', 2.5, 'ac', 'c', 'c']) == False", "assert all_unique([1, 'cc', 'cb', 1, 2.5, 'c']) == False", "assert all_unique([2, 'a', 'c', 2.5, '', 'b', 1, 2.5, 'b']) == False", "assert all_unique([1, 'c', 'cb', 2.4132043402592354, 'c']) == False", "assert all_unique([1, 2, 3, 3, 2, 2, 2, 4, 2, 2]) == False", "assert all_unique([-14, 1]) == True", "assert all_unique([1, 'a', 2.5, 2.5, 'c', 2.5]) == False", "assert all_unique([1, 'a', 'b', 1, 2.5]) == False", "assert all_unique([4, 4]) == False", "assert all_unique([2, 2, -14, 2]) == False", "assert all_unique([1, 2, 5, 3, 4, 1, 4, 5, 3, 2]) == False", "assert all_unique([1, 2, 3, 3, 2, 2, 3, 2, 4, 5, 2, 2]) == False", "assert all_unique(['a', 2.5, 'b', 2.5, 'cc', 'c']) == False", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 2.5, 2.5, 'b', 2.5, '']) == False", "assert all_unique([1, 'a', 2.5, 'b', 1, 2.5, 1]) == False", "assert all_unique([1, 'a', 2.5, 'b', 'c', 'bc', 2.5, 'b']) == False", "assert all_unique([-13, -37, -14, -37]) == False", "assert all_unique([1, 'bb', 'a', 2.5, 'b', 2.9537947452443776, 'c', 2.5]) == False", "assert all_unique([1, 'a', 2.4132043402592354, 2.5, 3, 'c']) == True", "assert all_unique([1, 2, 3, 3, 2, -14, 3, 2, 4, 5, 2, 2]) == False", "assert all_unique([2, 5, 3]) == True", "assert all_unique(['a', 'b', 1, 2.5, 'c']) == True", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 3.2945116598503565, 'c', 'b']) == False", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 2.5, 2.311342558914553, 'b', 2.5]) == False", "assert all_unique([1, 2, 5, 3, 4, 1, 4, 3, 2]) == False", "assert all_unique([-97.72133553330038, -22.07383795649666, 2.5, -29.78635935943484, -56.59753538486449, 12.066693167589861, -56.59753538486449, 2.5, -21.841980273620436, 2.4132043402592354]) == False", "assert all_unique(['a', 'b', 1, 2.5, 'c', 'b']) == False", "assert all_unique([1, 'a', 2.5, 'cb', 'b', 'b', 2.5, 'c', 'c']) == False", "assert all_unique([-21.841980273620436, 1, 'a', 2.5, 2.5, 'c', 2.5]) == False", "assert all_unique([1, 'a', 2.5, 2.589643424113979, 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, '', 'ac', 1, 2.5, 2.311342558914553, 'b', 2.5]) == False", "assert all_unique([1, 2, 2]) == False", "assert all_unique(['', 1, 'a', 2.5, 'cb', 1, 2.5, 'c', -14, '']) == False", "assert all_unique([2, 3, 4, 1, 4]) == False", "assert all_unique([1, 'a', 2.5, 5, '', 'b', 1, 2.5, 2.5, 'b', 2.5, '']) == False", "assert all_unique([1, 'a', 2.5, 'cc', 'b', 'b', 2.5, 'c', 'c']) == False", "assert all_unique([1, 'a', 2.5, '', 'b', 1, 2.5, 'b', 2.5]) == False", "assert all_unique([1, -37, -14, -37]) == False", "assert all_unique([1, 'aa', 'a', 2.5, 'b', 1, 2.5, 'c', 'b']) == False", "assert all_unique([1, 'bbb', 'a', 2.5, 'b', 3.3482302076342627, 1, 2.5, 'c', 'b', 'a', 3]) == False", "assert all_unique([1, 2.5, 'b', 'b', 'c', 'c', 'a']) == False", "assert all_unique(['', 1, 'a', 2.5, 'b', 1, 'a', 2.5, 'c']) == False", "assert all_unique([1, 'a', 2.5, 'cb', 'b', 'b', 2.5, 'c', 'c', 'b']) == False", "assert all_unique(['cc', '', 1, 'a', 2.5, 'cb', 1, 2.5, 1, 'c', '']) == False", "assert all_unique([1, 'ac', 'bbb', 2.5, '', 'b', 1, -22.07383795649666, 'c', 'b']) == False", "assert all_unique([1, 2, 3, 4, 1, 4, 5, 3, 2]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to subtract two lists element-wise.\nassert sub_list([1, 2, 3],[4,5,6])==[-3,-3,-3]\nYour code should pass the test:\nassert sub_list([1, 2, 3],[4,5,6])==[-3,-3,-3]", "test_list": [ "assert sub_list([1, 2, 3],[4,5,6])==[-3,-3,-3]", "assert sub_list([1,2],[3,4])==[-2,-2]", "assert sub_list([90,120],[50,70])==[40,50]", "assert sub_list([1, 2, 3, 4], [5, 6, 7, 8]) == [-4, -4, -4, -4]", "assert sub_list([10, 20, 30, 40, 50], [5, 10, 15, 20, 25]) == [5, 10, 15, 20, 25]", "assert sub_list([-1, -2, -3], [1, 2, 3]) == [-2, -4, -6]", "assert sub_list([2.5, 3.5, 4.5], [1.5, 2.5, 3.5]) == [1.0, 1.0, 1.0]", "assert sub_list([50, 2, 3], [50, 2, 3]) == [0, 0, 0]", "assert sub_list([10, 20, 30, 40, -1, 1, 50], [10, 20, 30, 40, -1, 1, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, -1, 1], [10, 20, 30, 40, -1, 1]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([2.5, 3.5, 4.5], [2.5, 3.5, 4.5]) == [0.0, 0.0, 0.0]", "assert sub_list([50, 1, 3], [50, 1, 3]) == [0, 0, 0]", "assert sub_list([2.5, 4.228187684597152, 4.5], [2.5, 4.228187684597152, 4.5]) == [0.0, 0.0, 0.0]", "assert sub_list([2.5, 3.5], [2.5, 3.5]) == [0.0, 0.0]", "assert sub_list([30, 10, 20, 50, 30, 40, 50], [30, 10, 20, 50, 30, 40, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([50, 30, 2, 3], [50, 30, 2, 3]) == [0, 0, 0, 0]", "assert sub_list([1, 2, 3, 4], [5, 6, 7, 25]) == [-4, -4, -4, -21]", "assert sub_list([2.5, 2.7219722320551716, 2.5], [2.5, 2.7219722320551716, 2.5]) == [0.0, 0.0, 0.0]", "assert sub_list([30, 10, 20, 30, 40, 50], [30, 10, 20, 30, 40, 50]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([2.5, 3.5, 4.5, 2.5], [2.5, 3.5, 4.5, 2.5]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([10, 20, 30, 40, 31, -1, 1], [10, 20, 30, 40, 31, -1, 1]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, 0, 1, 30], [10, 20, 30, 40, 31, 0, 1, 30]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([50, 1, 3, 1, 0, 1], [50, 1, 3, 1, 0, 1]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([5, 6, 7, 25], [5, 6, 7, 25]) == [0, 0, 0, 0]", "assert sub_list([1.2555626492437502, 2.7219722320551716, 2.5], [1.2555626492437502, 2.7219722320551716, 2.5]) == [0.0, 0.0, 0.0]", "assert sub_list([10, 20, 30, 40, 0, 1, 30, 30], [10, 20, 30, 40, 0, 1, 30, 30]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([30, 10, 20, 50, 30, 40], [30, 10, 20, 50, 30, 40]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([2.5, 3.5, 2.5], [2.5, 3.5, 2.5]) == [0.0, 0.0, 0.0]", "assert sub_list([1.5, 2.5, 4.228187684597152], [1.5, 2.5, 4.228187684597152]) == [0.0, 0.0, 0.0]", "assert sub_list([2.5, 3.277085080344455, 2.5], [2.5, 3.277085080344455, 2.5]) == [0.0, 0.0, 0.0]", "assert sub_list([50, 3], [50, 3]) == [0, 0]", "assert sub_list([30, 10, 20, 50, 30, 39, 50], [30, 10, 20, 50, 30, 39, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, -1, 3, 1, 10], [10, 20, 30, 40, 31, -1, 3, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([1.5, 3.5, 2.5, 4.228187684597152], [1.5, 3.5, 2.5, 4.228187684597152]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([10, 7, 30, 40, 31, -1, 3, 1, 10], [10, 7, 30, 40, 31, -1, 3, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, 0, 1, 31, 30, 31], [10, 20, 30, 40, 31, 0, 1, 31, 30, 31]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, -1, 50, 3, 1, 10], [10, 20, 30, 40, 31, -1, 50, 3, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([4.228187684597152, 4.5], [4.228187684597152, 4.5]) == [0.0, 0.0]", "assert sub_list([30, 10, 30, 29, 20, 30], [30, 10, 30, 29, 20, 30]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([50, 2, 50, 2], [50, 2, 50, 2]) == [0, 0, 0, 0]", "assert sub_list([4.5, 2.5, 4.228187684597152, 3.277085080344455, 3.277085080344455], [4.5, 2.5, 4.228187684597152, 3.277085080344455, 3.277085080344455]) == [0.0, 0.0, 0.0, 0.0, 0.0]", "assert sub_list([30, 10, 20, 30, 6, 40, 50], [30, 10, 20, 30, 6, 40, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 30, 40, 31, -1, 1], [10, 30, 40, 31, -1, 1]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 1, 0, 1, 30, 30], [10, 20, 30, 1, 0, 1, 30, 30]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([2.5, 4.228187684597152], [2.5, 4.228187684597152]) == [0.0, 0.0]", "assert sub_list([10, 7, 30, 40, 31, 8, -1, 3, 1, 10], [10, 7, 30, 40, 31, 8, -1, 3, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([15, 30, 10, 0, 30, 40, 4], [15, 30, 10, 0, 30, 40, 4]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([3.5], [3.5]) == [0.0]", "assert sub_list([2.5, 3.5, 2.5, 3.5], [2.5, 3.5, 2.5, 3.5]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([10, 20, 30, 40, 31, 0, 1, 31, 30], [10, 20, 30, 40, 31, 0, 1, 31, 30]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, -1, 1, 40], [10, 20, 30, 40, 31, -1, 1, 40]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([31, 1, 3, 1, 0, 1], [31, 1, 3, 1, 0, 1]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([10, 7, 30, 40, 31, 7, -1, 1, 10], [10, 7, 30, 40, 31, 7, -1, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 7, 30, 40, 2, 31, 7, -1, 1, 10], [10, 7, 30, 40, 2, 31, 7, -1, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, -1, 1, 40, 40], [10, 20, 30, 40, 31, -1, 1, 40, 40]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([15, 30, 0, 30, 40, 4], [15, 30, 0, 30, 40, 4]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([15, 30, 10, 0, 30, 30, 40, 4], [15, 30, 10, 0, 30, 30, 40, 4]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([29, 10, 20, 30, 6, 40, 50, 20], [29, 10, 20, 30, 6, 40, 50, 20]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([3.4835765355343726, 3.5], [3.4835765355343726, 3.5]) == [0.0, 0.0]", "assert sub_list([51, 50], [51, 50]) == [0, 0]", "assert sub_list([31, 1, 3, 1, 0, 3], [31, 1, 3, 1, 0, 3]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([4.692264375890533], [4.692264375890533]) == [0.0]", "assert sub_list([1, 3, 1, 0, 1], [1, 3, 1, 0, 1]) == [0, 0, 0, 0, 0]", "assert sub_list([30, 10, 30, 40, 50], [30, 10, 30, 40, 50]) == [0, 0, 0, 0, 0]", "assert sub_list([3.275166414796655, 4.692264375890533], [3.275166414796655, 4.692264375890533]) == [0.0, 0.0]", "assert sub_list([1.5, 3.275166414796655, 4.692264375890533], [1.5, 3.275166414796655, 4.692264375890533]) == [0.0, 0.0, 0.0]", "assert sub_list([3.275166414796655, 3.4835765355343726, 3.5, 3.5], [3.275166414796655, 3.4835765355343726, 3.5, 3.5]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([5, 10, 15, 20, 25], [5, 10, 15, 20, 25]) == [0, 0, 0, 0, 0]", "assert sub_list([2.5, 3.5, 2.4419505347242247], [2.5, 3.5, 2.4419505347242247]) == [0.0, 0.0, 0.0]", "assert sub_list([3.480698843323787, 3.5, 4.5, 2.5], [3.480698843323787, 3.5, 4.5, 2.5]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([3.8409023192569816, 3.275166414796655, 4.228187684597152, 4.5], [3.8409023192569816, 3.275166414796655, 4.228187684597152, 4.5]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([10, 20, 30, 30, 40, -1, 1], [10, 20, 30, 30, 40, -1, 1]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 7, 30, 40, 31, 7, 1, 10], [10, 7, 30, 40, 31, 7, 1, 10]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([30, 5, 20, 30, 40, 50], [30, 5, 20, 30, 40, 50]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([4, 50, 30, 3, 3, 50], [4, 50, 30, 3, 3, 50]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([4, 50, 30, 3, 3, 50, 50], [4, 50, 30, 3, 3, 50, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([30, 10, 20, 50, 30, 39, 49], [30, 10, 20, 50, 30, 39, 49]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([6, 7, 25], [6, 7, 25]) == [0, 0, 0]", "assert sub_list([15, 30, 3, 10, 0, 30, 40, 4], [15, 30, 3, 10, 0, 30, 40, 4]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([30, 10, 30, 29, -1, 30], [30, 10, 30, 29, -1, 30]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 2, 31, 7, -1, 1, 10, 30], [10, 20, 30, 40, 2, 31, 7, -1, 1, 10, 30]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([1.2555626492437502, 1.2555626492437502, 2.7219722320551716, 2.5], [1.2555626492437502, 1.2555626492437502, 2.7219722320551716, 2.5]) == [0.0, 0.0, 0.0, 0.0]", "assert sub_list([30, 49, 10, 20, 30, 6, 40, 50, 20], [30, 49, 10, 20, 30, 6, 40, 50, 20]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([-1, 31, 1, 3, 1, 3], [-1, 31, 1, 3, 1, 3]) == [0, 0, 0, 0, 0, 0]", "assert sub_list([50, 50, 3, 50], [50, 50, 3, 50]) == [0, 0, 0, 0]", "assert sub_list([50, 1, 8, 3, 1], [50, 1, 8, 3, 1]) == [0, 0, 0, 0, 0]", "assert sub_list([3.4835765355343726], [3.4835765355343726]) == [0.0]", "assert sub_list([20, 10, 20, 30, 40, 25, 0, 1, 30, 30, 30], [20, 10, 20, 30, 40, 25, 0, 1, 30, 30, 30]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([31, 1, 3, 2, 1, 0, 40, 0], [31, 1, 3, 2, 1, 0, 40, 0]) == [0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([3.4835765355343726, 3.5, 3.5], [3.4835765355343726, 3.5, 3.5]) == [0.0, 0.0, 0.0]", "assert sub_list([10, 20, 30, 40, 31, -1, 50, 3, 10, 50], [10, 20, 30, 40, 31, -1, 50, 3, 10, 50]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([15, 30, 0, 30, 40, 4, 4], [15, 30, 0, 30, 40, 4, 4]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([30, 20, 50, 30, 40, 50, 20], [30, 20, 50, 30, 40, 50, 20]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 30, 40, 1, 31, -1, 1], [10, 30, 40, 1, 31, -1, 1]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([2.2350376696437304, 4.692264375890533], [2.2350376696437304, 4.692264375890533]) == [0.0, 0.0]", "assert sub_list([50, 30, 10, 20, 30, 40, 50], [50, 30, 10, 20, 30, 40, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([2.2350376696437304, 4.692264375890533, 2.2350376696437304], [2.2350376696437304, 4.692264375890533, 2.2350376696437304]) == [0.0, 0.0, 0.0]", "assert sub_list([10, 20, 30, 1, 0, 1, 15, 30, 10], [10, 20, 30, 1, 0, 1, 15, 30, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([1.5, 3.5, 2.5, 1.5, 4.228187684597152], [1.5, 3.5, 2.5, 1.5, 4.228187684597152]) == [0.0, 0.0, 0.0, 0.0, 0.0]", "assert sub_list([50, 1, 3, 1, 0, 1, 1], [50, 1, 3, 1, 0, 1, 1]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([4, 2, 50, 30, 3, 50, 50], [4, 2, 50, 30, 3, 50, 50]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([1.5, 4.228187684597152], [1.5, 4.228187684597152]) == [0.0, 0.0]", "assert sub_list([20, 30, 1, 0, 1, 30, 30], [20, 30, 1, 0, 1, 30, 30]) == [0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 31, -1, 3, 1, 10, 40], [10, 20, 30, 40, 31, -1, 3, 1, 10, 40]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([10, 20, 30, 40, 21, 0, 1, 30, 30, 30], [10, 20, 30, 40, 21, 0, 1, 30, 30, 30]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([20, 10, 20, 30, 40, 25, 0, 1, 30, 30, 30, 20, 25, 25], [20, 10, 20, 30, 40, 25, 0, 1, 30, 30, 30, 20, 25, 25]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sub_list([4.5, 1.5, 2.5, 4.228187684597152], [4.5, 1.5, 2.5, 4.228187684597152]) == [0.0, 0.0, 0.0, 0.0]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function takes in an integer and check whether the frequency of each digit in the integer is less than or equal to the digit itself.\nassert validate(1234) == True\nYour code should pass the test:\nassert validate(1234) == True", "test_list": [ "assert validate(1234) == True", "assert validate(51241) == False", "assert validate(321) == True", "assert validate(9) == True", "assert validate(9876543210) == False", "assert validate(112233445566) == False", "assert validate(111111) == False", "assert validate(112233445565) == False", "assert validate(111110) == False", "assert validate(112233445567) == False", "assert validate(10) == False", "assert validate(9876543211) == False", "assert validate(111112) == False", "assert validate(111109) == False", "assert validate(112233445568) == False", "assert validate(8) == True", "assert validate(9876543209) == False", "assert validate(11) == False", "assert validate(111113) == False", "assert validate(9876543208) == False", "assert validate(111108) == False", "assert validate(7) == True", "assert validate(6) == True", "assert validate(9876543206) == False", "assert validate(111114) == False", "assert validate(9876543207) == False", "assert validate(12) == True", "assert validate(111107) == False", "assert validate(5) == True", "assert validate(4) == True", "assert validate(3) == True", "assert validate(2) == True", "assert validate(112233445564) == False", "assert validate(9876543212) == True", "assert validate(1) == True", "assert validate(9876543213) == True", "assert validate(9876543205) == False", "assert validate(74) == True", "assert validate(9876543214) == True", "assert validate(0) == False", "assert validate(75) == True", "assert validate(111115) == False", "assert validate(76) == True", "assert validate(9876543204) == False", "assert validate(112233445569) == False", "assert validate(111106) == False", "assert validate(112233445570) == False", "assert validate(77) == True", "assert validate(111105) == False", "assert validate(72) == True", "assert validate(13) == True", "assert validate(9876543215) == True", "assert validate(112233445563) == False", "assert validate(112233445571) == False", "assert validate(73) == True", "assert validate(78) == True", "assert validate(112233445562) == False", "assert validate(9876543217) == True", "assert validate(79) == True", "assert validate(71) == True", "assert validate(111104) == False", "assert validate(111103) == False", "assert validate(70) == False", "assert validate(14) == True", "assert validate(9876543203) == False", "assert validate(69) == True", "assert validate(29) == True", "assert validate(30) == False", "assert validate(111102) == False", "assert validate(28) == True", "assert validate(68) == True", "assert validate(65) == True", "assert validate(111101) == False", "assert validate(52) == True", "assert validate(112233445572) == False", "assert validate(9876543216) == True", "assert validate(27) == True", "assert validate(15) == True", "assert validate(26) == True", "assert validate(91) == True", "assert validate(16) == True", "assert validate(31) == True", "assert validate(112233445573) == False", "assert validate(67) == True", "assert validate(32) == True", "assert validate(80) == False", "assert validate(17) == True", "assert validate(25) == True", "assert validate(111100) == False", "assert validate(53) == True", "assert validate(112233445574) == False", "assert validate(111099) == False", "assert validate(112233445561) == False", "assert validate(33) == True", "assert validate(92) == True", "assert validate(81) == True", "assert validate(9876543219) == True", "assert validate(112233445575) == False", "assert validate(112233445560) == False", "assert validate(66) == True", "assert validate(9876543218) == True", "assert validate(64) == True", "assert validate(54) == True", "assert validate(51) == True", "assert validate(111117) == False", "assert validate(63) == True", "assert validate(9876543202) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes in a list and element and checks whether all items in the list are equal to the given element.\nassert check_element([\"green\", \"orange\", \"black\", \"white\"],'blue')==False\nYour code should pass the test:\nassert check_element([\"green\", \"orange\", \"black\", \"white\"],'blue')==False", "test_list": [ "assert check_element([\"green\", \"orange\", \"black\", \"white\"],'blue')==False", "assert check_element([1,2,3,4],7)==False", "assert check_element([\"green\", \"green\", \"green\", \"green\"],'green')==True", "assert check_element([], 'red') == True", "assert check_element(['a', 'a', 'a', 'a', 'a'], 'a') == True", "assert check_element([], 'green') == True", "assert check_element([], []) == True", "assert check_element([], 'a') == True", "assert check_element(['a', 'a', 'a', 'a', 'a'], 'reda') == False", "assert check_element([], 'reda') == True", "assert check_element(['a', '', 'a', 'a', 'a'], 'a') == False", "assert check_element([], 'gren') == True", "assert check_element(['a', '', 'a', 'a', 'a'], 'ared') == False", "assert check_element(['a', '', 'a', 'green', 'a', 'a'], 'ared') == False", "assert check_element([], 'ared') == True", "assert check_element(['a', '', 'a', 'redaa', 'green', 'a', 'a'], 'red') == False", "assert check_element(['a', '', 'a', 'a', 'a', 'a'], 'ared') == False", "assert check_element(['a', '', 'a', 'a', 'a'], 'aredd') == False", "assert check_element(['a', '', 'a', 'a', 'a'], 'gren') == False", "assert check_element([], ['IMSzNXr']) == True", "assert check_element([], [False, True, True, False, True, False, True, True, False]) == True", "assert check_element([], ['red', 'HwtScMmS', 'jjtLKAcXm']) == True", "assert check_element(['a', '', 'a', 'redaa', 'green', 'a', 'a'], 'aa') == False", "assert check_element(['a', 'a', 'areda', 'a', 'a', 'a'], 'a') == False", "assert check_element(['a', 'a', 'a', 'a', 'a'], 'gren') == False", "assert check_element(['a', 'a', 'a', 'a', 'a', 'a', 'a'], 'gren') == False", "assert check_element(['', 'a'], 'red') == False", "assert check_element(['a', 'a', 'a', 'a', 'a'], 'HwtScMmS') == False", "assert check_element([], 'gaan') == True", "assert check_element(['a', 'a', ''], 'gren') == False", "assert check_element(['a', '', 'a', 'a', 'a'], 'reda') == False", "assert check_element(['a', 'a', ''], 'gregren') == False", "assert check_element(['a', 'aa', 'a', 'a', 'a'], 'reda') == False", "assert check_element([], ['red', 'HwtScMmS', 'jjtLKaredaAcXm']) == True", "assert check_element(['a', 'a', 'a', 'a', 'a', 'a'], 'a') == True", "assert check_element(['a', 'a', 'areda', 'a', 'a', 'a'], 'gregren') == False", "assert check_element(['red', '', 'CeR'], 'reda') == False", "assert check_element(['a', '', 'a', 'green', 'a', 'a'], 'areed') == False", "assert check_element(['a', 'a', 'a', 'jjtLKAcXm', 'a', 'a', 'a'], 'gren') == False", "assert check_element(['', 'a', 'a', 'a', 'a'], 'gaan') == False", "assert check_element([], '') == True", "assert check_element([], [[56.04013492061608, 22.809175570261317, -19.209978650818854], -9.19614909867073, ['CeR', 'aa', 'reda', 'cX', 'sqkDTbEWNY', 'gaan', 'aa', 'reda'], 'reda', -9.19614909867073]) == True", "assert check_element(['red', '', 'CeR'], 'rda') == False", "assert check_element(['a', '', 'a', 'redaa', 'green', 'a', 'a'], 'rd') == False", "assert check_element(['red', 'gregren', '', 'CeR'], 'rda') == False", "assert check_element([], [-8.3015872751577, -1.6872782556751815, -37.057532027723326, 56.04013492061608, 22.809175570261317]) == True", "assert check_element([], 'gregren') == True", "assert check_element([], [-8.3015872751577, -1.6872782556751815, -37.057532027723326, 56.04013492061608, 22.809175570261317, -37.057532027723326]) == True", "assert check_element([], [-8.3015872751577, -1.6872782556751815, -37.057532027723326, 56.04013492061608, 22.809175570261317, 22.809175570261317]) == True", "assert check_element(['red', 'IMSzNXr', 'gregren', 'CeRHwtScMmS'], 'red') == False", "assert check_element(['aredaa', '', 'a', 'a', 'a'], 'green') == False", "assert check_element(['red', 'gregren', 'CeRHwtScMmS'], 'red') == False", "assert check_element(['a', 'a', 'a', 'a', 'a', 'a', 'a'], 'sqkDTbEWNY') == False", "assert check_element(['a', '', 'a', 'redaa', 'a', 'a'], 'red') == False", "assert check_element(['Zwm', 'iAz', 'IEnmyrIGhY', 'EKrcuFaZ'], 'green') == False", "assert check_element(['a', '', 'a', 'redaa', 'areedgreen', 'a', 'a'], 'aa') == False", "assert check_element(['a', 'a', 'redaaa', 'a', 'a'], 'HwtScMmS') == False", "assert check_element(['a', '', 'a', 'a', 'a', 'a'], 'ard') == False", "assert check_element(['red', 'gregren', 'CEKrcuFaZwtScMmS'], 'red') == False", "assert check_element(['a', 'a', 'a', 'a'], 'a') == True", "assert check_element([], ['rd', 'mlOBNlC', '', 'Zwm', 'gregren', 'Zwm']) == True", "assert check_element(['a', 'a', 'a', 'iAz', 'a', 'a', 'aa', 'a'], 'sqkDTbEWNY') == False", "assert check_element([], [-8.3015872751577, -1.6872782556751815, -37.057532027723326, 56.04013492061608, 22.809175570261317, -8.3015872751577]) == True", "assert check_element(['a', 'a', 'redaaa', 'a', 'a'], 'areed') == False", "assert check_element(['Zwm', 'IEnmyrIGhY', 'EKrcuFaZ'], 'green') == False", "assert check_element(['a', 'a', 'a', 'a'], 'jjtLKaredaAcXm') == False", "assert check_element(['a', '', 'a', 'a', 'a', 'a', ''], 'ard') == False", "assert check_element([], [-19.209978650818854, -37.057532027723326, 87.86645974977819, 32.00129666267674, -1.606104157903161, -82.74767724499756, -93.4885457411899, -19.209978650818854, 56.04013492061608]) == True", "assert check_element(['a', 'a', 'areda', 'a', 'a', 'a'], 'rdegren') == False", "assert check_element(['a', 'a', 'HwtScMmS'], 'gregren') == False", "assert check_element(['a', 'a', 'areda', 'a', 'a'], 'gregren') == False", "assert check_element(['a', '', 'a', 'redaa', 'green', 'a', 'a', 'a'], 'rd') == False", "assert check_element([], ['IMSzNXr', 'IMSzNXr']) == True", "assert check_element(['areed', '', 'a', 'redaa', 'a'], 'jjtLKaredaAcXma') == False", "assert check_element(['aredaa', '', 'CeR', 'CeR'], 'rda') == False", "assert check_element([], [-14, 78, False, True, False, -17, False, -99, True, -79]) == True", "assert check_element([], [[56.04013492061608, 22.809175570261317, -19.209978650818854, -19.209978650818854], [56.04013492061608, 22.809175570261317, -19.209978650818854, -19.209978650818854], -9.19614909867073, 'reda', -9.19614909867073]) == True", "assert check_element(['red', '', 'CeR'], 'red') == False", "assert check_element(['', 'jjtLKAcXm', 'aa'], 'red') == False", "assert check_element(['red', '', 'CeR', ''], 'red') == False", "assert check_element(['a', '', 'a', 'redaa', 'a', 'a'], 'IMSzNXr') == False", "assert check_element(['a', '', 'aa', 'a', 'a', 'a'], 'ard') == False", "assert check_element(['Z', 'red', 'Utyz', 'cAvkmuMOrX', 'TaK'], 'green') == False", "assert check_element(['cX', '', 'a'], 'mlOBNlC') == False", "assert check_element(['a', '', 'a', 'redaa', 'green', 'a', 'a', 'a', 'a'], 'rd') == False", "assert check_element([], 'ggreen') == True", "assert check_element(['a', 'a', 'a'], 'jjtLKaredaAcXm') == False", "assert check_element(['red', 'IMSzNXr', 'gregren', 'CeRHwtScMmS'], 'dred') == False", "assert check_element(['Zwm', 'iAz', 'IEnmyrIGhY', 'EKrcuFaZ'], 'gereen') == False", "assert check_element(['a', 'a', 'a', 'a'], 'jjtLKaredaAcXmIMSzNXr') == False", "assert check_element(['a', 'a', 'a', 'a', 'a', 'a', 'a'], 'areda') == False", "assert check_element([], 'redea') == True", "assert check_element([], ['rXziNV', 'gySc', 'gyScc']) == True", "assert check_element(['a', 'a', 'a', 'a', 'a'], 'jjtLKaredaAcXmIMSzNXr') == False", "assert check_element(['red', 'gregren', 'CEKrcuFaZwtScMmS'], 'redggreena') == False", "assert check_element(['red', 'IMSzNXr', 'gregren', 'CeRHwtScMmS'], 'aa') == False", "assert check_element(['areed', '', 'a', 'redaa', 'a', 'a'], 'jjtLKaredaAcXma') == False", "assert check_element(['a', '', 'a', 'redaa', 'green', 'a', 'a'], 'iAz') == False", "assert check_element(['red', 'IMSzNXr', 'gereen', 'CeRHwtScMmS'], 'red') == False", "assert check_element(['a', '', 'aa', 'Z', 'a', 'a'], 'cX') == False", "assert check_element(['a', 'ajjtLKaredaAcXma', '', 'a', 'a', 'a'], 'gren') == False", "assert check_element(['IMSzNXr', 'gregren', 'CeRHwtScMmS'], 'dred') == False", "assert check_element(['a', '', 'a', 'a', 'a'], 'IEnmyrIGhY') == False", "assert check_element(['a', '', 'a', 'a', 'a'], 'areed') == False", "assert check_element(['a', 'a', 'areda', 'a', 'a'], 'grnegren') == False", "assert check_element(['a', 'a', 'a', 'redaaa', 'a', 'a'], 'areed') == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that checks whether a string contains the 'a' character followed by two or three 'b' characters.\nassert text_match_two_three(\"ac\")==(False)\nYour code should pass the test:\nassert text_match_two_three(\"ac\")==(False)", "test_list": [ "assert text_match_two_three(\"ac\")==(False)", "assert text_match_two_three(\"dc\")==(False)", "assert text_match_two_three(\"abbbba\")==(True)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the largest sum of a contiguous array in the modified array which is formed by repeating the given array k times.\nassert max_sub_array_sum_repeated([10, 20, -30, -1], 4, 3) == 30\nYour code should pass the test:\nassert max_sub_array_sum_repeated([10, 20, -30, -1], 4, 3) == 30", "test_list": [ "assert max_sub_array_sum_repeated([10, 20, -30, -1], 4, 3) == 30", "assert max_sub_array_sum_repeated([-1, 10, 20], 3, 2) == 59", "assert max_sub_array_sum_repeated([-1, -2, -3], 3, 3) == -1", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3], 6, 5) == 69", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 2) == 45", "assert max_sub_array_sum_repeated([5, -2, 11, 4, -7, 3], 6, 5) == 74", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 6) == 88", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 1) == 18", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 6) == 144", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 10) == 240", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 5) == 120", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 9) == 216", "assert max_sub_array_sum_repeated([5, -2, 11, 4, -7, 3], 6, 4) == 60", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3], 6, 4) == 56", "assert max_sub_array_sum_repeated([5, -2, 10, -7, 3, 5], 6, 1) == 14", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 4, 10], 7, 6) == 150", "assert max_sub_array_sum_repeated([5, -2, 10, -7, 3, 5], 6, 3) == 42", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 4, 10], 7, 7) == 175", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 10, 10], 10, 2) == 47", "assert max_sub_array_sum_repeated([9, -2, 10, 5, -7, 3, 10], 7, 5) == 140", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3], 6, 6) == 82", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 1) == 24", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 7) == 168", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 4) == 96", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 1) == 24", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3, 10], 7, 5) == 115", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 11) == 154", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 10) == 141", "assert max_sub_array_sum_repeated([6, -2, 9, -7, 3, 5], 6, 3) == 42", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3, 10], 7, 6) == 138", "assert max_sub_array_sum_repeated([6, -2, 9, -7, 3, 5], 6, 6) == 84", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 9) == 130", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 1) == 24", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -4, 3, 10], 7, 7) == 189", "assert max_sub_array_sum_repeated([6, -2, 9, -7, 3, 5], 6, 2) == 28", "assert max_sub_array_sum_repeated([-2, -3, 9, -7, 3, 5], 6, 3) == 20", "assert max_sub_array_sum_repeated([6, -2, 10, 4, -7, 3, 10], 7, 6) == 144", "assert max_sub_array_sum_repeated([1, 2, 11, -4, -5, 6, 7, -8, 9, 10], 10, 1) == 29", "assert max_sub_array_sum_repeated([5, -2, 5, -7, 4, 10], 6, 6) == 90", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 10) == 213", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 10, 10], 10, 3) == 69", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, 1, 6, 7, -8, 9, 10], 10, 11) == 216", "assert max_sub_array_sum_repeated([4, -2, 10, -7, 3, 5], 6, 3) == 39", "assert max_sub_array_sum_repeated([5, -2, 10, -7, 3, 5], 6, 6) == 84", "assert max_sub_array_sum_repeated([5, -1, 10, 4, -7, 3], 6, 4) == 60", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 11) == 264", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 10, 10], 10, 4) == 91", "assert max_sub_array_sum_repeated([9, -2, 10, 5, -7, 3, 10], 7, 6) == 168", "assert max_sub_array_sum_repeated([5, -1, 10, 3, -7, 3], 6, 4) == 56", "assert max_sub_array_sum_repeated([6, -2, 10, 4, -8, 3, 10], 7, 6) == 138", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3], 6, 11) == 147", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 2) == 32", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -8, 3], 6, 9) == 122", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10, 7], 11, 1) == 31", "assert max_sub_array_sum_repeated([6, -2, 10, 4, -8, 3, 10, 10], 8, 6) == 198", "assert max_sub_array_sum_repeated([1, 11, 2, 3, -4, -5, 7, -8, 10, 10], 10, 10) == 270", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3, 10], 7, 4) == 92", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 10) == 144", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3, -2], 7, 3) == 39", "assert max_sub_array_sum_repeated([1, 11, 2, 3, -4, -5, 7, -8, 10, 10], 10, 5) == 135", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, 6, -8, 9, 10], 10, 1) == 23", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 9], 7, 5) == 115", "assert max_sub_array_sum_repeated([5, -2, 10, -7, 3, 5], 6, 7) == 98", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3, 10], 7, 7) == 161", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, 6, -8, 9, 10, 6], 11, 1) == 29", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 4) == 87", "assert max_sub_array_sum_repeated([9, -2, 10, 5, -7, 3, 10], 7, 7) == 196", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 8) == 115", "assert max_sub_array_sum_repeated([9, -2, 10, 4, -7, 3, 10], 7, 5) == 135", "assert max_sub_array_sum_repeated([6, -2, 10, 4, -7, 3, 10], 7, 5) == 120", "assert max_sub_array_sum_repeated([5, -1, 10, 3, -7, 3], 6, 3) == 43", "assert max_sub_array_sum_repeated([1, 2, 11, -4, -5, 6, 7, -8, 9, 10], 10, 10) == 290", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 9) == 192", "assert max_sub_array_sum_repeated([9, -2, 10, 4, -7, 3, 10], 7, 4) == 108", "assert max_sub_array_sum_repeated([5, -2, 10, -7, 3, 5], 6, 5) == 70", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3], 6, 7) == 95", "assert max_sub_array_sum_repeated([5, -2, 10, 4, 4, 3], 6, 11) == 264", "assert max_sub_array_sum_repeated([-2, -3, 9, -7, -1, 5], 6, 3) == 11", "assert max_sub_array_sum_repeated([5, -2, -2, 5, -7, 3, 10], 7, 11) == 133", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -7, 3, 8], 7, 7) == 147", "assert max_sub_array_sum_repeated([6, -2, 10, 5, -4, 3, 10], 7, 7) == 196", "assert max_sub_array_sum_repeated([6, -2, 10, 4, -7, 3, 10], 7, 4) == 96", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 10, 10], 10, 10) == 223", "assert max_sub_array_sum_repeated([9, -2, 10, 4, -7, 3], 6, 7) == 123", "assert max_sub_array_sum_repeated([5, -2, 10, 3, 3, 5], 6, 6) == 144", "assert max_sub_array_sum_repeated([-2, 10, 5, -8, 3], 5, 9) == 79", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 5) == 74", "assert max_sub_array_sum_repeated([6, -1, 9, -7, 3, 5], 6, 3) == 45", "assert max_sub_array_sum_repeated([5, -2, -2, 5, -7, 3, 10], 7, 12) == 145", "assert max_sub_array_sum_repeated([1, 2, 3, -4, -5, 6, 7, -8, 9, 10], 10, 11) == 234", "assert max_sub_array_sum_repeated([5, -2, 5, -7, 4, 10], 6, 7) == 105", "assert max_sub_array_sum_repeated([5, -2, 10, 4, -6, 3], 6, 2) == 31", "assert max_sub_array_sum_repeated([6, -2, 10, 4, -7, 3, 10], 7, 7) == 168", "assert max_sub_array_sum_repeated([-2, -3, 9, -1, -1, 5], 6, 3) == 26", "assert max_sub_array_sum_repeated([-2, -3, 9, -7, -1, 5], 6, 4) == 12", "assert max_sub_array_sum_repeated([5, -2, 11, 4, -7, 3], 6, 3) == 46", "assert max_sub_array_sum_repeated([1, 2, 3, -3, -5, 6, 7, -8, 10, 10], 10, 10) == 232", "assert max_sub_array_sum_repeated([7, -2, 10, 4, -7, 3, 10], 7, 6) == 150", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 11) == 158", "assert max_sub_array_sum_repeated([9, -2, 10, 5, -7, 3, 10], 7, 2) == 56", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3], 6, 7) == 102", "assert max_sub_array_sum_repeated([5, -2, 10, 5, -7, 3, 10], 7, 12) == 288", "assert max_sub_array_sum_repeated([6, -3, 10, 5, -4, 3, 10], 7, 7) == 189", "assert max_sub_array_sum_repeated([6, -1, 9, -4, 3, 5], 6, 3) == 54", "assert max_sub_array_sum_repeated([-7, 2, 3, -4, -5, 6, -7, -8, 9, 10], 10, 8) == 19" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function takes in an integer n and returns the sum of squares of first n even natural numbers.\nassert square_Sum(2) == 20\nYour code should pass the test:\nassert square_Sum(2) == 20", "test_list": [ "assert square_Sum(2) == 20", "assert square_Sum(3) == 56", "assert square_Sum(4) == 120", "assert square_Sum(100) == 1353400.0", "assert square_Sum(0) == 0.0", "assert square_Sum(1) == 4.0", "assert square_Sum(1000000) == 1.333335333334e+18", "assert square_Sum(10) == 1540.0", "assert square_Sum(10000) == 1333533340000.0", "assert square_Sum(90) == 988260.0", "assert square_Sum(89) == 955860.0", "assert square_Sum(1000002) == 1.333343333358e+18", "assert square_Sum(91) == 1021384.0", "assert square_Sum(1000001) == 1.333339333342e+18", "assert square_Sum(False) == 0.0", "assert square_Sum(True) == 4.0", "assert square_Sum(1000003) == 1.333347333382e+18", "assert square_Sum(2) == 20.0", "assert square_Sum(3) == 56.0", "assert square_Sum(92) == 1055240.0", "assert square_Sum(9) == 1140.0", "assert square_Sum(17) == 7140.0", "assert square_Sum(10001) == 1333933420004.0", "assert square_Sum(101) == 1394204.0", "assert square_Sum(4) == 120.0", "assert square_Sum(93) == 1089836.0", "assert square_Sum(99) == 1313400.0", "assert square_Sum(8) == 816.0", "assert square_Sum(999999) == 1.333331333334e+18", "assert square_Sum(87) == 893200.0", "assert square_Sum(102) == 1435820.0", "assert square_Sum(9999) == 1333133340000.0", "assert square_Sum(94) == 1125180.0", "assert square_Sum(103) == 1478256.0", "assert square_Sum(86) == 862924.0", "assert square_Sum(98) == 1274196.0", "assert square_Sum(105) == 1565620.0", "assert square_Sum(88) == 924176.0", "assert square_Sum(49) == 161700.0", "assert square_Sum(85) == 833340.0", "assert square_Sum(50) == 171700.0", "assert square_Sum(1000004) == 1.333351333414e+18", "assert square_Sum(9998) == 1332733419996.0", "assert square_Sum(104) == 1521520.0", "assert square_Sum(1000005) == 1.333355333454e+18", "assert square_Sum(51) == 182104.0", "assert square_Sum(10002) == 1334333580020.0", "assert square_Sum(5) == 220.0", "assert square_Sum(7) == 560.0", "assert square_Sum(106) == 1610564.0", "assert square_Sum(52) == 192920.0", "assert square_Sum(84) == 804440.0", "assert square_Sum(35) == 59640.0", "assert square_Sum(97) == 1235780.0", "assert square_Sum(11) == 2024.0", "assert square_Sum(72) == 508080.0", "assert square_Sum(999998) == 1.3333273333419999e+18", "assert square_Sum(16) == 5984.0", "assert square_Sum(12) == 2600.0", "assert square_Sum(1000006) == 1.3333593335020004e+18", "assert square_Sum(96) == 1198144.0", "assert square_Sum(48) == 152096.0", "assert square_Sum(47) == 142880.0", "assert square_Sum(6) == 364.0", "assert square_Sum(13) == 3276.0", "assert square_Sum(999997) == 1.3333233333579999e+18", "assert square_Sum(95) == 1161280.0", "assert square_Sum(36) == 64824.0", "assert square_Sum(999996) == 1.3333193333819999e+18", "assert square_Sum(14) == 4060.0", "assert square_Sum(15) == 4960.0", "assert square_Sum(1000007) == 1.3333633335580006e+18", "assert square_Sum(9997) == 1332333579980.0", "assert square_Sum(37) == 70300.0", "assert square_Sum(1000008) == 1.333367333622001e+18", "assert square_Sum(18) == 8436.0", "assert square_Sum(999995) == 1.3333153334139999e+18", "assert square_Sum(81) == 721764.0", "assert square_Sum(46) == 134044.0", "assert square_Sum(38) == 76076.0", "assert square_Sum(19) == 9880.0", "assert square_Sum(82) == 748660.0", "assert square_Sum(107) == 1656360.0", "assert square_Sum(83) == 776216.0", "assert square_Sum(39) == 82160.0", "assert square_Sum(45) == 125580.0", "assert square_Sum(53) == 204156.0", "assert square_Sum(999994) == 1.3333113334539999e+18", "assert square_Sum(44) == 117480.0", "assert square_Sum(54) == 215820.0", "assert square_Sum(55) == 227920.0", "assert square_Sum(108) == 1703016.0", "assert square_Sum(10003) == 1334733820056.0", "assert square_Sum(25) == 22100.0", "assert square_Sum(10004) == 1335134140120.0", "assert square_Sum(71) == 487344.0", "assert square_Sum(999993) == 1.3333073335019996e+18", "assert square_Sum(28) == 30856.0", "assert square_Sum(73) == 529396.0", "assert square_Sum(20) == 11480.0", "assert square_Sum(40) == 88560.0", "assert square_Sum(26) == 24804.0", "assert square_Sum(27) == 27720.0", "assert square_Sum(1000009) == 1.3333713336940012e+18", "assert square_Sum(56) == 240464.0", "assert square_Sum(43) == 109736.0", "assert square_Sum(10005) == 1335534540220.0", "assert square_Sum(9996) == 1331933819944.0", "assert square_Sum(109) == 1750540.0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the list of maximum length in a list of lists.\nassert max_length([[0], [1, 3], [5, 7], [9, 11], [13, 15, 17]])==(3, [13, 15, 17])\nYour code should pass the test:\nassert max_length([[0], [1, 3], [5, 7], [9, 11], [13, 15, 17]])==(3, [13, 15, 17])", "test_list": [ "assert max_length([[0], [1, 3], [5, 7], [9, 11], [13, 15, 17]])==(3, [13, 15, 17])", "assert max_length([[1], [5, 7], [10, 12, 14,15]])==(4, [10, 12, 14,15])", "assert max_length([[5], [15,20,25]])==(3, [15,20,25])", "assert max_length([[1, 3, 5, 7, 9, 11], [2, 4, 6], [10, 12, 14, 16, 18, 20], [13, 15, 17, 19, 21]]) == (6, [1, 3, 5, 7, 9, 11])", "assert max_length([[], [1, 2, 3], [4, 5]]) == (3, [1, 2, 3])", "assert max_length([[[1], [2]], [[3], [4], [5]], [[6], [7], [8], [9]], [[10], [11], [12], [13], [14]]]) == (5, [[10], [11], [12], [13], [14]])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8, 9], [10]]) == (4, [6, 7, 8, 9])", "assert max_length([[1, 2, 3], [4, 5, 6, 7], [8, 9, 10], [11, 12, 13, 14, 15], [16]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3, 4, 5], [6, 7, 8, 9], [10, 11], [12, 13, 14, 15, 16, 17, 18], [19, 20], [21]]) == (7, [12, 13, 14, 15, 16, 17, 18])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[]]) == (0, [])", "assert max_length([[[[[1, 2, 3]]]]]) == (1, [[[[1, 2, 3]]]])", "assert max_length([[1, 2, 3], [8, 8, 9], [4, 5, 6, 7], [8, 8, 9], [11, 12, 13, 14, 15], [16], [8, 8, 9], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [8, 9, 10], [11, 12, 13, 14, 15], [16]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21], [9, 10, 11, 12]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 3, 5, 7, 9, 11], [10, 12, 14, 16, 18, 20], [13, 15, 17, 19, 21], [10, 12, 14, 16, 18, 20]]) == (6, [1, 3, 5, 7, 9, 11])", "assert max_length([[1, 2, 3], [8, 9, 5], [11, 12, 13, 14, 15], [16], [11, 12, 13, 14, 15]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2], [4, 5]]) == (2, [1, 2])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [11, 9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [21], [11, 9, 10, 11, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [8, 9], [4, 5, 6, 7], [8, 9], [11, 12, 13, 14, 15], [16], [8, 9], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21], [9, 10, 11, 12], [9, 10, 11, 12], [4, 5]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [1, 2, 3], [4, 5], [6, 7, 8], [11, 9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [21], [11, 9, 10, 11, 12], [1, 2, 3]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [8, 9, 5], [11, 12, 13, 14, 15], [16], [11, 12, 13, 14, 15], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[], [2, 3], [4, 5]]) == (2, [2, 3])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [1, 21], [4, 5]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[6, 7, 15, 8], [1, 2, 3], [4, 5], [6, 7, 15, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [8, 9], [4, 5, 6, 7], [8, 9], [11, 12, 13, 14, 15], [16], [8, 9], [8, 9]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[], []]) == (0, [])", "assert max_length([[1, 2], [4, 5], [4, 5]]) == (2, [1, 2])", "assert max_length([[1, 2, 3], [4, 5], [9, 10, 11, 10, 12], [6, 7, 8], [9, 10, 11, 10, 12], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 10, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [4, 5], [9, 7, 8], [9, 10, 11, 12], [9, 7, 8], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [3, 4, 5], [9, 10, 11, 12], [3, 4, 5], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[], [4, 5]]) == (2, [4, 5])", "assert max_length([['jb', 'Tc', 'FvKBQv', 'D', 'ZCJwzk', '', 'PvJQ', 'HPu', 'SquxtF'], [], [4, 5]]) == (9, ['jb', 'Tc', 'FvKBQv', 'D', 'ZCJwzk', '', 'PvJQ', 'HPu', 'SquxtF'])", "assert max_length([[1, 2, 3], [3, 4, 5], [13, 14, 15, 16, 17, 16, 19, 20], [9, 10, 11, 12], [3, 4, 5], [13, 14, 15, 16, 17, 16, 19, 20], [21], [9, 10, 11, 12], [13, 14, 15, 16, 17, 16, 19, 20], [13, 14, 15, 16, 17, 16, 19, 20]]) == (8, [13, 14, 15, 16, 17, 16, 19, 20])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 7, 20], [13, 14, 15, 16, 17, 18, 7, 20], [21]]) == (8, [13, 14, 15, 16, 17, 18, 7, 20])", "assert max_length([[4, 5], [6, 7, 8], [11, 9, 10, 11, 12], [13, 7, 14, 15, 16, 17, 19, 20], [13, 7, 14, 15, 16, 17, 19, 20], [21], [11, 9, 10, 11, 12]]) == (8, [13, 7, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [4, 5], [10], [6, 7, 8, 9]]) == (4, [6, 7, 8, 9])", "assert max_length([[1, 12, 3], [4, 5], [10], [1, 12, 3], [6, 7, 8, 9]]) == (4, [6, 7, 8, 9])", "assert max_length([[False, False, False], [2, 3]]) == (3, [False, False, False])", "assert max_length([[1, 2, 3], [4, 5], [10], [6, 7, 8, 9], [6, 7, 8, 9]]) == (4, [6, 7, 8, 9])", "assert max_length([[1, 3, 5, 7, 9, 11], [8, 4, 6, 2], [8, 4, 6, 2], [9, 12, 14, 16, 18, 20], [13, 15, 17, 19, 21]]) == (6, [1, 3, 5, 7, 9, 11])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8, 9], [10], [1, 2, 3]]) == (4, [6, 7, 8, 9])", "assert max_length([[13, 4, 5], [], [13, 4, 5]]) == (3, [13, 4, 5])", "assert max_length([[False, False, False]]) == (3, [False, False, False])", "assert max_length([[1, 2, 3], [9, 10, 11, 10, 12], [6, 7, 8], [9, 10, 11, 10, 12], [13, 14, 15, 16, 17, 19, 20], [21]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [4, 5, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [1, 21], [4, 5, 5], [13, 14, 15, 16, 17, 18, 19, 20]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [4, 5], [13, 14, 16, 17, 18, 19, 20], [6, 7, 8], [9, 10, 11, 12], [13, 14, 16, 17, 18, 19, 20], [21], [9, 10, 11, 12]]) == (7, [13, 14, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [4, 5], [10], [6, 7, 7, 8, 9], [4, 5]]) == (5, [6, 7, 7, 8, 9])", "assert max_length([[1, 2, 3], [8, 9, 5], [11, 12, 13, 14, 15], [16], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[6, 7, 15, 8], [1, 2, 3], [4, 5], [6, 7, 15, 8], [13, 14, 15, 16, 17, 18, 19, 20], [21]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[6, 7, 15, 8], [1, 2, 3], [1, 2, 3], [4, 5], [6, 7, 15, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21], [21]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [10, 10, 11, 10, 12], [6, 7, 8], [13, 14, 15, 16, 17, 19, 20], [21], [10, 10, 11, 10, 12], [10, 10, 11, 10, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3, 2], [1, 2, 3, 2], [4, 5], [10], [6, 7, 7, 8, 9], [4, 5], [4, 5]]) == (5, [6, 7, 7, 8, 9])", "assert max_length([[1, 3, 2, 3], [4, 5], [9, 10, 11, 11], [6, 7, 8], [9, 10, 11, 11], [13, 14, 15, 16, 17, 18, 19, 20], [1, 3, 2, 3], [21], [9, 10, 11, 11]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([['F', 'PvJQ', 'CbYVLljg'], [4, 5]]) == (3, ['F', 'PvJQ', 'CbYVLljg'])", "assert max_length([[2, 3], [6, 7, 8], [11, 9, 10, 11, 12], [21], [2, 3], [11, 9, 10, 11, 12]]) == (5, [11, 9, 10, 11, 12])", "assert max_length([[], [2, 19], [4, 5]]) == (2, [2, 19])", "assert max_length([[1, 2, 3], [3, 4, 5], [9, 10, 11, 12], [3, 4, 5], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [4, 5, 6, 7], [8, 9, 10], [], [11, 12, 13, 14, 15], [], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3, 4, 5], [6, 7, 8, 9], [12, 13, 14, 15, 16, 17, 18], [19, 20], [21]]) == (7, [12, 13, 14, 15, 16, 17, 18])", "assert max_length([[1, 2, 3], [4, 5], [9, 10, 11, 10, 12], [6, 7, 8], [9, 10, 11, 10, 12], [13, 14, 15, 16, 17, 19, 21, 20], [21, 21], [9, 10, 11, 10, 12]]) == (8, [13, 14, 15, 16, 17, 19, 21, 20])", "assert max_length([[1, 2, 3], [3, 4, 5], [9, 10, 11, 12], [3, 4, 5], [13, 14, 15, 16, 17, 19, 20], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 8, 2, 3], [4, 5, 6, 7], [8, 9, 10], [], [11, 12, 13, 14, 15], [], [1, 8, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[[1], [2]], [[3], [4], [5]], [[6], [7], [8], [9]]]) == (4, [[6], [7], [8], [9]])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8, 9], [6, 7, 8, 9]]) == (4, [6, 7, 8, 9])", "assert max_length([[1, 2, 3], [3, 4, 5], [21], [9, 10, 11, 12], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 12, 3], [4, 5], [10], [1, 12, 3], [6, 7, 8, 9], [1, 12, 3]]) == (4, [6, 7, 8, 9])", "assert max_length([[1, 2, 3], [4, 5], [9, 10, 11, 10, 12], [6, 7, 8], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 10, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [8, 9, 5], [11, 12, 13, 14, 15], [16], [1, 2, 3], [8, 9, 5]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [11, 9, 10, 11, 12], [13, 8, 14, 15, 16, 17, 19, 20], [21], [11, 9, 10, 11, 12]]) == (8, [13, 8, 14, 15, 16, 17, 19, 20])", "assert max_length([[13, 14, 15, 16, 17, 18, 19, 20, 13], [1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20, 13], [21]]) == (9, [13, 14, 15, 16, 17, 18, 19, 20, 13])", "assert max_length([[1, 2], [1, 2], [4, 5]]) == (2, [1, 2])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [1, 21], [4, 5], [13, 14, 15, 16, 17, 18, 19, 20]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[False, True, False, False], [False, True, False, False], [False, True, False, False]]) == (4, [False, True, False, False])", "assert max_length([[4, 5], [10], [1, 12, 3], [6, 7, 8, 9], [1, 12, 3]]) == (4, [6, 7, 8, 9])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 2, 15, 16, 17, 18, 7, 20], [21]]) == (8, [13, 2, 15, 16, 17, 18, 7, 20])", "assert max_length([[1, 2, 3], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 2, 3], [8, 9, 5], [11, 12, 13, 14, 15], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [8, 9, 5], [11, 12, 13, 14, 15], [16, 16], [16, 16], [11, 12, 13, 14, 15], [1, 2, 3]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [4, 5, 4], [4, 5, 4], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [1, 21], [4, 5, 4], [13, 14, 15, 16, 17, 18, 19, 20], [13, 14, 15, 16, 17, 18, 19, 20], [4, 5, 4]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[], [1, 19], [4, 5]]) == (2, [1, 19])", "assert max_length([[5, 6, 7, 15, 8], [1, 2, 3], [4, 5], [5, 6, 7, 15, 8], [5, 6, 7, 15, 8], [13, 14, 15, 16, 17, 18, 19, 20], [21]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[True, False, False], [True, False, False], [True, False, False]]) == (3, [True, False, False])", "assert max_length([[6, 7, 15, 8], [1, 2, 3], [1, 2, 3], [4, 5], [6, 7, 15, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21], [21], [6, 7, 15, 8]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [8, 8, 9], [4, 5, 6, 7], [8, 8, 9], [13, 11, 12, 13, 14, 15], [8, 8, 9], [1, 2, 3]]) == (6, [13, 11, 12, 13, 14, 15])", "assert max_length([[6, 7, 8, 8], [13, 14, 15, 16, 17, 19, 20, 19], [1, 2, 3], [4, 5], [9, 10, 11, 10, 12], [6, 7, 8, 8], [9, 10, 11, 10, 12], [13, 14, 15, 16, 17, 19, 20, 19], [21, 21], [21, 21], [9, 10, 11, 10, 12]]) == (8, [13, 14, 15, 16, 17, 19, 20, 19])", "assert max_length([[], [False, False, True], []]) == (3, [False, False, True])", "assert max_length([['F', 'CbYVLljg', 'PvJQ', 'CbYVLljg'], ['F', 'CbYVLljg', 'PvJQ', 'CbYVLljg']]) == (4, ['F', 'CbYVLljg', 'PvJQ', 'CbYVLljg'])", "assert max_length([[1, 2, 3], [11, 12, 13, 14, 15, 13], [16], [8, 9, 5, 8], [11, 12, 13, 14, 15, 13]]) == (6, [11, 12, 13, 14, 15, 13])", "assert max_length([[1, 2, 3], [7, 4, 5], [13, 14, 16, 17, 18, 19, 20], [6, 7, 8], [13, 14, 16, 17, 18, 19, 20], [21], [9, 10, 11, 12], [9, 10, 11, 12]]) == (7, [13, 14, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [3, 4, 5], [9, 10, 11, 12, 9], [3, 4, 5], [13, 14, 15, 16, 17, 19, 20], [9, 10, 11, 12, 9], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 3, 2, 3], [4, 5], [10, 9, 10, 11, 11], [6, 7, 8], [10, 9, 10, 11, 11], [10, 9, 10, 11, 11], [13, 14, 15, 16, 17, 18, 19, 20], [1, 3, 2, 3], [21], [10, 9, 10, 11, 11]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[6, 7, 15, 8], [1, 2, 3], [4, 5], [6, 7, 15, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21], [21]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 2, 3], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 19, 20], [21], [1, 2, 3]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[11, 12, 13, 14, 15, 13], [16], [8, 9, 5, 8], [11, 12, 13, 14, 15, 13]]) == (6, [11, 12, 13, 14, 15, 13])", "assert max_length([[2, 3], [6, 7, 8], [11, 9, 10, 11, 12], [21], [6, 7, 8], [2, 3], [11, 9, 10, 11, 12]]) == (5, [11, 9, 10, 11, 12])", "assert max_length([[1, 3, 2, 3], [4, 5], [10, 9, 10, 11, 11], [6, 7, 8], [10, 9, 10, 11, 11], [10, 9, 10, 11, 11], [13, 14, 15, 16, 17, 18, 19, 20, 14], [1, 3, 2, 3], [10, 9, 10, 11, 11]]) == (9, [13, 14, 15, 16, 17, 18, 19, 20, 14])", "assert max_length([[1, 13], [8, 9, 5], [1, 13], [1, 13], [11, 12, 13, 14, 15], [16], [1, 13], [16]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[1, 2, 3], [4, 5], [6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16, 17, 18, 7, 20], [13, 14, 15, 16, 17, 18, 7, 20], [21], [13, 14, 15, 16, 17, 18, 7, 20]]) == (8, [13, 14, 15, 16, 17, 18, 7, 20])", "assert max_length([[1], [4, 5, 5], [4, 5, 5]]) == (3, [4, 5, 5])", "assert max_length([[1], [4, 5, 5, 5]]) == (4, [4, 5, 5, 5])", "assert max_length([[1, 2, 3], [3, 4, 5], [9, 10, 12, 9], [3, 4, 5], [13, 14, 15, 16, 17, 19, 20], [9, 10, 12, 9], [9, 10, 12, 9], [13, 14, 15, 16, 17, 19, 20], [13, 14, 15, 16, 17, 19, 20]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[1, 3, 2, 3], [4, 5], [10, 9, 10, 11, 11], [6, 7, 8, 8], [10, 9, 10, 11, 11], [10, 9, 10, 11, 11], [13, 14, 15, 16, 17, 18, 19, 20], [1, 3, 2, 3], [21], [10, 9, 10, 11, 11]]) == (8, [13, 14, 15, 16, 17, 18, 19, 20])", "assert max_length([[1, 13], [8, 9, 5], [1, 13], [1, 13], [11, 12, 13, 14, 15], [16], [1, 13], [16], [11, 12, 13, 14, 15]]) == (5, [11, 12, 13, 14, 15])", "assert max_length([[5, 5, 5, 5], [1], [5, 5, 5, 5]]) == (4, [5, 5, 5, 5])", "assert max_length([[1, 2, 3], [19, 9, 10, 9], [19, 9, 10, 9], [11, 12, 13, 14, 15, 12], [4, 5, 6, 7], [19, 9, 10, 9], [], [11, 12, 13, 14, 15, 12], []]) == (6, [11, 12, 13, 14, 15, 12])", "assert max_length([[1, 2, 3], [4, 5, 5], [6, 7, 8], [9, 10, 11, 12], [4, 5, 5], [13, 14, 15, 16, 17, 19, 20], [21], [9, 10, 11, 12]]) == (7, [13, 14, 15, 16, 17, 19, 20])", "assert max_length([[4, 5], [10], [1, 12, 7], [6, 7, 8, 9], [1, 12, 7]]) == (4, [6, 7, 8, 9])", "assert max_length([[14, 3, 5, 7, 9, 11], [14, 3, 5, 7, 9, 11], [8, 4, 6, 2], [9, 12, 14, 16, 18, 20]]) == (6, [14, 3, 5, 7, 9, 11])" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find quotient of two numbers (rounded down to the nearest integer).\nassert find(10,3) == 3\nYour code should pass the test:\nassert find(10,3) == 3", "test_list": [ "assert find(10,3) == 3", "assert find(4,2) == 2", "assert find(20,5) == 4", "assert find(0, 5) == 0", "assert find(0, 1) == 0", "assert find(-1, 1) == -1", "assert find(1, 1) == 1", "assert find(0, 2) == 0", "assert find(5, 1) == 5", "assert find(6, 1) == 6", "assert find(-1, -1) == 1", "assert find(0, -1) == 0", "assert find(2, 1) == 2", "assert find(5, 5) == 1", "assert find(2, 2) == 1", "assert find(6, 6) == 1", "assert find(2, 5) == 0", "assert find(1, 6) == 0", "assert find(2, 4) == 0", "assert find(1, -1) == -1", "assert find(6, 5) == 1", "assert find(6, 2) == 3", "assert find(7, 7) == 1", "assert find(-1, 2) == -1", "assert find(5, 6) == 0", "assert find(-2, 2) == -1", "assert find(7, 4) == 1", "assert find(1, 2) == 0", "assert find(1, 7) == 0", "assert find(0, 4) == 0", "assert find(4, -1) == -4", "assert find(2, -2) == -1", "assert find(7, 6) == 1", "assert find(0, -2) == 0", "assert find(7, -1) == -7", "assert find(-2, 3) == -1", "assert find(3, 3) == 1", "assert find(5, -1) == -5", "assert find(-2, 6) == -1", "assert find(-2, -2) == 1", "assert find(7, 5) == 1", "assert find(6, -2) == -3", "assert find(-2, -1) == 2", "assert find(6, 4) == 1", "assert find(6, -1) == -6", "assert find(3, 5) == 0", "assert find(0, 7) == 0", "assert find(4, 5) == 0", "assert find(5, -2) == -3", "assert find(0, 6) == 0", "assert find(1, 4) == 0", "assert find(3, -1) == -3", "assert find(2, 3) == 0", "assert find(4, 4) == 1", "assert find(2, 6) == 0", "assert find(7, 1) == 7", "assert find(6, 7) == 0", "assert find(3, 4) == 0", "assert find(3, -2) == -2", "assert find(1, 5) == 0", "assert find(-1, 3) == -1", "assert find(3, 1) == 3", "assert find(-2, 1) == -2", "assert find(-2, 7) == -1", "assert find(2, -1) == -2", "assert find(5, 4) == 1", "assert find(0, 3) == 0", "assert find(-3, 1) == -3", "assert find(41, 41) == 1", "assert find(-2, 4) == -1", "assert find(4, 2) == 2", "assert find(5, 7) == 0", "assert find(5, 3) == 1", "assert find(-2, -3) == 0", "assert find(-1, 7) == -1", "assert find(-3, -3) == 1", "assert find(8, 4) == 2", "assert find(-3, -2) == 1", "assert find(4, 41) == 0", "assert find(-4, -2) == 2", "assert find(-4, 3) == -2", "assert find(4, -2) == -2", "assert find(8, -2) == -4", "assert find(-1, 6) == -1", "assert find(41, -1) == -41", "assert find(40, 41) == 0", "assert find(5, 41) == 0", "assert find(-4, 4) == -1", "assert find(-4, -4) == 1", "assert find(40, 5) == 8", "assert find(0, 8) == 0", "assert find(1, -2) == -1", "assert find(1, 41) == 0", "assert find(-3, 6) == -1", "assert find(8, 2) == 4", "assert find(8, 8) == 1", "assert find(-3, 7) == -1", "assert find(39, 8) == 4", "assert find(2, 8) == 0", "assert find(4, 6) == 0", "assert find(39, 3) == 13", "assert find(-3, -4) == 0", "assert find(41, 4) == 10", "assert find(41, -3) == -14" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the third side of a right angled triangle.\nassert otherside_rightangle(7,8)==10.63014581273465\nYour code should pass the test:\nassert math.isclose(otherside_rightangle(7,8), 10.63014581273465, rel_tol=0.001)", "test_list": [ "assert math.isclose(otherside_rightangle(7,8), 10.63014581273465, rel_tol=0.001)", "assert math.isclose(otherside_rightangle(3,4), 5, rel_tol=0.001)", "assert math.isclose(otherside_rightangle(7,15), 16.55294535724685, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum value in a given heterogeneous list.\nassert max_val(['Python', 3, 2, 4, 5, 'version'])==5\nYour code should pass the test:\nassert max_val(['Python', 3, 2, 4, 5, 'version'])==5", "test_list": [ "assert max_val(['Python', 3, 2, 4, 5, 'version'])==5", "assert max_val(['Python', 15, 20, 25])==25", "assert max_val(['Python', 30, 20, 40, 50, 'version'])==50", "assert max_val([1, '2', True, 3.14, ['a', 'b'], [5, 6, 7], {'8': 'eight', '9': 'nine'}, 'Python', 10, 11, 12]) == 12", "assert max_val(['Python', 3.14, 5, 'version', 10, 7.5, 2, '3.14']) == 10", "assert max_val([1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]]]) == 2", "assert max_val([1, 2, 3]) == 3", "assert max_val([4, 5, 6]) == 6", "assert max_val([7, 8, 9]) == 9", "assert max_val([25, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}]) == 25", "assert max_val([1, 2, 3, ['Python', 4, 5, [6, 7, [8, 9, [10]]]], 'version', 11, 12, 13]) == 13", "assert max_val([7, 9]) == 9", "assert max_val([3, 1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]]]) == 3", "assert max_val([1, 3, 30, 3]) == 30", "assert max_val([3, 1, 2, 10, [3, 4, [5, 6, [7, 8, [9, 10]]]]]) == 10", "assert max_val([3, 1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]], 3, 2]) == 3", "assert max_val([1, 3, 30]) == 30", "assert max_val([3, 1, [3, 4], 2, [3, 4], 5, 3, 2]) == 5", "assert max_val([1, [3, 4, [5, 6, [7, 8, [9, 10]]]], 1]) == 1", "assert max_val([1, 13, [3, 4, [5, 6, [7, 8, [9, 10]]]], 1]) == 13", "assert max_val([1, 3]) == 3", "assert max_val([1, 3, 2, 30, 3]) == 30", "assert max_val([1, 2, 11, 1]) == 11", "assert max_val([1]) == 1", "assert max_val([25, {'y': [26, 27], 'yy': [26, 27]}, {'y': [26, 27], 'yy': [26, 27]}]) == 25", "assert max_val([9, 7, 8, 9]) == 9", "assert max_val([13, 7, 8, 9]) == 13", "assert max_val([25, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}, 25, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}]) == 25", "assert max_val([0]) == 0", "assert max_val([26, 9]) == 26", "assert max_val([4, 5, 6, 6]) == 6", "assert max_val([1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]], 2]) == 2", "assert max_val([1, 2, 3, ['Python', 4, 5, [6, 7, [8, 9, [10]]]], 'version', 11, 12, 'version']) == 12", "assert max_val([4, 7, 8, 9]) == 9", "assert max_val([25, {'y': [26], 'yy': [26]}, {'y': [26], 'yy': [26]}]) == 25", "assert max_val([4, 7, 8, 8, 8]) == 8", "assert max_val([1, 13, [3, 4, [5, 6, [7, 8, [9, 10]]]], 12, 1]) == 13", "assert max_val([1, 12, [3, 4, [5, 6, [7, 8, [9, 10]]]], 12, 1]) == 12", "assert max_val([1, 1, [3, 4, [5, 6, [7, 8, [9, 10]]]], 2, [3, 4, [5, 6, [7, 8, [9, 10]]]]]) == 2", "assert max_val([25, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}, 25]) == 25", "assert max_val([25, {'y': [26, 27], 'yy': [26, 27]}, {'y': [26, 27], 'yy': [26, 27]}, {'y': [26, 27], 'yy': [26, 27]}, 25]) == 25", "assert max_val([1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]], 2, 2, 2]) == 2", "assert max_val([9, 7, 8, 9, 8]) == 9", "assert max_val([0, 0]) == 0", "assert max_val([1, 2]) == 2", "assert max_val([9]) == 9", "assert max_val([1, [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]], [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]], 1]) == 1", "assert max_val([0, 1, 13, [3, 4, [5, 6, [7, 8, [9, 10]]]], 1]) == 13", "assert max_val([29]) == 29", "assert max_val([13, 3, 30]) == 30", "assert max_val([13]) == 13", "assert max_val([4, 4, 7, 8, 9, 8]) == 9", "assert max_val([0, 1]) == 1", "assert max_val([1, 3, 30, 3, 1]) == 30", "assert max_val([[3, 4, [5, 6, [7, 8, [9, 10]]]], 1]) == 1", "assert max_val([3, 1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]], 3, 2, 3]) == 3", "assert max_val([13, 3, 30, 30]) == 30", "assert max_val([1, 2, 3, ['Python', 4, 5, [6, 7, [8, 9, [10]]]], 'version', 'z', 11, '', 12, 'y']) == 12", "assert max_val([1, '2', 2, 3, ['Python', 5, [6, 7, [8, 9, [10]]]], 'version', 'z', 11, '', 12, 'y']) == 12", "assert max_val([1, 1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]]]) == 2", "assert max_val([0, 1, 0]) == 1", "assert max_val([8, 13, 7, 8, 9]) == 13", "assert max_val([26, 9, 26]) == 26", "assert max_val([1, 1]) == 1", "assert max_val([1, 3, 2, 30]) == 30", "assert max_val([3, 1, 2, 10, [3, 4, [5, 6, [7, 8, [9, 10]]]], 1]) == 10", "assert max_val([26, 28, 26]) == 28", "assert max_val([13, 3, 3, 30]) == 30", "assert max_val([1, [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]], [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]], 1, [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]]]) == 1", "assert max_val([3, 30, 31, 30]) == 31", "assert max_val([1, [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]], 1, [3, 4, [5, 6, [7, 8, [9, 10]]], [5, 6, [7, 8, [9, 10]]]]]) == 1", "assert max_val([12, [3, 4, [5, 6, [7, 8, [9, 10]]]], 12, 1]) == 12", "assert max_val([25, {'y': [27], 'yy': [27], 'Pythonyy': [27]}, {'y': [27], 'yy': [27], 'Pythonyy': [27]}]) == 25", "assert max_val([3, 26, 2, 12, 2]) == 26", "assert max_val([3, 1, 2, [27, 4, [5, 6, [7, 8, [9, 10]]]], 3]) == 3", "assert max_val([25, 24, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}, 25, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}]) == 25", "assert max_val([25, {'y': [26]}, {'y': [26]}]) == 25", "assert max_val([2]) == 2", "assert max_val([29, 9, 9, 9]) == 29", "assert max_val([6, 7, 8, 9, 8]) == 9", "assert max_val(['Python', 3.14, 5, 'version', 10, 7.5, '3.14']) == 10", "assert max_val([3, 30, 31, 4]) == 31", "assert max_val([4, 5, 6, 9]) == 9", "assert max_val([7]) == 7", "assert max_val([0, 2, 1, 0]) == 2", "assert max_val([[3, 4, 5, [5, 6, [7, 8, [9, 10]]]], 1]) == 1", "assert max_val([1, 13, [3, 4, [5, 6, [7, 8, [9, 10]]]], 1, 1]) == 13", "assert max_val([3, 1, [3, 4], 2, [3, 4], 5, 10, 2, 3]) == 10", "assert max_val([25, {'y': [26]}, {'y': [26]}, 25]) == 25", "assert max_val([8, 9]) == 9", "assert max_val(['Python', 7.5, 5, 'version', 10, 7.5, 2, '3.14', 'version']) == 10", "assert max_val([1, [3, 4, [5, 6, [7, 8, [9, 10]]]], 12, 1]) == 12", "assert max_val([25, {'y': [26, 27, 28], 'z': {'a': 29, 'b': 30}}, 25, 25]) == 25", "assert max_val([4, 4, 7, 6, 9, 8]) == 9", "assert max_val([26, 28, 27]) == 28", "assert max_val([8, 13, 12, 7, 8, 9]) == 13", "assert max_val([0, 1, [3, 4, [5, 6, [7, 8, [9, 10]]]], 1, 1]) == 1", "assert max_val([6, 7, 5, 8, 9, 8, 6]) == 9", "assert max_val([25, {'y': [26, 27, 27, 28], 'z': {'a': 29, 'b': 30}}, 25, 25]) == 25", "assert max_val([25, {'y': [26, 27, 28, 28], 'z': {'a': 29, 'b': 30}}]) == 25", "assert max_val(['3.14', False, 7.5]) == False", "assert max_val([9, 8, 8, 9, 8]) == 9", "assert max_val([4, 4]) == 4", "assert max_val([25, 25, 25]) == 25", "assert max_val([3, 1, 2, 9, [3, 4, [5, 6, [7, 8, [9, 10]]]]]) == 9", "assert max_val([3, 1, 2, [3, 4, [5, 6, [7, 8, [9, 10]]]], 3, 2, 3, 2]) == 3", "assert max_val([1, 10, 9, 9, 9, 9]) == 10", "assert max_val([3, 6, 30, 31, 30, 30]) == 31", "assert max_val(['Python', 3.14, 5, 6, 'version', 10, 7.5, '3.14', 10]) == 10", "assert max_val([1, 1, [3, 4, [5, 6, [7, 8, [9, 10]]], 4], 2, [3, 4, [5, 6, [7, 8, [9, 10]]], 4], 1]) == 2", "assert max_val([3, 30, 0, 31]) == 31" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count inversions in an array.\nassert get_Inv_Count([1,20,6,4,5]) == 5\nYour code should pass the test:\nassert get_Inv_Count([1,20,6,4,5]) == 5", "test_list": [ "assert get_Inv_Count([1,20,6,4,5]) == 5", "assert get_Inv_Count([1,2,1]) == 1", "assert get_Inv_Count([1,2,5,6,1]) == 3", "assert get_Inv_Count([10, 9, 8, 7, 6, 5, 4, 3, 2, 1]) == 45", "assert get_Inv_Count([100, 90, 80, 70, 60, 50, 40, 30, 20, 10]) == 45", "assert get_Inv_Count([1000, 999, 998, 997, 996, 995, 994, 993, 992, 991]) == 45", "assert get_Inv_Count([12, 93, 45, 7, 23, 56, 78, 15, 99]) == 13", "assert get_Inv_Count([5, 23, 17, 8, 14, 36, 42, 29, 11, 55]) == 13", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96]) == 42", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 74, 2, 48, 19, 96]) == 42", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96]) == 51", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96, 73]) == 54", "assert get_Inv_Count([33, 77, 63, 91, 28, 2, 4, 10, 50, 73, 2, 48, 19, 96]) == 47", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 3, 48, 19, 96]) == 42", "assert get_Inv_Count([73, 33, 77, 63, 1000, 28, 4, 10, 50, 73, 2, 48, 19, 96, 73]) == 55", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 5, 4, 3, 2, 1, 3]) == 61", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 5, 4, 3, 2, 1, 996, 1]) == 64", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 73]) == 53", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 19, 96]) == 49", "assert get_Inv_Count([5, 6, 23, 17, 8, 14, 36, 42, 29, 11, 55]) == 13", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 19, 96]) == 41", "assert get_Inv_Count([1000, 999, 998, 74, 997, 996, 995, 994, 993, 992, 991]) == 48", "assert get_Inv_Count([10, 9, 96, 8, 6, 5, 4, 3, 2, 1, 996, 1, 2]) == 62", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 3, 48, 19, 4]) == 52", "assert get_Inv_Count([10, 9, 1, 96, 8, 7, 6, 5, 4, 3, 2, 2, 996, 1]) == 66", "assert get_Inv_Count([1001, 999, 998, 74, 997, 996, 995, 994, 993, 992, 991]) == 48", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 100, 96]) == 41", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 3, 5, 4, 3, 2, 1, 996, 1]) == 73", "assert get_Inv_Count([1000, 999, 998, 74, 997, 996, 995, 994, 993, 992, 991, 992]) == 56", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 50, 3, 2, 1, 996, 1]) == 48", "assert get_Inv_Count([33, 77, 63, 8, 28, 2, 4, 10, 50, 73, 2, 48, 19, 96]) == 44", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 5, 15, 3, 2, 1, 995, 1, 96]) == 59", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 50, 74, 2, 19, 96]) == 30", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 100, 96, 91]) == 43", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96, 73, 77]) == 56", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 74, 2, 48, 19, 73, 96]) == 45", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 100, 96, 33]) == 50", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 5, 15, 3, 10, 1, 995, 1, 96]) == 52", "assert get_Inv_Count([5, 17, 6, 23, 17, 8, 14, 36, 42, 29, 11, 55]) == 17", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 96, 63]) == 47", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 3, 19, 4, 50]) == 49", "assert get_Inv_Count([50, 73, 33, 77, 63, 1000, 28, 4, 10, 50, 73, 2, 48, 19, 96, 73]) == 62", "assert get_Inv_Count([10, 9, 96, 8, 995, 6, 5, 4, 3, 1000, 1, 996, 1, 2, 4]) == 72", "assert get_Inv_Count([10, 9, 1, 96, 8, 8, 6, 5, 4, 3, 2, 2, 996, 1]) == 65", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 100, 73]) == 44", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 998, 10, 95, 90, 73, 2, 48, 100, 96]) == 53", "assert get_Inv_Count([73, 33, 77, 63, 28, 4, 10, 90, 73, 2, 48, 100, 73]) == 36", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96, 28]) == 50", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 96, 14, 63]) == 57", "assert get_Inv_Count([10, 9, 7, 6, 5, 4, 3, 2, 1]) == 36", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 72, 73, 2, 48, 19, 96, 73]) == 60", "assert get_Inv_Count([10, 9, 8, 7, 6, 5, 4, 3, 9, 0, 2, 1]) == 57", "assert get_Inv_Count([12, 93, 45, 7, 23, 56, 78, 15, 79, 99]) == 14", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 19, 96]) == 36", "assert get_Inv_Count([80, 77, 63, 91, 28, 2, 4, 10, 50, 73, 2, 48, 19, 96]) == 52", "assert get_Inv_Count([33, 40, 77, 91, 28, 4, 10, 50, 73, 3, 48, 19, 50]) == 42", "assert get_Inv_Count([1001, 999, 998, 74, 997, 995, 993, 992, 991, 991]) == 38", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 74, 2, 48, 73, 96]) == 37", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 998, 10, 95, 90, 73, 2, 994, 48, 100, 96, 95]) == 61", "assert get_Inv_Count([73, 77, 63, 91, 28, 4, 998, 10, 95, 90, 73, 2, 48, 100, 96]) == 48", "assert get_Inv_Count([10, 9, 96, 8, 6, 3, 5, 4, 3, 2, 1, 996, 1, 5]) == 67", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 74, 2, 48, 73, 48]) == 43", "assert get_Inv_Count([33, 77, 63, 91, 4, 10, 50, 73, 2, 19, 96]) == 28", "assert get_Inv_Count([33, 77, 63, 91, 4, 10, 50, 73, 2, 19, 96, 91]) == 29", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 19, 96, 90]) == 43", "assert get_Inv_Count([5, 23, 17, 8, 14, 36, 42, 29, 29, 48, 55]) == 9", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 90, 73, 2, 48, 991, 73]) == 44", "assert get_Inv_Count([10, 9, 1, 96, 8, 7, 8, 6, 5, 4, 3, 2, 2, 996, 1, 6]) == 83", "assert get_Inv_Count([33, 77, 63, 91, 4, 10, 50, 74, 2, 48, 73, 48]) == 36", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 3, 48, 19, 63]) == 45", "assert get_Inv_Count([10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 2]) == 53", "assert get_Inv_Count([33, 77, 63, 8, 28, 2, 47, 4, 10, 50, 73, 2, 48, 19, 96]) == 50", "assert get_Inv_Count([33, 77, 63, 8, 64, 28, 2, 47, 4, 10, 50, 73, 2, 48, 19, 96]) == 60", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 997, 10, 95, 90, 73, 2, 48, 100, 96]) == 53", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 73, 3, 19, 4, 50, 28]) == 56", "assert get_Inv_Count([33, 77, 63, 8, 7, 28, 2, 4, 10, 50, 73, 2, 48, 19, 96]) == 51", "assert get_Inv_Count([33, 63, 91, 28, 4, 10, 50, 73, 3, 48, 19, 96]) == 33", "assert get_Inv_Count([80, 77, 63, 91, 28, 2, 4, 10, 50, 73, 2, 48, 19, 12, 96, 77]) == 64", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 74, 2, 48, 73, 96, 48]) == 44", "assert get_Inv_Count([48, 33, 77, 63, 8, 28, 2, 47, 4, 10, 50, 73, 2, 48, 19, 96, 96]) == 59", "assert get_Inv_Count([33, 77, 63, 8, 64, 28, 2, 47, 4, 10, 50, 73, 2, 48, 19, 96, 33]) == 68", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 74, 48, 73, 96]) == 28", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 5, 15, 3, 1, 995, 1, 96]) == 48", "assert get_Inv_Count([1000, 999, 998, 74, 996, 996, 995, 994, 993, 992, 991]) == 47", "assert get_Inv_Count([5, 23, 17, 8, 14, 36, 42, 11, 55]) == 10", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 50, 47, 3, 48, 19, 4]) == 53", "assert get_Inv_Count([10, 9, 96, 8, 6, 4, 3, 2, 1, 996, 79, 1, 2]) == 55", "assert get_Inv_Count([4, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96, 28, 19]) == 61", "assert get_Inv_Count([73, 33, 77, 63, 3, 91, 28, 4, 10, 90, 73, 2, 48, 100, 73]) == 49", "assert get_Inv_Count([33, 77, 63, 8, 64, 28, 2, 47, 4, 10, 51, 73, 2, 48, 19, 96, 33]) == 68", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 96, 14, 63, 50, 73]) == 67", "assert get_Inv_Count([12, 93, 45, 7, 23, 56, 78, 15, 79, 99, 56]) == 18", "assert get_Inv_Count([33, 77, 63, 91, 28, 4, 10, 3, 50, 47, 3, 48, 19, 4]) == 60", "assert get_Inv_Count([1000, 10, 999, 998, 74, 997, 996, 995, 994, 992, 991, 992]) == 47", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 50, 3, 2, 8, 1, 996, 1, 1]) == 65", "assert get_Inv_Count([10, 9, 96, 8, 6, 3, 5, 4, 3, 2, 1, 996, 1, 5, 8]) == 71", "assert get_Inv_Count([33, 77, 63, 28, 4, 10, 50, 73, 3, 19, 4, 50]) == 40", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 50, 3, 2, 1, 996, 1, 7]) == 54", "assert get_Inv_Count([73, 33, 77, 63, 91, 28, 4, 10, 50, 73, 2, 48, 19, 96, 50]) == 57", "assert get_Inv_Count([33, 77, 63, 91, 28, 2, 4, 10, 14, 50, 73, 2, 48, 19, 96]) == 53", "assert get_Inv_Count([10, 9, 96, 8, 7, 6, 5, 3, 2, 1, 995, 1, 96]) == 54", "assert get_Inv_Count([33, 77, 63, 993, 4, 10, 50, 73, 2, 19, 96, 91]) == 31", "assert get_Inv_Count([73, 77, 101, 63, 91, 28, 4, 998, 10, 95, 90, 73, 2, 48, 100, 96]) == 60", "assert get_Inv_Count([33, 77, 63, 29, 4, 10, 50, 73, 3, 19, 4, 50, 50]) == 43", "assert get_Inv_Count([991, 1000, 999, 998, 74, 996, 996, 995, 994, 993, 992, 991]) == 48", "assert get_Inv_Count([100, 90, 80, 70, 60, 15, 50, 40, 30, 20, 20, 10]) == 60", "assert get_Inv_Count([33, 77, 63, 8, 28, 2, 47, 4, 10, 49, 73, 2, 48, 19, 96]) == 50", "assert get_Inv_Count([33, 77, 63, 1, 4, 10, 50, 73, 2, 19, 96, 91]) == 26", "assert get_Inv_Count([33, 76, 63, 91, 28, 4, 50, 74, 2, 19, 96]) == 30" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to flatten a given nested list structure.\nassert flatten_list([0, 10, [20, 30], 40, 50, [60, 70, 80], [90, 100, 110, 120]])==[0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120]\nYour code should pass the test:\nassert flatten_list([0, 10, [20, 30], 40, 50, [60, 70, 80], [90, 100, 110, 120]])==[0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120]", "test_list": [ "assert flatten_list([0, 10, [20, 30], 40, 50, [60, 70, 80], [90, 100, 110, 120]])==[0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120]", "assert flatten_list([[10, 20], [40], [30, 56, 25], [10, 20], [33], [40]])==[10, 20, 40, 30, 56, 25, 10, 20, 33, 40]", "assert flatten_list([[1,2,3], [4,5,6], [10,11,12], [7,8,9]])==[1, 2, 3, 4, 5, 6, 10, 11, 12, 7, 8, 9]", "assert flatten_list([]) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate the maximum aggregate from the list of tuples.\nassert max_aggregate([('Juan Whelan',90),('Sabah Colley',88),('Peter Nichols',7),('Juan Whelan',122),('Sabah Colley',84)])==('Juan Whelan', 212)\nYour code should pass the test:\nassert max_aggregate([('Juan Whelan',90),('Sabah Colley',88),('Peter Nichols',7),('Juan Whelan',122),('Sabah Colley',84)])==('Juan Whelan', 212)", "test_list": [ "assert max_aggregate([('Juan Whelan',90),('Sabah Colley',88),('Peter Nichols',7),('Juan Whelan',122),('Sabah Colley',84)])==('Juan Whelan', 212)", "assert max_aggregate([('Juan Whelan',50),('Sabah Colley',48),('Peter Nichols',37),('Juan Whelan',22),('Sabah Colley',14)])==('Juan Whelan', 72)", "assert max_aggregate([('Juan Whelan',10),('Sabah Colley',20),('Peter Nichols',30),('Juan Whelan',40),('Sabah Colley',50)])==('Sabah Colley', 70)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to identify non-prime numbers.\nassert is_not_prime(2) == False\nYour code should pass the test:\nassert is_not_prime(1) == True", "test_list": [ "assert is_not_prime(1) == True", "assert is_not_prime(2) == False", "assert is_not_prime(10) == True", "assert is_not_prime(35) == True", "assert is_not_prime(37) == False", "assert is_not_prime(True) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the count of all binary sequences of length 2n such that sum of first n bits is same as sum of last n bits.\nassert math.isclose(count_binary_seq(1), 2.0, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(count_binary_seq(1), 2.0, rel_tol=0.001)", "test_list": [ "assert math.isclose(count_binary_seq(1), 2.0, rel_tol=0.001)", "assert math.isclose(count_binary_seq(2), 6.0, rel_tol=0.001)", "assert math.isclose(count_binary_seq(3), 20.0, rel_tol=0.001)", "assert count_binary_seq(4) == 70.0", "assert count_binary_seq(5) == 252.0", "assert count_binary_seq(6) == 924.0", "assert count_binary_seq(10) == 184756.0", "assert count_binary_seq(15) == 155117520.0", "assert count_binary_seq(20) == 137846528820.0", "assert count_binary_seq(50) == 1.0089134454556417e+29", "assert count_binary_seq(100) == 9.054851465610324e+58", "assert count_binary_seq(75) == 9.282606973670874e+43", "assert count_binary_seq(200) == 1.0295250013541446e+119", "assert count_binary_seq(150) == 9.37597027728274e+88", "assert count_binary_seq(1000) == inf", "assert count_binary_seq(1000000) == inf", "assert count_binary_seq(151) == 3.737969607234577e+89", "assert count_binary_seq(1000001) == inf", "assert count_binary_seq(101) == 3.604010187302328e+59", "assert count_binary_seq(102) == 1.4345373882791625e+60", "assert count_binary_seq(True) == 2.0", "assert count_binary_seq(51) == 3.996088548667444e+29", "assert count_binary_seq(14) == 40116600.0", "assert count_binary_seq(9) == 48620.0", "assert count_binary_seq(1001) == inf", "assert count_binary_seq(49) == 2.547761225898085e+28", "assert count_binary_seq(13) == 10400600.0", "assert count_binary_seq(999) == inf", "assert count_binary_seq(21) == 538257874440.0", "assert count_binary_seq(199) == 2.580263161288582e+118", "assert count_binary_seq(22) == 2104098963720.0", "assert count_binary_seq(201) == 4.107855975552358e+119", "assert count_binary_seq(999999) == inf", "assert count_binary_seq(24) == 32247603683100.0", "assert count_binary_seq(53) == 6.272525058612252e+30", "assert count_binary_seq(1002) == inf", "assert count_binary_seq(999998) == inf", "assert count_binary_seq(52) == 1.5830658481259492e+30", "assert count_binary_seq(74) == 2.3362265873332747e+43", "assert count_binary_seq(16) == 601080390.0", "assert count_binary_seq(202) == 1.639075206086732e+120", "assert count_binary_seq(17) == 2333606220.0", "assert count_binary_seq(1000002) == inf", "assert count_binary_seq(18) == 9075135300.0", "assert count_binary_seq(1000003) == inf", "assert count_binary_seq(203) == 6.540152300149035e+120", "assert count_binary_seq(103) == 5.7102944581986025e+60", "assert count_binary_seq(998) == inf", "assert count_binary_seq(25) == 126410606437752.0", "assert count_binary_seq(23) == 8233430727600.0", "assert count_binary_seq(1004) == inf", "assert count_binary_seq(999997) == inf", "assert count_binary_seq(8) == 12870.0", "assert count_binary_seq(19) == 35345263800.0", "assert count_binary_seq(68) == 5.949105755928255e+39", "assert count_binary_seq(198) == 6.466906411793807e+117", "assert count_binary_seq(67) == 1.4982933014930424e+39", "assert count_binary_seq(197) == 1.620819581690092e+117", "assert count_binary_seq(48) == 6.4350670138663e+27", "assert count_binary_seq(204) == 2.6096490060398536e+121", "assert count_binary_seq(152) == 1.4902694618316825e+90", "assert count_binary_seq(1003) == inf", "assert count_binary_seq(11) == 705432.0", "assert count_binary_seq(997) == inf", "assert count_binary_seq(12) == 2704156.0", "assert count_binary_seq(206) == 4.155144572733066e+122", "assert count_binary_seq(73) == 5.880298213015719e+42", "assert count_binary_seq(72) == 1.4802129984487867e+42", "assert count_binary_seq(196) == 4.0623595113606645e+116", "assert count_binary_seq(999996) == inf", "assert count_binary_seq(195) == 1.0181872944075321e+116", "assert count_binary_seq(205) == 1.0413136033856605e+122", "assert count_binary_seq(1005) == inf", "assert count_binary_seq(194) == 2.5520118561628384e+115", "assert count_binary_seq(54) == 2.485778449153744e+31", "assert count_binary_seq(148) == 5.899376589114938e+87", "assert count_binary_seq(996) == inf", "assert count_binary_seq(55) == 9.852721853009381e+31", "assert count_binary_seq(1000004) == inf", "assert count_binary_seq(56) == 3.905900448871579e+32", "assert count_binary_seq(66) == 3.773896661655409e+38", "assert count_binary_seq(26) == 495918532948104.0", "assert count_binary_seq(76) == 3.688614876379741e+44", "assert count_binary_seq(999995) == inf", "assert count_binary_seq(1000005) == inf", "assert count_binary_seq(3) == 20.0", "assert count_binary_seq(149) == 2.351832009351858e+88", "assert count_binary_seq(96) == 3.6097999082737723e+56", "assert count_binary_seq(71) == 3.726410345745197e+41", "assert count_binary_seq(7) == 3432.0", "assert count_binary_seq(207) == 1.658043196655807e+123", "assert count_binary_seq(2) == 6.0", "assert count_binary_seq(95) == 9.07174846058331e+55", "assert count_binary_seq(64) == 2.39511460419281e+37", "assert count_binary_seq(57) == 1.5486552656929425e+33", "assert count_binary_seq(58) == 6.141219157058214e+33", "assert count_binary_seq(995) == inf", "assert count_binary_seq(63) == 6.034934435761404e+36", "assert count_binary_seq(208) == 6.616230063578461e+123", "assert count_binary_seq(97) == 1.4364770769006983e+57", "assert count_binary_seq(69) == 2.3623985175715127e+40", "assert count_binary_seq(153) == 5.941597200766839e+90", "assert count_binary_seq(104) == 2.273136447782905e+61", "assert count_binary_seq(94) == 2.2799367824217297e+55", "assert count_binary_seq(154) == 2.368922520305735e+91", "assert count_binary_seq(90) == 9.101224867283228e+52", "assert count_binary_seq(77) == 1.465865132691172e+45", "assert count_binary_seq(994) == inf", "assert count_binary_seq(91) == 3.6204872548972856e+53", "assert count_binary_seq(79) == 2.3156006494021205e+46", "assert count_binary_seq(27) == 1946939425648112.0", "assert count_binary_seq(1000006) == inf", "assert count_binary_seq(70) == 9.38209696978401e+40", "assert count_binary_seq(98) == 5.716592448890536e+57", "assert count_binary_seq(41) == 4.247845808487917e+23", "assert count_binary_seq(88) == 5.7523601921329e+51" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the depth of a dictionary.\nassert dict_depth({'a':1, 'b': {'c': {'d': {}}}})==4\nYour code should pass the test:\nassert dict_depth({'a':1, 'b': {'c': {'d': {}}}})==4", "test_list": [ "assert dict_depth({'a':1, 'b': {'c': {'d': {}}}})==4", "assert dict_depth({'a':1, 'b': {'c':'python'}})==2", "assert dict_depth({1: 'Sun', 2: {3: {4:'Mon'}}})==3" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to return two words from a list of words starting with letter 'p'.\nassert start_withp([\"Python PHP\", \"Java JavaScript\", \"c c++\"])==('Python', 'PHP')\nYour code should pass the test:\nassert start_withp([\"Python PHP\", \"Java JavaScript\", \"c c++\"])==('Python', 'PHP')", "test_list": [ "assert start_withp([\"Python PHP\", \"Java JavaScript\", \"c c++\"])==('Python', 'PHP')", "assert start_withp([\"Python Programming\",\"Java Programming\"])==('Python','Programming')", "assert start_withp([\"Pqrst Pqr\",\"qrstuv\"])==('Pqrst','Pqr')", "assert start_withp([]) == None" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum sum of increasing subsequence from prefix until ith index and also including a given kth element which is after i, i.e., k > i .\nassert max_sum_increasing_subseq([1, 101, 2, 3, 100, 4, 5 ], 7, 4, 6) == 11\nYour code should pass the test:\nassert max_sum_increasing_subseq([1, 101, 2, 3, 100, 4, 5 ], 7, 4, 6) == 11", "test_list": [ "assert max_sum_increasing_subseq([1, 101, 2, 3, 100, 4, 5 ], 7, 4, 6) == 11", "assert max_sum_increasing_subseq([1, 101, 2, 3, 100, 4, 5 ], 7, 2, 5) == 7", "assert max_sum_increasing_subseq([11, 15, 19, 21, 26, 28, 31], 7, 2, 4) == 71", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 2, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 1, 2) == 6", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 1, 5) == 11", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 2, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 2, 4) == 5", "assert max_sum_increasing_subseq([4, 2, 4, 1, 3, 6], 6, 1, 2) == 6", "assert max_sum_increasing_subseq([3, 2, 4, 1, 3, 6], 6, 2, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 1, 2) == 6", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 1, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 1, 5) == 7", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 3], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 1, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([4, 2, 4, 1, 3, 6], 6, 0, 2) == 4", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 2, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 1, 1, 6], 6, 1, 2) == 6", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 2, 5) == 13", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 1, 5) == 11", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 2, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 1, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 2, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 0, 1, 3, 6], 7, 1, 2) == 6", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 0, 1) == 2", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 1, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 4, 2, 3, 5], 6, 1, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 5, 1, 2, 6], 6, 0, 1) == 2", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 2, 5) == 14", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 1, 5) == 11", "assert max_sum_increasing_subseq([4, 3, 5, 1, 3, 6], 6, 1, 5) == 10", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 3, 5) == 13", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 1, 2) == 7", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 2, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 0, 5) == 11", "assert max_sum_increasing_subseq([5, 2, 4, 1, 1, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 2, 5) == 11", "assert max_sum_increasing_subseq([5, 2, 2, 1, 3, 6], 6, 1, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([4, 3, 5, 1, 3, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 2, 1, 3, 6], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 4, 2, 3, 5], 6, 1, 3) == 2", "assert max_sum_increasing_subseq([4, 2, 5, 1, 3, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([4, 2, 4, 0, 1, 3, 6], 7, 1, 2) == 6", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 7], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 2, 1, 3, 6], 6, 0, 5) == 11", "assert max_sum_increasing_subseq([5, 2, 4, 2, 3, 5], 6, 1, 5) == 7", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 3, 4) == 4", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 1, 2) == 8", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 3], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 2], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6, 5], 7, 2, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 0, 1, 3, 6], 7, 0, 2) == 4", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 0, 3, 6], 6, 2, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6], 6, 3, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 2], 6, 1, 4) == 5", "assert max_sum_increasing_subseq([2, 5, 2, 1, 3, 6], 6, 0, 4) == 5", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 0, 2) == 4", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([4, 3, 5, 1, 2, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 2, 6], 6, 1, 2) == 6", "assert max_sum_increasing_subseq([4, 2, 5, 1, 3, 6], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 0, 1, 3, 6], 7, 0, 3) == 0", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 3], 6, 0, 5) == 3", "assert max_sum_increasing_subseq([5, 2, 4, 1, 2, 6], 6, 1, 5) == 11", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 3], 6, 1, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 2, 5) == 12", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 3], 6, 0, 2) == 4", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 0, 5) == 11", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 3], 6, 2, 4) == 3", "assert max_sum_increasing_subseq([5, 4, 1, 3, 3, 3], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([4, 3, 5, 1, 3, 6], 6, 1, 4) == 3", "assert max_sum_increasing_subseq([5, 3, 5, 0, 3, 6], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 0, 1) == 2", "assert max_sum_increasing_subseq([5, 2, 5, 0, 3, 6], 6, 0, 1) == 2", "assert max_sum_increasing_subseq([5, 3, 5, 1, 3, 6], 6, 3, 5) == 14", "assert max_sum_increasing_subseq([4, 3, 5, 1, 2, 6], 6, 1, 2) == 9", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 0, 5) == 1", "assert max_sum_increasing_subseq([5, 3, 5, 2, 3, 6], 6, 2, 5) == 14", "assert max_sum_increasing_subseq([5, 3, 5, 1, 2, 6], 6, 3, 4) == 3", "assert max_sum_increasing_subseq([0, 5, 4, 1, 3, 3], 6, 0, 5) == 3", "assert max_sum_increasing_subseq([4, 3, 4, 1, 2, 6], 6, 1, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 3, 6, 3], 6, 1, 5) == 5", "assert max_sum_increasing_subseq([4, 3, 5, 1, 3, 6], 6, 3, 4) == 4", "assert max_sum_increasing_subseq([5, 2, 1, 3, 1], 5, 0, 2) == 1", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 2], 6, 0, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 6], 6, 0, 2) == 4", "assert max_sum_increasing_subseq([5, 7, 4, 1, 3, 3], 6, 0, 5) == 3", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6, 5], 7, 1, 2) == 7", "assert max_sum_increasing_subseq([4, 3, 5, 0, 3, 6], 6, 0, 4) == 3", "assert max_sum_increasing_subseq([4, 3, 5, 1, 3, 6], 6, 3, 5) == 15", "assert max_sum_increasing_subseq([5, 3, 5, 1, 2, 6], 6, 3, 5) == 14", "assert max_sum_increasing_subseq([5, 2, 5, 1, 3, 6, 5], 7, 2, 6) == 7", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 5], 6, 3, 5) == 11", "assert max_sum_increasing_subseq([5, 2, 4, 1, 3, 1], 6, 2, 3) == 1", "assert max_sum_increasing_subseq([5, 2, 4, 2, 7, 5], 6, 1, 4) == 12" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the specified number of largest products from two given lists, selecting one factor from each list.\nassert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],3)==[60, 54, 50]\nYour code should pass the test:\nassert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],3)==[60, 54, 50]", "test_list": [ "assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],3)==[60, 54, 50]", "assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],4)==[60, 54, 50, 48]", "assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],5)==[60, 54, 50, 48, 45]", "assert large_product([], [], 0) == []", "assert large_product([], [True, False, True, False, True, False, False, False, True], 0) == []", "assert large_product([], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], True) == [5825.514843022363]", "assert large_product([-14, 95, True, True, 0, True, -93, 28, -100, -58], [], 0) == []", "assert large_product([-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, True, False, True, False, False, False, True], True) == [66.35944684304215]", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([-14, 95, True, True, -93, True, -93, 28, -100, -58], [-14, 95, True, True, -93, True, -93, 28, -100, -58], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 90.10526865181693, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 90.10526865181693, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], True) == [8118.959438816102]", "assert large_product([-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, False, True, False, False, False, True], True) == [66.35944684304215]", "assert large_product([-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, True, False, True, False, False, True], True) == [66.35944684304215]", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([-14, 95, True, True, -93, -93, 28, -100, -58, -93], [-14, 95, True, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134], 0) == []", "assert large_product([], [True, True, False, True, False], 0) == []", "assert large_product([], [76.32506038662768, 90.10526865181693, -57.970016908086876, -42.35439740861899, 19.303378474526568, -94.00983646210564, -48.238387543008486, 12.442439811606093, -47.39685760879253, -1.0757677982592924], 0) == []", "assert large_product([-14, 95, -14, True, True, -93, -93, 28, -100, -58, -93], [-14, 95, -14, True, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134], [61.017129591114184, 19.303378474526568, 49.402419273875154, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 76.32506038662768], [61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 76.32506038662768], True) == [5825.514843022363]", "assert large_product([19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], True) == [5825.514843022363]", "assert large_product([True, False, True, True, False, True, False, False, False], [True, False, True, True, False, True, False, False, False], True) == [1]", "assert large_product([True, False, True, True, False, True, True, False, False, False], [True, False, True, True, False, True, True, False, False, False], True) == [1]", "assert large_product([-77.26276055424799, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154, 55.36349167122134], [True, False, False, True, False, False, False, True], True) == [66.35944684304215]", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], False) == []", "assert large_product([66.35944684304215, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, -7.635770536067829, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [66.35944684304215, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, -7.635770536067829, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], True) == [5825.514843022363]", "assert large_product([True, False, True, True, False, True, False, False, False, False], [True, False, True, True, False, True, False, False, False, False], True) == [1]", "assert large_product([-14, 95, -14, True, -93, -93, 28, -100, -58, -93], [-14, 95, -14, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([True, False, True, True, True, False, False, False], [True, False, True, True, True, False, False, False], True) == [1]", "assert large_product([95, -14, True, True, -93, -93, 28, -100, -58, -93], [95, -14, True, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([95, -14, True, -93, -93, 28, -100, -58, -93], [95, -14, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([True, True, True, False, True, False, False, False, False], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768], 0) == []", "assert large_product([-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, True, False, True, False, False, True], False) == []", "assert large_product([19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], False) == []", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, -22.555835342170255], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, -22.555835342170255], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, 76.32506038662768], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, 76.32506038662768], 0) == []", "assert large_product([], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 112.20920115187234], 0) == []", "assert large_product([-14, 95, True, True, 0, True, -93, 28, -100, -58, True], [], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, -61.03464372753109], [19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, -61.03464372753109], False) == []", "assert large_product([-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, True, False, True, False, False], False) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, 49.402419273875154], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, 49.402419273875154], 0) == []", "assert large_product([-14, 95, -14, True, -100, True, -93, -93, 28, -100, -58, -93], [-14, 95, -14, True, -100, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, 61.017129591114184, -22.555835342170255], [61.017129591114184, 19.303378474526568, 49.402419273875154, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, 61.017129591114184, -22.555835342170255], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -57.970016908086876, -61.03464372753109, 76.32506038662768, 61.017129591114184, 6.408487552626596], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -57.970016908086876, -61.03464372753109, 76.32506038662768, 61.017129591114184, 6.408487552626596], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, -6.658136072450631], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, -6.658136072450631], 0) == []", "assert large_product([True, False, True, False, True, False, False, False], [-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], False) == []", "assert large_product([95, -14, True, True, True, -93, -93, 28, -100, -58, -93], [95, -14, True, True, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([], [True, False, True, True, False, False, False, True], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 61.017129591114184, 19.303378474526568], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 61.017129591114184, 19.303378474526568], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 76.32506038662768, 61.017129591114184, 49.639540048004385], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 76.32506038662768, 61.017129591114184, 49.639540048004385], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, -61.03464372753109], [19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, -61.03464372753109], True) == [5825.514843022363]", "assert large_product([49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184, 61.017129591114184], [49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184, 61.017129591114184], False) == []", "assert large_product([19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184], [19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184], True) == [5825.514843022363]", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 55.36349167122134, 6.408487552626596, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, 61.017129591114184, -22.555835342170255], [61.017129591114184, 19.303378474526568, 49.402419273875154, 55.36349167122134, 6.408487552626596, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, 61.017129591114184, -22.555835342170255], 0) == []", "assert large_product([-77.26276055424799, -28.78853026959814, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, False, True, False, False, False, True], True) == [66.35944684304215]", "assert large_product([-14, 95, -14, True, -100, True, -93, -93, 28, -100, -58, -93], [-14, 95, -14, True, -100, True, -93, -93, 28, -100, -58, -93], 1) == [10000]", "assert large_product([19.769719048548342, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, -22.555835342170255], [19.769719048548342, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, -22.555835342170255], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 13.178142147598503, 61.017129591114184, 19.303378474526568], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 13.178142147598503, 61.017129591114184, 19.303378474526568], 0) == []", "assert large_product([-52], [], 0) == []", "assert large_product([49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184, 61.017129591114184], [49.402419273875154, -6.658136072450631, 6.408487552626596, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184, 61.017129591114184], False) == []", "assert large_product([True, True, True, False, True, False, False, False, False], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768], True) == [76.32506038662768]", "assert large_product([-77.26276055424799, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154], [True, False, False, True, False, False, False, True], True) == [66.35944684304215]", "assert large_product([-14, 95, -14, True, True, -93, -93, 28, -100, -58, -93, -100], [-14, 95, -14, True, True, -93, -93, 28, -100, -58, -93, -100], 0) == []", "assert large_product([-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154, -77.26276055424799], [-77.26276055424799, -31.02386956030803, 49.402419273875154, -88.93962961569308, 49.402419273875154, 19.303378474526568, 66.35944684304215, 55.36349167122134, 49.402419273875154, -77.26276055424799], True) == [7910.257716176669]", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 5.990816988397153, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 5.990816988397153, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 49.59138385789621, 61.017129591114184, 49.639540048004385], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 49.59138385789621, 61.017129591114184, 49.639540048004385], 0) == []", "assert large_product([], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 19.005641938020904, -61.03464372753109, 76.32506038662768], 0) == []", "assert large_product([66.35944684304215, 19.303378474526568, 49.402419273875154, -12.40334912999206, 49.402419273875154, -6.658136072450631, 55.36349167122134, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [66.35944684304215, 19.303378474526568, 49.402419273875154, -12.40334912999206, 49.402419273875154, -6.658136072450631, 55.36349167122134, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], True) == [5825.514843022363]", "assert large_product([-14, 95, -14, -100, True, -93, -93, 28, -100, -58, -93], [-14, 95, -14, -100, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -57.970016908086876, -61.03464372753109, 76.32506038662768, 61.017129591114184, 6.408487552626596, 6.408487552626596], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -57.970016908086876, -61.03464372753109, 76.32506038662768, 61.017129591114184, 6.408487552626596, 6.408487552626596], 0) == []", "assert large_product([95, -14, True, True, 28, -93, -93, 28, -100, -58, -93], [95, -14, True, True, 28, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([77, -52, 0], [], 0) == []", "assert large_product([95, -14, True, True, -93, -93, -100, -58, -93], [95, -14, True, True, -93, -93, -100, -58, -93], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 49.59138385789621, 61.017129591114184, 49.639540048004385], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 49.59138385789621, 61.017129591114184, 49.639540048004385], 1) == [3725.2277349466503]", "assert large_product([61.017129591114184, 19.303378474526568, 55.10255163553033, 49.59138385789621, -6.658136072450631, 112.20920115187234, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 55.10255163553033, 49.59138385789621, -6.658136072450631, 112.20920115187234, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([-14, 95, True, True, 0, True, -93, 28, -100, -58, True, 28], [28], 0) == []", "assert large_product([-14, 95, True, -100, True, -93, -93, 28, -100, -58, -93], [-14, 95, True, -100, True, -93, -93, 28, -100, -58, -93], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.10255163553033, 55.36349167122134, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, -6.658136072450631, 55.10255163553033, 55.36349167122134, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 5.982090879934751, 13.178142147598503, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 5.982090879934751, 13.178142147598503, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134], 0) == []", "assert large_product([], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 76.32506038662768], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -47.39685760879253, 5.990816988397153, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -47.39685760879253, 5.990816988397153, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, -22.555835342170255], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 55.36349167122134, -22.555835342170255], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 60.216017329793466, 49.59138385789621, 55.36349167122134, 6.408487552626596, -22.555835342170255, 49.639540048004385, -61.03464372753109, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([True, False, True, True, True, False, True, False, False, False], [True, False, True, True, True, False, True, False, False, False], True) == [1]", "assert large_product([95, -14, True, True, -93, -93, -100, -58, -93], [95, -14, True, True, -93, -93, -100, -58, -93], True) == [10000]", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 90.10526865181693, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 49.402419273875154], [61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 90.10526865181693, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 49.402419273875154], True) == [8118.959438816102]", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, 76.32506038662768, -22.555835342170255], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 76.32506038662768, 61.017129591114184, 76.32506038662768, -22.555835342170255], 0) == []", "assert large_product([-14, 95, True, True, 0, True, -93, 28, -100, -58, True], [90.10526865181693, -96.924424458794], 1) == [9692.4424458794]", "assert large_product([95, -14, True, True, -93, -93, 28, -100, -58, -93], [95, -14, True, True, -93, -93, 28, -100, -58, -93], 1) == [10000]", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 5.990816988397153, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 5.990816988397153, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184], True) == [5825.514843022363]", "assert large_product([], [76.32506038662768, 90.10526865181693, -57.970016908086876, -42.35439740861899, 19.303378474526568, -94.00983646210564, -48.238387543008486, 12.442439811606093, -47.39685760879253, -1.0757677982592924, -47.39685760879253], 0) == []", "assert large_product([19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 76.32506038662768, 61.017129591114184, 76.32506038662768, -22.555835342170255], [19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, 76.32506038662768, 61.017129591114184, 76.32506038662768, -22.555835342170255], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 77.44468935934007, 6.408487552626596, 90.10526865181693, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 49.402419273875154], [61.017129591114184, 19.303378474526568, 49.402419273875154, 49.402419273875154, -6.658136072450631, 55.36349167122134, 77.44468935934007, 6.408487552626596, 90.10526865181693, -22.555835342170255, -61.03464372753109, 76.32506038662768, 61.017129591114184, 49.402419273875154], True) == [8118.959438816102]", "assert large_product([True, False, True, True, True, False, False], [True, False, True, True, True, False, False], True) == [1]", "assert large_product([-14, 95, True, True, 0, True, -93, 28, -100, -58, True], [-58, -93], 0) == []", "assert large_product([5.990816988397153, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 13.178142147598503, 61.017129591114184, 19.303378474526568], [5.990816988397153, 19.303378474526568, 49.402419273875154, -6.658136072450631, 55.36349167122134, 6.408487552626596, -22.555835342170255, 13.178142147598503, 61.017129591114184, 19.303378474526568], 0) == []", "assert large_product([61.017129591114184, 19.303378474526568, 60.216017329793466, -6.658136072450631, 55.36349167122134, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], [61.017129591114184, 19.303378474526568, 60.216017329793466, -6.658136072450631, 55.36349167122134, -61.03464372753109, -22.555835342170255, 49.639540048004385, 76.32506038662768, 61.017129591114184], 0) == []", "assert large_product([55.10255163553033, -31.02386956030803, -55.93250431657819, 13.178142147598503, 60.216017329793466, -5.248447786683158, -94.00983646210564, -29.39237722608084, 77.44468935934007], [], 0) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the maximum of two numbers.\nassert maximum(5,10) == 10\nYour code should pass the test:\nassert maximum(5,10) == 10", "test_list": [ "assert maximum(5,10) == 10", "assert maximum(-1,-2) == -1", "assert maximum(9,7) == 9", "assert maximum(3.14, 10.65) == 10.65", "assert maximum(-2.1, 0.9) == 0.9", "assert maximum(4.7, -3.8) == 4.7", "assert maximum(0, 10) == 10", "assert maximum(-10, 0) == 0", "assert maximum(0, 0) == 0", "assert maximum(-10000000000000000000000000, 1e-26) == 1e-26", "assert maximum(-9876543210987654321098765, -1234567890123456789012345) == -1234567890123456789012345", "assert maximum(3.141592653589793, 3.141592653589793) == 3.141592653589793", "assert maximum(1.1808193778623197, 0.9) == 1.1808193778623197", "assert maximum(0, 9) == 9", "assert maximum(3.141592653589793, 10.65) == 10.65", "assert maximum(0, -10) == 0", "assert maximum(-10000000000000000000000000, -1234567890123456789012345) == -1234567890123456789012345", "assert maximum(10.65, 10.65) == 10.65", "assert maximum(2.9618248823452746, 3.141592653589793) == 3.141592653589793", "assert maximum(1.2157775014136278, 0.6793588880224353) == 1.2157775014136278", "assert maximum(-9999999999999999999999998, 0.9) == 0.9", "assert maximum(9, -1) == 9", "assert maximum(-10000000000000000000000000, 11) == 11", "assert maximum(0.9, 0.9) == 0.9", "assert maximum(11, 0.9) == 11", "assert maximum(3.141592653589793, 0.9) == 3.141592653589793", "assert maximum(-9876543210987654321098765, -9876543210987654321098765) == -9876543210987654321098765", "assert maximum(10, -10) == 10", "assert maximum(2.0531824740205407, 3.141592653589793) == 3.141592653589793", "assert maximum(9, 10) == 10", "assert maximum(0.6793588880224353, 2.0531824740205407) == 2.0531824740205407", "assert maximum(-1234567890123456789012344, -1234567890123456789012345) == -1234567890123456789012344", "assert maximum(-10000000000000000000000000, -10000000000000000000000000) == -10000000000000000000000000", "assert maximum(3.141592653589793, 1.2157775014136278) == 3.141592653589793", "assert maximum(-1234567890123456789012345, -1234567890123456789012345) == -1234567890123456789012345", "assert maximum(11, -1234567890123456789012344) == 11", "assert maximum(1.5845776850148763, 0.9) == 1.5845776850148763", "assert maximum(-9876543210987654321098765, 10) == 10", "assert maximum(-1, -10000000000000000000000000) == -1", "assert maximum(2.3167165662630365, 1.5845776850148763) == 2.3167165662630365", "assert maximum(11, 12) == 12", "assert maximum(-9999999999999999999999997, 0.9) == 0.9", "assert maximum(3.7369883507451815, 3.141592653589793) == 3.7369883507451815", "assert maximum(1.7912598325814533, 2.0531824740205407) == 2.0531824740205407", "assert maximum(10, -1) == 10", "assert maximum(-1234567890123456789012345, -10000000000000000000000000) == -1234567890123456789012345", "assert maximum(3.141592653589793, 10.723965513304417) == 10.723965513304417", "assert maximum(10, -1234567890123456789012345) == 10", "assert maximum(1.2157775014136278, 1e-26) == 1.2157775014136278", "assert maximum(10, 10) == 10", "assert maximum(-10000000000000000000000001, 1e-26) == 1e-26", "assert maximum(3.489417024918704, 0.9) == 3.489417024918704", "assert maximum(-9999999999999999999999999, 0.9) == 0.9", "assert maximum(11.354840748288053, 2.484392829474946) == 11.354840748288053", "assert maximum(9, 9) == 9", "assert maximum(-10, -1234567890123456789012344) == -10", "assert maximum(1.5845776850148763, 1.5845776850148763) == 1.5845776850148763", "assert maximum(-1234567890123456789012345, -9876543210987654321098765) == -1234567890123456789012345", "assert maximum(1.437569968606471, 0.9) == 1.437569968606471", "assert maximum(10, 9) == 10", "assert maximum(-1234567890123456789012344, -1234567890123456789012344) == -1234567890123456789012344", "assert maximum(11.354840748288053, 1e-26) == 11.354840748288053", "assert maximum(11, 13) == 13", "assert maximum(3.7369883507451815, 3.7484448127691747) == 3.7484448127691747", "assert maximum(-10, -10) == -10", "assert maximum(1.437569968606471, 1.8110406201833071) == 1.8110406201833071", "assert maximum(2.3167165662630365, 2.484392829474946) == 2.484392829474946", "assert maximum(1.2157775014136278, -2.1) == 1.2157775014136278", "assert maximum(-0.030376207066556082, 7.499539649487587) == 7.499539649487587", "assert maximum(-2.1, 1.2157775014136278) == 1.2157775014136278", "assert maximum(2, 1) == 2", "assert maximum(-1234567890123456789012345, -1) == -1", "assert maximum(1, -10000000000000000000000000) == 1", "assert maximum(3.141592653589793, 10.640794492137154) == 10.640794492137154", "assert maximum(-9999999999999999999999999, -10000000000000000000000000) == -9999999999999999999999999", "assert maximum(1, -9999999999999999999999997) == 1", "assert maximum(-2.1, -1.7697103312809708) == -1.7697103312809708", "assert maximum(1, 1) == 1", "assert maximum(-9999999999999999999999999, -1234567890123456789012345) == -1234567890123456789012345", "assert maximum(-9999999999999999999999997, -9999999999999999999999997) == -9999999999999999999999997", "assert maximum(1.1808193778623197, 1.8110406201833071) == 1.8110406201833071", "assert maximum(-9999999999999999999999999, 12) == 12", "assert maximum(3.141592653589793, 1.1808193778623197) == 3.141592653589793", "assert maximum(-1234567890123456789012346, -1234567890123456789012345) == -1234567890123456789012345", "assert maximum(0.8312079285541487, 1.2157775014136278) == 1.2157775014136278", "assert maximum(3.141592653589793, 2.2911536081938935) == 3.141592653589793", "assert maximum(2.9618248823452746, 7.499539649487587) == 7.499539649487587", "assert maximum(1.7661199773658156, 2.2911536081938935) == 2.2911536081938935", "assert maximum(2.9618248823452746, 3.7484448127691747) == 3.7484448127691747", "assert maximum(-10, -9) == -9", "assert maximum(7.3022277742249955, 7.499539649487587) == 7.499539649487587", "assert maximum(1.898572449510145, 2.36750373246299) == 2.36750373246299", "assert maximum(3.141592653589793, 1.898572449510145) == 3.141592653589793", "assert maximum(2.9618248823452746, 2.9632529449641662) == 2.9632529449641662", "assert maximum(-10, -1234567890123456789012345) == -10", "assert maximum(10, 2.9632529449641662) == 10", "assert maximum(11.042105761712191, 11.52667925889018) == 11.52667925889018", "assert maximum(12, -1234567890123456789012345) == 12", "assert maximum(2.36750373246299, 0.6793588880224353) == 2.36750373246299", "assert maximum(1, 10) == 10", "assert maximum(0, 13) == 13", "assert maximum(11, 11) == 11", "assert maximum(3.7369883507451815, 2.9632529449641662) == 3.7369883507451815", "assert maximum(0.8312079285541487, 0.8312079285541487) == 0.8312079285541487", "assert maximum(-9876543210987654321098766, -10000000000000000000000001) == -9876543210987654321098766", "assert maximum(4.0762338243861995, 3.141592653589793) == 4.0762338243861995", "assert maximum(1.898572449510145, 1.898572449510145) == 1.898572449510145", "assert maximum(9, -11) == 9", "assert maximum(13, 12) == 13", "assert maximum(3.653195415338968, 3.141592653589793) == 3.653195415338968", "assert maximum(-1234567890123456789012345, 11) == 11", "assert maximum(-11, 0) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a given string to a tuple of characters.\nassert string_to_tuple(\"python 3.0\")==('p', 'y', 't', 'h', 'o', 'n', '3', '.', '0')\nYour code should pass the test:\nassert string_to_tuple(\"python 3.0\")==('p', 'y', 't', 'h', 'o', 'n', '3', '.', '0')", "test_list": [ "assert string_to_tuple(\"python 3.0\")==('p', 'y', 't', 'h', 'o', 'n', '3', '.', '0')", "assert string_to_tuple(\"item1\")==('i', 't', 'e', 'm', '1')", "assert string_to_tuple(\"15.10\")==('1', '5', '.', '1', '0')", "assert string_to_tuple('') == ()", "assert string_to_tuple('hello world') == ('h', 'e', 'l', 'l', 'o', 'w', 'o', 'r', 'l', 'd')", "assert string_to_tuple('çèêë') == ('ç', 'è', 'ê', 'ë')", "assert string_to_tuple(' Hello World! ') == ('H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!')", "assert string_to_tuple(' ') == ()", "assert string_to_tuple('1234567890') == ('1', '2', '3', '4', '5', '6', '7', '8', '9', '0')", "assert string_to_tuple('abcdefghijklmnopqrstuvwxyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('ABCDEFGHIJKLMNOPQRSTUVWXYZ') == ('A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S', 'T', 'U', 'V', 'W', 'X', 'Y', 'Z')", "assert string_to_tuple('MixedCase123') == ('M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3')", "assert string_to_tuple(' ') == ()", "assert string_to_tuple('\\n\\t') == ()", "assert string_to_tuple(' 15.10 ') == ('1', '5', '.', '1', '0')", "assert string_to_tuple('item1, item2, item3') == ('i', 't', 'e', 'm', '1', ',', 'i', 't', 'e', 'm', '2', ',', 'i', 't', 'e', 'm', '3')", "assert string_to_tuple('item2,') == ('i', 't', 'e', 'm', '2', ',')", "assert string_to_tuple('abcdefghijklmnopqrstkuvwxpyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'k', 'u', 'v', 'w', 'x', 'p', 'y', 'z')", "assert string_to_tuple('whelloorld') == ('w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd')", "assert string_to_tuple('whellooWorld!d') == ('w', 'h', 'e', 'l', 'l', 'o', 'o', 'W', 'o', 'r', 'l', 'd', '!', 'd')", "assert string_to_tuple('whelloorled') == ('w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'e', 'd')", "assert string_to_tuple('Hello') == ('H', 'e', 'l', 'l', 'o')", "assert string_to_tuple(' Hello World! ') == ('H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!')", "assert string_to_tuple(' Hello World! \\n\\t') == ('H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!')", "assert string_to_tuple('item3') == ('i', 't', 'e', 'm', '3')", "assert string_to_tuple('hello worlld') == ('h', 'e', 'l', 'l', 'o', 'w', 'o', 'r', 'l', 'l', 'd')", "assert string_to_tuple('hçèêëello worlld') == ('h', 'ç', 'è', 'ê', 'ë', 'e', 'l', 'l', 'o', 'w', 'o', 'r', 'l', 'l', 'd')", "assert string_to_tuple('item3 ') == ('i', 't', 'e', 'm', '3')", "assert string_to_tuple('abcd Hello World! efghijklmnopqrstuvwxyz') == ('a', 'b', 'c', 'd', 'H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('hello item3 world') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', 'w', 'o', 'r', 'l', 'd')", "assert string_to_tuple(' 10 ') == ('1', '0')", "assert string_to_tuple('ite') == ('i', 't', 'e')", "assert string_to_tuple('hello item3 15.10ld') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l', 'd')", "assert string_to_tuple('hello wMixedCase123orld') == ('h', 'e', 'l', 'l', 'o', 'w', 'M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd')", "assert string_to_tuple('item1e,') == ('i', 't', 'e', 'm', '1', 'e', ',')", "assert string_to_tuple(' 1item3 0 ') == ('1', 'i', 't', 'e', 'm', '3', '0')", "assert string_to_tuple('çêë') == ('ç', 'ê', 'ë')", "assert string_to_tuple(' 100 ') == ('1', '0', '0')", "assert string_to_tuple('hello 5 item3 15.10ld') == ('h', 'e', 'l', 'l', 'o', '5', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l', 'd')", "assert string_to_tuple('abcdefghhijklmnopqrstkuvwxpyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'k', 'u', 'v', 'w', 'x', 'p', 'y', 'z')", "assert string_to_tuple('iteworlldm3') == ('i', 't', 'e', 'w', 'o', 'r', 'l', 'l', 'd', 'm', '3')", "assert string_to_tuple('05') == ('0', '5')", "assert string_to_tuple('tite') == ('t', 'i', 't', 'e')", "assert string_to_tuple(' 100 efghijklmnopqrstuvwxyz') == ('1', '0', '0', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('055') == ('0', '5', '5')", "assert string_to_tuple('itemi3') == ('i', 't', 'e', 'm', 'i', '3')", "assert string_to_tuple('hello wo 1item3 0 ld') == ('h', 'e', 'l', 'l', 'o', 'w', 'o', '1', 'i', 't', 'e', 'm', '3', '0', 'l', 'd')", "assert string_to_tuple('itemabcdefghwhelloorldhijklmnopqrstkuvwxpyz3 ') == ('i', 't', 'e', 'm', 'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'k', 'u', 'v', 'w', 'x', 'p', 'y', 'z', '3')", "assert string_to_tuple('5ite') == ('5', 'i', 't', 'e')", "assert string_to_tuple(' ') == ()", "assert string_to_tuple('world') == ('w', 'o', 'r', 'l', 'd')", "assert string_to_tuple(' 515.10 ') == ('5', '1', '5', '.', '1', '0')", "assert string_to_tuple('1 100 ') == ('1', '1', '0', '0')", "assert string_to_tuple('itemi33') == ('i', 't', 'e', 'm', 'i', '3', '3')", "assert string_to_tuple('100') == ('1', '0', '0')", "assert string_to_tuple('çèwhelloorldêë') == ('ç', 'è', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd', 'ê', 'ë')", "assert string_to_tuple('çèwhelloorlldêë') == ('ç', 'è', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'l', 'd', 'ê', 'ë')", "assert string_to_tuple('worlld') == ('w', 'o', 'r', 'l', 'l', 'd')", "assert string_to_tuple('çëitemi33') == ('ç', 'ë', 'i', 't', 'e', 'm', 'i', '3', '3')", "assert string_to_tuple('1234wMixedCase123orld567890') == ('1', '2', '3', '4', 'w', 'M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd', '5', '6', '7', '8', '9', '0')", "assert string_to_tuple('it33') == ('i', 't', '3', '3')", "assert string_to_tuple('hçèêëello whelloorldworlld') == ('h', 'ç', 'è', 'ê', 'ë', 'e', 'l', 'l', 'o', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd', 'w', 'o', 'r', 'l', 'l', 'd')", "assert string_to_tuple('abcdefghijitem1, item2, item3klmnopqrstuvwxyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'i', 't', 'e', 'm', '1', ',', 'i', 't', 'e', 'm', '2', ',', 'i', 't', 'e', 'm', '3', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('abcd worlld Hello World! efghijklmnopqrstuvwxyz') == ('a', 'b', 'c', 'd', 'w', 'o', 'r', 'l', 'l', 'd', 'H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('whelllooWorld!d') == ('w', 'h', 'e', 'l', 'l', 'l', 'o', 'o', 'W', 'o', 'r', 'l', 'd', '!', 'd')", "assert string_to_tuple('item1, item2, iteem3') == ('i', 't', 'e', 'm', '1', ',', 'i', 't', 'e', 'm', '2', ',', 'i', 't', 'e', 'e', 'm', '3')", "assert string_to_tuple('hello item3 15 .10ld') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l', 'd')", "assert string_to_tuple('10') == ('1', '0')", "assert string_to_tuple('worworlldlld') == ('w', 'o', 'r', 'w', 'o', 'r', 'l', 'l', 'd', 'l', 'l', 'd')", "assert string_to_tuple('itemabcdefghwhelloorldhijklmnopqrstkuvwxpyz3') == ('i', 't', 'e', 'm', 'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'k', 'u', 'v', 'w', 'x', 'p', 'y', 'z', '3')", "assert string_to_tuple('ABCDEFGHIJKLMNOPQRSTUVWXY') == ('A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S', 'T', 'U', 'V', 'W', 'X', 'Y')", "assert string_to_tuple('abcdefghijitem1, item2, iitem1,klmnopqrstuvwxyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'i', 't', 'e', 'm', '1', ',', 'i', 't', 'e', 'm', '2', ',', 'i', 'i', 't', 'e', 'm', '1', ',', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple(' He itemabcdefghwhelloorldhijklmnopqrstkuvwxpyz3 ') == ('H', 'e', 'i', 't', 'e', 'm', 'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'k', 'u', 'v', 'w', 'x', 'p', 'y', 'z', '3')", "assert string_to_tuple('\\n\\n\\t') == ()", "assert string_to_tuple('0whelloorled') == ('0', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'e', 'd')", "assert string_to_tuple(' 1 0 ') == ('1', '0')", "assert string_to_tuple('hello item3 15 .10l') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l')", "assert string_to_tuple('çêêë') == ('ç', 'ê', 'ê', 'ë')", "assert string_to_tuple('Mixe2dCase123') == ('M', 'i', 'x', 'e', '2', 'd', 'C', 'a', 's', 'e', '1', '2', '3')", "assert string_to_tuple('whelllooWorldo!d') == ('w', 'h', 'e', 'l', 'l', 'l', 'o', 'o', 'W', 'o', 'r', 'l', 'd', 'o', '!', 'd')", "assert string_to_tuple(' Hello World! tem3 \\n\\t') == ('H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!', 't', 'e', 'm', '3')", "assert string_to_tuple('hello item3 15 .10ld') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l', 'd')", "assert string_to_tuple('ite10') == ('i', 't', 'e', '1', '0')", "assert string_to_tuple('hello1234wMixedCase123orld567890 item3 15 .10l') == ('h', 'e', 'l', 'l', 'o', '1', '2', '3', '4', 'w', 'M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd', '5', '6', '7', '8', '9', '0', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l')", "assert string_to_tuple('ABCDEFMNOPQRSTUVWXYZ') == ('A', 'B', 'C', 'D', 'E', 'F', 'M', 'N', 'O', 'P', 'Q', 'R', 'S', 'T', 'U', 'V', 'W', 'X', 'Y', 'Z')", "assert string_to_tuple('hçèêëtiteello whelloorldworlld') == ('h', 'ç', 'è', 'ê', 'ë', 't', 'i', 't', 'e', 'e', 'l', 'l', 'o', 'w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'd', 'w', 'o', 'r', 'l', 'l', 'd')", "assert string_to_tuple('whe lloorlld') == ('w', 'h', 'e', 'l', 'l', 'o', 'o', 'r', 'l', 'l', 'd')", "assert string_to_tuple('tem3') == ('t', 'e', 'm', '3')", "assert string_to_tuple('worl') == ('w', 'o', 'r', 'l')", "assert string_to_tuple('055item1,') == ('0', '5', '5', 'i', 't', 'e', 'm', '1', ',')", "assert string_to_tuple('1') == ('1',)", "assert string_to_tuple('12364567890') == ('1', '2', '3', '6', '4', '5', '6', '7', '8', '9', '0')", "assert string_to_tuple('hello1234wMixedCase123orld567890') == ('h', 'e', 'l', 'l', 'o', '1', '2', '3', '4', 'w', 'M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd', '5', '6', '7', '8', '9', '0')", "assert string_to_tuple('hçèêëello Hello World! tem3 \\n\\t worllld') == ('h', 'ç', 'è', 'ê', 'ë', 'e', 'l', 'l', 'o', 'H', 'e', 'l', 'l', 'o', 'W', 'o', 'r', 'l', 'd', '!', 't', 'e', 'm', '3', 'w', 'o', 'r', 'l', 'l', 'l', 'd')", "assert string_to_tuple('hello item3 wor ld') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', 'w', 'o', 'r', 'l', 'd')", "assert string_to_tuple('h4ello1234wMixedCase123orld567890 item3 15 .10l') == ('h', '4', 'e', 'l', 'l', 'o', '1', '2', '3', '4', 'w', 'M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd', '5', '6', '7', '8', '9', '0', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', '0', 'l')", "assert string_to_tuple('MixedCi') == ('M', 'i', 'x', 'e', 'd', 'C', 'i')", "assert string_to_tuple('15.10') == ('1', '5', '.', '1', '0')", "assert string_to_tuple('15..10') == ('1', '5', '.', '.', '1', '0')", "assert string_to_tuple('12364567890ite') == ('1', '2', '3', '6', '4', '5', '6', '7', '8', '9', '0', 'i', 't', 'e')", "assert string_to_tuple('hello item3t wor ld') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', 't', 'w', 'o', 'r', 'l', 'd')", "assert string_to_tuple('item3i3') == ('i', 't', 'e', 'm', '3', 'i', '3')", "assert string_to_tuple('abcdefghijitem1, item2, iitelmnopqrstuvwxyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'i', 't', 'e', 'm', '1', ',', 'i', 't', 'e', 'm', '2', ',', 'i', 'i', 't', 'e', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('hello item3 15 .1iitelmnopqrstuvwxyz0l') == ('h', 'e', 'l', 'l', 'o', 'i', 't', 'e', 'm', '3', '1', '5', '.', '1', 'i', 'i', 't', 'e', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z', '0', 'l')", "assert string_to_tuple('.10hello worldld') == ('.', '1', '0', 'h', 'e', 'l', 'l', 'o', 'w', 'o', 'r', 'l', 'd', 'l', 'd')", "assert string_to_tuple('h4ello1234wMixedCase123orld567890 itemtite.10l') == ('h', '4', 'e', 'l', 'l', 'o', '1', '2', '3', '4', 'w', 'M', 'i', 'x', 'e', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd', '5', '6', '7', '8', '9', '0', 'i', 't', 'e', 'm', 't', 'i', 't', 'e', '.', '1', '0', 'l')", "assert string_to_tuple('worldld') == ('w', 'o', 'r', 'l', 'd', 'l', 'd')", "assert string_to_tuple('abefghijklmnopqrstuvwxyz') == ('a', 'b', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z')", "assert string_to_tuple('abcdefzghijklmnopqrstkuvwxpyz') == ('a', 'b', 'c', 'd', 'e', 'f', 'z', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', 'k', 'u', 'v', 'w', 'x', 'p', 'y', 'z')", "assert string_to_tuple('QkkSNfeX') == ('Q', 'k', 'k', 'S', 'N', 'f', 'e', 'X')", "assert string_to_tuple('hçèêëtiteello') == ('h', 'ç', 'è', 'ê', 'ë', 't', 'i', 't', 'e', 'e', 'l', 'l', 'o')", "assert string_to_tuple('hello wMixeodCase123orld') == ('h', 'e', 'l', 'l', 'o', 'w', 'M', 'i', 'x', 'e', 'o', 'd', 'C', 'a', 's', 'e', '1', '2', '3', 'o', 'r', 'l', 'd')", "assert string_to_tuple('imtemi3') == ('i', 'm', 't', 'e', 'm', 'i', '3')", "assert string_to_tuple(' 110 ') == ('1', '1', '0')", "assert string_to_tuple('.10ldMisxe2dCase123') == ('.', '1', '0', 'l', 'd', 'M', 'i', 's', 'x', 'e', '2', 'd', 'C', 'a', 's', 'e', '1', '2', '3')", "assert string_to_tuple(' 10 1234567890') == ('1', '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', '0')" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to set the left most unset bit.\nassert set_left_most_unset_bit(10) == 14\nYour code should pass the test:\nassert set_left_most_unset_bit(10) == 14", "test_list": [ "assert set_left_most_unset_bit(10) == 14", "assert set_left_most_unset_bit(12) == 14", "assert set_left_most_unset_bit(15) == 15", "assert set_left_most_unset_bit(125) == 127", "assert set_left_most_unset_bit(255) == 255", "assert set_left_most_unset_bit(1000) == 1016", "assert set_left_most_unset_bit(98765) == 115149", "assert set_left_most_unset_bit(1) == 1", "assert set_left_most_unset_bit(3) == 3", "assert set_left_most_unset_bit(5) == 7", "assert set_left_most_unset_bit(7) == 7", "assert set_left_most_unset_bit(9) == 13", "assert set_left_most_unset_bit(0) == 0", "assert set_left_most_unset_bit(8) == 12", "assert set_left_most_unset_bit(True) == True", "assert set_left_most_unset_bit(124) == 126", "assert set_left_most_unset_bit(1001) == 1017", "assert set_left_most_unset_bit(98764) == 115148", "assert set_left_most_unset_bit(10) == 14", "assert set_left_most_unset_bit(92) == 124", "assert set_left_most_unset_bit(2) == 3", "assert set_left_most_unset_bit(False) == False", "assert set_left_most_unset_bit(254) == 255", "assert set_left_most_unset_bit(127) == 127", "assert set_left_most_unset_bit(128) == 192", "assert set_left_most_unset_bit(6) == 7", "assert set_left_most_unset_bit(123) == 127", "assert set_left_most_unset_bit(98766) == 115150", "assert set_left_most_unset_bit(4) == 6", "assert set_left_most_unset_bit(122) == 126", "assert set_left_most_unset_bit(1002) == 1018", "assert set_left_most_unset_bit(126) == 127", "assert set_left_most_unset_bit(1003) == 1019", "assert set_left_most_unset_bit(129) == 193", "assert set_left_most_unset_bit(130) == 194", "assert set_left_most_unset_bit(1004) == 1020", "assert set_left_most_unset_bit(67) == 99", "assert set_left_most_unset_bit(253) == 255", "assert set_left_most_unset_bit(68) == 100", "assert set_left_most_unset_bit(69) == 101", "assert set_left_most_unset_bit(70) == 102", "assert set_left_most_unset_bit(98767) == 115151", "assert set_left_most_unset_bit(98768) == 115152", "assert set_left_most_unset_bit(121) == 125", "assert set_left_most_unset_bit(11) == 15", "assert set_left_most_unset_bit(31) == 31", "assert set_left_most_unset_bit(1005) == 1021", "assert set_left_most_unset_bit(120) == 124", "assert set_left_most_unset_bit(91) == 123", "assert set_left_most_unset_bit(252) == 254", "assert set_left_most_unset_bit(131) == 195", "assert set_left_most_unset_bit(132) == 196", "assert set_left_most_unset_bit(66) == 98", "assert set_left_most_unset_bit(12) == 14", "assert set_left_most_unset_bit(119) == 127", "assert set_left_most_unset_bit(999) == 1015", "assert set_left_most_unset_bit(28) == 30", "assert set_left_most_unset_bit(98769) == 115153", "assert set_left_most_unset_bit(251) == 255", "assert set_left_most_unset_bit(89) == 121", "assert set_left_most_unset_bit(256) == 384", "assert set_left_most_unset_bit(29) == 31", "assert set_left_most_unset_bit(98770) == 115154", "assert set_left_most_unset_bit(30) == 31", "assert set_left_most_unset_bit(32) == 48", "assert set_left_most_unset_bit(117) == 125", "assert set_left_most_unset_bit(257) == 385", "assert set_left_most_unset_bit(118) == 126", "assert set_left_most_unset_bit(33) == 49", "assert set_left_most_unset_bit(46) == 62", "assert set_left_most_unset_bit(90) == 122", "assert set_left_most_unset_bit(47) == 63", "assert set_left_most_unset_bit(250) == 254", "assert set_left_most_unset_bit(87) == 119", "assert set_left_most_unset_bit(94) == 126", "assert set_left_most_unset_bit(133) == 197", "assert set_left_most_unset_bit(116) == 124", "assert set_left_most_unset_bit(49) == 57", "assert set_left_most_unset_bit(27) == 31", "assert set_left_most_unset_bit(50) == 58", "assert set_left_most_unset_bit(93) == 125", "assert set_left_most_unset_bit(35) == 51", "assert set_left_most_unset_bit(34) == 50", "assert set_left_most_unset_bit(258) == 386", "assert set_left_most_unset_bit(71) == 103", "assert set_left_most_unset_bit(72) == 104", "assert set_left_most_unset_bit(1006) == 1022", "assert set_left_most_unset_bit(86) == 118", "assert set_left_most_unset_bit(115) == 123", "assert set_left_most_unset_bit(36) == 52", "assert set_left_most_unset_bit(21) == 29", "assert set_left_most_unset_bit(51) == 59", "assert set_left_most_unset_bit(48) == 56", "assert set_left_most_unset_bit(114) == 122", "assert set_left_most_unset_bit(73) == 105", "assert set_left_most_unset_bit(259) == 387", "assert set_left_most_unset_bit(98763) == 115147", "assert set_left_most_unset_bit(98771) == 115155", "assert set_left_most_unset_bit(95) == 127", "assert set_left_most_unset_bit(113) == 121", "assert set_left_most_unset_bit(52) == 60", "assert set_left_most_unset_bit(26) == 30", "assert set_left_most_unset_bit(53) == 61", "assert set_left_most_unset_bit(260) == 388", "assert set_left_most_unset_bit(261) == 389", "assert set_left_most_unset_bit(25) == 29", "assert set_left_most_unset_bit(249) == 253", "assert set_left_most_unset_bit(13) == 15", "assert set_left_most_unset_bit(24) == 28", "assert set_left_most_unset_bit(262) == 390", "assert set_left_most_unset_bit(88) == 120", "assert set_left_most_unset_bit(23) == 31" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the volume of a cone.\nassert math.isclose(volume_cone(5,12), 314.15926535897927, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(volume_cone(5,12), 314.15926535897927, rel_tol=0.001)", "test_list": [ "assert math.isclose(volume_cone(5,12), 314.15926535897927, rel_tol=0.001)", "assert math.isclose(volume_cone(10,15), 1570.7963267948965, rel_tol=0.001)", "assert math.isclose(volume_cone(19,17), 6426.651371693521, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the highest power of 2 that is less than or equal to n.\nassert highest_Power_of_2(10) == 8\nYour code should pass the test:\nassert highest_Power_of_2(10) == 8", "test_list": [ "assert highest_Power_of_2(10) == 8", "assert highest_Power_of_2(19) == 16", "assert highest_Power_of_2(32) == 32", "assert highest_Power_of_2(1) == 1", "assert highest_Power_of_2(1000000) == 524288", "assert highest_Power_of_2(987654321) == 536870912", "assert highest_Power_of_2(987654320) == 536870912", "assert highest_Power_of_2(999999) == 524288", "assert highest_Power_of_2(987654319) == 536870912", "assert highest_Power_of_2(2) == 2", "assert highest_Power_of_2(987654322) == 536870912", "assert highest_Power_of_2(999998) == 524288", "assert highest_Power_of_2(1000001) == 524288", "assert highest_Power_of_2(987654323) == 536870912", "assert highest_Power_of_2(4) == 4", "assert highest_Power_of_2(3) == 2", "assert highest_Power_of_2(1000002) == 524288", "assert highest_Power_of_2(1000003) == 524288", "assert highest_Power_of_2(987654324) == 536870912", "assert highest_Power_of_2(True) == 1", "assert highest_Power_of_2(987654318) == 536870912", "assert highest_Power_of_2(1000005) == 524288", "assert highest_Power_of_2(1000004) == 524288", "assert highest_Power_of_2(40) == 32", "assert highest_Power_of_2(987654325) == 536870912", "assert highest_Power_of_2(999997) == 524288", "assert highest_Power_of_2(39) == 32", "assert highest_Power_of_2(10) == 8", "assert highest_Power_of_2(1000006) == 524288", "assert highest_Power_of_2(1000007) == 524288", "assert highest_Power_of_2(999996) == 524288", "assert highest_Power_of_2(999995) == 524288", "assert highest_Power_of_2(42) == 32", "assert highest_Power_of_2(1000008) == 524288", "assert highest_Power_of_2(987654326) == 536870912", "assert highest_Power_of_2(987654317) == 536870912", "assert highest_Power_of_2(987654327) == 536870912", "assert highest_Power_of_2(987654316) == 536870912", "assert highest_Power_of_2(38) == 32", "assert highest_Power_of_2(9) == 8", "assert highest_Power_of_2(11) == 8", "assert highest_Power_of_2(8) == 8", "assert highest_Power_of_2(12) == 8", "assert highest_Power_of_2(999994) == 524288", "assert highest_Power_of_2(70) == 64", "assert highest_Power_of_2(7) == 4", "assert highest_Power_of_2(37) == 32", "assert highest_Power_of_2(5) == 4", "assert highest_Power_of_2(69) == 64", "assert highest_Power_of_2(36) == 32", "assert highest_Power_of_2(1000009) == 524288", "assert highest_Power_of_2(987654315) == 536870912", "assert highest_Power_of_2(999993) == 524288", "assert highest_Power_of_2(35) == 32", "assert highest_Power_of_2(34) == 32", "assert highest_Power_of_2(13) == 8", "assert highest_Power_of_2(41) == 32", "assert highest_Power_of_2(6) == 4", "assert highest_Power_of_2(43) == 32", "assert highest_Power_of_2(1000010) == 524288", "assert highest_Power_of_2(33) == 32", "assert highest_Power_of_2(987654328) == 536870912", "assert highest_Power_of_2(44) == 32", "assert highest_Power_of_2(987654329) == 536870912", "assert highest_Power_of_2(32) == 32", "assert highest_Power_of_2(45) == 32", "assert highest_Power_of_2(14) == 8", "assert highest_Power_of_2(71) == 64", "assert highest_Power_of_2(999992) == 524288", "assert highest_Power_of_2(1000011) == 524288", "assert highest_Power_of_2(1000012) == 524288", "assert highest_Power_of_2(987654314) == 536870912", "assert highest_Power_of_2(1000013) == 524288", "assert highest_Power_of_2(68) == 64", "assert highest_Power_of_2(72) == 64", "assert highest_Power_of_2(1000014) == 524288", "assert highest_Power_of_2(77) == 64", "assert highest_Power_of_2(78) == 64", "assert highest_Power_of_2(67) == 64", "assert highest_Power_of_2(66) == 64", "assert highest_Power_of_2(73) == 64", "assert highest_Power_of_2(47) == 32", "assert highest_Power_of_2(48) == 32", "assert highest_Power_of_2(987654312) == 536870912", "assert highest_Power_of_2(91) == 64", "assert highest_Power_of_2(79) == 64", "assert highest_Power_of_2(15) == 8", "assert highest_Power_of_2(65) == 64", "assert highest_Power_of_2(987654330) == 536870912", "assert highest_Power_of_2(987654331) == 536870912", "assert highest_Power_of_2(987654332) == 536870912", "assert highest_Power_of_2(987654311) == 536870912", "assert highest_Power_of_2(49) == 32", "assert highest_Power_of_2(46) == 32", "assert highest_Power_of_2(987654313) == 536870912", "assert highest_Power_of_2(1000015) == 524288", "assert highest_Power_of_2(64) == 64", "assert highest_Power_of_2(16) == 16", "assert highest_Power_of_2(90) == 64", "assert highest_Power_of_2(31) == 16", "assert highest_Power_of_2(80) == 64", "assert highest_Power_of_2(74) == 64", "assert highest_Power_of_2(987654333) == 536870912", "assert highest_Power_of_2(999991) == 524288", "assert highest_Power_of_2(50) == 32", "assert highest_Power_of_2(63) == 32" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the n'th lucas number.\nassert find_lucas(9) == 76\nYour code should pass the test:\nassert find_lucas(9) == 76", "test_list": [ "assert find_lucas(9) == 76", "assert find_lucas(4) == 7", "assert find_lucas(3) == 4", "assert find_lucas(0) == 2", "assert find_lucas(1) == 1", "assert find_lucas(True) == 1", "assert find_lucas(False) == 2" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to apply a given format string to all of the elements in a list.\nassert add_string([1,2,3,4],'temp{0}')==['temp1', 'temp2', 'temp3', 'temp4']\nYour code should pass the test:\nassert add_string([1,2,3,4],'temp{0}')==['temp1', 'temp2', 'temp3', 'temp4']", "test_list": [ "assert add_string([1,2,3,4],'temp{0}')==['temp1', 'temp2', 'temp3', 'temp4']", "assert add_string(['a','b','c','d'], 'python{0}')==[ 'pythona', 'pythonb', 'pythonc', 'pythond']", "assert add_string([5,6,7,8],'string{0}')==['string5', 'string6', 'string7', 'string8']", "assert add_string([], 'format{0}') == []", "assert add_string([1, 'two', 3, 'four'], 'item_{0}') == ['item_1', 'item_two', 'item_3', 'item_four']", "assert add_string([9], 'element{0}') == ['element9']", "assert add_string([], '') == []", "assert add_string(['apple', 2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruit_{0}') == ['fruit_apple', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruit_{0}') == ['fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango']", "assert add_string([[3, 'orange', [4, 'banana'], 5], 'mango'], 'fruitorange_{0}') == [\"fruitorange_[3, 'orange', [4, 'banana'], 5]\", 'fruitorange_mango']", "assert add_string([3, 1, 3], 'format{0}') == ['format3', 'format1', 'format3']", "assert add_string([[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5], [3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5], 'mango'], 'fruitorange_{0}') == [\"fruitorange_[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]\", \"fruitorange_[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]\", 'fruitorange_mango']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruitorange_{0}') == ['fruitorange_2', \"fruitorange_[3, 'orange', [4, 'banana'], 5]\", 'fruitorange_mango']", "assert add_string([3, 1, 3, 1], 'format{0}') == ['format3', 'format1', 'format3', 'format1']", "assert add_string(['mafourngo', 2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango']", "assert add_string([[3, 'orange', [4, 'banana'], 5], 'mango'], 'fruittorange_{0}') == [\"fruittorange_[3, 'orange', [4, 'banana'], 5]\", 'fruittorange_mango']", "assert add_string([3, 1, 2, 3, 1], 'format{0}') == ['format3', 'format1', 'format2', 'format3', 'format1']", "assert add_string(['mafourngo', 2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruittorange_{0}') == ['fruittorange_mafourngo', 'fruittorange_2', \"fruittorange_[3, 'orange', [4, 'banana'], 5]\", 'fruittorange_mango']", "assert add_string([3, 1, 2, 1, 3, 1], 'format{0}') == ['format3', 'format1', 'format2', 'format1', 'format3', 'format1']", "assert add_string([[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5], [3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5], 'mango', [3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]], 'format{0}') == [\"format[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]\", \"format[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]\", 'formatmango', \"format[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]\"]", "assert add_string([2, 'mo', [3, 'orange', [4, 'banana'], 5], 'mango'], '') == ['', '', '', '']", "assert add_string([2, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruit_{0}') == ['fruit_2', 'fruit_manfruitorange_{0}o', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango']", "assert add_string([2, 'mo', [3, 'orange', [4, 'banana'], 5], 'mango'], 'two') == ['two', 'two', 'two', 'two']", "assert add_string([3, 1, 3], 'fruit_{0}') == ['fruit_3', 'fruit_1', 'fruit_3']", "assert add_string([2, 'fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 'mango'], 'orange') == ['orange', 'orange', 'orange', 'orange']", "assert add_string([3, 1, 3], 'fruit_element{0}{0}') == ['fruit_element33', 'fruit_element11', 'fruit_element33']", "assert add_string([], 'element{0}') == []", "assert add_string([9], 'elformat{0}ement{0}') == ['elformat9ement9']", "assert add_string([3, 1, 2, 3, 1], 'item_{0}') == ['item_3', 'item_1', 'item_2', 'item_3', 'item_1']", "assert add_string([3, 1, 2, 3, 1], 'fformat{0}') == ['fformat3', 'fformat1', 'fformat2', 'fformat3', 'fformat1']", "assert add_string([3, 1], 'fruit_element{0}{0}') == ['fruit_element33', 'fruit_element11']", "assert add_string(['mafourngo', 2, [3, 'orange', [4, 'banana'], 5], 'manelement{0}go'], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_manelement{0}go']", "assert add_string([2, 'fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 'mango'], 'orangge') == ['orangge', 'orangge', 'orangge', 'orangge']", "assert add_string(['mafourngo', 'magngo', 2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_magngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mafourngo'], 'fruit_{0}') == ['fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mafourngo']", "assert add_string([3, 1, 3], 'formappleat{0}') == ['formappleat3', 'formappleat1', 'formappleat3']", "assert add_string([3, 1, 2, 3, 1], 'fruit_{0}') == ['fruit_3', 'fruit_1', 'fruit_2', 'fruit_3', 'fruit_1']", "assert add_string([[3, 'orange', [4, 'banana'], 5], 'mango', 'mango'], 'fruitorange_{0}') == [\"fruitorange_[3, 'orange', [4, 'banana'], 5]\", 'fruitorange_mango', 'fruitorange_mango']", "assert add_string([1, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruit_{0}') == ['fruit_1', 'fruit_manfruitorange_{0}o', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruitornge_{0}') == ['fruitornge_2', \"fruitornge_[3, 'orange', [4, 'banana'], 5]\", 'fruitornge_mango']", "assert add_string([3, 1, 3, 3], 'format{0}') == ['format3', 'format1', 'format3', 'format3']", "assert add_string([3, 1, 3, 3], 'formamagngot{0}') == ['formamagngot3', 'formamagngot1', 'formamagngot3', 'formamagngot3']", "assert add_string([1, 3], 'fruit_element{0}{0}') == ['fruit_element11', 'fruit_element33']", "assert add_string([3, 2, 3, 1], 'four') == ['four', 'four', 'four', 'four']", "assert add_string(['mafourngo', 2, [3, 'orange', [4, 'banana'], 5], 'mango', 'mafourngo'], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_mango', 'fruit_mafourngo']", "assert add_string([2, 'fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 'mango'], 'orangelformat{0}ement{0}ge') == ['orangelformat2ement2ge', 'orangelformatfruitorange_{0}ementfruitorange_{0}ge', \"orangelformat[3, 'orange', [4, 'banana'], 5]ement[3, 'orange', [4, 'banana'], 5]ge\", 'orangelformatmangoementmangoge']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016, 8.963897856760099], 'element{0}') == ['element-54.79207046236099', 'element-1.103432736060796', 'element-5.540379742792084', 'element30.380744152211463', 'element-38.15549188624485', 'element-20.472707728369016', 'element8.963897856760099']", "assert add_string([3, 1, 2, 3, 5, 2], 'forangeormat{0}') == ['forangeormat3', 'forangeormat1', 'forangeormat2', 'forangeormat3', 'forangeormat5', 'forangeormat2']", "assert add_string([2, 'fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 9, 'mango', 'fruitorange_{0}'], 'orangelformat{0}ement{0}ge') == ['orangelformat2ement2ge', 'orangelformatfruitorange_{0}ementfruitorange_{0}ge', \"orangelformat[3, 'orange', [4, 'banana'], 5]ement[3, 'orange', [4, 'banana'], 5]ge\", 'orangelformat9ement9ge', 'orangelformatmangoementmangoge', 'orangelformatfruitorange_{0}ementfruitorange_{0}ge']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016], 'element{0}') == ['element-54.79207046236099', 'element-1.103432736060796', 'element-5.540379742792084', 'element30.380744152211463', 'element-38.15549188624485', 'element-20.472707728369016']", "assert add_string([3, 0, 2, 2, 3, 1], 'manfruitorange_{0}o') == ['manfruitorange_3o', 'manfruitorange_0o', 'manfruitorange_2o', 'manfruitorange_2o', 'manfruitorange_3o', 'manfruitorange_1o']", "assert add_string([2, 'fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 9, 'mango', 'fruitorange_{0}', 9], 'orangelformat{0}ement{0}ge') == ['orangelformat2ement2ge', 'orangelformatfruitorange_{0}ementfruitorange_{0}ge', \"orangelformat[3, 'orange', [4, 'banana'], 5]ement[3, 'orange', [4, 'banana'], 5]ge\", 'orangelformat9ement9ge', 'orangelformatmangoementmangoge', 'orangelformatfruitorange_{0}ementfruitorange_{0}ge', 'orangelformat9ement9ge']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 0, 'mango'], 'fruitorange_{0}') == ['fruitorange_2', \"fruitorange_[3, 'orange', [4, 'banana'], 5]\", 'fruitorange_0', 'fruitorange_mango']", "assert add_string([3, 1, 3, 1, 3], 'format{0}') == ['format3', 'format1', 'format3', 'format1', 'format3']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016, 8.963897856760099, -1.103432736060796], 'element{0}') == ['element-54.79207046236099', 'element-1.103432736060796', 'element-5.540379742792084', 'element30.380744152211463', 'element-38.15549188624485', 'element-20.472707728369016', 'element8.963897856760099', 'element-1.103432736060796']", "assert add_string([2, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruiut_{0}') == ['fruiut_2', 'fruiut_manfruitorange_{0}o', \"fruiut_[3, 'orange', [4, 'banana'], 5]\", 'fruiut_mango']", "assert add_string(['fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 'mango'], 'orange') == ['orange', 'orange', 'orange']", "assert add_string(['fruitorange_{0}', [3, 'orange', [4, 'banana'], 5, 'orange'], 'mango'], 'orange') == ['orange', 'orange', 'orange']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016], 'eletwoment{0}') == ['eletwoment-54.79207046236099', 'eletwoment-1.103432736060796', 'eletwoment-5.540379742792084', 'eletwoment30.380744152211463', 'eletwoment-38.15549188624485', 'eletwoment-20.472707728369016']", "assert add_string([2, 'fruitorange_{0}', [3, 'orange', [4, 'banana'], 5], 'mango'], 'fruittorange_{0}') == ['fruittorange_2', 'fruittorange_fruitorange_{0}', \"fruittorange_[3, 'orange', [4, 'banana'], 5]\", 'fruittorange_mango']", "assert add_string(['mafourngo', 2, [3, 'orange', [4, 'banana'], 5], 'manelement{0}go', 2], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_manelement{0}go', 'fruit_2']", "assert add_string([3, 1, 3, 3, 3, 3], 'formamagngot{0}') == ['formamagngot3', 'formamagngot1', 'formamagngot3', 'formamagngot3', 'formamagngot3', 'formamagngot3']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016, 8.963897856760099, -1.103432736060796, -20.472707728369016], 'element{0}') == ['element-54.79207046236099', 'element-1.103432736060796', 'element-5.540379742792084', 'element30.380744152211463', 'element-38.15549188624485', 'element-20.472707728369016', 'element8.963897856760099', 'element-1.103432736060796', 'element-20.472707728369016']", "assert add_string([3, 1, 3, 3], 'formaelformat{0}ement{0}t{0}') == ['formaelformat3ement3t3', 'formaelformat1ement1t1', 'formaelformat3ement3t3', 'formaelformat3ement3t3']", "assert add_string([65.38356734647485, {'5': -38.15549188624485, '0': 77.08571014199265, '72': 26.909869216336247, '-79': -59.110541980068355, '19': -38.15549188624485, '94': -5.540379742792084, '4': -9.108805577472495, '2': 53.05257624758963}, [0, 4], 'orange', False, {'-20.472707728369016': 1, '-18.449283331918025': 10}, [-31, 90, 93.5906374974764, None, True, 5, ['fruitornge_{0}'], False, True], ['mafourngo', 'xd', 'AOqy', 'magngo', '', 'elformat{0}ement{0}', 'UYjd', 'mafourngo', 'fruit_element{0}{0}'], 'ocuNQbFmSX'], 'fruiut_{0}') == ['fruiut_65.38356734647485', \"fruiut_{'5': -38.15549188624485, '0': 77.08571014199265, '72': 26.909869216336247, '-79': -59.110541980068355, '19': -38.15549188624485, '94': -5.540379742792084, '4': -9.108805577472495, '2': 53.05257624758963}\", 'fruiut_[0, 4]', 'fruiut_orange', 'fruiut_False', \"fruiut_{'-20.472707728369016': 1, '-18.449283331918025': 10}\", \"fruiut_[-31, 90, 93.5906374974764, None, True, 5, ['fruitornge_{0}'], False, True]\", \"fruiut_['mafourngo', 'xd', 'AOqy', 'magngo', '', 'elformat{0}ement{0}', 'UYjd', 'mafourngo', 'fruit_element{0}{0}']\", 'fruiut_ocuNQbFmSX']", "assert add_string(['mafourngo', 2, [3, 'orange', [4, 'banana'], 5], 'mango'], 'two') == ['two', 'two', 'two', 'two']", "assert add_string([3, 72, 3, 1], 'format{0}') == ['format3', 'format72', 'format3', 'format1']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mango', 2], 'fruitorange_{0}') == ['fruitorange_2', \"fruitorange_[3, 'orange', [4, 'banana'], 5]\", 'fruitorange_mango', 'fruitorange_2']", "assert add_string([3, 1, 3, 3], 'two') == ['two', 'two', 'two', 'two']", "assert add_string(['mafourngo', 'magngo', 2, [3, 'orange', [4, 'banana'], 5], 'fruiut_{0}', 'mango'], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_magngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_fruiut_{0}', 'fruit_mango']", "assert add_string(['mango'], 'fruittorange_{0}') == ['fruittorange_mango']", "assert add_string(['mafourngo', 2, 'mafourgo', [3, 'orange', [4, 'banana'], 5], 'manelement{0}go'], 'apple') == ['apple', 'apple', 'apple', 'apple', 'apple']", "assert add_string(['mao', 'fruitornge_{0}', 'mango'], 'fruittorange_{0}') == ['fruittorange_mao', 'fruittorange_fruitornge_{0}', 'fruittorange_mango']", "assert add_string([-54.79207046236099, -59.110541980068355, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016], 'eletwometnt{0}') == ['eletwometnt-54.79207046236099', 'eletwometnt-59.110541980068355', 'eletwometnt-1.103432736060796', 'eletwometnt-5.540379742792084', 'eletwometnt30.380744152211463', 'eletwometnt-38.15549188624485', 'eletwometnt-20.472707728369016']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016, 8.963897856760099, -1.103432736060796, -20.472707728369016, 8.963897856760099], 'formappleat{0}') == ['formappleat-54.79207046236099', 'formappleat-1.103432736060796', 'formappleat-5.540379742792084', 'formappleat30.380744152211463', 'formappleat-38.15549188624485', 'formappleat-20.472707728369016', 'formappleat8.963897856760099', 'formappleat-1.103432736060796', 'formappleat-20.472707728369016', 'formappleat8.963897856760099']", "assert add_string([2, 'man', 'mango', [3, 'orange', [4, 'banana'], 5, [4, 'banana']], 'mango'], 'fruittorange_{0}') == ['fruittorange_2', 'fruittorange_man', 'fruittorange_mango', \"fruittorange_[3, 'orange', [4, 'banana'], 5, [4, 'banana']]\", 'fruittorange_mango']", "assert add_string([[3, 'orange', [4, 'banana'], 5], 'mango'], 'fruittorangmantgoe_{0}') == [\"fruittorangmantgoe_[3, 'orange', [4, 'banana'], 5]\", 'fruittorangmantgoe_mango']", "assert add_string([[3, 'orange', [4, 'banana'], 5], 'mango', 'mango'], 'fruitorangmanfruitorange_{0}oe_{0}') == [\"fruitorangmanfruitorange_[3, 'orange', [4, 'banana'], 5]oe_[3, 'orange', [4, 'banana'], 5]\", 'fruitorangmanfruitorange_mangooe_mango', 'fruitorangmanfruitorange_mangooe_mango']", "assert add_string([[3, 'orange', [4, 'banana'], 5, 5], 2, [3, 'orange', [4, 'banana'], 5, 5], 'mango'], 'fruit_{0}') == [\"fruit_[3, 'orange', [4, 'banana'], 5, 5]\", 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5, 5]\", 'fruit_mango']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mafourngo'], 'formaelformat{0}ement{0}t{0}') == ['formaelformat2ement2t2', \"formaelformat[3, 'orange', [4, 'banana'], 5]ement[3, 'orange', [4, 'banana'], 5]t[3, 'orange', [4, 'banana'], 5]\", 'formaelformatmafourngoementmafourngotmafourngo']", "assert add_string([[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5], 'mango'], 'fruitorange_{0}') == [\"fruitorange_[3, [4, 'element{0}'], 'orange', [4, 'element{0}'], 5]\", 'fruitorange_mango']", "assert add_string([3, 1, 3, 3], 'tmanfruitorange_{0}oo') == ['tmanfruitorange_3oo', 'tmanfruitorange_1oo', 'tmanfruitorange_3oo', 'tmanfruitorange_3oo']", "assert add_string([3, 0, 2, 2, 2, 3, 1], 'manfruitorange_{0}o') == ['manfruitorange_3o', 'manfruitorange_0o', 'manfruitorange_2o', 'manfruitorange_2o', 'manfruitorange_2o', 'manfruitorange_3o', 'manfruitorange_1o']", "assert add_string(['formamagngot{0}', 2, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango', [3, 'orange', [4, 'banana'], 5]], 'fruiut_{0}') == ['fruiut_formamagngot{0}', 'fruiut_2', 'fruiut_manfruitorange_{0}o', \"fruiut_[3, 'orange', [4, 'banana'], 5]\", 'fruiut_mango', \"fruiut_[3, 'orange', [4, 'banana'], 5]\"]", "assert add_string([3, 2, 0, 2, 2, 3, 1, 2, 1, 2], 'manfruitorange_{0}o') == ['manfruitorange_3o', 'manfruitorange_2o', 'manfruitorange_0o', 'manfruitorange_2o', 'manfruitorange_2o', 'manfruitorange_3o', 'manfruitorange_1o', 'manfruitorange_2o', 'manfruitorange_1o', 'manfruitorange_2o']", "assert add_string([2, 0, 2, 2, 3, 1, 2, 1, 2, 2], 'manfruitorange_{0}o') == ['manfruitorange_2o', 'manfruitorange_0o', 'manfruitorange_2o', 'manfruitorange_2o', 'manfruitorange_3o', 'manfruitorange_1o', 'manfruitorange_2o', 'manfruitorange_1o', 'manfruitorange_2o', 'manfruitorange_2o']", "assert add_string([3, 0, 1, 3, 3], 'formaelformat{0}ement{0}t{0}') == ['formaelformat3ement3t3', 'formaelformat0ement0t0', 'formaelformat1ement1t1', 'formaelformat3ement3t3', 'formaelformat3ement3t3']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016, 8.963897856760099, -1.103432736060796, -20.472707728369016], 'elelment{0}') == ['elelment-54.79207046236099', 'elelment-1.103432736060796', 'elelment-5.540379742792084', 'elelment30.380744152211463', 'elelment-38.15549188624485', 'elelment-20.472707728369016', 'elelment8.963897856760099', 'elelment-1.103432736060796', 'elelment-20.472707728369016']", "assert add_string([3, 1, 1, 1, 3, 1], 'tformat{0}') == ['tformat3', 'tformat1', 'tformat1', 'tformat1', 'tformat3', 'tformat1']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.472707728369016, 8.963897856760099], 'elemelnt{0}') == ['elemelnt-54.79207046236099', 'elemelnt-1.103432736060796', 'elemelnt-5.540379742792084', 'elemelnt30.380744152211463', 'elemelnt-38.15549188624485', 'elemelnt-20.472707728369016', 'elemelnt8.963897856760099']", "assert add_string(['formamagngot{0}', 2, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango', [3, 'orange', [4, 'banana'], 5]], 'formappleat{0}') == ['formappleatformamagngot{0}', 'formappleat2', 'formappleatmanfruitorange_{0}o', \"formappleat[3, 'orange', [4, 'banana'], 5]\", 'formappleatmango', \"formappleat[3, 'orange', [4, 'banana'], 5]\"]", "assert add_string([2, 'mo', [3, 'orange', [4, 'banana'], 5], 'mango'], 'wtwo') == ['wtwo', 'wtwo', 'wtwo', 'wtwo']", "assert add_string([3, 1, 3, 3], 'formaelformat{0}emment{0}t{0}') == ['formaelformat3emment3t3', 'formaelformat1emment1t1', 'formaelformat3emment3t3', 'formaelformat3emment3t3']", "assert add_string([65.38356734647485, {'5': -38.15549188624485, '0': 77.08571014199265, '72': 26.909869216336247, '-79': -59.110541980068355, '19': -38.15549188624485, '94': -5.540379742792084, '4': -9.108805577472495, '2': 53.05257624758963}, [0, 4], 'orange', False, {'-20.472707728369016': 1, '-18.449283331918025': 10}, [-31, 90, 93.5906374974764, None, True, 5, ['fruitornge_{0}'], False, True], ['mafourngo', 'xd', 'AOqy', 'magngo', '', 'elformat{0}ement{0}', 'UYjd', 'mafourngo', 'fruit_element{0}{0}'], 'ocuNQbFmSX'], 'apple') == ['apple', 'apple', 'apple', 'apple', 'apple', 'apple', 'apple', 'apple', 'apple']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mango'], '') == ['', '', '']", "assert add_string(['mafourngo', 2, 'mafourgo', [3, 'orange', [4, 'banana'], 5], 'manelement{0}go'], 'appltmanfruitorange_{0}ooe') == ['appltmanfruitorange_mafourngoooe', 'appltmanfruitorange_2ooe', 'appltmanfruitorange_mafourgoooe', \"appltmanfruitorange_[3, 'orange', [4, 'banana'], 5]ooe\", 'appltmanfruitorange_manelement{0}goooe']", "assert add_string([[3, '', [4, 'banana'], 5], 'formamagngot{0}', 2, 'manfruitorange_{0}o', [3, '', [4, 'banana'], 5], 'mango', [3, '', [4, 'banana'], 5]], 'formapplet{0}') == [\"formapplet[3, '', [4, 'banana'], 5]\", 'formappletformamagngot{0}', 'formapplet2', 'formappletmanfruitorange_{0}o', \"formapplet[3, '', [4, 'banana'], 5]\", 'formappletmango', \"formapplet[3, '', [4, 'banana'], 5]\"]", "assert add_string([30.380744152211463, -1.103432736060796], 'four') == ['four', 'four']", "assert add_string([-54.79207046236099, -1.103432736060796, -5.540379742792084, 30.380744152211463, -38.15549188624485, -20.177981698336826, 8.963897856760099], 'eletwoment{0}') == ['eletwoment-54.79207046236099', 'eletwoment-1.103432736060796', 'eletwoment-5.540379742792084', 'eletwoment30.380744152211463', 'eletwoment-38.15549188624485', 'eletwoment-20.177981698336826', 'eletwoment8.963897856760099']", "assert add_string([2, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango', 'manfruitorange_{0}o'], 'fruiut_{0}') == ['fruiut_2', 'fruiut_manfruitorange_{0}o', \"fruiut_[3, 'orange', [4, 'banana'], 5]\", 'fruiut_mango', 'fruiut_manfruitorange_{0}o']", "assert add_string([1, 'manfruitorange_{0}o', [3, 'orange', [4, 'banana'], 5], 'mango'], 'tmanfruitorange_{0}oo') == ['tmanfruitorange_1oo', 'tmanfruitorange_manfruitorange_{0}ooo', \"tmanfruitorange_[3, 'orange', [4, 'banana'], 5]oo\", 'tmanfruitorange_mangooo']", "assert add_string([], 'orangelformat{0}ement{0}ge') == []", "assert add_string(['mafourngo', 2, [3, 'orange', 'fruit_element{0}{0}', [4, 'banana'], 5], 'mango'], 'two') == ['two', 'two', 'two', 'two']", "assert add_string(['mafourngo', 'magngo', 2, [3, 'orange', [4, 'banana'], 5], 'fruiut_{0}', 'mango', 'mafourngo'], 'fruit_{0}') == ['fruit_mafourngo', 'fruit_magngo', 'fruit_2', \"fruit_[3, 'orange', [4, 'banana'], 5]\", 'fruit_fruiut_{0}', 'fruit_mango', 'fruit_mafourngo']", "assert add_string([2, 'mafourgo', [3, 'orange', [4, 'banana'], 5], 'manelement{0}go', 'manelement{0}go'], 'appltmanfruitorange_{0}ooe') == ['appltmanfruitorange_2ooe', 'appltmanfruitorange_mafourgoooe', \"appltmanfruitorange_[3, 'orange', [4, 'banana'], 5]ooe\", 'appltmanfruitorange_manelement{0}goooe', 'appltmanfruitorange_manelement{0}goooe']", "assert add_string([2, [3, 'orange', [4, 'banana'], 5], 'mafourngo'], 'fruit_elelment{0}{0}') == ['fruit_elelment22', \"fruit_elelment[3, 'orange', [4, 'banana'], 5][3, 'orange', [4, 'banana'], 5]\", 'fruit_elelmentmafourngomafourngo']", "assert add_string([3, 2, 0, 2, 2, 3, 1, 2, 1, 2], 'formapplet{0}') == ['formapplet3', 'formapplet2', 'formapplet0', 'formapplet2', 'formapplet2', 'formapplet3', 'formapplet1', 'formapplet2', 'formapplet1', 'formapplet2']", "assert add_string(['mafournfruitorange_{0}go', 2, [3, 'orange', [4, 'banana'], 5], 'mango', 'mafourngo'], 'fruiut_{0}') == ['fruiut_mafournfruitorange_{0}go', 'fruiut_2', \"fruiut_[3, 'orange', [4, 'banana'], 5]\", 'fruiut_mango', 'fruiut_mafourngo']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert more than one list to nested dictionary.\nassert convert_list_dictionary([\"S001\", \"S002\", \"S003\", \"S004\"],[\"Adina Park\", \"Leyton Marsh\", \"Duncan Boyle\", \"Saim Richards\"] ,[85, 98, 89, 92])==[{'S001': {'Adina Park': 85}}, {'S002': {'Leyton Marsh': 98}}, {'S003': {'Duncan Boyle': 89}}, {'S004': {'Saim Richards': 92}}]\nYour code should pass the test:\nassert convert_list_dictionary([\"S001\", \"S002\", \"S003\", \"S004\"],[\"Adina Park\", \"Leyton Marsh\", \"Duncan Boyle\", \"Saim Richards\"] ,[85, 98, 89, 92])==[{'S001': {'Adina Park': 85}}, {'S002': {'Leyton Marsh': 98}}, {'S003': {'Duncan Boyle': 89}}, {'S004': {'Saim Richards': 92}}]", "test_list": [ "assert convert_list_dictionary([\"S001\", \"S002\", \"S003\", \"S004\"],[\"Adina Park\", \"Leyton Marsh\", \"Duncan Boyle\", \"Saim Richards\"] ,[85, 98, 89, 92])==[{'S001': {'Adina Park': 85}}, {'S002': {'Leyton Marsh': 98}}, {'S003': {'Duncan Boyle': 89}}, {'S004': {'Saim Richards': 92}}]", "assert convert_list_dictionary([\"abc\",\"def\",\"ghi\",\"jkl\"],[\"python\",\"program\",\"language\",\"programs\"],[100,200,300,400])==[{'abc':{'python':100}},{'def':{'program':200}},{'ghi':{'language':300}},{'jkl':{'programs':400}}]", "assert convert_list_dictionary([\"A1\",\"A2\",\"A3\",\"A4\"],[\"java\",\"C\",\"C++\",\"DBMS\"],[10,20,30,40])==[{'A1':{'java':10}},{'A2':{'C':20}},{'A3':{'C++':30}},{'A4':{'DBMS':40}}]", "assert convert_list_dictionary(['abc', 'def', 'ghi', 'jkl'], ['python', 'program', 'language', 'programs'], [{'1': 'a', '2': 'b'}, {'3': 'c'}, 4, ['x', 'y', 'z']]) == [{'abc': {'python': {'1': 'a', '2': 'b'}}}, {'def': {'program': {'3': 'c'}}}, {'ghi': {'language': 4}}, {'jkl': {'programs': ['x', 'y', 'z']}}]", "assert convert_list_dictionary(['A1', 'A2', 'A3', 'A4'], [10, 20, 30, 40], [['a', 'b'], ['c', 'd', 'e'], [1, 2, 3, 4], {'x': 1, 'y': 2}]) == [{'A1': {10: ['a', 'b']}}, {'A2': {20: ['c', 'd', 'e']}}, {'A3': {30: [1, 2, 3, 4]}}, {'A4': {40: {'x': 1, 'y': 2}}}]", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S004'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'S001': {'Adina Park': [1, 2, 3]}}, {'S002': {'Leyton Marsh': [4, 5, 6]}}, {'S003': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary([], [], []) == []", "assert convert_list_dictionary([], [], ['qePIokPMx', -88.68963858646266, False, 92.17031809189785, 20]) == []", "assert convert_list_dictionary([], [False, True, False, True, True, False, False], []) == []", "assert convert_list_dictionary(['python', 'program', 'lMarshanguage', 'programs'], ['python', 'program', 'lMarshanguage', 'programs'], ['python', 'program', 'lMarshanguage', 'programs']) == [{'python': {'python': 'python'}}, {'program': {'program': 'program'}}, {'lMarshanguage': {'lMarshanguage': 'lMarshanguage'}}, {'programs': {'programs': 'programs'}}]", "assert convert_list_dictionary([], [92.17031809189785], []) == []", "assert convert_list_dictionary([10, 20, 30, 40, 20], [10, 20, 30, 40, 20], [['a', 'b'], [1, 2, 3, 4], {'x': 1, 'y': 2}]) == [{10: {10: ['a', 'b']}}, {20: {20: [1, 2, 3, 4]}}, {30: {30: {'x': 1, 'y': 2}}}]", "assert convert_list_dictionary([False, True, False, True, True, False, False], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266], [False, True, False, True, True, False, False]) == [{False: {81.68418398262912: False}}, {True: {-91.09614035628569: True}}, {False: {-99.76860339291179: False}}, {True: {-88.68963858646266: True}}, {True: {-88.68963858646266: True}}, {False: {37.75918765306639: False}}, {False: {57.03263542097301: False}}]", "assert convert_list_dictionary([False, True, False, True, True, True], [False, True, False, True, True, True], [False, True, False, True, True, True]) == [{False: {False: False}}, {True: {True: True}}, {False: {False: False}}, {True: {True: True}}, {True: {True: True}}, {True: {True: True}}]", "assert convert_list_dictionary([92.17031809189785], ['Adina', 'Boyle'], []) == []", "assert convert_list_dictionary([81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266], [True, False, True, False, False], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266]) == [{81.68418398262912: {True: 81.68418398262912}}, {-91.09614035628569: {False: -91.09614035628569}}, {-99.76860339291179: {True: -99.76860339291179}}, {-88.68963858646266: {False: -88.68963858646266}}, {-88.68963858646266: {False: -88.68963858646266}}]", "assert convert_list_dictionary([True, True, False, False, True], [], []) == []", "assert convert_list_dictionary(['python', 'lMarshanguage', 'programs'], ['python', 'lMarshanguage', 'programs'], ['python', 'lMarshanguage', 'programs']) == [{'python': {'python': 'python'}}, {'lMarshanguage': {'lMarshanguage': 'lMarshanguage'}}, {'programs': {'programs': 'programs'}}]", "assert convert_list_dictionary([20, 4, -85, -8, 20, 5, 73, 13, 2], [], [20, 4, -85, -8, 20, 5, 73, 13, 2]) == []", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S00', 'S004'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'S001': {'Adina Park': [1, 2, 3]}}, {'S002': {'Leyton Marsh': [4, 5, 6]}}, {'S003': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary([], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20]) == []", "assert convert_list_dictionary(['qePIokPMx', -88.68963858646266, 92.17031809189785, 20], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20], []) == []", "assert convert_list_dictionary([False, True, False, True, False], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20]) == [{False: {'qePIokPMx': 'qePIokPMx'}}, {True: {-88.68963858646266: -88.68963858646266}}, {False: {92.17031809189785: 92.17031809189785}}, {True: {20: 20}}]", "assert convert_list_dictionary([], [92.17031809189785, 92.17031809189785], [True, True, False, False, False]) == []", "assert convert_list_dictionary([], [], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20]) == []", "assert convert_list_dictionary([10, 20, 30, 40, 20], [10, 20, 30, 40, 20], [['a', 'b'], [1, 3, 3, 4], [1, 3, 3, 4], {'x': 1, 'y': 2}]) == [{10: {10: ['a', 'b']}}, {20: {20: [1, 3, 3, 4]}}, {30: {30: [1, 3, 3, 4]}}, {40: {40: {'x': 1, 'y': 2}}}]", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20], ['qePIokPMx', 92.17031809189785, 20], ['qePIokPMx', 92.17031809189785, 20]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}]", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S00', 'S004', 'S003'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'S001': {'Adina Park': [1, 2, 3]}}, {'S002': {'Leyton Marsh': [4, 5, 6]}}, {'S003': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary([92.17031809189785], [], [92.17031809189785]) == []", "assert convert_list_dictionary(['d', 'A3', 'RaU', 'Park', 'A3', 'ffyPs', 'Duncan', 'Leyton'], [False, True, False, True, True, False, False], []) == []", "assert convert_list_dictionary(['A1', 'A2', 'A3', 'A4'], [10, 20, 30, 40], [['a', 'b'], ['c', 'd', 'e'], {'x': 1, 'y': 2}]) == [{'A1': {10: ['a', 'b']}}, {'A2': {20: ['c', 'd', 'e']}}, {'A3': {30: {'x': 1, 'y': 2}}}]", "assert convert_list_dictionary([81.68418398262912, -91.09614035628569, 57.03263542097301, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266], [81.68418398262912, -91.09614035628569, 57.03263542097301, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266], [81.68418398262912, -91.09614035628569, 57.03263542097301, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266]) == [{81.68418398262912: {81.68418398262912: 81.68418398262912}}, {-91.09614035628569: {-91.09614035628569: -91.09614035628569}}, {57.03263542097301: {57.03263542097301: 57.03263542097301}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {37.75918765306639: {37.75918765306639: 37.75918765306639}}, {57.03263542097301: {57.03263542097301: 57.03263542097301}}, {-2.5121677165315077: {-2.5121677165315077: -2.5121677165315077}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}]", "assert convert_list_dictionary([False, True, False, True, True, False, True], [81.68418398262912, -29.92530843974366, 91.9700693495451, 3.8439202491777706, -2.811244688688049, -91.09614035628569, 92.17031809189785, 37.75918765306639, 37.75918765306639, -44.15533537486549], []) == []", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S00', 'S004'], ['x', 'Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'S001': {'x': [1, 2, 3]}}, {'S002': {'Adina Park': [4, 5, 6]}}, {'S003': {'Leyton Marsh': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary(['python', 'programs'], ['python', 'programs'], ['python', 'programs']) == [{'python': {'python': 'python'}}, {'programs': {'programs': 'programs'}}]", "assert convert_list_dictionary(['abc', 'def', 'ghi', 'jkl'], ['python', 'program', 'lganguage', 'language', 'programs'], [{'1': 'a', '2': 'b'}, {'3': 'c'}, 4, ['x', 'y', 'z']]) == [{'abc': {'python': {'1': 'a', '2': 'b'}}}, {'def': {'program': {'3': 'c'}}}, {'ghi': {'lganguage': 4}}, {'jkl': {'language': ['x', 'y', 'z']}}]", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}]", "assert convert_list_dictionary([False, True, False, True, True, True, False], [False, True, False, True, True, True, False], [False, True, False, True, True, True, False]) == [{False: {False: False}}, {True: {True: True}}, {False: {False: False}}, {True: {True: True}}, {True: {True: True}}, {True: {True: True}}, {False: {False: False}}]", "assert convert_list_dictionary(['qePIokPMx', 20, 92.17031809189785], ['qePIokPMx', 20, 92.17031809189785], ['qePIokPMx', 20, 92.17031809189785]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {20: {20: 20}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}]", "assert convert_list_dictionary([False, True, False, True, True, True, True], [False, True, False, True, True, True, True], [False, True, False, True, True, True, True]) == [{False: {False: False}}, {True: {True: True}}, {False: {False: False}}, {True: {True: True}}, {True: {True: True}}, {True: {True: True}}, {True: {True: True}}]", "assert convert_list_dictionary(['Duncan Boyle', -88.68963858646266, 92.17031809189785, 20], ['Duncan Boyle', -88.68963858646266, 92.17031809189785, 20], ['Duncan Boyle', -88.68963858646266, 92.17031809189785, 20]) == [{'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}]", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S00', 'S004'], ['x', 'Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['x', 'Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards']) == [{'S001': {'x': 'x'}}, {'S002': {'Adina Park': 'Adina Park'}}, {'S003': {'Leyton Marsh': 'Leyton Marsh'}}, {'S00': {'Duncan Boyle': 'Duncan Boyle'}}, {'S004': {'Saim Richards': 'Saim Richards'}}]", "assert convert_list_dictionary(['def', 'Duncan Boyle', 'ghi', 'jkl'], ['def', 'Duncan Boyle', 'ghi', 'jkl'], ['python', 'Saim Richards', 'lganguage', 'language', 'programs']) == [{'def': {'def': 'python'}}, {'Duncan Boyle': {'Duncan Boyle': 'Saim Richards'}}, {'ghi': {'ghi': 'lganguage'}}, {'jkl': {'jkl': 'language'}}]", "assert convert_list_dictionary(['Duncan Boyle', -88.68963858646266, -91.09614035628569, 19], ['Duncan Boyle', -88.68963858646266, -91.09614035628569, 19], ['Duncan Boyle', -88.68963858646266, -91.09614035628569, 19]) == [{'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-91.09614035628569: {-91.09614035628569: -91.09614035628569}}, {19: {19: 19}}]", "assert convert_list_dictionary([False, True, False, True, True, False, True], [81.68418398262912, 3.8439202491777706, -29.92530843974366, 91.9700693495451, 3.8439202491777706, -2.811244688688049, -91.09614035628569, 92.17031809189785, 37.75918765306639, 37.75918765306639, -44.15533537486549], []) == []", "assert convert_list_dictionary([92.39137694572081, 92.17031809189785], [], [92.39137694572081, 92.17031809189785]) == []", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 'qePIokPMx', 'qePIokPMx'], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 'qePIokPMx', 'qePIokPMx'], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 'qePIokPMx', 'qePIokPMx']) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}]", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S004'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}, [1, 2, 3]]) == [{'S001': {'Adina Park': [1, 2, 3]}}, {'S002': {'Leyton Marsh': [4, 5, 6]}}, {'S003': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}, {'S004': {'Saim Richards': [1, 2, 3]}}]", "assert convert_list_dictionary(['x', 'Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Leyton Marsh', 'x'], ['x', 'Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Leyton Marsh', 'x'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'x': {'x': [1, 2, 3]}}, {'Adina Park': {'Adina Park': [4, 5, 6]}}, {'Leyton Marsh': {'Leyton Marsh': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary(['S001', 'S00Leyton2', 'S003', 'S00', 'S004'], ['S001', 'S00Leyton2', 'S003', 'S00', 'S004'], ['x', 'def', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards']) == [{'S001': {'S001': 'x'}}, {'S00Leyton2': {'S00Leyton2': 'def'}}, {'S003': {'S003': 'Leyton Marsh'}}, {'S00': {'S00': 'Duncan Boyle'}}, {'S004': {'S004': 'Saim Richards'}}]", "assert convert_list_dictionary(['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}, {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'Adina Park': {'Adina Park': [1, 2, 3]}}, {'Leyton Marsh': {'Leyton Marsh': [4, 5, 6]}}, {'Duncan Boyle': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}, {'Saim Richards': {'Saim Richards': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 92.17031809189785]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}]", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20], ['qePIokPMx', 92.17031809189785, 20], []) == []", "assert convert_list_dictionary(['Leyton Marsh', 'def', 'Duncan Boyle', 'Saim Richards'], ['Leyton Marsh', 'def', 'Duncan Boyle', 'Saim Richards'], ['S001', 'S00Leyton2', 'S003', 'S00', 'S004']) == [{'Leyton Marsh': {'Leyton Marsh': 'S001'}}, {'def': {'def': 'S00Leyton2'}}, {'Duncan Boyle': {'Duncan Boyle': 'S003'}}, {'Saim Richards': {'Saim Richards': 'S00'}}]", "assert convert_list_dictionary([81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, 57.03263542097301, -2.5121677165315077, -88.68963858646266], [True, False, True, False, False], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, 37.75918765306639, 57.03263542097301, 57.03263542097301, -2.5121677165315077, -88.68963858646266]) == [{81.68418398262912: {True: 81.68418398262912}}, {-91.09614035628569: {False: -91.09614035628569}}, {-99.76860339291179: {True: -99.76860339291179}}, {-88.68963858646266: {False: -88.68963858646266}}, {-88.68963858646266: {False: -88.68963858646266}}]", "assert convert_list_dictionary([92.17031809189785], ['Adina', 'Boyle'], [-17, 3, 10]) == [{92.17031809189785: {'Adina': -17}}]", "assert convert_list_dictionary([], [92.17031809189785, 92.17031809189785], [True, True, False, False, False, False]) == []", "assert convert_list_dictionary([True, False, True, False, True, True, False, True], [-105.42260580914375, 81.68418398262912, 3.8439202491777706, -29.92530843974366, 91.9700693495451, 3.8439202491777706, -2.811244688688049, -91.09614035628569, 92.17031809189785, 37.75918765306639, 37.75918765306639, -44.15533537486549], []) == []", "assert convert_list_dictionary(['Adina Park', 'Leyton Marsh', 'Duncan Boyle'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'Adina Park': {'Adina Park': [1, 2, 3]}}, {'Leyton Marsh': {'Leyton Marsh': [4, 5, 6]}}, {'Duncan Boyle': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 1, 92.17031809189785, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 1, 92.17031809189785, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 1, 92.17031809189785, 92.17031809189785]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {1: {1: 1}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}]", "assert convert_list_dictionary(['qePIokPMx', 56.8935355233056, 92.17031809189785, 20, 92.17031809189785, 92.17031809189785, 92.17031809189785], ['qePIokPMx', 56.8935355233056, 92.17031809189785, 20, 92.17031809189785, 92.17031809189785, 92.17031809189785], ['qePIokPMx', 56.8935355233056, 92.17031809189785, 20, 92.17031809189785, 92.17031809189785, 92.17031809189785]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {56.8935355233056: {56.8935355233056: 56.8935355233056}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}]", "assert convert_list_dictionary(['Duncan Boyle', 92.17031809189785, 2], ['Duncan Boyle', 92.17031809189785, 2], ['Duncan Boyle', 92.17031809189785, 2]) == [{'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {2: {2: 2}}]", "assert convert_list_dictionary([], [False, True, False, True, True, False, True, False], []) == []", "assert convert_list_dictionary(['Adina Park', 'ghi', 'a', 'S004', 'oVDxoixzW', 'IjKiPHTZYR'], [74.62440942155206, -24.89013707770465, 10, 13, -105.42260580914375, 'program'], []) == []", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S004'], ['Adina Park', 'qePIokPMx', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}]) == [{'S001': {'Adina Park': [1, 2, 3]}}, {'S002': {'qePIokPMx': [4, 5, 6]}}, {'S003': {'Leyton Marsh': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary([-99.76860339291179, 39.84690584810048, 62.189883068165244, 48.27284080844191, -76.69894057820215, -0.5834249281476502, 12.15338911271509, 8.777721336176342, -78.25134314005295, 92.39137694572081, 12.15338911271509], [], []) == []", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20, 20], ['qePIokPMx', 92.17031809189785, 20, 20], ['qePIokPMx', 92.17031809189785, 20, 20]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {20: {20: 20}}]", "assert convert_list_dictionary(['def', 'Duncan Boyle', 'ghi', 'jkl'], ['def', 'Duncan Boyle', 'ghi', 'jkl'], ['def', 'Duncan Boyle', 'ghi', 'jkl']) == [{'def': {'def': 'def'}}, {'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {'ghi': {'ghi': 'ghi'}}, {'jkl': {'jkl': 'jkl'}}]", "assert convert_list_dictionary([-91.09614035628569, 92.17031809189785], [-91.09614035628569, 92.17031809189785], []) == []", "assert convert_list_dictionary([], [92.17031809189785], [92.17031809189785]) == []", "assert convert_list_dictionary(['Duncan Boyle', 2], ['Duncan Boyle', 2], ['Duncan Boyle', 2]) == [{'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {2: {2: 2}}]", "assert convert_list_dictionary([-88.68963858646266, 92.17031809189785, 20, 20], [-88.68963858646266, 92.17031809189785, 20, 20], [-88.68963858646266, 92.17031809189785, 20, 20]) == [{-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {20: {20: 20}}]", "assert convert_list_dictionary([81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, -29.92530843974366, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266, -88.68963858646266], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, -29.92530843974366, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266, -88.68963858646266], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, -29.92530843974366, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266, -88.68963858646266]) == [{81.68418398262912: {81.68418398262912: 81.68418398262912}}, {-91.09614035628569: {-91.09614035628569: -91.09614035628569}}, {-99.76860339291179: {-99.76860339291179: -99.76860339291179}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-29.92530843974366: {-29.92530843974366: -29.92530843974366}}, {37.75918765306639: {37.75918765306639: 37.75918765306639}}, {57.03263542097301: {57.03263542097301: 57.03263542097301}}, {-2.5121677165315077: {-2.5121677165315077: -2.5121677165315077}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}]", "assert convert_list_dictionary(['python', 'programs', 'python'], ['python', 'programs', 'python'], ['python', 'programs', 'python']) == [{'python': {'python': 'python'}}, {'programs': {'programs': 'programs'}}, {'python': {'python': 'python'}}]", "assert convert_list_dictionary([], [92.17031809189785, 92.17031809189785], [92.17031809189785, 92.17031809189785]) == []", "assert convert_list_dictionary([], [-13.280024492899287, -2.811244688688049, 92.39137694572081, 75.06000739007223, -2.811244688688049, 62.189883068165244, -2.811244688688049, -67.07829122649602, 37.75918765306639, -0.5834249281476502], ['qePIokPMx', -88.68963858646266, False, 92.17031809189785, 20]) == []", "assert convert_list_dictionary(['S001', 'S002', 'S003', 'S004'], ['Adina Park', 'qePIokPMx', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Duncan Boyle'], ['Adina Park', 'qePIokPMx', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Duncan Boyle']) == [{'S001': {'Adina Park': 'Adina Park'}}, {'S002': {'qePIokPMx': 'qePIokPMx'}}, {'S003': {'Leyton Marsh': 'Leyton Marsh'}}, {'S004': {'Duncan Boyle': 'Duncan Boyle'}}]", "assert convert_list_dictionary([81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, -29.92530843974366, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266, -88.68963858646266, -88.68963858646266, -29.92530843974366], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, -29.92530843974366, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266, -88.68963858646266, -88.68963858646266, -29.92530843974366], [81.68418398262912, -91.09614035628569, -99.76860339291179, -88.68963858646266, -88.68963858646266, -29.92530843974366, 37.75918765306639, 57.03263542097301, -2.5121677165315077, -88.68963858646266, -88.68963858646266, -88.68963858646266, -29.92530843974366]) == [{81.68418398262912: {81.68418398262912: 81.68418398262912}}, {-91.09614035628569: {-91.09614035628569: -91.09614035628569}}, {-99.76860339291179: {-99.76860339291179: -99.76860339291179}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-29.92530843974366: {-29.92530843974366: -29.92530843974366}}, {37.75918765306639: {37.75918765306639: 37.75918765306639}}, {57.03263542097301: {57.03263542097301: 57.03263542097301}}, {-2.5121677165315077: {-2.5121677165315077: -2.5121677165315077}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {-29.92530843974366: {-29.92530843974366: -29.92530843974366}}]", "assert convert_list_dictionary(['qePIokPMx', -88.68963858646266, 'S00Leyton2', 92.17031809189785, 20], [], ['qePIokPMx', -88.68963858646266, 'S00Leyton2', 92.17031809189785, 20]) == []", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 92.17031809189785, 'qePIokPMx'], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 92.17031809189785, 'qePIokPMx'], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785, 92.17031809189785, 'qePIokPMx']) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}]", "assert convert_list_dictionary(['S001', 'S002', 'S004'], ['Adina Park', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], [[1, 2, 3], [4, 5, 6], {'a': 'x', 'b': 'y', 'c': 'z'}, [1, 2, 3]]) == [{'S001': {'Adina Park': [1, 2, 3]}}, {'S002': {'Leyton Marsh': [4, 5, 6]}}, {'S004': {'Duncan Boyle': {'a': 'x', 'b': 'y', 'c': 'z'}}}]", "assert convert_list_dictionary(['S001', 'S002', 'S004'], ['S002', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['S002', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards']) == [{'S001': {'S002': 'S002'}}, {'S002': {'Leyton Marsh': 'Leyton Marsh'}}, {'S004': {'Duncan Boyle': 'Duncan Boyle'}}]", "assert convert_list_dictionary(['A1', 'A2', 'A3', 'A4'], [10, 20, 30, 40], [['a', 'b'], ['c', 'd', 'e'], {'y': 2}]) == [{'A1': {10: ['a', 'b']}}, {'A2': {20: ['c', 'd', 'e']}}, {'A3': {30: {'y': 2}}}]", "assert convert_list_dictionary([10, 20, 30, 40, 20], [10, 20, 30, 40, 20], [10, 20, 30, 40, 20]) == [{10: {10: 10}}, {20: {20: 20}}, {30: {30: 30}}, {40: {40: 40}}, {20: {20: 20}}]", "assert convert_list_dictionary(['S002', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['S002', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['S002', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards']) == [{'S002': {'S002': 'S002'}}, {'Leyton Marsh': {'Leyton Marsh': 'Leyton Marsh'}}, {'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {'Saim Richards': {'Saim Richards': 'Saim Richards'}}]", "assert convert_list_dictionary(['programs', 'python'], ['programs', 'python'], ['programs', 'python']) == [{'programs': {'programs': 'programs'}}, {'python': {'python': 'python'}}]", "assert convert_list_dictionary(['qePIokPMx', -88.68963858646266, 'c', 'S00Leyton2', 92.17031809189785, 20], [], ['qePIokPMx', -88.68963858646266, 'c', 'S00Leyton2', 92.17031809189785, 20]) == []", "assert convert_list_dictionary([-99.76860339291179, 39.84690584810048, 62.189883068165244, 48.27284080844191, -76.69894057820215, -0.5834249281476502, 12.15338911271509, 8.777721336176342, -78.25134314005295, 92.39137694572081, 12.15338911271509], [], ['IjKiPHTZYR', '', 'BMI', 'bBRSnEOt']) == []", "assert convert_list_dictionary(['S002', 'A4', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['S002', 'A4', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards'], ['S002', 'A4', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards']) == [{'S002': {'S002': 'S002'}}, {'A4': {'A4': 'A4'}}, {'Leyton Marsh': {'Leyton Marsh': 'Leyton Marsh'}}, {'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {'Saim Richards': {'Saim Richards': 'Saim Richards'}}]", "assert convert_list_dictionary(['qePIokPMx', 20, 119.11950781083245, 92.17031809189785, 20], ['qePIokPMx', 20, 119.11950781083245, 92.17031809189785, 20], ['qePIokPMx', 20, 119.11950781083245, 92.17031809189785, 20]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {20: {20: 20}}, {119.11950781083245: {119.11950781083245: 119.11950781083245}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}]", "assert convert_list_dictionary(['BMI', 'Adina Park', 'qePIokPMx', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Duncan Boyle', 'qePIokPMx'], ['BMI', 'Adina Park', 'qePIokPMx', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Duncan Boyle', 'qePIokPMx'], ['BMI', 'Adina Park', 'qePIokPMx', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'Duncan Boyle', 'qePIokPMx']) == [{'BMI': {'BMI': 'BMI'}}, {'Adina Park': {'Adina Park': 'Adina Park'}}, {'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {'Leyton Marsh': {'Leyton Marsh': 'Leyton Marsh'}}, {'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {'Saim Richards': {'Saim Richards': 'Saim Richards'}}, {'Duncan Boyle': {'Duncan Boyle': 'Duncan Boyle'}}, {'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}]", "assert convert_list_dictionary(['qePIokPMx', 20], ['qePIokPMx', 20], ['qePIokPMx', 20]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {20: {20: 20}}]", "assert convert_list_dictionary([11, 20, 30, 13, 20, 13], [11, 20, 30, 13, 20, 13], [11, 20, 30, 13, 20, 13]) == [{11: {11: 11}}, {20: {20: 20}}, {30: {30: 30}}, {13: {13: 13}}, {20: {20: 20}}, {13: {13: 13}}]", "assert convert_list_dictionary(['def', 'Duncan Boyle', 'ghi', 'jkl'], ['def', 'Duncan Boyle', 'ghi', 'jkl'], ['python', 'Saim Richards', 'lganguage', 'programs']) == [{'def': {'def': 'python'}}, {'Duncan Boyle': {'Duncan Boyle': 'Saim Richards'}}, {'ghi': {'ghi': 'lganguage'}}, {'jkl': {'jkl': 'programs'}}]", "assert convert_list_dictionary([False, False, True, True, True, False, False], [False, False, True, True, True, False, False], [False, False, True, True, True, False, False]) == [{False: {False: False}}, {False: {False: False}}, {True: {True: True}}, {True: {True: True}}, {True: {True: True}}, {False: {False: False}}, {False: {False: False}}]", "assert convert_list_dictionary(['qePIokPMx', 92.17031809189785, 20, 92.17031809189785], ['qePIokPMx', 92.17031809189785, 20, 92.17031809189785], []) == []", "assert convert_list_dictionary(['qePIokPMx', -88.68963858646266, 92.17031809189785, 20, 20], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20, 20], ['qePIokPMx', -88.68963858646266, 92.17031809189785, 20, 20]) == [{'qePIokPMx': {'qePIokPMx': 'qePIokPMx'}}, {-88.68963858646266: {-88.68963858646266: -88.68963858646266}}, {92.17031809189785: {92.17031809189785: 92.17031809189785}}, {20: {20: 20}}, {20: {20: 20}}]", "assert convert_list_dictionary([], [-13.280024492899287, 92.39137694572081, 75.06000739007223, -2.811244688688049, 62.189883068165244, -2.811244688688049, 37.75918765306639, -0.5834249281476502], [-13.280024492899287, 92.39137694572081, 75.06000739007223, -2.811244688688049, 62.189883068165244, -2.811244688688049, 37.75918765306639, -0.5834249281476502]) == []", "assert convert_list_dictionary([-76.69894057820215, 12.15338911271509, 81.68418398262912, -44.15533537486549, -29.92530843974366, -29.92530843974366, -99.76860339291179, -105.42260580914375, -99.2192956011222, 8.777721336176342], [], ['qePIokPMx', -88.68963858646266, False, 92.17031809189785, 20, False]) == []", "assert convert_list_dictionary([92.17031809189785], ['Adina'], [-17, 3, 10]) == [{92.17031809189785: {'Adina': -17}}]", "assert convert_list_dictionary([20, 4, -85, -8, 20, 5, 73, 13, 2, 5], [True, True, False, False, True, True, True, True, False, False], [20, 4, -85, -8, 20, 5, 73, 13, 2, 5]) == [{20: {True: 20}}, {4: {True: 4}}, {-85: {False: -85}}, {-8: {False: -8}}, {20: {True: 20}}, {5: {True: 5}}, {73: {True: 73}}, {13: {True: 13}}, {2: {False: 2}}, {5: {False: 5}}]", "assert convert_list_dictionary([92.17031809189785], ['Adina', 'Boyle'], [-62, 73]) == [{92.17031809189785: {'Adina': -62}}]", "assert convert_list_dictionary(['Adina'], [4, -17, 40, 3, 10], [92.17031809189785]) == [{'Adina': {4: 92.17031809189785}}]", "assert convert_list_dictionary([False, True, False, True, True, False, True], [81.68418398262912, -29.92530843974366, 91.9700693495451, 3.8439202491777706, -2.811244688688049, -91.09614035628569, 92.17031809189785, 37.75918765306639, 37.75918765306639, -44.15533537486549], [81.68418398262912, -29.92530843974366, 91.9700693495451, 3.8439202491777706, -2.811244688688049, -91.09614035628569, 92.17031809189785, 37.75918765306639, 37.75918765306639, -44.15533537486549]) == [{False: {81.68418398262912: 81.68418398262912}}, {True: {-29.92530843974366: -29.92530843974366}}, {False: {91.9700693495451: 91.9700693495451}}, {True: {3.8439202491777706: 3.8439202491777706}}, {True: {-2.811244688688049: -2.811244688688049}}, {False: {-91.09614035628569: -91.09614035628569}}, {True: {92.17031809189785: 92.17031809189785}}]", "assert convert_list_dictionary([-76.69894057820215, 12.15338911271509, 81.68418398262912, -44.15533537486549, -29.92530843974366, -29.92530843974366, -99.76860339291179, -105.42260580914375, -99.2192956011222, 10.903113434010868], [-88, 'qiMdF'], [-76.69894057820215, 12.15338911271509, 81.68418398262912, -44.15533537486549, -29.92530843974366, -29.92530843974366, -99.76860339291179, -105.42260580914375, -99.2192956011222, 10.903113434010868]) == [{-76.69894057820215: {-88: -76.69894057820215}}, {12.15338911271509: {'qiMdF': 12.15338911271509}}]", "assert convert_list_dictionary(['x', 'def', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'x'], ['S001', 'S00Leyton2', 'S003', 'S002', 'S004'], ['x', 'def', 'Leyton Marsh', 'Duncan Boyle', 'Saim Richards', 'x']) == [{'x': {'S001': 'x'}}, {'def': {'S00Leyton2': 'def'}}, {'Leyton Marsh': {'S003': 'Leyton Marsh'}}, {'Duncan Boyle': {'S002': 'Duncan Boyle'}}, {'Saim Richards': {'S004': 'Saim Richards'}}]", "assert convert_list_dictionary([10, 30, 13, 20, 13], [10, 30, 13, 20, 13], [10, 30, 13, 20, 13]) == [{10: {10: 10}}, {30: {30: 30}}, {13: {13: 13}}, {20: {20: 20}}, {13: {13: 13}}]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum sum possible by using the given equation f(n) = max( (f(n/2) + f(n/3) + f(n/4) + f(n/5)), n).\nassert get_max_sum(60) == 106\nYour code should pass the test:\nassert get_max_sum(60) == 106", "test_list": [ "assert get_max_sum(60) == 106", "assert get_max_sum(10) == 12", "assert get_max_sum(2) == 2", "assert get_max_sum(100) == 200", "assert get_max_sum(1000) == 3300", "assert get_max_sum(10000) == 55358", "assert get_max_sum(100000) == 940774", "assert get_max_sum(500) == 1404", "assert get_max_sum(1000000) == 16326651", "assert get_max_sum(99) == 192", "assert get_max_sum(498) == 1391", "assert get_max_sum(499) == 1391", "assert get_max_sum(101) == 200", "assert get_max_sum(False) == 0", "assert get_max_sum(9999) == 55188", "assert get_max_sum(1001) == 3300", "assert get_max_sum(501) == 1404", "assert get_max_sum(True) == 1", "assert get_max_sum(1002) == 3300", "assert get_max_sum(10001) == 55358", "assert get_max_sum(502) == 1404", "assert get_max_sum(999) == 3264", "assert get_max_sum(100001) == 940774", "assert get_max_sum(999999) == 16322563", "assert get_max_sum(100002) == 940774", "assert get_max_sum(497) == 1391", "assert get_max_sum(9998) == 55188", "assert get_max_sum(1000001) == 16326651", "assert get_max_sum(100003) == 940774", "assert get_max_sum(1003) == 3300", "assert get_max_sum(496) == 1391", "assert get_max_sum(1000002) == 16326651", "assert get_max_sum(100004) == 940774", "assert get_max_sum(1004) == 3300", "assert get_max_sum(999998) == 16322563", "assert get_max_sum(999997) == 16322563", "assert get_max_sum(99999) == 939948", "assert get_max_sum(99998) == 939948", "assert get_max_sum(102) == 200", "assert get_max_sum(1000003) == 16326651", "assert get_max_sum(1005) == 3300", "assert get_max_sum(10002) == 55358", "assert get_max_sum(100005) == 940774", "assert get_max_sum(998) == 3264", "assert get_max_sum(999996) == 16322563", "assert get_max_sum(503) == 1404", "assert get_max_sum(68) == 114", "assert get_max_sum(10003) == 55358", "assert get_max_sum(103) == 200", "assert get_max_sum(495) == 1391", "assert get_max_sum(69) == 114", "assert get_max_sum(67) == 114", "assert get_max_sum(1006) == 3300", "assert get_max_sum(100006) == 940774", "assert get_max_sum(98) == 192", "assert get_max_sum(997) == 3264", "assert get_max_sum(104) == 200", "assert get_max_sum(504) == 1404", "assert get_max_sum(996) == 3264", "assert get_max_sum(505) == 1404", "assert get_max_sum(1000004) == 16326651", "assert get_max_sum(999995) == 16322563", "assert get_max_sum(494) == 1391", "assert get_max_sum(1000005) == 16326651", "assert get_max_sum(70) == 114", "assert get_max_sum(1007) == 3300", "assert get_max_sum(1008) == 3300", "assert get_max_sum(493) == 1391", "assert get_max_sum(96) == 192", "assert get_max_sum(97) == 192", "assert get_max_sum(995) == 3264", "assert get_max_sum(1000006) == 16326651", "assert get_max_sum(1000007) == 16326651", "assert get_max_sum(99997) == 939948", "assert get_max_sum(38) == 57", "assert get_max_sum(994) == 3264", "assert get_max_sum(506) == 1404", "assert get_max_sum(10004) == 55358", "assert get_max_sum(10005) == 55358", "assert get_max_sum(2) == 2", "assert get_max_sum(99996) == 939948", "assert get_max_sum(999994) == 16322563", "assert get_max_sum(37) == 57", "assert get_max_sum(95) == 164", "assert get_max_sum(492) == 1391", "assert get_max_sum(993) == 3264", "assert get_max_sum(3) == 3", "assert get_max_sum(4) == 4", "assert get_max_sum(10006) == 55358", "assert get_max_sum(490) == 1391", "assert get_max_sum(66) == 114", "assert get_max_sum(5) == 5", "assert get_max_sum(73) == 133", "assert get_max_sum(18) == 24", "assert get_max_sum(100007) == 940774", "assert get_max_sum(39) == 57", "assert get_max_sum(6) == 7", "assert get_max_sum(507) == 1404", "assert get_max_sum(1009) == 3300", "assert get_max_sum(1010) == 3300", "assert get_max_sum(488) == 1391", "assert get_max_sum(491) == 1391", "assert get_max_sum(489) == 1391", "assert get_max_sum(19) == 24", "assert get_max_sum(65) == 114", "assert get_max_sum(27) == 38", "assert get_max_sum(17) == 21", "assert get_max_sum(487) == 1391", "assert get_max_sum(999993) == 16322563" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if given tuple contains no duplicates.\nassert check_distinct((1, 4, 5, 6, 1, 4)) == False\nYour code should pass the test:\nassert check_distinct((1, 4, 5, 6, 1, 4)) == False", "test_list": [ "assert check_distinct((1, 4, 5, 6, 1, 4)) == False", "assert check_distinct((1, 4, 5, 6)) == True", "assert check_distinct((2, 3, 4, 5, 6)) == True", "assert check_distinct(()) == True", "assert check_distinct((1,)) == True", "assert check_distinct((1, 2, 3, 4, 5, 6, 7, 8, 9, 10)) == True", "assert check_distinct((1, 1, 1, 1, 1, 1, 1, 1, 1, 2)) == False", "assert check_distinct((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1)) == False", "assert check_distinct((1, 2, 3.14, 4, 5, 6, 7, 8, 9, 10, 1, 2, 3.14, 4, 5, 6, 7, 8, 9, 10)) == False", "assert check_distinct((1, 'a', True, 3.14)) == False", "assert check_distinct((7, 8, 37, 3, -71, -36)) == True", "assert check_distinct((7, 9, 37, 3, -71, -36)) == True", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 1, 1, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 3, 1)) == False", "assert check_distinct((0, 1)) == True", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6)) == False", "assert check_distinct((61, 1, 34, -53, -71, False)) == True", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 10, 8, 7, 6, 5, 4, 3, 2, 1, 6)) == False", "assert check_distinct((10, 9, 8, 6, 5, 4, 3, 2, 1, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 2)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 9, 8, 7, 6, 5, 4, 2, 1, 6)) == False", "assert check_distinct((1, 2, 3.14, 4, 5, 6, 7, 8, 9, 10, 1, 2, 3.14, 4, 5, 6, 8, 9, 10)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 6)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 6, 3, 2, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 3, 1)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 10, 8, 7, 6, 5, 4, 3, 2, 1, 6, 3)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 10, 8, 7, 6, 5, 4, 3, 2, 0, 1, 6, 3)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 3, 1, 6)) == False", "assert check_distinct((0, 1, 1)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 10, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1)) == False", "assert check_distinct((0, 1, 0)) == False", "assert check_distinct((1, 0)) == True", "assert check_distinct((10, 9, 7, 6, 5, 4, 3, 2, 1, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6)) == False", "assert check_distinct((6, 8, 8, 37, 3, -71, -36)) == False", "assert check_distinct((1, 2, 3.14, 4, 5, 6, 7, 8, 9, 10, 1, 2, 3.14, 4, 5, 6, 9, 10)) == False", "assert check_distinct((6, 0, 1, 1)) == False", "assert check_distinct((1, 0, 1, 1)) == False", "assert check_distinct((7, 8, 3, -71, -36)) == True", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 9, 8, 7, 6, 4, 3, 2, 1, 6)) == False", "assert check_distinct((6, 0, 1, 1, 1)) == False", "assert check_distinct((10, 9, 8, 6, 5, 4, 3, 2, 1, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 3)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 3, 1, 9)) == False", "assert check_distinct((6, 0, 1, 1, 1, 1)) == False", "assert check_distinct((1, 2, 0, 1, 1)) == False", "assert check_distinct((10, 1)) == True", "assert check_distinct((10, 9, 9, 6, 5, 4, 3, 2, 1, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6)) == False", "assert check_distinct((5, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 10, 9, 8, 7, 6, 5, 4, 3, 3, 1, 7)) == False", "assert check_distinct((10, 9, 8, 7, 6, 5, 4, 3, 2, 61, 10, 9, 8, 7, 6, 5, 4, 2, 1, 6, 6)) == False", "assert check_distinct((10, 7, 7, 1)) == False", "assert check_distinct((1, 0, 1, 1, 1)) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the first non-repeated character in a given string.\nassert first_non_repeating_character(\"abcabc\") == None\nYour code should pass the test:\nassert first_non_repeating_character(\"abcabc\") == None", "test_list": [ "assert first_non_repeating_character(\"abcabc\") == None", "assert first_non_repeating_character(\"abc\") == \"a\"", "assert first_non_repeating_character(\"ababc\") == \"c\"", "assert first_non_repeating_character('aaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwgGwwH') == 'E'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwgGwwwH') == 'E'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaawgGwwH') == 'g'", "assert first_non_repeating_character('aaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwaaaaaaaaaaaaaaaaaaaaagGwwwH') == 'E'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaagGwwwH') == 'E'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaawgGwwHaaaaaa') == 'g'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaawH') == 'G'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwgaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaGaaaaaaaaGwwwH') == 'E'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('gvPARWvgU') == 'P'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaawH') == 'G'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaGaaaaaaaaaaaaaaaaaaaaawgGwwHaaaaaa') == 'g'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaawgGwwH') == 'g'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaGEwgaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaGaaaaaaaaGwwwHaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 'E'", "assert first_non_repeating_character('GEwgGwaaaaaaawgGwwHwwH') == 'E'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('t') == 't'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaGaaaaaaaaaaaaaaaaaaaaawgGwwHaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == 'g'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('GEwgaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaGaaaaaaaaGwwwH') == 'E'", "assert first_non_repeating_character('aaaaaawaaaaaaaaaaaaaaaaaaaaaaaagGwwH') == 'g'", "assert first_non_repeating_character('aaaGaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaawgGwwHaaaaaa') == 'g'", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None", "assert first_non_repeating_character('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa') == None" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the median of three numbers.\nassert median_numbers(25,55,65)==55.0\nYour code should pass the test:\nassert median_numbers(25,55,65)==55.0", "test_list": [ "assert median_numbers(25,55,65)==55.0", "assert median_numbers(20,10,30)==20.0", "assert median_numbers(15,45,75)==45.0", "assert median_numbers(5, 5, 5) == 5", "assert median_numbers(-10, -20, -30) == -20", "assert median_numbers(-5, -10, -15) == -10", "assert median_numbers(-10, 20, 30) == 20", "assert median_numbers(-15, 0, 15) == 0", "assert median_numbers(-50, -20, 100) == -20", "assert median_numbers(-20, -19, 100) == -19", "assert median_numbers(5, 4, 4) == 4", "assert median_numbers(5, 0, 5) == 5", "assert median_numbers(-18, 99, 100) == 99", "assert median_numbers(-15, -15, 15) == -15", "assert median_numbers(-5, 99, 100) == 99", "assert median_numbers(-15, -14, 15) == -14", "assert median_numbers(-16, -18, 100) == -16", "assert median_numbers(-10, -30, -30) == -30", "assert median_numbers(18, -10, 57) == 18", "assert median_numbers(30, -30, -29) == -29", "assert median_numbers(4, 99, 100) == 99", "assert median_numbers(-11, 18, -10) == -10", "assert median_numbers(-20, 57, -16) == -16", "assert median_numbers(5, -9, 57) == 5", "assert median_numbers(-50, 100, -20) == -20", "assert median_numbers(4, -19, 4) == 4", "assert median_numbers(-16, -19, 100) == -16", "assert median_numbers(-31, 57, -20) == -20", "assert median_numbers(57, -18, 57) == 57", "assert median_numbers(-18, 99, 99) == 99", "assert median_numbers(-50, 15, -20) == -20", "assert median_numbers(4, 98, -5) == 4", "assert median_numbers(-20, -21, -30) == -21", "assert median_numbers(30, 31, -20) == 30", "assert median_numbers(-29, -50, 100) == -29", "assert median_numbers(-19, 4, 4) == 4", "assert median_numbers(-29, -30, -50) == -30", "assert median_numbers(20, 0, 15) == 15", "assert median_numbers(-19, -21, -30) == -21", "assert median_numbers(5, -15, 5) == 5", "assert median_numbers(-18, 99, 20) == 20", "assert median_numbers(-17, -18, -18) == -18", "assert median_numbers(5, 31, 4) == 5", "assert median_numbers(31, -29, -29) == -29", "assert median_numbers(3, 4, 3) == 3", "assert median_numbers(4, 100, 98) == 98", "assert median_numbers(4, 3, 4) == 4", "assert median_numbers(15, -30, -20) == -20", "assert median_numbers(-10, -10, -10) == -10", "assert median_numbers(5, -18, 4) == 4", "assert median_numbers(-30, 5, 5) == 5", "assert median_numbers(-20, -19, -19) == -19", "assert median_numbers(-10, -50, 15) == -10", "assert median_numbers(-31, 99, -5) == -5", "assert median_numbers(0, 20, 30) == 20", "assert median_numbers(-15, 98, -14) == -14", "assert median_numbers(5, 5, 57) == 5", "assert median_numbers(4, 57, -20) == 4", "assert median_numbers(3, 4, 4) == 4", "assert median_numbers(100, 99, 30) == 99", "assert median_numbers(-16, -18, 101) == -16", "assert median_numbers(5, -11, 57) == 5", "assert median_numbers(5, 5, 4) == 5", "assert median_numbers(3, 3, 3) == 3", "assert median_numbers(-15, -31, 15) == -15", "assert median_numbers(-5, -10, 5) == -5", "assert median_numbers(99, 30, 31) == 31", "assert median_numbers(57, -19, 4) == 4", "assert median_numbers(-20, -21, -31) == -21", "assert median_numbers(3, 3, 4) == 3", "assert median_numbers(20, 30, 30) == 30", "assert median_numbers(-20, -31, -31) == -31", "assert median_numbers(-20, -22, -31) == -22", "assert median_numbers(-29, -30, -30) == -30", "assert median_numbers(98, -18, -13) == -13", "assert median_numbers(100, -15, 98) == 98", "assert median_numbers(-66, 55, -22) == -22", "assert median_numbers(100, 99, 100) == 100", "assert median_numbers(101, -20, -50) == -20", "assert median_numbers(3, 101, 3) == 3", "assert median_numbers(57, 0, 15) == 15", "assert median_numbers(5, 4, 5) == 5", "assert median_numbers(-66, -20, 55) == -20", "assert median_numbers(-13, -11, 55) == -11", "assert median_numbers(100, 98, 100) == 100", "assert median_numbers(-21, -30, -30) == -30", "assert median_numbers(-29, -20, -31) == -29", "assert median_numbers(-17, 30, 30) == 30", "assert median_numbers(3, 101, -13) == 3", "assert median_numbers(4, 4, 4) == 4", "assert median_numbers(99, -9, -6) == -6", "assert median_numbers(-50, 15, -21) == -21", "assert median_numbers(100, -31, 100) == 100", "assert median_numbers(5, 57, -20) == 5", "assert median_numbers(-22, -18, -18) == -18", "assert median_numbers(-10, 5, -9) == -9", "assert median_numbers(-19, -20, 55) == -19", "assert median_numbers(4, 5, 4) == 4", "assert median_numbers(6, -11, 57) == 6", "assert median_numbers(57, 0, 14) == 14", "assert median_numbers(30, 14, 14) == 14", "assert median_numbers(0, 15, 20) == 15", "assert median_numbers(101, 18, -9) == 18", "assert median_numbers(16, -50, 15) == 15", "assert median_numbers(-18, -10, 100) == -10", "assert median_numbers(0, 3, -13) == 0", "assert median_numbers(4, 3, 3) == 3", "assert median_numbers(30, 31, -15) == 30", "assert median_numbers(6, 15, 57) == 15" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to compute the sum of digits of each number of a given list.\nassert sum_of_digits([10,2,56])==14\nYour code should pass the test:\nassert sum_of_digits([10,2,56])==14", "test_list": [ "assert sum_of_digits([10,2,56])==14", "assert sum_of_digits([[10,20,4,5,'b',70,'a']])==19", "assert sum_of_digits([10,20,-4,5,-70])==19", "assert sum_of_digits([]) == 0", "assert sum_of_digits([7]) == 7", "assert sum_of_digits([-10, 15, 0, -5, 2]) == 14", "assert sum_of_digits([0]) == 0", "assert sum_of_digits([10, -5, 'abc', 0, 3.14]) == 14", "assert sum_of_digits([7, 10, 7]) == 15", "assert sum_of_digits([15]) == 6", "assert sum_of_digits([-10, 15, 0, 15, -5, 2, 15, 2]) == 28", "assert sum_of_digits([-10, 15, -10, 0, 15, -5, 2, 15, 2]) == 29", "assert sum_of_digits([-10, 0, -5, 2]) == 8", "assert sum_of_digits([15, -10, 0, 1, 15, -5, 2, 15, 2]) == 29", "assert sum_of_digits(['TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'abc', 'abc', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits([0, 15, 0, -5]) == 11", "assert sum_of_digits([-10, 15, 0, 15, -5, 2]) == 20", "assert sum_of_digits([-5, 7, 10, 7]) == 20", "assert sum_of_digits([-10, 15, 0, 10, 2]) == 10", "assert sum_of_digits([-10, 15, 0, 10, 2, 0]) == 10", "assert sum_of_digits([-10, 15, 0, 15, 15, -5, 2]) == 26", "assert sum_of_digits(['TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'abc', 'abc', 'gTxGtLn', 'abc']) == 0", "assert sum_of_digits([1, 0, 15, 0, -5]) == 12", "assert sum_of_digits([-10, 0, 15, -5, 2]) == 14", "assert sum_of_digits([15, 0, 2, 0]) == 8", "assert sum_of_digits([-10, 15, 0, 1, 2, 0, 0]) == 10", "assert sum_of_digits(['TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits([-10, 0, 10, 15, -5, 2]) == 15", "assert sum_of_digits([-10, 10, 7]) == 9", "assert sum_of_digits(['TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits([-10, -11, 15, -10, 0, 15, -5, 2, 15, 2]) == 31", "assert sum_of_digits([2, -11, 15, -10, 0, 15, -5, 2, 15, 2]) == 32", "assert sum_of_digits([-10, 15, 15, 0, -5, 2]) == 20", "assert sum_of_digits(['TTzXjVXDQt', 'ITwgTxGtLnVYEcw', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits([-10, -11, 15, -10, 0, 15, -5, 2, 15, 2, 2]) == 33", "assert sum_of_digits([-10, 0, 10, 15, -5, 2, 15]) == 21", "assert sum_of_digits([10, -5, 'abc', 0, 15, 3.14]) == 20", "assert sum_of_digits([15, 0, 10, 2, 0]) == 9", "assert sum_of_digits([-11, 15, 0, -5, 2]) == 15", "assert sum_of_digits([-10, 0, 1, 2, 0, 0]) == 4", "assert sum_of_digits(['TTzXjVXDQt', 'ITwgTxGtLnVYEcw', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc', 'abc']) == 0", "assert sum_of_digits([-10, 15, 15, 15, -5, 2]) == 26", "assert sum_of_digits([-10, 1, 2, 0, 0, 0]) == 4", "assert sum_of_digits([11, -5, 7, 10, 7, 10]) == 23", "assert sum_of_digits([-10, 15, 0, 15, -5, 2, 15, 2, -10]) == 29", "assert sum_of_digits([-10, 0, 1, 15, -5, 2, 15, 2, 1, 2]) == 26", "assert sum_of_digits([-10, 0, 15, 15, -5, 2]) == 20", "assert sum_of_digits([-10, 15, 0, 15, -5, 15, 2]) == 26", "assert sum_of_digits([-10, 0, 15, 15, -5, 2, 0]) == 20", "assert sum_of_digits([0, 1, 0, 0]) == 1", "assert sum_of_digits([7, 10, 7, 7]) == 22", "assert sum_of_digits([-5, 1, 7, 10, 7]) == 21", "assert sum_of_digits([-9, -10, 15, -10, 0, 15, -5, 2, 15, 2]) == 38", "assert sum_of_digits([-10, 15, 0, 15, -5, 2, 15, 2, -9, -10, -10]) == 39", "assert sum_of_digits(['TTzXjVXDQt', 'TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits([-10, 15, 1, 2, 0, 0]) == 10", "assert sum_of_digits([2, 7, 10, -11, 7]) == 19", "assert sum_of_digits([7, 10, 7, 15, 7]) == 28", "assert sum_of_digits([0, 1, 0, 0, 0, 0]) == 1", "assert sum_of_digits(['TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'ITwgTxGtLnVYEcw', 'abc', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits([-10, 15, 15, -5, 2, 15, 2, -9, -10, -10]) == 39", "assert sum_of_digits([-5, 7, 10, 7, 10]) == 21", "assert sum_of_digits([-10, -11, 15, -10, 0, -5, 2, 15, 2]) == 25", "assert sum_of_digits([-10, 0, 1, 15, -11, 15, 2, 1, 2]) == 21", "assert sum_of_digits([3.14, -17.036961582608342, 3.14, 3.14, 3.14]) == 103", "assert sum_of_digits([0, -10, 0, 10, -5, 2]) == 9", "assert sum_of_digits(['TTzXjVXDQ', 'ITwgTxGtLnVYEcw', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'GgTxGtFZLn', 'abc']) == 0", "assert sum_of_digits(['TTzXjVXDQt', 'TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc', 'abc']) == 0", "assert sum_of_digits([2, -11, 7, 15, -10, 0, 15, -5, 2, -11, 15, 2]) == 41", "assert sum_of_digits([-9, -10, -4, 15, -10, 0, 15, -5, 2, 15, 7, 2]) == 49", "assert sum_of_digits(['TTzXjVXDQt', 'TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn']) == 0", "assert sum_of_digits([15, 0, 10, 2, -5, 0]) == 14", "assert sum_of_digits([-10, 15, -10, 0, 15, -5, 2, 15, 2, -9, -10, -10]) == 40", "assert sum_of_digits([-10, 15, 15, 0, 2]) == 15", "assert sum_of_digits([7, 10, 8]) == 16", "assert sum_of_digits([-10, 1, -5, -10]) == 8", "assert sum_of_digits([-10, -11, 15, -10, -5, 2, 15, 2]) == 25", "assert sum_of_digits(['TTzXjVXDQt', 'ucH', 'abc', 'ITwVYEcw', 'TTzXjVXDQt', 'abcTTzXjVXDQt', 'gTxGtFZLn', 'abc']) == 0", "assert sum_of_digits(['TTzXjVXDQt', 'ITwVYEcw', 'ucH', 'abc', 'ITwgTxGtLnVYEcw', 'abc', 'gTxGtFZLn', 'abc', 'ucH']) == 0", "assert sum_of_digits([-10, 15, 15, 15, -5, 2, 2]) == 28", "assert sum_of_digits([2, -10, 15, 0, 0, 10, 2]) == 12", "assert sum_of_digits([14, -10, 15, 0, 2]) == 14", "assert sum_of_digits([-10, 1, 2, 0, 0, 0, -10]) == 5", "assert sum_of_digits([-10, 15, 14, 15, -5, 2]) == 25", "assert sum_of_digits([-11, 0, 2]) == 4", "assert sum_of_digits([-4, 7, 7]) == 18", "assert sum_of_digits([15, 0, 1, 2, 0]) == 9", "assert sum_of_digits(['TTzXjVXDQt', 'ucH', 'abc', 'abc', 'ITwVYEcw', 'abc', 'gTxGtFZLn', 'abc', 'abc', 'abc']) == 0", "assert sum_of_digits([-10, 0, 1, 15, -5, 2, 15, 2, 0, 1, 2]) == 26", "assert sum_of_digits(['TTzXjVXDQt', 'gTxGtFZLn', 'abc', 'ITwgTxGtLnVYEcw', 'abc', 'gTxGtFZLn', 'abc', 'ucH', 'gTxGtFZLn']) == 0", "assert sum_of_digits([1, 0, -5, 2]) == 8", "assert sum_of_digits([15, 15]) == 12", "assert sum_of_digits([11, -5, 10, 7, 10]) == 16", "assert sum_of_digits([-10, -11, 15, -9, -5, 2, 15, 2]) == 33", "assert sum_of_digits([-10, 0, 15, -5, 2, 15]) == 20", "assert sum_of_digits([15, 0, 2, 0, 0, 0]) == 8", "assert sum_of_digits([-4, 10, 7, 7]) == 19", "assert sum_of_digits([14, -10, 15, 0, -6, 2]) == 20", "assert sum_of_digits([-1, 7, 10, 7]) == 16", "assert sum_of_digits([-9, -10, 15, -10, 0, 15, -5, 2, 15, 2, 15, -10]) == 45", "assert sum_of_digits([11, 7, 10, -5, 7, 10]) == 23", "assert sum_of_digits([-9, -10, -4, 15, -10, 0, -4, -5, 2, 15, 7, 2]) == 47", "assert sum_of_digits([-10, 1, 0, 0, 0, -10, 1]) == 4", "assert sum_of_digits([0, -6, 0]) == 6", "assert sum_of_digits([-10, 0, 1, 2, 15, -5, 2, 15, 2, 1, 2]) == 28", "assert sum_of_digits([7, 10, 7, 7, 7]) == 29", "assert sum_of_digits([0, 11, 0, -5]) == 7", "assert sum_of_digits([11, 10, 7, 10]) == 11" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the n largest integers from a given list of numbers, returned in descending order.\nassert heap_queue_largest( [25, 35, 22, 85, 14, 65, 75, 22, 58],3)==[85, 75, 65]\nYour code should pass the test:\nassert heap_queue_largest( [25, 35, 22, 85, 14, 65, 75, 22, 58],3)==[85, 75, 65]", "test_list": [ "assert heap_queue_largest( [25, 35, 22, 85, 14, 65, 75, 22, 58],3)==[85, 75, 65]", "assert heap_queue_largest( [25, 35, 22, 85, 14, 65, 75, 22, 58],2)==[85, 75]", "assert heap_queue_largest( [25, 35, 22, 85, 14, 65, 75, 22, 58],5)==[85, 75, 65, 58, 35]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the minimum of two numbers.\nassert minimum(1,2) == 1\nYour code should pass the test:\nassert minimum(1,2) == 1", "test_list": [ "assert minimum(1,2) == 1", "assert minimum(-5,-4) == -5", "assert minimum(0,0) == 0", "assert minimum(1000, 999) == 999", "assert minimum(-1000, -999) == -1000", "assert minimum(0.5, 0.4) == 0.4", "assert minimum(-0.5, -0.4) == -0.5", "assert minimum(1.23456789, 1.23456788) == 1.23456788", "assert minimum(-1.23456789, -1.23456788) == -1.23456789", "assert minimum(3, -5) == -5", "assert minimum(-10, 8) == -10", "assert minimum(-7, -3) == -7", "assert minimum(-inf, inf) == -inf", "assert minimum(0, 1) == 0", "assert minimum(0, -1) == -1", "assert minimum(0.12345678901234568, 0.9876543210987654) == 0.12345678901234568", "assert minimum(10000000000000000000000, -9999999999999999999999) == -9999999999999999999999", "assert minimum(-9999999999999999999999, -10000000000000000000000) == -10000000000000000000000", "assert minimum(1e-30, 2e-30) == 1e-30", "assert minimum(-1e-30, 1e-30) == -1e-30", "assert minimum(1e+22, -1e+22) == -1e+22", "assert minimum(-1e+22, -1e+22) == -1e+22", "assert minimum(1e+100, 1e+101) == 1e+100", "assert minimum(9999999999999999999999999, 1e+100) == 9999999999999999999999999", "assert minimum(9999999999999999999999999, -1e+100) == -1e+100", "assert minimum(-1e+100, 9999999999999999999999999) == -1e+100", "assert minimum(-inf, 1e-30) == -inf", "assert minimum(0.12345678901234568, 0.6227470969848448) == 0.12345678901234568", "assert minimum(-9999999999999999999999, -1) == -9999999999999999999999", "assert minimum(-5, 1e+100) == -5", "assert minimum(10000000000000000000000, 3) == 3", "assert minimum(0.12345678901234568, 0.12345678901234568) == 0.12345678901234568", "assert minimum(-1, -2) == -2", "assert minimum(1.23456788, 0.9876543210987654) == 0.9876543210987654", "assert minimum(1.23456789, 1.23456789) == 1.23456789", "assert minimum(0.3393732857470154, 0.4) == 0.3393732857470154", "assert minimum(0.9876543210987654, 0.9876543210987654) == 0.9876543210987654", "assert minimum(-0.5, -1.23456789) == -1.23456789", "assert minimum(0.5, 1.23456788) == 0.5", "assert minimum(1.23456788, 1.23456788) == 1.23456788", "assert minimum(3, -9999999999999999999999) == -9999999999999999999999", "assert minimum(-inf, 0.9876543210987654) == -inf", "assert minimum(1000, 1000) == 1000", "assert minimum(1e-30, -1.23456788) == -1.23456788", "assert minimum(0.9876543210987654, 1.23456789) == 0.9876543210987654", "assert minimum(-1e+100, -1e+100) == -1e+100", "assert minimum(-inf, -inf) == -inf", "assert minimum(9999999999999999999999, -9999999999999999999999) == -9999999999999999999999", "assert minimum(-0.07506072001847719, 1e-30) == -0.07506072001847719", "assert minimum(1.23456788, 1.23456789) == 1.23456788", "assert minimum(1e-30, -0.7328249760252548) == -0.7328249760252548", "assert minimum(2e-30, -inf) == -inf", "assert minimum(1e-30, 1.23456788) == 1e-30", "assert minimum(-inf, -0.5) == -inf", "assert minimum(3, 10000000000000000000000) == 3", "assert minimum(1e+100, 0.4) == 0.4", "assert minimum(0, -9999999999999999999999) == -9999999999999999999999", "assert minimum(-3, -1) == -3", "assert minimum(-0.5, 0.4) == -0.5", "assert minimum(-1e-30, 0.4) == -1e-30", "assert minimum(1e-30, -1e+100) == -1e+100", "assert minimum(1e-30, -6.511591469260396e+99) == -6.511591469260396e+99", "assert minimum(2e-30, 2e-30) == 2e-30", "assert minimum(-inf, 0.6227470969848448) == -inf", "assert minimum(-1e+22, 0.4) == -1e+22", "assert minimum(0.6227470969848448, -0.29444729972854533) == -0.29444729972854533", "assert minimum(-9999999999999999999999, -9999999999999999999999) == -9999999999999999999999", "assert minimum(0.46026738039655424, 1.23456788) == 0.46026738039655424", "assert minimum(-1e+100, inf) == -1e+100", "assert minimum(-999, -9999999999999999999999) == -9999999999999999999999", "assert minimum(-1e+22, 0.6227470969848448) == -1e+22", "assert minimum(1.23456788, 1.3699399338796618) == 1.23456788", "assert minimum(inf, 0.6227470969848448) == 0.6227470969848448", "assert minimum(1.23456789, 1.4183245112641576) == 1.23456789", "assert minimum(2e-30, -1e+100) == -1e+100", "assert minimum(-3, 1) == -3", "assert minimum(-0.5, -0.5) == -0.5", "assert minimum(3, 10000000000000000000001) == 3", "assert minimum(-1.23456789, -0.8219041516621808) == -1.23456789", "assert minimum(-5, -5) == -5", "assert minimum(1e+22, -inf) == -inf", "assert minimum(-5, -3) == -5", "assert minimum(-3, -3) == -3", "assert minimum(-9999999999999999999999, 9999999999999999999999999) == -9999999999999999999999", "assert minimum(0.4, 0.5) == 0.4", "assert minimum(9999999999999999999999999, 9999999999999999999999998) == 9999999999999999999999998", "assert minimum(0.4, 0.4) == 0.4", "assert minimum(9999999999999999999999999, 10000000000000000000000) == 10000000000000000000000", "assert minimum(-0.07506072001847719, 0.6227470969848448) == -0.07506072001847719", "assert minimum(10000000000000000000001, 3) == 3", "assert minimum(-0.4565540470320447, -0.9016404675969094) == -0.9016404675969094", "assert minimum(-0.7328249760252548, 1.3699399338796618) == -0.7328249760252548", "assert minimum(0.46582533596598436, 0.33863302089208697) == 0.33863302089208697", "assert minimum(1e+100, 1e+100) == 1e+100", "assert minimum(0.5170315488171091, 1.23456788) == 0.5170315488171091", "assert minimum(inf, inf) == inf", "assert minimum(1e-30, -inf) == -inf", "assert minimum(-3, -4) == -4", "assert minimum(0.9844734927681069, 0.9844734927681069) == 0.9844734927681069", "assert minimum(1e+100, 9.775453772147561e+99) == 9.775453772147561e+99", "assert minimum(-3, -5) == -5", "assert minimum(-7, 999) == -7", "assert minimum(-1e-30, -0.30387334753977924) == -0.30387334753977924", "assert minimum(-0.4340218895905736, -0.5) == -0.5", "assert minimum(1.0499093088834509e-30, 1.0499093088834509e-30) == 1.0499093088834509e-30", "assert minimum(-0.30387334753977924, 9999999999999999999999999) == -0.30387334753977924", "assert minimum(-0.07506072001847719, -0.056386079676076895) == -0.07506072001847719", "assert minimum(999, -10000000000000000000000) == -10000000000000000000000", "assert minimum(10000000000000000000000, -999) == -999", "assert minimum(0.5502904923114273, 0.9876543210987654) == 0.5502904923114273", "assert minimum(1.3699399338796618, -0.8219041516621808) == -0.8219041516621808", "assert minimum(-0.7328249760252548, 0.4) == -0.7328249760252548", "assert minimum(-1e-30, 1e+101) == -1e-30", "assert minimum(0.4, 1e-30) == 1e-30", "assert minimum(9999999999999999999999999, -1) == -1", "assert minimum(-999, -999) == -999", "assert minimum(-0.4399369615846679, 9999999999999999999999999) == -0.4399369615846679", "assert minimum(-0.47412425472639685, -0.07506072001847719) == -0.47412425472639685", "assert minimum(9999999999999999999999999, -1.23456789) == -1.23456789", "assert minimum(-9999999999999999999999, 3) == -9999999999999999999999", "assert minimum(-1, 9999999999999999999999) == -1", "assert minimum(0.46582533596598436, -1.2456261076289474) == -1.2456261076289474", "assert minimum(1.137575447277081e+100, 1e+101) == 1.137575447277081e+100", "assert minimum(-0.2805435883831953, -0.3079438825335931) == -0.3079438825335931", "assert minimum(-6.7523459788417035e-31, 7.414663687211649e-31) == -6.7523459788417035e-31", "assert minimum(-0.10974338446002693, 1e-30) == -0.10974338446002693" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether an element exists within a tuple.\nassert check_tuplex((\"w\", 3, \"r\", \"e\", \"s\", \"o\", \"u\", \"r\", \"c\", \"e\"),'r')==True\nYour code should pass the test:\nassert check_tuplex((\"w\", 3, \"r\", \"e\", \"s\", \"o\", \"u\", \"r\", \"c\", \"e\"),'r')==True", "test_list": [ "assert check_tuplex((\"w\", 3, \"r\", \"e\", \"s\", \"o\", \"u\", \"r\", \"c\", \"e\"),'r')==True", "assert check_tuplex((\"w\", 3, \"r\", \"e\", \"s\", \"o\", \"u\", \"r\", \"c\", \"e\"),'5')==False", "assert check_tuplex((\"w\", 3, \"r\", \"e\", \"s\", \"o\", \"u\", \"r\", \"c\",\"e\"),3)==True", "assert check_tuplex((), 5) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), ['a', 'b', 'c']) == True", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), {'name': 'John', 'age': 25}) == True", "assert check_tuplex((['a', 'b', 'c'], ['name', 'age', 25], True, 42.5), 'd') == False", "assert check_tuplex((), 'element') == False", "assert check_tuplex((['a', ['b', 'c'], 'd'], ['e', ['f', 'g'], 'h']), ['f', 'g']) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25}, True, 42.5), {'name': 'John', 'age': 25}) == True", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5), {'name': 'John', 'age': 25}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5), {'name': 'John'}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, True, 42.5, {'age': 25}), {'name': 'John', 'age': 25, 'b': 'Jnameohn'}) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), {'name': 'John', 'age': 25, 'nanme': 'Jnohn'}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25}, True), {'name': 'John', 'age': 25}) == True", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.5), [['abc', 123, [1, 2, 3]], True, 42.5]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), ['a', 'b', 'c', 'a']) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), {'name': 'John'}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25, 'nname': 25}, True, 42.5), {'name': 'John', 'age': 25}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25, 'nname': 25}, True, True, 42.5), {'name': 'John', 'age': 25}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5, 42.5), [['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5, {'age': 25}, {'age': 25}), {'name': 'John', 'age': 25, 'b': 'Jnameohn'}) == False", "assert check_tuplex((), [-63, 81, True]) == False", "assert check_tuplex((True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25, 'nname': 25}, True, False, 42.5), [['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25, 'nname': 25}, True, False, 42.5]) == False", "assert check_tuplex((False, 38, 96, -63), [-63, 81, True, True]) == False", "assert check_tuplex((42.5, ['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25, 'nname': 25}, True, 42.5), {'name': 'John', 'age': 25, 'a': 'hJohn'}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, 42.5]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), ['a', 'aabc', 'b', 'c']) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]]), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.5]) == False", "assert check_tuplex((False, True, False, False, True, True, False), 'element') == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.964943519254135]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True), {}) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), ['aabc', 'b', 'c']) == False", "assert check_tuplex((42.964943519254135, 42.5, 53.132901816322374, 42.5), [42.964943519254135, 42.5, 53.132901816322374, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], False, ['acbc', [1, 2, 3]], 42.964943519254135]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, ['a', 'b', 'c']), [False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5, True), [['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5, 42.5]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, False, True, 42.5), [False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, False, True, 42.5]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), {'name': 'John', 'age': 25, 'agae': 'Jonamehn'}) == False", "assert check_tuplex((), [-63, 81, True, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 43.45102708398019, True]) == False", "assert check_tuplex((True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 43.45102708398019, True, 43.45102708398019]) == False", "assert check_tuplex((False, ['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], False, 42.964943519254135]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, 43.45102708398019, True), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135]) == False", "assert check_tuplex((51.13966106560641, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), {'name': 'John', 'age': 25}) == True", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 43.45102708398019, False, True]) == False", "assert check_tuplex((True, 42.5), [['abc', 123, [1, 2, 3]], True, 42.5]) == False", "assert check_tuplex((True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, True), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], False, True, 42.5), [['abc', 123, [1, 2, 3]], False, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 26}, True, ['abc', 123, [1, 2, 3]]), {}) == False", "assert check_tuplex((False, 96, -63), [-63, 81, True, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], [123, [1, 2, 3]], 42.964943519254135), [True, 42.5]) == False", "assert check_tuplex((51.13966106560641, 2, -50.96670632000566, 15, 42.5, 99.96452985516729, True, 2), 5) == False", "assert check_tuplex((['abc', 123, 123, [1, 2, 3]], True, 43.45102708398019, True), [['abc', 123, [1, 2, 3]], True, 43.45102708398019, True]) == False", "assert check_tuplex(({'age': 25}, 61.19815696347994, True, 42.5, 42.5), [['abc', 123, [1, 2, 3]], {'age': 25}, 61.19815696347994, True, 42.5, 42.5]) == False", "assert check_tuplex((False, 38, 96, -63), [81, True, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], True), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 43.45102708398019, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], False, True, 43.45102708398019, True), [['abc', 123, [1, 2, 3]], True, 43.45102708398019, True]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, [[1, 2, 3]], ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135, 42.964943519254135]) == False", "assert check_tuplex((['a', 'b', 'c', 'a'], {'name': 'John', 'age': 25}, True, 42.5), [['a', 'b', 'c', 'a'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, True), [True, ['a', 'b', 'c'], False, {'name': 'John', 'age': 25}, True, 42.5, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], False, True, 43.45102708398019, True), [['abc', 123, [1, 2, 3]], 43.45102708398019, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25}, True, False, 53.132901816322374), [['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25}, True, False, 42.5, ['abc', 123, [1, 2, 3]]]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 'ab', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], False, 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], False, 42.964943519254135]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], {'name': 'John', 'age': 81}, False, {'name': 'John', 'age': 81}, True, 42.5), [False, ['a', 'b', 'c'], {'name': 'John', 'age': 81}, False, True, 42.5, False]) == False", "assert check_tuplex((False, 38, 96, -63), [False, 38, 96, False]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3], 'abc']), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]]]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], {'name': 'John'}, False, {'name': 'John'}, True, {'name': 'John'}, 42.5, {'name': 'John'}), [False, ['a', 'b', 'c'], {'name': 'John'}, False, {'name': 'John'}, True, 42.5, {'name': 'John'}]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], False, {'name': 'John', 'age': 81}, False, True, False, False, 42.5, False), [False, ['a', 'b', 'c'], False, {'name': 'John', 'age': 81}, False, True, False, 42.5, False]) == False", "assert check_tuplex((True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, True]) == False", "assert check_tuplex((False, True, False, False, True, True, True, False), [False, True, False, False, True, True, False]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, True, 42.5, {'age': 25}, True), {'name': 'John', 'age': 25, 'b': 'Jnameohn'}) == False", "assert check_tuplex((True, [[1, 2, 3]], ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, [[1, 2, 3]], 42.964943519254135]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, True, 42.5), [['abc', 123, [1, 2, 3]], False, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', 123, [1, 2, 3], 'abc'], 42.5), [['abc', 123, [1, 2, 3]], True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5), [['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5]) == False", "assert check_tuplex((False, False, 38, 96, False), [False, 38, 96, False]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'name': 'John', 'age': 25}, True, 42.5), {}) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], False, True, 43.45102708398019, True), [['abc', 123, [1, 2, 3]], ['abc', [1, 2, 3]], True, True, 43.45102708398019, True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', [1, 2, 3], 'abc'], ['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 43.45102708398019, True]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, ['a', 'b', 'c'], True), [False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], False, True, 42.5), [['abc', 123, [1, 2, 3]], False, True, 42.5, False]) == False", "assert check_tuplex((51.13966106560641, 2, -50.96670632000566, 15, 42.5, 99.96452985516729, True, 2), [51.13966106560641, 2, -50.96670632000566, 15, 42.5, 99.96452985516729, True, 2, -50.96670632000566]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], True), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], True]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, ['a', 'b', 'c']), [['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, ['a', 'b', 'c']]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5), ['b', 'c', 'a']) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, 42.5, 42.5), [['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5, 42.5]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], ['abc', [1, 2, 3], 'abc']), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], ['abc', 123, [1, 2, 3]]]) == False", "assert check_tuplex((-63, 81, True, True), [-63, 81, True, True]) == False", "assert check_tuplex((['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 53.132901816322374), ['a', 'aabc', 'b', 'b']) == False", "assert check_tuplex((False, ['abc', 123, [1, 2, 3]], True, True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], False, 42.964943519254135]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], ['abc', [1, 2, 3], 'abc'], ['abc', 123, [1, 2, 3]]), [['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], ['abc', 123, [1, 2, 3]]]) == False", "assert check_tuplex((['a', ['b', 'c', 'c'], 'd'], ['e', ['f', 'g'], 'h']), ['f', 'g']) == False", "assert check_tuplex((38, 96, -63), [False, 38, 96, False]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], [123, [1, 2, 3]], True), [[123, -63, [1, 2, 3]], ['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], True]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], {'age': 25}, True, 42.5, {'age': 25}, True, {'age': 25}), {'name': 'e', 'age': 25, 'b': 'Jnameohn'}) == False", "assert check_tuplex((['a', 'b', 'c', 'a'], ['', 'b', 'c', 'a'], {'name': 'John', 'age': 25}, True, 42.5), [['a', 'b', 'c', 'a'], {'name': 'John', 'age': 25}, True, 42.5]) == False", "assert check_tuplex((['a', 'aabcb', 'c', 'aabcb'], ['a', 'b', 'c'], ['a', 'aabcb', 'c'], {'name': 'John', 'age': 25}, True, ['a', 'b', 'c']), [['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, ['a', 'b', 'c']]) == False", "assert check_tuplex((False, False, 38, 96, False), [False, False, False, 38, 96, False]) == False", "assert check_tuplex((['abc', 123, [1, 2, 3]], True, ['abc', [1, 2, 3]], 42.964943519254135), [['abc', 123, [1, 2, 3]], True, ['abcc', [1, 2, 3]], 42.964943519254135]) == False", "assert check_tuplex((False, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, False, 42.5), [True, ['a', 'b', 'c'], {'name': 'John', 'age': 25}, True, 42.5, True]) == False", "assert check_tuplex((51.13966106560641, 2, -50.96670632000566, 15, 42.5, 99.96452985516729, True, 2, 51.13966106560641), 5) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find whether the parity of a given number is odd.\nassert find_Parity(12) == False\nYour code should pass the test:\nassert find_Parity(12) == False", "test_list": [ "assert find_Parity(12) == False", "assert find_Parity(7) == True", "assert find_Parity(10) == False", "assert find_Parity(0) == False", "assert find_Parity(-10) == False", "assert find_Parity(2) == False", "assert find_Parity(9) == True", "assert find_Parity(9876543210) == False", "assert find_Parity(100000000000000000000000000000000000000000) == False", "assert find_Parity(99999999999999999999999999999999999999999999999999999999999998) == False", "assert find_Parity(100000000000000000000000000000000000000001) == True", "assert find_Parity(-9) == True", "assert find_Parity(3) == True", "assert find_Parity(True) == True", "assert find_Parity(-42) == False", "assert find_Parity(10) == False", "assert find_Parity(False) == False", "assert find_Parity(99999999999999999999999999999999999999999999999999999999999997) == True", "assert find_Parity(99999999999999999999999999999999999999999) == True", "assert find_Parity(-8) == False", "assert find_Parity(1) == True", "assert find_Parity(99999999999999999999999999999999999999999999999999999999999996) == False", "assert find_Parity(-1) == True", "assert find_Parity(100000000000000000000000000000000000000002) == False", "assert find_Parity(-48) == False", "assert find_Parity(-2) == False", "assert find_Parity(9876543211) == True", "assert find_Parity(-11) == True", "assert find_Parity(99999999999999999999999999999999999999999999999999999999999995) == True", "assert find_Parity(100000000000000000000000000000000000000003) == True", "assert find_Parity(11) == True", "assert find_Parity(99999999999999999999999999999999999999999999999999999999999994) == False", "assert find_Parity(13) == True", "assert find_Parity(9876543212) == False", "assert find_Parity(12) == False", "assert find_Parity(4) == False", "assert find_Parity(-47) == True", "assert find_Parity(8) == False", "assert find_Parity(-7) == True", "assert find_Parity(-41) == True", "assert find_Parity(-61) == True", "assert find_Parity(14) == False", "assert find_Parity(-3) == True", "assert find_Parity(-49) == True", "assert find_Parity(100000000000000000000000000000000000000004) == False", "assert find_Parity(-43) == True", "assert find_Parity(99999999999999999999999999999999999999998) == False", "assert find_Parity(15) == True", "assert find_Parity(40) == False", "assert find_Parity(-44) == False", "assert find_Parity(99999999999999999999999999999999999999999999999999999999999999) == True", "assert find_Parity(9876543213) == True", "assert find_Parity(7) == True", "assert find_Parity(-60) == False", "assert find_Parity(62) == False", "assert find_Parity(100000000000000000000000000000000000000000000000000000000000000) == False", "assert find_Parity(5) == True", "assert find_Parity(17) == True", "assert find_Parity(41) == True", "assert find_Parity(63) == True", "assert find_Parity(99999999999999999999999999999999999999997) == True", "assert find_Parity(16) == False", "assert find_Parity(42) == False", "assert find_Parity(-59) == True", "assert find_Parity(-46) == False", "assert find_Parity(-45) == True", "assert find_Parity(64) == False", "assert find_Parity(-4) == False", "assert find_Parity(-62) == False", "assert find_Parity(6) == False", "assert find_Parity(-58) == False", "assert find_Parity(100000000000000000000000000000000000000005) == True", "assert find_Parity(9876543214) == False", "assert find_Parity(-12) == False", "assert find_Parity(-63) == True", "assert find_Parity(-40) == False", "assert find_Parity(-50) == False", "assert find_Parity(18) == False", "assert find_Parity(-5) == True", "assert find_Parity(-92) == False", "assert find_Parity(-6) == False", "assert find_Parity(-98) == False", "assert find_Parity(-34) == False", "assert find_Parity(-35) == True", "assert find_Parity(61) == True", "assert find_Parity(-14) == False", "assert find_Parity(100000000000000000000000000000000000000006) == False", "assert find_Parity(9876543215) == True", "assert find_Parity(-38) == False", "assert find_Parity(19) == True", "assert find_Parity(-97) == True", "assert find_Parity(-91) == True", "assert find_Parity(100000000000000000000000000000000000000000000000000000000000001) == True", "assert find_Parity(-93) == True", "assert find_Parity(-15) == True", "assert find_Parity(-64) == False", "assert find_Parity(-36) == False", "assert find_Parity(99999999999999999999999999999999999999996) == False", "assert find_Parity(-33) == True", "assert find_Parity(43) == True", "assert find_Parity(20) == False", "assert find_Parity(-95) == True", "assert find_Parity(-30) == False", "assert find_Parity(-37) == True", "assert find_Parity(-13) == True", "assert find_Parity(100000000000000000000000000000000000000007) == True", "assert find_Parity(-16) == False", "assert find_Parity(-99) == True", "assert find_Parity(-32) == False", "assert find_Parity(9876543216) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the minimum product from the pairs of tuples within a given list.\nassert min_product_tuple([(2, 7), (2, 6), (1, 8), (4, 9)] )==8\nYour code should pass the test:\nassert min_product_tuple([(2, 7), (2, 6), (1, 8), (4, 9)] )==8", "test_list": [ "assert min_product_tuple([(2, 7), (2, 6), (1, 8), (4, 9)] )==8", "assert min_product_tuple([(10,20), (15,2), (5,10)] )==30", "assert min_product_tuple([(11,44), (10,15), (20,5), (12, 9)] )==100", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000), (4000000, 6000000)]) == 2000000000000", "assert min_product_tuple([(0, 0), (0, 0), (0, 0)]) == 0", "assert min_product_tuple([(1, 1), (1, 1), (1, 1)]) == 1", "assert min_product_tuple([(-1, -1), (-2, -2), (-3, -3)]) == 1", "assert min_product_tuple([(1, 2), (3, 4), (5, 6), (7, 8)]) == 2", "assert min_product_tuple([(7, 2), (12, 9), (-5, 6), (8, -3), (0, 0)]) == -30", "assert min_product_tuple([(10, 20), (30, 40), (50, 60), (70, 80), (90, 100), (110, 120), (130, 140), (150, 160), (170, 180), (190, 200)]) == 200", "assert min_product_tuple([(100, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1900, 2000)]) == 20000", "assert min_product_tuple([(1000, 2000), (3000, 4000), (5000, 6000), (7000, 8000), (9000, 10000), (11000, 12000), (13000, 14000), (15000, 16000), (17000, 18000), (19000, 20000)]) == 2000000", "assert min_product_tuple([(1000000000, 2000000000), (5000000000, 3000000000), (4000000000, 6000000000)]) == 2000000000000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000)]) == 20000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (900000, 1000000)]) == 20000000000", "assert min_product_tuple([(7, 2), (12, 9), (-5, 6), (8, -3), (0, 0), (-5, 6)]) == -30", "assert min_product_tuple([(5000000000, 3000000000), (4000000000, 6000000000), (1000000000, 2000000000)]) == 2000000000000000000", "assert min_product_tuple([(7, 2), (12, 9), (-5, 6), (0, 0), (8, -3)]) == -30", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (100000, 200000)]) == 20000000000", "assert min_product_tuple([(5000000000, 3000000000), (1000000000, 2000000000), (5000000000, 3000000000)]) == 2000000000000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (700000, 800000)]) == 20000000000", "assert min_product_tuple([(-1, -1), (50, -3), (-2, -2), (-3, -3)]) == -150", "assert min_product_tuple([(1, 1), (1, 1), (1, 1), (1, 1)]) == 1", "assert min_product_tuple([(100, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1900, 2000), (1100, 1200)]) == 20000", "assert min_product_tuple([(5000000000, 3000000000), (5000000001, 3000000000), (1000000000, 2000000000), (5000000000, 3000000000)]) == 2000000000000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (700000, 800000), (900000, 1000000)]) == 20000000000", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (170, 180), (190, 200)]) == 200", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200)]) == 20200", "assert min_product_tuple([(10, 20), (50, 60), (90, 100), (110, 120), (150, 160), (170, 180), (190, 200), (150, 160)]) == 200", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200)]) == 20200", "assert min_product_tuple([(5000000000, 3000000000), (1000000000, 2000000000), (5000000000, 3000000000), (5000000000, 3000000000)]) == 2000000000000000000", "assert min_product_tuple([(100000, 200000), (500000, 600000), (700000, 800000), (900000, 1000000), (100000, 200000)]) == 20000000000", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000), (4000000, 6000000), (1000000, 2000000)]) == 2000000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (900000, 1000000), (900001, 1000000)]) == 20000000000", "assert min_product_tuple([(4000000000, 6000000000), (1000000000, 2000000000), (1000000000, 2000000000)]) == 2000000000000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (900000, 1000000), (300000, 400000)]) == 20000000000", "assert min_product_tuple([(-1, -1), (50, 3000), (50, -3), (-2, -2), (-3, -3)]) == -150", "assert min_product_tuple([(3000000000, 3000000), (1000000, 2000000), (5000000, 3000000), (1000000, 2000000)]) == 2000000000000", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (171, 180), (190, 200)]) == 200", "assert min_product_tuple([(5000000, 100000), (300000, 400000), (900000, 1000000)]) == 120000000000", "assert min_product_tuple([(-1, -1), (-2, -2), (-3, -3), (-1, -1)]) == 1", "assert min_product_tuple([(300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200)]) == 120000", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (171, 180), (190, 200), (50, 60), (110, 120)]) == 200", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200), (300, 400)]) == 20200", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (10, 60), (110, 120), (150, 160), (171, 180), (190, 200), (50, 60), (110, 120)]) == 200", "assert min_product_tuple([(5000000, 100000), (300000, 400000)]) == 120000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (700000, 800000), (300000, 400000)]) == 20000000000", "assert min_product_tuple([(-1, -1), (50, -3), (-2, -2), (-3, -3), (-2, -2)]) == -150", "assert min_product_tuple([(3000000000, 3000000), (5000000, 3000000), (2000, 2000000)]) == 4000000000", "assert min_product_tuple([(3000000000, 3000000), (1000000, 2000000), (5000000, 3000000), (1000000, 2000000), (1000000, 2000000)]) == 2000000000000", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (171, 180), (190, 200), (70, 80)]) == 200", "assert min_product_tuple([(1000, 2000), (3000, 4000), (5000, 6000), (7000, 8000), (9000, 10000), (11000, 12000), (13000, 14000), (15000, 16000), (17000, 18000), (19000, 20000), (7000, 8000)]) == 2000000", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200), (1500, 1600)]) == 20200", "assert min_product_tuple([(1, 1), (1, 1)]) == 1", "assert min_product_tuple([(100000, 4000000000), (100000, 200000), (300000, 400000), (900000, 1000000), (900001, 1000000)]) == 20000000000", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (170, 180), (190, 200), (110, 120)]) == 200", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (100000, 200000), (500000, 600000), (100000, 200000)]) == 20000000000", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000), (4000000, 6000000), (1000000, 2000000), (4000000, 6000000)]) == 2000000000000", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000), (4000000, 6000000), (1000000, 2000000), (4000000, 6000000), (4000000, 6000000)]) == 2000000000000", "assert min_product_tuple([(1, 2), (3, 4), (5, 6)]) == 2", "assert min_product_tuple([(1800, 3000000000), (5000000000, 3000000000), (5000000001, 3000000000), (1000000000, 2000000000), (5000000000, 3000000000)]) == 5400000000000", "assert min_product_tuple([(1, 1)]) == 1", "assert min_product_tuple([(3000000000, 3000000), (1000000, 2000000), (5000000, 3000000)]) == 2000000000000", "assert min_product_tuple([(10, 20), (49, 60), (90, 100), (110, 120), (150, 160), (170, 180), (190, 200), (150, 160), (170, 180)]) == 200", "assert min_product_tuple([(5000000000, 3000000000), (5000000001, 3000000000), (1000000000, 2000000000), (5000000000, 3000000000), (5000000000, 3000000000)]) == 2000000000000000000", "assert min_product_tuple([(100, 200), (500, 600), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1900, 2000), (1100, 1200)]) == 20000", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000), (1000000, 2000000)]) == 2000000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (300000, 400000), (900000, 1000000), (900000, 1000000)]) == 20000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (900000, 1000000), (18000, 200000)]) == 3600000000", "assert min_product_tuple([(1, 1), (1, 1), (1, 1), (1, 2), (1, 1)]) == 1", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800)]) == 20200", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200), (1500, 1600), (1100, 1200)]) == 20200", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (171, 180), (50, 60), (110, 120)]) == 200", "assert min_product_tuple([(-2, -2), (-3, -3), (-1, -1)]) == 1", "assert min_product_tuple([(10, 20), (50, 60), (90, 100), (110, 120), (150, 160), (170, 180), (190, 5), (150, 160)]) == 200", "assert min_product_tuple([(-1, -1), (50, -3), (-2, -2), (-3, -3), (-2, -2), (-2, -2)]) == -150", "assert min_product_tuple([(100000, 200000), (300000, 8), (900000, 1000000), (18000, 200000)]) == 2400000", "assert min_product_tuple([(7, 2), (-5, 6), (8, -3), (0, 0)]) == -30", "assert min_product_tuple([(7, 2), (12, 9), (-5, 6), (8, -3), (0, 0), (8, -3)]) == -30", "assert min_product_tuple([(100000, 200000), (500000, 600000), (700000, 800000), (900000, 1000000), (100000, 200000), (100000, 200000)]) == 20000000000", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200)]) == 20200", "assert min_product_tuple([(5000000, 100000), (300000, 400000), (5000000, 100000)]) == 120000000000", "assert min_product_tuple([(100, 200), (300, 400), (700, 800), (900, 1000), (1100, 1200), (1500, 1600), (1700, 1800), (1900, 2000)]) == 20000", "assert min_product_tuple([(100000, 200000), (300000, 8), (900000, 1000000), (18000, 200000), (300000, 8)]) == 2400000", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000), (4000000, 6000000), (4000000, 6000000), (1000000, 2000000)]) == 2000000000000", "assert min_product_tuple([(180, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (171, 180), (190, 200), (50, 60), (110, 120)]) == 3000", "assert min_product_tuple([(100000, 200000), (700000, 800000), (900000, 1000000), (100000, 200000), (100000, 200000)]) == 20000000000", "assert min_product_tuple([(1000000, 2000000), (5000000, 3000000)]) == 2000000000000", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (1500, 1599), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200)]) == 20200", "assert min_product_tuple([(49, 60), (90, 100), (110, 120), (150, 160), (170, 180), (190, 200), (150, 160), (170, 180)]) == 2940", "assert min_product_tuple([(100, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1900, 2000), (1700, 1800), (1500, 1600)]) == 20000", "assert min_product_tuple([(1000, 2000), (3000, 4000), (5000, 6000), (7000, 8000), (9000, 10000), (11000, 12000), (13000, 14000), (15000, 16000), (19000, 20000)]) == 2000000", "assert min_product_tuple([(5000000001, 3000000000), (1000000000, 2000000000), (5000000000, 3000000000), (5000000001, 3000000000)]) == 2000000000000000000", "assert min_product_tuple([(-1, -1), (50, -3), (-2, -2), (-3, -3), (-2, -2), (-2, -2), (-3, -3)]) == -150", "assert min_product_tuple([(300000, 400000), (900000, 1000000), (300000, 399999), (300000, 400000)]) == 119999700000", "assert min_product_tuple([(5000000, 100000), (300000, 400000), (5000000, 100000), (5000000, 100000)]) == 120000000000", "assert min_product_tuple([(100000, 4000000000), (300000, 400000), (900000, 1000000), (900001, 1000000)]) == 120000000000", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1699, 1800), (1100, 1200), (700, 800)]) == 20200", "assert min_product_tuple([(1, 1), (1, 1), (1, 1), (1, 1), (1, 1)]) == 1", "assert min_product_tuple([(50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (171, 180), (50, 60), (110, 120), (171, 180)]) == 3000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (300000, 400000), (900000, 1000000), (900000, 1000000), (900000, 1000000)]) == 20000000000", "assert min_product_tuple([(101, 200), (500, 600), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200), (1500, 1600)]) == 20200", "assert min_product_tuple([(101, 200), (500, 600), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200)]) == 20200", "assert min_product_tuple([(101, 200), (300, 401), (700, 800), (1100, 1200), (1300, 1400), (1500, 1600), (1699, 1800), (1100, 1200), (700, 800)]) == 20200", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (300000, 400000), (900000, 1000000), (900000, 1000000), (900000, 1000000), (900000, 1000000)]) == 20000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (900000, 1000000), (18000, 200000), (100000, 200000)]) == 3600000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (700000, 800000), (900000, 1000000), (100000, 200000), (900000, 1000000), (100000, 200000)]) == 20000000000", "assert min_product_tuple([(100000, 200000), (300000, 400000), (500000, 600000), (700000, 800000), (900000, 1000000), (700000, 800000), (300000, 400000), (700000, 800000)]) == 20000000000", "assert min_product_tuple([(-2, -2), (-3, -3)]) == 4", "assert min_product_tuple([(500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1500, 1600), (1700, 1800), (1100, 1200), (1500, 1600), (1700, 1800)]) == 300000", "assert min_product_tuple([(101, 200), (300, 400), (500, 600), (700, 800), (900, 1000), (1100, 1200), (1300, 1400), (1700, 1800), (1100, 1200)]) == 20200", "assert min_product_tuple([(7, 2), (8, -3), (-5, 6), (8, -3), (0, 0)]) == -30", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (170, 180), (190, 200), (10, 20)]) == 200", "assert min_product_tuple([(10, 20), (50, 60), (70, 80), (90, 100), (110, 120), (150, 160), (170, 180), (110, 120), (110, 120)]) == 200" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the minimum value in a given heterogeneous list.\nassert min_val(['Python', 3, 2, 4, 5, 'version'])==2\nYour code should pass the test:\nassert min_val(['Python', 3, 2, 4, 5, 'version'])==2", "test_list": [ "assert min_val(['Python', 3, 2, 4, 5, 'version'])==2", "assert min_val(['Python', 15, 20, 25])==15", "assert min_val(['Python', 30, 20, 40, 50, 'version'])==20", "assert min_val(['Python', 10, 5, 2.5, 2.5, 'version']) == 5", "assert min_val(['Python', 'version', 'is', '3.8.5', 1, 2, 3, 4, 5]) == 1", "assert min_val(['Python', [10, 5, 2.5, 2.5], 15, [20, 25]]) == 15", "assert min_val(['Python', [10, 5, 2.5, 2.5], 'version', 15, [20, 25]]) == 15", "assert min_val(['Python', 10, 3, 2.5, 2.5, 'version']) == 3", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 5]) == 1", "assert min_val(['Python', 4, 10, 3, 2.5, 2.5, 'version']) == 3", "assert min_val(['Python', 10, 5, 2.5, 2.5, 'version', 'Python']) == 5", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [20, 25], 'PythonPython']) == 25", "assert min_val(['n', 'version', [10, 5, 2.5, 2.5], 'version', 15, [20, 25]]) == 15", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, 'PythonPython']) == 25", "assert min_val(['Python', [10, 5, 2.5, 2.5], 'version', 15, [20, 25], [10, 5, 2.5, 2.5]]) == 15", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, 'PythonPython', 'PythonPython']) == 25", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 5, 3]) == 1", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [20, 25], 'PythhonPython', 'PythonPython', 25]) == 25", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, 3, [20, 25], 'PythhonPython', 'PythonPython', 25]) == 3", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [20, 25], 'PythhonPython', 'PythonPython', 25, 'PythhonPython', 25]) == 25", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [20, 25], 'PythhonPython', 'PythonPython', 25, 'PythhonPython', 25, 'PythonPython']) == 25", "assert min_val(['Python', [10, 5, 2.5, 2.5], 'version', 15, [20, 25], 'Python']) == 15", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5, 2.5], 25, [20, 25], 'PythhonPython', [10, 5, 2.5, 2.5, 2.5], 'PythonPython', 25, 'PythhonPython', 25, 'PythonPython']) == 25", "assert min_val(['Python', 10, 5, 2.5, 2.5, 'version', 10]) == 5", "assert min_val([[10, 5, 2.5, 2.5, 2.5, 2.5], [10, 5, 2.5, 2.5, 2.5, 2.5], 'Python', [10, 5, 2.5, 2.5, 2.5, 2.5], 15, [20, 25], [10, 5, 2.5, 2.5, 2.5, 2.5]]) == 15", "assert min_val(['Python', 'version', 'is', '3.8.5', 1, 2, 'PythhonPython', 3, 4, 5]) == 1", "assert min_val(['n', 'version', [10, 5, 2.5, 2.5], 15, [20, 25]]) == 15", "assert min_val(['Python', 'Py', [10, 5, 2.5, 2.5], 15, [20, 25]]) == 15", "assert min_val([[10, 5, 2.5, 2.5], 25, 'PythonPython', 'PythonPython']) == 25", "assert min_val([[10, 5, 2.5, 2.5, 5], [10, 5, 2.5, 2.5, 5], 25, 'version']) == 25", "assert min_val(['PythonPython', [10, 5, 2.5], 25, [20, 25], 'PythonPython']) == 25", "assert min_val(['Python', 'Py', 15, [20, 25]]) == 15", "assert min_val(['PythonPython', 'PythonPytthon', [10, 5, 2.5, 2.5], 'Py', 3, [20, 25], 'Pythh3.8.5onPython', 'PythonPython', 25, 'PythhonPython', 25]) == 3", "assert min_val(['Python', 'versioen', 'is', '3.8.5', 1, 2, 'Python', 'PythhonPython', 3, 4, 5]) == 1", "assert min_val(['Python', [10, 5, 2.5, 2.5], 'version', 'veirsion', 15, [20, 25], 'Python']) == 15", "assert min_val(['Python', [10, 5, 2.5, 2.5], 'version', 15, [5, 20, 25], 15, 15]) == 15", "assert min_val(['PythonPython', 25, [20, 25], 'PythhonPython', 'PythonPython', 25, 25]) == 25", "assert min_val(['n', [10, 5, 2.5], 'version', [10, 5, 2.5], 'version', 15, [20, 25]]) == 15", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [20, 25], 'PythhonPython', 'tPythonPython', 25]) == 25", "assert min_val(['Python', 'version', 'is', '3.8.5', 1, 2, 'PythhonPython', 3, 4, 5, '3.8.5']) == 1", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, 3, [20, 25], 'PythhonPython', 'PythonPython', 25, [10, 5, 2.5, 2.5]]) == 3", "assert min_val(['Python', [10, 5, 2.5, 2.5], [19, 25], 15, [19, 25], 'Python', 'Python']) == 15", "assert min_val(['PythonPython', 25, [20, 25], 'PythhonPython', 24, 25, 25]) == 24", "assert min_val([20, 'Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 5, 3, 5]) == 1", "assert min_val(['Python', 'version', 'is', '3.8.5', 1, 2, 4, 5]) == 1", "assert min_val(['Python', 'version', 'is', '3.8.5', 1, 4, 2, 'PythhonPython', 3, 4, 5, 'Python']) == 1", "assert min_val(['n', [10, 5, 2.5], 'version', 'version', 25, [20, 25], [10, 5, 2.5]]) == 25", "assert min_val(['PythonPython', 25, [20, 25], 'PythhonPython', 'PythonPython', 25]) == 25", "assert min_val(['Python', 'version', 'is', '3.8.5', 1, 4, 2, 'PythhonPython', 3, 4, 5, 'Python', 2]) == 1", "assert min_val([25, 'PythonPython', [10, 5, 2.5, 2.5], 25, 3, [20, 25], 'PythhonPython', 'PythonPython', 25]) == 3", "assert min_val(['n', [10, 5, 2.5], 'version', 'version', 25, [20, 25], 'PythonPytthon', [10, 5, 2.5]]) == 25", "assert min_val(['Python', 4, 'version', 'is', '3.8.5', 1, 2, 3, 4, 5, 3]) == 1", "assert min_val(['Python', [10, 5, 2.5, 2.5, 2.5], 3, [20, 25]]) == 3", "assert min_val([[1, 20, 25], 'PythonPython', [10, 5, 2.5], 25, [1, 20, 25], 'PythonPython']) == 25", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 5, 3, 5, 5]) == 1", "assert min_val(['Python', 'version', 5, 'is', '3.8.5', 4, 3, 2, 'PythhonPython', 3, 4, 5, 'Python', 2, 4]) == 2", "assert min_val([25, 'PythonPython', 'PythonPython']) == 25", "assert min_val(['Python', [10, 5, 2.5, 2.5], [19, 25], 15, [19, 25], 'Python', 'Python', [19, 25]]) == 15", "assert min_val(['Python', [10, 5, 2.5, 2.5], [25], 15, [25], 'Python', 'Python']) == 15", "assert min_val(['Python', 'Py', 15, 16, [20, 25]]) == 15", "assert min_val(['n', [10, 5, 2.5], 'version', 'version', 25, [20, 25], [10, 5, 2.5], 25]) == 25", "assert min_val(['version', [10, 5, 2.5, 2.5], 'version', 14, [20, 25, 25]]) == 14", "assert min_val(['Python', 'Py', [10, 5, 2.5, 2.5], 15, [20, 25], 15]) == 15", "assert min_val(['Python', 'PyPythonPytthon', 15, [20, 25]]) == 15", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, 3, [20, 25], 'PythhonPython', 'Pythhon', 'PythonPython']) == 3", "assert min_val(['n', [10, 5, 2.5], 'version', 'version', 25, [20, 25], 'PythonPytthon', [10, 5, 2.5], [10, 5, 2.5]]) == 25", "assert min_val(['Python', 5, 5, 2.5, 2.5, 'version', 'Python']) == 5", "assert min_val(['Python', 'version', 'is', '3.8.5', 2, 'version', 'PythhonPython', 3, 4, 5]) == 2", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, 3, [20, 25], 'PythhonPython', 'PythonPython', 25, 24, [10, 5, 2.5, 2.5]]) == 3", "assert min_val([5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 5, 3, 5, 5, 1]) == 1", "assert min_val(['Python', [10, 5, 2.5, 2.5, 2.5], 3, [20, 25], [20, 25], 'Python']) == 3", "assert min_val(['Python', 10, 5, 2.5, 2.5, 'version', 'Python', 2.5, 2.5]) == 5", "assert min_val(['Python', 'tPython', 10, 5, 2.5, 2.5, 'version', 'Python', 2.5]) == 5", "assert min_val(['PythonPython', 'PythonPytthon', [2.5, 10, 5, 2.5, 2.5], 'Py', 3, [2.5, 10, 5, 2.5, 2.5], [20, 25], 'Pythh3.8.5onPython', 'PythonPython', 25, 'PythhonPython', 25]) == 3", "assert min_val(['nn', [10, 5, 2.5], 'version', 'version', 25, [20, 25], [10, 5, 2.5], 25, 25]) == 25", "assert min_val(['versioen', [10, 5, 2.5, 2.5], 'n', 15, [20, 25], [10, 5, 2.5, 2.5]]) == 15", "assert min_val(['PythonPyothon', 'PythonPPythonPytthonython', [9, 5, 2.5, 2.5], 25, 'PythonPython']) == 25", "assert min_val([[19, 25], 15, [19, 25], 'Python', 'Python', [19, 25], [19, 25]]) == 15", "assert min_val(['Python', 4, 'version', 'is', 1, 2, 3, 4, 5, 3, 5]) == 1", "assert min_val(['PythonPythoveirsionn', 'PythonPython', [10, 5, 2.5, 2.5, 2.5], 25, [20, 25], 'PythhonPython', [10, 5, 2.5, 2.5, 2.5], 'PythonPython', 25, 'PythhonPython', 25, 'PythonPython']) == 25", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [10, 5, 2.5, 2.5], [20, 25], 'PythhonPython', 'PythonPython', 25, 'PythhonPython', 25, 'PythonPython']) == 25", "assert min_val(['Python', 'versioen', 'is', '3.8.5', 'vertPythonPythonioen', 1, 2, 'Python', 'PythhonPythhonPythonPython', 3, 4, 5, '3.8.5']) == 1", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 1, 4, 5, 3, 5, 5, 1]) == 1", "assert min_val(['version', 'versinon', [10, 5, 2.5, 2.5], 'version', 14, [20, 25, 25]]) == 14", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 3, 5, 5]) == 1", "assert min_val(['Python', [10, 5, 2.5, 2.5], [25], 15, [25], 'Python']) == 15", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 2, 1, 2, 3, 4, 5]) == 1", "assert min_val(['n', [10, 5, 2.5], 'version', 'version', 25, [20, 25], 'tPythonPython', 26, [10, 5, 2.5]]) == 25", "assert min_val(['versioen', [2.5, 10, 5, 2.5, 2.5], 'n', [2.5, 10, 5, 2.5, 2.5], 15, [20, 25], [2.5, 10, 5, 2.5, 2.5]]) == 15", "assert min_val(['Python', 'version', 5, 'is', '3.8.5', 4, 3, 2, 'PythhonPython', 3, 4, 5, 'Python', 2, 3]) == 2", "assert min_val([25, 'PythonPython', 'PythonPython', 25]) == 25", "assert min_val(['vversion', 'Python', 'version', 'is', '3.8.5', 1, 4, 9, 'PythhonPython', 3, 4, 5, 'Python']) == 1", "assert min_val(['PythonPPythonPytthonython', 25, [20, 25], 'PythonPython']) == 25", "assert min_val(['Python', [25], 15, [25], 'Python', [10, 5, 2.5, 2.5], 'Python', 15]) == 15", "assert min_val(['PythonPython', [10, 5, 2.5, 2.5], 25, [20, 25, 25], 'PythhonPython', [20, 25, 25], 'PythonPython', 25]) == 25", "assert min_val(['Python', 4, 'version', '3.vversion8.5', '3.8.5', 1, 4, 2, 'PythhonPython', 3, 5, 'Python', 2]) == 1", "assert min_val(['PythonPython', 24, [10, 5, 2.5, 2.5], 25, 'PythonPython']) == 24", "assert min_val([16, 'Python', [10, 5, 2.5, 2.5], 'vsion', 15, [5, 20, 25], 15, 15]) == 15", "assert min_val(['Python', 'version', 5, 'is', '3.8.5', 1, 2, 'PythhonPython', 3, 4, 5, '3.8.5']) == 1", "assert min_val([[20, 25, 25], 'Python', 'Py', [10, 5, 2.5, 2.5], 15, [20, 25, 25], [20, 25, 25]]) == 15", "assert min_val([[10, 5, 2.5, 2.5], 25, [20, 25], 'PythonPython', 25, 'PythhonPython', 25]) == 25", "assert min_val(['Python', [9, 20, 25], 'Py', [10, 5, 2.5, 2.5], 15, [9, 20, 25], 15]) == 15", "assert min_val(['nn', [10, 5, 2.5], 'version', 'verission', 25, [20, 25], [10, 5, 2.5], 25, 25]) == 25", "assert min_val(['Python', 5, 'version', 'is', '3.8.5', 1, 2, 3, 4, 3, 5, 5, '3.8.5']) == 1", "assert min_val(['verission', 'Python', 'version', 'is', '3.8.5', 1, 2, 3, 4, 5]) == 1", "assert min_val(['version', [10, 9, 5, 2.5, 2.5], 'version', 14, [20, 25, 25]]) == 14", "assert min_val(['Python', 'Py', 15, 16, [21, 20, 25]]) == 15" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to remove odd numbers from a given list.\nassert remove_odd([1,2,3]) == [2]\nYour code should pass the test:\nassert remove_odd([1,2,3]) == [2]", "test_list": [ "assert remove_odd([1,2,3]) == [2]", "assert remove_odd([2,4,6]) == [2,4,6]", "assert remove_odd([10,20,3]) == [10,20]", "assert remove_odd([]) == []", "assert remove_odd([1, 3, 5, 7, 9]) == []", "assert remove_odd([2, 4, 6, 8, 10, 12, 14]) == [2, 4, 6, 8, 10, 12, 14]", "assert remove_odd([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [2, 4, 6, 8, 10]", "assert remove_odd([-3, -5, -7, -9, -11]) == []", "assert remove_odd([-2, -4, -6, -8, -10]) == [-2, -4, -6, -8, -10]", "assert remove_odd([3, 6, 9, 12, 15, 18, 21]) == [6, 12, 18]", "assert remove_odd([1, 4, 7, 10, 13, 16, 19]) == [4, 10, 16]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000]", "assert remove_odd([-2, -4, -6, -8, -10, -2]) == [-2, -4, -6, -8, -10, -2]", "assert remove_odd([5, 3, 5, 7, 9]) == []", "assert remove_odd([-3, -7, -9, -11]) == []", "assert remove_odd([3, 7, 9]) == []", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 249999, 250000, 500000, 1000000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000]", "assert remove_odd([False, False, False, False, False, True, True, False, True]) == [False, False, False, False, False, False]", "assert remove_odd([1, 4, 7, 10, 13, 16, 19, 19]) == [4, 10, 16]", "assert remove_odd([3, -8, 7, 9]) == [-8]", "assert remove_odd([1, 3, 7, 9]) == []", "assert remove_odd([False, False, False, False, False, True, True, False, True, False, True, True, False]) == [False, False, False, False, False, False, False, False]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, -125000, 0]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, -125000, 0]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 249999, 250000, 500000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000]", "assert remove_odd([-3, -4, -7, -9, -11]) == [-4]", "assert remove_odd([-7, -9, -11, -3]) == []", "assert remove_odd([-2, -4, -6, -8, -10, -4]) == [-2, -4, -6, -8, -10, -4]", "assert remove_odd([-3, -5, -7, -11]) == []", "assert remove_odd([-1000000, -500000, -250000, -125000, 19, 0, 125000, 250000, 500000, 1000000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000]", "assert remove_odd([1, 4, 7, 13, 16, 19, 19]) == [4, 16]", "assert remove_odd([-1000000, -500000, -250000, -125000, 19, 0, 125000, 250000, 500000, 1000000, -250000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, -250000]", "assert remove_odd([3, 7, 9, 3]) == []", "assert remove_odd([3, 5, 7, 9, 3]) == []", "assert remove_odd([-3, -7, -9, -11, -9]) == []", "assert remove_odd([-3, -4, -8, -7, -9, -11]) == [-4, -8]", "assert remove_odd([-1000000, -500000, -250000, -125000, 19, 0, 125000, 250000, 10, 500000, 1000000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 10, 500000, 1000000]", "assert remove_odd([-3, -5, -7, -8, -9, -11, -8]) == [-8, -8]", "assert remove_odd([1, 2, 3, 4, 6, 7, 8, 9, 10]) == [2, 4, 6, 8, 10]", "assert remove_odd([3, 9, 4, 15, 18, 21]) == [4, 18]", "assert remove_odd([-4, -8, -7, -9, -11]) == [-4, -8]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000]", "assert remove_odd([-1000000, -500000, -250000, -125000, -1, 0, 125000, 250000, 10, 500000, 1000000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 10, 500000, 1000000]", "assert remove_odd([3, 6, 9, 12, 15, 21]) == [6, 12]", "assert remove_odd([1, 3, 4, 6, 7, 8, 9, 10]) == [4, 6, 8, 10]", "assert remove_odd([1, 2, 3, 4, 15, 6, 7, 8, 9, 10]) == [2, 4, 6, 8, 10]", "assert remove_odd([-3, -4, -7, -9, -6, -11]) == [-4, -6]", "assert remove_odd([-1000000, -500000, -250000, -125000, 19, 125000, 250000, 500000, 500001, 18, 1000000, -250000]) == [-1000000, -500000, -250000, -125000, 125000, 250000, 500000, 18, 1000000, -250000]", "assert remove_odd([1, 3, 10, 7, 9]) == [10]", "assert remove_odd([2, 9, 12, 15, 18, 21]) == [2, 12, 18]", "assert remove_odd([-3, -4, -8, -7, -9, -11, -9]) == [-4, -8]", "assert remove_odd([-5, -7, -8, -9, -11, -8, -5]) == [-8, -8]", "assert remove_odd([-2, -4, -8, -10, -4]) == [-2, -4, -8, -10, -4]", "assert remove_odd([-1000000, 16, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, 0, -500000]) == [-1000000, 16, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, 0, -500000]", "assert remove_odd([9, 12, 15, 18, 21]) == [12, 18]", "assert remove_odd([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 5]) == [2, 4, 6, 8, 10]", "assert remove_odd([1, 3, 4, 6, -500000, 8, 9, 10, 4]) == [4, 6, -500000, 8, 10, 4]", "assert remove_odd([-3, -4, -9, -6, -11]) == [-4, -6]", "assert remove_odd([-4, -6, -8, -10, -4]) == [-4, -6, -8, -10, -4]", "assert remove_odd([-3, -4, -9, 19, -6, -7, -11]) == [-4, -6]", "assert remove_odd([3, 4, 6, 7, 8, 9]) == [4, 6, 8]", "assert remove_odd([-3, 18, -9, -11, -9]) == [18]", "assert remove_odd([-7, -9, -11]) == []", "assert remove_odd([3, 6, 9, 12, 15, 21, 12]) == [6, 12, 12]", "assert remove_odd([-1000000, -500000, -250000, -125000, -1, 1, 125000, 250000, 10, -1000000, 1000000]) == [-1000000, -500000, -250000, -125000, 125000, 250000, 10, -1000000, 1000000]", "assert remove_odd([-7, -9, -11, -3, -7, -7]) == []", "assert remove_odd([-1000000, -500000, -1, -125000, 0, 125000, 250000, 500000, 1000000, -125000]) == [-1000000, -500000, -125000, 0, 125000, 250000, 500000, 1000000, -125000]", "assert remove_odd([1, 2, 3, 4, 6, 8, 9, 10]) == [2, 4, 6, 8, 10]", "assert remove_odd([1, 4, 7, 13, 16, 19, 19, 1, 1]) == [4, 16]", "assert remove_odd([9, 4, 15, 18, 21]) == [4, 18]", "assert remove_odd([5, 3, 5, 9]) == []", "assert remove_odd([-1000000, -500000, -250000, -125000, -1, 0, 125000, 250000, 10, 499999, 1000000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 10, 1000000]", "assert remove_odd([-3, -7, -9, -11, -7]) == []", "assert remove_odd([1, 1, 3, 5, 7, 9]) == []", "assert remove_odd([False, False, False, False, False, True, True, False, True, True, True, False]) == [False, False, False, False, False, False, False]", "assert remove_odd([-500000, -250000, -125000, 19, 0, 250000, 500000, 1000000, -250000]) == [-500000, -250000, -125000, 0, 250000, 500000, 1000000, -250000]", "assert remove_odd([-999999, -500000, -250000, -125000, -1, 1, 125000, 250000, 10, 1000000]) == [-500000, -250000, -125000, 125000, 250000, 10, 1000000]", "assert remove_odd([17, 3, 6, 9, 12, 15, 18, 21]) == [6, 12, 18]", "assert remove_odd([1, 3, 10, -1000000, 2, 9, 10]) == [10, -1000000, 2, 10]", "assert remove_odd([-3, -7, -9, -11, -11, -9]) == []", "assert remove_odd([17, 3, 6, 10, 12, 15, 18, 21, 18]) == [6, 10, 12, 18, 18]", "assert remove_odd([3, 6, 9, 12, 15, 21, 12, 6]) == [6, 12, 12, 6]", "assert remove_odd([-4, -8, -7, -9, -11, -7]) == [-4, -8]", "assert remove_odd([500000, 5, 3, 5, 9, 5]) == [500000]", "assert remove_odd([1, 4, 10, 13, 16]) == [4, 10, 16]", "assert remove_odd([3, 4, 8, 9]) == [4, 8]", "assert remove_odd([-1000000, -500000, -11, -250000, -125000, -7, 19, 0, 125000, 250000, 18, 10, 500000, -11]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 18, 10, 500000]", "assert remove_odd([1, 2, 3, 4, 5, 6, 7, 500001, 9, 10]) == [2, 4, 6, 10]", "assert remove_odd([False, True, False, False, False, True, True, False, True, False, True, True, False]) == [False, False, False, False, False, False, False]", "assert remove_odd([1, 3, 10, -1000000, 2, 9, 10, 3]) == [10, -1000000, 2, 10]", "assert remove_odd([500000, 5, 3, 5, 9, 5, 3]) == [500000]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 249999, 250000, 500000, 249999]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000]", "assert remove_odd([3, -8, 9]) == [-8]", "assert remove_odd([-7, -9, -11, -3, -7, -7, -11]) == []", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 249999, 250000, 500000, 250000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 250000]", "assert remove_odd([1, 1, 3, 5, 9]) == []", "assert remove_odd([-3, -4, -9, 19, -6, -7, -8, -11, -11]) == [-4, -6, -8]", "assert remove_odd([-3, -5, -7, -2, -11]) == [-2]", "assert remove_odd([3, -8, 7, 2, 9, 9]) == [-8, 2]", "assert remove_odd([9, 4, 18, 21, 18]) == [4, 18, 18]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, 0, -500000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 500000, 1000000, 0, -500000]", "assert remove_odd([-3, -4, -2, -7, -9, -11]) == [-4, -2]", "assert remove_odd([-2, -4, -3, 12, -8, -10]) == [-2, -4, 12, -8, -10]", "assert remove_odd([False, False, False, False, False, True, True, False, True, True, False]) == [False, False, False, False, False, False, False]", "assert remove_odd([3, 6, 9, 12, 15, 21, 11, 6]) == [6, 12, 6]", "assert remove_odd([-2, -4, -6, -8, 7, -10]) == [-2, -4, -6, -8, -10]", "assert remove_odd([-1000000, -500000, -250000, -125000, 0, 125000, 249999, 11, 250000, 250000, 500000]) == [-1000000, -500000, -250000, -125000, 0, 125000, 250000, 250000, 500000]", "assert remove_odd([1, 1, 4, 5, 9]) == [4]", "assert remove_odd([-3, -5, -7, -11, -11]) == []", "assert remove_odd([-5, -7, -11, -7]) == []", "assert remove_odd([False, False, False, False, True, True, False, True]) == [False, False, False, False, False]", "assert remove_odd([-999999, -500000, -250000, -125000, -1, 1, 125000, 250000, 10, 1000000, -999999]) == [-500000, -250000, -125000, 125000, 250000, 10, 1000000]", "assert remove_odd([-3, -4, -7, -9, -11, -9]) == [-4]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract the nth element from a given list of tuples.\nassert extract_nth_element([('Greyson Fulton', 98, 99), ('Brady Kent', 97, 96), ('Wyatt Knott', 91, 94), ('Beau Turnbull', 94, 98)] ,0)==['Greyson Fulton', 'Brady Kent', 'Wyatt Knott', 'Beau Turnbull']\nYour code should pass the test:\nassert extract_nth_element([('Greyson Fulton', 98, 99), ('Brady Kent', 97, 96), ('Wyatt Knott', 91, 94), ('Beau Turnbull', 94, 98)] ,0)==['Greyson Fulton', 'Brady Kent', 'Wyatt Knott', 'Beau Turnbull']", "test_list": [ "assert extract_nth_element([('Greyson Fulton', 98, 99), ('Brady Kent', 97, 96), ('Wyatt Knott', 91, 94), ('Beau Turnbull', 94, 98)] ,0)==['Greyson Fulton', 'Brady Kent', 'Wyatt Knott', 'Beau Turnbull']", "assert extract_nth_element([('Greyson Fulton', 98, 99), ('Brady Kent', 97, 96), ('Wyatt Knott', 91, 94), ('Beau Turnbull', 94, 98)] ,2)==[99, 96, 94, 98]", "assert extract_nth_element([('Greyson Fulton', 98, 99), ('Brady Kent', 97, 96), ('Wyatt Knott', 91, 94), ('Beau Turnbull', 94, 98)],1)==[98, 97, 91, 94]", "assert extract_nth_element([], 0) == []", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 91, 89)], 1) == [78, 92, 79, 88]", "assert extract_nth_element([], 1) == []", "assert extract_nth_element([('John Doe', 78, 90, 82)], 0) == ['John Doe']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1)], 1) == [1, 1, 1]", "assert extract_nth_element([], 84) == []", "assert extract_nth_element([], 85) == []", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1), (1, 'C', 1)], 1) == [1, 'C', 1, 1, 'C']", "assert extract_nth_element([('A', 1), ('C', 1)], 1) == [1, 1]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1), (1, 'C', 1)], 0) == ['Emily BrownA', 1, 'B', 'C', 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1)], 0) == ['A', 'B', 'C', 'C']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1)], 0) == ['A', 'B', 'C', 'C', 'C']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1)], 1) == [1, 1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1)], 1) == [1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1)], -1) == [1, 1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), (2, 'A', 1), ('C', 1), ('C', 1), ('A', 1)], 0) == ['A', 'B', 2, 'C', 'C', 'A']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1)], -1) == [1, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1), (1, 'C', 1)], -1) == [1, 1, 1, 1, 1]", "assert extract_nth_element([('B', 1), ('C', 1), ('C', 1)], 0) == ['B', 'C', 'C']", "assert extract_nth_element([('EEmily BrownownA', 1), (1, 'C', 1), ('B', 1), ('C', 1), (1, 'C', 1)], 1) == [1, 'C', 1, 1, 'C']", "assert extract_nth_element([('A', 1), ('C', 1), ('C', 1)], 1) == [1, 1, 1]", "assert extract_nth_element([('B', 1), ('C', 1), ('Mark Johnson', 1), ('C', 1)], 0) == ['B', 'C', 'Mark Johnson', 'C']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 'C', 1), ('C', 1), ('C', 1)], 1) == [1, 1, 'C', 1, 1]", "assert extract_nth_element([('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['Jane Smith', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('B', 1), ('C',), ('Mark Johnson', 1), ('C', 1)], 0) == ['B', 'C', 'Mark Johnson', 'C']", "assert extract_nth_element([('AA', 'A', 1), ('B', 1), ('C', 1)], 1) == ['A', 1, 1]", "assert extract_nth_element([('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Jane Smith', 0, 87, 84), ('Emily Brown', 88, 91, 89)], 0) == ['Jane Smith', 'Mark Johnson', 'Jane Smith', 'Emily Brown']", "assert extract_nth_element([('A', 1), ('B', 1), ('C',), ('C', 1), ('C', 1)], 0) == ['A', 'B', 'C', 'C', 'C']", "assert extract_nth_element([('C', 1)], 1) == [1]", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('John Doe', 78, 90, 82)], -1) == [82]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1)], -2) == ['A', 'B', 'C', 'C']", "assert extract_nth_element([], 83) == []", "assert extract_nth_element([('A', 1), ('C', 1, 1), ('C', 1)], 1) == [1, 1, 1]", "assert extract_nth_element([('C', 92), ('A', 1), ('B', 1), ('C', 1), ('C', 1), ('A', 1)], -1) == [92, 1, 1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('A', 1)], -1) == [1, 1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 'CC', 1)], 1) == [1, 1, 'CC']", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1)], 0) == ['Emily BrownA', 1, 'B', 'C']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('John Doe', 78, 90, 82), ('John Doe', 78, 90, 82)], 0) == ['John Doe', 'John Doe', 'John Doe']", "assert extract_nth_element([('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Jane Smith', 0, 87, 84), ('Emily Brown', 88, 91, 89), (79, 'Emily Brown', 88, 91, 89), ('Jane Smith', 92, 87, 84)], 0) == ['Jane Smith', 'Mark Johnson', 'Jane Smith', 'Emily Brown', 79, 'Jane Smith']", "assert extract_nth_element([('A', 1), ('C', 1, 1), ('C', 1)], 0) == ['A', 'C', 'C']", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), ('C', 1), (1, 'C', 1)], -1) == [1, 1, 1, 'C', 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), ('C', 1), (1, 'C', 1), ('C',)], -1) == [1, 1, 1, 'C', 1, 1, 'C']", "assert extract_nth_element([('A', 1), ('C', 1), ('BrownA', 1)], 1) == [1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 'CC', 1), ('A', 1)], 1) == [1, 1, 'CC', 1]", "assert extract_nth_element([('A', 1), ('C', 1), ('BrownA', 1)], -1) == [1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('A', 1), (1,)], -1) == [1, 1, 1, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), ('Emilyy BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1)], 0) == ['Emily BrownA', 'Emilyy BrownA', 1, 'B', 'C']", "assert extract_nth_element([], 89) == []", "assert extract_nth_element([('Emily BrownA', 1), ('Emilyy BrownA', 1), (1, 'C', 1), ('B', 1)], 1) == [1, 1, 'C', 1]", "assert extract_nth_element([('A', 1), ('C', 1, 1), ('C', 1)], -1) == [1, 1, 1]", "assert extract_nth_element([('A', 1), ('', 1), ('B', 1), ('C', 1), ('C', 1)], 0) == ['A', '', 'B', 'C', 'C']", "assert extract_nth_element([('John Doe', 78, 90, 82, 'John Doe'), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('A', 1), ('C', 1), ('BrownA', 1)], 0) == ['A', 'C', 'BrownA']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 'CC', 1), ('B', 1)], 1) == [1, 1, 'CC', 1]", "assert extract_nth_element([('A', 1), ('A', 92), ('B', 1), ('C', 1), ('A', 1)], 1) == [1, 92, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), ('Emilyy BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1), ('Emilyy BrownA', 1)], 0) == ['Emily BrownA', 'Emilyy BrownA', 1, 'B', 'C', 'Emilyy BrownA']", "assert extract_nth_element([('A', '', 1), ('B', 1), ('C', 1), ('C', 1)], 1) == ['', 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), ('C', 1), (1, 'C', 0, 1), ('C',)], -1) == [1, 1, 1, 'C', 1, 1, 'C']", "assert extract_nth_element([('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Jane Smith', 0, 87, 84), ('Jane Smith', 1, 87, 84), ('Emily Brown', 88, 91, 89)], 0) == ['Jane Smith', 'Mark Johnson', 'Jane Smith', 'Jane Smith', 'Emily Brown']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 91, 89), ('John Doe', 78, 90, 82)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown', 'John Doe']", "assert extract_nth_element([('A', 1), ('C', 1), ('BrownA', 1), ('BrownA', 1)], -1) == [1, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), ('Emilyy BrownA', 1), (1, 'C', 1), ('B', 2), ('C', 1)], 0) == ['Emily BrownA', 'Emilyy BrownA', 1, 'B', 'C']", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('Jane Smith',), ('C', 1), (1, 'C', 0, 1), ('C',)], -1) == [1, 1, 1, 'Jane Smith', 1, 1, 'C']", "assert extract_nth_element([('A', 1), ('C', 1), ('BrownA', 1)], -2) == ['A', 'C', 'BrownA']", "assert extract_nth_element([('BrownownAA', 1), ('C', 1), ('BrownA', 1), ('BrownA', 1)], -1) == [1, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), ('C', 1), (1, 'C', 1)], 0) == ['Emily BrownA', 1, 'B', 'C', 'C', 1]", "assert extract_nth_element([('AA', 'A', 1), ('C', 1)], 1) == ['A', 1]", "assert extract_nth_element([('A', 1), ('C', 1, 1), ('C', 1), ('C', 1)], 1) == [1, 1, 1, 1]", "assert extract_nth_element([('B', 1), ('C', 1), ('Mark Johnson', 1), ('C', 1), ('C', 1)], -1) == [1, 1, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), ('Emilyy BrownA', 1), (1, 'C', 1), ('B', 2)], -1) == [1, 1, 1, 2]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1), ('C', 1)], -1) == [1, 1, 1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1)], 0) == ['A', '', 'B', 'C', 'C', 'C']", "assert extract_nth_element([('A', 1), ('', 1), ('B', 1), ('C', 1), ('C', 1), (1,), ('C', 1)], -1) == [1, 1, 1, 1, 1, 1, 1]", "assert extract_nth_element([('B', 1, 'B'), ('B', 1), ('C', 1), ('Mark Johnson', 1), ('C', 1), ('C', 1)], -1) == ['B', 1, 1, 1, 1, 1]", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1), ('C', 1)], 1) == [1, 1, 1, 1, 1, 1]", "assert extract_nth_element([('BrownownAA', 1), ('EEmily BrownownA', 'BrownA', 1), ('C', 1), ('BrownA', 1), ('BrownA', 1)], -2) == ['BrownownAA', 'BrownA', 'C', 'BrownA', 'BrownA']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), (90, 'Mark Johnson', 79, 85, 91), ('Mark Johnson', 79, 85, 91, 85), ('Emily Brown', 88, 91, 89), ('Mark Johnson', 'Mark Jokhnson', 79, 85, 91, 85), ('John Doe', 78, 90, 82)], 0) == ['John Doe', 'Jane Smith', 90, 'Mark Johnson', 'Emily Brown', 'Mark Johnson', 'John Doe']", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1), (1, 'C', 1, 1)], -1) == [1, 1, 1, 1, 1]", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 91, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 'C', 1), ('C', 1), ('C', 1)], 0) == ['A', 'B', 'C', 'C', 'C']", "assert extract_nth_element([('A', 1), ('AA', 'A', 1), ('C', 1)], 1) == [1, 'A', 1]", "assert extract_nth_element([('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Jane Smith', 0, 87, 84), ('Emily Brown', 88, 91, 89), (79, 'Emily Brown', 88, 91, 89), ('Jane Smith', 92, 87, 84)], -2) == [87, 85, 87, 91, 91, 87]", "assert extract_nth_element([('BA', 'A', 1), ('A', 1), ('B', 'A', 1), ('C', 1), ('BrownA', 1), ('B', 'A', 1)], 1) == ['A', 1, 'A', 1, 1, 'A']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 85, 91), ('Emily Brown', 88, 91, 89), ('Jane Smith', 92, 87, 84)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown', 'Jane Smith']", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), ('C', 1), (1, 'C', 1), ('C',), ('C',)], -1) == [1, 1, 1, 'C', 1, 1, 'C', 'C']", "assert extract_nth_element([(1,), (1, 'C', 1), ('B', 1), ('C', 1)], 0) == [1, 1, 'B', 'C']", "assert extract_nth_element([('A', 1), ('B', 2), ('C', 'CC', 1)], 1) == [1, 2, 'CC']", "assert extract_nth_element([('A', 1), ('CC', 1), ('C', 1)], 0) == ['A', 'CC', 'C']", "assert extract_nth_element([('AA', 'A', 1), ('B', 1), ('AA', 'A'), ('C', 1)], 0) == ['AA', 'B', 'AA', 'C']", "assert extract_nth_element([('A', 1), ('A', 92), ('B', 1), ('C', 1, 1), ('A', 1)], 1) == [1, 92, 1, 1, 1]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), (1, '', 'C', 1), ('C', 1), (1, 'C', 1)], 0) == ['Emily BrownA', 1, 'B', 'C', 1, 'C', 1]", "assert extract_nth_element([('Emily BrownA', 1), ('B', 1), ('Jane Smith',), ('C', 1), (1, 'C', 0, 1), (1, 'C', 0, 0), ('C',)], -1) == [1, 1, 'Jane Smith', 1, 1, 0, 'C']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 91, 89)], -2) == [90, 87, 85, 91]", "assert extract_nth_element([('Emily BrownA', 1), (1, 'C', 1), ('B', 1), ('C',), ('C', 1), (1, 'C', 1), (1, 'C', 1)], -1) == [1, 1, 1, 'C', 1, 1, 1]", "assert extract_nth_element([('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Mark Johnson', 78, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['Jane Smith', 'Mark Johnson', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1), ('C', 1), ('C', 1), ('B', 1)], 0) == ['A', 'B', 'C', 'C', 'C', 'B']", "assert extract_nth_element([('John Doe', 78, 90, 82), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Emily Brown', 88, 78, 91, 89), ('John Doe', 78, 90, 82)], 0) == ['John Doe', 'Jane Smith', 'Mark Johnson', 'Emily Brown', 'John Doe']", "assert extract_nth_element([('A', 1), ('', 1), ('C', 1), ('C', 1)], 0) == ['A', '', 'C', 'C']", "assert extract_nth_element([('A', 1), ('B', 1), ('C', 1)], -2) == ['A', 'B', 'C']", "assert extract_nth_element([('Mark Johnson', 79, 85, 91), ('Mark Johnson', 78, 85, 91), ('Emily Brown', 88, 91, 89)], 0) == ['Mark Johnson', 'Mark Johnson', 'Emily Brown']", "assert extract_nth_element([('A', 1), ('C', 1), ('BrownA', 1), ('A', 1)], -1) == [1, 1, 1, 1]", "assert extract_nth_element([('Jane Smith', 91, 87, 84), ('Jane Smith', 92, 87, 84), ('Mark Johnson', 79, 85, 91), ('Jane Smith', 0, 87, 84), ('Emily Brown', 88, 91, 89), (79, 'Emily Brown', 88, 91, 89), ('Jane Smith', 92, 87, 84)], -2) == [87, 87, 85, 87, 91, 91, 87]", "assert extract_nth_element([('Emily BrownA', 1), ('B', 90, 1), ('Emilyy BrownA', 1), (1, 'C', 1), ('B', 1), ('C', 1)], 0) == ['Emily BrownA', 'B', 'Emilyy BrownA', 1, 'B', 'C']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether any value in a sequence exists in a sequence or not.\nassert overlapping([1,2,3,4,5],[6,7,8,9]) == False\nYour code should pass the test:\nassert overlapping([1,2,3,4,5],[6,7,8,9]) == False", "test_list": [ "assert overlapping([1,2,3,4,5],[6,7,8,9]) == False", "assert overlapping([1,2,3],[4,5,6]) == False", "assert overlapping([1,4,5],[1,4,5]) == True", "assert overlapping([], [1, 2, 3]) == False", "assert overlapping([1, 2, 3], []) == False", "assert overlapping([], []) == False", "assert overlapping([1000000, 2000000, 3000000], [1000000, 2000000, 3000000]) == True", "assert overlapping([3000000], []) == False", "assert overlapping([], [1, 2]) == False", "assert overlapping([63.43122042559975, -31.187672074988427, 63.43122042559975], [1]) == False", "assert overlapping([False, False, True, False, True, False], [3, 2, 63, 2000000, 2, -93, 51, 3000000, -61, 3]) == False", "assert overlapping([63.43122042559975, -31.187672074988427, 63.43122042559975], [1, 1]) == False", "assert overlapping([63.43122042559975, -31.187672074988427, 63.43122042559975, -31.187672074988427], [63.43122042559975, -31.187672074988427, 63.43122042559975, -31.187672074988427]) == True", "assert overlapping([1, 3], [True]) == True", "assert overlapping([63.07613966106393, -31.187672074988427, 63.43122042559975], [1]) == False", "assert overlapping([], [2, 3]) == False", "assert overlapping([2, 2, 3], [2, 2, 3]) == True", "assert overlapping([63.07613966106393, 63.07613966106393, 63.43122042559975], [1]) == False", "assert overlapping([False, False, True, False, True, True], [False, False, True, False, True, True]) == True", "assert overlapping([2, 3], [2, 3]) == True", "assert overlapping([63, 3000000, 3000000], [63, 3000000, 3000000]) == True", "assert overlapping([], [1, 2, 2]) == False", "assert overlapping([2, 3, 3], [2, 3, 3]) == True", "assert overlapping([3, 3000000, 2, 4, 3], [3, 3000000, 2, 4, 3]) == True", "assert overlapping([1, 2], [1, 2]) == True", "assert overlapping([1], [1]) == True", "assert overlapping([False, False, False, True, False, True, False], [False, False, False, True, False, True, False]) == True", "assert overlapping([1, 2, 3], [-64]) == False", "assert overlapping([], [False, True, False]) == False", "assert overlapping([-93], []) == False", "assert overlapping([], [2, 2]) == False", "assert overlapping([63.07613966106393, 63.07613966106393, 63.43122042559975, 63.43122042559975], [63.07613966106393, 63.07613966106393, 63.43122042559975, 63.43122042559975]) == True", "assert overlapping([33.96565948782273, 63.07613966106393, 63.43122042559975, 63.43122042559975], [33.96565948782273, 63.07613966106393, 63.43122042559975, 63.43122042559975]) == True", "assert overlapping([3, 3000000, 1, 2, 4, 3, 3], [3, 3000000, 1, 2, 4, 3, 3]) == True", "assert overlapping([3, 3000000, 4, 3], [3, 3000000, 4, 3]) == True", "assert overlapping([33.17607444762987, 63.07613966106393, 44.99937757260167, 63.43122042559975], [33.17607444762987, 63.07613966106393, 44.99937757260167, 63.43122042559975]) == True", "assert overlapping([2, 3, 3000000], [2, 3, 3000000]) == True", "assert overlapping([1, 2, 2, 2], [1, 2, 2, 2]) == True", "assert overlapping([3, 2999999, 1, 3, 4, 3, 3, 3], [3, 2999999, 1, 3, 4, 3, 3, 3]) == True", "assert overlapping([-76.59859490046561, 33.96565948782273, 0.21095117898697424, -99.50475342484972, 33.96565948782273, 63.43122042559975, 33.17607444762987], [2]) == False", "assert overlapping([-61, 3000000, 4, 3], [-61, 3000000, 4, 3]) == True", "assert overlapping([3], [3]) == True", "assert overlapping([1000000, 2000000, 3000000], [2000000, 1000000, 2000000, 3000000]) == True", "assert overlapping([2, 5, 3, 2], [2, 5, 3, 2]) == True", "assert overlapping([3, 3000000, 1, 2, 4, 3, 3, 3000000], [3, 3000000, 1, 2, 4, 3, 3, 3000000]) == True", "assert overlapping([3, 3000000, 1, 4, 3], [3, 3000000, 1, 4, 3]) == True", "assert overlapping([], [2, 2, 3]) == False", "assert overlapping([], [3, 3]) == False", "assert overlapping([63.07613966106393, 63.07613966106393, 63.43122042559975, 63.43122042559975, 63.07613966106393], [63.07613966106393, 63.07613966106393, 63.43122042559975, 63.43122042559975, 63.07613966106393]) == True", "assert overlapping([3, 3000000, 1, 2, 4, 3, -93, 3, 3000000], [3, 3000000, 1, 2, 4, 3, -93, 3, 3000000]) == True", "assert overlapping([2, False, 3000000], [2, False, 3000000]) == True", "assert overlapping([2, 3, 2], [2, 3, 2]) == True", "assert overlapping([63.07613966106393, 63.07613966106393, 63.43122042559975, 63.43122042559975, 63.07613966106393, 63.07613966106393], [63.07613966106393, 63.07613966106393, 63.43122042559975, 63.43122042559975, 63.07613966106393, 63.07613966106393]) == True", "assert overlapping([False, True, False, True], []) == False", "assert overlapping([3, 3, 3, 3], [3, 3, 3, 3]) == True", "assert overlapping([-64, -81, 3, 31, 18, 51], [3, 3]) == True", "assert overlapping([], [2, 2999999, 2, 3]) == False", "assert overlapping([33.96565948782273, 63.07613966106393, 63.43122042559975], [33.96565948782273, 63.07613966106393, 63.43122042559975]) == True", "assert overlapping([3, 3000000, 4], [3, 3000000, 4]) == True", "assert overlapping([1, 1], [1, 1]) == True", "assert overlapping([1, 1, 1], [63.07613966106393, 63.07613966106393, 63.43122042559975]) == False", "assert overlapping([3, 2999999, 1, 3, 4, 3, 3, False], [3, 2999999, 1, 3, 4, 3, 3, False]) == True", "assert overlapping([False, True, False], [-93, -57, -51, 38, -57]) == False", "assert overlapping([1, 3, 2, 1, 2, 2], [1, 3, 2, 1, 2, 2]) == True", "assert overlapping([3000000, -64], [3000000, -64]) == True", "assert overlapping([3, 2999999, 3000000, 38], [3, 2999999, 3000000, 38]) == True", "assert overlapping([3, 3, 3], [3, 3, 3]) == True", "assert overlapping([63.07613966106393, 63.07613966106393, 63.43122042559975, 71.94678677068327, 63.43122042559975, 63.07613966106393, 63.07613966106393], [63.07613966106393, 63.07613966106393, 63.43122042559975, 71.94678677068327, 63.43122042559975, 63.07613966106393, 63.07613966106393]) == True", "assert overlapping([False, False, True, False, False, False], []) == False", "assert overlapping([0, -64, -13, 2000000, -97, -34, 78, 2000000, 1000000, -64], []) == False", "assert overlapping([92.17179846001889, 63.43122042559975], [92.17179846001889, 63.43122042559975]) == True", "assert overlapping([2, 51], [2, 51]) == True", "assert overlapping([], [2, 3000000, 60, 38, 33, 78, -13, -93, -34, -81]) == False", "assert overlapping([1, 1, 1], [1, 1, 1]) == True", "assert overlapping([3, 4], [3, 4]) == True", "assert overlapping([], [5, 3, 3]) == False", "assert overlapping([-93, -57, -57, -51, 18, -57], [-93, -57, -57, -51, 18, -57]) == True", "assert overlapping([3, 3000000, 3000000, 3], [3, 3000000, 3000000, 3]) == True", "assert overlapping([3000000, 3000000, 3, 3], [3000000, 3000000, 3, 3]) == True", "assert overlapping([3000000, 4], [3000000, 4]) == True", "assert overlapping([-64, -81, 3, 31, 51], [3, 3]) == True", "assert overlapping([0, 3, 2, 1, 2, 2, 3, 3, 2], [0, 3, 2, 1, 2, 2, 3, 3, 2]) == True", "assert overlapping([False, False, True, False, True, False, True], [3, 2, 63, 2000000, 2, -93, 51, 3000000, -61, 3]) == False", "assert overlapping([2, 2, 2], [2, 2, 2]) == True", "assert overlapping([33.31988234449095, 63.07613966106393, 63.43122042559975], [33.31988234449095, 63.07613966106393, 63.43122042559975]) == True", "assert overlapping([31], [31]) == True", "assert overlapping([3, 3000000, 1, 2, 4, 38, 3, 3, 3], [3, 3000000, 1, 2, 4, 38, 3, 3, 3]) == True", "assert overlapping([1, 63, 1, 1], [1, 63, 1, 1]) == True", "assert overlapping([1, -34], [1, -34]) == True", "assert overlapping([3, 3000000, 1, 4, -34], [3, 3000000, 1, 4, -34]) == True", "assert overlapping([3000000, 3000000, 3, 3, 3], [3000000, 3000000, 3, 3, 3]) == True", "assert overlapping([True, True, False, True], [False, True, False, False]) == True", "assert overlapping([-70, -57, -93, 2999999, -48, False, False, 81], []) == False", "assert overlapping([True, False], [True, False]) == True", "assert overlapping([3, 3], [3, 3]) == True", "assert overlapping([2, 2, -34, 3], [2, 2, -34, 3]) == True", "assert overlapping([2, 5, 2, 2], [2, 5, 2, 2]) == True", "assert overlapping([63.43122042559975, 63.43122042559975, -31.187672074988427, 63.43122042559975], [63.43122042559975, 63.43122042559975, -31.187672074988427, 63.43122042559975]) == True", "assert overlapping([33.96565948782273, 44.99937757260167, 63.07613966106393, 63.43122042559975], [33.96565948782273, 44.99937757260167, 63.07613966106393, 63.43122042559975]) == True", "assert overlapping([-57, -57, -51, 18, -57], [-57, -57, -51, 18, -57]) == True", "assert overlapping([63.07613966106393, 63.07613966106393, 63.43122042559975, 46.05166169810378, 63.43122042559975, 63.07613966106393], [63.07613966106393, 63.07613966106393, 63.43122042559975, 46.05166169810378, 63.43122042559975, 63.07613966106393]) == True", "assert overlapping([-57, -51, 18, -57], [-57, -51, 18, -57]) == True", "assert overlapping([3, 2, 2], [3, 2, 2]) == True", "assert overlapping([3, 3, 3, -81], [3, 3, 3, -81]) == True", "assert overlapping([-64], [18, 2, 3]) == False", "assert overlapping([2999999, 3000000, 38, 38], [2999999, 3000000, 38, 38]) == True", "assert overlapping([31, 3, 3, 3], [31, 3, 3, 3]) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find a pair with highest product from a given array of integers.\nassert max_Product([1,2,3,4,7,0,8,4]) == (7,8)\nYour code should pass the test:\nassert max_Product([1,2,3,4,7,0,8,4]) == (7,8)", "test_list": [ "assert max_Product([1,2,3,4,7,0,8,4]) == (7,8)", "assert max_Product([0,-1,-2,-4,5,0,-6]) == (-4,-6)", "assert max_Product([1,2,3]) == (2,3)", "assert max_Product([-2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == (9, 10)", "assert max_Product([10, -20, 30, -40, 50, -60, 70, -80, 90, -100]) == (-80, -100)", "assert max_Product([2, 3, 5, 7, 11, 13, 17]) == (13, 17)", "assert max_Product([-5, -10, -20, -30, -1, 0, 1, 2, 3, 4, 5, 10, 20, 30]) == (-20, -30)", "assert max_Product([1000000, 2000000, 3000000, 4000000]) == (3000000, 4000000)", "assert max_Product([999999, 1000000, 1000001]) == (1000000, 1000001)", "assert max_Product([100, 200, 300, 400, 500, 600, 700, 800, 900, 1000]) == (900, 1000)", "assert max_Product([999999999, 888888888, -777777777, 666666666, -555555555]) == (999999999, 888888888)", "assert max_Product([1000, -2000, 3000, -4000, 5000, -6000, 7000, -8000, 9000, -10000]) == (-8000, -10000)", "assert max_Product([-10000, 20000, -30000, 40000, -50000, 60000, -70000, 80000, -90000, 100000]) == (80000, 100000)", "assert max_Product([1000000, -1000000, 999999, -999999, 888888, -888888, 777777, -777777]) == (1000000, 999999)", "assert max_Product([1000000000, 2000000000, 3000000000, 4000000000, 5000000000]) == (4000000000, 5000000000)", "assert max_Product([2, 4, 6, 8, 10, 12, 14, 16, 18, 20]) == (18, 20)", "assert max_Product([100, 200, 300, 401, 500, 600, 700, 800, 1000]) == (800, 1000)", "assert max_Product([-2, -1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 10]) == (800, 10)", "assert max_Product([-2, -1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 9]) == (800, 9)", "assert max_Product([2, 16, 3, 5, 12, 13, 17, 7]) == (16, 17)", "assert max_Product([1000000, 2000000, 3000000, 4000000, 4000000]) == (3000000, 4000000)", "assert max_Product([-5, -10, -20, -30, -1, 0, 1, 2, 3, 4, 5, 10, 20, 30, 2]) == (-20, -30)", "assert max_Product([-10000, 20000, -30000, 40000, -50000, -70000, 60000, 80000, -90000, 100000]) == (80000, 100000)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 8]) == (800, 9)", "assert max_Product([-2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9]) == (8, 9)", "assert max_Product([-2, -1, 0, 1, 2, 3, 4, 5, -555555555, 7, 8, 9, 10]) == (-2, -555555555)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 8, 6]) == (800, 9)", "assert max_Product([1000000, 2000000, 3000000, 4000000, 1000000]) == (3000000, 4000000)", "assert max_Product([100, 200, 201, 300, 400, 500, 600, 700, 800, 900, 1000, 1000]) == (900, 1000)", "assert max_Product([1000000, 3000000, 4000000, 4000000]) == (3000000, 4000000)", "assert max_Product([100, 200, 301, 400, 500, 600, 700, 800, 900, 1000]) == (900, 1000)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, -50000, 7, 8, 9, 8, 6]) == (-1, -50000)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 8, 6, 1]) == (800, 9)", "assert max_Product([-1000000, 999999, -999999, 888888, -888888, 777777, -777777]) == (-1000000, -999999)", "assert max_Product([100, 20, 200, 300, 400, 500, 600, 700, 800, 900, 1000, 900]) == (900, 1000)", "assert max_Product([1000000, 2000000, 4000000, 1000000]) == (2000000, 4000000)", "assert max_Product([-2, -1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 10, 7]) == (800, 10)", "assert max_Product([10, -20, 30, -40, 50, 11, 10, -60, 70, -80, 90, -100, 10]) == (-80, -100)", "assert max_Product([100, 200, 300, 400, 500, 600, 700, 800, 900, 1000, 2, 300, 800]) == (900, 1000)", "assert max_Product([100, 200, -888888, 401, 500, 600, 700, 800, 1000]) == (800, 1000)", "assert max_Product([-2, -1, 0, 1, 2, 4, 3, 4, 5, -555555555, 7, 8, 9, 10]) == (-2, -555555555)", "assert max_Product([-2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 6, 6]) == (8, 9)", "assert max_Product([999999999, 888888888, -777777777, -555555555]) == (999999999, 888888888)", "assert max_Product([-2, -1, 1000000000, 1, 2, 800, 70, 6, 7, 8, 9, 9]) == (1000000000, 800)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 8, 6, 0]) == (800, 9)", "assert max_Product([200, 201, 300, 400, 500, 600, 700, 900, 1000, 1000]) == (900, 1000)", "assert max_Product([2, 4, 6, 8, 10, 13, 14, 16, 18, 20]) == (18, 20)", "assert max_Product([2, 17, 3, 5, 12, 13, 17, 7]) == (17, 13)", "assert max_Product([-2, -1, 0, 1, 2, 800, 5, 6, 7, 8, 9, 10, 7, 9]) == (800, 10)", "assert max_Product([100, 200, 300, 400, 500, 601, 700, 800, 5000, -6000]) == (800, 5000)", "assert max_Product([100, 200, 300, 400, 300, 500, 700, 800, 900, 1000, 200]) == (900, 1000)", "assert max_Product([-1, 0, 1, 2, 800, 4, 5, 6, 7, 8, 9, 8, 6, 1]) == (800, 9)", "assert max_Product([-1, 0, 1, 1, 800, 5, 6, 7, 8, 9, 8, 6, -1]) == (800, 9)", "assert max_Product([10, -20, 30, -40, 50, -60, 70, -80, -100]) == (-80, -100)", "assert max_Product([-2, -1, 0, 1, 2, 3, 4, 5, -555555555, 7, 8, 9, 10, 8]) == (-2, -555555555)", "assert max_Product([-1, 0, 1, 0, 2, 800, 5, 6, 7, 8, 601, 9, 8]) == (800, 601)", "assert max_Product([-2, -1, 0, 1, 2, 801, 5, 6, 7, 8, 9, 10, 7]) == (801, 10)", "assert max_Product([-2, -1, 0, 1, 2, 800, 5, 7, 8, 9, -90000, 7, 7]) == (-2, -90000)", "assert max_Product([10, -20, 30, -40, 50, -60, 70, -80, -100, 10]) == (-80, -100)", "assert max_Product([100, 200, 201, 300, 400, 500, 600, 700, 800, 900, 1000, -6000, 1000]) == (900, 1000)", "assert max_Product([-10000, 20000, -30000, 1000001, 40000, -50000, 60000, -70000, 80000, -90000, 100000]) == (1000001, 100000)", "assert max_Product([1000000, 2000000, 100, 4000000, 4000000]) == (2000000, 4000000)", "assert max_Product([-2, -1, 0, 1, 2, 3, 5000000000, 5, 6, 7, 8, 9, 6]) == (5000000000, 9)", "assert max_Product([-1000000, 999999, -999999, 888888, -888888, 777777, -777777, -999999]) == (-1000000, -999999)", "assert max_Product([-10000, 20000, -30000, 40000, -50000, 60000, -70000, 80000, -90000, 100000, -90000]) == (80000, 100000)", "assert max_Product([20000, -30000, 1000001, 40000, 888888888, -50000, 60000, 80000, -90000, 100000]) == (1000001, 888888888)", "assert max_Product([100, 200, 4999, 300, 400, 601, 700, 800, 5000, -6000]) == (4999, 5000)", "assert max_Product([100, 200, 300, 400, 500, 600, 700, 900, 1000]) == (900, 1000)", "assert max_Product([100, -888888, 401, 500, 600, 700, 800, 1000]) == (800, 1000)", "assert max_Product([-2, -1, 0, 2, 3, 4, 5, 6, 7, 8, 9, 6, 6]) == (8, 9)", "assert max_Product([100, 200, 300, 400, 500, 601, 700, 800, 5000, -6000, 500]) == (800, 5000)", "assert max_Product([100, 200, 201, 300, 400, 500, 600, -5, 700, 800, 900, 1000, -6000, 1000, 600]) == (900, 1000)", "assert max_Product([-2, -1, 0, 1, 2, -40, 5, 6, 7, 8, 9, 10, 7]) == (9, 10)", "assert max_Product([2, 4, 6, 301, 8, 10, 13, 14, 16, 18, 20]) == (301, 20)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, -50000, 7, 8, 9, 8]) == (-1, -50000)", "assert max_Product([1000000, -1000000, 999999, -999999, 888888, -888888, 777777, -777777, 999999]) == (1000000, 999999)", "assert max_Product([1000000, 4000000, 2000000, 4000000]) == (4000000, 2000000)", "assert max_Product([20000, -30000, 1000001, 666666666, 40000, 888888888, -50000, 60000, 80000, -90000, 100000]) == (666666666, 888888888)", "assert max_Product([100, 200, 300, 400, 300, 500, 700, 3000000, 800, 900, 1000, 200]) == (3000000, 1000)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, -50000, 7, 8, 9, 8, 6, -1]) == (-1, -50000)", "assert max_Product([20000, -30000, 666666666, 40000, 888888888, -50000, 60000, 80000, -90000, 100000, 60000]) == (666666666, 888888888)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, -50000, 7, 8, 9, 8, 6, 5]) == (-1, -50000)", "assert max_Product([-1, 0, 1, 0, 2, 800, 5, 6, 7, 8, 601, 9, 8, 0, 2]) == (800, 601)", "assert max_Product([100, 200, 201, 300, 400, 500, 600, -5, 700, 800, 1000, -6000, 1000, 600]) == (800, 1000)", "assert max_Product([100, 199, 300, 400, 500, 601, 700, 800, 5000, -6000, 601]) == (800, 5000)", "assert max_Product([-1, 0, 1, 2, -40, 5, 6, 7, 8, 9, 10, 7]) == (9, 10)", "assert max_Product([-1, 0, 1, 3, 2, 800, 5, 6, -50000, 7, 8, 9, 9]) == (-1, -50000)", "assert max_Product([-2, -1, -1, 1, 2, 4, 3, 4, 5, -555555555, 7, 8, 9, 10]) == (-2, -555555555)", "assert max_Product([100, 199, 300, 400, 500, 601, 700, 800, 5000, -6000, 601, 800]) == (800, 5000)", "assert max_Product([100, 200, 300, 400, 101, 500, 600, 700, 900, 1000, 200, 200]) == (900, 1000)", "assert max_Product([1000000, -1000000, 1000000, -999999, 888888, -888888, 777777, -777777, 999999]) == (1000000, 999999)", "assert max_Product([999999, 1000000, -999999, 888888, 777777, -777777, 999999, 999999]) == (999999, 1000000)", "assert max_Product([100, 200, 201, 300, 400, 500, 600, -5, 700, 9000, 900, 1000, -6000, 1000, 600]) == (9000, 1000)", "assert max_Product([100, 199, 300, 400, 601, 700, 800, 5000, -6000, 601, 800, 700]) == (800, 5000)", "assert max_Product([100, 200, 201, 300, 400, 500, 600, 700, 14, 800, 900, 1000, -6000, 1000]) == (900, 1000)", "assert max_Product([200, 201, 300, 400, 500, 600, 700, 900, 1000, 1000, 600]) == (900, 1000)", "assert max_Product([100, 199, 300, 400, 500, 601, 101, 700, 800, 5000, -6000, 601]) == (800, 5000)", "assert max_Product([-20, 30, -40, 50, -60, 900, 70, -80, 90, -100]) == (900, 90)", "assert max_Product([-1, 0, 1, 2, 800, 5, 6, -50000, 7, 8, 9, 8, 6, 6]) == (-1, -50000)", "assert max_Product([-2, -1, 0, 1, 2, 4, 5, 5, 7, 8, 9, 0]) == (8, 9)", "assert max_Product([-1, 0, 1, 3, 2, 2000000000, 800, 5, 6, -50000, 7, 8, 9, 9]) == (2000000000, 800)", "assert max_Product([100, 200, 400, 101, 500, 600, 700, 900, 1000, 200, 200]) == (900, 1000)", "assert max_Product([-1, 0, 1, 0, 2, 800, 5, 6, 8, 8, 601, 9, 8, 0, 2]) == (800, 601)", "assert max_Product([-20, 30, -40, 50, -79, -60, 900, 70, -80, 90]) == (900, 90)", "assert max_Product([20000, -30000, 1000001, 39999, 888888888, -50000, 60000, -79, -90000, 100000]) == (1000001, 888888888)", "assert max_Product([-2, -1, 0, 1, 2, 3, 4, 6, 7, 8, 9]) == (8, 9)", "assert max_Product([-20, 30, -40, 50, -60, 900, 70, 90, -100, -20]) == (900, 90)", "assert max_Product([100, 200, -888888, 401, 500, 700, 800, 1000]) == (800, 1000)", "assert max_Product([-1000000, 999999, -999999, 888888, 199, 777777, -777777]) == (-1000000, -999999)", "assert max_Product([-1, 0, 2, -40, 5, 6, 7, 8, 9, 10, 7]) == (9, 10)", "assert max_Product([-2, -1, 0, 1, 2, 5, 5, 5, 7, 8, 9, 0]) == (8, 9)", "assert max_Product([-2, -1, -1, 1, 2, 4, 3, 4, -555555555, 7, 8, 9, 10]) == (-2, -555555555)", "assert max_Product([-2, -1, 0, 1, 2, -1000000, 4, 6, 7, 8, 9, 7]) == (-2, -1000000)", "assert max_Product([1000000, 30, 4000000, 1000000]) == (1000000, 4000000)", "assert max_Product([-1, 0, 1, 2, 800, -5, 5, 7, 8, 1, 9, 8, 6, 1]) == (800, 9)", "assert max_Product([-2, -1, 0, 1, 2, 800, 5, 6, 8, 9, 9]) == (800, 9)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the element of a list having maximum length.\nassert Find_Max([['A'],['A','B'],['A','B','C']]) == ['A','B','C']\nYour code should pass the test:\nassert Find_Max([['A'],['A','B'],['A','B','C']]) == ['A','B','C']", "test_list": [ "assert Find_Max([['A'],['A','B'],['A','B','C']]) == ['A','B','C']", "assert Find_Max([[1],[1,2],[1,2,3]]) == [1,2,3]", "assert Find_Max([[1,1],[1,2,3],[1,5,6,1]]) == [1,5,6,1]", "assert Find_Max([[], [], []]) == []", "assert Find_Max([[1, 2, 3], [4, 5, 6], []]) == [1, 2, 3]", "assert Find_Max([[1, 1, 1], [2, 2, 2], [3, 3, 3]]) == [1, 1, 1]", "assert Find_Max([[[1, 2], [3, 4, 5]], [[6, 7], [8], [9, 10, 11, 12]], [[13, 14, 15], [16, 17, 18]]]) == [[6, 7], [8], [9, 10, 11, 12]]", "assert Find_Max([[1, 2, 3], [4, 5, 6], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[[1, 2], [3, 4, 5], [6, 7, 8, 9]], [[10, 11, 12], [13], [14, 15, 16]], [[17, 18, 19, 20, 21], [22, 23, 24]]]) == [[1, 2], [3, 4, 5], [6, 7, 8, 9]]", "assert Find_Max([[[[[1]]]], [[[[2]]]], [[[[3]]]]]) == [[[[1]]]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], [[[[6, [7, [8, [9]]]]]]]]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [11, 12, 13, 14, 15], [16, 17, 18, 19], [20, 21, 22, 23, 24, 25, 26]]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert Find_Max([[[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19]], [[20, 21, 22], [23, 24, 25]]]) == [[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[1, 2, 3], [5, 6, 6], [5, 6, 6], [5, 6, 6], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[[[[1]]]], [[[[2]]]], [[[[3]]]], [[[[3]]]]]) == [[[[1]]]]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]]]], []]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[[3, 4, 5], [6, 7, 8, 9]], [[10, 11, 12], [13], [14, 15, 16]], [[3, 4, 5], [6, 7, 8, 9]], [[22, 23, 24]]]) == [[10, 11, 12], [13], [14, 15, 16]]", "assert Find_Max([[[[[1]]]], [[[[3]]]], [[[[3]]]]]) == [[[[1]]]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]]]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[[[[2]]]], [[[[3]]]]]) == [[[[2]]]]", "assert Find_Max([[1, 2, 3], [5, 6], [5, 6], [5, 6], [5, 6], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]]]], ['emZAcCGw']]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19]], [[20, 21, 22], [23, 24, 25], [23, 24, 25]], [[20, 21, 22], [23, 24, 25], [23, 24, 25]]]) == [[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[[1, 2], [3, 4, 5]], [[6, 7], [8], [9, 10, 11, 12], [8], [8]], [[6, 7], [8], [9, 10, 11, 12], [8], [8]], [[13, 14, 15], [16, 17, 18]]]) == [[6, 7], [8], [9, 10, 11, 12], [8], [8]]", "assert Find_Max([[12, 5, 6, 6], [1, 2, 3], [12, 5, 6, 6], [12, 5, 6, 6], [12, 5, 6, 6], [12, 5, 6, 6], [7, 8, 9], [4, 5, 6]]) == [12, 5, 6, 6]", "assert Find_Max([[12, 5, 6, 6], [1, 2, 3], [12, 5, 6, 6], [12, 5, 6, 6], [12, 5, 6, 6], [12, 5, 6, 6], [7, 8, 9], [4, 5, 6], [12, 5, 6, 6]]) == [12, 5, 6, 6]", "assert Find_Max([[[1, [2], [2]], [1, [2], [2]]]]) == [[1, [2], [2]], [1, [2], [2]]]", "assert Find_Max([[[1, 2], [3, 4, 5], [3, 4, 5]], [[6, 7], [8], [8], [8]], [[6, 7], [8], [8], [8]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]]]) == [[6, 7], [8], [8], [8]]", "assert Find_Max([[[1, [2], [2], [2]], [1, [2], [2], [2]]], [[1, [2], [2], [2]], [1, [2], [2], [2]]]]) == [[1, [2], [2], [2]], [1, [2], [2], [2]]]", "assert Find_Max([[], [[[[6, [7, [8, [9]]]]]]]]) == [[[[6, [7, [8, [9]]]]]]]", "assert Find_Max([[1, 2, 3], [6, 6], [6, 6], [6, 6], [6, 6], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[[1, 2], [3, 4, 5], [6, 7, 8, 9]], [[17, 18, 19, 20, 21], [22, 23, 24]]]) == [[1, 2], [3, 4, 5], [6, 7, 8, 9]]", "assert Find_Max([[1, 2, 3]]) == [1, 2, 3]", "assert Find_Max([[1, 2, 3], [4, 5, 6], [20.740277818565374, 'hCZBB', True]]) == [1, 2, 3]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]], []]) == [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]", "assert Find_Max([[], [], [[[[3]]]], [[[[3]]]]]) == [[[[3]]]]", "assert Find_Max([[[1, 2], [3, 4, 5], [6, 7, 8, 9]], [[17, 18, 19, 20, 21], [22, 23, 24]], [[1, 2], [3, 4, 5], [6, 7, 8, 9]]]) == [[1, 2], [3, 4, 5], [6, 7, 8, 9]]", "assert Find_Max([[12, 5, 6, 6, 12], [1, 2, 3], [12, 5, 6, 6, 12], [12, 5, 6, 6, 12], [12, 5, 6, 6, 12], [12, 5, 6, 6, 12], [7, 8, 9], [4, 5, 6], [12, 5, 6, 6, 12]]) == [12, 5, 6, 6, 12]", "assert Find_Max([[[[[1]]]], [[[[2]]]], [[], []], [[], []]]) == [[], []]", "assert Find_Max([[], [], [], []]) == []", "assert Find_Max([[5, 6], [5, 6], [5, 6], [5, 6], [7, 8, 9], [4, 5, 6], [7, 8, 9]]) == [7, 8, 9]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]]]], [], [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]]) == [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]", "assert Find_Max([[1, 2, 3], [-7, 6], [-7, 6], [-7, 6], [-7, 6], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[1, 2, 3], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[], [], [[[[3]]]], [[[[3]]]], [[[[3]]]]]) == [[[[3]]]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], ['emZAcCGw'], ['emZAcCGw']]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19]], [[20, 21, 22], [23, 24, 25]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]]) == [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[5, 6], [5, 6], [5, 6], [7, 8, 9], [4, 5, 6], [7, 8, 9]]) == [7, 8, 9]", "assert Find_Max([[1, 2, 3], [4, 5, 6], [20.740277818565374, 'hCZBB', True], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[2, 3]]) == [2, 3]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]]]], [], [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14], [[1, [2, [3, [4, [5]]]]]]]) == [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]", "assert Find_Max([[5], [1, 2, 3], [5], [5], [5], [5], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[6], [6], [6], [6], [6], [7, 8, 9], [4, 5, 6], [7, 8, 9]]) == [7, 8, 9]", "assert Find_Max([[18, 2, 3], [-7, 6, -7, -7], [-7, 6, -7, -7], [-7, 6, -7, -7], [-7, 6, -7, -7], [-7, 6, -7, -7], [7, 8, 9], [4, 5, 6, 5], [7, 8, 9]]) == [-7, 6, -7, -7]", "assert Find_Max([[1, 2, 3], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [7, 8, 9], [4, 5, 6]]) == [1, 2, 3]", "assert Find_Max([[], [9, -67, 55, 18, -67], [], []]) == [9, -67, 55, 18, -67]", "assert Find_Max([[5], [2, 3], [5], [5], [5], [5], [7, 8, 9], [4, 5, 6]]) == [7, 8, 9]", "assert Find_Max([[2, 3], [2, 3]]) == [2, 3]", "assert Find_Max([[6], [6], [6], [6], [6], [4, 5, 6], [7, 8, 9]]) == [4, 5, 6]", "assert Find_Max([[12, 5, 6, 6, 12], [12, 2, 3], [12, 5, 6, 6, 12], [12, 5, 6, 6, 12], [12, 5, 6, 6, 12], [12, 5, 6, 6, 12], [7, 8, 9], [4, 5, 6], [12, 5, 6, 6, 12]]) == [12, 5, 6, 6, 12]", "assert Find_Max([[[14, 15], [16, 17, 18, 19]], [[14, 15], [16, 17, 18, 19]]]) == [[14, 15], [16, 17, 18, 19]]", "assert Find_Max([[[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[20, 21, 22], [23, 24, 25]]]) == [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], ['hCZBB', 'emZAcCGw'], ['hCZBB', 'emZAcCGw']]) == ['hCZBB', 'emZAcCGw']", "assert Find_Max([[], [], [], [False, 2], []]) == [False, 2]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], ['emZAcCGw'], ['emZAcCGw'], ['emZAcCGw']]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[], []]) == []", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]]]], [False, True, False, False, True, False, True, True, False, False], [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14], [[1, [2, [3, [4, [5]]]]]]]) == [False, True, False, False, True, False, True, True, False, False]", "assert Find_Max([[], [], [], [], [], [], []]) == []", "assert Find_Max([[1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [11, 12, 13, 14, 15], [16, 17, 18, 19], [20, 21, 22, 23, 24, 25, 26], [11, 12, 13, 14, 15]]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert Find_Max([[[14, 15], [16, 17, 18, 19], [16, 17, 18, 19]], [[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19], [16, 17, 18, 19]], [[20, 21, 22], [23, 24, 25], [23, 24, 25]]]) == [[14, 15], [16, 17, 18, 19], [16, 17, 18, 19]]", "assert Find_Max([[], [True, True, False, True, False, False], [9, -67, 55, 18, -67], []]) == [True, True, False, True, False, False]", "assert Find_Max([[[1, [4], [4], [4]], [1, [4], [4], [4]], [1, [4], [4], [4]]]]) == [[1, [4], [4], [4]], [1, [4], [4], [4]], [1, [4], [4], [4]]]", "assert Find_Max([[2, 3, 2]]) == [2, 3, 2]", "assert Find_Max([['VGFKYtM', 'jYImzalw', 'K', 'hssnGSPRt', 'lGtBwSKKld', 'hCZBB'], [[1, [[3, [4, [5]]]], [[3, [4, [5]]]]], [1, [[3, [4, [5]]]], [[3, [4, [5]]]]]], [[1, [[3, [4, [5]]]], [[3, [4, [5]]]]], [1, [[3, [4, [5]]]], [[3, [4, [5]]]]]], [], [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]]) == [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]", "assert Find_Max([[5, 6, 5], [5, 6, 5], [5, 6, 5], [4, 5, 6], [7, 8, 9], [4, 5, 6]]) == [5, 6, 5]", "assert Find_Max([[[[[3]], [[3]]], [[[3]], [[3]]]], [[[[1]]]], [[[[2]]]], [[[[3]], [[3]]], [[[3]], [[3]]]], [[[[3]], [[3]]], [[[3]], [[3]]]]]) == [[[[3]], [[3]]], [[[3]], [[3]]]]", "assert Find_Max([[18, 2, 3], [-7, 6, -7, -7], [-7, 6, -7, -7], [-7, 6, -7, -7], [-7, 6, -7, -7], [-7, 6, -7, -7], [7, 8, 9], [4, 5, 6, 5], [7, 8, 9], [-7, 6, -7, -7]]) == [-7, 6, -7, -7]", "assert Find_Max([[[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]], ['hCZBB', 'emZAcCGw']]) == [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], ['hssnGSPRt'], ['hssnGSPRt'], ['hssnGSPRt'], ['hssnGSPRt']]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[2, 26, 7], [2, 26, 7]]) == [2, 26, 7]", "assert Find_Max([[[[[2]]]], [[[[3]]]], [[[[3]]]]]) == [[[[2]]]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]], []]) == [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]", "assert Find_Max([[[[[1]]]], [[[[3]]]], [[[[3]]]], [[[[3]]]]]) == [[[[1]]]]", "assert Find_Max([['jYImzalw'], ['jYImzalw'], ['jYImzalw']]) == ['jYImzalw']", "assert Find_Max([[]]) == []", "assert Find_Max([['LLhHY', 'K'], []]) == ['LLhHY', 'K']", "assert Find_Max([[[20, 21, 22], [23, 24], [23, 24]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[20, 21, 22], [23, 24], [23, 24]], [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]]) == [[1, 2, 3, 3], [1, 2, 3, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], ['emZAcCGw']]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[5, 6, 5, 5], [5, 6, 5, 5], [5, 6, 5, 5], [4, 5, 6], [7, 8, 9], [4, 5, 6]]) == [5, 6, 5, 5]", "assert Find_Max([[[3, 4, 5], [6, 7, 8, 9]], [[10, 11, 12], [13], [14, 15, 16]], [[3, 4, 5], [6, 7, 8, 9]], [[22, 23, 24]], [[3, 4, 5], [6, 7, 8, 9]], [[3, 4, 5], [6, 7, 8, 9]]]) == [[10, 11, 12], [13], [14, 15, 16]]", "assert Find_Max([[[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]]) == [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]", "assert Find_Max([[[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19], [14, 15]], [[14, 15], [16, 17, 18, 19], [14, 15]], [[20, 21, 22], [23, 24, 25]]]) == [[1, 2, 3], [4, 5, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[1, 2, 3], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [-7, 6, -7], [7, 8, 9], [4, 5, 6], [-7, 6, -7]]) == [1, 2, 3]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]]]], [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]]) == [75.7484253220882, 74, -57, [89, 22, 23, 17, 2, 5, -83, -7, 15, 6], [20.740277818565374, -12.394884179461044, 57.01753938329165, 8.350285441437407], 21, 14]", "assert Find_Max([[], [[[[6, [7, [8, [9]]]]]]], []]) == [[[[6, [7, [8, [9]]]]]]]", "assert Find_Max([[[1, 2], [3, 4, 5]], [[6, 7], [8], [9, 10, 11, 12]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]]]) == [[6, 7], [8], [9, 10, 11, 12]]", "assert Find_Max([[6, 6], [6, 6], [6, 6], [6, 6], [6, 6], [7, 9], [4, 5, 6], [7, 9]]) == [4, 5, 6]", "assert Find_Max([[[1, [2, [3, [4, [5]]]]]], []]) == [[1, [2, [3, [4, [5]]]]]]", "assert Find_Max([[1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [16, 17, 18, 19], [20, 21, 22, 23, 24, 25, 26]]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert Find_Max([[1, 2, 3], [6, 6], [6, 6], [6, 6], [7, 8, 9], [4, 5, 6], [6, 6]]) == [1, 2, 3]", "assert Find_Max([[6], [6], [6], [6], [7, 8, 9, 9], [4, 5, 6], [7, 8, 9, 9]]) == [7, 8, 9, 9]", "assert Find_Max([[[[[2]]]], [[[]], [[]]], [[[]], [[]]]]) == [[[]], [[]]]", "assert Find_Max([[[1, 2, 3], [4, 5, 9, 6, 7, 8, 9], [10, 11, 12, 13]], [[1, 2, 3], [4, 5, 9, 6, 7, 8, 9], [10, 11, 12, 13]], [[14, 15], [16, 17, 18, 19], [14, 15]], [[14, 15], [16, 17, 18, 19], [14, 15]], [[20, 21, 22], [23, 24, 25], [20, 21, 22]]]) == [[1, 2, 3], [4, 5, 9, 6, 7, 8, 9], [10, 11, 12, 13]]", "assert Find_Max([[[1, 2], [3, 4, 5], [6, 7, 8, 9]], [[10, 11, 12], [13], [14, 15, 16], [10, 11, 12]], [[10, 11, 12], [13], [14, 15, 16], [10, 11, 12]], [[17, 18, 19, 20, 21], [22, 23, 24]]]) == [[10, 11, 12], [13], [14, 15, 16], [10, 11, 12]]", "assert Find_Max([[1, 2, 3], [4, 5, 6], [7, 8, 9], [4, 6], [4, 6]]) == [1, 2, 3]", "assert Find_Max([[[1, 2, 3, 18], [1, 2, 3, 18], [4, 5, 6, 7, 8, 9], [10, 14, 11, 12, 13]], [[1, 2, 3, 18], [1, 2, 3, 18], [4, 5, 6, 7, 8, 9], [10, 14, 11, 12, 13]], [[14, 15], [16, 17, 18, 19]], [[1, 2, 3, 18], [1, 2, 3, 18], [4, 5, 6, 7, 8, 9], [10, 14, 11, 12, 13]], [[20, 21, 22], [23, 24, 25]], [[1, 2, 3, 18], [1, 2, 3, 18], [4, 5, 6, 7, 8, 9], [10, 14, 11, 12, 13]], [[1, 2, 3, 18], [1, 2, 3, 18], [4, 5, 6, 7, 8, 9], [10, 14, 11, 12, 13]]]) == [[1, 2, 3, 18], [1, 2, 3, 18], [4, 5, 6, 7, 8, 9], [10, 14, 11, 12, 13]]", "assert Find_Max([[False, False, False, False, True, True], [[1, [2, [3, [4, [5]]]]]], []]) == [False, False, False, False, True, True]", "assert Find_Max([[[6, 7], [8], [8], [8]], [[6, 7], [8], [8], [8]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]], [[13, 14, 15], [16, 17, 18]]]) == [[6, 7], [8], [8], [8]]", "assert Find_Max([[[[[1]]]], [[[[2]]]], [[[[3]], [[3]]], [[[3]], [[3]]]], [[[[3]], [[3]]], [[[3]], [[3]]]]]) == [[[[3]], [[3]]], [[[3]], [[3]]]]", "assert Find_Max([[[1, 2], [3, 4, 5], [6, 7, 8, 9]], [[10, 11, 12], [13], [14, 15, 16], [10, 11, 12]], [[10, 11, 12], [13], [14, 15, 16], [10, 11, 12]], [[17, 18, 19, 20, 21], [22, 23, 24]], [[17, 18, 19, 20, 21], [22, 23, 24]]]) == [[10, 11, 12], [13], [14, 15, 16], [10, 11, 12]]", "assert Find_Max([[4, 5, 6], [20.740277818565374, 'hCZBB', True], [4, 5, 6]]) == [4, 5, 6]", "assert Find_Max([[[[[3]], [[3]]]], [[[[1]]]], [[[[2]]]], [[[[3]], [[3]]]], [[[[3]], [[3]]]]]) == [[[[3]], [[3]]]]", "assert Find_Max([[], [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]]) == [[1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]], [1, [2, [3, [4, [5]]]], [2, [3, [4, [5]]]]]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to round every number of a given list of numbers and print the total sum multiplied by the length of the list.\nassert round_and_sum([22.4, 4.0, -16.22, -9.10, 11.00, -12.22, 14.20, -5.20, 17.50])==243\nYour code should pass the test:\nassert round_and_sum([22.4, 4.0, -16.22, -9.10, 11.00, -12.22, 14.20, -5.20, 17.50])==243", "test_list": [ "assert round_and_sum([22.4, 4.0, -16.22, -9.10, 11.00, -12.22, 14.20, -5.20, 17.50])==243", "assert round_and_sum([5,2,9,24.3,29])==345", "assert round_and_sum([25.0,56.7,89.2])==513", "assert round_and_sum([]) == 0", "assert round_and_sum([1, 2, 3, 4, 5]) == 75", "assert round_and_sum([999999999999999, 888888888888888, 777777777777777]) == 7999999999999992", "assert round_and_sum([1234.56789, 9876.54321, 1111.22222, 3333.44444]) == 62224", "assert round_and_sum([1234.56789, 9876.54321, -1111.22222, -3333.44444]) == 26672", "assert round_and_sum([-9999999999.998, 8888888888.887, -10000000000.43, 7777777777.4, -99999999999.999, 5555555555.5432]) == -586666666668", "assert round_and_sum([12.345, -6.789, 9.876, -3.21, 1.234]) == 65", "assert round_and_sum([True, True, False, True, True, False, False, False, True, True]) == 60", "assert round_and_sum([1234.56789, -1111.22222, -3333.44444]) == -9627", "assert round_and_sum([True, True, False, True, True, False, False, False, True, True, False]) == 66", "assert round_and_sum([12.345, -6.789, 9.876, 1.234]) == 64", "assert round_and_sum([12.345, -6.789, -1.8925412084393396, 1.234]) == 16", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777777.4, -99999999999.999, 5555555555.5432]) == -533333333335", "assert round_and_sum([12.345, 9.876, 1.234]) == 69", "assert round_and_sum([1.234, 9876.54321, 1111.22222, 3333.44444]) == 57288", "assert round_and_sum([1233.577044983001, 9876.54321, -1111.22222, -3333.44444]) == 26668", "assert round_and_sum([1, 2, 3, 3, 4, 5]) == 108", "assert round_and_sum([12.345, -6.789, 1.234, -6.789]) == -4", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777776.487441, -99999999999.999, 5555555555.5432]) == -533333333340", "assert round_and_sum([12.345, 9.876, 1.234, 13.039304120445887, 12.345]) == 240", "assert round_and_sum([-10000000000.43, 1234.56789, 9876.54321, 1111.22222, 9876.595139749, 3333.44444]) == -59999847402", "assert round_and_sum([-9999999999.046753, 8888888888.887, -10000000000.43, 7777777777.4, -99999999999.999, 5555555555.5432, 8888888888.887]) == -622222222216", "assert round_and_sum([12.345, -2.3815343652904044, -6.789, 1.234, -3.21, 1.234]) == 12", "assert round_and_sum([True, True, False, True, True, False, False, False, True, True, False, True]) == 84", "assert round_and_sum([12.345, -2.3815343652904044, -6.323863532860684, 1.234, -3.21, 1.234]) == 18", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777776.487441, -99999999999.999, 5555555555.5432, -10000000000.43]) == -700000000008", "assert round_and_sum([-9999999999.998, -3333.44444, 5555555555.5432, -9999999999.998]) == -57777791108", "assert round_and_sum([-3333.44444, 5555555555.5432, -9999999999.998]) == -13333343331", "assert round_and_sum([1, 2, 3, 3, 4]) == 65", "assert round_and_sum([12.345, 1234.56789, 9.876, 1.234]) == 5032", "assert round_and_sum([1234.56789, 9876.54321, -1111.22222]) == 30003", "assert round_and_sum([1, 2, 3, 999999999999999, 5]) == 5000000000000050", "assert round_and_sum([12.345, 1234.56789, 12.345]) == 3777", "assert round_and_sum([True, True, False, True, True, False, False, False, True, True, False, True, True, True]) == 126", "assert round_and_sum([12.345, -2.3815343652904044, -6.323863532860684, 1.234, 1.234, 12.345]) == 108", "assert round_and_sum([12.345, 1.234, 13.039304120445887, 12.345]) == 152", "assert round_and_sum([12.345, 1.0234087299417132, -6.789, 1.234, -6.789]) == 0", "assert round_and_sum([1.234, 9876.54321, 1111.22222]) == 32967", "assert round_and_sum([1.234, 9876.54321]) == 19756", "assert round_and_sum([True, True, False, True, False, True, False, False, False, True, True]) == 66", "assert round_and_sum([12.345, 1234.56789, 12.345, 1234.56789]) == 9976", "assert round_and_sum([1235.513119491916, 9875.64860469328, 9875.902825290452, 9876.54321, 1111.22222, 3333.44444, 9876.54321]) == 316302", "assert round_and_sum([1.234, 1235.513119491916]) == 2474", "assert round_and_sum([1, 2, 3, 5]) == 44", "assert round_and_sum([-9999999999.998, -10000000000.43, 8888888888.887, -10000000000.43, 7777777777.4, -99999999999.999, 5555555554.949068]) == -754444444453", "assert round_and_sum([12.345, 1234.9868070521075, 12.345]) == 3777", "assert round_and_sum([5, 1, 2, 3, 4, 5]) == 120", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777777.4, -99999999999.999, 5555555556.229488, 5555555556.229488]) == -606666666666", "assert round_and_sum([True, True, False, True, True, True, False, False, True, True, False, True]) == 96", "assert round_and_sum([1.234, 1235.513119491916, 1235.513119491916]) == 7419", "assert round_and_sum([-9999999999.998, -10000000000.43, 8888888888.887, -10000000000.43, 7777777777.4, 7777777777.281848, -99999999999.999, 5555555554.949068, 7777777777.4, -10000000000.43]) == -1022222222250", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777777.4, -99999999999.999, 5555555556.229488, 5555555556.229488, -9999999999.998]) == -777777777777", "assert round_and_sum([1234.56789, -1111.22222, -3333.44444, -3333.44444]) == -26168", "assert round_and_sum([1, 2, 3]) == 18", "assert round_and_sum([False, True, True, False, True, True, True, False, False, True, True, True, True, False]) == 126", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777777.4, 5555555554.949068, -99999999999.999, 5555555555.5432]) == -606666666672", "assert round_and_sum([-9999999999.998, 7777777776.487441, -99999999999.999, 5555555555.5432]) == -386666666672", "assert round_and_sum([9875.64860469328, 1.234, 1235.513119491916]) == 33339", "assert round_and_sum([12.345, -6.789, -1.8925412084393396, 12.175109362539212, 1.234]) == 80", "assert round_and_sum([-9999999999.998, -5984060847.287674, 7777777776.487441, -99999999999.999, 5555555555.5432, -10000000000.43]) == -675904365090", "assert round_and_sum([-6.789, 1234.56789, 9876.54321, -1111.22222]) == 39976", "assert round_and_sum([5, 1, 2, 3, 4, 5, 5]) == 175", "assert round_and_sum([-9999999999.998, -3333.44444, 5555555555.5432, -9999999999.998, -3333.44444]) == -72222255550", "assert round_and_sum([12.345, -6.789, 9.876, 7777777777.281848, 1.234]) == 38888888965", "assert round_and_sum([-9999999999.998, -10000000000.43, 5555555554.949068, -99999999999.999, 5555555555.5432]) == -544444444445", "assert round_and_sum([9875.55054044343, 1234.56789, 9876.54321, -1111.22222, -3333.44444]) == 82720", "assert round_and_sum([1234.56789, -3333.22999419903, -3332.447053089045, -1111.22222, -3333.44444, -3333.44444, -3333.44444]) == -115780", "assert round_and_sum([7777777777.4, -3333.22999419903, -2003.815194513465, 12.345, -1111.22222, -3333.44444, -3333.44444, -3333.44444]) == 62222090736", "assert round_and_sum([False, True, True, False, False, True, True, True, False, False, True, True, True, True, False]) == 135", "assert round_and_sum([12.345, 9.876, 1235.513119491916, 1.234]) == 5036", "assert round_and_sum([True, True, False, True, True, False, False, False, True]) == 45", "assert round_and_sum([9875.64860469328, 1.234, 1204.5558674183492]) == 33246", "assert round_and_sum([1234.56789, -9999999999.998, -3333.44444, 5555555555.5432, 7216273895.0863905, -9999999999.998]) == -43369035882", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777777.4, -99999999999.999, 1204.5558674183492]) == -561111105090", "assert round_and_sum([1.234, 13.039304120445887, 12.345]) == 78", "assert round_and_sum([12.345, 1.0234087299417132, -6.789, 1.234, -6.789, 1.0234087299417132]) == 6", "assert round_and_sum([-1111.22222, 12.345, -6.789, -1.8925412084393396, 12.175109362539212, 1.234]) == -6570", "assert round_and_sum([12.345, -2003.815194513465, -6.789, 9.876, -3.21, 1.234, 0.7325595045021591]) == -13930", "assert round_and_sum([9.876, 12.345, -6.789, 9.876, 7777777777.281848, 1.234]) == 46666666818", "assert round_and_sum([-9999999999.998, -10000000000.43, 7777777776.487441, -99999999999.999, 5555555555.3888855]) == -533333333345", "assert round_and_sum([1111.22222, -1111.22222, -3333.44444, -3333.44444]) == -26664", "assert round_and_sum([True, True, False, True, False, True, False, False, True, True]) == 60", "assert round_and_sum([12.345, -6.789, -1.8925412084393396, 1.234, -1.8925412084393396]) == 10", "assert round_and_sum([-9999999999.998, 1111.22222, -10000000000.43, 7777777777.4, 5555555554.949068, -99999999999.999, 5555555555.5432, -99999999999.999]) == -1608888880008", "assert round_and_sum([False, True, False, True, True, False, False, False, True, True, True, True, False, False]) == 98", "assert round_and_sum([True, False, False, True, True, True, False, False, True, True, False, True]) == 84", "assert round_and_sum([-9999999999.998, -3333.44444, -9999999999.998]) == -60000009999", "assert round_and_sum([True, True, False, False, False, True, False, False, False, True, True]) == 55", "assert round_and_sum([2, 3, 4, 2, 5]) == 80", "assert round_and_sum([12.345, -2.3815343652904044, -6.789, 1.234, -3.2950216498422646, -3.21, 1.234]) == -7", "assert round_and_sum([-9999999999.998, -8911921504.74599, 7777777776.487441, -99999999999.999, 5555555555.3888855, -9999999999.998]) == -693471529044", "assert round_and_sum([1.234, 7777777776.487441, -10000000000.43]) == -6666666669", "assert round_and_sum([False, True, False, True, True, True, False, False, False, True, True, True, True, False, False, False]) == 128", "assert round_and_sum([8888888888.887, 1111.22222, 9876.54321, 1111.22222, 1.234]) == 44444504945", "assert round_and_sum([12.345, -6.789, -1.8925412084393396, 9.876, 1.234]) == 70", "assert round_and_sum([1.234, 9876.54321, 1111.22222, 1111.22222]) == 48400", "assert round_and_sum([-8304365886.95686, -3333.44444, 5555555555.5432, -9999999999.998]) == -50995254656", "assert round_and_sum([-2003.815194513465, 8888888888.887, 1111.22222, 9876.54321, 1111.22222, 1.234]) == 53333393910", "assert round_and_sum([1234.56789, -3333.22999419903, -3332.447053089045, -1111.22222, -3333.44444, -3333.44444]) == -79242", "assert round_and_sum([1234.56789, -3333.22999419903, -3332.447053089045, -1111.22222, -3333.44444, -3333.44444, -3333.44444, 1234.56789]) == -122440", "assert round_and_sum([-9999999999.998, 7777777777.4, -99999999999.999, 5555555556.229488, 5555555556.229488, -9999999999.998]) == -606666666666", "assert round_and_sum([13.039304120445887, 12.345]) == 50", "assert round_and_sum([1234.56789, -3.2950216498422646, -3333.44444]) == -6303", "assert round_and_sum([12.345, 1.0234087299417132, -9.234536526623243, 1.234, -6.789]) == -10", "assert round_and_sum([12.345, -6.789, 9.876, 7777777777.281848, -6.323863532860684, 1.234]) == 46666666722", "assert round_and_sum([1.234, 13.039304120445887]) == 28", "assert round_and_sum([1, 2, 2]) == 15" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the cube sum of first n even natural numbers.\nassert cube_Sum(2) == 72\nYour code should pass the test:\nassert cube_Sum(2) == 72", "test_list": [ "assert cube_Sum(2) == 72", "assert cube_Sum(3) == 288", "assert cube_Sum(4) == 800", "assert cube_Sum(100) == 204020000", "assert cube_Sum(1000) == 2004002000000", "assert cube_Sum(True) == 8", "assert cube_Sum(False) == 0", "assert cube_Sum(1001) == 2012026024008", "assert cube_Sum(1002) == 2020074120072", "assert cube_Sum(999) == 1996002000000", "assert cube_Sum(99) == 196020000", "assert cube_Sum(98) == 188257608", "assert cube_Sum(101) == 212262408", "assert cube_Sum(35) == 3175200", "assert cube_Sum(69) == 46657800", "assert cube_Sum(998) == 1988025976008", "assert cube_Sum(97) == 180728072", "assert cube_Sum(96) == 173426688", "assert cube_Sum(36) == 3548448", "assert cube_Sum(65) == 36808200", "assert cube_Sum(70) == 49401800", "assert cube_Sum(66) == 39108168", "assert cube_Sum(1003) == 2028146336288", "assert cube_Sum(997) == 1980073880072", "assert cube_Sum(996) == 1972145664288", "assert cube_Sum(995) == 1964241280800", "assert cube_Sum(71) == 52265088", "assert cube_Sum(68) == 44029728", "assert cube_Sum(72) == 55251072", "assert cube_Sum(102) == 220752072", "assert cube_Sum(64) == 34611200", "assert cube_Sum(994) == 1956360681800", "assert cube_Sum(103) == 229493888", "assert cube_Sum(73) == 58363208", "assert cube_Sum(993) == 1948503819528", "assert cube_Sum(67) == 41514272", "assert cube_Sum(37) == 3953672", "assert cube_Sum(91) == 140180768", "assert cube_Sum(104) == 238492800", "assert cube_Sum(63) == 32514048", "assert cube_Sum(62) == 30513672", "assert cube_Sum(992) == 1940670646272", "assert cube_Sum(34) == 2832200", "assert cube_Sum(92) == 146410272", "assert cube_Sum(1004) == 2036242720800", "assert cube_Sum(95) == 166348800", "assert cube_Sum(991) == 1932861114368", "assert cube_Sum(33) == 2517768", "assert cube_Sum(1005) == 2044363321800", "assert cube_Sum(89) == 128320200", "assert cube_Sum(90) == 134152200", "assert cube_Sum(105) == 247753800", "assert cube_Sum(93) == 152845128", "assert cube_Sum(106) == 257281928", "assert cube_Sum(59) == 25063200", "assert cube_Sum(28) == 1318688", "assert cube_Sum(39) == 4867200", "assert cube_Sum(74) == 61605000", "assert cube_Sum(94) == 159489800", "assert cube_Sum(40) == 5379200", "assert cube_Sum(1006) == 2052508187528", "assert cube_Sum(60) == 26791200", "assert cube_Sum(88) == 122680448", "assert cube_Sum(55) == 18972800", "assert cube_Sum(38) == 4392648", "assert cube_Sum(75) == 64980000", "assert cube_Sum(27) == 1143072", "assert cube_Sum(87) == 117228672", "assert cube_Sum(61) == 28607048", "assert cube_Sum(26) == 985608", "assert cube_Sum(76) == 68491808", "assert cube_Sum(58) == 23420168", "assert cube_Sum(32) == 2230272", "assert cube_Sum(56) == 20377728", "assert cube_Sum(25) == 845000", "assert cube_Sum(57) == 21859272", "assert cube_Sum(31) == 1968128", "assert cube_Sum(29) == 1513800", "assert cube_Sum(45) == 8569800", "assert cube_Sum(30) == 1729800", "assert cube_Sum(46) == 9348488", "assert cube_Sum(44) == 7840800", "assert cube_Sum(9) == 16200", "assert cube_Sum(8) == 10368", "assert cube_Sum(77) == 72144072", "assert cube_Sum(990) == 1925075176200", "assert cube_Sum(107) == 267082272", "assert cube_Sum(54) == 17641800", "assert cube_Sum(1007) == 2060677366272", "assert cube_Sum(7) == 6272", "assert cube_Sum(43) == 7159328", "assert cube_Sum(47) == 10179072", "assert cube_Sum(42) == 6523272", "assert cube_Sum(24) == 720000", "assert cube_Sum(6) == 3528", "assert cube_Sum(5) == 1800", "assert cube_Sum(108) == 277159968", "assert cube_Sum(86) == 111960648", "assert cube_Sum(989) == 1917312784200", "assert cube_Sum(12) == 48672", "assert cube_Sum(1008) == 2068870906368", "assert cube_Sum(53) == 16382088", "assert cube_Sum(85) == 106872200", "assert cube_Sum(988) == 1909573890848", "assert cube_Sum(41) == 5930568" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to concatenate each element of tuple by the delimiter.\nassert concatenate_tuple((\"ID\", \"is\", 4, \"UTS\") ) == 'ID-is-4-UTS'\nYour code should pass the test:\nassert concatenate_tuple((\"ID\", \"is\", 4, \"UTS\") ) == 'ID-is-4-UTS'", "test_list": [ "assert concatenate_tuple((\"ID\", \"is\", 4, \"UTS\") ) == 'ID-is-4-UTS'", "assert concatenate_tuple((\"QWE\", \"is\", 4, \"RTY\") ) == 'QWE-is-4-RTY'", "assert concatenate_tuple((\"ZEN\", \"is\", 4, \"OP\") ) == 'ZEN-is-4-OP'", "assert concatenate_tuple(('The', 'quick', 'brown', 'fox')) == 'The-quick-brown-fox'", "assert concatenate_tuple(()) == ''", "assert concatenate_tuple((42,)) == '42'", "assert concatenate_tuple((None, None, None, None)) == 'None-None-None-None'", "assert concatenate_tuple((None, 42, 'foo', True)) == 'None-42-foo-True'", "assert concatenate_tuple(('hello-world', 'hello', '-', 'world')) == 'hello-world-hello---world'", "assert concatenate_tuple((10, 'Hello', True, 3.14, [1, 2, 3], {'a': 1, 'b': 2})) == \"10-Hello-True-3.14-[1, 2, 3]-{'a': 1, 'b': 2}\"", "assert concatenate_tuple((['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'])) == \"['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']\"", "assert concatenate_tuple(({'a': 1, 'b': 2},)) == \"{'a': 1, 'b': 2}\"", "assert concatenate_tuple(([1, 2], [3, 4], [5, 6])) == '[1, 2]-[3, 4]-[5, 6]'", "assert concatenate_tuple(([1, 2, 3], ['a', 'b', 'c'], [[True, False], ['x', 'y', 'z']])) == \"[1, 2, 3]-['a', 'b', 'c']-[[True, False], ['x', 'y', 'z']]\"", "assert concatenate_tuple((['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'])) == \"['a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']\"", "assert concatenate_tuple(('quichk', 'The', 'quick', 'brown', 'fox')) == 'quichk-The-quick-brown-fox'", "assert concatenate_tuple((['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'])) == \"['a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple((False,)) == 'False'", "assert concatenate_tuple((10, 'Hello', True, 3.14, [1, 2, 3], {'a': 1, 'b': 2}, True)) == \"10-Hello-True-3.14-[1, 2, 3]-{'a': 1, 'b': 2}-True\"", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple(({'a': 5, 'b': 2},)) == \"{'a': 5, 'b': 2}\"", "assert concatenate_tuple(('The', 'quick', 'gbrown', 'fox')) == 'The-quick-gbrown-fox'", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'], ['a', 'b', 'c'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']-['a', 'b', 'c']\"", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['d', 'cd', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['d', 'cd', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple((['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'], ['UTS', 'is', None])) == \"['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']-['UTS', 'is', None]\"", "assert concatenate_tuple((None, 42, 'foo', True, 'foo')) == 'None-42-foo-True-foo'", "assert concatenate_tuple(('awesome', 'quick', 'brown', 'y')) == 'awesome-quick-brown-y'", "assert concatenate_tuple(([5, 6], [3, 4])) == '[5, 6]-[3, 4]'", "assert concatenate_tuple((['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'], ['Python', 'is', 'awesome'])) == \"['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']-['Python', 'is', 'awesome']\"", "assert concatenate_tuple((10, 'Hello', True, 3.14, [1, 2, 3])) == '10-Hello-True-3.14-[1, 2, 3]'", "assert concatenate_tuple(('quick', 'brown', 'y')) == 'quick-brown-y'", "assert concatenate_tuple((['d', 'Python', 'is', 'awesome'], ['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'], ['Python', 'is', 'awesome'])) == \"['d', 'Python', 'is', 'awesome']-['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']-['Python', 'is', 'awesome']\"", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'])) == \"['aa', 'a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple((['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'], ['Python', 'is', 'awesome'], ['ID', 'is', 4])) == \"['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']-['Python', 'is', 'awesome']-['ID', 'is', 4]\"", "assert concatenate_tuple(('ID', 'hello-world', 'hello', '-', 'world')) == 'ID-hello-world-hello---world'", "assert concatenate_tuple((10, 'Hello', False, 3.14, [1, 2, 3], {'a': 1, 'b': 2})) == \"10-Hello-False-3.14-[1, 2, 3]-{'a': 1, 'b': 2}\"", "assert concatenate_tuple(({'b': 2},)) == \"{'b': 2}\"", "assert concatenate_tuple(({'a': 1, 'b': 2, 'aa': 0},)) == \"{'a': 1, 'b': 2, 'aa': 0}\"", "assert concatenate_tuple(([1, 1, 3], [1, 2, 3], ['a', 'b', 'c'], [[True, False], ['x', 'y', 'z']])) == \"[1, 1, 3]-[1, 2, 3]-['a', 'b', 'c']-[[True, False], ['x', 'y', 'z']]\"", "assert concatenate_tuple((None, None, None, None, None, None)) == 'None-None-None-None-None-None'", "assert concatenate_tuple(('quichk', 'awesome', 'The', 'quick', 'brown', 'fox')) == 'quichk-awesome-The-quick-brown-fox'", "assert concatenate_tuple(({'a': 5, 'b': 42},)) == \"{'a': 5, 'b': 42}\"", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'], ['aa', 'a', 'b', 'c'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']-['aa', 'a', 'b', 'c']\"", "assert concatenate_tuple(([5, 6, 5], [3, 4])) == '[5, 6, 5]-[3, 4]'", "assert concatenate_tuple(([1, 1, 3], [1, 2, 3], ['a', 'b', 'c'], [[True, False], ['x', 'y', 'z']], [[True, False], ['x', 'y', 'z']])) == \"[1, 1, 3]-[1, 2, 3]-['a', 'b', 'c']-[[True, False], ['x', 'y', 'z']]-[[True, False], ['x', 'y', 'z']]\"", "assert concatenate_tuple(('The', 'quick', 'fox')) == 'The-quick-fox'", "assert concatenate_tuple((42, 42)) == '42-42'", "assert concatenate_tuple((10, 'Helo', True, 3.14, [1, 2, 3])) == '10-Helo-True-3.14-[1, 2, 3]'", "assert concatenate_tuple((None, 42, 'foo', True, 5, 'foo')) == 'None-42-foo-True-5-foo'", "assert concatenate_tuple(('brown', 'y', 'brown')) == 'brown-y-brown'", "assert concatenate_tuple(({'a': 5, 'b': 5},)) == \"{'a': 5, 'b': 5}\"", "assert concatenate_tuple((None, 42, 'foo', True, 'foo', True)) == 'None-42-foo-True-foo-True'", "assert concatenate_tuple((['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'], ['UTS', 'is', None], ['UTS', 'is', None])) == \"['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']-['UTS', 'is', None]-['UTS', 'is', None]\"", "assert concatenate_tuple((None, 42, 42, 'foo', True, 5, 'foo')) == 'None-42-42-foo-True-5-foo'", "assert concatenate_tuple(('quichk', 'awesome', 'The', 'quick', 'brown', 'fox', 'fox')) == 'quichk-awesome-The-quick-brown-fox-fox'", "assert concatenate_tuple((5, 5)) == '5-5'", "assert concatenate_tuple(([1, 2], [3, 4], [1, 2], [5, 6])) == '[1, 2]-[3, 4]-[1, 2]-[5, 6]'", "assert concatenate_tuple((['a', 'b', 'c'], ['d', 'e', 'f'], ['d', 'UTS', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'])) == \"['a', 'b', 'c']-['d', 'e', 'f']-['d', 'UTS', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple((42, 5, 42)) == '42-5-42'", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i', 'i'], ['g', 'h', 'i'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['d', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple(('quichk', 'awesome', 'quick', 'brown', 'fox', 'fox')) == 'quichk-awesome-quick-brown-fox-fox'", "assert concatenate_tuple((10, True, 'Hello', True, 3.14, [1, 2, 3], {'a': 1, 'b': 2})) == \"10-True-Hello-True-3.14-[1, 2, 3]-{'a': 1, 'b': 2}\"", "assert concatenate_tuple((['ID', 'is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'], [None, 'UTS', 'is', None])) == \"['ID', 'is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']-[None, 'UTS', 'is', None]\"", "assert concatenate_tuple((4,)) == '4'", "assert concatenate_tuple((5, 10, 42)) == '5-10-42'", "assert concatenate_tuple((None, 42, 42, 'foo', True, 5, 'foo', 43, 'foo')) == 'None-42-42-foo-True-5-foo-43-foo'", "assert concatenate_tuple((5,)) == '5'", "assert concatenate_tuple(([1, 2, 3, 3], [1, 1, 3], [1, 2, 3], ['a', 'c'], [[True, False], ['x', 'y', 'z']], [[True, False], ['x', 'y', 'z']])) == \"[1, 2, 3, 3]-[1, 1, 3]-[1, 2, 3]-['a', 'c']-[[True, False], ['x', 'y', 'z']]-[[True, False], ['x', 'y', 'z']]\"", "assert concatenate_tuple(('quichk', 'awesome', 'quick', 'brown', 'fox', 'fox', 'fox')) == 'quichk-awesome-quick-brown-fox-fox-fox'", "assert concatenate_tuple((True, 5, 5)) == 'True-5-5'", "assert concatenate_tuple((None, 42, 'ffoo', True, 'foo')) == 'None-42-ffoo-True-foo'", "assert concatenate_tuple(([True], None, -88, 96.91126492184753, 'PcXu', False)) == '[True]-None--88-96.91126492184753-PcXu-False'", "assert concatenate_tuple((10, 'Helo', True, 3.14, [1, 2, 3], 'Helo')) == '10-Helo-True-3.14-[1, 2, 3]-Helo'", "assert concatenate_tuple(([1, 2], [3, 4], [1, 2])) == '[1, 2]-[3, 4]-[1, 2]'", "assert concatenate_tuple(('awesome', 'quick', 'brown', 'y', 'y')) == 'awesome-quick-brown-y-y'", "assert concatenate_tuple(('hello-world', 'hello', '-', 'world', 'world')) == 'hello-world-hello---world-world'", "assert concatenate_tuple((5, 42)) == '5-42'", "assert concatenate_tuple((None, 42, 'foo', True, 5, 'foo', None)) == 'None-42-foo-True-5-foo-None'", "assert concatenate_tuple((None, 42, 42, 'fo', True, 5, 'foo')) == 'None-42-42-fo-True-5-foo'", "assert concatenate_tuple((4, 'Hello', True, 3.14, [1, 2, 3], {'a': 1, 'b': 2}, True)) == \"4-Hello-True-3.14-[1, 2, 3]-{'a': 1, 'b': 2}-True\"", "assert concatenate_tuple((-100, -22, 6, 5, -22)) == '-100--22-6-5--22'", "assert concatenate_tuple(('awesome', 'Hello', 'quick', 'brown', 'y', 'y')) == 'awesome-Hello-quick-brown-y-y'", "assert concatenate_tuple((['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'worldi', 'h', 'i'], ['d', 'UTS', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'])) == \"['a', 'b', 'c']-['d', 'e', 'f']-['g', 'worldi', 'h', 'i']-['d', 'UTS', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple(('brown', 'y', 'brown', 'brown')) == 'brown-y-brown-brown'", "assert concatenate_tuple(('y', 'y', 'brown')) == 'y-y-brown'", "assert concatenate_tuple((None, None, None, None, None)) == 'None-None-None-None-None'", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['d', 'cd', 'e', 'f', 'e'], ['g', 'h', 'i'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['d', 'cd', 'e', 'f', 'e']-['g', 'h', 'i']\"", "assert concatenate_tuple(([1, 2], [3, 4])) == '[1, 2]-[3, 4]'", "assert concatenate_tuple(([1, 2, 3, 3], [1, 2, 3], ['a', 'c'], [[True, False], ['x', 'y', 'z']], [[True, False], ['x', 'y', 'z']])) == \"[1, 2, 3, 3]-[1, 2, 3]-['a', 'c']-[[True, False], ['x', 'y', 'z']]-[[True, False], ['x', 'y', 'z']]\"", "assert concatenate_tuple((None, -88, 96.91126492184753, 'PcXu', False)) == 'None--88-96.91126492184753-PcXu-False'", "assert concatenate_tuple(({'a': 1, 'b': 6, 'aa': 0},)) == \"{'a': 1, 'b': 6, 'aa': 0}\"", "assert concatenate_tuple((['is', 4], ['UTS', 'is', None], ['Python', 'is', 'awesome'])) == \"['is', 4]-['UTS', 'is', None]-['Python', 'is', 'awesome']\"", "assert concatenate_tuple((['ID', 'is', 4], ['Python', 'is', 'awesome'], ['Python', 'is', 'awesome'])) == \"['ID', 'is', 4]-['Python', 'is', 'awesome']-['Python', 'is', 'awesome']\"", "assert concatenate_tuple(('quichk', 'awesome', 'quick', 'brown', 'fox', 'fox', 'Python')) == 'quichk-awesome-quick-brown-fox-fox-Python'", "assert concatenate_tuple(({'a': 5, 'b': 2}, {'a': 5, 'b': 2}, {'a': 5, 'b': 2})) == \"{'a': 5, 'b': 2}-{'a': 5, 'b': 2}-{'a': 5, 'b': 2}\"", "assert concatenate_tuple(('awesome', 'quick', 'brown', 'y', 'y', 'y', 'y')) == 'awesome-quick-brown-y-y-y-y'", "assert concatenate_tuple((-18, -100, -75, -41, 80, -42, 51, -69, -69)) == '-18--100--75--41-80--42-51--69--69'", "assert concatenate_tuple(('awesome', 'fooHelo', None, 42, 42, 'foo', True, 5, 'foo')) == 'awesome-fooHelo-None-42-42-foo-True-5-foo'", "assert concatenate_tuple(([3, 4],)) == '[3, 4]'", "assert concatenate_tuple(('awesome', 'quick', 'fo', 'y', 'y', 'y', 'y')) == 'awesome-quick-fo-y-y-y-y'", "assert concatenate_tuple((True, -69, 10, 5)) == 'True--69-10-5'", "assert concatenate_tuple(('hello-world', 'hello', 'UTS', '-', 'world', 'world')) == 'hello-world-hello-UTS---world-world'", "assert concatenate_tuple((None, 42, 42, 'foo', True, 'foo')) == 'None-42-42-foo-True-foo'", "assert concatenate_tuple((['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'Python', 'i'], ['g', 'h', 'i'])) == \"['a', 'b', 'c']-['d', 'e', 'f']-['g', 'Python', 'i']-['g', 'h', 'i']\"", "assert concatenate_tuple((-18, -75, -41, 80, -42, 51, -69, -69, -69)) == '-18--75--41-80--42-51--69--69--69'", "assert concatenate_tuple((['aa', 'a', 'b', 'c'], ['a', 'b', 'c'], ['g', 'h', 'i'], ['g', 'h', 'i'], ['a', 'b', 'c'])) == \"['aa', 'a', 'b', 'c']-['a', 'b', 'c']-['g', 'h', 'i']-['g', 'h', 'i']-['a', 'b', 'c']\"", "assert concatenate_tuple((None, 42, 42, 'foo', True, 5, 'foo', 43, 'foo', None)) == 'None-42-42-foo-True-5-foo-43-foo-None'", "assert concatenate_tuple((10, 'Hello', True, 3.14, 80, [1, 2, 3], {'a': 1, 'b': 2}, True, [1, 2, 3])) == \"10-Hello-True-3.14-80-[1, 2, 3]-{'a': 1, 'b': 2}-True-[1, 2, 3]\"", "assert concatenate_tuple(([1, 2, 3, 3], [1, 1, 3], [1, 2, 3], ['a', 'c'], [[True, False], ['x', 'y', 'z'], [True, False]], [[True, False], ['x', 'y', 'z']], [1, 1, 3])) == \"[1, 2, 3, 3]-[1, 1, 3]-[1, 2, 3]-['a', 'c']-[[True, False], ['x', 'y', 'z'], [True, False]]-[[True, False], ['x', 'y', 'z']]-[1, 1, 3]\"", "assert concatenate_tuple(('brhello-worldwn', 'y', 'brown')) == 'brhello-worldwn-y-brown'", "assert concatenate_tuple(({'a': 1, 'b': 2, 'aa': 0}, {'a': 1, 'b': 2, 'aa': 0})) == \"{'a': 1, 'b': 2, 'aa': 0}-{'a': 1, 'b': 2, 'aa': 0}\"", "assert concatenate_tuple((['a', 'b', 'c'], ['d', 'e', 'f'], ['g', 'worldi', 'h', 'i'], ['d', 'UTS', 'e', 'f'], ['g', 'h', 'i'], ['g', 'h', 'i'], ['a', 'b', 'c'])) == \"['a', 'b', 'c']-['d', 'e', 'f']-['g', 'worldi', 'h', 'i']-['d', 'UTS', 'e', 'f']-['g', 'h', 'i']-['g', 'h', 'i']-['a', 'b', 'c']\"", "assert concatenate_tuple((54, -18)) == '54--18'", "assert concatenate_tuple((None, 42, 42, 'foo', True, 5, 'foo', 43, 'foo', 42)) == 'None-42-42-foo-True-5-foo-43-foo-42'", "assert concatenate_tuple(('awesome', 'brown', 'y')) == 'awesome-brown-y'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the average of cubes of first n natural numbers.\nassert find_Average_Of_Cube(2) == 4.5\nYour code should pass the test:\nassert find_Average_Of_Cube(2) == 4.5", "test_list": [ "assert find_Average_Of_Cube(2) == 4.5", "assert find_Average_Of_Cube(3) == 12", "assert find_Average_Of_Cube(1) == 1", "assert find_Average_Of_Cube(10) == 302.5", "assert find_Average_Of_Cube(100) == 255025.0", "assert find_Average_Of_Cube(1000) == 250500250.0", "assert find_Average_Of_Cube(9) == 225.0", "assert find_Average_Of_Cube(7) == 112.0", "assert find_Average_Of_Cube(8) == 162.0", "assert find_Average_Of_Cube(998) == 249001249.5", "assert find_Average_Of_Cube(102) == 270529.5", "assert find_Average_Of_Cube(101) == 262701.0", "assert find_Average_Of_Cube(6) == 73.5", "assert find_Average_Of_Cube(99) == 247500.0", "assert find_Average_Of_Cube(5) == 45.0", "assert find_Average_Of_Cube(997) == 248253997.0", "assert find_Average_Of_Cube(1001) == 251252001.0", "assert find_Average_Of_Cube(11) == 396.0", "assert find_Average_Of_Cube(999) == 249750000.0", "assert find_Average_Of_Cube(994) == 246021212.5", "assert find_Average_Of_Cube(993) == 245279937.0", "assert find_Average_Of_Cube(12) == 507.0", "assert find_Average_Of_Cube(True) == 1.0", "assert find_Average_Of_Cube(992) == 244540152.0", "assert find_Average_Of_Cube(13) == 637.0", "assert find_Average_Of_Cube(991) == 243801856.0", "assert find_Average_Of_Cube(990) == 243065047.5", "assert find_Average_Of_Cube(4) == 25.0", "assert find_Average_Of_Cube(995) == 246763980.0", "assert find_Average_Of_Cube(39) == 15600.0", "assert find_Average_Of_Cube(1002) == 252005254.5", "assert find_Average_Of_Cube(996) == 247508241.0", "assert find_Average_Of_Cube(97) == 232897.0", "assert find_Average_Of_Cube(16) == 1156.0", "assert find_Average_Of_Cube(3) == 12.0", "assert find_Average_Of_Cube(40) == 16810.0", "assert find_Average_Of_Cube(1004) == 253516275.0", "assert find_Average_Of_Cube(41) == 18081.0", "assert find_Average_Of_Cube(1005) == 254274045.0", "assert find_Average_Of_Cube(15) == 960.0", "assert find_Average_Of_Cube(103) == 278512.0", "assert find_Average_Of_Cube(1006) == 255033323.5", "assert find_Average_Of_Cube(94) == 212087.5", "assert find_Average_Of_Cube(989) == 242329725.0", "assert find_Average_Of_Cube(38) == 14449.5", "assert find_Average_Of_Cube(17) == 1377.0", "assert find_Average_Of_Cube(96) == 225816.0", "assert find_Average_Of_Cube(95) == 218880.0", "assert find_Average_Of_Cube(93) == 205437.0", "assert find_Average_Of_Cube(14) == 787.5", "assert find_Average_Of_Cube(2) == 4.5", "assert find_Average_Of_Cube(1) == 1.0", "assert find_Average_Of_Cube(1003) == 252760012.0", "assert find_Average_Of_Cube(92) == 198927.0", "assert find_Average_Of_Cube(1007) == 255794112.0", "assert find_Average_Of_Cube(98) == 240124.5", "assert find_Average_Of_Cube(1008) == 256556412.0", "assert find_Average_Of_Cube(1009) == 257320225.0", "assert find_Average_Of_Cube(42) == 19414.5", "assert find_Average_Of_Cube(35) == 11340.0", "assert find_Average_Of_Cube(36) == 12321.0", "assert find_Average_Of_Cube(37) == 13357.0", "assert find_Average_Of_Cube(988) == 241595887.0", "assert find_Average_Of_Cube(43) == 20812.0", "assert find_Average_Of_Cube(34) == 10412.5", "assert find_Average_Of_Cube(104) == 286650.0", "assert find_Average_Of_Cube(33) == 9537.0", "assert find_Average_Of_Cube(65) == 70785.0", "assert find_Average_Of_Cube(105) == 294945.0", "assert find_Average_Of_Cube(44) == 22275.0", "assert find_Average_Of_Cube(54) == 40837.5", "assert find_Average_Of_Cube(106) == 303398.5", "assert find_Average_Of_Cube(55) == 43120.0", "assert find_Average_Of_Cube(32) == 8712.0", "assert find_Average_Of_Cube(53) == 38637.0", "assert find_Average_Of_Cube(56) == 45486.0", "assert find_Average_Of_Cube(91) == 192556.0", "assert find_Average_Of_Cube(31) == 7936.0", "assert find_Average_Of_Cube(90) == 186322.5", "assert find_Average_Of_Cube(52) == 36517.0", "assert find_Average_Of_Cube(28) == 5887.0", "assert find_Average_Of_Cube(30) == 7207.5", "assert find_Average_Of_Cube(57) == 47937.0", "assert find_Average_Of_Cube(29) == 6525.0", "assert find_Average_Of_Cube(89) == 180225.0", "assert find_Average_Of_Cube(18) == 1624.5", "assert find_Average_Of_Cube(59) == 53100.0", "assert find_Average_Of_Cube(66) == 74068.5", "assert find_Average_Of_Cube(64) == 67600.0", "assert find_Average_Of_Cube(63) == 64512.0", "assert find_Average_Of_Cube(62) == 61519.5", "assert find_Average_Of_Cube(60) == 55815.0", "assert find_Average_Of_Cube(61) == 58621.0", "assert find_Average_Of_Cube(27) == 5292.0", "assert find_Average_Of_Cube(26) == 4738.5", "assert find_Average_Of_Cube(88) == 174262.0", "assert find_Average_Of_Cube(87) == 168432.0", "assert find_Average_Of_Cube(107) == 312012.0", "assert find_Average_Of_Cube(1010) == 258085552.5", "assert find_Average_Of_Cube(67) == 77452.0", "assert find_Average_Of_Cube(85) == 157165.0", "assert find_Average_Of_Cube(25) == 4225.0", "assert find_Average_Of_Cube(1011) == 258852396.0", "assert find_Average_Of_Cube(51) == 34476.0", "assert find_Average_Of_Cube(68) == 80937.0", "assert find_Average_Of_Cube(50) == 32512.5" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract only the rear index element of each string in the given tuple.\nassert extract_rear(('Mers', 'for', 'Vers') ) == ['s', 'r', 's']\nYour code should pass the test:\nassert extract_rear(('Mers', 'for', 'Vers') ) == ['s', 'r', 's']", "test_list": [ "assert extract_rear(('Mers', 'for', 'Vers') ) == ['s', 'r', 's']", "assert extract_rear(('Avenge', 'for', 'People') ) == ['e', 'r', 'e']", "assert extract_rear(('Gotta', 'get', 'go') ) == ['a', 't', 'o']", "assert extract_rear(('Lorem', 'ipsum', 'dolor', 'sit', 'amet')) == ['m', 'm', 'r', 't', 't']", "assert extract_rear(('Quick', 'brown', 'fox', 'jumps', 'over', 'the', 'lazy', 'dog')) == ['k', 'n', 'x', 's', 'r', 'e', 'y', 'g']", "assert extract_rear(('Python', 'is', 'a', 'widely', 'used', 'programming', 'language')) == ['n', 's', 'a', 'y', 'd', 'g', 'e']", "assert extract_rear(('This', 'is', 'a', 'test', 'for', 'the', 'function')) == ['s', 's', 'a', 't', 'r', 'e', 'n']", "assert extract_rear(('Complex', 'input', 'to', 'test', 'the', 'function', 'with')) == ['x', 't', 'o', 't', 'e', 'n', 'h']", "assert extract_rear(('I', 'love', 'writing', 'code', 'in', 'Python')) == ['I', 'e', 'g', 'e', 'n', 'n']", "assert extract_rear(('The', 'function', 'should', 'handle', 'both', 'strings', 'and', 'numbers')) == ['e', 'n', 'd', 'e', 'h', 's', 'd', 's']", "assert extract_rear(('We', 'expect', 'the', 'output', 'to', 'be', 'a', 'list', 'of', 'characters')) == ['e', 't', 'e', 't', 'o', 'e', 'a', 't', 'f', 's']", "assert extract_rear(()) == []", "assert extract_rear(('Hello', 'World!', '12345')) == ['o', '!', '5']", "assert extract_rear(('123', 'abc', '456')) == ['3', 'c', '6']", "assert extract_rear(('Hello World', 'This is a test', 'for the function')) == ['d', 't', 'n']", "assert extract_rear(('apple', 'banana', 'cherry', 'durian')) == ['e', 'a', 'y', 'n']", "assert extract_rear(('apple', 'orange', 'mango', 'kiwi', 'papaya')) == ['e', 'e', 'o', 'i', 'a']", "assert extract_rear(('dog', 'cat', 'hamster', 'guinea pig', 'rabbit', 'gerbil')) == ['g', 't', 'r', 'g', 't', 'l']", "assert extract_rear(('The', 'quick', 'brown', 'fox', 'jumps', 'over', 'the', 'lazy', 'dog!')) == ['e', 'k', 'n', 'x', 's', 'r', 'e', 'y', '!']", "assert extract_rear(('hello123', 'world456', 'python789')) == ['3', '6', '9']", "assert extract_rear(('1', '2', '3', '4', '5')) == ['1', '2', '3', '4', '5']", "assert extract_rear(('-1', '-2', '-3', '-4', '-5')) == ['1', '2', '3', '4', '5']", "assert extract_rear(('9', 'a', 'b', '1', '2')) == ['9', 'a', 'b', '1', '2']", "assert extract_rear(('input', 'kiwi', 'app4le', 'papaya')) == ['t', 'i', 'e', 'a']", "assert extract_rear(('Hello', 'World!', '12345', 'He', '12345')) == ['o', '!', '5', 'e', '5']", "assert extract_rear(('apple', 'banana', 'mango', 'cherry', 'durian', 'bananna', 'durian', 'durian')) == ['e', 'a', 'o', 'y', 'n', 'a', 'n', 'n']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'both', 'strings', 'and', 'numbers')) == ['e', 'n', 'r', 'd', 'e', 'h', 's', 'd', 's']", "assert extract_rear(('strings', 'This is a test', 'for the function')) == ['s', 't', 'n']", "assert extract_rear(('banana', 'durian', 'apple')) == ['a', 'n', 'e']", "assert extract_rear(('Hello World', 'This is a test')) == ['d', 't']", "assert extract_rear(('The', 'quick', 'brown', 'fox', 'jumps', 'over', 'the', 'World', 'lazy', 'dog!')) == ['e', 'k', 'n', 'x', 's', 'r', 'e', 'd', 'y', '!']", "assert extract_rear(('banana', 'durian', 'fox')) == ['a', 'n', 'x']", "assert extract_rear(('The', 'quic', 'brown', 'fox', 'jumps', 'over', 'the', 'World', 'lazy', 'dgd!')) == ['e', 'c', 'n', 'x', 's', 'r', 'e', 'd', 'y', '!']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'both', 'strings', 'and', 'numbers', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'h', 's', 'd', 's', 's']", "assert extract_rear(('dog', 'cat', 'hamster', 'guinea pig', 'rabbit', 'gerbil', 'guinea pig')) == ['g', 't', 'r', 'g', 't', 'l', 'g']", "assert extract_rear(('brown', 'fox', 'jumps', 'over', 'the', 'lazy', 'dog')) == ['n', 'x', 's', 'r', 'e', 'y', 'g']", "assert extract_rear(('dog', 'cat', 'love', 'used', 'hamster', 'guinea pig', 'rabbit', 'gerbil')) == ['g', 't', 'e', 'd', 'r', 'g', 't', 'l']", "assert extract_rear(('strings', 'This is a test', 'for the function', 'strings')) == ['s', 't', 'n', 's']", "assert extract_rear(('apple', 'orange', 'maoutputngo', 'kiwi', 'papaya')) == ['e', 'e', 'o', 'i', 'a']", "assert extract_rear(('1', '2', '3', '4', 'dolor')) == ['1', '2', '3', '4', 'r']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's']", "assert extract_rear(('brown', 'fox', 'jumps', 'over', 'the', 'lazy', 'dog', 'fox')) == ['n', 'x', 's', 'r', 'e', 'y', 'g', 'x']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'dgd!', 'strings', 'and', 'numbers')) == ['e', 'n', 'r', 'd', 'e', '!', 's', 'd', 's']", "assert extract_rear(('uswidelyed', 'dog', 'cat', 'love', 'used', 'hamster', 'guinea pig', 'rabbit', 'gerbil')) == ['d', 'g', 't', 'e', 'd', 'r', 'g', 't', 'l']", "assert extract_rear(('The', 'quick', 'brown', 'fox', 'expect', 'jumps', 'over', 'the', 'lazy', 'dog!')) == ['e', 'k', 'n', 'x', 't', 's', 'r', 'e', 'y', '!']", "assert extract_rear(('dog', 'cat', 'love', 'used', 'guinea pig', 'rabbit')) == ['g', 't', 'e', 'd', 'g', 't']", "assert extract_rear(('This', 'is', 'a', 'test', 'for', 'function')) == ['s', 's', 'a', 't', 'r', 'n']", "assert extract_rear(('This', 'is', 'a', 'sit', 'test', 'for', 'function')) == ['s', 's', 'a', 't', 't', 'r', 'n']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 's']", "assert extract_rear(('4', 'brown', 'fox', 'jumps', 'over', 'the', 'lazy', 'doog', 'fox')) == ['4', 'n', 'x', 's', 'r', 'e', 'y', 'g', 'x']", "assert extract_rear(('1', '2rabbit', '3', '4', 'handle', 'dolor')) == ['1', 't', '3', '4', 'e', 'r']", "assert extract_rear(('The', 'quic', 'brown', 'fox', 'jumps', 'the', 'World', 'd!gd!', 'abc', 'dgd!')) == ['e', 'c', 'n', 'x', 's', 'e', 'd', '!', 'c', '!']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'ThTe', 'both', 'strings', 'and', 'numbers', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('dog', 'cat', 'hamster', 'guinea pig', 'rabbit', 'gerbil', 'guinea pig', 'guinea pig')) == ['g', 't', 'r', 'g', 't', 'l', 'g', 'g']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'string', 'strings', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 'g', 's', 's']", "assert extract_rear(('Quick', 'brown', 'fox', 'jumps', 'over', 'laazy', 'the', 'lazy', 'dog')) == ['k', 'n', 'x', 's', 'r', 'y', 'e', 'y', 'g']", "assert extract_rear(('dog', 'ctI', 'hamster', 'guinea pig', 'rabbit', 'gerbil', 'guinea pig', 'guinea pig')) == ['g', 'I', 'r', 'g', 't', 'l', 'g', 'g']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', '-2', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', '2', 's', 's', 'e']", "assert extract_rear(('This', 'is', 'a', 'test', 'for', 'the', 'function', 'for', 'for')) == ['s', 's', 'a', 't', 'r', 'e', 'n', 'r', 'r']", "assert extract_rear(('apple', 'laazy', 'banana', 'mango', 'cherry', 'durian', 'bananna', 'durian', 'durian')) == ['e', 'y', 'a', 'o', 'y', 'n', 'a', 'n', 'n']", "assert extract_rear(('This', 'is', 'a', 'test', 'for', 'function', 'for')) == ['s', 's', 'a', 't', 'r', 'n', 'r']", "assert extract_rear(('apple', 'laazy', 'banana', 'mango', 'cherry', 'durian', 'bananna', 'durian', 'durian', 'cherry')) == ['e', 'y', 'a', 'o', 'y', 'n', 'a', 'n', 'n', 'y']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'ThTe', 'both', 'and', 'numbers', 'strings', 'over')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 'd', 's', 's', 'r']", "assert extract_rear(('input', 'kiwi', 'pappaya', 'gerbil', 'papaya')) == ['t', 'i', 'a', 'l', 'a']", "assert extract_rear(('dog', 'cat', 'hamsterof', 'guinea pig', 'rabbit', 'gerbil')) == ['g', 't', 'f', 'g', 't', 'l']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'both', 'strings', 'anjumpsd', 'numbers', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'h', 's', 'd', 's', 's']", "assert extract_rear(('The', 'quick', 'brown', 'fox', 'brown', 'jumps', 'over', 'the', 'lazy', 'dog!')) == ['e', 'k', 'n', 'x', 'n', 's', 'r', 'e', 'y', '!']", "assert extract_rear(('dtheog', 'love', 'used', 'guinea pig', 'rabbit')) == ['g', 'e', 'd', 'g', 't']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle', 'and')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 'e', 'd']", "assert extract_rear(('dog', 'cat', 'guinea pig', 'rabbit', 'gerbil', 'dog')) == ['g', 't', 'g', 't', 'l', 'g']", "assert extract_rear(('kiwi', 'app4le', 'papaya')) == ['i', 'e', 'a']", "assert extract_rear(('Complex', '-5', 'love', 'used', 'hamster', 'guinea pig', 'rabbit', 'gerbil', 'guinea pig')) == ['x', '5', 'e', 'd', 'r', 'g', 't', 'l', 'g']", "assert extract_rear(('Lorem', 'dolor', 'cat', 'sit', 'amet', 'amet')) == ['m', 'r', 't', 't', 't', 't']", "assert extract_rear(('The', 'function', 'over', 'should', 'handle', 'dgd!', 'strings', 'and', 'numbers', 'numbers', 'The')) == ['e', 'n', 'r', 'd', 'e', '!', 's', 'd', 's', 's', 'e']", "assert extract_rear(('The', 'functon', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('apple', 'orange', 'mango', 'kiwi', 'papaya', 'kiwi')) == ['e', 'e', 'o', 'i', 'a', 'i']", "assert extract_rear(('brown', 'fox', 'jumps', 'over', 'the', 'lazy', 'dog', 'fox', 'fox')) == ['n', 'x', 's', 'r', 'e', 'y', 'g', 'x', 'x']", "assert extract_rear(('Hello World', 'This is a test', 'for the function', 'Hello World')) == ['d', 't', 'n', 'd']", "assert extract_rear(('This', 'test', 'for', 'function')) == ['s', 't', 'r', 'n']", "assert extract_rear(('dtheog', 'love', 'used', 'guinea pig', 'rabbit', 'guinea pig')) == ['g', 'e', 'd', 'g', 't', 'g']", "assert extract_rear(('This', 'a', 'test', 'for', 'the', 'function')) == ['s', 'a', 't', 'r', 'e', 'n']", "assert extract_rear(('uswidelyed', 'dog', 'cat', 'used', 'hamster', 'guinea pig', 'rabbit', 'gerbil')) == ['d', 'g', 't', 'd', 'r', 'g', 't', 'l']", "assert extract_rear(('The', 'function', 'should', 'handle', 'both', 'strings', 'botd!gd!h', 'and', 'numbers')) == ['e', 'n', 'd', 'e', 'h', 's', 'h', 'd', 's']", "assert extract_rear(('The', 'funnction', 'over', 'should', 'handle', 'dgd!', 'strings', 'and', 'numbers')) == ['e', 'n', 'r', 'd', 'e', '!', 's', 'd', 's']", "assert extract_rear(('-3The', 'function', 'over', 'should', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', 'd', 'e', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('rrabbit', 'dog', 'ctI', 'hamster', 'guinea pig', 'rabbit', 'gerbil', 'guinea pig', 'guinea pig')) == ['t', 'g', 'I', 'r', 'g', 't', 'l', 'g', 'g']", "assert extract_rear(('banana', 'apple', 'apple')) == ['a', 'e', 'e']", "assert extract_rear(('dog', 'cat', 'used', 'hamter', 'guinea pig', 'rabbit', 'gerbil')) == ['g', 't', 'd', 'r', 'g', 't', 'l']", "assert extract_rear(('-3The', 'function', 'over', 'd!gd!', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', '!', 'e', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('dog', 'cat', 'guinea pig', '123', 'gerbil', 'dog')) == ['g', 't', 'g', '3', 'l', 'g']", "assert extract_rear(('We', 'expect', 'pappaya', 'output', 'to', 'be', 'a', 'list', 'of', 'characters')) == ['e', 't', 'a', 't', 'o', 'e', 'a', 't', 'f', 's']", "assert extract_rear(('banana', 'durian', 'fox', 'durian')) == ['a', 'n', 'x', 'n']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handale', 'both', 'strings', 'and', 'numbers', 'strings', 'strings', 'The')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 's', 'e']", "assert extract_rear(('dtheog', 'love', 'used', 'guinea pig', 'rabbit', 'guinea pig', 'guinea pig')) == ['g', 'e', 'd', 'g', 't', 'g', 'g']", "assert extract_rear(('This', 'is', 'a', 'for', 'function')) == ['s', 's', 'a', 'r', 'n']", "assert extract_rear(('1', '3', '4', 'handle', 'dolor')) == ['1', '3', '4', 'e', 'r']", "assert extract_rear(('Imango', 'love', 'writing', 'code', 'in', 'Python', 'Python')) == ['o', 'e', 'g', 'e', 'n', 'n', 'n']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'numipsumrs', 'handle', 'both', 'brown', 'and', 'numbers', 'strings')) == ['e', 'n', 'r', 'd', 'e', 's', 'e', 'h', 'n', 'd', 's', 's']", "assert extract_rear(('I', 'love', 'writing', 'code', 'in', 'Python', 'I')) == ['I', 'e', 'g', 'e', 'n', 'n', 'I']", "assert extract_rear(('Thloveis', 'is', 'a', 'sit', 'test', 'for', 'function')) == ['s', 's', 'a', 't', 't', 'r', 'n']", "assert extract_rear(('rOdbYFwfQl', 'TI', 'hamter', 'jumps')) == ['l', 'I', 'r', 's']", "assert extract_rear(('input', 'kiwi', 'pappaya')) == ['t', 'i', 'a']", "assert extract_rear(('dtheog', 'love', 'used', 'guinea pig', 'rabbit', 'guinea pigwriting', 'guinea pig', 'guinea pig')) == ['g', 'e', 'd', 'g', 't', 'g', 'g', 'g']", "assert extract_rear(('The', 'brown', 'fox', 'jumps', 'the', 'World', 'd!gd!', 'abc', 'dgd!')) == ['e', 'n', 'x', 's', 'e', 'd', '!', 'c', '!']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', '3', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', 'd', 'e', '3', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('ctI', 'banana', 'apple', 'apple')) == ['I', 'a', 'e', 'e']", "assert extract_rear(('input', 'kiwi', 'app4le', 'papaya', 'app4le')) == ['t', 'i', 'e', 'a', 'e']", "assert extract_rear(('The', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('The', 'brown', 'fox', 'Wrld', 'jumps', 'the', 'World', 'd!gd!', 'abc', 'dgd!')) == ['e', 'n', 'x', 'd', 's', 'e', 'd', '!', 'c', '!']", "assert extract_rear(('apple', 'orange', 'maoutputngo', 'kiwi', 'papaya', 'apple')) == ['e', 'e', 'o', 'i', 'a', 'e']", "assert extract_rear(('We', 'expect', 'the', 'output', 'to', 'be', 'a', 'list', 'of', 'characters', 'expecct')) == ['e', 't', 'e', 't', 'o', 'e', 'a', 't', 'f', 's', 't']", "assert extract_rear(('1', '2', '3', '4', 'dolor', '2')) == ['1', '2', '3', '4', 'r', '2']", "assert extract_rear(('apple', 'banana', 'durian', 'durian')) == ['e', 'a', 'n', 'n']", "assert extract_rear(('The', 'function', 'over', 'shoduld', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'strings')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 's', 's']", "assert extract_rear(('The', 'function', 'over', 'should', 'ThTe', 'handle', 'both', 'strings', 'and', 'numbers', 'used')) == ['e', 'n', 'r', 'd', 'e', 'e', 'h', 's', 'd', 's', 'd']", "assert extract_rear(('brown', 'ddog', 'fox', 'jumps', 'over', 'the', 'lazy', 'dog')) == ['n', 'g', 'x', 's', 'r', 'e', 'y', 'g']", "assert extract_rear(('-33The', 'function', 'over', 'd!gd!', 'handle', 'both', 'strings', 'and', 'numbers', 'strings', 'handle')) == ['e', 'n', 'r', '!', 'e', 'h', 's', 'd', 's', 's', 'e']", "assert extract_rear(('We', 'expect', 'papWorldpaya', 'output', 'to', 'be', 'a', 'of', 'characters')) == ['e', 't', 'a', 't', 'o', 'e', 'a', 'f', 's']", "assert extract_rear(('input', 'kiwi', 'app4le')) == ['t', 'i', 'e']", "assert extract_rear(('9', 'a', '1', '2')) == ['9', 'a', '1', '2']", "assert extract_rear(('love', '9', 'TI', 'hamter', 'jumps')) == ['e', '9', 'I', 'r', 's']", "assert extract_rear(('The', 'funnction', 'over', 'nmangoumbers', 'should', 'handle', 'dgd!', 'strings', 'and', 'numbers')) == ['e', 'n', 'r', 's', 'd', 'e', '!', 's', 'd', 's']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count the number of sublists containing a particular element.\nassert count_element_in_list([[1, 3], [5, 7], [1, 11], [1, 15, 7]],1)==3\nYour code should pass the test:\nassert count_element_in_list([[1, 3], [5, 7], [1, 11], [1, 15, 7]],1)==3", "test_list": [ "assert count_element_in_list([[1, 3], [5, 7], [1, 11], [1, 15, 7]],1)==3", "assert count_element_in_list([['A', 'B'], ['A', 'C'], ['A', 'D', 'E'], ['B', 'C', 'D']],'A')==3", "assert count_element_in_list([['A', 'B'], ['A', 'C'], ['A', 'D', 'E'], ['B', 'C', 'D']],'E')==1", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H']], 'A') == 1", "assert count_element_in_list([], 'A') == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H']], 'G') == 1", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'G', 'H'], ['I', 'J', 'K', 'L']], 'F') == 1", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], 'L') == 1", "assert count_element_in_list([['A', 'B', 'C'], ['D', 'E'], ['F', 'G', 'H', 'I', 'J']], 'K') == 0", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['E', 'F'], ['G', 'H', 'I', 'J'], ['K'], ['L', 'M', 'N']], 'D') == 1", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J']], 'I') == 1", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J']], 'J') == 1", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['F', 'G', 'H', 'IB', 'J'], ['E'], ['F', 'G', 'H', 'IB', 'J']], 'J') == 2", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['E', 'F'], ['G', 'H', 'I', 'J'], ['K']], '') == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H']], 'GG') == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H']], 'GG') == 0", "assert count_element_in_list([['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J']], 'J') == 1", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['E', 'F'], ['G', 'H', 'I', 'J'], ['K']], 'IB') == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H'], ['H']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['H'], ['H']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H']], '') == 0", "assert count_element_in_list([['A', 'B'], ['D'], ['E', 'F'], ['G', 'H'], ['A', 'B']], 'A') == 2", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['G', 'H', 'I', 'J'], ['K']], 'E') == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], 'LL') == 0", "assert count_element_in_list([['B'], ['C', 'D'], ['B'], ['E', 'F'], ['G', 'H']], 'GG') == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H']], 'C') == 1", "assert count_element_in_list([['BB', 'A', 'B'], ['C', 'D'], ['F', 'G', 'H', 'IB', 'J'], ['E'], ['F', 'G', 'H', 'IB', 'J']], 'J') == 2", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'G', 'H'], ['I', 'J', 'K', 'L']], 'I') == 1", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'G', '', 'H'], ['F', 'G', '', 'H'], ['I', 'J', 'K', 'L']], [['A', 'B', 'C', 'D', 'E'], ['F', 'G', '', 'H'], ['F', 'G', '', 'H'], ['I', 'J', 'K', 'L']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H']], '') == 0", "assert count_element_in_list([['A'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], 'L') == 1", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], [['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']]) == 0", "assert count_element_in_list([['D'], ['E'], ['D'], ['F', 'G', 'H', 'I', 'J']], [['D'], ['E'], ['D'], ['F', 'G', 'H', 'I', 'J']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['H']]) == 0", "assert count_element_in_list([['A', 'B'], ['LLF', 'C', 'D'], ['E', 'F'], ['H', 'H']], [['A', 'B'], ['LLF', 'C', 'D'], ['E', 'F'], ['H', 'H']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['I', 'J', 'K', 'L']], [['A', 'B', 'C', 'D', 'E'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['I', 'J', 'K', 'L']]) == 0", "assert count_element_in_list([['A', 'B'], ['LLF', 'C', 'D'], ['F'], ['F'], ['H', 'H']], [['A', 'B'], ['LLF', 'C', 'D'], ['F'], ['F'], ['H', 'H']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['G', 'H'], ['C', 'D']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['G', 'H'], ['C', 'D']]) == 0", "assert count_element_in_list([['B'], ['C', 'D'], ['E', 'F'], ['G', 'H']], 'GG') == 0", "assert count_element_in_list([['C', 'D'], ['E', 'F'], ['H']], [['C', 'D'], ['E', 'F'], ['H']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['G', 'H']], 'GG') == 0", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['E', 'F'], ['G', 'H', 'I', 'J'], ['K']], 'K') == 1", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J']], 'H') == 1", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E'], ['F', 'IB', 'H', 'I', 'J']], 'H') == 1", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M'], ['B', 'C', 'D']], 'L') == 1", "assert count_element_in_list([['D'], ['E']], [['D'], ['E']]) == 0", "assert count_element_in_list([['B'], ['G', 'IBH'], ['C', 'D'], ['B'], ['E', 'F'], ['G', 'IBH']], [['B'], ['G', 'IBH'], ['C', 'D'], ['B'], ['E', 'F'], ['G', 'IBH']]) == 0", "assert count_element_in_list([['A', 'B'], ['E', 'F'], ['H', 'H']], [['A', 'B'], ['E', 'F'], ['H', 'H']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D', 'D'], ['E', 'F'], ['G', 'H']], [['A', 'B'], ['C', 'D', 'D'], ['E', 'F'], ['G', 'H']]) == 0", "assert count_element_in_list([['A', 'B'], ['H', 'H', 'H'], ['E', 'F'], ['H', 'H', 'H']], [['A', 'B'], ['H', 'H', 'H'], ['E', 'F'], ['H', 'H', 'H']]) == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M'], ['B', 'C', 'D']], 'LL') == 0", "assert count_element_in_list([['A', 'B'], ['LLF', 'C', 'D'], ['F'], ['H', 'H']], [['A', 'B'], ['LLF', 'C', 'D'], ['F'], ['H', 'H']]) == 0", "assert count_element_in_list([['DD', 'DD'], ['E'], ['DD', 'DD'], ['DD', 'DD'], ['F', 'G', 'H', 'I', 'J'], ['DD', 'DD']], [['DD', 'DD'], ['E'], ['DD', 'DD'], ['DD', 'DD'], ['F', 'G', 'H', 'I', 'J'], ['DD', 'DD']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['G', 'H', 'I', 'J'], ['K'], ['A', 'B', 'C', 'D']], [['A', 'B', 'C', 'D'], ['G', 'H', 'I', 'J'], ['K'], ['A', 'B', 'C', 'D']]) == 0", "assert count_element_in_list([['D'], []], [['D'], []]) == 0", "assert count_element_in_list([['A', 'IBH', 'B', 'C', 'D', 'E'], ['F', 'G', 'H'], ['A', 'IBH', 'B', 'C', 'D', 'E'], ['I', 'J', 'K', 'L']], 'I') == 1", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'G', 'DH'], ['I', 'J', 'K', 'L']], 'F') == 1", "assert count_element_in_list([['DD', 'DD'], ['E'], ['DD', 'DD'], ['DD', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'DD']], [['DD', 'DD'], ['E'], ['DD', 'DD'], ['DD', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'DD']]) == 0", "assert count_element_in_list([['A', 'IBH', 'B', 'C', 'D', 'E'], ['F', 'G', 'H'], ['I', 'LL', 'J', 'K', 'L'], ['A', 'IBH', 'B', 'C', 'D', 'E'], ['I', 'LL', 'J', 'K', 'L']], 'I') == 2", "assert count_element_in_list([['DD', 'E', 'DD'], ['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD']], [['DD', 'E', 'DD'], ['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD']]) == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['KK', 'K', 'L', 'M']], 'L') == 1", "assert count_element_in_list([['A', 'B'], ['C', 'D', 'D'], ['F'], ['GG', 'G', 'H'], ['GG', 'G', 'H'], ['GG', 'G', 'H']], [['A', 'B'], ['C', 'D', 'D'], ['F'], ['GG', 'G', 'H'], ['GG', 'G', 'H'], ['GG', 'G', 'H']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['G', 'H'], ['C', 'D'], ['E', 'F']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['G', 'H'], ['C', 'D'], ['E', 'F']]) == 0", "assert count_element_in_list([['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J', 'F'], ['F', 'G', 'H', 'I', 'J', 'F']], [['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J', 'F'], ['F', 'G', 'H', 'I', 'J', 'F']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['KE'], ['KE'], ['A', 'B', 'C', 'D']], [['A', 'B', 'C', 'D'], ['KE'], ['KE'], ['A', 'B', 'C', 'D']]) == 0", "assert count_element_in_list([['A', 'B', 'D'], ['G', 'H', 'I', 'J'], ['K'], ['A', 'B', 'D']], [['A', 'B', 'D'], ['G', 'H', 'I', 'J'], ['K'], ['A', 'B', 'D']]) == 0", "assert count_element_in_list([['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD']], [['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD']]) == 0", "assert count_element_in_list([['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD'], ['E']], [['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD'], ['E']]) == 0", "assert count_element_in_list([['A', 'B'], ['E', 'EE', 'F'], ['H', 'H']], [['A', 'B'], ['E', 'EE', 'F'], ['H', 'H']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'A'], ['D', 'E'], ['F', 'G', 'H', 'I', 'J']], 'K') == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['K', 'L', 'M', 'K']], [['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['K', 'L', 'M', 'K']]) == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], '') == 0", "assert count_element_in_list([['D'], ['BB', 'A', 'B'], ['D'], ['F', 'G', 'H', 'IB', 'J'], ['E'], ['F', 'G', 'H', 'IB', 'J']], 'J') == 2", "assert count_element_in_list([['C', 'D', 'C'], ['A', 'B'], ['C', 'D', 'C'], ['E', 'F'], ['H'], ['C', 'D', 'C']], [['C', 'D', 'C'], ['A', 'B'], ['C', 'D', 'C'], ['E', 'F'], ['H'], ['C', 'D', 'C']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D', 'D'], ['E', 'F'], ['G', 'H'], ['E', 'F']], [['A', 'B'], ['C', 'D', 'D'], ['E', 'F'], ['G', 'H'], ['E', 'F']]) == 0", "assert count_element_in_list([['A', 'B'], ['E', 'F'], ['H', 'H', 'H']], [['A', 'B'], ['E', 'F'], ['H', 'H', 'H']]) == 0", "assert count_element_in_list([['AI', 'A', 'B', 'C', 'D', 'E'], ['F', 'G', 'H'], ['I', 'J', 'K', 'L'], ['AI', 'A', 'B', 'C', 'D', 'E']], [['AI', 'A', 'B', 'C', 'D', 'E'], ['F', 'G', 'H'], ['I', 'J', 'K', 'L'], ['AI', 'A', 'B', 'C', 'D', 'E']]) == 0", "assert count_element_in_list([['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD'], ['E']], [['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD'], ['E']]) == 0", "assert count_element_in_list([['A', 'B'], ['E']], 'I') == 0", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'G', '', 'N'], ['F', 'G', '', 'N'], ['F', 'G', '', 'N'], ['I', 'J', 'K', 'L']], [['A', 'B', 'C', 'D', 'E'], ['F', 'G', '', 'N'], ['F', 'G', '', 'N'], ['F', 'G', '', 'N'], ['I', 'J', 'K', 'L']]) == 0", "assert count_element_in_list([['A', 'B'], ['D'], ['E', 'F'], ['G', 'H'], ['A', 'B']], [['A', 'B'], ['D'], ['E', 'F'], ['G', 'H'], ['A', 'B']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['E', 'F']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['E', 'F']]) == 0", "assert count_element_in_list([['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J'], ['F', 'G', 'H', 'I', 'J']], 'DDJ') == 0", "assert count_element_in_list([['C', 'F'], ['A', 'B'], ['C', 'F'], ['H', 'H', 'H']], [['C', 'F'], ['A', 'B'], ['C', 'F'], ['H', 'H', 'H']]) == 0", "assert count_element_in_list([['A', 'B'], ['E', 'GGF'], ['C', 'D'], ['E', 'GGF'], ['H']], [['A', 'B'], ['E', 'GGF'], ['C', 'D'], ['E', 'GGF'], ['H']]) == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], 'BB') == 0", "assert count_element_in_list([['A'], ['E', 'F', 'G', 'H'], ['K', 'L', 'M', 'K']], [['A'], ['E', 'F', 'G', 'H'], ['K', 'L', 'M', 'K']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'D'], ['E', 'F'], ['G', 'H', 'I', 'J'], ['K']], [['A', 'B', 'C', 'D'], ['E', 'F'], ['G', 'H', 'I', 'J'], ['K']]) == 0", "assert count_element_in_list([['H', 'H', 'H'], ['E', 'F']], [['H', 'H', 'H'], ['E', 'F']]) == 0", "assert count_element_in_list([['BB', 'A', 'B'], ['C', 'D'], ['F', 'G', '', 'H', 'IB', 'J'], ['F', 'G', '', 'H', 'IB', 'J'], ['E'], ['F', 'G', '', 'H', 'IB', 'J']], [['BB', 'A', 'B'], ['C', 'D'], ['F', 'G', '', 'H', 'IB', 'J'], ['F', 'G', '', 'H', 'IB', 'J'], ['E'], ['F', 'G', '', 'H', 'IB', 'J']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'D', 'E'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['I', 'J', 'K', 'L'], ['F', 'FF', '', 'H']], [['A', 'B', 'C', 'D', 'E'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['F', 'FF', '', 'H'], ['I', 'J', 'K', 'L'], ['F', 'FF', '', 'H']]) == 0", "assert count_element_in_list([['I', 'J', 'K', 'L', 'K'], ['A', 'B', 'C', 'D', 'E'], ['F', 'G', 'DH'], ['I', 'J', 'K', 'L', 'K']], [['I', 'J', 'K', 'L', 'K'], ['A', 'B', 'C', 'D', 'E'], ['F', 'G', 'DH'], ['I', 'J', 'K', 'L', 'K']]) == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M'], ['K', 'L', 'M']], [['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M'], ['K', 'L', 'M']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'A'], ['D', 'E'], ['F', 'G', 'H', 'I', 'J'], ['F', 'G', 'H', 'I', 'J']], 'AA') == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H'], ['H'], ['E', 'F']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['H'], ['H'], ['E', 'F']]) == 0", "assert count_element_in_list([['AI', 'A', 'B', 'C', 'D', 'BB', 'E'], ['F', 'G', 'H'], ['I', 'J', 'K', 'L'], ['AI', 'A', 'B', 'C', 'D', 'BB', 'E']], [['AI', 'A', 'B', 'C', 'D', 'BB', 'E'], ['F', 'G', 'H'], ['I', 'J', 'K', 'L'], ['AI', 'A', 'B', 'C', 'D', 'BB', 'E']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D']], 'GG') == 0", "assert count_element_in_list([['A'], ['E', 'F', 'G', 'GG', 'H'], ['I', 'J'], ['E', 'F', 'G', 'GG', 'H'], ['K', 'L', 'M']], [['A'], ['E', 'F', 'G', 'GG', 'H'], ['I', 'J'], ['E', 'F', 'G', 'GG', 'H'], ['K', 'L', 'M']]) == 0", "assert count_element_in_list([['A', 'B'], [], ['C', 'D'], ['F', 'G', 'H', 'I', 'J']], [['A', 'B'], [], ['C', 'D'], ['F', 'G', 'H', 'I', 'J']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['H']], 'IBH') == 0", "assert count_element_in_list([['F', 'G', 'H'], ['A', 'IBH', 'B', 'C', 'D', 'E']], [['F', 'G', 'H'], ['A', 'IBH', 'B', 'C', 'D', 'E']]) == 0", "assert count_element_in_list([['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['G', 'H'], ['E', 'F'], ['C', 'D'], ['C', 'D']], [['A', 'B'], ['C', 'D'], ['E', 'F'], ['G', 'H'], ['G', 'H'], ['E', 'F'], ['C', 'D'], ['C', 'D']]) == 0", "assert count_element_in_list([['A', 'B', 'C', 'BB'], ['KE'], ['KE'], ['A', 'B', 'C', 'BB']], [['A', 'B', 'C', 'BB'], ['KE'], ['KE'], ['A', 'B', 'C', 'BB']]) == 0", "assert count_element_in_list([['B'], ['B'], ['C', 'D'], ['E'], ['F', 'G', 'H', 'I', 'J'], ['B']], 'J') == 1", "assert count_element_in_list([['B', 'C', 'D'], ['E', 'N', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], [['B', 'C', 'D'], ['E', 'N', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']]) == 0", "assert count_element_in_list([['A'], ['I', 'J'], ['K', 'L', 'M']], [['A'], ['I', 'J'], ['K', 'L', 'M']]) == 0", "assert count_element_in_list([['E', 'EE', 'F'], ['H', 'H'], ['H', 'H']], [['E', 'EE', 'F'], ['H', 'H'], ['H', 'H']]) == 0", "assert count_element_in_list([['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD']], [['E'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD'], ['GG', 'F', 'G', 'H', 'I', 'J'], ['DD', 'E', 'DD'], ['DD', 'E', 'DD']]) == 0", "assert count_element_in_list([['A', 'B'], [False, True], ['C', 'D'], ['F', 'G', 'H', 'I', 'J']], [['A', 'B'], [False, True], ['C', 'D'], ['F', 'G', 'H', 'I', 'J']]) == 0", "assert count_element_in_list([['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M'], ['E', 'F', 'G', 'H']], [['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M'], ['E', 'F', 'G', 'H']]) == 0", "assert count_element_in_list([['A'], ['B', 'C', 'D'], ['E', 'F', 'G', 'H'], ['I', 'J'], ['K', 'L', 'M']], 'EKE') == 0", "assert count_element_in_list([['D'], ['AE'], ['AE'], ['AE']], [['D'], ['AE'], ['AE'], ['AE']]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to filter odd numbers.\nassert filter_oddnumbers([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1,3,5,7,9]\nYour code should pass the test:\nassert filter_oddnumbers([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1,3,5,7,9]", "test_list": [ "assert filter_oddnumbers([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1,3,5,7,9]", "assert filter_oddnumbers([10,20,45,67,84,93])==[45,67,93]", "assert filter_oddnumbers([5,7,9,8,6,4,3])==[5,7,9,3]", "assert filter_oddnumbers([-5, 0, 5, -10, 15, 20, -25, 30]) == [-5, 5, 15, -25]", "assert filter_oddnumbers([-100, -50, 0, 50, 100]) == []", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, 2, 3, -2, 3]) == [3, -5, -5, 7, 7, 3, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, 2, 5, -2, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, -100, 2, 5, -2, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, -100, 2, 5, -2, 3]) == [3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, 5, -2, 3, 5]) == [3, -5, -5, 7, 7, 5, 3, 5]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, -2, 3]) == [3, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, 5, -2, 3, 5, 7]) == [3, -5, -5, 7, 7, 5, 3, 5, 7]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, -2, 50, 3, 5]) == [3, -5, 7, 7, 5, 3, 5]", "assert filter_oddnumbers([-100, -50, 50, 100]) == []", "assert filter_oddnumbers([-5, 3, -5, -5, -2, 7, 2, 5, -2, 3]) == [-5, 3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, 5, -1, 3, 5, 7, 7]) == [3, -5, -5, 7, 7, 5, -1, 3, 5, 7, 7]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, 2, 3, -2, 3, -2]) == [3, -5, -5, 7, 7, 3, 3]", "assert filter_oddnumbers([3, -5, -5, 2, -2, 7, -100, 2, 5, -2, 3]) == [3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([3, 2, -5, -5, -2, 7, 7, 2, 3, -2, 3]) == [3, -5, -5, 7, 7, 3, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, 2, 3, 3, -2, 3, -2]) == [3, -5, -5, 7, 7, 3, 3, 3]", "assert filter_oddnumbers([-5, 0, 5, -10, 15, -6, 20, -25, 30]) == [-5, 5, 15, -25]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 5, -2, 3]) == [3, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([-100, -101, -50, 50, 100]) == [-101]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, -2]) == [3, -5, 7, 7, 5]", "assert filter_oddnumbers([-100, 50, 100]) == []", "assert filter_oddnumbers([3, -5, -2, 7, 5, 7, 2, 5, -2, 50, 3, 5]) == [3, -5, 7, 5, 7, 5, 3, 5]", "assert filter_oddnumbers([3, -5, -5, -2, 7, -100, 2, 5, -2, 3, -2]) == [3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 4, -2, 3, 7]) == [3, -5, 7, 7, 3, 7]", "assert filter_oddnumbers([3, -5, -5, -50, 7, 7, 2, 5, 30, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, -100, 2, 5, -2, 3, -2, 2]) == [3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([-5, 0, 5, -10, -6, 20, -25, 30]) == [-5, 5, -25]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, -2, 50, 3, 5, 5]) == [3, -5, 7, 7, 5, 3, 5, 5]", "assert filter_oddnumbers([3, -5, -2, -2, 7, -100, 2, 5, -2, 3, -2, 2, -2]) == [3, -5, 7, 5, 3]", "assert filter_oddnumbers([-5, 5, 5, -10, -6, 15, -25, 30, 15, -6]) == [-5, 5, 5, 15, -25, 15]", "assert filter_oddnumbers([4, -5, -5, -50, 7, 7, 5, 30, 3]) == [-5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([4, 7, -5, -5, -51, 7, 7, 5, 30, 3]) == [7, -5, -5, -51, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, -100, 5, -2, 3, -2]) == [3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, 2, 5, 30, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([-100, -50, 50, 100, 50, -50]) == []", "assert filter_oddnumbers([4, -5, -5, 2, -2, 7, -100, 2, 5, -2, 3]) == [-5, -5, 7, 5, 3]", "assert filter_oddnumbers([-5, 3, -5, -5, -2, 7, 2, 5, -2, 3, 2]) == [-5, 3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, -101, 5, -2, 3, 5, 7]) == [3, -5, -5, 7, 7, -101, 5, 3, 5, 7]", "assert filter_oddnumbers([-100, 30, -50, 50, 100]) == []", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, 5, -2, 3, 5, 3]) == [3, -5, -5, 7, 7, 5, 3, 5, 3]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 6, 5, -2, 50, 3, 5, 5]) == [3, -5, 7, 7, 5, 3, 5, 5]", "assert filter_oddnumbers([3, -5, 6, 7, 7, 2, 5, -2, 3, 7]) == [3, -5, 7, 7, 5, 3, 7]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, -2, 5, 7]) == [3, -5, 7, 7, 5, 5, 7]", "assert filter_oddnumbers([3, 0, -5, -5, -2, 7, 7, 2, 3, -2, 3, -2]) == [3, -5, -5, 7, 7, 3, 3]", "assert filter_oddnumbers([4, 7, -5, -5, -51, 7, 7, 5, 30, 3, 5]) == [7, -5, -5, -51, 7, 7, 5, 3, 5]", "assert filter_oddnumbers([-5, -5, -2, 7, 7, -100, 2, 5, -2, 3]) == [-5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, -2, 5, -2, 3, 5, 3, 3]) == [3, -5, -5, 7, 7, 5, 3, 5, 3, 3]", "assert filter_oddnumbers([2, -5, -2, 7, 7, 4, -2, 3, 7]) == [-5, 7, 7, 3, 7]", "assert filter_oddnumbers([-100, 30, -50, 50, 100, 30]) == []", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, -100, -6, 2, 5, -2, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, 3, -5, -50, 7, 7, 2, 5, 30, 3]) == [3, -5, 3, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, 3, -5, -5, -2, 7, -100, 2, 5, -2, 3]) == [3, 3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([5, 3, -5, 7, 7, 2, 5, -2, 3, 7]) == [5, 3, -5, 7, 7, 5, 3, 7]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 3, -101, 5, 3, 5, 7]) == [3, -5, -5, 7, 7, 3, -101, 5, 3, 5, 7]", "assert filter_oddnumbers([-100, 50, 100, 100]) == []", "assert filter_oddnumbers([3, 2, -5, -5, -2, 7, 7, -100, 3, -2, 3]) == [3, -5, -5, 7, 7, 3, 3]", "assert filter_oddnumbers([3, 0, -5, -5, -2, 7, 7, 2, 3, -2, -2]) == [3, -5, -5, 7, 7, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, -100, 2, 5, -2, 3, -2, 2, -100]) == [3, -5, -5, 7, 5, 3]", "assert filter_oddnumbers([-5, 3, -5, -2, 7, 2, 5, -2, 3, 2]) == [-5, 3, -5, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, -101, 5, 3, 5, 7]) == [3, -5, -5, 7, 7, -101, 5, 3, 5, 7]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, 5, -2, 3, 5, 7, 3]) == [3, -5, -5, 7, 7, 5, 3, 5, 7, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, -100, -6, 2, 5, -2, 3, -6]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -2, 7, 5, 7, 5, -2, 50, 3, 5]) == [3, -5, 7, 5, 7, 5, 3, 5]", "assert filter_oddnumbers([3, -2, 7, 7, 2, 5, -2, 50, 3, 5]) == [3, 7, 7, 5, 3, 5]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 30, -2]) == [3, -5, 7, 7]", "assert filter_oddnumbers([-100, 100, 50, 100, 100]) == []", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, 5, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([4, 7, -5, -5, -51, 7, 7, 20, 30, 3, 5]) == [7, -5, -5, -51, 7, 7, 3, 5]", "assert filter_oddnumbers([-5, 5, -10, -6, 20, -25, 30]) == [-5, 5, -25]", "assert filter_oddnumbers([3, -5, -5, -2, 6, 7, 7, -100, -6, 2, 5, -2, 3, -6, -2]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, 3, -5, -50, 7, 7, 2, 5, 30, 3, 7]) == [3, -5, 3, -5, 7, 7, 5, 3, 7]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, 2, 5, -2, 3, -6]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([5, -5, 7, 7, 2, 5, -2, 3, 7]) == [5, -5, 7, 7, 5, 3, 7]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 7, -6, 2, 5, -2, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([5, -10, -6, -5, -25, 30]) == [5, -5, -25]", "assert filter_oddnumbers([3, -5, -5, 7, 7, 2, 5, 30, 4, 3]) == [3, -5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -5, -5, -2, 7, 2, 3, -2, 3]) == [3, -5, -5, 7, 3, 3]", "assert filter_oddnumbers([4, -5, -5, 2, -2, 7, -100, 2, 5, -2, 3, -5]) == [-5, -5, 7, 5, 3, -5]", "assert filter_oddnumbers([-5, 5, 4, -10, -6, 20, -25, 30]) == [-5, 5, -25]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 5, -2, 3, 3, -2]) == [3, -5, 7, 7, 5, 3, 3]", "assert filter_oddnumbers([-5, 3, -25, -5, -5, -2, 7, 2, -51, 5, -2, 3]) == [-5, 3, -25, -5, -5, 7, -51, 5, 3]", "assert filter_oddnumbers([4, 30, -50, -5, -5, -50, 7, 7, 5, 30, 3]) == [-5, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([3, -51, -5, -2, 7, 7, -100, 2, 5, -2, 3, -100]) == [3, -51, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([5, -10, -6, -5, -25, 30, -6]) == [5, -5, -25]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, 2, -2, 3, 2]) == [3, -5, 7, 7, 5, 3]", "assert filter_oddnumbers([-100, 30, -50, 50]) == []", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 6, 5, -2, 50, 5, 5]) == [3, -5, 7, 7, 5, 5, 5]", "assert filter_oddnumbers([3, -5, -5, -2, 6, 2, 3, -2, 3]) == [3, -5, -5, 3, 3]", "assert filter_oddnumbers([3, -2, 7, 7, 2, 5, -2, 50, 3, 30]) == [3, 7, 7, 5, 3]", "assert filter_oddnumbers([100, 50, 100, 100, 100, 100]) == []", "assert filter_oddnumbers([3, -5, -5, -2, 7, -100, 2, 5, -4, -2, 3, -2, -3, 2]) == [3, -5, -5, 7, 5, 3, -3]", "assert filter_oddnumbers([3, -5, 6, 7, 8, 2, 5, -2, 3, 7]) == [3, -5, 7, 5, 3, 7]", "assert filter_oddnumbers([3, 0, 1, -5, -5, -2, 7, 7, 2, 3, -2, 3, -2]) == [3, 1, -5, -5, 7, 7, 3, 3]", "assert filter_oddnumbers([5, 7, -5, -5, -51, 7, 7, 8, 30, 3, 5, -5]) == [5, 7, -5, -5, -51, 7, 7, 3, 5, -5]", "assert filter_oddnumbers([-100, -25, -50, 50, 100]) == [-25]", "assert filter_oddnumbers([3, -5, -2, 7, 7, 2, 5, -2, 3, 5]) == [3, -5, 7, 7, 5, 3, 5]", "assert filter_oddnumbers([3, -5, -2, 7, 7, -5, -2, 3, 7, -5]) == [3, -5, 7, 7, -5, 3, 7, -5]", "assert filter_oddnumbers([3, -5, -5, 7, 7, -100, -101, 5, 3, 5, 7, 5]) == [3, -5, -5, 7, 7, -101, 5, 3, 5, 7, 5]", "assert filter_oddnumbers([3, -2, 7, 7, 2, 5, -2, 50, 3, 30, 7]) == [3, 7, 7, 5, 3, 7]", "assert filter_oddnumbers([3, -5, -2, 7, -100, 2, 5, -2, 3, -3, 2, -100]) == [3, -5, 7, 5, 3, -3]", "assert filter_oddnumbers([3, -2, 7, 7, 2, 5, 50, 3, 30, 7]) == [3, 7, 7, 5, 3, 7]", "assert filter_oddnumbers([3, -2, 7, 7, 2, 5, 50, 3, 5]) == [3, 7, 7, 5, 3, 5]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a date of yyyy-mm-dd format to dd-mm-yyyy format.\nassert change_date_format(\"2026-01-02\") == '02-01-2026'\nYour code should pass the test:\nassert change_date_format(\"2026-01-02\") == '02-01-2026'", "test_list": [ "assert change_date_format(\"2026-01-02\") == '02-01-2026'", "assert change_date_format(\"2020-11-13\") == '13-11-2020'", "assert change_date_format(\"2021-04-26\") == '26-04-2021'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort the given array by using shell sort.\nassert shell_sort([12, 23, 4, 5, 3, 2, 12, 81, 56, 95]) == [2, 3, 4, 5, 12, 12, 23, 56, 81, 95]\nYour code should pass the test:\nassert shell_sort([12, 23, 4, 5, 3, 2, 12, 81, 56, 95]) == [2, 3, 4, 5, 12, 12, 23, 56, 81, 95]", "test_list": [ "assert shell_sort([12, 23, 4, 5, 3, 2, 12, 81, 56, 95]) == [2, 3, 4, 5, 12, 12, 23, 56, 81, 95]", "assert shell_sort([24, 22, 39, 34, 87, 73, 68]) == [22, 24, 34, 39, 68, 73, 87]", "assert shell_sort([32, 30, 16, 96, 82, 83, 74]) == [16, 30, 32, 74, 82, 83, 96]", "assert shell_sort([90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100]) == [90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100]", "assert shell_sort([12, 12, 15, 15, 32, 32, 32, 45, 45, 70]) == [12, 12, 15, 15, 32, 32, 32, 45, 45, 70]", "assert shell_sort([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert shell_sort([11, 12, 21, 32, 45, 54, 64, 78, 87, 90]) == [11, 12, 21, 32, 45, 54, 64, 78, 87, 90]", "assert shell_sort([90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100]) == [90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100]", "assert shell_sort([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert shell_sort([]) == []", "assert shell_sort([11, 21, 32, 45, 54, 64, 78, 87, 87, 90]) == [11, 21, 32, 45, 54, 64, 78, 87, 87, 90]", "assert shell_sort([12, 12, 15, 15, 32, 32, 32, 45, 70]) == [12, 12, 15, 15, 32, 32, 32, 45, 70]", "assert shell_sort([1, 2, 3, 4, 5, 6, 7, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 9, 10]", "assert shell_sort([8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 90]) == [8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 90]", "assert shell_sort([90, 91, 92, 93, 93, 93, 94, 95, 96, 97, 98, 99, 100]) == [90, 91, 92, 93, 93, 93, 94, 95, 96, 97, 98, 99, 100]", "assert shell_sort([1, 2, 3, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 3, 3, 4, 5, 6, 7, 8, 9, 10]", "assert shell_sort([1, 2, 2, 3, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 2, 3, 3, 4, 5, 6, 7, 8, 9, 10]", "assert shell_sort([90, 91, 92, 93, 93, 94, 95, 96, 97, 98, 99, 99, 100]) == [90, 91, 92, 93, 93, 94, 95, 96, 97, 98, 99, 99, 100]", "assert shell_sort([1, 2, 3, 4, 5, 6, 7, 9, 10, 10, 100]) == [1, 2, 3, 4, 5, 6, 7, 9, 10, 10, 100]", "assert shell_sort([1, 2, 2, 3, 4, 5, 6, 7, 8, 8, 8, 9, 10]) == [1, 2, 2, 3, 4, 5, 6, 7, 8, 8, 8, 9, 10]", "assert shell_sort([1, 2, 3, 3, 4, 5, 7, 8, 9, 10]) == [1, 2, 3, 3, 4, 5, 7, 8, 9, 10]", "assert shell_sort([False, True]) == [False, True]", "assert shell_sort([12, 12, 15, 15, 15, 32, 32, 32, 45, 45, 70]) == [12, 12, 15, 15, 15, 32, 32, 32, 45, 45, 70]", "assert shell_sort([1, 2, 4, 5, 6, 7, 9, 10]) == [1, 2, 4, 5, 6, 7, 9, 10]", "assert shell_sort([12, 21, 21, 32, 45, 54, 64, 78, 87, 90]) == [12, 21, 21, 32, 45, 54, 64, 78, 87, 90]", "assert shell_sort([11, 90, 91, 92, 93, 94, 95, 96, 97, 99, 100]) == [11, 90, 91, 92, 93, 94, 95, 96, 97, 99, 100]", "assert shell_sort([True, True]) == [True, True]", "assert shell_sort([12, 12, 14, 15, 15, 32, 32, 32, 45, 45, 70]) == [12, 12, 14, 15, 15, 32, 32, 32, 45, 45, 70]", "assert shell_sort([12, 12, 15, 15, 32, 32, 32, 45, 45, 45, 70]) == [12, 12, 15, 15, 32, 32, 32, 45, 45, 45, 70]", "assert shell_sort([90, 91, 92, 92, 94, 95, 96, 97, 98, 99, 99, 100]) == [90, 91, 92, 92, 94, 95, 96, 97, 98, 99, 99, 100]", "assert shell_sort([78, 90, 91, 92, 92, 94, 95, 97, 97, 98, 99, 99, 100]) == [78, 90, 91, 92, 92, 94, 95, 97, 97, 98, 99, 99, 100]", "assert shell_sort([91, 92, 93, 93, 94, 95, 95, 96, 98, 99, 99, 100]) == [91, 92, 93, 93, 94, 95, 95, 96, 98, 99, 99, 100]", "assert shell_sort([False, False, True]) == [False, False, True]", "assert shell_sort([1, 2, 3, 4, 4, 5, 6, 7, 9, 10, 10, 100]) == [1, 2, 3, 4, 4, 5, 6, 7, 9, 10, 10, 100]", "assert shell_sort([11, 90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100]) == [11, 90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100]", "assert shell_sort([False, 1, 2, 3, 4, 4, 6, 9, 10, 10, 100]) == [False, 1, 2, 3, 4, 4, 6, 9, 10, 10, 100]", "assert shell_sort([8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 88, 90]) == [8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 88, 90]", "assert shell_sort([1, 2, 2, 2, 3, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 2, 2, 3, 3, 4, 5, 6, 7, 8, 9, 10]", "assert shell_sort([2, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [2, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert shell_sort([8, 11, 12, 21, 32, 45, 54, 64, 64, 78, 87, 88, 90]) == [8, 11, 12, 21, 32, 45, 54, 64, 64, 78, 87, 88, 90]", "assert shell_sort([1, 2, 2, 3, 3, 4, 5, 5, 6, 7, 8, 9, 10]) == [1, 2, 2, 3, 3, 4, 5, 5, 6, 7, 8, 9, 10]", "assert shell_sort([1, 2, 2, 2, 3, 3, 5, 6, 7, 8, 9, 10]) == [1, 2, 2, 2, 3, 3, 5, 6, 7, 8, 9, 10]", "assert shell_sort([21, 90, 91, 92, 92, 94, 95, 96, 97, 99, 99]) == [21, 90, 91, 92, 92, 94, 95, 96, 97, 99, 99]", "assert shell_sort([1, 2, 2, 2, 3, 3, 3, 4, 5, 6, 7, 8, 10]) == [1, 2, 2, 2, 3, 3, 3, 4, 5, 6, 7, 8, 10]", "assert shell_sort([12, 12, 15, 15, 15, 31, 32, 32, 32, 45, 45, 70]) == [12, 12, 15, 15, 15, 31, 32, 32, 32, 45, 45, 70]", "assert shell_sort([False, 1, True, 2, 3, 4, 4, 6, 9, 10, 100]) == [False, 1, True, 2, 3, 4, 4, 6, 9, 10, 100]", "assert shell_sort([4, 8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 90]) == [4, 8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 90]", "assert shell_sort([1, 91, 92, 94, 95, 96, 97, 98, 99, 100]) == [1, 91, 92, 94, 95, 96, 97, 98, 99, 100]", "assert shell_sort([90, 91, 92, 93, 93, 94, 95, 96, 97, 99, 99, 99, 100]) == [90, 91, 92, 93, 93, 94, 95, 96, 97, 99, 99, 99, 100]", "assert shell_sort([12, 12, 15, 15, 32, 32, 32, 45, 45, 45, 45, 70]) == [12, 12, 15, 15, 32, 32, 32, 45, 45, 45, 45, 70]", "assert shell_sort([12, 21, 21, 32, 45, 54, 78, 90]) == [12, 21, 21, 32, 45, 54, 78, 90]", "assert shell_sort([12, 12, 15, 15, 32, 32, 45, 45, 45, 45, 70]) == [12, 12, 15, 15, 32, 32, 45, 45, 45, 45, 70]", "assert shell_sort([91, 93, 93, 94, 95, 95, 96, 98, 99, 99, 100]) == [91, 93, 93, 94, 95, 95, 96, 98, 99, 99, 100]", "assert shell_sort([90, 90, 91, 92, 93, 93, 94, 95, 95, 96, 97, 98, 99, 99, 100]) == [90, 90, 91, 92, 93, 93, 94, 95, 95, 96, 97, 98, 99, 99, 100]", "assert shell_sort([2, 3, 4, 4, 5, 6, 7, 9, 10, 15]) == [2, 3, 4, 4, 5, 6, 7, 9, 10, 15]", "assert shell_sort([90, 91, 92, 93, 95, 95, 96, 97, 98, 99, 100]) == [90, 91, 92, 93, 95, 95, 96, 97, 98, 99, 100]", "assert shell_sort([1, 1, 2, 3, 3, 5, 6, 7, 8, 9, 9, 10]) == [1, 1, 2, 3, 3, 5, 6, 7, 8, 9, 9, 10]", "assert shell_sort([2, 2, 3, 4, 5, 6, 6, 7, 8, 9, 10]) == [2, 2, 3, 4, 5, 6, 6, 7, 8, 9, 10]", "assert shell_sort([78, 90, 91, 92, 92, 92, 94, 95, 97, 97, 98, 98, 99, 99, 100]) == [78, 90, 91, 92, 92, 92, 94, 95, 97, 97, 98, 98, 99, 99, 100]", "assert shell_sort([12, 12, 12, 14, 14, 14, 15, 31, 32, 32, 32, 45, 45, 70]) == [12, 12, 12, 14, 14, 14, 15, 31, 32, 32, 32, 45, 45, 70]", "assert shell_sort([12, 12, 15, 15, 32, 32, 45, 45, 45, 45, 45, 70]) == [12, 12, 15, 15, 32, 32, 45, 45, 45, 45, 45, 70]", "assert shell_sort([12, 12, 15, 15, 32, 45, 45, 45, 45, 45, 70]) == [12, 12, 15, 15, 32, 45, 45, 45, 45, 45, 70]", "assert shell_sort([1, 2, 3, 4, 5, 6, 7, 7, 9, 10, 10, 100]) == [1, 2, 3, 4, 5, 6, 7, 7, 9, 10, 10, 100]", "assert shell_sort([90, 91, 92, 93, 95, 95, 95, 97, 98, 99, 100]) == [90, 91, 92, 93, 95, 95, 95, 97, 98, 99, 100]", "assert shell_sort([False, False, 1, 2, 3, 4, 4, 6, 9, 10, 10, 99, 100]) == [False, False, 1, 2, 3, 4, 4, 6, 9, 10, 10, 99, 100]", "assert shell_sort([11, 90, 91, 92, 93, 94, 95, 96, 97, 98, 100]) == [11, 90, 91, 92, 93, 94, 95, 96, 97, 98, 100]", "assert shell_sort([12, 12, 15, 15, 32, 32, 45, 45, 45, 45]) == [12, 12, 15, 15, 32, 32, 45, 45, 45, 45]", "assert shell_sort([2, 2, 3, 4, 5, 6, 7, 8, 9, 10, 99]) == [2, 2, 3, 4, 5, 6, 7, 8, 9, 10, 99]", "assert shell_sort([2, 2, 3, 4, 5, 6, 6, 8, 8, 9, 10]) == [2, 2, 3, 4, 5, 6, 6, 8, 8, 9, 10]", "assert shell_sort([1, 2, 3, 4, 5, 6, 7, 7, 10, 10, 31, 100]) == [1, 2, 3, 4, 5, 6, 7, 7, 10, 10, 31, 100]", "assert shell_sort([1, 2, 3, 4, 4, 5, 6, 6, 7, 10, 10, 31, 100]) == [1, 2, 3, 4, 4, 5, 6, 6, 7, 10, 10, 31, 100]", "assert shell_sort([78, 90, 91, 91, 92, 92, 94, 95, 97, 97, 98, 99, 99, 100]) == [78, 90, 91, 91, 92, 92, 94, 95, 97, 97, 98, 99, 99, 100]", "assert shell_sort([4, 90, 91, 92, 93, 95, 95, 96, 97, 98, 99, 100]) == [4, 90, 91, 92, 93, 95, 95, 96, 97, 98, 99, 100]", "assert shell_sort([90, 91, 92, 92, 94, 95, 95, 96, 97, 98, 99, 99, 100]) == [90, 91, 92, 92, 94, 95, 95, 96, 97, 98, 99, 99, 100]", "assert shell_sort([90, 90, 91, 92, 93, 93, 94, 95, 95, 96, 97, 98, 99, 99, 99, 100]) == [90, 90, 91, 92, 93, 93, 94, 95, 95, 96, 97, 98, 99, 99, 99, 100]", "assert shell_sort([90, 91, 92, 93, 93, 94, 95, 96, 97, 98, 99, 100]) == [90, 91, 92, 93, 93, 94, 95, 96, 97, 98, 99, 100]", "assert shell_sort([False, True]) == [False, True]", "assert shell_sort([True, True, True]) == [True, True, True]", "assert shell_sort([90, 91, 92, 93, 93, 93, 94, 96, 96, 97, 98, 99, 100]) == [90, 91, 92, 93, 93, 93, 94, 96, 96, 97, 98, 99, 100]", "assert shell_sort([12, 12, 15, 15, 45, 45, 45, 45, 45, 70]) == [12, 12, 15, 15, 45, 45, 45, 45, 45, 70]", "assert shell_sort([1, 2, 2, 3, 3, 4, 5, 5, 6, 7, 8, 9, 10, 12]) == [1, 2, 2, 3, 3, 4, 5, 5, 6, 7, 8, 9, 10, 12]", "assert shell_sort([90, 91, 92, 93, 95, 95, 95, 97, 98, 99, 100]) == [90, 91, 92, 93, 95, 95, 95, 97, 98, 99, 100]", "assert shell_sort([90, 91, 92, 93, 93, 95, 95, 95, 97, 98, 99, 100]) == [90, 91, 92, 93, 93, 95, 95, 95, 97, 98, 99, 100]", "assert shell_sort([12, 12, 15, 15, 32, 32, 45, 45, 45, 45, 45]) == [12, 12, 15, 15, 32, 32, 45, 45, 45, 45, 45]", "assert shell_sort([4, 90, 91, 92, 92, 94, 95, 97, 97, 98, 99, 99, 100]) == [4, 90, 91, 92, 92, 94, 95, 97, 97, 98, 99, 99, 100]", "assert shell_sort([11, 88, 90, 91, 92, 93, 94, 95, 96, 98, 100]) == [11, 88, 90, 91, 92, 93, 94, 95, 96, 98, 100]", "assert shell_sort([78, 90, 91, 91, 92, 92, 94, 95, 95, 97, 97, 98, 99, 99, 100]) == [78, 90, 91, 91, 92, 92, 94, 95, 95, 97, 97, 98, 99, 99, 100]", "assert shell_sort([90, 91, 92, 93, 94, 95, 96, 97, 97, 98, 99, 100]) == [90, 91, 92, 93, 94, 95, 96, 97, 97, 98, 99, 100]", "assert shell_sort([False, 1, True, True, 2, 3, 4, 4, 4, 6, 9, 10, 100, 100]) == [False, 1, True, True, 2, 3, 4, 4, 4, 6, 9, 10, 100, 100]", "assert shell_sort([90, 91, 92, 92, 94, 95, 96, 98, 99, 99, 100]) == [90, 91, 92, 92, 94, 95, 96, 98, 99, 99, 100]", "assert shell_sort([1, 2, 2, 2, 3, 3, 3, 5, 6, 7, 8, 9, 10]) == [1, 2, 2, 2, 3, 3, 3, 5, 6, 7, 8, 9, 10]", "assert shell_sort([1, 2, 2, 3, 4, 5, 6, 7, 8, 8, 8, 8, 9]) == [1, 2, 2, 3, 4, 5, 6, 7, 8, 8, 8, 8, 9]", "assert shell_sort([12, 12, 15, 15, 15, 32, 32, 32, 45, 45, 70, 87]) == [12, 12, 15, 15, 15, 32, 32, 32, 45, 45, 70, 87]", "assert shell_sort([90, 91, 91, 92, 93, 95, 95, 96, 97, 98, 99, 100]) == [90, 91, 91, 92, 93, 95, 95, 96, 97, 98, 99, 100]", "assert shell_sort([True, True, True, True]) == [True, True, True, True]", "assert shell_sort([2, 3, 3, 4, 5, 7, 8, 9, 10]) == [2, 3, 3, 4, 5, 7, 8, 9, 10]", "assert shell_sort([8, 8, 11, 12, 21, 32, 45, 54, 64, 64, 78, 87, 88, 90]) == [8, 8, 11, 12, 21, 32, 45, 54, 64, 64, 78, 87, 88, 90]", "assert shell_sort([90, 91, 92, 93, 93, 93, 94, 95, 96, 97, 99, 99, 99, 100]) == [90, 91, 92, 93, 93, 93, 94, 95, 96, 97, 99, 99, 99, 100]", "assert shell_sort([4, 8, 11, 12, 21, 32, 45, 45, 54, 64, 78, 87, 90]) == [4, 8, 11, 12, 21, 32, 45, 45, 54, 64, 78, 87, 90]", "assert shell_sort([4, 5, 90, 91, 92, 94, 95, 97, 98, 99, 99, 100]) == [4, 5, 90, 91, 92, 94, 95, 97, 98, 99, 99, 100]", "assert shell_sort([12, 21, 21, 21, 32, 45, 54, 78, 90]) == [12, 21, 21, 21, 32, 45, 54, 78, 90]", "assert shell_sort([21, 90, 91, 92, 92, 94, 95, 96, 97, 97, 99, 99]) == [21, 90, 91, 92, 92, 94, 95, 96, 97, 97, 99, 99]", "assert shell_sort([3, 90, 91, 92, 93, 93, 94, 96, 97, 98, 98, 100]) == [3, 90, 91, 92, 93, 93, 94, 96, 97, 98, 98, 100]", "assert shell_sort([8, 8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 88, 90]) == [8, 8, 11, 12, 21, 32, 45, 54, 64, 78, 87, 88, 90]", "assert shell_sort([3, 91, 92, 92, 93, 93, 94, 96, 97, 97, 98, 98, 100]) == [3, 91, 92, 92, 93, 93, 94, 96, 97, 97, 98, 98, 100]", "assert shell_sort([11, 88, 90, 91, 92, 93, 93, 94, 95, 96, 98, 100]) == [11, 88, 90, 91, 92, 93, 93, 94, 95, 96, 98, 100]", "assert shell_sort([11, 90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 99, 100]) == [11, 90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 99, 100]", "assert shell_sort([12, 12, 21, 21, 32, 45, 45, 45, 54, 64, 78, 87, 90]) == [12, 12, 21, 21, 32, 45, 45, 45, 54, 64, 78, 87, 90]", "assert shell_sort([2, 3, 4, 5, 6, 7, 7, 7, 10, 10, 12, 31, 100]) == [2, 3, 4, 5, 6, 7, 7, 7, 10, 10, 12, 31, 100]", "assert shell_sort([90, 91, 92, 93, 95, 95, 95, 97, 99, 100]) == [90, 91, 92, 93, 95, 95, 95, 97, 99, 100]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract the elementwise and tuples from the given two tuples.\nassert and_tuples((10, 4, 6, 9), (5, 2, 3, 3)) == (0, 0, 2, 1)\nYour code should pass the test:\nassert and_tuples((10, 4, 6, 9), (5, 2, 3, 3)) == (0, 0, 2, 1)", "test_list": [ "assert and_tuples((10, 4, 6, 9), (5, 2, 3, 3)) == (0, 0, 2, 1)", "assert and_tuples((1, 2, 3, 4), (5, 6, 7, 8)) == (1, 2, 3, 0)", "assert and_tuples((8, 9, 11, 12), (7, 13, 14, 17)) == (0, 9, 10, 0)", "assert and_tuples((0, 0, 0, 0), (0, 0, 0, 0)) == (0, 0, 0, 0)", "assert and_tuples((123, 456, 789, 10), (987, 654, 321, 10)) == (91, 136, 257, 10)", "assert and_tuples((-1, -2, -3, -4), (-5, -6, -7, -8)) == (-5, -6, -7, -8)", "assert and_tuples((-10, -20, -30, -40), (-5, -2, -3, -3)) == (-14, -20, -32, -40)", "assert and_tuples((2, 5, 8, 10), (3, 5, 10, 12)) == (2, 5, 8, 8)", "assert and_tuples((0, 1, 2, 3), (0, 0, 2, 3)) == (0, 0, 2, 3)", "assert and_tuples((1000000, 2000000, 3000000), (500000, 1250000, 2500000)) == (458752, 1179776, 2360448)", "assert and_tuples((99999, 88888, 77777), (12345, 54321, 98765)) == (25, 20528, 65985)", "assert and_tuples((0, 1), (1, 0)) == (0, 0)", "assert and_tuples((), ()) == ()", "assert and_tuples((0, -1, 2, -3), (0, 0, -2, -3)) == (0, 0, 2, -3)", "assert and_tuples((-10, 0, 20, -30), (5, -2, 10, 3)) == (4, 0, 0, 2)", "assert and_tuples((0, 0, 0, 0), (-1, -1, -1, -1)) == (0, 0, 0, 0)", "assert and_tuples((10, 20, 30, 40), (0, 0, 5, 5)) == (0, 0, 4, 0)", "assert and_tuples((1000, 10000, 100000, 1000000), (-10000, 10000, -100000, -1000000)) == (224, 10000, 32, 64)", "assert and_tuples((1000, 10000, 100000, 1000000), (-10000, 10000, 12, -1000000)) == (224, 10000, 0, 64)", "assert and_tuples((0, -1, 2, -3), (0, -1, 2, -3)) == (0, -1, 2, -3)", "assert and_tuples((-10000, 10000, 12, -1000000), (-10000, 10000, 12, -1000000)) == (-10000, 10000, 12, -1000000)", "assert and_tuples((99999, 88888, 77777), (99999, 88888, 77777)) == (99999, 88888, 77777)", "assert and_tuples((-6, 0, 2, 3), (-6, 0, 2, 3)) == (-6, 0, 2, 3)", "assert and_tuples((0, -1, 2, 40), (0, -1, 2, -3)) == (0, -1, 2, 40)", "assert and_tuples((0, -1, 2, -4, -3), (0, -1, 2, -2, 40)) == (0, -1, 2, -4, 40)", "assert and_tuples((-10000, 10000, 12, -1000000), (-10000, 9999, 12, -1000000)) == (-10000, 9984, 12, -1000000)", "assert and_tuples((88888, 77777, 88888), (99999, 88888, 20)) == (66072, 68368, 16)", "assert and_tuples((99999, 88888, 77777, 99999), (99999, 88888, 77777, 99999)) == (99999, 88888, 77777, 99999)", "assert and_tuples((0, 0, 2, 3, 2, 3), (0, 0, 2, 3, 2, 3)) == (0, 0, 2, 3, 2, 3)", "assert and_tuples((9999, -10000, 9999, 12, -1000000), (9999, -10000, 9999, 12, -1000000)) == (9999, -10000, 9999, 12, -1000000)", "assert and_tuples((2, 5, 8, 10), (2, 5, 8, 10)) == (2, 5, 8, 10)", "assert and_tuples((-5, -2, -3, -3), (-5, -2, -3, -3)) == (-5, -2, -3, -3)", "assert and_tuples((1000, 10000, -100000, 1000000), (-10000, 10000, 12, -1000000)) == (224, 10000, 0, 64)", "assert and_tuples((499999, 1250000, 2500000), (500000, 1250000, 2500000)) == (499968, 1250000, 2500000)", "assert and_tuples((1000, 10000, -100000, 1000000), (-9999, 10000, 12, -1000000)) == (224, 10000, 0, 64)", "assert and_tuples((-10000, 9999, 12, -1000000), (-10000, 9999, 12, -1000000)) == (-10000, 9999, 12, -1000000)", "assert and_tuples((-10, 0, 20, -30, -30), (-10, 0, 20, -30, 321)) == (-10, 0, 20, -30, 320)", "assert and_tuples((0, -1, 2, -3), (77777, 0, -2, -3)) == (0, 0, 2, -3)", "assert and_tuples((-9999, 10000, 12, -1000000), (-9999, 10000, 12, -1000000)) == (-9999, 10000, 12, -1000000)", "assert and_tuples((-10, 0, 20, -30, -30), (-10, 0, 20, -30, -30)) == (-10, 0, 20, -30, -30)", "assert and_tuples((0, -1, 2, -3, -1), (0, -1, 2, -3, -1)) == (0, -1, 2, -3, -1)", "assert and_tuples((0, 0, -1, 0), (0, 0, 0, 0)) == (0, 0, 0, 0)", "assert and_tuples((-10000, 10000, -100000, -1000000), (1000, 10000, 100000, 1000000)) == (224, 10000, 32, 64)", "assert and_tuples((500000, 1250000, 1250001, 2500000, 1250000), (500000, 1250000, 1250001, 2500000, 1250000)) == (500000, 1250000, 1250001, 2500000, 1250000)", "assert and_tuples((-5, -6, -7, -8), (-5, -6, -7, -8)) == (-5, -6, -7, -8)", "assert and_tuples((0, -1, 2, -2, 40), (0, -1, 2, -2, 40)) == (0, -1, 2, -2, 40)", "assert and_tuples((-5, -6, -7, -8), (-1, -2, -3, -20)) == (-5, -6, -7, -24)", "assert and_tuples((-10000, 9999, 12, 3000000), (-10000, 9999, 12, -1000000)) == (-10000, 9999, 12, 2131136)", "assert and_tuples((0, 1, 2, 3), (0, 1, 2, 3)) == (0, 1, 2, 3)", "assert and_tuples((0, 0, 2, 3), (0, 1, 2, 3)) == (0, 0, 2, 3)", "assert and_tuples((-10, -20, -30, -40), (-10, -20, -30, -40)) == (-10, -20, -30, -40)", "assert and_tuples((0, -1, 98765, 40, 3), (0, -1, 98765, 40, 40)) == (0, -1, 98765, 40, 0)", "assert and_tuples((99999, 88888, 99999), (99999, 88888, 99999)) == (99999, 88888, 99999)", "assert and_tuples((-10000, 9999, 12, -1000000, 9999), (-10000, 9999, 12, -1000000, 12)) == (-10000, 9999, 12, -1000000, 12)", "assert and_tuples((-8, 1, 2, 3), (0, 1, 2, 3)) == (0, 1, 2, 3)", "assert and_tuples((-5, -2, -3, -3), (-5, -2, 1250001, -3)) == (-5, -2, 1250001, -3)", "assert and_tuples((1, -1, 2, 40), (0, -1, 2, -3)) == (0, -1, 2, 40)", "assert and_tuples((0, 0, 2, 3), (0, 0, 2, 3)) == (0, 0, 2, 3)", "assert and_tuples((False,), (False,)) == (False,)", "assert and_tuples((2, 8, 10), (2, 8, 10)) == (2, 8, 10)", "assert and_tuples((-10000, -1, 2, -3), (0, -1, 2, -3)) == (0, -1, 2, -3)", "assert and_tuples((100000, 10000, 12, -1000000), (-10000, 9999, 12, -1000000)) == (98464, 9984, 12, -1000000)", "assert and_tuples((0, 1, 2, 789), (0, 1, 2, 3)) == (0, 1, 2, 1)", "assert and_tuples((123, 456, 789, 10), (123, 456, 789, 10)) == (123, 456, 789, 10)", "assert and_tuples((-10000, -10000, 12, -1000000), (-10000, 9999, 12, -1000000)) == (-10000, 0, 12, -1000000)", "assert and_tuples((-10000, 10000, 12, -1000000), (-10000, 10000, 12, -1000001)) == (-10000, 10000, 12, -1000064)", "assert and_tuples((12345, 54321, 98765), (12345, 54321, 98765)) == (12345, 54321, 98765)", "assert and_tuples((88888, 77777, 88888), (88888, 77777, 88888)) == (88888, 77777, 88888)", "assert and_tuples((0, -1, 2, 40, -1), (0, -1, 2, 40, -1)) == (0, -1, 2, 40, -1)", "assert and_tuples((-5, -2, 20, -3), (-5, -2, -3, -3)) == (-5, -2, 20, -3)", "assert and_tuples((99999, 88888, 654, 99999), (99999, 88888, 654, 99999)) == (99999, 88888, 654, 99999)", "assert and_tuples((-10, -20, -30, -40), (-5, -3, 10000, -3)) == (-14, -20, 9984, -40)", "assert and_tuples((3, 5, 10, 12), (3, 5, 10, 12)) == (3, 5, 10, 12)", "assert and_tuples((10, 20, 30, 40), (0, 1, 5, 5)) == (0, 0, 4, 0)", "assert and_tuples((10, 20, 30, 40), (10, 20, 30, 40)) == (10, 20, 30, 40)", "assert and_tuples((0, -1, 987, 40, 3), (0, -1, 98765, 40, 3)) == (0, -1, 457, 40, 3)", "assert and_tuples((-5, -2, -3, -2), (-5, -2, 1250001, -3)) == (-5, -2, 1250001, -4)", "assert and_tuples((0, 0, 0), (0, 0, 0)) == (0, 0, 0)", "assert and_tuples((88888, 77777, 88889, 88888), (88888, 77777, 88889, 88889)) == (88888, 77777, 88889, 88888)", "assert and_tuples((2, 5, 8, 20), (3, 5, 10, 12)) == (2, 5, 8, 4)", "assert and_tuples((-5, -6, -7, -7, -8), (-5, -6, -7, -7, -8)) == (-5, -6, -7, -7, -8)", "assert and_tuples((1000, 10000, 100000, 1000000), (-10000, 9999, -100000, -1000000)) == (224, 9984, 32, 64)", "assert and_tuples((1000, 10000, -1000000, 1000000), (-10000, 9999, -100000, -1000000)) == (224, 9984, -1033920, 64)", "assert and_tuples((12345, 54321, 98765, 54321), (987, 12345, 54321, 98765)) == (25, 4145, 32769, 32769)", "assert and_tuples((3, 5, 99999, 12), (3, 5, 10, 12)) == (3, 5, 10, 12)", "assert and_tuples((2, 7, 10), (2, 8, 10)) == (2, 0, 10)", "assert and_tuples((-10, 0, 20, -30), (-10, 0, 20, -30)) == (-10, 0, 20, -30)", "assert and_tuples((0, 0, 5, 5), (0, 0, 5, 5)) == (0, 0, 5, 5)", "assert and_tuples((-10, 20, -30, -30), (-10, 20, -30, -30)) == (-10, 20, -30, -30)", "assert and_tuples((-5, -1, -3, -2), (-6, -2, 1250001, -3)) == (-6, -2, 1250001, -4)", "assert and_tuples((True,), (False,)) == (False,)", "assert and_tuples((-5, -2, -3, -1), (-5, -2, 1250001, -3)) == (-5, -2, 1250001, -3)", "assert and_tuples((-10000, -1000000, 10000, 12, -1000000), (-10000, 10000, 12, -1000000, 10000)) == (-10000, 9472, 0, 0, 9472)", "assert and_tuples((1, 0, 20, -30), (5, -2, 10, 3)) == (1, 0, 0, 2)", "assert and_tuples((0, -40, 2, 3), (0, 1, 2, 3)) == (0, 0, 2, 3)", "assert and_tuples((-1, -2, -3, -20), (-5, -6, -7, -8)) == (-5, -6, -7, -24)", "assert and_tuples((123, -10, 790, 10), (123, 456, 790, 10)) == (123, 448, 790, 10)", "assert and_tuples((499999, 1250000, 2500000), (499999, 1250000, 2500000)) == (499999, 1250000, 2500000)", "assert and_tuples((-5, 20, -3), (-2, -3, -3)) == (-6, 20, -3)", "assert and_tuples((-9999, 10000, 12, 8), (-9999, 10000, 12, -1000000)) == (-9999, 10000, 12, 0)", "assert and_tuples((99999, 88888, 20), (99999, 88888, 20)) == (99999, 88888, 20)", "assert and_tuples((0, 0, -1, 1), (0, 0, -1, 1)) == (0, 0, -1, 1)", "assert and_tuples((99999, 88888, 1000, 77777), (99999, 88888, 1000, 77777)) == (99999, 88888, 1000, 77777)", "assert and_tuples((-6, 0, 2, 3), (-6, 1, 2, 3)) == (-6, 0, 2, 3)", "assert and_tuples((0, 0, 5, 5, 5), (0, 0, 5, 5, 5)) == (0, 0, 5, 5, 5)", "assert and_tuples((-10, 3, -30, -40), (-5, -3, 10000, -3)) == (-14, 1, 9984, -40)", "assert and_tuples((-10000, 9999, 12, -1000000), (-10000, 9999, 12, 3000000)) == (-10000, 9999, 12, 2131136)", "assert and_tuples((3, 10, 12), (3, 10, 12)) == (3, 10, 12)", "assert and_tuples((10, 0, 2, 3), (0, 0, 2, 3)) == (0, 0, 2, 3)", "assert and_tuples((1000000, 2000000, 456), (1000000, 2000000, 2999999)) == (1000000, 2000000, 136)", "assert and_tuples((-5, -2, -3, -3), (-5, -2, -20, -3)) == (-5, -2, -20, -3)", "assert and_tuples((499999, 1250000, 2500000, 499999), (499999, 1250000, 2500000, 499999)) == (499999, 1250000, 2500000, 499999)", "assert and_tuples((-5, -6, -7, -8, -5), (-5, -6, -7, -8, -5)) == (-5, -6, -7, -8, -5)", "assert and_tuples((3, 5, 99999, 12), (4, 5, 99999, 12)) == (0, 5, 99999, 12)", "assert and_tuples((-10000, 9999, 12, -1000000, 9999), (-40, 9999, 12, -1000000, 12)) == (-10032, 9999, 12, -1000000, 12)", "assert and_tuples((-5, -6, -7, -8), (-2, -2, -3, -20)) == (-6, -6, -7, -24)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the directrix of a parabola.\nassert parabola_directrix(5,3,2)==-198\nYour code should pass the test:\nassert parabola_directrix(5,3,2)==-198", "test_list": [ "assert parabola_directrix(5,3,2)==-198", "assert parabola_directrix(9,8,4)==-2336", "assert parabola_directrix(2,4,6)==-130", "assert parabola_directrix(0, 0, 0) == 0", "assert parabola_directrix(0, 8, 4) == 4", "assert parabola_directrix(3, 3, 3) == -117", "assert parabola_directrix(8, 2, 3) == -157", "assert parabola_directrix(3, 0, 0) == -12", "assert parabola_directrix(4, 3, 3) == -157", "assert parabola_directrix(0, 2, 3) == 3", "assert parabola_directrix(0, 4, 0) == 0", "assert parabola_directrix(3, 2, 3) == -57", "assert parabola_directrix(8, 8, 3) == -2077", "assert parabola_directrix(8, 1, 2) == -62", "assert parabola_directrix(1, 7, 2) == -198", "assert parabola_directrix(2, 3, 3) == -77", "assert parabola_directrix(1, 3, 2) == -38", "assert parabola_directrix(2, 3, 0) == -80", "assert parabola_directrix(8, 1, 8) == -56", "assert parabola_directrix(0, 7, 2) == 2", "assert parabola_directrix(1, 2, 2) == -18", "assert parabola_directrix(7, 9, 4) == -2292", "assert parabola_directrix(6, 3, 3) == -237", "assert parabola_directrix(1, 7, 1) == -199", "assert parabola_directrix(3, 2, 2) == -58", "assert parabola_directrix(8, 3, 2) == -318", "assert parabola_directrix(3, 1, 8) == -16", "assert parabola_directrix(8, 3, 0) == -320", "assert parabola_directrix(8, 9, 1) == -2623", "assert parabola_directrix(1, 0, 0) == -4", "assert parabola_directrix(6, 4, 3) == -405", "assert parabola_directrix(8, 6, 6) == -1178", "assert parabola_directrix(2, 3, 2) == -78", "assert parabola_directrix(3, 1, 1) == -23", "assert parabola_directrix(8, 9, 3) == -2621", "assert parabola_directrix(0, 7, 9) == 9", "assert parabola_directrix(8, 1, 1) == -63", "assert parabola_directrix(2, 1, 3) == -13", "assert parabola_directrix(4, 1, 2) == -30", "assert parabola_directrix(3, 9, 9) == -975", "assert parabola_directrix(2, 8, 2) == -518", "assert parabola_directrix(0, 1, 2) == 2", "assert parabola_directrix(0, 3, 0) == 0", "assert parabola_directrix(8, 9, 9) == -2615", "assert parabola_directrix(1, 0, 1) == -3", "assert parabola_directrix(4, 4, 4) == -268", "assert parabola_directrix(8, 4, 4) == -540", "assert parabola_directrix(3, -1, -1) == -25", "assert parabola_directrix(3, 0, 6) == -6", "assert parabola_directrix(-1, 0, 3) == 7", "assert parabola_directrix(2, 2, 3) == -37", "assert parabola_directrix(1, 4, 0) == -68", "assert parabola_directrix(-1, -1, -1) == 7", "assert parabola_directrix(6, 3, 4) == -236", "assert parabola_directrix(0, 7, 0) == 0", "assert parabola_directrix(0, 9, 0) == 0", "assert parabola_directrix(9, 1, 2) == -70", "assert parabola_directrix(9, 0, 1) == -35", "assert parabola_directrix(2, 2, 2) == -38", "assert parabola_directrix(3, 9, 1) == -983", "assert parabola_directrix(3, 7, 3) == -597", "assert parabola_directrix(6, 2, 8) == -112", "assert parabola_directrix(1, 8, 1) == -259", "assert parabola_directrix(9, 6, 1) == -1331", "assert parabola_directrix(0, 3, 8) == 8", "assert parabola_directrix(3, -2, -1) == -61", "assert parabola_directrix(1, 1, 1) == -7", "assert parabola_directrix(9, 4, -1) == -613", "assert parabola_directrix(8, 3, 7) == -313", "assert parabola_directrix(-1, 3, 2) == 42", "assert parabola_directrix(5, 2, 4) == -96", "assert parabola_directrix(9, 2, -1) == -181", "assert parabola_directrix(3, -1, 0) == -24", "assert parabola_directrix(-2, 1, 1) == 17", "assert parabola_directrix(-1, 1, 0) == 8", "assert parabola_directrix(9, 1, 1) == -71", "assert parabola_directrix(8, 6, 3) == -1181", "assert parabola_directrix(3, 6, 3) == -441", "assert parabola_directrix(6, 8, 4) == -1556", "assert parabola_directrix(8, 8, 7) == -2073", "assert parabola_directrix(9, 9, 9) == -2943", "assert parabola_directrix(3, 6, 0) == -444", "assert parabola_directrix(1, 1, 2) == -6", "assert parabola_directrix(0, 2, 7) == 7", "assert parabola_directrix(6, 7, 9) == -1191", "assert parabola_directrix(0, 2, 2) == 2", "assert parabola_directrix(2, 2, 1) == -39", "assert parabola_directrix(3, 1, 4) == -20", "assert parabola_directrix(0, 1, 1) == 1", "assert parabola_directrix(5, 3, 3) == -197", "assert parabola_directrix(2, 0, 1) == -7", "assert parabola_directrix(0, 1, -1) == -1", "assert parabola_directrix(6, 6, 3) == -885", "assert parabola_directrix(9, -1, 2) == -70", "assert parabola_directrix(1, 6, 1) == -147", "assert parabola_directrix(6, 2, 9) == -111", "assert parabola_directrix(3, 3, -1) == -121", "assert parabola_directrix(3, -2, 4) == -56", "assert parabola_directrix(5, 0, 2) == -18", "assert parabola_directrix(8, 3, 3) == -317", "assert parabola_directrix(5, 1, 1) == -39", "assert parabola_directrix(9, 9, 3) == -2949", "assert parabola_directrix(4, 2, 2) == -78", "assert parabola_directrix(7, 6, 6) == -1030", "assert parabola_directrix(3, -2, 0) == -60" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the median length of a trapezium.\nassert median_trapezium(15,25,35)==20\nYour code should pass the test:\nassert median_trapezium(15,25,35)==20", "test_list": [ "assert median_trapezium(15,25,35)==20", "assert median_trapezium(10,20,30)==15", "assert median_trapezium(6,9,4)==7.5", "assert median_trapezium(2.3, 4.7, 3.9) == 3.5", "assert median_trapezium(9.8, 7.1, 5.6) == 8.45", "assert median_trapezium(6.2, 3.5, 8.9) == 4.85", "assert median_trapezium(999999, 1000000, 1000000) == 999999.5", "assert median_trapezium(10000000, 5000000, 1000000000) == 7500000.0", "assert median_trapezium(0, 0, 0) == 0.0", "assert median_trapezium(999999, 1000000, 10000001) == 999999.5", "assert median_trapezium(10.351335245743993, 7.1, 5.4977102681459025) == 8.725667622871995", "assert median_trapezium(2.76692487581672, 8.9, 8.9) == 5.83346243790836", "assert median_trapezium(6.2, 3.5, 5.6) == 4.85", "assert median_trapezium(10000000, 1000000000, 10000000) == 505000000.0", "assert median_trapezium(0, 999999, 1000000) == 499999.5", "assert median_trapezium(7.1, 5.6, 7.1) == 6.35", "assert median_trapezium(2.3, 4.7, 2.3) == 3.5", "assert median_trapezium(1000000, 1000000000, 10000000) == 500500000.0", "assert median_trapezium(1000001, 0, 1000000) == 500000.5", "assert median_trapezium(6.022223408955435, 7.1, 5.530370540982478) == 6.561111704477717", "assert median_trapezium(1000000, 1000000000, 10000001) == 500500000.0", "assert median_trapezium(1000001, 1000000, 0) == 1000000.5", "assert median_trapezium(12.228674915981982, 7.1, 5.4977102681459025) == 9.66433745799099", "assert median_trapezium(6.022223408955435, 2.76692487581672, 8.9) == 4.394574142386078", "assert median_trapezium(1000000, 10000000, 1000000) == 5500000.0", "assert median_trapezium(0, 10000001, 1000000) == 5000000.5", "assert median_trapezium(10000000, 10000001, 1000000) == 10000000.5", "assert median_trapezium(3.5, 8.9, 3.5) == 6.2", "assert median_trapezium(7.1, 10.351335245743993, 5.6) == 8.725667622871995", "assert median_trapezium(6.2, 3.5, 7.1) == 4.85", "assert median_trapezium(3.9, 5.6, 7.1) == 4.75", "assert median_trapezium(1000000, 0, 1000000) == 500000.0", "assert median_trapezium(1000000, 999999, 1000000) == 999999.5", "assert median_trapezium(1000000000, 10000000, 1000000) == 505000000.0", "assert median_trapezium(1000000, 999999, 10000001) == 999999.5", "assert median_trapezium(-88, 999999, 10000001) == 499955.5", "assert median_trapezium(10000001, 1000001, 10000001) == 5500001.0", "assert median_trapezium(6.2, 4.854251964633547, 8.9) == 5.5271259823167735", "assert median_trapezium(10000001, 10000001, 10000001) == 10000001.0", "assert median_trapezium(3.5, 5.6, 5.715398378080888) == 4.55", "assert median_trapezium(4.7, 3.9, 3.9) == 4.3", "assert median_trapezium(1000000, 1000000000, 1000000000) == 500500000.0", "assert median_trapezium(0, 1000000, 999998) == 500000.0", "assert median_trapezium(4.850138598783948, 5.6, 7.1) == 5.225069299391974", "assert median_trapezium(2.76692487581672, 8.9, 9.893908979364358) == 5.83346243790836", "assert median_trapezium(9999999, 10000000, 1000001) == 9999999.5", "assert median_trapezium(5.6, 8.9, 2.76692487581672) == 7.25", "assert median_trapezium(999999, 1000001, 1000000) == 1000000.0", "assert median_trapezium(0, 10000002, 10000002) == 5000001.0", "assert median_trapezium(9999999, 10000001, 0) == 10000000.0", "assert median_trapezium(0, 10000001, 10000001) == 5000000.5", "assert median_trapezium(1000001, 10000000, 999998) == 5500000.5", "assert median_trapezium(-88, 0, 0) == -44.0", "assert median_trapezium(-88, 0, -88) == -44.0", "assert median_trapezium(3.5, 8.9, 2.8209769415973507) == 6.2", "assert median_trapezium(10000002, 1000001, 10000001) == 5500001.5", "assert median_trapezium(9999999, 10000000, 999998) == 9999999.5", "assert median_trapezium(1000000, 1000000, 1000000000) == 1000000.0", "assert median_trapezium(2.7014656823764467, 2.3, 10.351335245743993) == 2.5007328411882233", "assert median_trapezium(2.3, 5.6, 4.7) == 3.9499999999999997", "assert median_trapezium(1000001, 999997, 999998) == 999999.0", "assert median_trapezium(1000000001, 1000000000, 1000000000) == 1000000000.5", "assert median_trapezium(-88, 10000000, 1000000) == 4999956.0", "assert median_trapezium(12.228674915981982, 3.5, 8.9) == 7.864337457990991", "assert median_trapezium(1000001, 999998, 10000001) == 999999.5", "assert median_trapezium(9.893908979364358, 8.93173150209581, 9.893908979364358) == 9.412820240730085", "assert median_trapezium(4.522479161912187, 5.6, 2.7775010956134483) == 5.0612395809560935", "assert median_trapezium(999997, 1000001, 1000001) == 999999.0", "assert median_trapezium(2.9887311136415176, 2.538621128154383, 8.9) == 2.7636761208979506", "assert median_trapezium(7.1, 7.1, 7.1) == 7.1", "assert median_trapezium(1000000, 1000000, 10000001) == 1000000.0", "assert median_trapezium(3.5, 2.538621128154383, 3.5) == 3.0193105640771916", "assert median_trapezium(2.76692487581672, 8.9, 5.705802537957529) == 5.83346243790836", "assert median_trapezium(999999, 1000000, 10000002) == 999999.5", "assert median_trapezium(4.850138598783948, 5.8060581662192785, 2.76692487581672) == 5.328098382501613", "assert median_trapezium(999999, 10000002, 10000002) == 5500000.5", "assert median_trapezium(5.6, 6.2, 12.228674915981982) == 5.9", "assert median_trapezium(6.2, 8.9, 6.2) == 7.550000000000001", "assert median_trapezium(2.538621128154383, 5.4977102681459025, 12.228674915981982) == 4.018165698150143", "assert median_trapezium(2.3, 8.9, 2.8209769415973507) == 5.6", "assert median_trapezium(10000001, 1000001, 1000001) == 5500001.0", "assert median_trapezium(6.2, 3.5393547718834983, 6.2) == 4.869677385941749", "assert median_trapezium(5.4977102681459025, 2.7014656823764467, 10.351335245743993) == 4.099587975261175", "assert median_trapezium(9999999, 10000002, 10000002) == 10000000.5", "assert median_trapezium(4.7, 5.4977102681459025, 9.893908979364358) == 5.098855134072951", "assert median_trapezium(6.022223408955435, 5.530370540982478, 8.9) == 5.7762969749689566", "assert median_trapezium(1, 0, 1000000) == 0.5", "assert median_trapezium(12.228674915981982, 2.9793130653024416, 8.9) == 7.603993990642212", "assert median_trapezium(2.3, 5.8060581662192785, 8.9) == 4.053029083109639", "assert median_trapezium(10000000, 1000001, 1) == 5500000.5", "assert median_trapezium(10.351335245743993, 4.522479161912187, 3.5) == 7.43690720382809", "assert median_trapezium(6.2299590099438475, 5.068507205133304, 6.2299590099438475) == 5.649233107538576", "assert median_trapezium(-88, 1000000, 1000000) == 499956.0", "assert median_trapezium(10000000, 999999, 999999) == 5499999.5", "assert median_trapezium(5.715398378080888, 8.9, 8.9) == 7.307699189040444", "assert median_trapezium(8.871527604619072, 8.011219353977074, 9.893908979364358) == 8.441373479298072", "assert median_trapezium(2.9887311136415176, 5.4977102681459025, 2.8209769415973507) == 4.24322069089371", "assert median_trapezium(2.7014656823764467, 11.989047929768356, 9.96018534975334) == 7.345256806072401", "assert median_trapezium(999997, 999998, 10000000) == 999997.5", "assert median_trapezium(10000002, 9999999, 999998) == 10000000.5", "assert median_trapezium(8.93173150209581, 9.893908979364358, 8.93173150209581) == 9.412820240730085", "assert median_trapezium(1000000, 1000000000, 1000000002) == 500500000.0", "assert median_trapezium(10000002, 999998, 10000001) == 5500000.0", "assert median_trapezium(9.893908979364358, 8.93173150209581, 4.854251964633547) == 9.412820240730085", "assert median_trapezium(7.1, 14.507707595032242, 5.6) == 10.80385379751612", "assert median_trapezium(2.3, 2.8209769415973507, 1.6758070525843425) == 2.560488470798675", "assert median_trapezium(1000000000, 1000000000, 1000000000) == 1000000000.0", "assert median_trapezium(999997, 999998, 999997) == 999997.5", "assert median_trapezium(999998, 1000001, 10000002) == 999999.5" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the entered number is greater than the elements of the given array.\nassert check_greater([1, 2, 3, 4, 5], 4) == False\nYour code should pass the test:\nassert check_greater([1, 2, 3, 4, 5], 4) == False", "test_list": [ "assert check_greater([1, 2, 3, 4, 5], 4) == False", "assert check_greater([2, 3, 4, 5, 6], 8) == True", "assert check_greater([9, 7, 4, 8, 6, 1], 11) == True", "assert check_greater([], 10) == True", "assert check_greater([1, 2, 3, 4, 5], 6) == True", "assert check_greater([], -10) == True", "assert check_greater([-24.9567031174266, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 9) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 6) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851], 10) == False", "assert check_greater([True, False, False, False, True, True, False, False, False], -10) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 7) == False", "assert check_greater([True, True, False, False, True, True, False, False, False], -10) == False", "assert check_greater([1, 2, 3, 4, 5], 7) == True", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 8) == False", "assert check_greater([1, 2, 3, 2, 4, 5, 2], 7) == True", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851], 3) == False", "assert check_greater([True, True, False, False, True, True, True, False, False], -10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -22.030348483337058, 76.11828953745851, -29.07079657602243], 10) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851], 3) == False", "assert check_greater([1, 2, 3, 2, 4, 5, 2], 3) == False", "assert check_greater([-88.95249619481227, -89.04505768413293, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 6) == False", "assert check_greater([1, 2, 3, 4, 5, 3], 6) == True", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851], 2) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -29.07079657602243, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 4) == False", "assert check_greater([True, True, False, False, False, True, True, False, False, False], -10) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, 39.03098002919728, -88.95249619481227, 76.11828953745851, -29.07079657602243], 6) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, -29.07079657602243], 9) == False", "assert check_greater([1, 2, 3, 2, 4, 5, 2], 4) == False", "assert check_greater([1, 2, 3, 2, 4, 5, 3], 7) == True", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243], 6) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851], 4) == False", "assert check_greater([76.11828953745851, -24.9567031174266, 76.49684430385265, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851], -10) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, 28.64651047073241, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851], 6) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851, -24.9567031174266], 4) == False", "assert check_greater([-89.9137698848537, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 8) == False", "assert check_greater([44, -55, 10, 9], -10) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, -29.07079657602243], 3) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, -88.95249619481227], 10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -89.04505768413293, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 9) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 28.64651047073241], 7) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, 76.11828953745851, -29.07079657602243, -29.07079657602243], 9) == False", "assert check_greater([], 9) == True", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -24.9567031174266, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243], 6) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, 28.64651047073241, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851], 6) == False", "assert check_greater([True, True, False, False, True, True, True, False, False], 6) == True", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 29.445371536010146, 39.03098002919728, -29.07079657602243, 28.64651047073241, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851, -28.530054745009153], 6) == False", "assert check_greater([5], 2) == False", "assert check_greater([-30, -55, 1, -84, 37], -11) == False", "assert check_greater([39.03098002919728, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 9) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([1, 2, 3, 4, 5], 5) == False", "assert check_greater([True, True, False, False, False, True, True, False, True, False, False], -10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -89.04505768413293, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 39.03098002919728], 9) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, 76.11828953745851, -29.07079657602243, -29.07079657602243], 1) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -29.07079657602243, -28.530054745009153, 76.11828953745851, -29.07079657602243, -29.07079657602243], 8) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851, -88.95249619481227], 4) == False", "assert check_greater([-102.29228051425821, 28.64651047073241, -24.9567031174266, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243], 5) == False", "assert check_greater([-24.9567031174266, -88.95249619481227, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -29.07079657602243, -28.530054745009153, 76.11828953745851, -29.07079657602243, -89.9137698848537, -29.07079657602243], 8) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -88.95249619481227, -29.07079657602243, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, 28.64651047073241, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851], -11) == False", "assert check_greater([76.11828953745851, -24.9567031174266, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, -29.07079657602243], 4) == False", "assert check_greater([True, True, False, True, True, True, False, False], -10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 6) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -28.530054745009153, 76.11828953745851, -29.07079657602243, -29.07079657602243], 9) == False", "assert check_greater([1, 2, 3, 2, 4, 5, 2, 2], 8) == True", "assert check_greater([-89.9137698848537, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 9) == False", "assert check_greater([-88.95249619481227, -89.04505768413293, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 7) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 41.531086520483385, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -29.07079657602243, 76.11828953745851, -29.07079657602243], 4) == False", "assert check_greater([-89.9137698848537, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], -10) == False", "assert check_greater([1, 2, 3, 4, 5], 8) == True", "assert check_greater([True, False, False, False, True, True, False, False, False, False], -10) == False", "assert check_greater([True, True, False, False, True, True, True, False, False, True], 5) == True", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, 39.03098002919728, -88.95249619481227, 76.11828953745851, -29.07079657602243], 5) == False", "assert check_greater([-89.9137698848537, -24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -29.07079657602243, -28.530054745009153, 76.11828953745851, -29.07079657602243, -29.07079657602243], 8) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243], -12) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11523496633954, -29.07079657602243, 76.11828953745851, -88.95249619481227], 10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -89.04505768413293, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 39.03098002919728], 5) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -88.95249619481227, -29.07079657602243, 76.11828953745851, -29.07079657602243], 2) == False", "assert check_greater([True, True, False, False, True, True, True, False, False, True], -12) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -24.9567031174266, -89.04505768413293, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 9) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 41.531086520483385, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -29.07079657602243, 76.11828953745851, -29.07079657602243, -88.95249619481227], 4) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, 28.64651047073241, -28.530054745009153, -88.95249619481227, 76.11828953745851, 76.11828953745851, 76.11828953745851, -28.530054745009153], 6) == False", "assert check_greater([False, True, True, True, False, True], -10) == False", "assert check_greater([True, True, False, True, True, True, False, True], -10) == False", "assert check_greater([True, True, False, False, True, True, True, False, False, True], 9) == True", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, 28.64651047073241, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, 76.11828953745851], -30) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.49684430385265, 76.11828953745851, -29.07079657602243], 7) == False", "assert check_greater([1, 2, 4, 5], 5) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -89.04505768413293, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 39.03098002919728], 10) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, 28.64651047073241, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -89.27369600369303, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], -30) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -24.9567031174266, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243, 28.64651047073241], 6) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -24.9567031174266, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243], 5) == False", "assert check_greater([-88.95249619481227, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, 76.11828953745851, -16.56428238448845, -29.07079657602243], 1) == False", "assert check_greater([-24.9567031174266, -21.950010757474818, -29.07079657602243, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -88.95249619481227, 76.11828953745851, -29.07079657602243], 3) == False", "assert check_greater([-14.595458215631101, 39.03098002919728, 28.64651047073241, 39.03098002919728, -89.04505768413293, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243, 39.03098002919728], 7) == False", "assert check_greater([-24.9567031174266, 76.49684430385265, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, 76.11828953745851, -29.07079657602243, -29.07079657602243, 28.64651047073241], 1) == False", "assert check_greater([76.11828953745851, -24.9567031174266, -21.950010757474818, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, -29.07079657602243, 76.11828953745851, 76.11828953745851, -24.9567031174266], 3) == False", "assert check_greater([-89.9137698848537, 28.64651047073241, 39.03098002919728, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, -29.07079657602243], 10) == False", "assert check_greater([39.03098002919728, 28.64651047073241, 39.03098002919728, -89.27369600369303, -29.07079657602243, -28.530054745009153, -88.95249619481227, 76.11828953745851, 76.11523496633954], -30) == False", "assert check_greater([-102.39704966749818, -21.950010757474818, -102.29228051425821, 28.64651047073241, -24.9567031174266, 76.11828953745851, -29.07079657602243, -28.530054745009153, -21.950010757474818, 76.11828953745851, -29.07079657602243], 4) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the last digit of a given number.\nassert last_Digit(123) == 3\nYour code should pass the test:\nassert last_Digit(123) == 3", "test_list": [ "assert last_Digit(123) == 3", "assert last_Digit(25) == 5", "assert last_Digit(30) == 0", "assert last_Digit(-987) == 7", "assert last_Digit(0) == 0", "assert last_Digit(999999999999999999999999) == 9", "assert last_Digit(-988) == 8", "assert last_Digit(-989) == 9", "assert last_Digit(-2) == 2", "assert last_Digit(-3) == 3", "assert last_Digit(97) == 7", "assert last_Digit(True) == 1", "assert last_Digit(False) == 0", "assert last_Digit(-990) == 0", "assert last_Digit(1) == 1", "assert last_Digit(-1) == 1", "assert last_Digit(42) == 2", "assert last_Digit(-986) == 6", "assert last_Digit(999999999999999999999998) == 8", "assert last_Digit(96) == 6", "assert last_Digit(95) == 5", "assert last_Digit(94) == 4", "assert last_Digit(93) == 3", "assert last_Digit(61) == 1", "assert last_Digit(-14) == 4", "assert last_Digit(-992) == 2", "assert last_Digit(-991) == 1", "assert last_Digit(43) == 3", "assert last_Digit(-18) == 8", "assert last_Digit(98) == 8", "assert last_Digit(62) == 2", "assert last_Digit(92) == 2", "assert last_Digit(5) == 5", "assert last_Digit(60) == 0", "assert last_Digit(91) == 1", "assert last_Digit(-48) == 8", "assert last_Digit(28) == 8", "assert last_Digit(-994) == 4", "assert last_Digit(-19) == 9", "assert last_Digit(44) == 4", "assert last_Digit(2) == 2", "assert last_Digit(29) == 9", "assert last_Digit(1000000000000000000000000) == 0", "assert last_Digit(53) == 3", "assert last_Digit(-4) == 4", "assert last_Digit(63) == 3", "assert last_Digit(-985) == 5", "assert last_Digit(-5) == 5", "assert last_Digit(4) == 4", "assert last_Digit(-79) == 9", "assert last_Digit(-15) == 5", "assert last_Digit(999999999999999999999997) == 7", "assert last_Digit(3) == 3", "assert last_Digit(-78) == 8", "assert last_Digit(-91) == 1", "assert last_Digit(-993) == 3", "assert last_Digit(-90) == 0", "assert last_Digit(59) == 9", "assert last_Digit(-92) == 2", "assert last_Digit(49) == 9", "assert last_Digit(-76) == 6", "assert last_Digit(-17) == 7", "assert last_Digit(45) == 5", "assert last_Digit(58) == 8", "assert last_Digit(64) == 4", "assert last_Digit(-16) == 6", "assert last_Digit(-995) == 5", "assert last_Digit(-77) == 7", "assert last_Digit(-6) == 6", "assert last_Digit(27) == 7", "assert last_Digit(-12) == 2", "assert last_Digit(6) == 6", "assert last_Digit(22) == 2", "assert last_Digit(46) == 6", "assert last_Digit(1000000000000000000000001) == 1", "assert last_Digit(-20) == 0", "assert last_Digit(54) == 4", "assert last_Digit(65) == 5", "assert last_Digit(41) == 1", "assert last_Digit(30) == 0", "assert last_Digit(57) == 7", "assert last_Digit(56) == 6", "assert last_Digit(-7) == 7", "assert last_Digit(23) == 3", "assert last_Digit(-67) == 7", "assert last_Digit(55) == 5", "assert last_Digit(66) == 6", "assert last_Digit(50) == 0", "assert last_Digit(51) == 1", "assert last_Digit(99) == 9", "assert last_Digit(-65) == 5", "assert last_Digit(-93) == 3", "assert last_Digit(-66) == 6", "assert last_Digit(-21) == 1", "assert last_Digit(-23) == 3", "assert last_Digit(-47) == 7", "assert last_Digit(-996) == 6", "assert last_Digit(47) == 7", "assert last_Digit(-13) == 3", "assert last_Digit(-8) == 8", "assert last_Digit(-71) == 1", "assert last_Digit(89) == 9", "assert last_Digit(52) == 2", "assert last_Digit(48) == 8", "assert last_Digit(-24) == 4", "assert last_Digit(-50) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to return the negative numbers in a list.\nassert neg_nos([-1,4,5,-6]) == [-1,-6]\nYour code should pass the test:\nassert neg_nos([-1,4,5,-6]) == [-1,-6]", "test_list": [ "assert neg_nos([-1,4,5,-6]) == [-1,-6]", "assert neg_nos([-1,-2,3,4]) == [-1,-2]", "assert neg_nos([-7,-6,8,9]) == [-7,-6]", "assert neg_nos([]) == []", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 12, 0, -15, 18]) == [-2, -5, -8, -15]", "assert neg_nos([-10, -5, -3, 0, 2, 5, 8, -7, 12, 15]) == [-10, -5, -3, -7]", "assert neg_nos([-2, -4, -6, -8, -10, 0, 2, 4, 6, 8, 10]) == [-2, -4, -6, -8, -10]", "assert neg_nos([-1, -3, -5, -7, -9, -11, 1, 3, 5, 7, 9, 11]) == [-1, -3, -5, -7, -9, -11]", "assert neg_nos([0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == []", "assert neg_nos([2, 4, 6, 8, 10, 12, 14, 16, 18, 20]) == []", "assert neg_nos([-2, -4, 0, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15]) == [-2, -4, -8, -10, -10, -15, -15]", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == []", "assert neg_nos([-100, -200, 0, 50, -75, 100, -150, 200, 0, -250, 300, -350]) == [-100, -200, -75, -150, -250, -350]", "assert neg_nos([1, 2, 3, 4, -5, -6, 7, 8, -9, 10]) == [-5, -6, -9]", "assert neg_nos([-1, -5, -7, -9, -11, 1, 3, 5, 7, 9, 11]) == [-1, -5, -7, -9, -11]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([1, -6, 2, 3, 4, -5, -6, 7, 8, -9, 10, 7]) == [-6, -5, -6, -9]", "assert neg_nos([-2, -4, -6, -8, 0, 2, 4, 6, 8, 10]) == [-2, -4, -6, -8]", "assert neg_nos([1, -6, 2, 3, 4, -5, -6, 7, 8, -9, 10, 7, -6]) == [-6, -5, -6, -9, -6]", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10]) == []", "assert neg_nos([-2, -4, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -10, -15, -15, 18, 6]) == [-2, -4, -8, -11, -10, -15, -15]", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 12, 0, 18, 0]) == [-2, -5, -8]", "assert neg_nos([-1, -8, -5, -7, -9, -11, 1, 3, 5, 7, 9, 11]) == [-1, -8, -5, -7, -9, -11]", "assert neg_nos([-2, -4, -6, 10, -8, 0, 2, 4, 8, 10]) == [-2, -4, -6, -8]", "assert neg_nos([4, -2, -4, 0, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([-2, -4, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -3, -4]) == [-2, -4, -8, -10, -10, -15, -15, -3, -4]", "assert neg_nos([4, -2, -4, 0, 3, 3, -8, -10, 2, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([-10, -5, -3, 0, 2, 5, 8, -7, 12, 15, -7]) == [-10, -5, -3, -7, -7]", "assert neg_nos([-2, -4, -6, -8, -10, 0, 3, 4, 6, 8, 10]) == [-2, -4, -6, -8, -10]", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 12, 0, -15, 18, -2]) == [-2, -5, -8, -15, -2]", "assert neg_nos([4, -4, 0, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4]) == [-4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([-2, -4, 4, 3, -8, -10, 0, 2, 11, 4, 2, 6, 8, -10, 20, -15, -15, -3, -4]) == [-2, -4, -8, -10, -10, -15, -15, -3, -4]", "assert neg_nos([-2, -4, 20, -8, 2, 4, 6, 8, 10]) == [-2, -4, -8]", "assert neg_nos([-2, 11, 0, 3, 3, -8, -11, 20, -250, 0, 2, 4, 2, 6, 8, -10, -15, 18, 6]) == [-2, -8, -11, -250, -10, -15]", "assert neg_nos([1, -2, 0, 1, -5, 7, -8, 10, 12, 0, -15, 18, -2, 12]) == [-2, -5, -8, -15, -2]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -10, -15, -15, 18, 6, 6]) == [-2, -4, -8, -11, -10, -15, -15]", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 7, 10]) == []", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 7, 10, 6]) == []", "assert neg_nos([-350, -2, 0, -5, 7, -8, 10, 12, 0, 18, 0]) == [-350, -2, -5, -8]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -11, 20, 0, 4, 2, 6, 8, -10, -15, -15, 18, 6, 6]) == [-2, -4, -8, -11, -10, -15, -15]", "assert neg_nos([4, -4, 0, 1, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4, 3]) == [-4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([4, -4, 0, 1, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -14, -4, 3]) == [-4, -8, -10, -10, -15, -14, -4]", "assert neg_nos([2, 2, 3, 4, 5, 6, 7, 200, 8, 9, 10, 7, 10]) == []", "assert neg_nos([1, -2, 0, -14, 7, -8, 10, 300, 0, -15, 17]) == [-2, -14, -8, -15]", "assert neg_nos([4, -4, 0, 1, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4, 3, 3]) == [-4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([1, 2, 3, 4, -5, -6, 7, 8, -9, 10, -5]) == [-5, -6, -9, -5]", "assert neg_nos([-2, -4, -6, -10, 0, 2, 4, 6, 8, 10]) == [-2, -4, -6, -10]", "assert neg_nos([-2, 16, -4, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -10, -15, -15, 18, 6]) == [-2, -4, -8, -11, -10, -15, -15]", "assert neg_nos([-2, 16, -4, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -11, -15, -15, 18, 6]) == [-2, -4, -8, -11, -11, -15, -15]", "assert neg_nos([1, -6, 3, -5, -6, 7, 8, -9, 10, 7, -6, 8]) == [-6, -5, -6, -9, -6]", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 0, 18, 0, 0]) == [-2, -5, -8]", "assert neg_nos([-10, -5, -3, -14, 0, 2, 5, 8, -7, 12, 15]) == [-10, -5, -3, -14, -7]", "assert neg_nos([-2, -4, 0, 3, 3, -9, -11, 20, 0, 4, 2, 6, 8, -10, -15, 18, 6, 6, 3]) == [-2, -4, -9, -11, -10, -15]", "assert neg_nos([1, 2, 3, 4, -5, -6, 7, 8, -9, 10, -5, 7]) == [-5, -6, -9, -5]", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 12, 0, -15, 18, -2, -2]) == [-2, -5, -8, -15, -2, -2]", "assert neg_nos([-1, -8, -350, -7, -9, -11, 1, 3, 5, 7, 9, 11, -8]) == [-1, -8, -350, -7, -9, -11, -8]", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6, 10]) == []", "assert neg_nos([-2, 0, -5, 7, -8, 10, 12, 0, -15, 18]) == [-2, -5, -8, -15]", "assert neg_nos([-10, 0, 3, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, -10]) == [-10, -10]", "assert neg_nos([1, -6, 3, -5, -6, 7, 8, -9, 10, 7, -6, 8, 8]) == [-6, -5, -6, -9, -6]", "assert neg_nos([1, 2, 2, 4, -5, 3, -6, 7, 8, -9, 10, 11, 7, 7]) == [-5, -6, -9]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -2, -15, -15]) == [-2, -4, -8, -10, -10, -2, -15, -15]", "assert neg_nos([4, -2, -4, 0, 3, 2, -8, -10, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([4, -2, -4, 0, 3, 3, -8, -10, 1, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 12, 50, 0, -15]) == [-2, -5, -8, -15]", "assert neg_nos([-2, -4, -6, -8, 2, 4, 6, 8, 10]) == [-2, -4, -6, -8]", "assert neg_nos([1, -6, 15, 3, -5, -6, 7, 8, -9, 10, 7, -6, 8, 8]) == [-6, -5, -6, -9, -6]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -10, -15, -15, 18]) == [-2, -4, -8, -11, -10, -15, -15]", "assert neg_nos([1, -6, 2, 3, 4, -5, -6, 7, 8, -9, 7, -5]) == [-6, -5, -6, -9, -5]", "assert neg_nos([1, -6, 3, -5, -150, -6, 7, 8, -9, 10, 7, -6, 8, 8]) == [-6, -5, -150, -6, -9, -6]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -10, 0, 2, 2, 6, 8, -10, -15, -15]) == [-2, -4, -8, -10, -10, -15, -15]", "assert neg_nos([-10, 0, 3, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, -10, -10]) == [-10, -10, -10]", "assert neg_nos([0, 1, 2, 3, 4, 5, 6, 7, 8, 6, 9, 10]) == []", "assert neg_nos([-2, -4, -6, -8, -10, 0, 3, 6, 8, 10]) == [-2, -4, -6, -8, -10]", "assert neg_nos([-2, -4, -6, -8, 0, 2, -150, 6, 10, 2]) == [-2, -4, -6, -8, -150]", "assert neg_nos([4, -4, 0, 1, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -16, -14, -4, 3]) == [-4, -8, -10, -10, -16, -14, -4]", "assert neg_nos([-100, -200, 0, 50, -75, -150, 200, 0, -250, 300, -350]) == [-100, -200, -75, -150, -250, -350]", "assert neg_nos([1, 8, -6, 2, 3, 4, -5, -6, 7, 8, -9, 10, 7, -6]) == [-6, -5, -6, -9, -6]", "assert neg_nos([4, -2, -75, -4, 0, 3, 3, -8, -10, 1, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -75, -4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([1, -6, 15, 3, -5, -6, 7, 8, -9, 10, 7, -6, 8, 8, -6]) == [-6, -5, -6, -9, -6, -6]", "assert neg_nos([4, -4, -9, 0, 1, 3, 3, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4, 3]) == [-4, -9, -8, -10, -10, -15, -15, -4]", "assert neg_nos([-2, -4, 4, 3, -8, -10, 0, 2, 11, 4, 2, 6, 8, -10, -15, -15, -3, -4]) == [-2, -4, -8, -10, -10, -15, -15, -3, -4]", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 1]) == []", "assert neg_nos([1, -6, 3, 7, 100, -150, -6, 7, 8, -9, 10, 7, -6, 8, 8]) == [-6, -150, -6, -9, -6]", "assert neg_nos([-4, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -10, -15, -15, 18, 6, 6]) == [-4, -8, -11, -10, -15, -15]", "assert neg_nos([0, 1, 2, 3, 4, 5, 3, 6, 7, 8, 9, 10]) == []", "assert neg_nos([-2, -4, -2, 0, 3, 3, -8, -11, 20, 0, 2, 4, 2, 6, 8, -10, -15, -15, 18, 6]) == [-2, -4, -2, -8, -11, -10, -15, -15]", "assert neg_nos([-2, -4, -6, -8, 0, 2, 4, 8, 10]) == [-2, -4, -6, -8]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -10, 0, 2, 2, 8, -10, -15, -15]) == [-2, -4, -8, -10, -10, -15, -15]", "assert neg_nos([-1, -3, -5, -1, -9, -11, 1, 3, 5, 7, 9, 11, 9]) == [-1, -3, -5, -1, -9, -11]", "assert neg_nos([1, -6, 15, 3, -5, -6, 7, 8, -9, 10, 7, 8, 8]) == [-6, -5, -6, -9]", "assert neg_nos([0, 1, 16, 2, 3, 4, 5, 6, 7, 8, 6, 9, 10]) == []", "assert neg_nos([-10, -5, 16, 9, 0, 2, 5, 8, -7, 12, 15]) == [-10, -5, -7]", "assert neg_nos([1, 2, 3, 4, -5, -6, 7, 8, -9, 10, -5, 1]) == [-5, -6, -9, -5]", "assert neg_nos([4, -2, -75, 0, 3, 3, -8, -10, 1, 4, 2, 6, 8, -10, -15, -15, -4]) == [-2, -75, -8, -10, -10, -15, -15, -4]", "assert neg_nos([-2, -4, 4, 3, -8, -10, 2, 11, 4, 2, 6, 8, -10, 20, -15, -15, 6, -3, -4, 2]) == [-2, -4, -8, -10, -10, -15, -15, -3, -4]", "assert neg_nos([1, 2, -3, 4, 5, 6, 7, 8, 9, 10]) == [-3]", "assert neg_nos([1, 2, 3, 4, -5, -6, 4, 8, -9, 10]) == [-5, -6, -9]", "assert neg_nos([1, -6, 3, -5, -6, 7, 8, -9, 10, 7, -6, 8, 10]) == [-6, -5, -6, -9, -6]", "assert neg_nos([-2, -4, -6, -8, 2, 6, 8, 10]) == [-2, -4, -6, -8]", "assert neg_nos([1, 2, 2, 4, -5, 8, 3, -6, 7, 8, -9, 10, 11, 7, 7, -9]) == [-5, -6, -9, -9]", "assert neg_nos([-10, -5, -3, -14, 0, 2, -7, 8, -7, 12, 15]) == [-10, -5, -3, -14, -7, -7]", "assert neg_nos([-10, 0, 3, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, -10, -10, 10]) == [-10, -10, -10]", "assert neg_nos([1, -2, 0, -5, 7, -8, 10, 12, 0, -15, 18, -5]) == [-2, -5, -8, -15, -5]", "assert neg_nos([1, -6, 16, 3, -5, -6, 7, -5, 8, -9, 10, 7, -6, 8, 8]) == [-6, -5, -6, -5, -9, -6]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -10, 2, 0, 2, 2, 6, 8, -10, -15, -15]) == [-2, -4, -8, -10, -10, -15, -15]", "assert neg_nos([1, 2, 3, 4, 5, 6, 7, 8, 9, 7, 10, 6]) == []", "assert neg_nos([1, 2, 3, 4, 5, 7, 8, 9, 10, 6, 6, 10, 1]) == []", "assert neg_nos([1, 2, -3, 4, 5, 6, 7, 8, 9, 10, 8]) == [-3]", "assert neg_nos([1, 2, 3, 4, -5, -6, 7, 8, -14, -9, 10]) == [-5, -6, -14, -9]", "assert neg_nos([4, -4, 0, 1, 4, 3, -8, -10, 0, 2, 4, 2, 6, 8, -10, -15, -15, -4, 3, 3, 4]) == [-4, -8, -10, -10, -15, -15, -4]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -11, 20, 0, 4, 2, 6, 8, -10, -15, -15, 18, 6, 6, -2]) == [-2, -4, -8, -11, -10, -15, -15, -2]", "assert neg_nos([-2, -4, 0, 3, 3, -8, -11, 20, 0, 4, 2, 6, 8, -10, -15, -15, 18, 6, 6, -75]) == [-2, -4, -8, -11, -10, -15, -15, -75]", "assert neg_nos([2, -3, 4, 5, 6, 7, 8, 9, 10]) == [-3]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove odd characters in a string.\nassert remove_odd(\"python\")==(\"yhn\")\nYour code should pass the test:\nassert remove_odd(\"python\")==(\"yhn\")", "test_list": [ "assert remove_odd(\"python\")==(\"yhn\")", "assert remove_odd(\"program\")==(\"rga\")", "assert remove_odd(\"language\")==(\"agae\")", "assert remove_odd('') == ''", "assert remove_odd('Hello, world!') == 'el,wrd'", "assert remove_odd('acegikmoqsuwy') == 'cgkosw'", "assert remove_odd('world!') == 'ol!'", "assert remove_odd('Hello,') == 'el,'", "assert remove_odd('e,Hello,') == ',el,'", "assert remove_odd('e,He') == ',e'", "assert remove_odd('e,Hellol,') == ',ell'", "assert remove_odd('e,Held!') == ',ed'", "assert remove_odd('e,Hello,Hello, world!') == ',el,el,wrd'", "assert remove_odd('e,') == ','", "assert remove_odd('e,Hdeld!') == ',dl!'", "assert remove_odd('Hewllo, world!') == 'elo ol!'", "assert remove_odd('e,,') == ','", "assert remove_odd('Hee,Held!llo,') == 'e,edlo'", "assert remove_odd('Hello,e,Held!') == 'el,,ed'", "assert remove_odd('e,Hel') == ',e'", "assert remove_odd('e,HelHello,') == ',eHlo'", "assert remove_odd('wor!ld!') == 'o!d'", "assert remove_odd('acegiHello,e,Held!kmoqsuwy') == 'cgHloeHl!mquy'", "assert remove_odd('e,Hell,') == ',el'", "assert remove_odd('Hello,orld!') == 'el,rd'", "assert remove_odd('eHello, world!,,') == 'Hlo ol!,'", "assert remove_odd('Hewllo, lworld!') == 'elo wrd'", "assert remove_odd('lworld!') == 'wrd'", "assert remove_odd('e,Hello,Hee,Held!world!') == ',el,e,edwrd'", "assert remove_odd('lworld!e,Hello,Hee,Held!world!') == 'wrdeHloHeHl!ol!'", "assert remove_odd('world!,,') == 'ol!,'", "assert remove_odd('eHello, worlld!,,') == 'Hlo old,'", "assert remove_odd('wore,Hee,Helle,Hdeld!o,Hee,Held!world!l!,,') == 'oeHeHleHedoHeHl!ol!!,'", "assert remove_odd('wore,Hee,Hellelworld!,Hdeld!o,Hee,Held!world!l!,,') == 'oeHeHlewrd,dl!,e,edwrdl,'", "assert remove_odd('eHello, world!,e,,') == 'Hlo ol!e,'", "assert remove_odd('eHello,') == 'Hlo'", "assert remove_odd('Hello,ore,Hdeld!') == 'el,r,dl!'", "assert remove_odd('e,HdeldHello,orld!!') == ',dlHlool!'", "assert remove_odd('Hello,ore,Hdel!') == 'el,r,dl'", "assert remove_odd('Hewllo,') == 'elo'", "assert remove_odd('aceHello,ore,HdelHello,ore,Hdeld!d!Hello,e,Held!kmoqsuwy') == 'cHlooeHeHlooeHeddHloeHl!mquy'", "assert remove_odd('acegiHello,Hewllo, world!e,Held!kHello,ore,Hdel!suwy') == 'cgHloHwl,wrdeHl!HlooeHe!uy'", "assert remove_odd('eeHello,') == 'eel,'", "assert remove_odd('RrjlJwpJaM') == 'rlwJM'", "assert remove_odd('e,Held!e,Hell,') == ',edeHl,'", "assert remove_odd('e,Hddeld!') == ',ded'", "assert remove_odd('HewllHo,e,Held! lworld!') == 'elH,,ed wrd'", "assert remove_odd('Hello, wHello, world!ld!') == 'el,wel,wrdl!'", "assert remove_odd('e,eHello, world!,,Held!e,Hell,') == ',Hlo ol!,edeHl,'", "assert remove_odd('eHe') == 'H'", "assert remove_odd('HewllHo,e,Held!') == 'elH,,ed'", "assert remove_odd('He,ore,Hdel!') == 'eoeHe!'", "assert remove_odd('eeeHello, world!,e,,Hello,') == 'eHlo ol!e,el,'", "assert remove_odd('e,eHHello, wHello, world!ld!ello, world!,,Held!e,Hell,') == ',Hel,wel,wrdl!lo ol!,edeHl,'", "assert remove_odd('eeHelolo,') == 'eeoo'", "assert remove_odd('e,HdeldHell!!') == ',dlHl!'", "assert remove_odd('e!,Hdeld!') == '!Hed'", "assert remove_odd('wore,Hee,Helle,Hdeld!o,Hee,Held!world!l!,,lworld!') == 'oeHeHleHedoHeHl!ol!!,wrd'", "assert remove_odd('e,eld!e,Hell,') == ',l!,el'", "assert remove_odd('wore,Hee,Helle,Hdeld!eeeHello,o,Hee,Held!world!l!,,lworld!') == 'oeHeHleHedeeel,,e,edwrdl,lol!'", "assert remove_odd('lwHello,orld!orld!') == 'wel,rdol!'", "assert remove_odd('HewllHo,e,Held! lw!orld!') == 'elH,,ed wol!'", "assert remove_odd('Hewllo, worl') == 'elo ol'", "assert remove_odd('e,He,ld!e,Hell,') == ',el!,el'", "assert remove_odd('eeHello, worlld!,,,Hell,') == 'eel,wrl!,Hl,'", "assert remove_odd('lorld!') == 'ol!'", "assert remove_odd('e,,,') == ',,'", "assert remove_odd('lwlHello,orld!orld!') == 'wHlool!rd'", "assert remove_odd('e,Hee,ld!e,Hee,Hello,Hee,Held!world!ll,e,eHello, world!,,Held!e,Hell,') == ',e,deHeHloHeHl!ol!leeel,wrd,Hl!,el'", "assert remove_odd('eeeHello,') == 'eHlo'", "assert remove_odd('aworlld!,,,Hell,cegikmoqsuwy') == 'wrl!,Hl,eimquy'", "assert remove_odd('e,Heee,ld!e,Hee,Hello,Hee,Held!world!ll,e,eHello, world!,,Held!e,Hell,') == ',eel!,e,el,e,edwrdl,,Hlo ol!,edeHl,'", "assert remove_odd('wore,Hee,Hellelworld!,Hdeld!o,H!ee,Held!world!l!,,') == 'oeHeHlewrd,dl!,!eHl!ol!!,'", "assert remove_odd('loe,Hello,Hello,rld!') == 'o,el,el,l!'", "assert remove_odd('wolrld!,,Held!e,Hell,') == 'ord,Hl!,el'", "assert remove_odd('world!,e,,Hello,') == 'ol!e,el,'", "assert remove_odd('wore,Hee,HHellelworld!,He,HdeldHello,orld!!deld!o,H!ee,Held!world!l!,,') == 'oeHeHellol!H,dlHlool!dl!,!eHl!ol!!,'", "assert remove_odd('e,Hel!') == ',e!'", "assert remove_odd('Hello,ore,world!,,Hdel!') == 'el,r,ol!,dl'", "assert remove_odd('acegikmoqsuwore,Hee,Helle,Hdeld!o,Hee,Held!world!l!,,') == 'cgkoswr,e,el,dl!,e,edwrdl,'", "assert remove_odd('eHello,Hee,Held!llo,') == 'HloHeHl!l,'", "assert remove_odd('e,,,Hewllo, worl') == ',,elo ol'", "assert remove_odd('e,Heee,ld!e,Hee,Hello,H,ee!world!ll,e,!eHello,') == ',eel!,e,el,,ewrdl,,eel,'", "assert remove_odd('e,Hreee,ld!e,Hee,Hello,Hee,Held!world!ll,e,eHello, world!,,Held!e,Hell,') == ',re,deHeHloHeHl!ol!leeel,wrd,Hl!,el'", "assert remove_odd('He wllHo, world!') == 'ewlo ol!'", "assert remove_odd('wllHo,') == 'lH,'", "assert remove_odd('eHello,Heo,') == 'HloHo'", "assert remove_odd('e,Hee,ld!e,Hee,Hello,Hee,Held!world!ll,e,eHello,') == ',e,deHeHloHeHl!ol!leeel,'", "assert remove_odd('e,HHddeld!') == ',Hdl!'", "assert remove_odd('e,,eHe') == ',ee'", "assert remove_odd('lwHello,orlHee,Held!llo,d!orld!') == 'wel,rHeHl!l,!rd'", "assert remove_odd('Hello, wHello, world!Hewllo, worlld!') == 'el,wel,wrdHwl,wrl!'", "assert remove_odd(',e,,') == 'e,'", "assert remove_odd('ld!') == 'd'", "assert remove_odd('e,Hreee,ld!e,Hee,Hello,Hee,Held!world!ll,e,eHello,') == ',re,deHeHloHeHl!ol!leeel,'", "assert remove_odd('mvWHEUyrs') == 'vHUr'", "assert remove_odd('lwHello,orlHee,Held!llo,d!olw!orld!rld!') == 'wel,rHeHl!l,!l!rdrd'", "assert remove_odd('wore,Hee,Helworld!le,Hdeld!o,Hee,Held!world!l!,,lworld!') == 'oeHeHlol!eHedoHeHl!ol!!,wrd'", "assert remove_odd('nhh') == 'h'", "assert remove_odd('e,Hreee,ld!e,HeeHee,Held!llo,,Hello,Hee,Held!world!ll,e,eHello,') == ',re,deHee,edlo,el,e,edwrdl,,Hlo'", "assert remove_odd('wore,Hee,HHellelworld!,He,HdeldHello,orld!!deld!o,H!ee,Held!world!l!,world!ld!ello,') == 'oeHeHellol!H,dlHlool!dl!,!eHl!ol!!wrdl!lo'", "assert remove_odd('ee,eHHaworlld!,,,Hell,cegikmoqsuwyello, wHello, orld!ld!ello, worlmd!,,Held!e,Hell,elle!!') == 'eeHwrl!,Hl,eimquylo Hlo rdl!lo old,Hl!,elel!'", "assert remove_odd('worlld!,,') == 'old,'", "assert remove_odd(',,e,,') == ',,'", "assert remove_odd('e,He,ld!e,Hee,Heee,ld!e,Hee,Hello,Hee,Held!world!ll,e,eHello, world!,,Held!e,Hell,l,') == ',el!,e,eel!,e,el,e,edwrdl,,Hlo ol!,edeHl,,'", "assert remove_odd('e,HeHl') == ',el'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to join a list of multiple integers into a single integer.\nassert multiple_to_single([11, 33, 50])==113350\nYour code should pass the test:\nassert multiple_to_single([11, 33, 50])==113350", "test_list": [ "assert multiple_to_single([11, 33, 50])==113350", "assert multiple_to_single([-1,2,3,4,5,6])==-123456", "assert multiple_to_single([10,15,20,25])==10152025", "assert multiple_to_single([1000000, 999999, 100000, 99999]) == 100000099999910000099999", "assert multiple_to_single([9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9]) == 999999999999999999999999999999", "assert multiple_to_single([999999999999999999999, 888888888888888888888, 777777777777777777777]) == 999999999999999999999888888888888888888888777777777777777777777", "assert multiple_to_single([123456789123456789123456789, 987654321987654321987654321]) == 123456789123456789123456789987654321987654321987654321", "assert multiple_to_single([999999999999999999999, 888888888888888888888, 999999999999999999999, 777777777777777777777]) == 999999999999999999999888888888888888888888999999999999999999999777777777777777777777", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999999, 777777777777777777777]) == 99999999999999999999999999999999999999999999999777777777777777777777", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 777777777777777777777, 999999999999999999999, 777777777777777777777]) == 999999999999999999998999999999999999999999777777777777777777777999999999999999999999777777777777777777777", "assert multiple_to_single([99999, 123456789123456789123456789]) == 99999123456789123456789123456789", "assert multiple_to_single([99999, 888888888888888888888]) == 99999888888888888888888888", "assert multiple_to_single([999999999999999999999, 888888888888888888888, 999999999999999999998, 777777777777777777777]) == 999999999999999999999888888888888888888888999999999999999999998777777777777777777777", "assert multiple_to_single([987654321987654321987654321]) == 987654321987654321987654321", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999998, 777777777777777777777]) == 99999999999999999999999999999999999999999999998777777777777777777777", "assert multiple_to_single([99999, 888888888888888888888, 99999]) == 9999988888888888888888888899999", "assert multiple_to_single([987654321987654321987654321, 987654321987654321987654321]) == 987654321987654321987654321987654321987654321987654321", "assert multiple_to_single([9, 999999999999999999999, 99999, 888888888888888888888]) == 999999999999999999999999999888888888888888888888", "assert multiple_to_single([999999999999999999999, 100000, 999999999999999999999, 777777777777777777777]) == 999999999999999999999100000999999999999999999999777777777777777777777", "assert multiple_to_single([99999, 888888888888888888888, 888888888888888888888]) == 99999888888888888888888888888888888888888888888", "assert multiple_to_single([1000000, 999999, 100000, 100000]) == 1000000999999100000100000", "assert multiple_to_single([9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 10, 9, 9, 9, 9]) == 9999999999999999999999999109999", "assert multiple_to_single([99999, 987654321987654321987654321, 987654321987654321987654321, 987654321987654321987654321]) == 99999987654321987654321987654321987654321987654321987654321987654321987654321987654321", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999999, 777777777777777777777, 1000000000000000000000]) == 999999999999999999999999999999999999999999999997777777777777777777771000000000000000000000", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999999, 777777777777777777777, 999999999999999999999, 777777777777777777778, 999999999999999999999]) == 99999999999999999999999999999999999999999999999777777777777777777777999999999999999999999777777777777777777778999999999999999999999", "assert multiple_to_single([1000000, 999999, 100000]) == 1000000999999100000", "assert multiple_to_single([99999, 987654321987654321987654321, 987654321987654321987654321]) == 99999987654321987654321987654321987654321987654321987654321", "assert multiple_to_single([999999999999999999999, 100000, 999999999999999999999, 100000, 999999999999999999999]) == 999999999999999999999100000999999999999999999999100000999999999999999999999", "assert multiple_to_single([1000000, 99999, 987654321987654321987654321, 987654321987654321987654321]) == 100000099999987654321987654321987654321987654321987654321987654321", "assert multiple_to_single([1000000, 999999, 999999, 1000000, 100000, 99999]) == 1000000999999999999100000010000099999", "assert multiple_to_single([888888888888888888888, 99999, 99999]) == 8888888888888888888889999999999", "assert multiple_to_single([888888888888888888888, 777777777777777777777]) == 888888888888888888888777777777777777777777", "assert multiple_to_single([99999, 987654321987654321987654321, 987654321987654321987654321, 1000000]) == 999999876543219876543219876543219876543219876543219876543211000000", "assert multiple_to_single([999999999999999999998, 888888888888888888888, 888888888888888888888]) == 999999999999999999998888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 888888888888888888888, 777777777777777777776, 777777777777777777777]) == 999999999999999999999888888888888888888888777777777777777777776777777777777777777777", "assert multiple_to_single([123456789123456789123456789, 99999, 888888888888888888888, 99999]) == 1234567891234567891234567899999988888888888888888888899999", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 999999999999999999999, 777777777777777777777, 999999999999999999999]) == 999999999999999999998999999999999999999999999999999999999999999777777777777777777777999999999999999999999", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999999, 777777777777777777777, 777777777777777777778, 999999999999999999999]) == 99999999999999999999999999999999999999999999999777777777777777777777777777777777777777778999999999999999999999", "assert multiple_to_single([9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9]) == 9999999999999999999999999999", "assert multiple_to_single([999999999999999999999, 987654321987654321987654321, 100000, 999999999999999999999, 100000, 999999999999999999999]) == 999999999999999999999987654321987654321987654321100000999999999999999999999100000999999999999999999999", "assert multiple_to_single([987654321987654321987654321, 987654321987654321987654322]) == 987654321987654321987654321987654321987654321987654322", "assert multiple_to_single([1000000000000000000000, 999999999999999999999, 99999, 999999999999999999999, 777777777777777777777, 999999999999999999999, 777777777777777777778, 999999999999999999999]) == 100000000000000000000099999999999999999999999999999999999999999999999777777777777777777777999999999999999999999777777777777777777778999999999999999999999", "assert multiple_to_single([1000000000000000000000, 99999, 777777777777777777777]) == 100000000000000000000099999777777777777777777777", "assert multiple_to_single([999999999999999999998, 888888888888888888888, 777777777777777777777]) == 999999999999999999998888888888888888888888777777777777777777777", "assert multiple_to_single([8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9]) == 8999999999999999999999999999999", "assert multiple_to_single([123456789123456789123456789, 777777777777777777776]) == 123456789123456789123456789777777777777777777776", "assert multiple_to_single([1000000, 999999, 100000, 999999, 999999]) == 1000000999999100000999999999999", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999999, 1000000000000000000000]) == 999999999999999999999999999999999999999999999991000000000000000000000", "assert multiple_to_single([1000000, 99999, 987654321987654321987654321]) == 100000099999987654321987654321987654321", "assert multiple_to_single([999999999999999999999, 99999, 777777777777777777778, 999999999999999999998, 777777777777777777777]) == 99999999999999999999999999777777777777777777778999999999999999999998777777777777777777777", "assert multiple_to_single([100001, 999999999999999999999, 987654321987654321987654321, 100000, 999999999999999999999, 100000, 999999999999999999999]) == 100001999999999999999999999987654321987654321987654321100000999999999999999999999100000999999999999999999999", "assert multiple_to_single([999999999999999999999, 99999, 1000000000000000000000, 777777777777777777777, 777777777777777777778, 999999999999999999999]) == 999999999999999999999999991000000000000000000000777777777777777777777777777777777777777778999999999999999999999", "assert multiple_to_single([888888888888888888888, 777777777777777777778, 99999, 99999]) == 8888888888888888888887777777777777777777789999999999", "assert multiple_to_single([9, 999999999999999999999, 99999]) == 999999999999999999999999999", "assert multiple_to_single([999999999999999999999, 99999, 987654321987654321987654321]) == 99999999999999999999999999987654321987654321987654321", "assert multiple_to_single([8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 9, 9]) == 8999999999999999999999999998999", "assert multiple_to_single([999999999999999999999, 999999999999999999999, 99999, 999999999999999999999, 777777777777777777777, 1000000000000000000000, 777777777777777777777]) == 999999999999999999999999999999999999999999999999999999999999999999997777777777777777777771000000000000000000000777777777777777777777", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 777777777777777777777, 999999999999999999999, 777777777777777777777, 999999999999999999999]) == 999999999999999999998999999999999999999999777777777777777777777999999999999999999999777777777777777777777999999999999999999999", "assert multiple_to_single([999999999999999999999, 99999, 777777777777777777778, 999999999999999999998, 777777777777777777777, 999999999999999999999]) == 99999999999999999999999999777777777777777777778999999999999999999998777777777777777777777999999999999999999999", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 777777777777777777777, 777777777777777777777, 999999999999999999999]) == 999999999999999999998999999999999999999999777777777777777777777777777777777777777777999999999999999999999", "assert multiple_to_single([888888888888888888888, 777777777777777777777, 777777777777777777777]) == 888888888888888888888777777777777777777777777777777777777777777", "assert multiple_to_single([999999999999999999999, 888888888888888888888, 888888888888888888888]) == 999999999999999999999888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 99999, 1000000, 777777777777777777777, 999999999999999999999, 777777777777777777778, 999999999999999999999, 999999999999999999999]) == 999999999999999999999999991000000777777777777777777777999999999999999999999777777777777777777778999999999999999999999999999999999999999999", "assert multiple_to_single([888888888888888888889, 99999, 99999]) == 8888888888888888888899999999999", "assert multiple_to_single([777777777777777777779, 888888888888888888888, 777777777777777777778, 99999, 99999]) == 7777777777777777777798888888888888888888887777777777777777777789999999999", "assert multiple_to_single([888888888888888888888, 777777777777777777778, 99999, 99999, 888888888888888888889, 99999, 99999]) == 88888888888888888888877777777777777777777899999999998888888888888888888899999999999", "assert multiple_to_single([888888888888888888888, 99999]) == 88888888888888888888899999", "assert multiple_to_single([999999999999999999999, 888888888888888888889, 888888888888888888888, 888888888888888888888]) == 999999999999999999999888888888888888888889888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 99999, 999999, 999999999999999999999, 1000000000000000000000]) == 999999999999999999999999999999999999999999999999999991000000000000000000000", "assert multiple_to_single([9, 123456789123456789123456789, 999999999999999999999, 99999]) == 912345678912345678912345678999999999999999999999999999", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 999999999999999999999, 999999999999999999999, 999999999999999999999]) == 999999999999999999998999999999999999999999999999999999999999999999999999999999999999999999999999999999999", "assert multiple_to_single([777777777777777777778]) == 777777777777777777778", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 777777777777777777777, 999999999999999999999]) == 999999999999999999998999999999999999999999777777777777777777777999999999999999999999", "assert multiple_to_single([8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 9, 9]) == 89999999999998999999999999998999", "assert multiple_to_single([999999999999999999999, 9, 888888888888888888888, 888888888888888888888, 888888888888888888888]) == 9999999999999999999999888888888888888888888888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 999999999999999999998, 999999999999999999999, 777777777777777777777, 999999999999999999999, 777777777777777777777, 999999999999999999999]) == 999999999999999999999999999999999999999998999999999999999999999777777777777777777777999999999999999999999777777777777777777777999999999999999999999", "assert multiple_to_single([888888888888888888888, 888888888888888888888, 888888888888888888888]) == 888888888888888888888888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 888888888888888888889, 888888888888888888888, 888888888888888888888, 888888888888888888888]) == 999999999999999999999888888888888888888889888888888888888888888888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 99999, 1000000000000000000000, 777777777777777777777, 777777777777777777778, 999999999999999999999, 999999999999999999999, 777777777777777777777]) == 999999999999999999999999991000000000000000000000777777777777777777777777777777777777777778999999999999999999999999999999999999999999777777777777777777777", "assert multiple_to_single([1000000, 999999, 100000, 999999]) == 1000000999999100000999999", "assert multiple_to_single([999999999999999999999, 99999, 1000000000000000000000, 777777777777777777777, 100001, 999999999999999999999]) == 999999999999999999999999991000000000000000000000777777777777777777777100001999999999999999999999", "assert multiple_to_single([999999, 100000]) == 999999100000", "assert multiple_to_single([999999999999999999998, 999999999999999999999, 777777777777777777777, 777777777777777777777, 999999999999999999999, 777777777777777777777]) == 999999999999999999998999999999999999999999777777777777777777777777777777777777777777999999999999999999999777777777777777777777", "assert multiple_to_single([999999999999999999999, 99999, 888888888888888888888]) == 99999999999999999999999999888888888888888888888", "assert multiple_to_single([99999, 1000000, 777777777777777777777, 999999999999999999999, 777777777777777777778, 999999999999999999999, 999999999999999999999]) == 999991000000777777777777777777777999999999999999999999777777777777777777778999999999999999999999999999999999999999999", "assert multiple_to_single([1000000, 999999, 999999, 1000000, 100000, 1000000000000000000000, 99999]) == 10000009999999999991000000100000100000000000000000000099999", "assert multiple_to_single([999999999999999999999, 987654321987654321987654321, 100000, 999999999999999999999, 100000, 999999999999999999998, 100000]) == 999999999999999999999987654321987654321987654321100000999999999999999999999100000999999999999999999998100000", "assert multiple_to_single([999999999999999999999, 100000, 999999999999999999999, 777777777777777777777, 100000]) == 999999999999999999999100000999999999999999999999777777777777777777777100000", "assert multiple_to_single([999999999999999999999, 100001, 999999999999999999999, 987654321987654321987654321, 888888888888888888888, 999999999999999999999, 100000, 999999999999999999999]) == 999999999999999999999100001999999999999999999999987654321987654321987654321888888888888888888888999999999999999999999100000999999999999999999999", "assert multiple_to_single([999999999999999999999, 888888888888888888888]) == 999999999999999999999888888888888888888888", "assert multiple_to_single([999999999999999999999, 888888888888888888887, 888888888888888888888, 888888888888888888888]) == 999999999999999999999888888888888888888887888888888888888888888888888888888888888888", "assert multiple_to_single([999999999999999999999, 99999, 999999999999999999999, 777777777777777777777, 777777777777777777778, 999999999999999999999, 999999999999999999999]) == 99999999999999999999999999999999999999999999999777777777777777777777777777777777777777778999999999999999999999999999999999999999999", "assert multiple_to_single([999999999999999999999, 99998, 999999999999999999999, 777777777777777777777]) == 99999999999999999999999998999999999999999999999777777777777777777777", "assert multiple_to_single([999999, 8, 100000]) == 9999998100000", "assert multiple_to_single([999999999999999999999, 777777777777777777776, 999999999999999999999, 1000000000000000000000]) == 9999999999999999999997777777777777777777769999999999999999999991000000000000000000000", "assert multiple_to_single([888888888888888888888, 888888888888888888888, 888888888888888888888, 888888888888888888888]) == 888888888888888888888888888888888888888888888888888888888888888888888888888888888888", "assert multiple_to_single([987654321987654321987654322, 987654321987654321987654322]) == 987654321987654321987654322987654321987654321987654322", "assert multiple_to_single([8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 9, 9, 9]) == 899999999999989999999999999989999", "assert multiple_to_single([999998, 99998, 99999, 888888888888888888888]) == 9999989999899999888888888888888888888", "assert multiple_to_single([999999999999999999999, 1000000000000000000000, 777777777777777777777, 777777777777777777778, 999999999999999999999, 999999999999999999999, 777777777777777777777]) == 9999999999999999999991000000000000000000000777777777777777777777777777777777777777778999999999999999999999999999999999999999999777777777777777777777", "assert multiple_to_single([1000000, 99999, 987654321987654321987654321, 1000000, 99999]) == 100000099999987654321987654321987654321100000099999", "assert multiple_to_single([987654321987654321987654322, 987654321987654321987654322, 987654321987654321987654322]) == 987654321987654321987654322987654321987654321987654322987654321987654321987654322", "assert multiple_to_single([8, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 100000, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 9, 9, 9]) == 89999999999998910000099999999999998999", "assert multiple_to_single([999999999999999999999, 888888888888888888888, 987654321987654321987654322, 777777777777777777777]) == 999999999999999999999888888888888888888888987654321987654321987654322777777777777777777777", "assert multiple_to_single([999999999999999999999, 987654321987654321987654321, 100000, 999999999999999999999, 999999999999999999998, 100000, 100000]) == 999999999999999999999987654321987654321987654321100000999999999999999999999999999999999999999998100000100000", "assert multiple_to_single([777777777777777777777, 123456789123456789123456789, 777777777777777777776]) == 777777777777777777777123456789123456789123456789777777777777777777776", "assert multiple_to_single([999999999999999999999, 123456789123456789123456789, 999999999999999999999, 777777777777777777777]) == 999999999999999999999123456789123456789123456789999999999999999999999777777777777777777777" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the first adverb and their positions in a given sentence.\nassert find_adverb_position(\"clearly!! we can see the sky\")==(0, 7, 'clearly')\nYour code should pass the test:\nassert find_adverb_position(\"clearly!! we can see the sky\")==(0, 7, 'clearly')", "test_list": [ "assert find_adverb_position(\"clearly!! we can see the sky\")==(0, 7, 'clearly')", "assert find_adverb_position(\"seriously!! there are many roses\")==(0, 9, 'seriously')", "assert find_adverb_position(\"unfortunately!! sita is going to home\")==(0, 13, 'unfortunately')" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the surface area of a cube of a given size.\nassert surfacearea_cube(5)==150\nYour code should pass the test:\nassert surfacearea_cube(5)==150", "test_list": [ "assert surfacearea_cube(5)==150", "assert surfacearea_cube(3)==54", "assert surfacearea_cube(10)==600", "assert surfacearea_cube(-3) == 54", "assert surfacearea_cube(-2.5) == 37.5", "assert surfacearea_cube(4.87) == 142.3014", "assert surfacearea_cube(0.25) == 0.375", "assert surfacearea_cube(-1.5) == 13.5", "assert surfacearea_cube(1000000000) == 6000000000000000000", "assert surfacearea_cube(1e-07) == 6e-14", "assert surfacearea_cube(-3.14159) == 59.21752636859999", "assert surfacearea_cube(0) == 0", "assert surfacearea_cube(2.5) == 37.5", "assert surfacearea_cube(-10.75) == 693.375", "assert surfacearea_cube(1000.99) == 6011885.880600001", "assert surfacearea_cube(0.5) == 1.5", "assert surfacearea_cube(-0.5) == 1.5", "assert surfacearea_cube(0.1) == 0.06000000000000001", "assert surfacearea_cube(-0.1) == 0.06000000000000001", "assert surfacearea_cube(7.5) == 337.5", "assert surfacearea_cube(-7.5) == 337.5", "assert surfacearea_cube(-100) == 60000", "assert surfacearea_cube(1000000000.0) == 6e+18", "assert surfacearea_cube(1e-09) == 6.000000000000001e-18", "assert surfacearea_cube(-0.7833397694106897) == 3.6817271660423554", "assert surfacearea_cube(0.8494504982876602) == 4.329396894246925", "assert surfacearea_cube(0.15352390338434846) == 0.14141753346220057", "assert surfacearea_cube(-1.5921304345343799) == 15.209275923423798", "assert surfacearea_cube(649.4568442171686) == 2530765.155003142", "assert surfacearea_cube(-98) == 57624", "assert surfacearea_cube(1213822087.9025333) == 8.840184366480391e+18", "assert surfacearea_cube(-3.3073827123371813) == 65.6326824352011", "assert surfacearea_cube(-0.7173157124933989) == 3.087250988339475", "assert surfacearea_cube(0.060867338964320276) == 0.02222899771558477", "assert surfacearea_cube(0.14202999273585748) == 0.12103511301928638", "assert surfacearea_cube(0.07731273407773312) == 0.035863553103445654", "assert surfacearea_cube(0.21845268051821995) == 0.28632944175357283", "assert surfacearea_cube(-0.7897050637830042) == 3.7418045265871123", "assert surfacearea_cube(-2.077650969935703) == 25.899801317248606", "assert surfacearea_cube(-51) == 15606", "assert surfacearea_cube(0.48099036515089505) == 1.388110388207948", "assert surfacearea_cube(-3.6650740669567794) == 80.59660749767464", "assert surfacearea_cube(-53) == 16854", "assert surfacearea_cube(-13.991843109620316) == 1174.6300416253769", "assert surfacearea_cube(-2) == 24", "assert surfacearea_cube(-54) == 17496", "assert surfacearea_cube(-4.224549503602699) == 107.08091105033886", "assert surfacearea_cube(-11.5925721122433) == 806.3263690653664", "assert surfacearea_cube(834.4099469283142) == 4177439.7571974727", "assert surfacearea_cube(-1.362652227511529) == 11.14092655885279", "assert surfacearea_cube(0.669095102959225) == 2.6861295408240955", "assert surfacearea_cube(-1.1124744378873135) == 7.425596249716164", "assert surfacearea_cube(99) == 58806", "assert surfacearea_cube(-0.7225210145234627) == 3.132219698568083", "assert surfacearea_cube(2.9408787220495345) == 51.89260594682222", "assert surfacearea_cube(True) == 6", "assert surfacearea_cube(79.42277112345812) == 37847.85943757528", "assert surfacearea_cube(6.424249164056521) == 247.62586393128547", "assert surfacearea_cube(-1.4304272670642526) == 12.276732998165441", "assert surfacearea_cube(-7.783795864228866) == 363.5248683359184", "assert surfacearea_cube(-55) == 18150", "assert surfacearea_cube(-5.895708615626183) == 208.5562804822128", "assert surfacearea_cube(-3.2831281220684794) == 64.6735815955014", "assert surfacearea_cube(-1) == 6", "assert surfacearea_cube(-99) == 58806", "assert surfacearea_cube(-1.7101417197726843) == 17.547508210242444", "assert surfacearea_cube(-2.27164824673296) == 30.962314541309592", "assert surfacearea_cube(False) == 0", "assert surfacearea_cube(-0.8123412262207785) == 3.9593896069072687", "assert surfacearea_cube(-0.0862816333496792) == 0.044667121520930844", "assert surfacearea_cube(-56) == 18816", "assert surfacearea_cube(96.86102612940118) == 56292.35029704323", "assert surfacearea_cube(3.150457377596041) == 59.55229012829594", "assert surfacearea_cube(1.3491782276693538) == 10.921691340102113", "assert surfacearea_cube(-6.622554416660341) == 263.14936200976433", "assert surfacearea_cube(-0.8740457687240922) == 4.583736034946936", "assert surfacearea_cube(-1.2506691418209748) == 9.385039813819281", "assert surfacearea_cube(-1.6834766016684863) == 17.004560810191652", "assert surfacearea_cube(-0.88077825995143) == 4.654622059218413", "assert surfacearea_cube(-5.283993759870942) == 167.52354032613033", "assert surfacearea_cube(1.317025041202332e-07) == 1.0407329754924026e-13", "assert surfacearea_cube(-3.371613058891193) == 68.20664771331376", "assert surfacearea_cube(-10.694700345005673) == 686.2596928167868", "assert surfacearea_cube(-0.770562557059889) == 3.562599926056048", "assert surfacearea_cube(92.37966491121615) == 51204.01493465149", "assert surfacearea_cube(2.155625055096069) == 27.88031626894759", "assert surfacearea_cube(999999999) == 5999999988000000006", "assert surfacearea_cube(-52) == 16224", "assert surfacearea_cube(0.2348918214522808) == 0.33104500671102094", "assert surfacearea_cube(-1.8441850039935714) == 20.406109973728615", "assert surfacearea_cube(-0.17181241425157523) == 0.17711703414572935", "assert surfacearea_cube(0.528043166028691) == 1.672977511137622", "assert surfacearea_cube(-2.8178101657048966) == 47.64032477969914", "assert surfacearea_cube(-0.1026154716805201) == 0.06317961016929373", "assert surfacearea_cube(-27.177579261950612) == 4431.724887237648", "assert surfacearea_cube(-1.3887345698294844) == 11.571502232636899", "assert surfacearea_cube(0.27433384840036557) == 0.45155436226892853", "assert surfacearea_cube(-0.8287577161233002) == 4.121036112203452", "assert surfacearea_cube(0.09411992864949742) == 0.05315136581391891", "assert surfacearea_cube(3.7280094428014032) == 83.38832643369858", "assert surfacearea_cube(-1.7309883161021529) == 17.977923302893", "assert surfacearea_cube(650.2971930104544) == 2537318.635423657", "assert surfacearea_cube(-2.4035389795800386) == 34.66199775816392", "assert surfacearea_cube(-0.0906065143363286) == 0.04925724264107592", "assert surfacearea_cube(-2.798971522040114) == 47.00544948714932", "assert surfacearea_cube(-0.8051303292507048) == 3.8894090824760896", "assert surfacearea_cube(-0.9283454987422104) == 5.17095219020954", "assert surfacearea_cube(-1.685988421113601) == 17.055341736774796", "assert surfacearea_cube(-7.563181339792204) == 343.210271871486", "assert surfacearea_cube(0.11067389399020672) == 0.07349226486573308", "assert surfacearea_cube(7.447501343369524) == 332.79165755694515", "assert surfacearea_cube(-8.562451124993594) == 439.89341560742434", "assert surfacearea_cube(-34) == 6936", "assert surfacearea_cube(-1.1119968344584181) == 7.419221759073255", "assert surfacearea_cube(26) == 4056", "assert surfacearea_cube(-1.5655892787150538) == 14.706418737765135", "assert surfacearea_cube(2.4582707902800376) == 36.25857167006424", "assert surfacearea_cube(29) == 5046", "assert surfacearea_cube(-1.9700898710134198) == 23.28752459921804", "assert surfacearea_cube(-14.996207385575758) == 1349.3174157071815", "assert surfacearea_cube(5.945011428956811e-08) == 2.120589653425626e-14", "assert surfacearea_cube(0.6821813827747135) == 2.792228634026521", "assert surfacearea_cube(0.47296433668740345) == 1.342171582668933", "assert surfacearea_cube(-1.9118829776343407) == 21.931779121007715" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to perform index wise multiplication of tuple elements in the given two tuples.\nassert index_multiplication(((1, 3), (4, 5), (2, 9), (1, 10)),((6, 7), (3, 9), (1, 1), (7, 3)) ) == ((6, 21), (12, 45), (2, 9), (7, 30))\nYour code should pass the test:\nassert index_multiplication(((1, 3), (4, 5), (2, 9), (1, 10)),((6, 7), (3, 9), (1, 1), (7, 3)) ) == ((6, 21), (12, 45), (2, 9), (7, 30))", "test_list": [ "assert index_multiplication(((1, 3), (4, 5), (2, 9), (1, 10)),((6, 7), (3, 9), (1, 1), (7, 3)) ) == ((6, 21), (12, 45), (2, 9), (7, 30))", "assert index_multiplication(((2, 4), (5, 6), (3, 10), (2, 11)),((7, 8), (4, 10), (2, 2), (8, 4)) ) == ((14, 32), (20, 60), (6, 20), (16, 44))", "assert index_multiplication(((3, 5), (6, 7), (4, 11), (3, 12)),((8, 9), (5, 11), (3, 3), (9, 5)) ) == ((24, 45), (30, 77), (12, 33), (27, 60))", "assert index_multiplication(((1, 1), (2, 2), (3, 3), (4, 4)), ((5, 5), (6, 6), (7, 7), (8, 8))) == ((5, 5), (12, 12), (21, 21), (32, 32))", "assert index_multiplication((), ()) == ()", "assert index_multiplication(((1.5, 2.25), (3.75, 4.5), (6.25, 7.5)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75))) == ((0.75, 1.6875), (5.625, 5.625), (15.625, 20.625))", "assert index_multiplication(((True, False), (False, True), (True, True)), ((False, False), (True, True), (False, True))) == ((0, 0), (0, 1), (0, 1))", "assert index_multiplication(((1, 2), (3, 4), (5, 6)), ((7, 8), (9, 10))) == ((7, 16), (27, 40))", "assert index_multiplication(((1.5, -2.25), (-3.75, 4.5)), ((-0.5, 0.75), (1.5, -1.25))) == ((-0.75, -1.6875), (-5.625, -5.625))", "assert index_multiplication(((True, False), (False, True)), ((False, True), (True, False))) == ((0, 0), (0, 0))", "assert index_multiplication(((1.5, -2.25), (-3.75, 4.5)), ((1.5, -1.25),)) == ((2.25, 2.8125),)", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5)), ((1.5, -1.25),)) == ((4.125, 2.8125),)", "assert index_multiplication(((1.5, -1.25), (1.5, -1.25)), ((1.5, -1.25),)) == ((2.25, 1.5625),)", "assert index_multiplication((), ((-3.75, 4.5),)) == ()", "assert index_multiplication(((-3.75, 4.5),), ((-3.75, 4.5),)) == ((14.0625, 20.25),)", "assert index_multiplication(((False, True),), ((False, True), (True, False))) == ((0, 1),)", "assert index_multiplication(((True, False), (False, True), (False, True)), ((False, True), (True, False))) == ((0, 0), (0, 0))", "assert index_multiplication(((-3.75, 4.5),), ()) == ()", "assert index_multiplication(((1.5, -2.25),), ((1.5, -2.25), (-3.75, 4.5))) == ((2.25, 5.0625),)", "assert index_multiplication(((1.5, -1.25),), ((2.75, -2.25), (-3.75, 4.5))) == ((4.125, 2.8125),)", "assert index_multiplication(((1.5, -2.25), (-3.75, 4.5), (1.5, -2.25), (-3.75, 4.5)), ((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75))) == ((-0.75, -1.6875), (-5.625, -5.625), (-0.75, -1.6875))", "assert index_multiplication(((True, False), (False, True)), ((False, True), (True, False), (True, False))) == ((0, 0), (0, 0))", "assert index_multiplication((), ((1.5, -2.25), (-3.75, 4.5))) == ()", "assert index_multiplication(((False, True), (False, True)), ((False, True), (True, False))) == ((0, 1), (0, 0))", "assert index_multiplication(((True, False), (True, True)), ((False, True), (True, False), (True, False))) == ((0, 0), (1, 0))", "assert index_multiplication(((True, True), (False, True)), ((True, True), (False, True))) == ((1, 1), (0, 1))", "assert index_multiplication(((False, True),), ((False, True),)) == ((0, 1),)", "assert index_multiplication(((1.5, -1.25),), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5))) == ((4.125, 2.8125),)", "assert index_multiplication(((-3.75, 4.5), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5))) == ((-10.3125, -10.125), (14.0625, 20.25))", "assert index_multiplication(((True, False), (False, True), (False, True)), ((False, True), (True, False), (True, False))) == ((0, 0), (0, 0), (0, 0))", "assert index_multiplication(((1, 1), (2, 2), (3, 3), (4, 4), (1, 1)), ((5, 5), (6, 6), (7, 7), (8, 8))) == ((5, 5), (12, 12), (21, 21), (32, 32))", "assert index_multiplication(((True, False), (False, True)), ((False, True), (True, False), (False, True))) == ((0, 0), (0, 0))", "assert index_multiplication(((1.5, 2.25), (6.25, 7.5)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75))) == ((0.75, 1.6875), (9.375, 9.375))", "assert index_multiplication(((1.5, -1.25),), ((1.5, -1.25),)) == ((2.25, 1.5625),)", "assert index_multiplication(((False, True), (False, True), (False, True)), ((False, True), (False, True))) == ((0, 1), (0, 1))", "assert index_multiplication(((1.5, -2.25),), ((1.5, -2.25), (-3.75, 4.901681689356799), (-3.75, 4.5))) == ((2.25, 5.0625),)", "assert index_multiplication(((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75)), ((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75))) == ((0.25, 0.5625), (2.25, 1.5625), (0.25, 0.5625))", "assert index_multiplication(((2.75, -0.5), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5))) == ((7.5625, 1.125), (14.0625, 20.25), (14.0625, 20.25), (14.0625, 20.25))", "assert index_multiplication(((False, True),), ()) == ()", "assert index_multiplication(((1.5, -1.25), (1.5, -1.25)), ((1.5, -1.25), (1.5, -1.25))) == ((2.25, 1.5625), (2.25, 1.5625))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25)), ((1.5, -1.25),)) == ((4.125, 2.8125),)", "assert index_multiplication(((1.5, -1.25),), ((1.5, -1.25), (1.5, -1.25))) == ((2.25, 1.5625),)", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (2.75, -2.25)), ((2.75, -2.25), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((-2.25, 0.75), (1.5, -1.25), (-0.5, 0.75)), ((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75), (-0.5, 0.75))) == ((1.125, 0.5625), (2.25, 1.5625), (0.25, 0.5625))", "assert index_multiplication(((1.5, -2.25), (-3.75, 4.5), (1.5, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5)), ((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75))) == ((-0.75, -1.6875), (-5.625, -5.625), (-0.75, -1.6875))", "assert index_multiplication(((False, True), (True, False)), ((False, True),)) == ((0, 1),)", "assert index_multiplication(((2.75, -0.5), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5))) == ((7.5625, 1.125), (14.0625, 20.25), (14.0625, 20.25), (14.0625, 20.25))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25))) == ((7.5625, 5.0625), (14.0625, 20.25), (7.5625, 5.0625))", "assert index_multiplication(((-3.75, 4.5), (-3.75, 4.5)), ((-3.75, 4.5), (-3.75, 4.5))) == ((14.0625, 20.25), (14.0625, 20.25))", "assert index_multiplication(((1.5, -1.25), (-0.5, 0.75)), ((1.5, -1.25), (-0.5, 0.75))) == ((2.25, 1.5625), (0.25, 0.5625))", "assert index_multiplication(((0.5, 0.75), (1.5, 1.25), (2.5, 2.75)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75))) == ((0.25, 0.5625), (2.25, 1.5625), (6.25, 7.5625))", "assert index_multiplication(((1.884494549830971, -2.25), (2.75, -2.25), (-3.75, 4.5), (2.75, -2.25)), ((1.884494549830971, -2.25), (2.75, -2.25), (-3.75, 4.5), (2.75, -2.25), (2.75, -2.25))) == ((3.551319708342634, 5.0625), (7.5625, 5.0625), (14.0625, 20.25), (7.5625, 5.0625))", "assert index_multiplication(((1.5, -2.25),), ((1.5, -2.25),)) == ((2.25, 5.0625),)", "assert index_multiplication(((1, 2), (3, 4), (5, 6)), ((1, 2), (3, 4), (6, 6))) == ((1, 4), (9, 16), (30, 36))", "assert index_multiplication((), ((1.5, -2.25),)) == ()", "assert index_multiplication(((5, 5), (6, 6), (7, 7), (8, 8), (8, 8)), ((5, 5), (6, 6), (7, 7), (8, 8), (8, 8))) == ((25, 25), (36, 36), (49, 49), (64, 64), (64, 64))", "assert index_multiplication(((1.5, 2.25), (6.25, 6.646053579170405)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75))) == ((0.75, 1.6875), (9.375, 8.307566973963006))", "assert index_multiplication(((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75), (-0.5, 0.75)), ((-0.5, 0.75), (1.5, -1.25), (7.5, 0.75), (-0.5, 0.75))) == ((0.25, 0.5625), (2.25, 1.5625), (-3.75, 0.5625), (0.25, 0.5625))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (-3.75, 6.129668563099175), (2.75, -2.25)), ((2.75, -2.25), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((True, False), (False, True), (True, True)), ((False, False), (True, True), (False, True), (False, False))) == ((0, 0), (0, 1), (0, 1))", "assert index_multiplication(((-3.75, 4.5),), ((-3.75, 0.5), (-3.75, 4.5))) == ((14.0625, 2.25),)", "assert index_multiplication(((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75)), ((-0.5, 0.75), (-0.5, 0.75), (0.9219506936109663, -1.25))) == ((0.25, 0.5625), (-0.75, -0.9375), (-0.46097534680548313, -0.9375))", "assert index_multiplication(((1.5, -2.25),), ((1.5, -2.25), (-3.75, 4.901681689356799))) == ((2.25, 5.0625),)", "assert index_multiplication(((-0.5, 0.75), (1.5, -1.25)), ((-0.5, 0.75), (1.5, -1.25))) == ((0.25, 0.5625), (2.25, 1.5625))", "assert index_multiplication(((5, 5), (6, 6), (7, 7), (8, 8), (7, 7), (8, 8)), ((5, 5), (6, 6), (7, 7), (8, 8), (7, 7), (8, 8))) == ((25, 25), (36, 36), (49, 49), (64, 64), (49, 49), (64, 64))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25), (2.75, -2.25)), ((1.5, -1.25),)) == ((4.125, 2.8125),)", "assert index_multiplication(((1.5, 2.25), (6.25, 7.5), (6.25, 7.5)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75), (0.5, 0.75))) == ((0.75, 1.6875), (9.375, 9.375), (15.625, 20.625))", "assert index_multiplication(((False, True), (True, False)), ((False, True), (True, False))) == ((0, 1), (1, 0))", "assert index_multiplication((), ((1.5, -1.25), (1.5, -1.25))) == ()", "assert index_multiplication(((True, False), (False, True), (True, True)), ((True, False), (False, True), (True, True))) == ((1, 0), (0, 1), (1, 1))", "assert index_multiplication(((1.5, -1.25), (-0.5, 0.75)), ((1.5, -1.25), (-0.5, 0.75), (-0.5, 0.75))) == ((2.25, 1.5625), (0.25, 0.5625))", "assert index_multiplication(((1.5, -1.25), (1.5, -1.25)), ((2.75, -2.25), (-3.75, 4.5))) == ((4.125, 2.8125), (-5.625, -5.625))", "assert index_multiplication(((1.5, -1.25), (-0.5, 0.75)), ((1.5, -1.25), (-0.5, 0.75), (1.5, -1.25))) == ((2.25, 1.5625), (0.25, 0.5625))", "assert index_multiplication(((1.5, 2.25), (6.25, 6.646053579170405), (6.25, 6.646053579170405)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75))) == ((0.75, 1.6875), (9.375, 8.307566973963006), (15.625, 18.276647342718615))", "assert index_multiplication(((1.884494549830971, -2.25), (2.75, -2.25), (-3.75, 4.5), (2.75, -2.25)), ((1.884494549830971, -2.25), (2.75, -2.25), (-3.75, 4.5), (2.75, -2.25), (2.75, 6.25), (2.75, -2.25), (2.75, -2.25))) == ((3.551319708342634, 5.0625), (7.5625, 5.0625), (14.0625, 20.25), (7.5625, 5.0625))", "assert index_multiplication(((1.5, -1.25),), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5))) == ((4.125, 2.8125),)", "assert index_multiplication(((6.646053579170405, 1.25), (0.5, 0.75), (1.5, 1.25), (2.5, 2.75), (1.5, 1.25)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75), (1.5, 1.25))) == ((3.3230267895852026, 0.9375), (0.75, 0.9375), (3.75, 3.4375), (3.75, 3.4375))", "assert index_multiplication(((-3.75, 4.5),), ((2.75, -2.25), (-3.75, 4.5))) == ((-10.3125, -10.125),)", "assert index_multiplication(((3, 4), (6, 6)), ((1, 2), (3, 4), (6, 6))) == ((3, 8), (18, 24))", "assert index_multiplication(((-2.25, 0.75), (1.5, -1.25), (-0.5, 0.75)), ((-2.25, 0.75), (1.5, -1.25), (-0.5, 0.75))) == ((5.0625, 0.5625), (2.25, 1.5625), (0.25, 0.5625))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (2.75, -2.25), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75), (-0.5, 0.75), (1.5, -1.25)), ((-0.5, 0.75), (1.5, -1.25), (7.5, 0.75), (-0.5, 0.75))) == ((0.25, 0.5625), (2.25, 1.5625), (-3.75, 0.5625), (0.25, 0.5625))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((1.5, 2.25), (6.25, 6.646053579170405), (6.25, 6.646053579170405)), ((1.5, 2.25), (6.25, 6.646053579170405), (6.25, 6.646053579170405))) == ((2.25, 5.0625), (39.0625, 44.170028177203754), (39.0625, 44.170028177203754))", "assert index_multiplication(((1.5, -2.25), (-3.75, 4.5)), ((1.5, -2.25), (-3.75, 4.5))) == ((2.25, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((-0.5, 0.75), (-0.5, 0.75)), ((1.5, -1.25), (-0.5, 0.75), (-0.5, 0.75))) == ((-0.75, -0.9375), (0.25, 0.5625))", "assert index_multiplication(((0.5, 0.75), (1.5, 1.25), (2.5, 2.75), (0.5, 0.75)), ((0.5, 0.75), (1.5, 1.25), (2.5, 2.75), (0.5, 0.75), (2.5, 2.75))) == ((0.25, 0.5625), (2.25, 1.5625), (6.25, 7.5625), (0.25, 0.5625))", "assert index_multiplication(((1.5, -2.25), (-3.75, 4.5), (1.5, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5)), ((1.5, -2.25), (-3.75, 4.5), (1.5, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5))) == ((2.25, 5.0625), (14.0625, 20.25), (2.25, 5.0625), (14.0625, 20.25), (14.0625, 20.25), (14.0625, 20.25))", "assert index_multiplication(((5, 5), (6, 6), (7, 7), (8, 8), (7, 7), (8, 8)), ((5, 5), (7, 7), (8, 8), (7, 7), (8, 8))) == ((25, 25), (42, 42), (56, 56), (56, 56), (56, 56))", "assert index_multiplication(((1.5, -1.25),), ((-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5))) == ((-5.625, -5.625),)", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5))) == ((-10.3125, -10.125), (14.0625, 20.25), (14.0625, 20.25), (14.0625, 20.25), (14.0625, 20.25))", "assert index_multiplication(((False, True), (True, False), (False, True)), ((False, True),)) == ((0, 1),)", "assert index_multiplication(((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75), (1.5, -1.25)), ((-0.5, 0.75), (1.5, -1.25), (-0.5, 0.75), (-0.5, 0.75), (1.5, -1.25))) == ((0.25, 0.5625), (2.25, 1.5625), (0.25, 0.5625), (-0.75, -0.9375))", "assert index_multiplication(((False, True), (False, True)), ((False, True), (True, False), (False, True))) == ((0, 1), (0, 0))", "assert index_multiplication(((False, True), (True, False), (False, True)), ((False, True), (True, False), (False, True))) == ((0, 1), (1, 0), (0, 1))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25)), ((3.735487464883578, -2.25), (-3.75, 4.5), (2.75, -2.25), (-3.75, 4.5))) == ((10.27259052842984, 5.0625), (14.0625, 20.25), (7.5625, 5.0625))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5), (-3.75, 4.5), (2.75, -2.25)), ((1.5, -1.25),)) == ((4.125, 2.8125),)", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5)), ((1.0743535791751668, -1.25),)) == ((2.954472342731709, 2.8125),)", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25)), ((2.75, -2.25), (-3.75, 4.5))) == ((7.5625, 5.0625), (14.0625, 20.25))", "assert index_multiplication(((-3.75, 4.5), (2.75, -2.25), (-3.75, 4.5)), ((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25))) == ((-10.3125, -10.125), (-10.3125, -10.125), (-10.3125, -10.125))", "assert index_multiplication(((1, 2), (1, 10), (3, 4), (5, 6)), ((1, 2), (1, 10), (3, 4), (5, 6))) == ((1, 4), (1, 100), (9, 16), (25, 36))", "assert index_multiplication(((1.5, 2.25), (6.25, 7.5)), ((0.5, 0.75), (2.5, 3.582638962127178), (1.5, 1.25), (2.5, 2.75), (1.5, 1.25))) == ((0.75, 1.6875), (15.625, 26.869792215953836))", "assert index_multiplication(((-3.75, 4.5), (-3.75, 4.5)), ((-3.75, 4.5), (0.9219506936109663, 4.5), (-3.75, 4.5))) == ((14.0625, 20.25), (-3.4573151010411234, 20.25))", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (-3.75, 4.5)), ((2.75, -2.25),)) == ((7.5625, 5.0625),)", "assert index_multiplication(((1.5, 2.25), (3.75, 0.5), (6.25, 7.5), (6.25, 7.5)), ((1.5, 2.25), (3.75, 4.5), (6.25, 7.5), (6.25, 7.5))) == ((2.25, 5.0625), (14.0625, 2.25), (39.0625, 56.25), (39.0625, 56.25))", "assert index_multiplication(((-3.75, 4.5), (-3.75, 4.5)), ((-3.75, 4.5),)) == ((14.0625, 20.25),)", "assert index_multiplication(((False, False), (False, True)), ((False, True),)) == ((0, 0),)", "assert index_multiplication(((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25)), ((2.75, -2.25), (-3.75, 4.5), (2.75, -2.25))) == ((7.5625, 5.0625), (14.0625, 20.25), (7.5625, 5.0625))" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the occurence of all elements of list in a tuple.\nassert count_Occurrence(('a', 'a', 'c', 'b', 'd'),['a', 'b'] ) == 3\nYour code should pass the test:\nassert count_Occurrence(('a', 'a', 'c', 'b', 'd'),['a', 'b'] ) == 3", "test_list": [ "assert count_Occurrence(('a', 'a', 'c', 'b', 'd'),['a', 'b'] ) == 3", "assert count_Occurrence((1, 2, 3, 1, 4, 6, 7, 1, 4),[1, 4, 7]) == 6", "assert count_Occurrence((1,2,3,4,5,6),[1,2]) == 2", "assert count_Occurrence((), []) == 0", "assert count_Occurrence((1, 1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 18", "assert count_Occurrence((), [1, 2, 3, 4, 5]) == 0", "assert count_Occurrence((1, 2, 3, 4, 5, 6), [1, 2, 3, 4, 5, 6, 7, 8, 9]) == 6", "assert count_Occurrence((2, 3, 4, 5, 6), [1, 2, 3, 4, 5, 6, 7, 8, 9]) == 5", "assert count_Occurrence((4, -46, 64, 3, 3, 1, 67), [1, 2, 3, 4, 5]) == 4", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 16", "assert count_Occurrence(('OX', -48.873894802445946), []) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), []) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, True, False, False, True, False, True, True]) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67), [1, 2, 3, 4, 5]) == 4", "assert count_Occurrence(('OOXX', -48.873894802445946), [8, 87, 1, 3, 34, 79, -32, 28, False]) == 0", "assert count_Occurrence((), [1, 2, False, 3, 4, 5]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 16", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3), [1, 2, 2, 3, 3]) == 14", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OOXX'), []) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, True, False, False, True, False, True, True, True]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [1, 2, 2, 3, 3]) == 14", "assert count_Occurrence((5, 1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 16", "assert count_Occurrence((-48.873894802445946, 89.4498825238312, -48.873894802445946, -48.873894802445946, -63.30134785965016, -83.39947209096098, -48.873894802445946, -48.873894802445946, -28.62571567417322, -71.79928701608094), [72, -86, 79]) == 0", "assert count_Occurrence((3, 1, 1, 2, 2, 2, 0, 3, 3, 3), [1, 2, 2, 3, 3]) == 16", "assert count_Occurrence(('OOXX', -48.873894802445946, -48.873894802445946), [8, 87, 1, 3, 34, 79, -32, 28, False]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3), [1, 2, 2, 3, 3, 2]) == 17", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3), [7, 1, 2, 2, 3, 3]) == 14", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67, -46), [1, 2, 3, 4, 5]) == 4", "assert count_Occurrence(('OOXX', -48.873894802445946), [8, 87, 1, 3, 34, 79, -32, 29, 2, False]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OX', -48.873894802445946), [8, 87, 1, 4, 3, 34, 79, -32, 28, False, 0, -32]) == 0", "assert count_Occurrence((3, 2, 1, 2, 2, 2, 0, 3, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 20", "assert count_Occurrence(('OOXX', -28.62571567417322), [False, True, True, True, False, False, True, False, True, True]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OX', -48.873894802445946), [8, 87, 1, 4, 3, 34, 79, -32, 28, False, 0, 79, -32, 8]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [True, True, True, True, False, True, True, False]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [2, 2, 3, 3]) == 12", "assert count_Occurrence((1, 1, 2, 2, 7, 2, 0, 3, 3, 3), [1, 2, 2, 3, 3]) == 14", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, True, False, False, True, True, False, True, True, True]) == 0", "assert count_Occurrence((4, -46, 3, 9, 3, 1, 67), [1, 2, 3, 4, 5, 5]) == 4", "assert count_Occurrence(('OOXX',), ['OX', 'mYim', '', 'YdH', 'Qnm']) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67, 3), [1, 2, 3, 4, 5]) == 5", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3), [1, 2, 2, 3, 3, 2, 3]) == 20", "assert count_Occurrence(('OOXX', -83.39947209096098, -48.873894802445946), [False, True, True, True, False, False, True, True, False, True, True, True]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 18", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [2, 3, 3]) == 9", "assert count_Occurrence((1, 2, 3, 4, 5, 6), [1, 3, 3, 4, 5, 6, 7, 8, 9]) == 6", "assert count_Occurrence((3, 1, 1, 2, 2, 0, 3, 3, 3), [1, 2, 2, 5, 3, 3]) == 14", "assert count_Occurrence(('OOXX', 'OOmYimXX', -48.873894802445946, 'OOXX'), []) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67), [1, 2, 3, 9, 4, 5]) == 5", "assert count_Occurrence(('OOXQnm', -122.20173217485707, -48.873894802445946), [False, True, True, False, False, True, True, False, True, True, True]) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67, -46, 64), [1, 2, 3, 4, 5]) == 4", "assert count_Occurrence((4, -46, 64, 9, 3, 1, 67), [1, 2, 3, 4, 5]) == 3", "assert count_Occurrence((2, 3, 4, 5, 6), [1, 3, 3, 4, 5, 6, 7, 8, 9]) == 5", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, True, False, False, True, False, True, False, True]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OOXX'), ['OOXQnm', 'IUtxz', 'sEegPEBDio', 'OOXQnm', 'IUtxz']) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 2, 3, 3, 2]) == 16", "assert count_Occurrence(('OOOXX', -48.873894802445946), []) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, True, False, False, True, True, False, True, True, True, True]) == 0", "assert count_Occurrence(('', -48.873894802445946), [False, True, True, True, False, False, True, True, False, True, True, True]) == 0", "assert count_Occurrence(('sEegPEBDio', -122.20173217485707, -122.20173217485707), [False, -86, 70, 4, 34, -73, -35, 2, -46]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 3, 3, 2]) == 13", "assert count_Occurrence(('OOXX', -48.873894802445946, -48.76647231712022, 'OOXX'), []) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, -48.873894802445946), [8, 87, 1, 34, 79, -32, 28, False]) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67, 3, 1), [1, 2, 3, 4, 5]) == 6", "assert count_Occurrence((1, 2, 3, 4, 5, 6), [87, 1, 3, 3, 4, 5, 6, 7, 8, 9]) == 6", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3, 1), [1, 1, 2, 2, 3, 3]) == 18", "assert count_Occurrence((4, -46, 64, 4, 9, 3, 1, 67, -46), [1, 2, 3, 4, 5]) == 4", "assert count_Occurrence(('OOOXXX', 'OOXX', -48.873894802445946, 'OX'), [8, 87, 1, 4, 3, 34, 79, -32, 28, False, 0, -32, 0]) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67), [1, 2, 3, 9, 4, 5, 9]) == 6", "assert count_Occurrence(('OOXX', -28.62571567417322), [False, True, True, True, False, False, True, True, False, True, True, True, True]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 2, 3, 3, 2, 1]) == 18", "assert count_Occurrence((1, 2, 3, 4, 5, 6), [87, 1, 3, 3, 4, 5, 8, 6, 7, 8, 9]) == 6", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67, 67), [1, 2, 3, 9, 4, 5, 9, 5]) == 6", "assert count_Occurrence((1, 1, 2, 2, 3, 3, 3, 3), [1, 1, 2, 2, 3, 3]) == 16", "assert count_Occurrence((-48.873894802445946, 'OOXX', -48.873894802445946, -48.873894802445946), [8, 87, 1, 34, 79, -32, 28, False]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OOXX'), ['OOXQnm', 'IUtxz', 'sEegPsEBDio', 'sEegPEBDio', 'OOXQnm', 'IUtxz', 'sEegPEBDio']) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [True, True, True, True, False, True, True]) == 0", "assert count_Occurrence((1, 1, 2, 2, 0, 3, 3, 3), [1, 2, 3, 2, 5, 3, 3]) == 15", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, False, True, False, True, True]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, -48.873894802445946), [False, True, True, True, False, False, True, False, True, True, True, False, True]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [False, True, True, False, False, True, False, True, False, True]) == 0", "assert count_Occurrence((4, -46, 3, 9, 3, 1, 67, 9), [1, 2, 3, 4, 5, 5]) == 4", "assert count_Occurrence(('', -48.873894802445946), [False, True, True, True, False, False, True, True, False, True, True, True, True]) == 0", "assert count_Occurrence(('OOOXXX', 'OOXX', -48.873894802445946, 'OX'), [8, 5, 87, 1, 4, 3, 34, 79, -32, 28, False, 0, -32, 0, 1]) == 0", "assert count_Occurrence((), [34.05391711465737, -2.906905516918812, 89.4498825238312, 65.92462636516228, 39.94639777324457]) == 0", "assert count_Occurrence((-48.873894802445946, 'OOXX', 'mYim', -48.873894802445946, -48.873894802445946), [8, 87, 1, 34, 79, -32, 28, False]) == 0", "assert count_Occurrence((1, 1, 2, 2, 2, 0, 3, 3, 3), [1, 2, 2, 3, 3, 2, 3, 3]) == 23", "assert count_Occurrence(('OOXX', -48.873894802445946, 'YdH', 'OOXX'), ['OOXQnm', 'IUtxz', 'sEegPEBDio', 'OOXQnm', 'IUtxz']) == 0", "assert count_Occurrence(('OX', -48.873894802445946, 'OX'), [72.37354833611045, 'TewyJp', False, 'sEegPsEBDio', None]) == 0", "assert count_Occurrence(('OOXX',), ['OX', 'mYim', 'YdHQnm', '', 'YdH', 'Qnm']) == 0", "assert count_Occurrence((4, 3, 9, 3, 1, 67, 9), [1, 2, 3, 4, 5, 5]) == 4", "assert count_Occurrence((4, -46, 64, 9, 3, 1, 67, 64), [1, 2, 3, 4, 5]) == 3", "assert count_Occurrence(('OOXX', 'sEegPsEBDio', -48.873894802445946, -48.873894802445946), [8, 87, 1, 34, 79, 28, False]) == 0", "assert count_Occurrence((4, -46, 64, 3, 9, 3, 1, 67, -46, 64, 1), [1, 4, 3, 4, 5]) == 6", "assert count_Occurrence((1, 1, 1, 2, 2, 2, 3, 3, 3), [1, 1, 2, 2, 3]) == 15", "assert count_Occurrence(('OOXX', -28.62571567417322), [False, True, True, True, False, False, True, True, False, True, True, True, True, False]) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946), [8, 87, 1, 3, 34, 79, 29, 2, False]) == 0", "assert count_Occurrence(('OOXX', -28.62571567417322, -28.62571567417322), [False, True, True, True, False, False, True, True, False, True, True, True, True, False]) == 0", "assert count_Occurrence((1, 1, 0, 2, 2, 2, 0, 3, 3, 3), [7, 2, 2, 3, 3, 3]) == 15", "assert count_Occurrence(('sEegPEBDio', -122.20173217485707, -122.20173217485707, -122.20173217485707), [False, -86, 70, 4, 34, -73, -35, 2, -46]) == 0", "assert count_Occurrence((3, 1, 1, 2, 2, 2, 0, 3, 3, 3, 3), [1, 2, 2, 3, 3]) == 18", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OOXX'), ['OOXQnm', 'IUtxz', 'sEegPsEBDio', 'sEegPEBDio', 'OOXQnm', 'IOOXXxz', 'sEegPEBDio']) == 0", "assert count_Occurrence((-122.20173217485707, -48.873894802445946), [False, True, True, False, False, True, True, False, True, True, True]) == 0", "assert count_Occurrence(('OOX', 'OOmYimXX', -48.873894802445946, 'OOXX'), []) == 0", "assert count_Occurrence(('OOXX', -48.873894802445946, 'OOXX'), [2, -10, 87]) == 0", "assert count_Occurrence((3, 1, 1, 2, 2, 0, 3, 3, 3), [1, 2, 3, 2, 5, 3, 3, 2]) == 20", "assert count_Occurrence((1, 2, 3, 4, 5, 6), [87, 1, 3, 3, 4, 5, 8, 8, 6, 7, 8, 9]) == 6", "assert count_Occurrence(('OOXX', -122.20173217485707, -48.873894802445946), [True, True, True, True, False, True, True, False]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find cubes of individual elements in a list.\nassert cube_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1, 8, 27, 64, 125, 216, 343, 512, 729, 1000]\nYour code should pass the test:\nassert cube_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1, 8, 27, 64, 125, 216, 343, 512, 729, 1000]", "test_list": [ "assert cube_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1, 8, 27, 64, 125, 216, 343, 512, 729, 1000]", "assert cube_nums([10,20,30])==([1000, 8000, 27000])", "assert cube_nums([12,15])==([1728, 3375])", "assert cube_nums([]) == []", "assert cube_nums([-1, 0, 1, -2, 3, -4]) == [-1, 0, 1, -8, 27, -64]", "assert cube_nums([1, 2.5, 3, -4.7, 5, 6, 7, -8.9]) == [1, 15.625, 27, -103.82300000000001, 125, 216, 343, -704.969]", "assert cube_nums([-5, -10, -15]) == [-125, -1000, -3375]", "assert cube_nums([1000000]) == [1000000000000000000]", "assert cube_nums([1, 2.5, 3, -4.7, 5, 6, 7, -8.72172602966587]) == [1, 15.625, 27, -103.82300000000001, 125, 216, 343, -663.4486595428851]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, -8.9, 24.753109546228686]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, -704.969, 15166.636967209068]", "assert cube_nums([0, -5, -10, -15]) == [0, -125, -1000, -3375]", "assert cube_nums([0, -5, -15]) == [0, -125, -3375]", "assert cube_nums([0, 0, -5, -15]) == [0, 0, -125, -3375]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, -8.9]) == [1, 15.625, -103.82300000000001, 125, 343, 343, -704.969]", "assert cube_nums([1000000, 1000000]) == [1000000000000000000, 1000000000000000000]", "assert cube_nums([0, 0, -5, -15, 0]) == [0, 0, -125, -3375, 0]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, -8.9, -8.9]) == [1, 15.625, -103.82300000000001, 125, 343, 343, -704.969, -704.969]", "assert cube_nums([0, 0, -5, -15, -15]) == [0, 0, -125, -3375, -3375]", "assert cube_nums([0, 0, -4, -15]) == [0, 0, -64, -3375]", "assert cube_nums([-6, 0, 0, -5, -15, 0]) == [-216, 0, 0, -125, -3375, 0]", "assert cube_nums([1000000, 1000000, 1000000, 1000000]) == [1000000000000000000, 1000000000000000000, 1000000000000000000, 1000000000000000000]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, 2.6465487078850902, -8.9]) == [1, 15.625, -103.82300000000001, 125, 343, 343, 18.537009558026593, -704.969]", "assert cube_nums([1, -5, 2.5, 3, -4.7, 5, 6, -4.584526506846036, 7, -8.72172602966587]) == [1, -125, 15.625, 27, -103.82300000000001, 125, 216, -96.35704306985083, 343, -663.4486595428851]", "assert cube_nums([0, -4, -15]) == [0, -64, -3375]", "assert cube_nums([0, -4, 0, -5, -15, -15]) == [0, -64, 0, -125, -3375, -3375]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, -8.9, 24.753109546228686, 83.25955683011043]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, -704.969, 15166.636967209068, 577168.0535614366]", "assert cube_nums([24.82021742307545, -8.9, 83.70113458577298, 2.5, -2.7576561022677204, -8.201037222609227, 24.753109546228686, -8.9, 24.753109546228686]) == [15290.3259904969, -704.969, 586400.0989918504, 15.625, -20.9710568501592, -551.5772550112853, 15166.636967209068, -704.969, 15166.636967209068]", "assert cube_nums([-6, 2.5, 3, -2.7576561022677204, 5, 6, 7, -8.72172602966587]) == [-216, 15.625, 27, -20.9710568501592, 125, 216, 343, -663.4486595428851]", "assert cube_nums([0, -4, 0, -10, -5, -15, -15]) == [0, -64, 0, -1000, -125, -3375, -3375]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, 2.6465487078850902, -8.9, -4.7]) == [1, 15.625, -103.82300000000001, 125, 343, 343, 18.537009558026593, -704.969, -103.82300000000001]", "assert cube_nums([7, -5, -10, -15, -10]) == [343, -125, -1000, -3375, -1000]", "assert cube_nums([-1, -5, 1, 3, -4]) == [-1, -125, 1, 27, -64]", "assert cube_nums([1, -4, 0, -10, -5, -15]) == [1, -64, 0, -1000, -125, -3375]", "assert cube_nums([24.82021742307545, -8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, 24.753109546228686, -8.9, 24.753109546228686]) == [15290.3259904969, -704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, 15166.636967209068, -704.969, 15166.636967209068]", "assert cube_nums([1, 2.5, -4.7, 7, 5, 7, 6, 2.6465487078850902, -8.9, -4.7]) == [1, 15.625, -103.82300000000001, 343, 125, 343, 216, 18.537009558026593, -704.969, -103.82300000000001]", "assert cube_nums([1, 2.2169763918581937, -4.7, 7, 5, 7, 6, 2.836490197182278, -8.9, 6]) == [1, 10.896404208352577, -103.82300000000001, 343, 125, 343, 216, 22.82148291540266, -704.969, 216]", "assert cube_nums([-5]) == [-125]", "assert cube_nums([1, 2.5, 2.6465487078850902, 7, 5, 6, 2.6465487078850902, -8.9, -4.7]) == [1, 15.625, 18.537009558026593, 343, 125, 216, 18.537009558026593, -704.969, -103.82300000000001]", "assert cube_nums([-6, 0, 0, -5, -15, 0, -5]) == [-216, 0, 0, -125, -3375, 0, -125]", "assert cube_nums([0, 0, -4, -4, 0]) == [0, 0, -64, -64, 0]", "assert cube_nums([-5, -10]) == [-125, -1000]", "assert cube_nums([-1, -5, -15, -15]) == [-1, -125, -3375, -3375]", "assert cube_nums([1, -4, 0, -10, -4, -15]) == [1, -64, 0, -1000, -64, -3375]", "assert cube_nums([-5, -5]) == [-125, -125]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, 2.6465487078850902, -8.9, 5]) == [1, 15.625, -103.82300000000001, 125, 343, 343, 18.537009558026593, -704.969, 125]", "assert cube_nums([-1, 0, -2, 3, -5]) == [-1, 0, -8, 27, -125]", "assert cube_nums([1, -4, -9, 0, -10, -15]) == [1, -64, -729, 0, -1000, -3375]", "assert cube_nums([1000000, 1000000, 1000000, 1000000, 1000000]) == [1000000000000000000, 1000000000000000000, 1000000000000000000, 1000000000000000000, 1000000000000000000]", "assert cube_nums([0, 0, -5, -15, -1]) == [0, 0, -125, -3375, -1]", "assert cube_nums([24.82021742307545, -8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, 24.753109546228686, -8.9, -4.584526506846036, 24.753109546228686]) == [15290.3259904969, -704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, 15166.636967209068, -704.969, -96.35704306985083, 15166.636967209068]", "assert cube_nums([1, -5, 2.5, -2, -4.7, 5, 6, -4.584526506846036, 7, -8.72172602966587, 2.5]) == [1, -125, 15.625, -8, -103.82300000000001, 125, 216, -96.35704306985083, 343, -663.4486595428851, 15.625]", "assert cube_nums([0, -5, -15, -1]) == [0, -125, -3375, -1]", "assert cube_nums([-15, 1.8501344536549909, 3, -2.7576561022677204, 5, 6, 7, -8.72172602966587, 3]) == [-3375, 6.333005603236757, 27, -20.9710568501592, 125, 216, 343, -663.4486595428851, 27]", "assert cube_nums([-6, 0, -4]) == [-216, 0, -64]", "assert cube_nums([0, -15, -1, -1, -1]) == [0, -3375, -1, -1, -1]", "assert cube_nums([-6, 1000000, 0, 0, -5, -15, 0, -5]) == [-216, 1000000000000000000, 0, 0, -125, -3375, 0, -125]", "assert cube_nums([-8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, 24.753109546228686, -8.9, -4.584526506846036, 24.753109546228686]) == [-704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, 15166.636967209068, -704.969, -96.35704306985083, 15166.636967209068]", "assert cube_nums([24.82021742307545, -8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, 14.182649846232774, -8.9]) == [15290.3259904969, -704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, 2852.8053635460533, -704.969]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, 2.6465487078850902, -8.9, 5, -8.9]) == [1, 15.625, -103.82300000000001, 125, 343, 343, 18.537009558026593, -704.969, 125, -704.969]", "assert cube_nums([-1, -5, -15, -2, -15, -5]) == [-1, -125, -3375, -8, -3375, -125]", "assert cube_nums([1, -5, 2.5, 3, -4.7, -2, -4, 6, -4.584526506846036, 7, -8.72172602966587]) == [1, -125, 15.625, 27, -103.82300000000001, -8, -64, 216, -96.35704306985083, 343, -663.4486595428851]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, -8.9, 24.753109546228686, 83.25955683011043, -8.9]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, -704.969, 15166.636967209068, 577168.0535614366, -704.969]", "assert cube_nums([3, -5, -10]) == [27, -125, -1000]", "assert cube_nums([7, 0, 0, -5, -15]) == [343, 0, 0, -125, -3375]", "assert cube_nums([0, 0, -5, -1, -15, 0]) == [0, 0, -125, -1, -3375, 0]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, 24.753109546228686, 83.25955683011043]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, 15166.636967209068, 577168.0535614366]", "assert cube_nums([1, 2.5, -4.7, 5, 8, 7, 2.6465487078850902, -8.9, 5, -8.9]) == [1, 15.625, -103.82300000000001, 125, 512, 343, 18.537009558026593, -704.969, 125, -704.969]", "assert cube_nums([7, 6, -5, -10, -15, -10]) == [343, 216, -125, -1000, -3375, -1000]", "assert cube_nums([1, -5, 2.5, -2, -4.7, 6, 6, -4.584526506846036, 7, 2.5, -4.584526506846036, -4.7]) == [1, -125, 15.625, -8, -103.82300000000001, 216, 216, -96.35704306985083, 343, 15.625, -96.35704306985083, -103.82300000000001]", "assert cube_nums([1, 2.5, -4.7, 4, 7, 7, -8.9]) == [1, 15.625, -103.82300000000001, 64, 343, 343, -704.969]", "assert cube_nums([1, -5, 2.5, -2, 1.8501344536549909, -4, 6, 6, -4.584526506846036, 7, 2.5, -4.584526506846036, -4.7]) == [1, -125, 15.625, -8, 6.333005603236757, -64, 216, 216, -96.35704306985083, 343, 15.625, -96.35704306985083, -103.82300000000001]", "assert cube_nums([24.82021742307545, 47.032765210131785, -8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, 24.753109546228686, -8.9, -4.584526506846036, 24.753109546228686, -4.584526506846036]) == [15290.3259904969, 104040.28645453702, -704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, 15166.636967209068, -704.969, -96.35704306985083, 15166.636967209068, -96.35704306985083]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, 2.6465487078850902, -8.9, 4]) == [1, 15.625, -103.82300000000001, 125, 343, 343, 18.537009558026593, -704.969, 64]", "assert cube_nums([0, 0, -5, -15, 0, 0]) == [0, 0, -125, -3375, 0, 0]", "assert cube_nums([0, -1, -5, -15]) == [0, -1, -125, -3375]", "assert cube_nums([1, 2.5, -4.7, 5, 5, 7, 7, 2.6465487078850902, -8.9, 4]) == [1, 15.625, -103.82300000000001, 125, 125, 343, 343, 18.537009558026593, -704.969, 64]", "assert cube_nums([-1, -5, 1, -15, 3, -4]) == [-1, -125, 1, -3375, 27, -64]", "assert cube_nums([-6, 1000000, 0, 0, -15, 0, -5]) == [-216, 1000000000000000000, 0, 0, -3375, 0, -125]", "assert cube_nums([0, 0, -5, -15, 0, 0, 0, 0]) == [0, 0, -125, -3375, 0, 0, 0, 0]", "assert cube_nums([-8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, 24.753109546228686, -8.9, -4.409923735811289, 24.753109546228686, 83.70113458577298]) == [-704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, 15166.636967209068, -704.969, -85.76167149624284, 15166.636967209068, 586400.0989918504]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, -8.9, 58.017978656752504, 24.753109546228686, 83.25955683011043, -8.9]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, -704.969, 195293.4968521427, 15166.636967209068, 577168.0535614366, -704.969]", "assert cube_nums([0, -15, -5, -15, 0, 0, 0, 0]) == [0, -3375, -125, -3375, 0, 0, 0, 0]", "assert cube_nums([-8.9, 47.032765210131785, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, -8.9, 24.753109546228686, 83.25955683011043, 24.753109546228686]) == [-704.969, 104040.28645453702, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, -704.969, 15166.636967209068, 577168.0535614366, 15166.636967209068]", "assert cube_nums([1, 2.5, -4.7, 5, 7, 7, 2.6465487078850902, -8.9, -4.7, 2.6465487078850902]) == [1, 15.625, -103.82300000000001, 125, 343, 343, 18.537009558026593, -704.969, -103.82300000000001, 18.537009558026593]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -2.7576561022677204, 24.753109546228686, -8.9, 24.753109546228686, -8.9, -8.9]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -20.9710568501592, 15166.636967209068, -704.969, 15166.636967209068, -704.969, -704.969]", "assert cube_nums([1, -5, 2.5, -2, -4.7, 5, 6, -4.584526506846036, 7, -8.72172602966587, 2.5, 2.5]) == [1, -125, 15.625, -8, -103.82300000000001, 125, 216, -96.35704306985083, 343, -663.4486595428851, 15.625, 15.625]", "assert cube_nums([1000000, 1000000, 1000000]) == [1000000000000000000, 1000000000000000000, 1000000000000000000]", "assert cube_nums([-6, 1000000, 0, 0, 0, -5, 1000000]) == [-216, 1000000000000000000, 0, 0, 0, -125, 1000000000000000000]", "assert cube_nums([-1, -5, 1, -15, 3, -4, -5]) == [-1, -125, 1, -3375, 27, -64, -125]", "assert cube_nums([0, -16, 0, -5, -15, -16]) == [0, -4096, 0, -125, -3375, -4096]", "assert cube_nums([-8.9, 60.14886561626176, 2.5, 83.25955683011043, -3.4333260030736827, 24.753109546228686, -8.9, 58.017978656752504, 24.753109546228686, 83.25955683011043, -8.9]) == [-704.969, 217611.7409295406, 15.625, 577168.0535614366, -40.47111114850837, 15166.636967209068, -704.969, 195293.4968521427, 15166.636967209068, 577168.0535614366, -704.969]", "assert cube_nums([1, 2.5, -4.7, 7, 7, 2.6465487078850902, -8.9]) == [1, 15.625, -103.82300000000001, 343, 343, 18.537009558026593, -704.969]", "assert cube_nums([-4, 0, -10, -4, -15]) == [-64, 0, -1000, -64, -3375]", "assert cube_nums([24.82021742307545, 24.753109546228686, 83.70113458577298, 2.5, -1.6259727483177557, -8.72172602966587, -8.201037222609227, 14.182649846232774, -8.9]) == [15290.3259904969, 15166.636967209068, 586400.0989918504, 15.625, -4.298726229416711, -663.4486595428851, -551.5772550112853, 2852.8053635460533, -704.969]", "assert cube_nums([7, -5, 1000000, -10, -15, -10]) == [343, -125, 1000000000000000000, -1000, -3375, -1000]", "assert cube_nums([-40, -15]) == [-64000, -3375]", "assert cube_nums([0, 0, -5, -15, 0, -5, 0, 0]) == [0, 0, -125, -3375, 0, -125, 0, 0]", "assert cube_nums([0, 0, -5, -15, 0, -4, 0]) == [0, 0, -125, -3375, 0, -64, 0]", "assert cube_nums([-6, 0, 0, -15, 0, -5]) == [-216, 0, 0, -3375, 0, -125]", "assert cube_nums([-1, -5, 1, -15, 4, 1, -4]) == [-1, -125, 1, -3375, 64, 1, -64]", "assert cube_nums([24.82021742307545, -8.9, 83.70113458577298, 2.5, -1.8071120625507624, -8.201037222609227, -8.9, 24.753109546228686]) == [15290.3259904969, -704.969, 586400.0989918504, 15.625, -5.901402747473851, -551.5772550112853, -704.969, 15166.636967209068]", "assert cube_nums([24.82021742307545, -8.9, 83.70113458577298, 2.5, -8.201037222609227, -8.9, 24.753109546228686]) == [15290.3259904969, -704.969, 586400.0989918504, 15.625, -551.5772550112853, -704.969, 15166.636967209068]", "assert cube_nums([1, 0, -5, -15, -1]) == [1, 0, -125, -3375, -1]", "assert cube_nums([0, -15, -1, -1]) == [0, -3375, -1, -1]", "assert cube_nums([-8.72115684988007, 60.14886561626176, 2.5, 83.45789457940089, -2.7576561022677204, 24.753109546228686, -8.9, 24.753109546228686]) == [-663.3187780532812, 217611.7409295406, 15.625, 581302.6104720804, -20.9710568501592, 15166.636967209068, -704.969, 15166.636967209068]", "assert cube_nums([-1, -5, -15, 3, -4, -5]) == [-1, -125, -3375, 27, -64, -125]", "assert cube_nums([7, 0, -5, -15, 0]) == [343, 0, -125, -3375, 0]", "assert cube_nums([1, -4, -8, 0, -10, 1]) == [1, -64, -512, 0, -1000, 1]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate the sum of perrin numbers.\nassert cal_sum(9) == 49\nYour code should pass the test:\nassert cal_sum(9) == 49", "test_list": [ "assert cal_sum(9) == 49", "assert cal_sum(10) == 66", "assert cal_sum(11) == 88", "assert cal_sum(-5) == 5", "assert cal_sum(-4) == 5", "assert cal_sum(-6) == 5", "assert cal_sum(-7) == 5", "assert cal_sum(True) == 3", "assert cal_sum(False) == 3", "assert cal_sum(-8) == 5", "assert cal_sum(-3) == 5", "assert cal_sum(-9) == 5", "assert cal_sum(-10) == 5", "assert cal_sum(-11) == 5", "assert cal_sum(-12) == 5", "assert cal_sum(75) == 5886726723", "assert cal_sum(74) == 4443758530", "assert cal_sum(73) == 3354494068", "assert cal_sum(72) == 2532232653", "assert cal_sum(76) == 7798252600", "assert cal_sum(71) == 1911525875", "assert cal_sum(-13) == 5", "assert cal_sum(57) == 37295139", "assert cal_sum(-14) == 5", "assert cal_sum(77) == 10330485255", "assert cal_sum(56) == 28153267", "assert cal_sum(-2) == 5", "assert cal_sum(-46) == 5", "assert cal_sum(-16) == 5", "assert cal_sum(-15) == 5", "assert cal_sum(70) == 1442968191", "assert cal_sum(-17) == 5", "assert cal_sum(-1) == 5", "assert cal_sum(0) == 3", "assert cal_sum(-47) == 5", "assert cal_sum(-60) == 5", "assert cal_sum(55) == 21252272", "assert cal_sum(78) == 13684979325", "assert cal_sum(-48) == 5", "assert cal_sum(54) == 16042865", "assert cal_sum(-61) == 5", "assert cal_sum(-49) == 5", "assert cal_sum(58) == 49405541", "assert cal_sum(59) == 65448408", "assert cal_sum(-18) == 5", "assert cal_sum(-19) == 5", "assert cal_sum(53) == 12110400", "assert cal_sum(-62) == 5", "assert cal_sum(-20) == 5", "assert cal_sum(-21) == 5", "assert cal_sum(-63) == 5", "assert cal_sum(79) == 18128737857", "assert cal_sum(-45) == 5", "assert cal_sum(-87) == 5", "assert cal_sum(-88) == 5", "assert cal_sum(-89) == 5", "assert cal_sum(-22) == 5", "assert cal_sum(-44) == 5", "assert cal_sum(-59) == 5", "assert cal_sum(1) == 3", "assert cal_sum(-86) == 5", "assert cal_sum(-50) == 5", "assert cal_sum(-51) == 5", "assert cal_sum(-90) == 5", "assert cal_sum(2) == 5", "assert cal_sum(95) == 1630580875000", "assert cal_sum(-23) == 5", "assert cal_sum(60) == 86700682", "assert cal_sum(-85) == 5", "assert cal_sum(96) == 2160059765853", "assert cal_sum(-91) == 5", "assert cal_sum(-93) == 5", "assert cal_sum(-94) == 5", "assert cal_sum(-84) == 5", "assert cal_sum(-92) == 5", "assert cal_sum(-24) == 5", "assert cal_sum(52) == 9141870", "assert cal_sum(97) == 2861469960548", "assert cal_sum(94) == 1230889085546", "assert cal_sum(-52) == 5", "assert cal_sum(93) == 929170680305", "assert cal_sum(92) == 701410194693", "assert cal_sum(-83) == 5", "assert cal_sum(9) == 49", "assert cal_sum(61) == 114853951", "assert cal_sum(62) == 152149092", "assert cal_sum(50) == 5209405", "assert cal_sum(-53) == 5", "assert cal_sum(8) == 37", "assert cal_sum(49) == 3932463", "assert cal_sum(-25) == 5", "assert cal_sum(69) == 1089264460", "assert cal_sum(-66) == 5", "assert cal_sum(3) == 8", "assert cal_sum(4) == 10", "assert cal_sum(99) == 5021529726403", "assert cal_sum(-33) == 5", "assert cal_sum(51) == 6900993", "assert cal_sum(-32) == 5", "assert cal_sum(63) == 201554635", "assert cal_sum(100) == 6652110601405", "assert cal_sum(-82) == 5", "assert cal_sum(-95) == 5", "assert cal_sum(-54) == 5" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract specified size of strings from a given list of string values.\nassert extract_string(['Python', 'list', 'exercises', 'practice', 'solution'] ,8)==['practice', 'solution']\nYour code should pass the test:\nassert extract_string(['Python', 'list', 'exercises', 'practice', 'solution'] ,8)==['practice', 'solution']", "test_list": [ "assert extract_string(['Python', 'list', 'exercises', 'practice', 'solution'] ,8)==['practice', 'solution']", "assert extract_string(['Python', 'list', 'exercises', 'practice', 'solution'] ,6)==['Python']", "assert extract_string(['Python', 'list', 'exercises', 'practice', 'solution'] ,9)==['exercises']", "assert extract_string([], 5) == []", "assert extract_string([], 0) == []", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnop', 'abcde'], 5) == ['lmnop', 'abcde']", "assert extract_string(['abc', 'defg', 'hijkl', 'mnopqr'], 3) == ['abc']", "assert extract_string([], 3) == []", "assert extract_string(['abc', 'defg', 'mnopqr'], 3) == ['abc']", "assert extract_string(['abc', 'defg', 'hijkl'], 0) == []", "assert extract_string([], 6) == []", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnop', 'abcde'], 0) == []", "assert extract_string(['abc', 'defg', 'hijkl'], 3) == ['abc']", "assert extract_string(['hijkl', 'KpROouj', 'xyz', 'vRyohLy'], 5) == ['hijkl']", "assert extract_string(['abc', 'defg', 'hijkl', 'defg'], 6) == []", "assert extract_string(['abcddef', 'xyz', 'pqr', 'lmnop', 'abcde', 'abcde'], 5) == ['lmnop', 'abcde', 'abcde']", "assert extract_string(['abc', 'defg', 'hijkl', 'defg'], 3) == ['abc']", "assert extract_string(['abc', 'defg', 'mnopqr', 'hijkl'], 3) == ['abc']", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnabc', 'abcde'], 5) == ['abcde']", "assert extract_string(['abc', 'defg', 'hijkl', 'abc'], 0) == []", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnop', 'abcddef'], 5) == ['lmnop']", "assert extract_string(['abc', 'hijkl', 'defg', 'abc'], 3) == ['abc', 'abc']", "assert extract_string(['hijkl', 'KpROouj', 'xyz', 'vRyohLy', 'hijkl'], 5) == ['hijkl', 'hijkl']", "assert extract_string(['abc', 'defg', 'deffg', 'mnopqr', 'hijkl'], 3) == ['abc']", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'defg', 'abc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnop', 'abcde'], 3) == ['xyz', 'pqr']", "assert extract_string(['abc', 'defg', 'mnopqr'], 4) == ['defg']", "assert extract_string(['abcddef', 'xyz', 'pqr', 'lmnop', 'abcde', 'abcde'], 4) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'defg', 'abc', 'abc', 'abc', 'abc'], 4) == ['defg']", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['abc', 'defg'], -1) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'hijkl'], 3) == ['abc']", "assert extract_string(['deffg', 'defg'], 3) == []", "assert extract_string(['deffg', 'defg', 'deffg'], 3) == []", "assert extract_string(['abc', 'defg', 'dedfg', 'hijkl', 'defg'], 6) == []", "assert extract_string(['defg', 'mnopqr'], 4) == ['defg']", "assert extract_string(['abc', 'defg', 'mnopqr', 'hijkl'], 4) == ['defg']", "assert extract_string(['abc', 'hijkl', 'mnopqr'], 3) == ['abc']", "assert extract_string(['abc', 'defg', 'dedfg', 'hijkl', 'defg', 'abc'], 6) == []", "assert extract_string(['xyz', 'pqr', 'lmnop', 'abcde', 'abcde'], 4) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'abc', 'defg'], 0) == []", "assert extract_string(['hijkl', 'xyz', 'vRyohLy', 'hijkl', 'KpROouj'], 5) == ['hijkl', 'hijkl']", "assert extract_string(['ddeffg', 'defg', 'deffg'], 3) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'mnopqr', 'mnopqr', 'abc'], 0) == []", "assert extract_string(['abc', 'KpROouj', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['abc', 'defg', 'mnopqr', 'hijkl'], 2) == []", "assert extract_string(['abc', 'defg', 'xyzabc', 'hijkl'], 0) == []", "assert extract_string(['abc', 'pqr', 'defg', 'mnopqr', 'hijkl'], -1) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'abc'], 1) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], -1) == []", "assert extract_string([], 2) == []", "assert extract_string(['abc', 'defg', 'hijklmnabcl', 'abc'], 1) == []", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnop', 'defg'], 3) == ['xyz', 'pqr']", "assert extract_string(['abc', 'KpROouj', 'hijkldefg', 'hijkl', 'abbc', 'defg', 'abc', 'aabcdec', 'babc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['hijkl', 'abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], -2) == []", "assert extract_string(['abc', 'hijkl', 'abc', 'defg'], 0) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'defg'], 1) == []", "assert extract_string(['abc', 'hijkl', 'mnopqr'], 4) == []", "assert extract_string(['abc', 'defg', 'dedfg', 'hijkl', 'dedfddeffgg', 'defg', 'abc'], 6) == []", "assert extract_string(['abc', 'defg', 'xyzabc', 'hijkl'], 4) == ['defg']", "assert extract_string(['xz', 'hijkl', 'KpROouj', 'xyz', 'vRyohLy'], 5) == ['hijkl']", "assert extract_string(['abc', 'defg', 'hijkl', 'defg'], -1) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 1) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'defg', 'abc', 'abc', 'aabcdec'], 3) == ['abc', 'abc', 'abc']", "assert extract_string(['abc', 'defg', 'xyzabc', 'hijkl'], 2) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'defg'], 0) == []", "assert extract_string(['abc', 'defg', 'mnopqr'], 5) == []", "assert extract_string(['abc', 'mnopqr', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'dgefg', 'abc', 'abc', 'abc', 'abc'], -1) == []", "assert extract_string(['deffg', 'defg', 'deffg'], 2) == []", "assert extract_string(['ddeffg', 'abc'], 3) == ['abc']", "assert extract_string(['abc', 'mnopqr', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 2) == []", "assert extract_string(['defgabcddef', 'abc', 'defg', 'mnopqr'], 3) == ['abc']", "assert extract_string(['hijkl', 'mnopqr', 'hijkl'], 4) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'hijk', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], -2) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 4) == ['abbc', 'defg', 'babc']", "assert extract_string(['hijkl', 'xyz', 'vRyohLy', 'hijkl', 'KpROouj', 'vRyohLy'], 5) == ['hijkl', 'hijkl']", "assert extract_string(['abc', 'defg', 'xyzabc', 'hijkl'], 5) == ['hijkl']", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'abc', 'babc', 'abc', 'abc'], 5) == ['hijkl']", "assert extract_string(['abc', 'defg', 'dedfg', 'hijkl', 'defg'], 5) == ['dedfg', 'hijkl']", "assert extract_string(['hijk', 'abc', 'defg', 'hijkl', 'defg'], 3) == ['abc']", "assert extract_string(['abcddef', 'xyz', 'pqr', 'lmnop', 'abcde', 'abcde', 'lmnop'], 3) == ['xyz', 'pqr']", "assert extract_string(['abc', 'defg', 'dedfg', 'hijkl', 'defg', 'abc', 'dedfg'], 6) == []", "assert extract_string(['abc', 'defg', 'abc', 'abc'], -1) == []", "assert extract_string(['abc', 'hijkl', 'hijklmnabcl', 'abc', 'defg'], 0) == []", "assert extract_string(['abc', 'mnopqr', 'hijkl', 'dgefg', 'abc', 'abc', 'abc', 'abc', 'dgefg'], -1) == []", "assert extract_string(['defg', 'defddeffgg', 'xyzabc', 'hijkl'], 5) == ['hijkl']", "assert extract_string([], -1) == []", "assert extract_string(['abc', 'defg', 'deffg', 'mnopqr', 'hijkl'], 4) == ['defg']", "assert extract_string(['deffg', 'defg', 'deffg'], 1) == []", "assert extract_string(['abc', 'defg', 'deffg', 'mnopqr', 'hijhijklkl'], 3) == ['abc']", "assert extract_string(['abc', 'defg', 'deffg', 'hijkl', 'defg'], 2) == []", "assert extract_string(['abc', 'defg', 'xyzabc', 'hijkl'], 6) == ['xyzabc']", "assert extract_string(['abc', 'hijkl', 'defg'], 3) == ['abc']", "assert extract_string(['ababcdefc', 'defg', 'deffg', 'hijkl', 'defg', 'defg'], 2) == []", "assert extract_string(['abc', 'defg', 'deffg', 'mnopqr', 'hijkl', 'hijkl'], 4) == ['defg']", "assert extract_string(['xz', 'hijkl', 'KpROouj', 'xyz', 'vRyohLy'], 4) == []", "assert extract_string(['hijkl', 'ababcdefc', 'xyz', 'vRyohLy'], 5) == ['hijkl']", "assert extract_string(['abbc', 'abc', 'defg', 'hijklmnabcl', 'abc'], 1) == []", "assert extract_string(['abcdef', 'xyz', 'pqr', 'lmnop', 'defg'], 2) == []", "assert extract_string(['ababcdefc', 'defg', 'deffg', 'hijkl', 'defg', 'defg'], 0) == []", "assert extract_string(['abcddef', 'xyz', 'pqr', 'lmnop', 'abcde', 'ababcdefc', 'lmnop'], 3) == ['xyz', 'pqr']", "assert extract_string(['hijkl', 'abc', 'mnopqr', 'hijkl', 'abbc', 'defg', 'aabbc', 'abc', 'babc', 'abc', 'abc'], 3) == ['abc', 'abc', 'abc', 'abc']", "assert extract_string(['abc', 'defg', 'dedfg', 'hijkl', 'defg'], 4) == ['defg', 'defg']", "assert extract_string(['abc', 'defg', 'hijkl', 'mnopqr'], 1) == []", "assert extract_string(['ddeffg', 'abc'], -2) == []", "assert extract_string(['abc', 'defg', 'hijkl', 'dedfddeffgg', 'abc', 'defg'], 0) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove all whitespaces from the given string.\nassert remove_whitespaces(' Google Flutter ') == 'GoogleFlutter'\nYour code should pass the test:\nassert remove_whitespaces(' Google Flutter ') == 'GoogleFlutter'", "test_list": [ "assert remove_whitespaces(' Google Flutter ') == 'GoogleFlutter'", "assert remove_whitespaces(' Google Dart ') == 'GoogleDart'", "assert remove_whitespaces(' iOS Swift ') == 'iOSSwift'", "assert remove_whitespaces('') == ''", "assert remove_whitespaces('1234567890') == '1234567890'", "assert remove_whitespaces('\\n\\t') == '\\n\\t'", "assert remove_whitespaces(' \\t\\n\\n\\t') == '\\t\\n\\n\\t'", "assert remove_whitespaces('iOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift') == 'iOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift'", "assert remove_whitespaces('This is a long string with multiple spaces') == 'Thisisalongstringwithmultiplespaces'", "assert remove_whitespaces('Google\\u200bDart') == 'Google\\u200bDart'", "assert remove_whitespaces(' \\u180e\\u200b\\u200c\\u200d\\u2060 ') == '\\u180e\\u200b\\u200c\\u200d\\u2060'", "assert remove_whitespaces(' 1234567890 ') == '1234567890'", "assert remove_whitespaces(' \\u180e\\u200b\\u200c\\u200d\\u2060 ') == '\\u180e\\u200b\\u200c\\u200d\\u2060'", "assert remove_whitespaces(' 12384567890 ') == '12384567890'", "assert remove_whitespaces('This is a long string with mltiple spaces') == 'Thisisalongstringwithmltiplespaces'", "assert remove_whitespaces('1234567\\n\\t890') == '1234567\\n\\t890'", "assert remove_whitespaces('1234567') == '1234567'", "assert remove_whitespaces(' \\u180e\\u200b ') == '\\u180e\\u200b'", "assert remove_whitespaces('is') == 'is'", "assert remove_whitespaces(' 12384567890 \\u180e\\u200b ') == '12384567890\\u180e\\u200b'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060 ') == '\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces('string') == 'string'", "assert remove_whitespaces(' 12384567890 \\u180e\\u200b multiple') == '12384567890\\u180e\\u200bmultiple'", "assert remove_whitespaces('multipl') == 'multipl'", "assert remove_whitespaces(' \\u180e\\u200b\\u200c\\u200d ') == '\\u180e\\u200b\\u200c\\u200d'", "assert remove_whitespaces('spacses') == 'spacses'", "assert remove_whitespaces('iss') == 'iss'", "assert remove_whitespaces(' \\u180e\\u200b1234567\\n\\t890\\u200c\\u200d ') == '\\u180e\\u200b1234567\\n\\t890\\u200c\\u200d'", "assert remove_whitespaces('aspacses') == 'aspacses'", "assert remove_whitespaces('31234567890') == '31234567890'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u20601234567890Swift\\u200c\\u200d\\u2060 ') == '\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u20601234567890Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012string34567890Swif9t\\u200c\\u200d\\u2060 ') == '\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012string34567890Swif9t\\u200c\\u200d\\u2060'", "assert remove_whitespaces('iOS\\u180e\\u200b\\u200c\\u200d\\u2060Stwift') == 'iOS\\u180e\\u200b\\u200c\\u200d\\u2060Stwift'", "assert remove_whitespaces('Googgle\\u200bD\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u20601234567890Swift\\u200c\\u200d\\u2060art') == 'Googgle\\u200bD\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u20601234567890Swift\\u200c\\u200d\\u2060art'", "assert remove_whitespaces('hGMmu') == 'hGMmu'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060\\u2060 ') == '\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060\\u2060'", "assert remove_whitespaces('stri') == 'stri'", "assert remove_whitespaces('aspacsesis') == 'aspacsesis'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u20601234567890Swift0\\u200c\\u200d\\u2060 ') == '\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u20601234567890Swift0\\u200c\\u200d\\u2060'", "assert remove_whitespaces('multiple') == 'multiple'", "assert remove_whitespaces('This is p a long string with mltiple spaces') == 'Thisispalongstringwithmltiplespaces'", "assert remove_whitespaces('\\u180e\\u200b\\u200c\\u200d\\u2060') == '\\u180e\\u200b\\u200c\\u200d\\u2060'", "assert remove_whitespaces('mullongtipl') == 'mullongtipl'", "assert remove_whitespaces('\\u180e\\u200b1234567') == '\\u180e\\u200b1234567'", "assert remove_whitespaces(' \\u180e\\u200bi890\\u200c\\u200dOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060 ') == '\\u180e\\u200bi890\\u200c\\u200dOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces('mupl') == 'mupl'", "assert remove_whitespaces('12384567890') == '12384567890'", "assert remove_whitespaces(' 12384567890 \\u180e\\u200b multiple \\u180e\\u200b ') == '12384567890\\u180e\\u200bmultiple\\u180e\\u200b'", "assert remove_whitespaces('tstring') == 'tstring'", "assert remove_whitespaces('iis') == 'iis'", "assert remove_whitespaces(' \\u180e\\u200b12345\\n67\\n\\t890\\u200c\\u200d ') == '\\u180e\\u200b12345\\n67\\n\\t890\\u200c\\u200d'", "assert remove_whitespaces('mutmipl') == 'mutmipl'", "assert remove_whitespaces('iOS\\u180e12345678 \\u180e\\u200bi890\\u200c\\u200dOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060 90\\u200b\\u200c\\u200d\\u2060Swift') == 'iOS\\u180e12345678\\u180e\\u200bi890\\u200c\\u200dOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u206090\\u200b\\u200c\\u200d\\u2060Swift'", "assert remove_whitespaces('\\u180e\\u200d\\u200b\\u200c\\u200d\\u2060') == '\\u180e\\u200d\\u200b\\u200c\\u200d\\u2060'", "assert remove_whitespaces('long') == 'long'", "assert remove_whitespaces('890\\u200c\\u200d') == '890\\u200c\\u200d'", "assert remove_whitespaces('lon') == 'lon'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012s\\u180e\\u200b\\u200c\\u200dtring34567890Swif9t\\u200c\\u200d\\u2060 ') == '\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012s\\u180e\\u200b\\u200c\\u200dtring34567890Swif9t\\u200c\\u200d\\u2060'", "assert remove_whitespaces(' This\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060 ') == 'This\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces('This is a long strin31234567890ltiple spaces') == 'Thisisalongstrin31234567890ltiplespaces'", "assert remove_whitespaces(' \\u180e\\u200b12890\\u200c\\u200c\\u200d ') == '\\u180e\\u200b12890\\u200c\\u200c\\u200d'", "assert remove_whitespaces(' \\u180e\\u200b123\\u200d4567\\n\\t890\\u200c\\u200d ') == '\\u180e\\u200b123\\u200d4567\\n\\t890\\u200c\\u200d'", "assert remove_whitespaces(' 123 ') == '123'", "assert remove_whitespaces('\\u180e\\u200b\\u200c\\u200d') == '\\u180e\\u200b\\u200c\\u200d'", "assert remove_whitespaces('\\u180e\\u200b1\\u180e\\u200b123\\u200d4567234567') == '\\u180e\\u200b1\\u180e\\u200b123\\u200d4567234567'", "assert remove_whitespaces(' \\u180e\\u200b\\u200ciOS\\u180e12345678 \\u180e\\u200bi890\\u200c\\u200dOS \\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012s\\u180e\\u200b\\u200c\\u200dtring34567890Swif9t\\u200c\\u200d\\u2060 \\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060 90\\u200b\\u200c\\u200d\\u2060Swift\\u200d\\u2060 ') == '\\u180e\\u200b\\u200ciOS\\u180e12345678\\u180e\\u200bi890\\u200c\\u200dOS\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012s\\u180e\\u200b\\u200c\\u200dtring34567890Swif9t\\u200c\\u200d\\u2060\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u206090\\u200b\\u200c\\u200d\\u2060Swift\\u200d\\u2060'", "assert remove_whitespaces('67') == '67'", "assert remove_whitespaces('This is a long strin31234567890ltie spaces') == 'Thisisalongstrin31234567890ltiespaces'", "assert remove_whitespaces('\\u180e\\u200bi890\\u200c\\u200dOS') == '\\u180e\\u200bi890\\u200c\\u200dOS'", "assert remove_whitespaces(' \\u180e\\u200b\\u200ciOS\\u180e12345678 \\u180e\\u200bi890\\u200c\\u200dOS \\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012s\\u180e\\u200b\\u200c\\u200dtring34567890Swif9t\\u200c\\u200d\\u2060 \\u180e\\u200b\\u200cThis is p a long string with mltiple spaces\\u200d\\u2060Swift\\u200c\\u200d\\u2060 90\\u200b\\u200c\\u200d\\u2060Swift\\u200d\\u2060 ') == '\\u180e\\u200b\\u200ciOS\\u180e12345678\\u180e\\u200bi890\\u200c\\u200dOS\\u180e\\u200biOS\\u180e\\u200bO\\u200c\\u200d\\u206012s\\u180e\\u200b\\u200c\\u200dtring34567890Swif9t\\u200c\\u200d\\u2060\\u180e\\u200b\\u200cThisispalongstringwithmltiplespaces\\u200d\\u2060Swift\\u200c\\u200d\\u206090\\u200b\\u200c\\u200d\\u2060Swift\\u200d\\u2060'", "assert remove_whitespaces(' \\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060\\u2060 \\u180e\\u200b1\\u180e\\u200b123\\u200d4567234567') == '\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060\\u2060\\u180e\\u200b1\\u180e\\u200b123\\u200d4567234567'", "assert remove_whitespaces('iOS\\u180e\\u200b\\u200c\\u200d\\u2060St') == 'iOS\\u180e\\u200b\\u200c\\u200d\\u2060St'", "assert remove_whitespaces(' \\u180e\\u200b12890\\u200d\\u200c\\u200c\\u200d ') == '\\u180e\\u200b12890\\u200d\\u200c\\u200c\\u200d'", "assert remove_whitespaces('loiisn') == 'loiisn'", "assert remove_whitespaces('This is a long stri spaces') == 'Thisisalongstrispaces'", "assert remove_whitespaces('spaces\\u200d\\u2060Swift\\u200c\\u200d\\u2060') == 'spaces\\u200d\\u2060Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces('This is a long strinmultipl31234567890ltiple spaces') == 'Thisisalongstrinmultipl31234567890ltiplespaces'", "assert remove_whitespaces('h890\\u200c\\u200dGhMmu') == 'h890\\u200c\\u200dGhMmu'", "assert remove_whitespaces('\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swiftmultipl\\u200c\\u200d\\u2060\\u2060') == '\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swiftmultipl\\u200c\\u200d\\u2060\\u2060'", "assert remove_whitespaces(' \\u180e\\u200b123\\u200d4\\n567\\n\\t890\\u200c\\u200d ') == '\\u180e\\u200b123\\u200d4\\n567\\n\\t890\\u200c\\u200d'", "assert remove_whitespaces('This\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060') == 'This\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces(' \\t\\n\\n') == '\\t\\n\\n'", "assert remove_whitespaces('\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swif890\\u200c\\u200dtmultipl\\u200c\\u200d\\u2060\\u2060') == '\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swif890\\u200c\\u200dtmultipl\\u200c\\u200d\\u2060\\u2060'", "assert remove_whitespaces(' 12384567890 \\u180e\\u200b multipleThis\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060\\u180e\\u200b ') == '12384567890\\u180e\\u200bmultipleThis\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060\\u180e\\u200b'", "assert remove_whitespaces('spaces\\u200d\\u2060Swif\\u2060t\\u200cf\\u200d\\u2060') == 'spaces\\u200d\\u2060Swif\\u2060t\\u200cf\\u200d\\u2060'", "assert remove_whitespaces('iOS\\u180eS\\u200b\\u200c\\u200d\\u2060Stwift') == 'iOS\\u180eS\\u200b\\u200c\\u200d\\u2060Stwift'", "assert remove_whitespaces('This i123s a longiOS\\u180e\\u200b\\u200c\\u200d\\u2060St strinmultipl31234567890l tiple spaces') == 'Thisi123salongiOS\\u180e\\u200b\\u200c\\u200d\\u2060Ststrinmultipl31234567890ltiplespaces'", "assert remove_whitespaces('90\\u200b\\u200c\\u200d\\u2060Swift') == '90\\u200b\\u200c\\u200d\\u2060Swift'", "assert remove_whitespaces('strin3p1234567890ltiple') == 'strin3p1234567890ltiple'", "assert remove_whitespaces(' \\u180e\\u200b12345\\n67\\n\\t890\\u200c\\u200d This\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060 ') == '\\u180e\\u200b12345\\n67\\n\\t890\\u200c\\u200dThis\\u180e\\u200biOS\\u180e\\u200b\\u200c\\u200d\\u2060Swift\\u200c\\u200d\\u2060'", "assert remove_whitespaces(' \\u180e\\u200biO0S\\u180e\\u200bO\\u200c\\u200d\\u206012sString34567890Swif9t\\u200c\\u200d\\u2060 ') == '\\u180e\\u200biO0S\\u180e\\u200bO\\u200c\\u200d\\u206012sString34567890Swif9t\\u200c\\u200d\\u2060'", "assert remove_whitespaces('hGMmuiOS\\u180eS\\u200b\\u200c\\u200d\\u2060Stwift') == 'hGMmuiOS\\u180eS\\u200b\\u200c\\u200d\\u2060Stwift'", "assert remove_whitespaces(' \\u180e\\u200b \\u180e\\u200b\\u200c\\u200d\\u2060 \\u200c\\u200d\\u2060 ') == '\\u180e\\u200b\\u180e\\u200b\\u200c\\u200d\\u2060\\u200c\\u200d\\u2060'", "assert remove_whitespaces('iOS\\u180e\\u200b\\u200c\\u200diOS\\u180e\\u200b\\u200c\\u200d\\u2060Stwift\\u2060Swift') == 'iOS\\u180e\\u200b\\u200c\\u200diOS\\u180e\\u200b\\u200c\\u200d\\u2060Stwift\\u2060Swift'", "assert remove_whitespaces('\\u180e\\u200d\\u200b\\u200c\\u200d\\u2060hGMmuiOS\\u180eS\\u200b\\u200c\\u200d\\u2060Stwift') == '\\u180e\\u200d\\u200b\\u200c\\u200d\\u2060hGMmuiOS\\u180eS\\u200b\\u200c\\u200d\\u2060Stwift'", "assert remove_whitespaces('56') == '56'", "assert remove_whitespaces(' 13 ') == '13'", "assert remove_whitespaces('hwplSpwh') == 'hwplSpwh'", "assert remove_whitespaces(' \\u180e\\u200b\\u200c\\u200d ') == '\\u180e\\u200b\\u200c\\u200d'", "assert remove_whitespaces(' \\u180e\\u200b\\u200c\\u200d ') == '\\u180e\\u200b\\u200c\\u200d'", "assert remove_whitespaces('\\u180e\\u200b\\u200cThis') == '\\u180e\\u200b\\u200cThis'", "assert remove_whitespaces('\\u180e\\u200b123\\u200d4') == '\\u180e\\u200b123\\u200d4'", "assert remove_whitespaces(' \\u180e\\u200b\\u200c\\u200d\\u200b ') == '\\u180e\\u200b\\u200c\\u200d\\u200b'", "assert remove_whitespaces('\\u180e\\u200d\\u200b\\u200c\\u200d\\u2060hGMmuwitht') == '\\u180e\\u200d\\u200b\\u200c\\u200d\\u2060hGMmuwitht'", "assert remove_whitespaces('strin31234567890ltielon') == 'strin31234567890ltielon'", "assert remove_whitespaces('naXeNJpPR') == 'naXeNJpPR'", "assert remove_whitespaces('lstrin3167890ltielon') == 'lstrin3167890ltielon'", "assert remove_whitespaces('\\u180e\\u200d\\u200b\\u200cG\\u200d\\u2060hGMmuwitht') == '\\u180e\\u200d\\u200b\\u200cG\\u200d\\u2060hGMmuwitht'", "assert remove_whitespaces('90\\u200b\\u200cstringSwift') == '90\\u200b\\u200cstringSwift'", "assert remove_whitespaces('spacewift\\u200c\\u200d\\u2060') == 'spacewift\\u200c\\u200d\\u2060'", "assert remove_whitespaces('longiOS\\u180e\\u200b\\u200c\\u200d\\u2060St') == 'longiOS\\u180e\\u200b\\u200c\\u200d\\u2060St'", "assert remove_whitespaces('spaceswift\\u200c\\u200d\\u2060') == 'spaceswift\\u200c\\u200d\\u2060'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of even factors of a number.\nassert sumofFactors(18) == 26\nYour code should pass the test:\nassert sumofFactors(18) == 26", "test_list": [ "assert sumofFactors(18) == 26", "assert sumofFactors(30) == 48", "assert sumofFactors(6) == 8", "assert sumofFactors(101) == 0", "assert sumofFactors(997) == 0", "assert sumofFactors(9973) == 0", "assert sumofFactors(99991) == 0", "assert sumofFactors(1000003) == 0", "assert sumofFactors(102) == 144", "assert sumofFactors(998) == 1000", "assert sumofFactors(9974) == 9976", "assert sumofFactors(1000004) == 1546020", "assert sumofFactors(999) == 0", "assert sumofFactors(1000005) == 0", "assert sumofFactors(1000006) == 1142880", "assert sumofFactors(1000) == 2184", "assert sumofFactors(9972) == 21684", "assert sumofFactors(9975) == 0", "assert sumofFactors(996) == 2016", "assert sumofFactors(99992) == 181440", "assert sumofFactors(103) == 0", "assert sumofFactors(1000007) == 0", "assert sumofFactors(99993) == 0", "assert sumofFactors(995) == 0", "assert sumofFactors(1000008) == 2882880", "assert sumofFactors(True) == 0", "assert sumofFactors(99989) == 0", "assert sumofFactors(99988) == 171456", "assert sumofFactors(False) == 0", "assert sumofFactors(1001) == 0", "assert sumofFactors(1000010) == 1309248", "assert sumofFactors(99990) == 190944", "assert sumofFactors(1002) == 1344", "assert sumofFactors(1003) == 0", "assert sumofFactors(1000009) == 0", "assert sumofFactors(994) == 1152", "assert sumofFactors(104) == 196", "assert sumofFactors(993) == 0", "assert sumofFactors(84) == 192", "assert sumofFactors(992) == 1984", "assert sumofFactors(9971) == 0", "assert sumofFactors(85) == 0", "assert sumofFactors(23) == 0", "assert sumofFactors(99994) == 106836", "assert sumofFactors(83) == 0", "assert sumofFactors(9970) == 11976", "assert sumofFactors(86) == 88", "assert sumofFactors(991) == 0", "assert sumofFactors(87) == 0", "assert sumofFactors(1004) == 1512", "assert sumofFactors(24) == 56", "assert sumofFactors(25) == 0", "assert sumofFactors(9) == 0", "assert sumofFactors(105) == 0", "assert sumofFactors(9976) == 18480", "assert sumofFactors(1000011) == 0", "assert sumofFactors(82) == 84", "assert sumofFactors(106) == 108", "assert sumofFactors(26) == 28", "assert sumofFactors(99995) == 0", "assert sumofFactors(9977) == 0", "assert sumofFactors(39) == 0", "assert sumofFactors(27) == 0", "assert sumofFactors(10) == 12", "assert sumofFactors(107) == 0", "assert sumofFactors(28) == 48", "assert sumofFactors(8) == 14", "assert sumofFactors(88) == 168", "assert sumofFactors(22) == 24", "assert sumofFactors(38) == 40", "assert sumofFactors(1000002) == 1333344", "assert sumofFactors(9969) == 0", "assert sumofFactors(99996) == 215712", "assert sumofFactors(990) == 1872", "assert sumofFactors(21) == 0", "assert sumofFactors(7) == 0", "assert sumofFactors(6) == 8", "assert sumofFactors(108) == 240", "assert sumofFactors(1005) == 0", "assert sumofFactors(81) == 0", "assert sumofFactors(1000001) == 0", "assert sumofFactors(100) == 186", "assert sumofFactors(40) == 84", "assert sumofFactors(20) == 36", "assert sumofFactors(19) == 0", "assert sumofFactors(3) == 0", "assert sumofFactors(1000012) == 1615488", "assert sumofFactors(5) == 0", "assert sumofFactors(55) == 0", "assert sumofFactors(89) == 0", "assert sumofFactors(1000000) == 2460906", "assert sumofFactors(37) == 0", "assert sumofFactors(9968) == 21600", "assert sumofFactors(41) == 0", "assert sumofFactors(999998) == 1040448", "assert sumofFactors(999997) == 0", "assert sumofFactors(2) == 2", "assert sumofFactors(9967) == 0", "assert sumofFactors(9965) == 0", "assert sumofFactors(109) == 0", "assert sumofFactors(1000013) == 0", "assert sumofFactors(90) == 156", "assert sumofFactors(99997) == 0", "assert sumofFactors(9966) == 14592", "assert sumofFactors(99998) == 100000", "assert sumofFactors(999999) == 0", "assert sumofFactors(111) == 0", "assert sumofFactors(1006) == 1008" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that matches a word containing 'z'.\nassert text_match_wordz(\"pythonz.\")==True\nYour code should pass the test:\nassert text_match_wordz(\"pythonz.\")==True", "test_list": [ "assert text_match_wordz(\"pythonz.\")==True", "assert text_match_wordz(\"xyz.\")==True", "assert text_match_wordz(\" lang .\")==False", "assert text_match_wordz('*z@') == True", "assert text_match_wordz('1234z5678') == True", "assert text_match_wordz('z x z') == True", "assert text_match_wordz('x') == False", "assert text_match_wordz('') == False", "assert text_match_wordz('*z@*z@') == True", "assert text_match_wordz('*z') == True", "assert text_match_wordz('**z@') == True", "assert text_match_wordz('**zz@') == True", "assert text_match_wordz('*z x z*zz@') == True", "assert text_match_wordz('*x*z@*z@z') == True", "assert text_match_wordz('***z@') == True", "assert text_match_wordz('z') == True", "assert text_match_wordz('x****z@') == True", "assert text_match_wordz('*z xz x z z*zz@') == True", "assert text_match_wordz('z*zz@') == True", "assert text_match_wordz('*@*z@') == True", "assert text_match_wordz('***@') == False", "assert text_match_wordz('***zz@@x****z@') == True", "assert text_match_wordz('*x*z@*z@') == True", "assert text_match_wordz('*z xzz x z z*zz@') == True", "assert text_match_wordz('z*z@') == True", "assert text_match_wordz('**z') == True", "assert text_match_wordz('*@') == False", "assert text_match_wordz('*@*z@@') == True", "assert text_match_wordz('z*zz@z') == True", "assert text_match_wordz('*@**z@') == True", "assert text_match_wordz('****@') == False", "assert text_match_wordz('****z@') == True", "assert text_match_wordz('*zz') == True", "assert text_match_wordz('***zz@@x*****z@') == True", "assert text_match_wordz('z*zz@z*zz@z') == True", "assert text_match_wordz('z*zz@z*zzz@z') == True", "assert text_match_wordz('****z*z@z@@x****z@') == True", "assert text_match_wordz('**zx*z@*z@') == True", "assert text_match_wordz('*x@*z@') == True", "assert text_match_wordz('z*****z@zz@z*zz@z') == True", "assert text_match_wordz('*****@*z') == True", "assert text_match_wordz('n') == False", "assert text_match_wordz('**@*z@@') == True", "assert text_match_wordz('z**z@') == True", "assert text_match_wordz('*zzz*@z') == True", "assert text_match_wordz('***@@') == False", "assert text_match_wordz('z****z@') == True", "assert text_match_wordz('*z@*z****z@z') == True", "assert text_match_wordz('****z@*zzz*@z') == True", "assert text_match_wordz('**z****z*z@z@@x****z@z@') == True", "assert text_match_wordz('*zzz*z') == True", "assert text_match_wordz('****z@*zzz*z****z@@z*z@**z@') == True", "assert text_match_wordz(' z x z') == True", "assert text_match_wordz('z**@*z@zz@z*zz@z') == True", "assert text_match_wordz('*z@*z@**zz') == True", "assert text_match_wordz('*zz xzz x z z*zz@') == True", "assert text_match_wordz('*z *zz x zz x z z*zz@z*zz@') == True", "assert text_match_wordz('z**z@*z@zz@z*zz@z') == True", "assert text_match_wordz('**zx*z@*z*@') == True", "assert text_match_wordz('z*zzz@') == True", "assert text_match_wordz('*') == False", "assert text_match_wordz('z*zz@zz') == True", "assert text_match_wordz('z**zz@') == True", "assert text_match_wordz('*z x*x@*z@zz z*zz@') == True", "assert text_match_wordz('1234z56n78') == True", "assert text_match_wordz('z*zzzz@') == True", "assert text_match_wordz('zzz') == True", "assert text_match_wordz('**@@x*****z@') == True", "assert text_match_wordz('**zx*z@*z*@x') == True", "assert text_match_wordz('***z**z@@@*z@') == True", "assert text_match_wordz('xz') == True", "assert text_match_wordz('*zz xzz x z z*z') == True", "assert text_match_wordz('1234z566n78') == True", "assert text_match_wordz('z*zz@z*z*zz@z*zzz@zzzz@z') == True", "assert text_match_wordz('z**@*z@ z x zzz@z*zz@z') == True", "assert text_match_wordz('1234z78') == True", "assert text_match_wordz('zz') == True", "assert text_match_wordz('*x*z@*zz@') == True", "assert text_match_wordz('x*x@*z@zz') == True", "assert text_match_wordz('**zz xzz x z z*z') == True", "assert text_match_wordz('z**z**zz@') == True", "assert text_match_wordz('z*zz@***z@') == True", "assert text_match_wordz('z***zz@z@') == True", "assert text_match_wordz('12334z78') == True", "assert text_match_wordz('*z zzz') == True", "assert text_match_wordz('*@@') == False", "assert text_match_wordz('yVHKcHlY') == False", "assert text_match_wordz('z*zz@***z@x*zz xzz x z z*z') == True", "assert text_match_wordz('*z x z*zz@') == True", "assert text_match_wordz('z*zz@z*zz@*@*z@@') == True", "assert text_match_wordz('*@***z') == True", "assert text_match_wordz('JlGWYIid') == False", "assert text_match_wordz('*****@') == False", "assert text_match_wordz('zyVHKcHlY x z') == True", "assert text_match_wordz('@*@*z@') == True", "assert text_match_wordz('****z@*zzz*@zz') == True", "assert text_match_wordz('*zzz***z x*x@*z@zz z*zz@*z@z') == True", "assert text_match_wordz('12314z566n78') == True", "assert text_match_wordz('z*****z@') == True", "assert text_match_wordz('12314z566n78*z x*x@*z@zz z*zz@') == True", "assert text_match_wordz('l') == False", "assert text_match_wordz('*z@*z*z x*x@*z@zz z*zz@****z@z') == True", "assert text_match_wordz('*x@*zz@') == True", "assert text_match_wordz('********z@*zzz*@zz') == True", "assert text_match_wordz('****z@*zzz*z*@@z*z@**z@') == True", "assert text_match_wordz('1234z566nl78') == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given month number contains 31 days or not.\nassert check_monthnumb_number(5)==True\nYour code should pass the test:\nassert check_monthnumb_number(5)==True", "test_list": [ "assert check_monthnumb_number(5)==True", "assert check_monthnumb_number(2)==False", "assert check_monthnumb_number(6)==False", "assert check_monthnumb_number(1) == True", "assert check_monthnumb_number(12) == True", "assert check_monthnumb_number(10) == True", "assert check_monthnumb_number(11) == False", "assert check_monthnumb_number(9) == False", "assert check_monthnumb_number(2) == False", "assert check_monthnumb_number(8) == True", "assert check_monthnumb_number(True) == True", "assert check_monthnumb_number(7) == True", "assert check_monthnumb_number(3) == True", "assert check_monthnumb_number(6) == False", "assert check_monthnumb_number(4) == False", "assert check_monthnumb_number(5) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to reverse each string in a given list of string values.\nassert reverse_string_list(['Red', 'Green', 'Blue', 'White', 'Black'])==['deR', 'neerG', 'eulB', 'etihW', 'kcalB']\nYour code should pass the test:\nassert reverse_string_list(['Red', 'Green', 'Blue', 'White', 'Black'])==['deR', 'neerG', 'eulB', 'etihW', 'kcalB']", "test_list": [ "assert reverse_string_list(['Red', 'Green', 'Blue', 'White', 'Black'])==['deR', 'neerG', 'eulB', 'etihW', 'kcalB']", "assert reverse_string_list(['john','amal','joel','george'])==['nhoj','lama','leoj','egroeg']", "assert reverse_string_list(['jack','john','mary'])==['kcaj','nhoj','yram']", "assert reverse_string_list([]) == []", "assert reverse_string_list(['John', 'aMaL', 'jOeL', 'George']) == ['nhoJ', 'LaMa', 'LeOj', 'egroeG']", "assert reverse_string_list(['John', '', 'George']) == ['nhoJ', '', 'egroeG']", "assert reverse_string_list(['John']) == ['nhoJ']", "assert reverse_string_list(['']) == ['']", "assert reverse_string_list(['John', '']) == ['nhoJ', '']", "assert reverse_string_list(['John', '', 'George', 'George']) == ['nhoJ', '', 'egroeG', 'egroeG']", "assert reverse_string_list(['John', 'George', '', 'George']) == ['nhoJ', 'egroeG', '', 'egroeG']", "assert reverse_string_list(['John', 'George']) == ['nhoJ', 'egroeG']", "assert reverse_string_list(['', '']) == ['', '']", "assert reverse_string_list(['aMaL', 'George']) == ['LaMa', 'egroeG']", "assert reverse_string_list(['John', '', 'George', 'George', '']) == ['nhoJ', '', 'egroeG', 'egroeG', '']", "assert reverse_string_list(['John', '', 'George', 'Geoerge', '', '']) == ['nhoJ', '', 'egroeG', 'egreoeG', '', '']", "assert reverse_string_list(['John', '', 'George', 'George', 'George', '']) == ['nhoJ', '', 'egroeG', 'egroeG', 'egroeG', '']", "assert reverse_string_list(['John', 'aMaL', 'jOeL', 'George', 'John']) == ['nhoJ', 'LaMa', 'LeOj', 'egroeG', 'nhoJ']", "assert reverse_string_list(['aMaL', 'John']) == ['LaMa', 'nhoJ']", "assert reverse_string_list(['John', '', 'George', 'jOeL', 'George']) == ['nhoJ', '', 'egroeG', 'LeOj', 'egroeG']", "assert reverse_string_list(['aMaL', 'John', '', 'George']) == ['LaMa', 'nhoJ', '', 'egroeG']", "assert reverse_string_list(['aMaL', 'John', 'George']) == ['LaMa', 'nhoJ', 'egroeG']", "assert reverse_string_list(['John', '', 'George', 'jOeL', 'Geoerge', '']) == ['nhoJ', '', 'egroeG', 'LeOj', 'egreoeG', '']", "assert reverse_string_list(['John', '', 'George', '']) == ['nhoJ', '', 'egroeG', '']", "assert reverse_string_list(['aMaL', 'John', '', 'George', 'John']) == ['LaMa', 'nhoJ', '', 'egroeG', 'nhoJ']", "assert reverse_string_list(['John', '', '']) == ['nhoJ', '', '']", "assert reverse_string_list(['JohnJohn', 'John']) == ['nhoJnhoJ', 'nhoJ']", "assert reverse_string_list(['aMaL', 'Geoorge', 'John', '', 'George', 'John']) == ['LaMa', 'egrooeG', 'nhoJ', '', 'egroeG', 'nhoJ']", "assert reverse_string_list(['John', '', 'GeorgGeoergee']) == ['nhoJ', '', 'eegreoeGgroeG']", "assert reverse_string_list(['JohGeorgGeoergee', 'JohnJohn', 'John']) == ['eegreoeGgroeGhoJ', 'nhoJnhoJ', 'nhoJ']", "assert reverse_string_list(['', 'John']) == ['', 'nhoJ']", "assert reverse_string_list(['JohnGeorge', 'John', '', 'George', 'jOeL', 'Geoerge', '']) == ['egroeGnhoJ', 'nhoJ', '', 'egroeG', 'LeOj', 'egreoeG', '']", "assert reverse_string_list(['JohnJohn', 'Geoerge', 'John']) == ['nhoJnhoJ', 'egreoeG', 'nhoJ']", "assert reverse_string_list(['JohaMaLnJohn', 'JohnJohn']) == ['nhoJnLaMahoJ', 'nhoJnhoJ']", "assert reverse_string_list(['oJohn', '', 'George', 'George', '']) == ['nhoJo', '', 'egroeG', 'egroeG', '']", "assert reverse_string_list(['John', 'Geoorge', 'John']) == ['nhoJ', 'egrooeG', 'nhoJ']", "assert reverse_string_list(['John', 'JaMaLn', '', 'George', 'George', '']) == ['nhoJ', 'nLaMaJ', '', 'egroeG', 'egroeG', '']", "assert reverse_string_list(['aMaL', 'John', 'aMaL', 'George', 'John']) == ['LaMa', 'nhoJ', 'LaMa', 'egroeG', 'nhoJ']", "assert reverse_string_list(['John', 'aMaL', 'jOeL', 'aM', 'George', 'jOeL']) == ['nhoJ', 'LaMa', 'LeOj', 'Ma', 'egroeG', 'LeOj']", "assert reverse_string_list(['John', 'aMaL', 'Geoorge', 'jOeL', 'George', 'John', 'aMaL']) == ['nhoJ', 'LaMa', 'egrooeG', 'LeOj', 'egroeG', 'nhoJ', 'LaMa']", "assert reverse_string_list(['John', 'aMaL', 'jOeL', 'aM', 'George', 'jOeL', 'jOeL']) == ['nhoJ', 'LaMa', 'LeOj', 'Ma', 'egroeG', 'LeOj', 'LeOj']", "assert reverse_string_list(['aMaL', 'John', 'GeorgGeoergee']) == ['LaMa', 'nhoJ', 'eegreoeGgroeG']", "assert reverse_string_list(['John', '', 'JohnGeorge', 'George']) == ['nhoJ', '', 'egroeGnhoJ', 'egroeG']", "assert reverse_string_list(['', '', '']) == ['', '', '']", "assert reverse_string_list(['aMaL', 'Geoorge', 'John', '', 'George', 'John', 'George']) == ['LaMa', 'egrooeG', 'nhoJ', '', 'egroeG', 'nhoJ', 'egroeG']", "assert reverse_string_list(['aMaL', 'John', 'John']) == ['LaMa', 'nhoJ', 'nhoJ']", "assert reverse_string_list(['Geoerge', 'John', '', 'George']) == ['egreoeG', 'nhoJ', '', 'egroeG']", "assert reverse_string_list(['aMaL', 'John', 'George', 'John']) == ['LaMa', 'nhoJ', 'egroeG', 'nhoJ']", "assert reverse_string_list(['John', 'George', 'jOeL', 'George']) == ['nhoJ', 'egroeG', 'LeOj', 'egroeG']", "assert reverse_string_list(['JohnJohn', 'JaMaLn']) == ['nhoJnhoJ', 'nLaMaJ']", "assert reverse_string_list(['John', '', 'George', 'jOeL', 'Geoerge', 'JohnGeorge', 'George', 'jOeL']) == ['nhoJ', '', 'egroeG', 'LeOj', 'egreoeG', 'egroeGnhoJ', 'egroeG', 'LeOj']", "assert reverse_string_list(['aMaL', 'John', 'aMaL', 'John']) == ['LaMa', 'nhoJ', 'LaMa', 'nhoJ']", "assert reverse_string_list(['oJohn', '', 'George', 'Geoerge', '', '']) == ['nhoJo', '', 'egroeG', 'egreoeG', '', '']", "assert reverse_string_list(['Geoorge', 'George', 'jOeL', 'George']) == ['egrooeG', 'egroeG', 'LeOj', 'egroeG']", "assert reverse_string_list(['aMaL', 'Geoorge', 'Joh', 'aMaL', 'George', 'nJohn']) == ['LaMa', 'egrooeG', 'hoJ', 'LaMa', 'egroeG', 'nhoJn']", "assert reverse_string_list(['aMaL', 'aMaL', 'George', 'John', 'George']) == ['LaMa', 'LaMa', 'egroeG', 'nhoJ', 'egroeG']", "assert reverse_string_list(['', 'George', 'Geoerge', '', '']) == ['', 'egroeG', 'egreoeG', '', '']", "assert reverse_string_list(['aM', 'aMaL', 'Geoorge', 'John', '', 'George', 'John', 'George', 'aM']) == ['Ma', 'LaMa', 'egrooeG', 'nhoJ', '', 'egroeG', 'nhoJ', 'egroeG', 'Ma']", "assert reverse_string_list(['JohnGeorge', 'John', '', 'GeorgGeoergee', 'jOeL', 'Geoerge', '']) == ['egroeGnhoJ', 'nhoJ', '', 'eegreoeGgroeG', 'LeOj', 'egreoeG', '']", "assert reverse_string_list(['aMaL', 'Geoeorge', 'John', '', 'aMaLL', 'George', 'John']) == ['LaMa', 'egroeoeG', 'nhoJ', '', 'LLaMa', 'egroeG', 'nhoJ']", "assert reverse_string_list(['John', 'aMaL', 'JoJohnGeorgehn', 'Geoorge', 'jOeL', 'George', 'John', 'aMaL']) == ['nhoJ', 'LaMa', 'nhegroeGnhoJoJ', 'egrooeG', 'LeOj', 'egroeG', 'nhoJ', 'LaMa']", "assert reverse_string_list(['aMaL', 'John', 'GeorgGeoergee', 'Joh', 'John']) == ['LaMa', 'nhoJ', 'eegreoeGgroeG', 'hoJ', 'nhoJ']", "assert reverse_string_list(['GeorgGeoergee', 'Geoerge', 'John', '', 'George']) == ['eegreoeGgroeG', 'egreoeG', 'nhoJ', '', 'egroeG']", "assert reverse_string_list(['GeorgGeoergee', 'Geoerge', '', 'George', 'John']) == ['eegreoeGgroeG', 'egreoeG', '', 'egroeG', 'nhoJ']", "assert reverse_string_list(['JohaMaLnJohn', 'FTlwsSD', 'wPcq', 'vI', 'JohaMaLnJohn', 'SqPn', 'aM', 'JocyrPAB', 'qMHbL']) == ['nhoJnLaMahoJ', 'DSswlTF', 'qcPw', 'Iv', 'nhoJnLaMahoJ', 'nPqS', 'Ma', 'BAPrycoJ', 'LbHMq']", "assert reverse_string_list(['John', 'George', 'George', '']) == ['nhoJ', 'egroeG', 'egroeG', '']", "assert reverse_string_list(['John', '', 'George', 'jOeL', 'Geoerge', 'GeorgGeoergee', 'George', 'Geoorge', 'jOeL']) == ['nhoJ', '', 'egroeG', 'LeOj', 'egreoeG', 'eegreoeGgroeG', 'egroeG', 'egrooeG', 'LeOj']", "assert reverse_string_list(['aMaL', 'John', 'aMaL']) == ['LaMa', 'nhoJ', 'LaMa']", "assert reverse_string_list(['JohaMaLnJohn', 'JohnJohn', 'JohaMaLnJohn']) == ['nhoJnLaMahoJ', 'nhoJnhoJ', 'nhoJnLaMahoJ']", "assert reverse_string_list(['John', '', 'George', 'Geoerge', '', 'Geoerge', '', '']) == ['nhoJ', '', 'egroeG', 'egreoeG', '', 'egreoeG', '', '']", "assert reverse_string_list(['John', 'George', 'George', 'George', '']) == ['nhoJ', 'egroeG', 'egroeG', 'egroeG', '']", "assert reverse_string_list(['aMaL', 'John', '', 'George', '']) == ['LaMa', 'nhoJ', '', 'egroeG', '']", "assert reverse_string_list(['', 'George', '', 'orge', 'SqPn']) == ['', 'egroeG', '', 'egro', 'nPqS']", "assert reverse_string_list(['vI', 'John', '', 'George', 'jOeL', 'Geoerge', '', 'John']) == ['Iv', 'nhoJ', '', 'egroeG', 'LeOj', 'egreoeG', '', 'nhoJ']", "assert reverse_string_list(['JohnJohnJohnJohn', 'John', 'JohnJohn', 'GeGeoergeoerge', 'Geoerge', 'JohnJohnJohnJohn']) == ['nhoJnhoJnhoJnhoJ', 'nhoJ', 'nhoJnhoJ', 'egreoegreoeGeG', 'egreoeG', 'nhoJnhoJnhoJnhoJ']", "assert reverse_string_list(['aMaL', 'John', 'George', 'John', 'John']) == ['LaMa', 'nhoJ', 'egroeG', 'nhoJ', 'nhoJ']", "assert reverse_string_list(['JohaMaLnJohn', 'FTlwsSD', 'wPcq', 'vI', 'JohaMaLnJohn', 'SqPn', 'aM', 'JocyrPAB']) == ['nhoJnLaMahoJ', 'DSswlTF', 'qcPw', 'Iv', 'nhoJnLaMahoJ', 'nPqS', 'Ma', 'BAPrycoJ']", "assert reverse_string_list(['', 'JohnGeorge', '', '', '']) == ['', 'egroeGnhoJ', '', '', '']", "assert reverse_string_list(['John', '', '', '', '']) == ['nhoJ', '', '', '', '']", "assert reverse_string_list(['John', 'John']) == ['nhoJ', 'nhoJ']", "assert reverse_string_list(['JohGeorgen', 'JohGeorgGeoergee', 'JohnJohn', 'John']) == ['negroeGhoJ', 'eegreoeGgroeGhoJ', 'nhoJnhoJ', 'nhoJ']", "assert reverse_string_list(['aGeorgeMaL']) == ['LaMegroeGa']", "assert reverse_string_list(['John', 'George', '', 'GeorgGeoergee', 'John']) == ['nhoJ', 'egroeG', '', 'eegreoeGgroeG', 'nhoJ']", "assert reverse_string_list(['', 'George', 'Geoerge', 'orge', '', '', 'aGeorgeMaL', 'George']) == ['', 'egroeG', 'egreoeG', 'egro', '', '', 'LaMegroeGa', 'egroeG']", "assert reverse_string_list(['aMaL', 'John', 'aMJohGeorgenaL', '', 'George']) == ['LaMa', 'nhoJ', 'LanegroeGhoJMa', '', 'egroeG']", "assert reverse_string_list(['John', '', 'George', 'aM', 'Ge', 'jOeL', 'Geoerge', 'JohnGeorge', 'George', 'jOeL']) == ['nhoJ', '', 'egroeG', 'Ma', 'eG', 'LeOj', 'egreoeG', 'egroeGnhoJ', 'egroeG', 'LeOj']", "assert reverse_string_list(['John', 'Geoerge', '', '', '']) == ['nhoJ', 'egreoeG', '', '', '']", "assert reverse_string_list(['aMaL', 'JaMaLn', 'JaMaLn']) == ['LaMa', 'nLaMaJ', 'nLaMaJ']", "assert reverse_string_list(['', 'George', 'aGeorgeMaL', 'Geoerge', '', '']) == ['', 'egroeG', 'LaMegroeGa', 'egreoeG', '', '']", "assert reverse_string_list(['John', '', 'George', '', '']) == ['nhoJ', '', 'egroeG', '', '']", "assert reverse_string_list(['', 'aMaL', 'jOeL', 'George']) == ['', 'LaMa', 'LeOj', 'egroeG']", "assert reverse_string_list(['oJohn', '', 'George', 'Geoerge', '', 'Geoerege', '']) == ['nhoJo', '', 'egroeG', 'egreoeG', '', 'egereoeG', '']", "assert reverse_string_list(['aMaL', 'John', 'aMaL', 'JohaMaLnJohn', 'aMaL', 'John']) == ['LaMa', 'nhoJ', 'LaMa', 'nhoJnLaMahoJ', 'LaMa', 'nhoJ']", "assert reverse_string_list(['', '', '', '']) == ['', '', '', '']", "assert reverse_string_list(['aMaL', 'John', 'JoGeorgGeoergee', 'GeorgGeoergee', 'Joh', 'John']) == ['LaMa', 'nhoJ', 'eegreoeGgroeGoJ', 'eegreoeGgroeG', 'hoJ', 'nhoJ']", "assert reverse_string_list(['nJohn', 'JohnGeorge', '', '', '']) == ['nhoJn', 'egroeGnhoJ', '', '', '']", "assert reverse_string_list(['', 'George', 'aGeorgeMaL', '', '']) == ['', 'egroeG', 'LaMegroeGa', '', '']", "assert reverse_string_list(['George']) == ['egroeG']", "assert reverse_string_list(['aMaL']) == ['LaMa']", "assert reverse_string_list(['aMaL', 'aMaL', 'John', '', '']) == ['LaMa', 'LaMa', 'nhoJ', '', '']", "assert reverse_string_list(['John', 'aMaL', 'John', 'aMaL', 'George', 'John']) == ['nhoJ', 'LaMa', 'nhoJ', 'LaMa', 'egroeG', 'nhoJ']", "assert reverse_string_list(['Geoorge', 'George', 'jOeL', 'Geoorge']) == ['egrooeG', 'egroeG', 'LeOj', 'egrooeG']", "assert reverse_string_list(['nJohn', 'JohnGeorge', '', 'JohGeorgGeoergee', '', '']) == ['nhoJn', 'egroeGnhoJ', '', 'eegreoeGgroeGhoJ', '', '']", "assert reverse_string_list(['JohGeorgGeoergee', 'John', 'aMaL', 'John', 'aMaL', 'George', 'John']) == ['eegreoeGgroeGhoJ', 'nhoJ', 'LaMa', 'nhoJ', 'LaMa', 'egroeG', 'nhoJ']", "assert reverse_string_list(['aMaL', 'JocyrPAB', 'Geoeorge', 'John', '', 'aMaLL', 'George', 'John']) == ['LaMa', 'BAPrycoJ', 'egroeoeG', 'nhoJ', '', 'LLaMa', 'egroeG', 'nhoJ']", "assert reverse_string_list(['Geoerge', 'Geooerge', 'John', '', 'George']) == ['egreoeG', 'egreooeG', 'nhoJ', '', 'egroeG']", "assert reverse_string_list(['John', 'aMaL', 'aMaGeoeregeL', 'jOeL', 'aM', 'George', 'jOeL', 'jOeL']) == ['nhoJ', 'LaMa', 'LegereoeGaMa', 'LeOj', 'Ma', 'egroeG', 'LeOj', 'LeOj']", "assert reverse_string_list(['aMaL', 'Geoeorge', 'John', '', 'aMaLL', 'GeorgaMaLe', 'John']) == ['LaMa', 'egroeoeG', 'nhoJ', '', 'LLaMa', 'eLaMagroeG', 'nhoJ']", "assert reverse_string_list(['aMaL', 'Geoorge', 'John', '', 'George', 'John', 'GeorgGeoergee']) == ['LaMa', 'egrooeG', 'nhoJ', '', 'egroeG', 'nhoJ', 'eegreoeGgroeG']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sublist having minimum length.\nassert Find_Min([[1],[1,2],[1,2,3]]) == [1]\nYour code should pass the test:\nassert Find_Min([[1],[1,2],[1,2,3]]) == [1]", "test_list": [ "assert Find_Min([[1],[1,2],[1,2,3]]) == [1]", "assert Find_Min([[1,1],[1,1,1],[1,2,7,8]]) == [1,1]", "assert Find_Min([['x'],['x','y'],['x','y','z']]) == ['x']", "assert Find_Min([[], [], []]) == []", "assert Find_Min([['x']]) == ['x']", "assert Find_Min([['x'], ['x', 'y']]) == ['x']", "assert Find_Min([['x'], ['x', 'y'], ['x', 'y', 'z'], ['x', 'y', 'z', 'a']]) == ['x']", "assert Find_Min([['x'], ['x', 'y'], ['x', 'y', 'z'], ['x', 'y', 'z', 'a'], ['x', 'y', 'z', 'a', 'b']]) == ['x']", "assert Find_Min([[], ['x', 'y'], [], ['x', 'y', 'z']]) == []", "assert Find_Min([[[1]], [[1, 2]], [[1, 2, 3]]]) == [[1]]", "assert Find_Min([[[1]], [[1, 2], [3, 4]], [[1, 2, 3, 4, 5]]]) == [[1]]", "assert Find_Min([[[1]], [[1, 2], [3, 4]], [[1, 2, 3, 4, 5]], [[0, 1, 2, 3]]]) == [[1]]", "assert Find_Min([[[1]], [[1, 2], [3, 4]], [[1, 2, 3, 4, 5]], [[0, 1, 2, 3]], []]) == []", "assert Find_Min([[], ['a', 'b', 'c'], ['d', 'e', 'f'], [], [], ['g'], [], ['h', 'i']]) == []", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [], [[7, 8, 9, 10], [11, 12], [13]], [[14, 15]], []]) == []", "assert Find_Min([['apple', 'banana'], ['carrot', 'potato'], ['orange'], [], ['grapefruit', 'watermelon']]) == []", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p']]]) == [['d']]", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['m', 'n']]]) == [['d', 'e', 'f']]", "assert Find_Min([[[1, 2, 3], [4, 5, 6], [7, 8, 9]], [[10], [11, 12]], [[13, 14, 15, 16, 17], [18, 19], [20, 21, 22]]]) == [[10], [11, 12]]", "assert Find_Min([['x', 'y'], ['a', 'b'], ['i', 'j'], ['u', 'v', 'w'], ['m', 'n', 'o', 'p']]) == ['x', 'y']", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9]], [[10, 11]], [[12, 13, 14], [15, 16, 17], [18, 19, 20]], [[21, 22], [23, 24], [25, 26], [27, 28]]]) == [[7, 8, 9]]", "assert Find_Min([['apple', 'banana', 'cherry'], ['doughnut'], ['elephant', 'fox'], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango']]) == ['doughnut']", "assert Find_Min([['x'], ['y'], ['z', 'a'], ['b', 'c', 'd'], ['e', 'f', 'g', 'h']]) == ['x']", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9, 10], [11, 12], [13]], [[1, 2, 3], [4, 5, 6]], [[14, 15]], [[1, 2, 3], [4, 5, 6]]]) == [[14, 15]]", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']]]) == [['d', 'e', 'f']]", "assert Find_Min([['x'], [], [], ['z', 'a'], ['b', 'c', '', 'd'], ['e', 'f', 'g', 'h']]) == []", "assert Find_Min([[], []]) == []", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm'], ['e', 'f', 'g', 'h']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm'], ['e', 'f', 'g', 'h']]]) == [['d']]", "assert Find_Min([[['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[['g', 'h'], ['i', 'j', 'k', 'l']], [['g', 'h'], ['i', 'j', 'k', 'l']]]) == [['g', 'h'], ['i', 'j', 'k', 'l']]", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k'], ['e', 'f', 'g', 'h']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k'], ['e', 'f', 'g', 'h']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k'], ['e', 'f', 'g', 'h']]]) == [['d']]", "assert Find_Min([[], [], ['l', 'tFbRBOk', 'cfOPt', 'fox', 'grape', 'mango', 'bURovwB', 'lemon', 'ZRkprFsNlc', 'BdjtDHroYE'], []]) == []", "assert Find_Min([[['a'], ['b'], ['c']], [['dd']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p']], [['dd']]]) == [['dd']]", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9]], [[12, 13, 14], [15, 16, 17], [18, 19, 20]], [[21, 22], [23, 24], [25, 26], [27, 28]]]) == [[7, 8, 9]]", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['dd', 'e', 'f']], [['dd', 'e', 'f']], [['m', 'n']]]) == [['dd', 'e', 'f']]", "assert Find_Min([[], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], []]) == []", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['g', 'h'], ['i', 'j', 'k', 'l']]]) == [['d', 'e', 'f']]", "assert Find_Min([[['a'], ['b'], ['c']], [], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k'], ['e', 'f', 'g', 'h']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k'], ['e', 'f', 'g', 'h']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k'], ['e', 'f', 'g', 'h']]]) == []", "assert Find_Min([[], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], [], [], []]) == []", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['m', 'n', 'm'], ['m', 'n', 'm']]]) == [['d', 'e', 'f']]", "assert Find_Min([[], [], [], ['eqmZrrw', 'NUksHJFgXB', 'B', 'u', 'j', 'BdjtDHroYE', 'LONOBOhF', '', 'qIZtur', 'grape']]) == []", "assert Find_Min([[], [], [], []]) == []", "assert Find_Min([['x'], [], [], ['z', 'a'], ['b', 'c', '', 'd']]) == []", "assert Find_Min([['apple', 'banana', 'cherry'], [], ['elephant', 'fox'], [], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango']]) == []", "assert Find_Min([['apple', 'banana'], [-85.491799009766, -28.429789067892102, -13.346744109726245, -58.44119256953919, 60.7668803444335, 47.68813139253385, -7.5873331040208, 47.72732136154761, -85.491799009766, -28.429789067892102], ['carrot', 'potato'], ['orange'], [], ['grapefruit', 'watermelon']]) == []", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9]], [[12, 13, 14], [15, 16, 17], [18, 19, 20]], [[21, 22], [23, 24], [25, 26], [27, 28]], [[1, 2, 3], [4, 5, 6]]]) == [[7, 8, 9]]", "assert Find_Min([[True, True, True, True], [False, True, False]]) == [False, True, False]", "assert Find_Min([['apple', 'banana', 'cherry'], [], ['elephant', 'fox'], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango'], ['ice cream']]) == []", "assert Find_Min([[], ['a', 'b', 'c'], ['d', 'e', 'f'], [], [], ['g'], [], ['h', 'i'], []]) == []", "assert Find_Min([[True, True, True, True], [True, True, True, True], [True, True, True, True], [False, True, False]]) == [False, True, False]", "assert Find_Min([[['cf', 'c'], ['a'], ['b'], ['cf', 'c']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p']], [['dd']], [['dd']]]) == [['n', 'o', 'p']]", "assert Find_Min([[[1, 2, 3], [4, 5, 6], [7, 8, 9]], [[10], [11, 12]], [[13, 14, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 14, 15, 16, 17], [18, 19], [20, 21, 22]]]) == [[10], [11, 12]]", "assert Find_Min([[], ['eqtKS'], [['g', 'h'], ['i', 'j', 'k', 'l']]]) == []", "assert Find_Min([[], [], ['l', 'tFbRBOk', 'cfOPt', 'fox', 'grape', 'mango', 'bURovwB', 'lemon', 'ZRkprFsNlc', 'BdjtDHroYE'], [], []]) == []", "assert Find_Min([[], [], [], ['eqmZrrw', 'NUksHJFgXB', 'B', 'u', 'c', 'j', 'BdjtDHroYE', 'LONOBOhF', '', 'qIZtur', 'grape']]) == []", "assert Find_Min([[], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], [], [], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], []]) == []", "assert Find_Min([['x', 'x'], ['x', 'x'], ['x', 'y']]) == ['x', 'x']", "assert Find_Min([[], ['a', 'b', 'c'], ['d', 'e', 'f'], [], [], ['g'], [], ['h', 'i'], [], []]) == []", "assert Find_Min([[True, True, False, False, False], [], []]) == []", "assert Find_Min([[], ['a', 'b', 'c'], ['d', 'e', 'f'], [], [], ['g'], [], [], ['h', 'i'], [], [], [], []]) == []", "assert Find_Min([['x'], [], [], ['zz', 'a'], ['b', 'c', '', 'd'], ['e', 'f', 'g', 'h']]) == []", "assert Find_Min([[-70.45849814287817, -79.72463141052742], ['x', 'y'], [], ['x', 'y', 'z']]) == []", "assert Find_Min([[-89.56928478588684, 69.15039976127599, -58.61307409762566, -70.45849814287817, 63.11673272639632], [], [], [], []]) == []", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['m', 'n', 'm'], ['m', 'n', 'm']], [['x', 'y', 'z'], ['a', 'b', 'c']]]) == [['d', 'e', 'f']]", "assert Find_Min([['apple', 'baanana', 'cherry'], [], ['elephant', 'fox'], [], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango'], []]) == []", "assert Find_Min([['apple', 'banana', 'cherry'], [False, True], [], ['elephant', 'fox'], [], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango']]) == []", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['m', 'n']], [['m', 'n']]]) == [['d', 'e', 'f']]", "assert Find_Min([[], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], [], [True, False, True, True, False], [], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], []]) == []", "assert Find_Min([[['a', 'b', 'c']], [['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['m', 'n', 'm'], ['m', 'n', 'm']], [['a', 'b', 'c']]]) == [['a', 'b', 'c']]", "assert Find_Min([[False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, False]]) == [False, True, False]", "assert Find_Min([[[0], [0]], [[0], [0]], [[1, 2], [3, 4]], [[1, 2, 3, 4, 5]]]) == [[1, 2, 3, 4, 5]]", "assert Find_Min([[['a'], ['b'], ['c']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k']], [['n', 'o', 'p', 'p', 'o'], ['n', 'o', 'p', 'p', 'o']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm', 'k']]]) == [['d']]", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['i', 'j', 'k', 'l']]]) == [['d', 'e', 'f']]", "assert Find_Min([[False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, False, True]]) == [False, True, True, True]", "assert Find_Min([['x'], [], [], ['z', 'a'], ['b', 'c', '', 'd'], ['e', 'f', 'g', 'jh']]) == []", "assert Find_Min([[-70.45849814287817, -79.72463141052742], ['x', 'y'], [], ['x', 'y', 'z'], ['x', 'y'], []]) == []", "assert Find_Min([[-89.56928478588684, 69.15039976127599, -58.61307409762566, -70.45849814287817, 63.11673272639632], [], [], [], [], []]) == []", "assert Find_Min([[True, True], [True, True], [True, True], [True, True], [False, True, False], [True, True]]) == [True, True]", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9]], [[12, 13, 14], [15, 16, 17], [18, 19, 20]], [[21, 22], [23, 24], [25, 26], [27, 28], [27, 28]]]) == [[7, 8, 9]]", "assert Find_Min([[[1, 2, 3], [4, 5, 6], [7, 8, 9]], [[10], [11, 12]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]]]) == [[10], [11, 12]]", "assert Find_Min([[['a'], ['by', 'b'], ['c']], [['d']], [['a'], ['by', 'b'], ['c']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p'], ['n', 'o', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[], ['elephant', 'fox'], [], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango'], ['ice cream']]) == []", "assert Find_Min([[[1]], [[1, 2], [3, 4]], [[1, 2, 3, 4, 5]], [[0, 1, 2, 3]], [], [[1, 2, 3, 4, 5]]]) == []", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [96, 61], [[7, 8, 9, 10], [11, 12], [13]], [[14, 15]], [], [[7, 8, 9, 10], [11, 12], [13]]]) == []", "assert Find_Min([[[1, 2, 3], [4, 5, 6], [7, 8, 9]], [[10], [11, 12]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22]]]) == [[10], [11, 12]]", "assert Find_Min([[], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], [], []]) == []", "assert Find_Min([['x'], [], [], ['e', 'f', 'g', 'h', 'f'], ['z', 'a'], ['b', 'c', '', 'd'], ['e', 'f', 'g', 'h', 'f']]) == []", "assert Find_Min([[['g', 'h'], ['i', 'j', 'k', 'l']]]) == [['g', 'h'], ['i', 'j', 'k', 'l']]", "assert Find_Min([[], [], ['l', 'tFbRBOk', 'cfOPt', 'fox', 'grape', 'mango', 'bURovwB', 'lemon', 'ZRkprFsNlc', 'BdjtDHroYE'], [], [], ['l', 'tFbRBOk', 'cfOPt', 'fox', 'grape', 'mango', 'bURovwB', 'lemon', 'ZRkprFsNlc', 'BdjtDHroYE']]) == []", "assert Find_Min([[], ['l', 'tFbRBOk', 'cfOPt', 'fox', 'grape', 'mango', 'bURovwB', 'lemon', 'ZRkprFsNlc', 'BdjtDHroYE'], [], [True, False, False, False, True], [], ['l', 'tFbRBOk', 'cfOPt', 'fox', 'grape', 'mango', 'bURovwB', 'lemon', 'ZRkprFsNlc', 'BdjtDHroYE']]) == []", "assert Find_Min([[], ['x', 'y', 'x'], [], ['x', 'y', 'z']]) == []", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h']], [['e', 'f', 'g', 'h']]]) == [['d']]", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h']], [['n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h']], [['e', 'f', 'g', 'h']], [['d']]]) == [['d']]", "assert Find_Min([[], [], ['x', 'y', 'z']]) == []", "assert Find_Min([[False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, False], [False, True, True, True]]) == [False, True, False]", "assert Find_Min([[], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], [], [True, False, True, True, False], [], [], [-58.44119256953919, -85.491799009766, 69.15039976127599, -28.429789067892102, 22.405065830734472, 63.11673272639632], []]) == []", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'll']], [['g', 'h'], ['i', 'j', 'k', 'll']]]) == [['d', 'e', 'f']]", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['d', 'e', 'f']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['m', 'n']], [['m', 'n']], [['m', 'n']]]) == [['d', 'e', 'f']]", "assert Find_Min([[False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, True, True], [False, True, False], [False, True, True, True], [False, True, True, True]]) == [False, True, False]", "assert Find_Min([[['a'], ['by', 'b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['plemon', 'n', 'o', 'p', 'p'], ['plemon', 'n', 'o', 'p', 'p'], ['plemon', 'n', 'o', 'p', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[['x', 'y', 'z'], ['a', 'b', 'c']], [['e', 'f'], ['e', 'f']], [['i', 'j', 'k', 'll']], [['i', 'j', 'k', 'll']], [['i', 'j', 'k', 'll']]]) == [['i', 'j', 'k', 'll']]", "assert Find_Min([['grape', 'apple', 'baanana', 'cherry', 'grape'], ['grape', 'apple', 'baanana', 'cherry', 'grape'], [], ['elephant', 'fox'], [], ['grape', 'honey'], ['ice cream'], ['juice'], ['kiwi', 'lemon', 'mango'], [], ['ice cream']]) == []", "assert Find_Min([[], [], [False, False, False, True, True, True, False, False], [-4, -79, 15, 11, 18, 14, -1, -59, 11], []]) == []", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [96, 61], [[14, 15], [14, 15]], [[7, 8, 9, 10], [11, 12], [13]], [[14, 15], [14, 15]], [], [[7, 8, 9, 10], [11, 12], [13]], [[7, 8, 9, 10], [11, 12], [13]]]) == []", "assert Find_Min([['grapefruit'], ['apple', 'banana'], ['carrot', 'potato'], ['orange'], [], ['grapefruit']]) == []", "assert Find_Min([[['a'], ['b'], ['c']], [['d'], ['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p']]]) == [['n', 'o', 'p']]", "assert Find_Min([[], [], ['Icky', 'g', 'sRzEiFHz', 'kT', 'aoLcOFLFH', 'tFbRBOk', 'RaynjY', 'MCUQiO', 'OgmzNgy'], ['eqmZrrw', 'NUksHJFgXB', 'B', 'u', 'j', 'BdjtDHroYE', 'LONOBOhF', '', 'qIZtur', 'grape']]) == []", "assert Find_Min([[[1]], [[1, 2, 3, 4, 5]], [[0, 1, 2, 3]], [[1, 2], [3, 4]]]) == [[1]]", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9]], [[10, 11]], [[12, 13, 14, 13], [12, 13, 14, 13], [15, 16, 17], [18, 19, 20]], [[12, 13, 14, 13], [12, 13, 14, 13], [15, 16, 17], [18, 19, 20]], [[21, 22], [23, 24], [25, 26], [27, 28]]]) == [[7, 8, 9]]", "assert Find_Min([[['a'], ['cc', 'c'], ['b'], ['cc', 'c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p', 'p']], [['a'], ['cc', 'c'], ['b'], ['cc', 'c']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[['a'], ['by', 'b'], ['c']], [['d']], [['a'], ['by', 'b'], ['c']], [['n', 'o', 'p'], ['n', 'o', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']]]) == [['d']]", "assert Find_Min([[['a', 'b', 'c']], [['a', 'b', 'c']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['a', 'b', 'c']], [['m', 'n', 'm'], ['m', 'n', 'm']], [['a', 'b', 'c']], [['a', 'b', 'c']]]) == [['a', 'b', 'c']]", "assert Find_Min([[], ['a', 'b', 'c'], ['d', 'e', 'f'], [], [], ['g'], [], ['h', 'i'], [], [-28, 94, 16, -11, 9, -4], []]) == []", "assert Find_Min([[], [], ['z', 'a'], ['b', 'c', '', 'd']]) == []", "assert Find_Min([['x', 'y', 'z'], ['x'], ['x', 'y'], ['x', 'y', 'z'], ['x', 'y', 'z']]) == ['x']", "assert Find_Min([[['a'], ['b'], ['c']], [['d']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['n', 'o', 'p']], [['e', 'f', 'g', 'h'], ['i', 'j', 'k', 'l', 'm']], [['a'], ['b'], ['c']]]) == [['d']]", "assert Find_Min([[], [], [], ['x', 'y', 'z']]) == []", "assert Find_Min([[['g', 'h'], ['i', 'j', 'k', 'l']], [['g', 'h'], ['i', 'j', 'k', 'l']], [['g', 'h'], ['i', 'j', 'k', 'l']]]) == [['g', 'h'], ['i', 'j', 'k', 'l']]", "assert Find_Min([['ejuiceqtKS'], [['g', 'h'], ['i', 'j', 'k', 'l']]]) == ['ejuiceqtKS']", "assert Find_Min([[False, True, True, True, True], [False, True, True, True, True], [False, True, True, True, True], [False, True, True, True, True], [False, True, True, True, True], [False, True, False], [False, True, True, True, True], [False, True, True, True, True], [False, True, True, True, True]]) == [False, True, False]", "assert Find_Min([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9]], [[10, 11]], [[12, 13, 14], [15, 16, 17], [18, 19, 20]], [[21, 22], [23, 24], [25, 26], [27, 28]], [[21, 22], [23, 24], [25, 26], [27, 28]]]) == [[7, 8, 9]]", "assert Find_Min([[[1, 2, 3], [4, 5, 6], [7, 8, 9]], [[10], [11, 12]], [[13, 15, 16, 17], [18, 19], [20, 21, 22], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22], [20, 21, 22]], [[13, 15, 16, 17], [18, 19], [20, 21, 22], [20, 21, 22]]]) == [[10], [11, 12]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the area of a rectangle.\nassert rectangle_area(10,20)==200\nYour code should pass the test:\nassert rectangle_area(10,20)==200", "test_list": [ "assert rectangle_area(10,20)==200", "assert rectangle_area(10,5)==50", "assert rectangle_area(4,2)==8", "assert rectangle_area(1000000000000, 1000000000000) == 1000000000000000000000000", "assert rectangle_area(0.5, 0.5) == 0.25", "assert rectangle_area(2.5, 4.8) == 12.0", "assert rectangle_area(2.5, 0.5) == 1.25", "assert rectangle_area(0.5, 4.8) == 2.4", "assert rectangle_area(4.8, 4.8) == 23.04", "assert rectangle_area(0.5, 2.5) == 1.25", "assert rectangle_area(3.232269033100607, 4.8) == 15.514891358882913", "assert rectangle_area(2.2649401818410433, 2.5) == 5.662350454602608", "assert rectangle_area(3.355279579797867, 0.5) == 1.6776397898989335", "assert rectangle_area(2.827945062082224, 3.232269033100607) == 9.140679251478147", "assert rectangle_area(2.827945062082224, 0.5) == 1.413972531041112", "assert rectangle_area(3.6724676500173103, 0.5) == 1.8362338250086552", "assert rectangle_area(2.5, 2.5) == 6.25", "assert rectangle_area(2.502529257484548, 0.5) == 1.251264628742274", "assert rectangle_area(3.6724676500173103, 3.6724676500173103) == 13.487018640423665", "assert rectangle_area(4.30918028054133, 0.5) == 2.154590140270665", "assert rectangle_area(3.232269033100607, 3.232269033100607) == 10.447563102341134", "assert rectangle_area(2.502529257484548, 2.502529257484548) == 6.262652684566163", "assert rectangle_area(4.30918028054133, 4.30918028054133) == 18.56903469020626", "assert rectangle_area(2.4015224002109283, 2.5) == 6.003806000527321", "assert rectangle_area(2.7249479696078422, 0.44475025198075785) == 1.2119212961175423", "assert rectangle_area(0.44475025198075785, 3.387688585553926) == 1.5066753520574458", "assert rectangle_area(3.232269033100607, 4.30918028054133) == 13.928429978841528", "assert rectangle_area(0.28729718633895834, 2.502529257484548) == 0.7189696144062332", "assert rectangle_area(4.643217137707291, 3.6724676500173103) == 17.052064730235998", "assert rectangle_area(999999999999, 999999999999) == 999999999998000000000001", "assert rectangle_area(1.6141425564518155, 2.5) == 4.035356391129539", "assert rectangle_area(3.232269033100607, 1.9400105931597424) == 6.270636164157376", "assert rectangle_area(3.387688585553926, 2.902763503893509) == 9.833658788702559", "assert rectangle_area(0.44475025198075785, 2.7249479696078422) == 1.2119212961175423", "assert rectangle_area(4.577650682955883, 4.577650682955883) == 20.954885775166463", "assert rectangle_area(2.5, 4.577650682955883) == 11.444126707389708", "assert rectangle_area(2.502529257484548, 1.1182095268286556) == 2.7983520568866633", "assert rectangle_area(2.7249479696078422, 2.7249479696078422) == 7.425341437069902", "assert rectangle_area(0.44475025198075785, 0.5) == 0.22237512599037892", "assert rectangle_area(2.800623749840809, 3.1735103883415894) == 8.887808563955984", "assert rectangle_area(1.6141425564518155, 4.30918028054133) == 6.955631274244734", "assert rectangle_area(4.361641706471223, 4.643217137707291) == 20.25204952002606", "assert rectangle_area(3.9979716418805142, 3.9979716418805142) == 15.983777249280775", "assert rectangle_area(0.24900631443838703, 0.44475025198075785) == 0.11074562109127245", "assert rectangle_area(0.18551896339706864, 2.926505105970933) == 0.542922193635956", "assert rectangle_area(2.5, 5.337986881695393) == 13.344967204238483", "assert rectangle_area(0.28729718633895834, 0.3318682967427828) == 0.09534482788930398", "assert rectangle_area(2.4015224002109283, 4.8) == 11.527307521012455", "assert rectangle_area(0.44475025198075785, 3.232269033100607) == 1.4375524669410955", "assert rectangle_area(2.7249479696078422, 2.2649401818410433) == 6.171844149790968", "assert rectangle_area(3.355279579797867, 2.800623749840809) == 9.396875678537796", "assert rectangle_area(2.2649401818410433, 1.8949633184341914) == 4.291978563036444", "assert rectangle_area(4.643217137707291, 4.730780679514876) == 21.966041925858015", "assert rectangle_area(3.232269033100607, 3.9979716418805142) == 12.922519933264777", "assert rectangle_area(3.232269033100607, 4.3597224259926195) == 14.091795790450197", "assert rectangle_area(4.938837763181859, 3.038849187066821) == 15.00838312170011", "assert rectangle_area(5.337986881695393, 3.6724676500173103) == 19.60358413924311", "assert rectangle_area(4.30918028054133, 2.7249479696078422) == 11.74229205613525", "assert rectangle_area(0.18551896339706864, 3.387688585553926) == 0.628480474704046", "assert rectangle_area(3.6724676500173103, 4.5109674752781945) == 16.566382123239432", "assert rectangle_area(5.544111628815752, 4.30918028054133) == 23.890576504012714", "assert rectangle_area(4.938837763181859, 4.938837763181859) == 24.39211845103119", "assert rectangle_area(1.6141425564518155, 2.491326410875134) == 4.021355981805915", "assert rectangle_area(1.528102887111072, 2.800623749840809) == 4.279641237843577", "assert rectangle_area(2.902763503893509, 4.2131518375751345) == 12.229783390474973", "assert rectangle_area(2.491326410875134, 4.577650682955883) == 11.404422046208586", "assert rectangle_area(1.9400105931597424, 2.5) == 4.850026482899356", "assert rectangle_area(2.0880062589453283, 1.528102887111072) == 3.190688392600345", "assert rectangle_area(5.188901974559672, 4.8) == 24.906729477886422", "assert rectangle_area(0.8502551367130722, 0.5) == 0.4251275683565361", "assert rectangle_area(2.502529257484548, 2.6163599366446024) == 6.547517289563536", "assert rectangle_area(4.862586711733384, 4.577650682955883) == 22.259223381898526", "assert rectangle_area(1.802585055580215, 2.6054612383549913) == 4.696565491152228", "assert rectangle_area(999999999999, 1000000000000) == 999999999999000000000000", "assert rectangle_area(1.974235844442287, 2.5) == 4.935589611105717", "assert rectangle_area(3.6724676500173103, 4.361641706471223) == 16.017988067981864", "assert rectangle_area(3.232269033100607, 4.579129400641797) == 14.800978160255024", "assert rectangle_area(3.232269033100607, 4.016409477413704) == 12.982115978096108", "assert rectangle_area(4.2131518375751345, 0.5) == 2.1065759187875672", "assert rectangle_area(2.6702456228971103, 2.5) == 6.675614057242775", "assert rectangle_area(5.379360395952477, 3.6724676500173103) == 19.755527031919783", "assert rectangle_area(3.6942938709602657, 3.315493434137359) == 12.24840707294265", "assert rectangle_area(1.6141425564518155, 5.544111628815752) == 8.948986517790898", "assert rectangle_area(0.5, 2.6163599366446024) == 1.3081799683223012", "assert rectangle_area(2.5, 6.256758684348407) == 15.641896710871016", "assert rectangle_area(3.232269033100607, 5.631658366081931) == 18.20303494168859", "assert rectangle_area(4.910950854987185, 7.04710869277477) == 34.60800445996988", "assert rectangle_area(2.6702456228971103, 1.4909857068122419) == 3.981298057417543", "assert rectangle_area(1.0508042106584865, 0.5) == 0.5254021053292433", "assert rectangle_area(0.33636486737458804, 0.5) == 0.16818243368729402", "assert rectangle_area(4.2833724450533825, 4.512760196950995) == 19.32983267875357", "assert rectangle_area(2.4015224002109283, 3.4317007071978676) == 8.241306119155363", "assert rectangle_area(6.1423927104422855, 4.30918028054133) == 26.46867754317871", "assert rectangle_area(1.3470152550051346, 1.3470152550051346) == 1.8144500972165478", "assert rectangle_area(1.528102887111072, 2.2649401818410433) == 3.4610616310051747", "assert rectangle_area(0.8502551367130722, 4.577650682955883) == 3.8921710072613425", "assert rectangle_area(0.3137198020642086, 0.5) == 0.1568599010321043", "assert rectangle_area(0.33636486737458804, 3.038849187066821) == 1.022162103779106", "assert rectangle_area(2.5, 4.206007575725365) == 10.515018939313412", "assert rectangle_area(4.577650682955883, 0.44475025198075785) == 2.0359112947245173", "assert rectangle_area(5.544111628815752, 5.544111628815752) == 30.737173752770055", "assert rectangle_area(2.926505105970933, 4.30918028054133) == 12.610838093553461", "assert rectangle_area(2.2649401818410433, 2.7249479696078422) == 6.171844149790968", "assert rectangle_area(3.1440798686211, 4.643217137707291) == 14.59864552830198", "assert rectangle_area(0.24900631443838703, 0.5511696162230015) == 0.13724471476610983", "assert rectangle_area(1000000000000, 1000000000001) == 1000000000001000000000000" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove uppercase substrings from a given string.\nassert remove_uppercase('cAstyoUrFavoRitETVshoWs') == 'cstyoravoitshos'\nYour code should pass the test:\nassert remove_uppercase('cAstyoUrFavoRitETVshoWs') == 'cstyoravoitshos'", "test_list": [ "assert remove_uppercase('cAstyoUrFavoRitETVshoWs') == 'cstyoravoitshos'", "assert remove_uppercase('wAtchTheinTernEtrAdIo') == 'wtchheinerntrdo'", "assert remove_uppercase('VoicESeaRchAndreComMendaTionS') == 'oiceachndreomendaion'", "assert remove_uppercase('') == ''", "assert remove_uppercase('ABCDEFG') == ''", "assert remove_uppercase('ThiS%^%!s&a(mY)TesTStR%i*ng') == 'hisamesting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ThiS%^%!%s*ng') == 'hisng'", "assert remove_uppercase('ABCDABCDEFGEFG') == ''", "assert remove_uppercase('ABFCDABCDEFGEFG') == ''", "assert remove_uppercase('CABCDEFG') == ''", "assert remove_uppercase('CACDEFG') == ''", "assert remove_uppercase('ThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ABFCDABCDCEEFG') == ''", "assert remove_uppercase('ABFCDABCGEFG') == ''", "assert remove_uppercase('AABCDEFGABCGEFG') == ''", "assert remove_uppercase('ThiS%^%ABCABFCDABCDCEEFGDEFG!s&a(mY)TsesTStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngABCDABCDEFGEFG') == 'hisamsesting'", "assert remove_uppercase('ABFCDABCGEF') == ''", "assert remove_uppercase('ABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ThiSS%^%ABCDEFG!s&a(mY)TsesTStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(mY)TesTStR%i*ng') == 'hihisamsestingsamesting'", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTStR%i*ngABCDABCDEFGEFG') == 'hisamsesting'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABCGEFG') == 'hisamsesting'", "assert remove_uppercase('ThiS%^%ABCDEFG!ABCDEFGsTStR%i*ngABCDABCDEFGEFG') == 'histing'", "assert remove_uppercase('ABFCDAABCCDCEEFG') == ''", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngStR%i*ngABCDABCDEFGEFG') == 'hisamseshisamsestingting'", "assert remove_uppercase('ABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(mY)TesTStR%i*ngDCEEFG') == 'hihisamsestingsamesting'", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFG') == 'hisamseshisamsest'", "assert remove_uppercase('ThiS%^%ABCABFCDABCDCEEFGDThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(mY)TesTStR%i*ngEFG!s&a(mY)TsesTStR%i*ng') == 'hihihisamsestingsamestingsamsesting'", "assert remove_uppercase('ABFCDABCDCFG') == ''", "assert remove_uppercase('CABCDEEFG') == ''", "assert remove_uppercase('AEBCDEFG') == ''", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i*nAABCDEFGABCGEFG') == 'hisamsestin'", "assert remove_uppercase('ABCDEFGThiS%^%)!s&a(mY)TsesTAEBCDEFGStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ThiSS%^%ABCDEFGT!s&a(mY)TsesTStR%i*ng') == 'hisamsesting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCGEFG') == 'hisamsestin'", "assert remove_uppercase('CACDEFCG') == ''", "assert remove_uppercase('ABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFG') == 'hihisamsestinsamesting'", "assert remove_uppercase('A)TsesTStR%i*ng') == 'sesting'", "assert remove_uppercase('ThiSS%^%ABCDEFGT!s&a(mY)TsesTStR%i*ngABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ng') == 'hisamsestinghisamsesting'", "assert remove_uppercase('ABFCDABCThiSS%^%ABCDEFGT!s&a(mY)TsesTStR%i*ngGEFG') == 'hisamsesting'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFGCGEFG') == 'hisamsestinghihisamsestinsamesting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i*CnAABCDGABCGEFG') == 'hisamsestin'", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCA)TsesTStR%i*ngGEFG') == 'hisamsestinsesting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStRs%i*nAABCDEFGABCGEFG') == 'hisamsestsin'", "assert remove_uppercase('ThThiSS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngiS%^%ABThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCGEFG%i*ngABCDABCDEFGEFG') == 'hhisamsestingihisamsestining'", "assert remove_uppercase('AABCDEGEFG') == ''", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)ABFCDAABCCDCEEFGTsesTStABCDEFGEFG') == 'hisamseshisamsest'", "assert remove_uppercase('ThiSS%^%ABCDEFG!s&a(mY)TsesTABCDEFGThiS%^%)!s%&a(mY)TsesTStR%i*ngStR%i*ng') == 'hisamseshisamsestingting'", "assert remove_uppercase('ThiSS%^%ABCDEFGAABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABCGEFGT!s&a(mY)TsesTStR%i*ngABCDEFGThiS%^%ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFG%i*ng') == 'hihisamsestingsamsestinghihisamseshisamsesting'", "assert remove_uppercase('ABFCDAABCCDDEEFG') == ''", "assert remove_uppercase('ThiS%^%ABCDEFABAABCDEGEFGDEFGThiS%^%)!s&a(mY)ABFCDAABCCDCEEFGTsesTStABCDEFGEFG') == 'hihisamsest'", "assert remove_uppercase('ThisS%^%!s&a(mY)TsesTStRs%i*nAABCDEFGABCGEFG') == 'hissamsestsin'", "assert remove_uppercase('ThBiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngABCDABCDEFGEFG') == 'hisamsesting'", "assert remove_uppercase('CABCDE') == ''", "assert remove_uppercase('ABCDEFGThiS%^%)!s&a(mEFGStR%i*ng') == 'hisamting'", "assert remove_uppercase('ThiSS%^%ABCDEFGA(ABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABCGEFGT!s&a(mY)TsesTStR%i*ngABCDEFGThiS%^%ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesAABCDEFGABCGEFGTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFG%i*ng') == 'hihisamsestingsamsestinghihisamseshisamsesting'", "assert remove_uppercase('CACDEFCThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngAG') == 'hisamsesting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFG') == 'hisamsestin'", "assert remove_uppercase('ThiS%^%ABCABFCDABCDCEEFGDThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(ThiS%^%!s&a(mY)TsesTStRs%i*nAABCDEFGABCGEFGmY)TesTStR%i*ngEFG!s&a(mY)TsesTStR%i*ng') == 'hihihisamsestingsahisamsestsinmestingsamsesting'", "assert remove_uppercase('CABCABFCDABCThiSS%^%ABCDEFGT!s&a(mY)TsesTStR%i*ngGEFGEFG') == 'hisamsesting'", "assert remove_uppercase('ThThiSS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngiS%^A%ABThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCGEFG%i*ngABCDABCDEFGEFG') == 'hhisamsestingihisamsestining'", "assert remove_uppercase('ABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)Tse%sTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFG') == 'hihisamsestinsamesting'", "assert remove_uppercase('ABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)Tse%sTStThBiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngABCDABCDEFGEFGR%i*n%!s&a(mY)TesTStR%i*ngDCEEFG') == 'hihisamsesthisamsestinginsamesting'", "assert remove_uppercase('ThThiSS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngiS%^%ABThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCGEFG%iS*ngABCDABCDEFGEFG') == 'hhisamsestingihisamsestining'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABABFCDABCThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFGT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFGCGEFG') == 'hisamsestinghisamsestinhihisamsestinsamesting'", "assert remove_uppercase('AAABFCDAABCCDCEEFGCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABABFCDABCThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFGT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFGCGEFG') == 'hisamsestinghisamsestinhihisamsestinsamesting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TemsTStR%i*ng') == 'hisamemsting'", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiSThiS%^%ABCABFCDABCDCEEFGDThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(ThiS%^%!s&a(mY)TsesTStRs%i*nAABCDEFGABCGEFGmY)TesTStR%i*ngEFG!s&a(mY)TsesTStR%i*ng%^%)!s&a(mY)ABFCDAABCCDCEEFGTsesTStABCDEFGEFG') == 'hisamseshihihihisamsestingsahisamsestsinmestingsamsestingsamsest'", "assert remove_uppercase('ThiS%^%ABCABFCDABCDCEEFGDThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(mY)TesTStR%i*ngEFG!ABFCDABCDCFGs&a(mY)TsesTStR%i*ng') == 'hihihisamsestingsamestingsamsesting'", "assert remove_uppercase('ThBiS%^%ABCDThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(mY)TesTStR%i*ngEFG!s&a(mY)TsesTStR%i*ngABCDABCDEFGEFG') == 'hihihisamsestingsamestingsamsesting'", "assert remove_uppercase('ACABCCDE') == ''", "assert remove_uppercase('ABCDFEFG') == ''", "assert remove_uppercase('ThBiS%^%ABCDEFG!s&a(mY)TsesThiS%^%ABCDEFABAABCDEGEFGDEFGThiS%^%)!s&a(mY)ABFCDAABCCDCEEFGTsesTStABCDEFGEFGTStR%i*ngABCDABCDEFGEFG') == 'hisamseshihisamsestting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TemsTStR%i*ngAmCABCCDE') == 'hisamemstingm'", "assert remove_uppercase('ThiS%^%!s&a(mY)(TemsTStR%i*ngAmCABCCDE') == 'hisamemstingm'", "assert remove_uppercase('ThiSS%^%ABCDEFGA(ABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABCGEFGT!s&a(ThiSS%^%ABCDEFGAABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABCGEFGT!s&a(mY)TsesTStR%i*ngABCDDEFGThiS%^%ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFG%i*ng%ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesAABCDEFGABCGEFGTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFG%i*ng') == 'hihisamsestingsahihisamsestingsamsestinghihisamseshisamsestinghisamseshisamsesting'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABABFCDABCThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFGT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTStRCEEFGCGEFG') == 'hisamsestinghisamsestinhihisamsestinsamest'", "assert remove_uppercase('AThBiS%^%ABCDEFG!s&a(mY)TsesThiS%^%ABCDEFABAABCDEGEFGDEFGThiS%^%)!s&a(mY)ABFCDAABCCDCEEFGTsesTStABCDEFGEFGTStR%i*ngABCDABCDEFGEFGABCDEGEFG') == 'hisamseshihisamsestting'", "assert remove_uppercase('ThiS%^%!s&a(mY)TemsTStR%i*ngABFCDABCGEFAmCABCCDE') == 'hisamemstingm'", "assert remove_uppercase('CABCDEF') == ''", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(m)Y)TsesTStABCDEFGEFG') == 'hisamseshisamsest'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&aC(mY)TsesTStR%i*ngABCGEFG') == 'hisamsesting'", "assert remove_uppercase('ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCsDEFGThiS%^%)!s&a(m)Y)TsesTStABCDEFGEFG') == 'hisamsesshisamsest'", "assert remove_uppercase('ThThR%i*ngiS%^%ABThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCGEFG%iS*ngABCDABCDEFGEFG') == 'hhingihisamsestining'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&aC(mY)TsesTStR%i*ngABCGEThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFGFG') == 'hisamsestinghisamsestin'", "assert remove_uppercase('AABCDThiS%^%!s&a(mY)TemsTStR%i*ngEFGABCGEFG') == 'hisamemsting'", "assert remove_uppercase('ABFCDAABCCDDEEEFG') == ''", "assert remove_uppercase('ABFCDABCDEFGGEFG') == ''", "assert remove_uppercase('ThiSS%^%ABCDEFGT!s&a(mY)TsesTStR%i*ngABCDEFGThiS%^%)!s&a(mY)Tse%sTStR%i*ng') == 'hisamsestinghisamsesting'", "assert remove_uppercase('AABThThiSS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngiS%^%ABThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCGEFG%i*ngABCDABCDEFGEFGCDEFGABCDEFGThiS%^%)!s&aC(mY)TsesTStR%i*ngABCGEThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFGFG') == 'hhisamsestingihisamsestininghisamsestinghisamsestin'", "assert remove_uppercase('AABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTSetR%i*ngDCEEFGCGEFG') == 'hisamsestinghihisamsestinsameseting'", "assert remove_uppercase('ABFCDAABCCEDDEEFG') == ''", "assert remove_uppercase('ThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGABCA)TsesTStR%ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFGi*ngGEFG') == 'hisamsestinsesthisamseshisamsesting'", "assert remove_uppercase('ACABCABFCDABCT%hiThiS%^%ABCDEFG!s&a(mY)Tse%sTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFGCDE') == 'hihisamsestinsamesting'", "assert remove_uppercase('AThiS%^%!s&a(mY)TsesTStR%i*nAABCDEFGABCGEFGBCDABCDG') == 'hisamsestin'", "assert remove_uppercase('ThiSS%^%ABCDEFGAABCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABCGEFGT!s&a(mY)TsesTStR%i*ngABCDEFGThiS%^%ThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStABCThiS%^%ABCABFCDABCDCEEFGDThiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngS%^%!s&a(mY)TesTStR%i*ngEFG!s&a(mY)TsesTStR%i*ngDEFGEFG%i*ng') == 'hihisamsestingsamsestinghihisamseshisamsesthihihisamsestingsamestingsamsestinging'", "assert remove_uppercase('ThiSAAABFCDAABCCDCEEFGCDEFGABCDEFGThiS%^%)!s&a(mY)TsesTStR%i*ngABSABFCDABCThiS%^%!s&a(mY)TsesTStR%i**CnAABCDGABCGEFGT%hiThiS%^%ABCDEFG!s&a(mY)TsesTStR%i*n%!s&a(mY)TesTStR%i*ngDCEEFGCGEFG%^%!s&a(mY)TsesTStR%i*ng') == 'hihisamsestinghisamsestinhihisamsestinsamestingsamsesting'", "assert remove_uppercase('ThThiSS%^%ABCDEFG!s&a(mY)TsesTStR%i*ngiS%^A%ABThiS%^%!s&a(mY)TsesTStR%i*CnAABCDEFGACDEFGEFG') == 'hhisamsestingihisamsestin'", "assert remove_uppercase('ABCDEFGThiS%^%)!s&a(mY)TsesTThiS%^%!s&a(mY)TemsTStR%i*ngABAFCDABCGEFAmCABCCDEAEBCDEFGStR%i*ng') == 'hisamseshisamemstingmting'", "assert remove_uppercase('CACDEFCThiS%^%ABCDEFG!s&a(mY)TsesTStR%%i*ngAG') == 'hisamsesting'", "assert remove_uppercase('AABFCDABCGEFG') == ''", "assert remove_uppercase('ThABFCDABCDEFGGEFGiS%^%!%sg') == 'hisg'", "assert remove_uppercase('CAThiS%^%ABCDEFABCDEFGG!s&a(mY)TsesTABCDEFGThiS%^%)!s&a(mY)TsesTStABCDEFGEFGBCDEEFG') == 'hisamseshisamsest'", "assert remove_uppercase('ThisS%^%!s&a(mY)ABFCDABCDEFGEFGTsesTStRs%i*nAABCDEFGABCGEFG') == 'hissamsestsin'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to get the first element of each sublist.\nassert Extract([[1, 2], [3, 4, 5], [6, 7, 8, 9]]) == [1, 3, 6]\nYour code should pass the test:\nassert Extract([[1, 2], [3, 4, 5], [6, 7, 8, 9]]) == [1, 3, 6]", "test_list": [ "assert Extract([[1, 2], [3, 4, 5], [6, 7, 8, 9]]) == [1, 3, 6]", "assert Extract([[1,2,3],[4, 5]]) == [1,4]", "assert Extract([[9,8,1],[1,2]]) == [9,1]", "assert Extract([]) == []", "assert Extract([[1, 2, 3], [4, 5, 6], [7, 8, 9]]) == [1, 4, 7]", "assert Extract([[1, 2, 3], [4], [5, 6, 7, 8]]) == [1, 4, 5]", "assert Extract([[9], [1, 2], [3, 4, 5], [6, 7, 8, 9]]) == [9, 1, 3, 6]", "assert Extract([[1], [2], [3], [4], [5]]) == [1, 2, 3, 4, 5]", "assert Extract([[1], [2, 3], [4], [5, 6], [7], [8, 9]]) == [1, 2, 4, 5, 7, 8]", "assert Extract([['a', 'b', 'c'], [1, 2, 3], [True, False]]) == ['a', 1, True]", "assert Extract([[1.5, 2.75, 3.25], ['apple', 'banana', 'cherry'], [True, False, True]]) == [1.5, 'apple', True]", "assert Extract([[[1, 2], [3, 4], [5, 6]], ['cat', 'dog'], [None]]) == [[1, 2], 'cat', None]", "assert Extract([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[9, 10], [11, 12]]]) == [[1, 2], [5, 6], [9, 10]]", "assert Extract([[['a'], [1], [True]], [['b'], [2], [False]], [['c'], [3], [True]]]) == [['a'], ['b'], ['c']]", "assert Extract([[[9], [8], [1]], [[1], [2], [3]], [[4], [5], [6]]]) == [[9], [1], [4]]", "assert Extract([[[1, 2, 3], [4, 5, 6]], [[7, 8], [9]], [[10, 11, 12], [13, 14]]]) == [[1, 2, 3], [7, 8], [10, 11, 12]]", "assert Extract([[[1, 2, 3], [4]], [[5, 6, 7], [8]], [[9, 10], [11, 12]], [[13, 14], [15]]]) == [[1, 2, 3], [5, 6, 7], [9, 10], [13, 14]]", "assert Extract([[['apple', 'banana'], {'carrot': 'potato'}, 100], [True, False]]) == [['apple', 'banana'], True]", "assert Extract([[['b', 'a'], ['d', 'c'], ['e', 'f']], [[1, 2, 3], [4, 5, 6]]]) == [['b', 'a'], [1, 2, 3]]", "assert Extract([[{'A': [1, 2, 3]}, {'B': [4, 5, 6]}, {'C': [7, 8, 9]}], [[10, 20, 30], [40, 50, 60]]]) == [{'A': [1, 2, 3]}, [10, 20, 30]]", "assert Extract([[['red', 'green'], ['blue', 'yellow']], [[100, 200], [300, 400]]]) == [['red', 'green'], [100, 200]]", "assert Extract([[['lion', 'tiger'], ['elephant', 'giraffe']], [[True, False], ['yes', 'no']]]) == [['lion', 'tiger'], [True, False]]", "assert Extract([[[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]]]) == [[[], [], []], [[], [], []], [[], [], []]]", "assert Extract([[1], [2], [3], [4], [5], [1]]) == [1, 2, 3, 4, 5, 1]", "assert Extract([[['red', 'green'], ['blue', 'yellow']], [[200], [300, 400]], [[200], [300, 400]]]) == [['red', 'green'], [200], [200]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14], [15]]]) == [[1, 2, 3], [13, 14]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14], [], []]]) == [[1, 2, 3], [13, 14]]", "assert Extract([[1, 12], [9], [1, 12], [3, 4, 5], [6, 7, 8, 9]]) == [1, 9, 1, 3, 6]", "assert Extract([[[1, 2], [3, 4]], [[5, 6]], [[5, 6]], [[9, 10], [11, 12]]]) == [[1, 2], [5, 6], [5, 6], [9, 10]]", "assert Extract([[['a'], [1], [True]], [['b'], [2], [False]], [[3], [True]]]) == [['a'], ['b'], [3]]", "assert Extract([[1, 2, 3], [4], [6, 7, 8], [1, 2, 3]]) == [1, 4, 6, 1]", "assert Extract([[[5, 6]], [[5, 6]], [[9, 10], [11, 12]]]) == [[5, 6], [5, 6], [9, 10]]", "assert Extract([[[9], [8], [1]], [[2], [3]], [[4], [5], [6]]]) == [[9], [2], [4]]", "assert Extract([[['a'], [1], [True]], [['b'], [2], [False]], [['c'], [3], [True, True]]]) == [['a'], ['b'], ['c']]", "assert Extract([[True, False], [True, False]]) == [True, True]", "assert Extract([[1], [2], [3], [4]]) == [1, 2, 3, 4]", "assert Extract([[2.75, 3.25], ['apple', 'banana', 'cherry'], [2.75, 3.25], [True, False, True]]) == [2.75, 'apple', 2.75, True]", "assert Extract([[2], [3], [4]]) == [2, 3, 4]", "assert Extract([[['b'], [2], [False]], [[3], [True]], [['a'], [1], [True]]]) == [['b'], [3], ['a']]", "assert Extract([[[1, 2, 3], [4]], [[13, 14], [], []], [[13, 14], [], []]]) == [[1, 2, 3], [13, 14], [13, 14]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14]], [[13, 14]]]) == [[1, 2, 3], [13, 14], [13, 14]]", "assert Extract([[['red', 'green'], ['blue', 'yellow']], [[200], [300, 400]], [[200], [300, 400]], [[200], [300, 400]]]) == [['red', 'green'], [200], [200], [200]]", "assert Extract([[True, True, False, False], [True, True, False, False], [True, True, False, False], [True, True, False, False]]) == [True, True, True, True]", "assert Extract([[['red', 'green'], ['blue', 'yellow']]]) == [['red', 'green']]", "assert Extract([[[1, 2, 3], [4]], [[13, 14, 14], [13, 14, 14], [], []], [[13, 14, 14], [13, 14, 14], [], []]]) == [[1, 2, 3], [13, 14, 14], [13, 14, 14]]", "assert Extract([[[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]]]) == [[[], [], []], [[], [], []], [[], [], []], [[], [], []]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14], [], [], [13, 14]], [[1, 2, 3], [4]]]) == [[1, 2, 3], [13, 14], [1, 2, 3]]", "assert Extract([[[13, 14]], [[13, 14]]]) == [[13, 14], [13, 14]]", "assert Extract([[[5, 6, 5], [5, 6, 5]], [[5, 6, 5], [5, 6, 5]], [[5, 6, 5], [5, 6, 5]], [[9, 10], [11, 12]]]) == [[5, 6, 5], [5, 6, 5], [5, 6, 5], [9, 10]]", "assert Extract([[1, 12], [9], [3, 4, 5], [6, 7, 8, 9]]) == [1, 9, 3, 6]", "assert Extract([[['a'], [1], [True]], [['b'], [2], [False]], [[3], [True]], [[3], [True]]]) == [['a'], ['b'], [3], [3]]", "assert Extract([[[[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]]]) == [[[], [], []], [[], [], []], [[], [], []], [[], [], []], [[], [], []], [[], [], []]]", "assert Extract([[{'A': [1, 2, 3]}, {'B': [4, 5, 6]}, {'C': [7, 8, 9]}], [[10, 20, 30], [40, 50, 60], [40, 50, 60]]]) == [{'A': [1, 2, 3]}, [10, 20, 30]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14, 13], [], [13, 14, 13], []]]) == [[1, 2, 3], [13, 14, 13]]", "assert Extract([[3, 3], [1], [2], [3, 3], [4]]) == [3, 1, 2, 3, 4]", "assert Extract([[[1, 2], [3, 4]], [[5, 6], [7, 8]], [[9, 10], [11, 12]], [[1, 2], [3, 4]]]) == [[1, 2], [5, 6], [9, 10], [1, 2]]", "assert Extract([[['a'], [1], [True]], [['b'], [2], [False]], [[3], [True]], [[3], [True]], [[3], [True]]]) == [['a'], ['b'], [3], [3], [3]]", "assert Extract([[1, 12], [9], [1, 12], [3, 4, 5], [6, 7, 8, 9, 7]]) == [1, 9, 1, 3, 6]", "assert Extract([[['red', 'green'], ['blue', 'yellow']], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]]]) == [['red', 'green'], [200], [200], [200], [200]]", "assert Extract([[[1, 2, 3], [4, 5, 6], [4, 5, 6]], [[1, 2, 3], [4, 5, 6], [4, 5, 6]], [[7, 8], [9]], [[10, 11, 12], [13, 14]]]) == [[1, 2, 3], [1, 2, 3], [7, 8], [10, 11, 12]]", "assert Extract([[1, 12], [9], [1, 12], [3, 4, 5], [6, 7, 8, 9], [1, 12], [1, 12], [1, 12]]) == [1, 9, 1, 3, 6, 1, 1, 1]", "assert Extract([[1, 12, 1], [9], [1, 12, 1], [3, 4, 5], [6, 7, 8, 9]]) == [1, 9, 1, 3, 6]", "assert Extract([[12], [9], [12], [3, 4, 5], [6, 7, 8, 9, 7]]) == [12, 9, 12, 3, 6]", "assert Extract([[[1, 2, 3], [4]]]) == [[1, 2, 3]]", "assert Extract([[['red', 'agreen', 'green'], ['blue', 'yellow']], [[200, 200], [300, 400], [200, 200], [300, 400]], [['red', 'agreen', 'green'], ['blue', 'yellow']], [[200, 200], [300, 400], [200, 200], [300, 400]], [[200, 200], [300, 400], [200, 200], [300, 400]]]) == [['red', 'agreen', 'green'], [200, 200], ['red', 'agreen', 'green'], [200, 200], [200, 200]]", "assert Extract([[1], [2], [4], [4], [5], [1], [1]]) == [1, 2, 4, 4, 5, 1, 1]", "assert Extract([[1, 12], [9], [1, 12], [6, 7, 8, 9]]) == [1, 9, 1, 6]", "assert Extract([[2], [4]]) == [2, 4]", "assert Extract([[[1, 2, 3], [4, 4]], [[5, 6, 7], [8]], [[9, 10], [11, 12]], [[1, 2, 3], [4, 4]], [[13, 14], [15]]]) == [[1, 2, 3], [5, 6, 7], [9, 10], [1, 2, 3], [13, 14]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14], [13, 14]], [[13, 14], [13, 14]], [[13, 14], [13, 14]]]) == [[1, 2, 3], [13, 14], [13, 14], [13, 14]]", "assert Extract([[[1, 2, 3]], [[13, 14], [], []], [[13, 14], [], []]]) == [[1, 2, 3], [13, 14], [13, 14]]", "assert Extract([[[9], [8], [1]], [[1], [2], [3]], [[4], [5]], [[4], [5]]]) == [[9], [1], [4], [4]]", "assert Extract([[[1, 2, 3], [4]], [[1, 2, 3], [4]]]) == [[1, 2, 3], [1, 2, 3]]", "assert Extract([[[5, 6, 5], [5, 6, 5], [5, 6, 5]], [[5, 6, 5], [5, 6, 5], [5, 6, 5]], [[5, 6, 5], [5, 6, 5], [5, 6, 5]], [[9, 10], [11, 12]]]) == [[5, 6, 5], [5, 6, 5], [5, 6, 5], [9, 10]]", "assert Extract([[[2, 1, 2], [2, 1, 2], [3, 4]], [[5, 6], [7, 8]], [[2, 1, 2], [2, 1, 2], [3, 4]], [[9, 10], [11, 12]]]) == [[2, 1, 2], [5, 6], [2, 1, 2], [9, 10]]", "assert Extract([[[[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], [], []]]]) == [[[], [], []], [[], [], []], [[], [], []], [[], [], []], [[], [], []], [[], [], []]]", "assert Extract([[[1, 2, 3], [4, 4]], [[5, 6, 7], [8]], [[9, 10, 9], [9, 10, 9], [11, 12]], [[9, 10, 9], [9, 10, 9], [11, 12]], [[1, 2, 3], [4, 4]], [[13, 14], [15]]]) == [[1, 2, 3], [5, 6, 7], [9, 10, 9], [9, 10, 9], [1, 2, 3], [13, 14]]", "assert Extract([[2], [3], [4], [5], [1]]) == [2, 3, 4, 5, 1]", "assert Extract([[[1, 2, 3]], [[], []], [[], []], [[], []]]) == [[1, 2, 3], [], [], []]", "assert Extract([[9], [3, 4, 5], [6, 7, 8, 9]]) == [9, 3, 6]", "assert Extract([[['b'], [2], []], [['a'], [1], [True]], [['b'], [2], []], [['c'], [3], [True]]]) == [['b'], ['a'], ['b'], ['c']]", "assert Extract([[[1, 2], [3, 4], [5, 6]], [None]]) == [[1, 2], None]", "assert Extract([[True, True, True, False], [True, True, True, False], [True, True, True, False], [True, True, True, False], [True, True, True, False], [True, True, True, False], [True, True, True, False]]) == [True, True, True, True, True, True, True]", "assert Extract([[[1, 2], [3, 4]], [[5, 6]], [[5, 6]], [[9, 10], [11, 12], [11, 12]], [[1, 2], [3, 4]]]) == [[1, 2], [5, 6], [5, 6], [9, 10], [1, 2]]", "assert Extract([[27], [3, 2], [3], [4], [5], [3, 2], [27]]) == [27, 3, 3, 4, 5, 3, 27]", "assert Extract([[4, 4], [4, 4], [2]]) == [4, 4, 2]", "assert Extract([[[3], [True], [True]], [['a'], [1], [True]], [['b'], [2], [False]], [[3], [True], [True]], [[3], [True], [True]], [[3], [True], [True]]]) == [[3], ['a'], ['b'], [3], [3], [3]]", "assert Extract([[[1, 2, 3], [4, 4]], [[9, 10], [11, 12]], [[1, 2, 3], [4, 4]], [[13, 14], [15]]]) == [[1, 2, 3], [9, 10], [1, 2, 3], [13, 14]]", "assert Extract([[1, 12], [9, 9], [9, 9], [6, 7, 8, 9]]) == [1, 9, 9, 6]", "assert Extract([['apple', 'banana', 'cherry'], [1.5, 3.25], [1.5, 3.25], [True, False, True]]) == ['apple', 1.5, 1.5, True]", "assert Extract([[1], [76, 2], [3], [4], [5]]) == [1, 76, 3, 4, 5]", "assert Extract([[1, 12], [9], [1, 12], [3, 4, 5], [6, 7, 8, 9], [1, 12], [1, 12], [1, 12], [1, 12]]) == [1, 9, 1, 3, 6, 1, 1, 1, 1]", "assert Extract([[[1, 2, 3]], [[5, 6, 7], [8]], [[9, 10], [11, 12]], [[13, 14], [15]]]) == [[1, 2, 3], [5, 6, 7], [9, 10], [13, 14]]", "assert Extract([[[9], [8], [1]], [[2], [3]]]) == [[9], [2]]", "assert Extract([[True, True, False], [True, True, False], [True, True, False], [True, True, False], [True, True, False], [True, True, False]]) == [True, True, True, True, True, True]", "assert Extract([[3, 3], [1], [2], [3, 3], [3, 3]]) == [3, 1, 2, 3, 3]", "assert Extract([[[1, 2, 3], [4, 4]], [[5, 6, 7], [8]], [[1, 2, 3], [4, 4]], [[13, 14], [15]]]) == [[1, 2, 3], [5, 6, 7], [1, 2, 3], [13, 14]]", "assert Extract([[1, 12], [9], [3, 4, 5], [6, 7, 8, 9], [9]]) == [1, 9, 3, 6, 9]", "assert Extract([[2], [4], [2]]) == [2, 4, 2]", "assert Extract([[1, 12, 12], [9], [1, 12, 12], [3, 4, 5], [6, 7, 8, 9], [1, 12, 12], [1, 12, 12], [1, 12, 12], [1, 12, 12]]) == [1, 9, 1, 3, 6, 1, 1, 1, 1]", "assert Extract([[1, 12], [9], [9], [6, 7, 8, 9]]) == [1, 9, 9, 6]", "assert Extract([[4, 5, 6], [7, 8, 200]]) == [4, 7]", "assert Extract([[1], [2], [4], [5], [1]]) == [1, 2, 4, 5, 1]", "assert Extract([[[1, 2], [3, 4], [5, 6]], ['cat', 'dog']]) == [[1, 2], 'cat']", "assert Extract([[1], [2], [3], [4], [5], [5]]) == [1, 2, 3, 4, 5, 5]", "assert Extract([[['red', 'green'], ['blue', 'yellow']], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]], [[200], [300, 400], [300, 400]], [['red', 'green'], ['blue', 'yellow']]]) == [['red', 'green'], [200], [200], [200], [200], [200], ['red', 'green']]", "assert Extract([['apple', 'banana', 'cherry'], [1.5, 3.25, 3.25], [1.5, 3.25, 3.25]]) == ['apple', 1.5, 1.5]", "assert Extract([[[], [1], [True]], [['b'], [2], [False]], [[], [1], [True]], [[3], [True]], [[3], [True]], [[3], [True]]]) == [[], ['b'], [], [3], [3], [3]]", "assert Extract([[[13, 14, 13], [False, False], [], [13, 14, 13], []], [[1, 2, 3], [4]], [[13, 14, 13], [False, False], [], [13, 14, 13], []], [[13, 14, 13], [False, False], [], [13, 14, 13], []]]) == [[13, 14, 13], [1, 2, 3], [13, 14, 13], [13, 14, 13]]", "assert Extract([[1], [1], [9], [1], [3, 4, 5], [6, 7, 8, 9, 7]]) == [1, 1, 9, 1, 3, 6]", "assert Extract([[1], [2], [3], [4], [5, 5], [5, 5]]) == [1, 2, 3, 4, 5, 5]", "assert Extract([[1], [2, 2], [3, 3], [4], [5]]) == [1, 2, 3, 4, 5]", "assert Extract([[True, False, False], [True, False, False], [True, False, False], [True, False, False]]) == [True, True, True, True]", "assert Extract([[[3], [True, True], [True, True]], [[3], [True, True], [True, True]], [['a'], [1], [True]], [['b'], [2], [False]], [[3], [True, True], [True, True]], [[3], [True, True], [True, True]], [[3], [True, True], [True, True]]]) == [[3], [3], ['a'], ['b'], [3], [3], [3]]", "assert Extract([[['b'], [2], []], [['a'], [1], [False]], [['b'], [2], []], [['a'], [1], [False]], [['c'], [3], [True]]]) == [['b'], ['a'], ['b'], ['a'], ['c']]", "assert Extract([[4], [4], [2], [4]]) == [4, 4, 2, 4]", "assert Extract([[[1, 2, 3]], [[]], [[]], [[]], [[1, 2, 3]]]) == [[1, 2, 3], [], [], [], [1, 2, 3]]", "assert Extract([[[1, 2, 3], [4]], [[13, 14, 14], [13, 14, 14], [], []], [[13, 14, 14], [13, 14, 14], [], []], [[1, 2, 3], [4]]]) == [[1, 2, 3], [13, 14, 14], [13, 14, 14], [1, 2, 3]]", "assert Extract([[True, True, False], [True, True, False], [True, True, False], [True, True, False], [True, True, False], [True, True, False], [True, True, False], [True, True, False]]) == [True, True, True, True, True, True, True, True]", "assert Extract([[['b'], [2], []], [['a'], [1], [True]], [['b'], [2], []], [['c'], [3], [True]], [['b'], [2], []]]) == [['b'], ['a'], ['b'], ['c'], ['b']]", "assert Extract([[[[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]]], [[[], [], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], [], []], [[], [], []]], [[[], [], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], ['YHSlmRTLE', 'elephant'], []], [[], [], []]]]) == [[[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], [-68, 400, 11, -57, -70, 76, 50, 27]], [[], [], []], [[], [], []], [[], [], []], [[], [], []]]", "assert Extract([[[5, 6, 5], [5, 6, 5], [5, 6, 5]], [[5, 6, 5], [5, 6, 5], [5, 6, 5]], [[5, 6, 5], [5, 6, 5], [5, 6, 5]], [[9, 10], [11, 12, 12]]]) == [[5, 6, 5], [5, 6, 5], [5, 6, 5], [9, 10]]", "assert Extract([[[9], [8], [1, 1]], [[2], [3], [3]], [[2], [3], [3]], [[5], [6]], [[9], [8], [1, 1]], [[5], [6]]]) == [[9], [2], [2], [5], [9], [5]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find all possible combinations of the elements of a given list.\nassert combinations_list(['orange', 'red', 'green', 'blue'])==[[], ['orange'], ['red'], ['red', 'orange'], ['green'], ['green', 'orange'], ['green', 'red'], ['green', 'red', 'orange'], ['blue'], ['blue', 'orange'], ['blue', 'red'], ['blue', 'red', 'orange'], ['blue', 'green'], ['blue', 'green', 'orange'], ['blue', 'green', 'red'], ['blue', 'green', 'red', 'orange']]\nYour code should pass the test:\nassert combinations_list(['orange', 'red', 'green', 'blue'])==[[], ['orange'], ['red'], ['red', 'orange'], ['green'], ['green', 'orange'], ['green', 'red'], ['green', 'red', 'orange'], ['blue'], ['blue', 'orange'], ['blue', 'red'], ['blue', 'red', 'orange'], ['blue', 'green'], ['blue', 'green', 'orange'], ['blue', 'green', 'red'], ['blue', 'green', 'red', 'orange']]", "test_list": [ "assert combinations_list(['orange', 'red', 'green', 'blue'])==[[], ['orange'], ['red'], ['red', 'orange'], ['green'], ['green', 'orange'], ['green', 'red'], ['green', 'red', 'orange'], ['blue'], ['blue', 'orange'], ['blue', 'red'], ['blue', 'red', 'orange'], ['blue', 'green'], ['blue', 'green', 'orange'], ['blue', 'green', 'red'], ['blue', 'green', 'red', 'orange']]", "assert combinations_list(['red', 'green', 'blue', 'white', 'black', 'orange'])==[[], ['red'], ['green'], ['green', 'red'], ['blue'], ['blue', 'red'], ['blue', 'green'], ['blue', 'green', 'red'], ['white'], ['white', 'red'], ['white', 'green'], ['white', 'green', 'red'], ['white', 'blue'], ['white', 'blue', 'red'], ['white', 'blue', 'green'], ['white', 'blue', 'green', 'red'], ['black'], ['black', 'red'], ['black', 'green'], ['black', 'green', 'red'], ['black', 'blue'], ['black', 'blue', 'red'], ['black', 'blue', 'green'], ['black', 'blue', 'green', 'red'], ['black', 'white'], ['black', 'white', 'red'], ['black', 'white', 'green'], ['black', 'white', 'green', 'red'], ['black', 'white', 'blue'], ['black', 'white', 'blue', 'red'], ['black', 'white', 'blue', 'green'], ['black', 'white', 'blue', 'green', 'red'], ['orange'], ['orange', 'red'], ['orange', 'green'], ['orange', 'green', 'red'], ['orange', 'blue'], ['orange', 'blue', 'red'], ['orange', 'blue', 'green'], ['orange', 'blue', 'green', 'red'], ['orange', 'white'], ['orange', 'white', 'red'], ['orange', 'white', 'green'], ['orange', 'white', 'green', 'red'], ['orange', 'white', 'blue'], ['orange', 'white', 'blue', 'red'], ['orange', 'white', 'blue', 'green'], ['orange', 'white', 'blue', 'green', 'red'], ['orange', 'black'], ['orange', 'black', 'red'], ['orange', 'black', 'green'], ['orange', 'black', 'green', 'red'], ['orange', 'black', 'blue'], ['orange', 'black', 'blue', 'red'], ['orange', 'black', 'blue', 'green'], ['orange', 'black', 'blue', 'green', 'red'], ['orange', 'black', 'white'], ['orange', 'black', 'white', 'red'], ['orange', 'black', 'white', 'green'], ['orange', 'black', 'white', 'green', 'red'], ['orange', 'black', 'white', 'blue'], ['orange', 'black', 'white', 'blue', 'red'], ['orange', 'black', 'white', 'blue', 'green'], ['orange', 'black', 'white', 'blue', 'green', 'red']]", "assert combinations_list(['red', 'green', 'black', 'orange'])==[[], ['red'], ['green'], ['green', 'red'], ['black'], ['black', 'red'], ['black', 'green'], ['black', 'green', 'red'], ['orange'], ['orange', 'red'], ['orange', 'green'], ['orange', 'green', 'red'], ['orange', 'black'], ['orange', 'black', 'red'], ['orange', 'black', 'green'], ['orange', 'black', 'green', 'red']]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum product subarray of the given array.\nassert max_subarray_product([1, -2, -3, 0, 7, -8, -2]) == 112\nYour code should pass the test:\nassert max_subarray_product([1, -2, -3, 0, 7, -8, -2]) == 112", "test_list": [ "assert max_subarray_product([1, -2, -3, 0, 7, -8, -2]) == 112", "assert max_subarray_product([6, -3, -10, 0, 2]) == 180", "assert max_subarray_product([-2, -40, 0, -2, -3]) == 80", "assert max_subarray_product([2, 3, 4, 5, 6]) == 720", "assert max_subarray_product([-2, 4, -6, 8, 10, -12, 14, -16]) == 10321920", "assert max_subarray_product([2, 4, 6, 8, 10]) == 3840", "assert max_subarray_product([-5, -2, -8, -9, -6, -4, -3]) == 17280", "assert max_subarray_product([-5, -10, -2, -8, -4]) == 800", "assert max_subarray_product([-5, -2, -8, -9, -6, -4, -3, -8]) == 414720", "assert max_subarray_product([2, 4, 6, 8, 10, 6]) == 23040", "assert max_subarray_product([-10, -2, -8, -4]) == 640", "assert max_subarray_product([-5, -10, -2, -8, 5, -4]) == 4000", "assert max_subarray_product([-2, -2, 4, -6, 8, 10, -12, -16, 8]) == 5898240", "assert max_subarray_product([2, 4, 5, -10]) == 40", "assert max_subarray_product([2, 6, 10]) == 120", "assert max_subarray_product([-1, -8, -9, -6, -4, -3, -8]) == 41472", "assert max_subarray_product([-2, -2, 6, -6, 10, -12, -16, 8, 8]) == 8847360", "assert max_subarray_product([-5, -2, -8, -9, -3]) == 720", "assert max_subarray_product([-5, -10, -2, -8, 5, -1, -4, -5, -8]) == 640000", "assert max_subarray_product([-2, -5, -10, -2, -8, 5, -1, -4, -5, -8, -8, -5]) == 25600000", "assert max_subarray_product([-2, -2, -17, 4, -6, 8, 10, -12, -16, 8, -12]) == 1203240960", "assert max_subarray_product([-2, -5, -10, -8, 5, -1, -4, -5, -8, -8, -5, -4]) == 51200000", "assert max_subarray_product([-5, -1, -8, -9, -6, -4, -3, -8]) == 207360", "assert max_subarray_product([-10, -2, -8, 8, -4]) == 5120", "assert max_subarray_product([-5, -10, -2, -8, 5, -4, 5]) == 16000", "assert max_subarray_product([-1, -8, -9, -6, -4, -3, -8, -3]) == 124416", "assert max_subarray_product([-6, -1, -8, -9, -6, -4, -3, -8]) == 248832", "assert max_subarray_product([-5, -1, -8, -9, -4, -3, -8, -8]) == 276480", "assert max_subarray_product([-2, -5, -10, -2, -8, 5, -1, -4, -5, -8, -8, -5, -2]) == 102400000", "assert max_subarray_product([2, 3, 4, 5, 6, 4]) == 2880", "assert max_subarray_product([-5, -10, -2, -8, 5]) == 4000", "assert max_subarray_product([-2, -1, -2, 4, -6, 8, 10, -12, -16, 8]) == 11796480", "assert max_subarray_product([-10, -2, 8, -4]) == 160", "assert max_subarray_product([-2, 4, 8, 10, -12, 6, 14, -16]) == 5160960", "assert max_subarray_product([-2, -2, -6, 8, 10, -12, -16, 8, -6, -2, 10]) == 176947200", "assert max_subarray_product([2, -10, 3, 4, 5, 6, -16]) == 115200", "assert max_subarray_product([-10, -2, -1, -8, 8, -4]) == 1280", "assert max_subarray_product([10, -2, 6, -8, 5, -4]) == 4800", "assert max_subarray_product([-2, -5, -10, -2, -8, 5, -1, -3, -4, -5, -8, -8, -5]) == 153600000", "assert max_subarray_product([2, -10, 2, 4, 5, 6, -16, 5]) == 384000", "assert max_subarray_product([-5, -2, -8, -9, -6, -8]) == 34560", "assert max_subarray_product([-10, -2, -2, -8, 8, -4]) == 2560", "assert max_subarray_product([4, 2, 3, 4, 5, 6]) == 2880", "assert max_subarray_product([-5, -10, -3, -8, -4]) == 1200", "assert max_subarray_product([-5, -11, -10, -10, -2, -8, -4]) == 88000", "assert max_subarray_product([10, -2, 6, -8, 4, -4]) == 3840", "assert max_subarray_product([-6, -10, -2, 5, -4, 5]) == 12000", "assert max_subarray_product([-1, -8, -9, -6, -4, -12, 4, -8]) == 663552", "assert max_subarray_product([-2, -10, -2, -8, 5, -1, -3, -4, -5, -8, -8, -5]) == 15360000", "assert max_subarray_product([-1, -8, -8, -9, -6, -4, -3, -8, -3, -9]) == 8957952", "assert max_subarray_product([2, -8, 5, -10]) == 800", "assert max_subarray_product([-2, -5, -10, -8, -1, -4, -5, -8, -8, -5, -4]) == 10240000", "assert max_subarray_product([-11, 2, -8, 5, -10]) == 880", "assert max_subarray_product([2, -10, 2, 4, 5, 6, -16, 5, 5]) == 1920000", "assert max_subarray_product([-2, -5, -10, -2, -8, 5, -1, -4, -5, -5, -8]) == 6400000", "assert max_subarray_product([-2, 4, -6, 8, 10, -12, 14, -16, -16]) == 82575360", "assert max_subarray_product([-9, -2, -5, -10, -2, -8, 5, -10, -4, -5, -5, -8, -5]) == 2880000000", "assert max_subarray_product([-5, -10, -8, 6]) == 480", "assert max_subarray_product([10, 6, -2, 6, -8, 4, -2, -2]) == 92160", "assert max_subarray_product([2, 7, -10, 2, 6, -16, 5]) == 134400", "assert max_subarray_product([-5, -2, -8, -9, -6, -4]) == 17280", "assert max_subarray_product([2, -16, 3, 4, 5, 6, 4, 4]) == 5760", "assert max_subarray_product([-1, -8, -9, -11, -6, -4, -12, 4, -8]) == 7299072", "assert max_subarray_product([5, 2, 4, 5, 8, 10]) == 16000", "assert max_subarray_product([-2, -2, -6, 8, 10, -12, -16, -12, 8, -6, -2, 10]) == 4246732800", "assert max_subarray_product([2, 5, -10]) == 10", "assert max_subarray_product([-5, -10, -3, -8, -10, -4]) == 48000", "assert max_subarray_product([-5, -11, -10, -2, -8, -4]) == 35200", "assert max_subarray_product([2, 3, -16, 4, 5, -12]) == 23040", "assert max_subarray_product([-6, -10, -2, 5, -4, 5, 5]) == 60000", "assert max_subarray_product([-5, -8, -9, -6]) == 2160", "assert max_subarray_product([-2, -2, 4, -6, 8, 10, -12, -13, -16, 8, -6]) == 460062720", "assert max_subarray_product([-10, 2, 4, 5, 8, 10, 8]) == 25600", "assert max_subarray_product([-2, -5, -5, -2, 5, -1, -4, -5, -8, -8, -5, -2]) == 3200000", "assert max_subarray_product([-5, -11, -10, -10, -2, -8, -4, -11]) == 3872000", "assert max_subarray_product([10, 6, -2, 6, -8, 10, 4, -2, -2]) == 921600", "assert max_subarray_product([-2, -2, -11, 6, -6, 10, -12, -16, 8, 8]) == 194641920", "assert max_subarray_product([-3, -9, -2, -5, -10, -2, -8, 5, -10, -4, -5, -5, -8, -5, -2]) == 17280000000", "assert max_subarray_product([-6, -1, -8, -9, -6, -4, -3, -8, -8, -6]) == 11943936", "assert max_subarray_product([-8, 10, -2, 6, -8, 4, -4]) == 122880", "assert max_subarray_product([-2, 4, -4, -6, 8, 10, -12, 13, -16]) == 19169280", "assert max_subarray_product([-8, 10, -2, 13, -8, 4, -4]) == 266240", "assert max_subarray_product([-5, -8, -9]) == 72", "assert max_subarray_product([-10, -2, -8, -10]) == 1600", "assert max_subarray_product([-2, -4, -10, -2, -8, 5, -1, -4, -5, -8, -8, -5, -2, -10]) == 409600000", "assert max_subarray_product([-2, -2, -6, 8, 10, -12, 8, -11, 8, -6, -2, 10]) == 973209600", "assert max_subarray_product([-5, -8, -10, -4]) == 1600", "assert max_subarray_product([-10, -2, -1, -8, 8, -4, -10]) == 51200", "assert max_subarray_product([-2, 4, -6, 8, 10, -12, 14, -16, 10]) == 103219200", "assert max_subarray_product([-1, -8, -9, -6, -2, -4, -3, -8, -8]) == 663552", "assert max_subarray_product([-2, -4, -10, -2, -8, 5, -1, -4, -5, -8, -8, -5, -2, -10, -10]) == 8192000000", "assert max_subarray_product([-2, -5, -2, 4, -6, 8, 10, -12, -16, 8]) == 58982400", "assert max_subarray_product([2, 4, 5, -10, -10]) == 4000", "assert max_subarray_product([-6, -1, -8, -9, -6, -4, -3, -13, -8, -6]) == 19408896", "assert max_subarray_product([-2, -5, -5, -2, -1, -4, -5, -8, -8, -5, -6, -2]) == 7680000", "assert max_subarray_product([-2, -5, -10, -2, -8, 5, -1, -4, -5, -8, -8, -5, -10]) == 512000000", "assert max_subarray_product([-5, -11, -10, -10, -17, -2, -8, -4]) == 5984000", "assert max_subarray_product([-10, 8, -4]) == 320", "assert max_subarray_product([2, 4, 5, -10, 5]) == 40", "assert max_subarray_product([-1, -8, -8, -9, -6, 5, -3, -8, -3, -9]) == 11197440", "assert max_subarray_product([-2, -1, -6, 8, 10, -12, -16, -12, 8, -6, -2, 10]) == 2123366400", "assert max_subarray_product([2, 5, -10, 5]) == 10", "assert max_subarray_product([2, -10, -8, 3, 4, 5, 6, -16]) == 57600", "assert max_subarray_product([2, 4, -10]) == 8", "assert max_subarray_product([-2, -5, -10, -2, -8, 5, -1, -4, -5, -8, -8, -5, -2, -5]) == 256000000", "assert max_subarray_product([-5, -2, -8, -9, -6, 10, -3, -8]) == 207360", "assert max_subarray_product([-1, -8, -9, -6, 3, -4, -12, 4]) == 248832", "assert max_subarray_product([-2, -2, -3, -6, 8, -12, -16, 8, -6, -2, 10, -2]) == 106168320" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to drop empty items from a given dictionary.\nassert drop_empty({'c1': 'Red', 'c2': 'Green', 'c3':None})=={'c1': 'Red', 'c2': 'Green'}\nYour code should pass the test:\nassert drop_empty({'c1': 'Red', 'c2': 'Green', 'c3':None})=={'c1': 'Red', 'c2': 'Green'}", "test_list": [ "assert drop_empty({'c1': 'Red', 'c2': 'Green', 'c3':None})=={'c1': 'Red', 'c2': 'Green'}", "assert drop_empty({'c1': 'Red', 'c2': None, 'c3':None})=={'c1': 'Red'}", "assert drop_empty({'c1': None, 'c2': 'Green', 'c3':None})=={ 'c2': 'Green'}", "assert drop_empty({}) == {}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'e': {'f': None, 'g': 'Blue'}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'e': {'f': None, 'g': 'Blue'}}", "assert drop_empty({'a': {'b': {'c': None, 'd': 'Yellow'}, 'e': {'f': None, 'g': 'Blue'}}}) == {'a': {'b': {'c': None, 'd': 'Yellow'}, 'e': {'f': None, 'g': 'Blue'}}}", "assert drop_empty({'c1': None, 'c2': None, 'c3': None}) == {}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {}, 'i': {'j': None}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {}, 'i': {'j': None}}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None}, 'g': {}}}, 'h': {}, 'i': {}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None}, 'g': {}}}, 'h': {}, 'i': {}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green'}}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green'}}}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {'n': {}}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {'n': {}}}}", "assert drop_empty({'1': '', '2': 'Red', '3': 'Green'}) == {'1': '', '2': 'Red', '3': 'Green'}", "assert drop_empty({'1': None, '2': None, '3': None}) == {}", "assert drop_empty({'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '30.260824595910776': 'd'}) == {'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '30.260824595910776': 'd'}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {'n': {}}}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {'n': {}}}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}}", "assert drop_empty({'c2': None, 'c3': None, 'f': None}) == {}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None}, 'g': {}}}, 'h': {}, 'i': {}, 'hhrEwoDM': {'m': -60.456823042679254, 'Yellow': -34.93490266876971, 'RCrC': -72.23627753178832, 'rK': 55.36416869609593, 'VjH': 19.41340571089887, 'j': 55.36416869609593, 'SA': 99.70252907303427}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None}, 'g': {}}}, 'h': {}, 'i': {}, 'hhrEwoDM': {'m': -60.456823042679254, 'Yellow': -34.93490266876971, 'RCrC': -72.23627753178832, 'rK': 55.36416869609593, 'VjH': 19.41340571089887, 'j': 55.36416869609593, 'SA': 99.70252907303427}}", "assert drop_empty({'2': None, '3': None}) == {}", "assert drop_empty({'90.14765271967525': 93, '-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '16.387156104276542': 3, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843}) == {'90.14765271967525': 93, '-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '16.387156104276542': 3, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'h': {}, 'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}) == {'a': {'b': None, 'c': 'Yellow'}, 'h': {}, 'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}", "assert drop_empty({'1': None, '2': None}) == {}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'e': {'99.86559157367921': False, '-22.96522880609406': -64, '-60.456823042679254': 16.387156104276542, '-52.05849999180157': True, '90.14765271967525': 1, '-95.22697096492752': True, '-96.75250148298278': -34.93490266876971}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'e': {'99.86559157367921': False, '-22.96522880609406': -64, '-60.456823042679254': 16.387156104276542, '-52.05849999180157': True, '90.14765271967525': 1, '-95.22697096492752': True, '-96.75250148298278': -34.93490266876971}}", "assert drop_empty({'1': '', '2': 'Red', '3': 'Yellow'}) == {'1': '', '2': 'Red', '3': 'Yellow'}", "assert drop_empty({'1': '', '2': 'Red', '3': 'hGreen'}) == {'1': '', '2': 'Red', '3': 'hGreen'}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'ff': 18.503047085984324}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'ff': 18.503047085984324}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'e': {'f': None, 'g': 'Blue'}}) == {'a': {'b': None, 'c': 'Yellow'}, 'e': {'f': None, 'g': 'Blue'}}", "assert drop_empty({'1': '', '2': 'Red'}) == {'1': '', '2': 'Red'}", "assert drop_empty({'17.686448927614265': -31.89320380156768, '-87.7768321294155': True}) == {'17.686448927614265': -31.89320380156768, '-87.7768321294155': True}", "assert drop_empty({'i': {'j': {}}, 'k': {}}) == {'i': {'j': {}}, 'k': {}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj', 'HgCth': 'g'}, 'i': {'j': None}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj', 'HgCth': 'g'}, 'i': {'j': None}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'h': {}, 'i': {'j': None}}) == {'a': {'b': None, 'c': 'Yellow'}, 'h': {}, 'i': {'j': None}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'c2': 99.70252907303427}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'c2': 99.70252907303427}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None}}, 'hrEwoDM': {'d': None, 'e': {'f': None}}}, 'h': {}, 'i': {}, 'hhrEwoDM': {'m': -60.456823042679254, 'Yellow': -34.93490266876971, 'RCrC': -72.23627753178832, 'rK': 55.36416869609593, 'VjH': 19.41340571089887, 'j': 55.36416869609593, 'SA': 99.70252907303427}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None}}, 'hrEwoDM': {'d': None, 'e': {'f': None}}}, 'h': {}, 'i': {}, 'hhrEwoDM': {'m': -60.456823042679254, 'Yellow': -34.93490266876971, 'RCrC': -72.23627753178832, 'rK': 55.36416869609593, 'VjH': 19.41340571089887, 'j': 55.36416869609593, 'SA': 99.70252907303427}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow', 'bc': None}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {}, 'i': {'j': None}, 'nu': {'b': None, 'c': 'Yellow', 'bc': None}}) == {'a': {'b': None, 'c': 'Yellow', 'bc': None}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {}, 'i': {'j': None}, 'nu': {'b': None, 'c': 'Yellow', 'bc': None}}", "assert drop_empty({'1': '', '2': 'h'}) == {'1': '', '2': 'h'}", "assert drop_empty({'1': 'GGreen', '2': 'h'}) == {'1': 'GGreen', '2': 'h'}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {}, 'Yellow': {}}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, '': {'m': {}, 'Yellow': {}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {}, 'Yellow': {}}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, '': {'m': {}, 'Yellow': {}}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'c': 90.14765271967525, 'b': 55.36416869609593}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'c': 90.14765271967525, 'b': 55.36416869609593}", "assert drop_empty({'1': '', '2': 'RedSA', '3': 'hGreen'}) == {'1': '', '2': 'RedSA', '3': 'hGreen'}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj'}, 'i': {'HgCthj': None}, '': {'HgCthj': None}, 'RCrC': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj'}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj'}, 'i': {'HgCthj': None}, '': {'HgCthj': None}, 'RCrC': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj'}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'c2': 99.70252907303427, 'cc': -36.01858015353834}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'c2': 99.70252907303427, 'cc': -36.01858015353834}", "assert drop_empty({'90.14765271967525': 93, '-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843}) == {'90.14765271967525': 93, '-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843}", "assert drop_empty({'2': None, '93': None}) == {}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'c': 90.14765271967525, 'b': 55.36416869609593, 'aaf': -52.05849999180157}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'c': 90.14765271967525, 'b': 55.36416869609593, 'aaf': -52.05849999180157}", "assert drop_empty({'1': '', '2': 'h', '93': 'hrEwoDM'}) == {'1': '', '2': 'h', '93': 'hrEwoDM'}", "assert drop_empty({'1': '', 'false': 'i'}) == {'1': '', 'false': 'i'}", "assert drop_empty({'d': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}, 'aa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.48831206775043, '-64': -32.35330674934775}}) == {'d': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}, 'aa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.48831206775043, '-64': -32.35330674934775}}", "assert drop_empty({'c2': None, 'c3': None, 'f': None, 'b': None}) == {}", "assert drop_empty({'a': {'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {'n': {}}}}) == {'a': {'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {}, 'l': {'m': {'n': {}}}}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, 'i': {'j': {}}, 'k': {}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, '': {'m': {}, 'Yellow': {}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, 'i': {'j': {}}, 'k': {}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, '': {'m': {}, 'Yellow': {}}}", "assert drop_empty({'1': ''}) == {'1': ''}", "assert drop_empty({'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '30.260824595910776': 'd', '41.33835689978693': False}) == {'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '30.260824595910776': 'd', '41.33835689978693': False}", "assert drop_empty({'k': {}}) == {'k': {}}", "assert drop_empty({'1': 'GGreen', '75': 'GHgCthGreen'}) == {'1': 'GGreen', '75': 'GHgCthGreen'}", "assert drop_empty({'1': '', '2': 'Red', '3': 'g'}) == {'1': '', '2': 'Red', '3': 'g'}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, 'i': {'j': {}}, 'k': {}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, '': {'m': {}, 'Yellow': {'SA': -91, 'aXDUKdv': -77.05024169578405, 'GGreen': [-79.68074716966606, -4.346337905877348]}}, 'Yellowa': {'91': 52.89970337281363, '-32': -46.12121092013499, '76': -48.835469622222405}, 'kk': {'m': {}, 'Yellow': {'SA': -91, 'aXDUKdv': -77.05024169578405, 'GGreen': [-79.68074716966606, -4.346337905877348]}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, 'i': {'j': {}}, 'k': {}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}, '': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {'68': -77, '96': 74, '93': 49, '62': -41, '49': -62, '-35': -88}}}, '': {'m': {}, 'Yellow': {'SA': -91, 'aXDUKdv': -77.05024169578405, 'GGreen': [-79.68074716966606, -4.346337905877348]}}, 'Yellowa': {'91': 52.89970337281363, '-32': -46.12121092013499, '76': -48.835469622222405}, 'kk': {'m': {}, 'Yellow': {'SA': -91, 'aXDUKdv': -77.05024169578405, 'GGreen': [-79.68074716966606, -4.346337905877348]}}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green', 'SA': 'GGreen'}}, 'EnwqMPlZQ': {'b': None, 'c': 'Yellow'}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green', 'SA': 'GGreen'}}, 'EnwqMPlZQ': {'b': None, 'c': 'Yellow'}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'b': 55.36416869609593}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'b': 55.36416869609593}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'e': {'99.86559157367921': False, '-22.96522880609406': -64, '-60.456823042679254': 16.387156104276542, '-52.05849999180157': True, '90.14765271967525': 1, '-96.75250148298278': -34.93490266876971}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {}, 'e': {'99.86559157367921': False, '-22.96522880609406': -64, '-60.456823042679254': 16.387156104276542, '-52.05849999180157': True, '90.14765271967525': 1, '-96.75250148298278': -34.93490266876971}}", "assert drop_empty({'e': {'f': None, 'g': 'Blue'}}) == {'e': {'f': None, 'g': 'Blue'}}", "assert drop_empty({'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '41.33835689978693': False}) == {'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '41.33835689978693': False}", "assert drop_empty({'d': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}, 'aa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}, 'Yellowa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}}) == {'d': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}, 'aa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}, 'Yellowa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}}", "assert drop_empty({'1': '', 'false': 'i', '93': 'f'}) == {'1': '', 'false': 'i', '93': 'f'}", "assert drop_empty({'1': '', '3': 'hGrheen'}) == {'1': '', '3': 'hGrheen'}", "assert drop_empty({'a': {'b': {'c': None, 'd': 'VjH', '': None}, 'e': {'f': None, 'g': 'Blue'}, 'm': {'c': None, 'd': 'VjH', '': None}}, 'am': {'b': {'c': None, 'd': 'VjH', '': None}, 'e': {'f': None, 'g': 'Blue'}, 'm': {'c': None, 'd': 'VjH', '': None}}, 'aa': {'b': {'c': None, 'd': 'VjH', '': None}, 'e': {'f': None, 'g': 'Blue'}, 'm': {'c': None, 'd': 'VjH', '': None}}}) == {'a': {'b': {'c': None, 'd': 'VjH', '': None}, 'e': {'f': None, 'g': 'Blue'}, 'm': {'c': None, 'd': 'VjH', '': None}}, 'am': {'b': {'c': None, 'd': 'VjH', '': None}, 'e': {'f': None, 'g': 'Blue'}, 'm': {'c': None, 'd': 'VjH', '': None}}, 'aa': {'b': {'c': None, 'd': 'VjH', '': None}, 'e': {'f': None, 'g': 'Blue'}, 'm': {'c': None, 'd': 'VjH', '': None}}}", "assert drop_empty({'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '41.33835689978693': False, '40.83179688833383': True}) == {'17.686448927614265': -31.89320380156768, '-87.7768321294155': True, '41.33835689978693': False, '40.83179688833383': True}", "assert drop_empty({'a': {}}) == {'a': {}}", "assert drop_empty({'17.686448927614265': 18.437081129707764, '-87.7768321294155': True, '30.260824595910776': 'd', '41.33835689978693': False}) == {'17.686448927614265': 18.437081129707764, '-87.7768321294155': True, '30.260824595910776': 'd', '41.33835689978693': False}", "assert drop_empty({'23': True, '73': 'hGrheen', '-88': 7, '75': 67, '90': False, '82': False, '-67': 83.95793304873831, '74': [-38.86707295610068, -9.74026238856878, -67.96604233483899, 15.573403443459924, 1.7344311461450843, -56.6039065174891, -96.75250148298278, 16.387156104276542, -9.292502161579932]}) == {'23': True, '73': 'hGrheen', '-88': 7, '75': 67, '90': False, '82': False, '-67': 83.95793304873831, '74': [-38.86707295610068, -9.74026238856878, -67.96604233483899, 15.573403443459924, 1.7344311461450843, -56.6039065174891, -96.75250148298278, 16.387156104276542, -9.292502161579932]}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'c': 90.14765271967525, 'aaf': -52.05849999180157}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'c': 90.14765271967525, 'aaf': -52.05849999180157}", "assert drop_empty({'1': 'GGreen', '75': 'GHgCthGreen', '2': 'ff'}) == {'1': 'GGreen', '75': 'GHgCthGreen', '2': 'ff'}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow', 'aXDUKdv': None}, 'h': {}, 'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}) == {'a': {'b': None, 'c': 'Yellow', 'aXDUKdv': None}, 'h': {}, 'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'ff': 18.503047085984324, 'bEnwqMPlZQ': 99.70252907303427}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593, 'ff': 18.503047085984324, 'bEnwqMPlZQ': 99.70252907303427}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}, 'jYellow': {'aaf': False, 'Yellow': True, 'SA': False, 'uXFZhOyMa': False, 'uLzE': False}}, 'k': {}, 'l': {'m': {'n': {}}}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'RCrC': {'j': {}, 'jYellow': {'aaf': False, 'Yellow': True, 'SA': False, 'uXFZhOyMa': False, 'uLzE': False}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}, 'jYellow': {'aaf': False, 'Yellow': True, 'SA': False, 'uXFZhOyMa': False, 'uLzE': False}}, 'k': {}, 'l': {'m': {'n': {}}}, 'aa': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'RCrC': {'j': {}, 'jYellow': {'aaf': False, 'Yellow': True, 'SA': False, 'uXFZhOyMa': False, 'uLzE': False}}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'g': 'Blue'}, 'ee': {'g': 'Blue'}}, 'h': {}, 'akk': {'e': {'g': 'Blue'}, 'ee': {'g': 'Blue'}}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'g': 'Blue'}, 'ee': {'g': 'Blue'}}, 'h': {}, 'akk': {'e': {'g': 'Blue'}, 'ee': {'g': 'Blue'}}}", "assert drop_empty({'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}) == {'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None}}, 'hrEwoDM': {'d': None, 'e': {'f': None}}}, 'h': {}, 'i': {}, 'hhrEwoDM': {'m': -60.456823042679254, 'Yellow': -34.93490266876971, 'RCrC': -72.23627753178832, 'rK': 55.36416869609593, 'VjH': 19.41340571089887, 'j': 55.36416869609593, 'SA': 99.70252907303427, 'SAA': -36.01858015353834}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None}}, 'hrEwoDM': {'d': None, 'e': {'f': None}}}, 'h': {}, 'i': {}, 'hhrEwoDM': {'m': -60.456823042679254, 'Yellow': -34.93490266876971, 'RCrC': -72.23627753178832, 'rK': 55.36416869609593, 'VjH': 19.41340571089887, 'j': 55.36416869609593, 'SA': 99.70252907303427, 'SAA': -36.01858015353834}}", "assert drop_empty({'k': {'-54': 'Zchnevk', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}, '': {'-54': 'Zchnevk', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}}) == {'k': {'-54': 'Zchnevk', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}, '': {'-54': 'Zchnevk', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': -9.292502161579932, 'hrEjYellowwoDM': -9.292502161579932}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': -9.292502161579932, 'hrEjYellowwoDM': -9.292502161579932}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow', 'aXDUKdv': None, 'aXnDUKdv': 'YYellow'}, 'h': {'HgCthj': 'suhO', 'Yellow': 'hrEjYellowwoDM', 'btLv': 'hSq', 'FFKZcpb': 'ff'}, 'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}) == {'a': {'b': None, 'c': 'Yellow', 'aXDUKdv': None, 'aXnDUKdv': 'YYellow'}, 'h': {'HgCthj': 'suhO', 'Yellow': 'hrEjYellowwoDM', 'btLv': 'hSq', 'FFKZcpb': 'ff'}, 'i': {'j': None, 'rK': None}, 'l': {'j': None, 'rK': None}}", "assert drop_empty({'i': {'j': {}, 'k': {'76.23716699017396': -97, '-24.977096289309728': 48, '33.37253964609198': False, '90.14765271967525': 2, '-61.43629796204828': -45, '-26.555661733934684': 2, '20.33515388355309': 62, '-30.045372628236436': 49, '-32.35330674934775': -41}}, 'k': {}, 'l': {'m': {'n': {}}}}) == {'i': {'j': {}, 'k': {'76.23716699017396': -97, '-24.977096289309728': 48, '33.37253964609198': False, '90.14765271967525': 2, '-61.43629796204828': -45, '-26.555661733934684': 2, '20.33515388355309': 62, '-30.045372628236436': 49, '-32.35330674934775': -41}}, 'k': {}, 'l': {'m': {'n': {}}}}", "assert drop_empty({'1': '', '2': 'Red', '3': 'hGreen', '53': 'uLzE', '41': 'aa'}) == {'1': '', '2': 'Red', '3': 'hGreen', '53': 'uLzE', '41': 'aa'}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'b': 55.36416869609593, 'bb': 18.03470163259701}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'b': 55.36416869609593, 'bb': 18.03470163259701}", "assert drop_empty({'-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '16.387156104276542': 3, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843, '-79.68074716966606': 91}) == {'-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '16.387156104276542': 3, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843, '-79.68074716966606': 91}", "assert drop_empty({'1': 'GGreen', '2': 'suhOGGreen'}) == {'1': 'GGreen', '2': 'suhOGGreen'}", "assert drop_empty({'1': 'GGreen'}) == {'1': 'GGreen'}", "assert drop_empty({'1': 'hrEwoDM'}) == {'1': 'hrEwoDM'}", "assert drop_empty({'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'b': 55.36416869609593, 'bb': 18.03470163259701}) == {'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'b': 55.36416869609593, 'bb': 18.03470163259701}", "assert drop_empty({'a': {'false': False}}) == {'a': {'false': False}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'i': {'HgCthj': None}, '': {'HgCthj': None}, 'RCrC': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj'}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'i': {'HgCthj': None}, '': {'HgCthj': None}, 'RCrC': {'a': 'f', 'nu': 'f', 'c2': 'h', 'Jfmbh': 'i', 'EnwqMPlZQ': 'MRIkZeajQj'}}", "assert drop_empty({'k': {'-54': 'SA', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}, 'bEnwqMPlZQ': {'-54': 'SA', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}}) == {'k': {'-54': 'SA', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}, 'bEnwqMPlZQ': {'-54': 'SA', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green', 'SA': 'GGreen'}}, 'EnwqMPlZQ': {'b': None, 'c': 'Yellow'}, 'EnwqMhrEjYellowwoDMPlZQ': {'b': None, 'c': 'Yellow'}}) == {'a': {'b': None, 'c': 'Yellow'}, 'd': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green', 'SA': 'GGreen'}}, 'EnwqMPlZQ': {'b': None, 'c': 'Yellow'}, 'EnwqMhrEjYellowwoDMPlZQ': {'b': None, 'c': 'Yellow'}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': 22.06967982921361, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'f': 22.06967982921361, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': 55.36416869609593}", "assert drop_empty({'1': 'hGrheen', '2': 'Red'}) == {'1': 'hGrheen', '2': 'Red'}", "assert drop_empty({'1': 'jYellow', '2': 'Red'}) == {'1': 'jYellow', '2': 'Red'}", "assert drop_empty({'d': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}, 'aa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}, 'Yellowa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}, 'nu': {'-20': -30, '79': False, '-97': True, '-4': -32, '-35': False}}) == {'d': {}, 'h': {}, 'i': {}, 'SA': {'45.78890699745773': -34.93490266876971}, 'aa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}, 'Yellowa': {'49': 41.28336596794483, '93': -52.05849999180157, '75': -96.75250148298278, '41': 41.33835689978693, '53': -82.44134692437908, '86': 76.23716699017396, '2': 97.72100445310907, '-64': -32.35330674934775}, 'nu': {'-20': -30, '79': False, '-97': True, '-4': -32, '-35': False}}", "assert drop_empty({'k': 17.686448927614265, 'Red': 18.437081129707764, 'c': 90.14765271967525}) == {'k': 17.686448927614265, 'Red': 18.437081129707764, 'c': 90.14765271967525}", "assert drop_empty({'90.14765271967525': 93, '-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843, '99.70252907303427': 93}) == {'90.14765271967525': 93, '-77.0135817210946': 33.50640213812878, '-25.18209592843803': -87.7768321294155, '-60.456823042679254': -22.96522880609406, '30.260824595910776': 1.7344311461450843, '99.70252907303427': 93}", "assert drop_empty({'c2': 16.387156104276542}) == {'c2': 16.387156104276542}", "assert drop_empty({'d': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green'}}}) == {'d': {'e': {'f': None, 'g': 'Blue'}, 'h': {'i': 'Green'}}}", "assert drop_empty({'2': 'Red'}) == {'2': 'Red'}", "assert drop_empty({'i': {'j': {}}}) == {'i': {'j': {}}}", "assert drop_empty({'1': '', '3': 'hGrhSAeen'}) == {'1': '', '3': 'hGrhSAeen'}", "assert drop_empty({'a': {}, 'oRY': {'J': False, 'l': True, 'EcPr': True, 'ojmpcX': False, 'nu': True, 'YhcMxt': False, 'YtIJq': False, 'ff': True, 'ydKnZf': False, 'k': False}}) == {'a': {}, 'oRY': {'J': False, 'l': True, 'EcPr': True, 'ojmpcX': False, 'nu': True, 'YhcMxt': False, 'YtIJq': False, 'ff': True, 'ydKnZf': False, 'k': False}}", "assert drop_empty({'a': {'b': None, 'c': 'Yellow', 'bc': None}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {}, 'i': {'j': None}}) == {'a': {'b': None, 'c': 'Yellow', 'bc': None}, 'd': {'e': {'f': None, 'g': 'Blue'}}, 'h': {}, 'i': {'j': None}}", "assert drop_empty({'k': -60.456823042679254, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': -9.292502161579932, 'hrEjYellowwoDM': -9.292502161579932}) == {'k': -60.456823042679254, 'Red': 18.437081129707764, 'f': -60.456823042679254, 'hrEwoDM': -52.05849999180157, 'c': 90.14765271967525, 'b': -9.292502161579932, 'hrEjYellowwoDM': -9.292502161579932}", "assert drop_empty({'1': '', '2': 'Red', '3': 'hGreen', '53': 'uLzE', '90': 'oRY'}) == {'1': '', '2': 'Red', '3': 'hGreen', '53': 'uLzE', '90': 'oRY'}", "assert drop_empty({'1': 'jYellow', '2': 'suhOGGreen'}) == {'1': 'jYellow', '2': 'suhOGGreen'}", "assert drop_empty({'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {'-4.346337905877348': [-76, -54, 7, 67, 1, 41, 68, -85, 41, -32], '-1.3338626414926296': -82.44134692437908, '42.56105092347323': -4.346337905877348}, 'l': {'m': {'n': {}}}}) == {'a': {'b': None, 'c': {'d': None, 'e': {'f': None, 'g': {}}, 'h': {}}}, 'i': {'j': {}}, 'k': {'-4.346337905877348': [-76, -54, 7, 67, 1, 41, 68, -85, 41, -32], '-1.3338626414926296': -82.44134692437908, '42.56105092347323': -4.346337905877348}, 'l': {'m': {'n': {}}}}", "assert drop_empty({'bEnwqMPlZQ': {'-54': 'SA', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}}) == {'bEnwqMPlZQ': {'-54': 'SA', '-35': 'oRY', '79': 'hhrEwoDM', '23': 'l', '-91': 'wJklFUi', '80': 'bEnwqMPlZQ', '48': 'EcPr', '-67': 'e'}}", "assert drop_empty({'1': '', '2': 'hrEwoDMh', '93': 'hrEwoDM'}) == {'1': '', '2': 'hrEwoDMh', '93': 'hrEwoDM'}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum product formed by multiplying numbers of an increasing subsequence of that array.\nassert max_product([3, 100, 4, 5, 150, 6]) == 3000\nYour code should pass the test:\nassert max_product([3, 100, 4, 5, 150, 6]) == 3000", "test_list": [ "assert max_product([3, 100, 4, 5, 150, 6]) == 3000", "assert max_product([4, 42, 55, 68, 80]) == 50265600", "assert max_product([10, 22, 9, 33, 21, 50, 41, 60]) == 2460", "assert max_product([-3, -100, -4, -5, -150, -6]) == 900", "assert max_product([3, -5, 2, 6, -1, 4, -3]) == 20", "assert max_product([2, 3, 3, 4, 5, 3, 6]) == 60", "assert max_product([2, -3, 3, 4, -5, 3, -6]) == 2", "assert max_product([50, 100, 200, 150, 300, 250, 400]) == 1000000", "assert max_product([-5, -4, -3, -2, -1, 0, 1]) == 20", "assert max_product([10, 9, 8, 7, 6, 5, 4, 3]) == 10", "assert max_product([1, -2, 3, -4, 5, -6, 7]) == 1", "assert max_product([10, 8, 6, 5, 1, 9, 7, 4, 3, 2]) == 10", "assert max_product([-3, -4, 5, -2, 6, -1, 7, -8, 9, -10, 11]) == 48", "assert max_product([50, 100, 200, 100, 150, 300, 250, 400, 100]) == 4500000", "assert max_product([-3, -4, 5, -2, 5, 6, 200, 10, -1, 7, -8, 9, -10, 11]) == 48000", "assert max_product([10, 9, 7, 6, 4]) == 10", "assert max_product([50, 250, 150, 300, 250, 400]) == 100000", "assert max_product([50, 250, 6, 150, 300, 250, 400]) == 270000", "assert max_product([-2, 3, -5, 2, 6, -1, 4, -3]) == 20", "assert max_product([10, 9, 7, 6, 5, 4, 3]) == 10", "assert max_product([50, 100, -3, 150, 300, 250, 400]) == 5000", "assert max_product([10, 9, 8, 8, 5, 4, 3, 4]) == 12", "assert max_product([10, 9, 8, 7, 6, 5, -8, 3]) == 10", "assert max_product([3, -5, 2, 6, 4, -3]) == 15", "assert max_product([50, 250, 150, 300, 250, 1, 400]) == 45000", "assert max_product([2, 50, 100, 200, 100, 150, 300, 250, 400, 100]) == 4500000", "assert max_product([2, 50, 100, 200, 100, 150, 300, 400, 100]) == 1800000000", "assert max_product([10, 9, 8, 7, 6, 5, 5, 4, 3, 9]) == 27", "assert max_product([-6, 249, 6, 150, 250, 400]) == 6", "assert max_product([50, 250, 150, 250, 400]) == 15000000", "assert max_product([10, 9, 7, 7, 6, 5, 5, 4, 3, 9]) == 27", "assert max_product([50, 100, -3, 150, 300, 250, 400, 100]) == 5000", "assert max_product([50, 100, -3, 150, 300, 250, 400, 300]) == 5000", "assert max_product([10, 9, 8, 7, 6, 5, 5, 4, 9]) == 36", "assert max_product([3, -5, 2, -1, -6, 4, -3]) == 18", "assert max_product([50, 100, -3, 150, 250, 400]) == 5000", "assert max_product([10, 8, 5, 1, 9, 7, 4, 3, 2, 6, 6]) == 12", "assert max_product([10, 9, 8, 7, 6, 5, 4, 10]) == 40", "assert max_product([50, 100, 150, 250, 400]) == 75000000000", "assert max_product([-3, -100, -4, -5, -150, -6, -4]) == 900", "assert max_product([50, 100, 200, 150, 300, 250, 400, 100]) == 1000000", "assert max_product([10, 9, 8, 7, 6, 5, 5, 4, 9, 9]) == 36", "assert max_product([-2, -2, 3, -4, 5, -6, 7]) == -2", "assert max_product([2, 300, 50, 100, 200, 100, 150, 250, 300, 250, 400, 100]) == 1125000000", "assert max_product([50, 100, 150, 200, 100, 150, 300, 250, 400, 100]) == 150000000", "assert max_product([2, 50, -8, 200, 100, 150, 300, 250, 400, 100]) == 100", "assert max_product([-2, 3, -4, -6, 7]) == -2", "assert max_product([-4, 2, 3, 3, 4, 5, 3, 6]) == 3", "assert max_product([-3, -101, -4, -5, -150, -6, -150]) == 900", "assert max_product([-6, 249, 150, 250, 400]) == 150", "assert max_product([-2, 4, -5, 2, 6, -1, 4, -3]) == 20", "assert max_product([-3, -101, -4, -5, 6, -6, -150, -4]) == 600", "assert max_product([2, -3, 3, 4, 3, -6]) == 3", "assert max_product([50, 100, 200, 150, 300, 1, 400]) == 1000000", "assert max_product([-2, -2, 3, -4, 5, 7]) == -2", "assert max_product([2, 3, -5, 2, 300, 6, -1, 4, -3]) == 20", "assert max_product([10, 9, 8, 7, 6, 5, -8, 4]) == 10", "assert max_product([-3, -100, -5, -150, -6]) == 900", "assert max_product([2, 300, 50, 100, 200, 100, 150, 250, 300, 250, 400, 100, 400]) == 1125000000", "assert max_product([-3, -100, -4, -5, 5, -6, -5]) == 400", "assert max_product([3, -5, 2, 4, -3]) == 15", "assert max_product([-2, -2, -6, -8, 5, -6, 7]) == 336", "assert max_product([-2, -2, -4, 5, -6, 7]) == -2", "assert max_product([-5, -4, -3, 9, 8, -1, 0, -1, 1]) == 180", "assert max_product([10, 9, 6, 4]) == 10", "assert max_product([251, 50, 100, 200, 150, 300, 250, 400, 100]) == 1000000", "assert max_product([1, -2, 3, -4, -6, 7]) == 1", "assert max_product([-3, -100, -4, -6, -150, -6, -4]) == 900", "assert max_product([-2, 3, -5, 2, -1, 4, -3]) == 20", "assert max_product([10, 9, 7, 6, 5, 5, 4, 3, 9]) == 27", "assert max_product([-2, -2, -6, -8, -6, 7]) == 336", "assert max_product([-3, 50, 100, -2, 150, 300, 250, 400]) == 270000", "assert max_product([10, 1, 9, 8, 7, 6, 5, 5, 4, 3, 9]) == 27", "assert max_product([1, -1, -2, 3, -4, 5, -6, 7, -2]) == 12", "assert max_product([10, 9, 8, 7, 6, 5, -8]) == 10", "assert max_product([10, 9, -8, 7, 7, 6, 5, 5, 4, 3, 9]) == 10", "assert max_product([10, 7, 9, 7, 6, 4]) == 63", "assert max_product([10, 9, 1, 8, 3, 7, 6, 5, 4, 3]) == 21", "assert max_product([-4, 2, 3, 3, 4, 5, 3]) == 3", "assert max_product([50, 100, 200, 150, 300, 1, 3]) == 1000000", "assert max_product([2, 2, 50, -8, 299, 200, 100, 151, 300, 250, 400, -150]) == 200", "assert max_product([50, 100, 200, 100, 150, 300, 250, 400, -5, 100, 300]) == 4500000", "assert max_product([-3, -101, -4, -5, -150, -6, -150, -4]) == 900", "assert max_product([2, 300, 50, 100, 200, 100, 150, 250, 300, 250, 400, 100, 400, 2, 150]) == 1125000000", "assert max_product([-5, -3, -2, -1, 0, 1]) == 15", "assert max_product([50, 250, 6, 150, -8, 300, 250, 400]) == 12500", "assert max_product([10, 9, 7, 6, 4, 5, 4, 3, 9]) == 27", "assert max_product([10, 8, 7, 6, 5, 5, 251, 9]) == 1255", "assert max_product([-3, -100, -4, -5, -150, -6, -6]) == 900", "assert max_product([100, 200, 150, 300, 1, 3]) == 45000", "assert max_product([2, 2, -3, 3, 4, -5, 3]) == 2", "assert max_product([50, 100, 150, 250]) == 187500000", "assert max_product([-5, 2, 6, 4, 250, -3]) == 15", "assert max_product([2, 249, 3, 4, 3, -6, -6, -6, 3]) == 498", "assert max_product([-4, 2, 3, 3, 4, 5, 5, 3, 6]) == 3", "assert max_product([100, 200, 151, 150, 300, 1, 3, 200]) == 45000", "assert max_product([9, 8, 7, 6, 5, 4, 3]) == 9", "assert max_product([2, 300, 50, 100, 200, 100, 150, 250, 300, 250, 400, 100, 400, 250]) == 1125000000", "assert max_product([3, -5, 7, 6, 4, -3]) == 15", "assert max_product([2, -3, 3, 4, -5, 251, 7]) == 7", "assert max_product([4, 50, 250, -4, 150, 300, 250, 400]) == 50000", "assert max_product([200, 151, 300, 3, 200]) == 45300", "assert max_product([9, 8, 7, 6, 5, 4, 3, 5]) == 15", "assert max_product([2, 2, 50, -8, 299, 200, 100, 151, 300, 250, 400, -150, 2]) == 200", "assert max_product([-101, -101, 10, 9, 7, 6, 4]) == 9", "assert max_product([10, 9, 7, 4, 4]) == 10", "assert max_product([50, 100, 100, 0, 300, 250, 400, 100, 100, 50]) == 100000", "assert max_product([2, 300, 50, 100, 200, 100, 150, 250, 300, 250, 100, 400, 250]) == 1125000000", "assert max_product([2, -3, 3, 4, -5, -6]) == 2", "assert max_product([50, -3, 150, 300, 250, 400, 300]) == 250", "assert max_product([-2, -2, -7, 5, -6, 7]) == 294", "assert max_product([10, 9, 8, 7, 6, 5, 4, 2]) == 10", "assert max_product([10, 9, -8, 7, 7, 6, 2, 5, 4, 50, 9]) == 10" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the pairwise addition of the neighboring elements of the given tuple.\nassert add_pairwise((1, 5, 7, 8, 10)) == (6, 12, 15, 18)\nYour code should pass the test:\nassert add_pairwise((1, 5, 7, 8, 10)) == (6, 12, 15, 18)", "test_list": [ "assert add_pairwise((1, 5, 7, 8, 10)) == (6, 12, 15, 18)", "assert add_pairwise((2, 6, 8, 9, 11)) == (8, 14, 17, 20)", "assert add_pairwise((3, 7, 9, 10, 12)) == (10, 16, 19, 22)", "assert add_pairwise((1, 2, -3, 4, 5)) == (3, -1, 1, 9)", "assert add_pairwise((0.5, -1.2, 3.7, 0.9)) == (-0.7, 2.5, 4.6000000000000005)", "assert add_pairwise((-10, 15, -20, 25, -30)) == (5, -5, 5, -5)", "assert add_pairwise((2, 2.5, -3, 1.5, -2)) == (4.5, -0.5, -1.5, -0.5)", "assert add_pairwise(()) == ()", "assert add_pairwise((7,)) == ()", "assert add_pairwise((2, 3.5, -1, 2, -0.5)) == (5.5, 2.5, 1, 1.5)", "assert add_pairwise((5,)) == ()", "assert add_pairwise((0, 0, 0, 0, 0)) == (0, 0, 0, 0)", "assert add_pairwise((0, 0, 0, 0, 0, 0)) == (0, 0, 0, 0, 0)", "assert add_pairwise((5, 5)) == (10,)", "assert add_pairwise((2, 2.5, -3, 1.5, 0, 2.5)) == (4.5, -0.5, -1.5, 1.5, 2.5)", "assert add_pairwise((1, 2, -3, 4, 5, 4)) == (3, -1, 1, 9, 9)", "assert add_pairwise((2, 3.5, -1, 2, -0.5, -0.5)) == (5.5, 2.5, 1, 1.5, -1.0)", "assert add_pairwise((2, 2.5, -3, 1.5, 3.7, 2.5)) == (4.5, -0.5, -1.5, 5.2, 6.2)", "assert add_pairwise((7, 7)) == (14,)", "assert add_pairwise((7, 2, 0, 7)) == (9, 2, 7)", "assert add_pairwise((0.5, -1.2, 3.7, 0.9, 3.7)) == (-0.7, 2.5, 4.6000000000000005, 4.6000000000000005)", "assert add_pairwise((1, -3, 4, 5, 4)) == (-2, 1, 9, 9)", "assert add_pairwise((2, 1, 2.5, -3, 1.5, 3, -2)) == (3, 3.5, -0.5, -1.5, 4.5, 1)", "assert add_pairwise((1, 2, -3, -10, 4, 5, 4)) == (3, -1, -13, -6, 9, 9)", "assert add_pairwise((1, 2, -3, -10, -20, 4, 5, 4)) == (3, -1, -13, -30, -16, 9, 9)", "assert add_pairwise((2, -1, 2, -0.5, -0.5)) == (1, 1, 1.5, -1.0)", "assert add_pairwise((0.5, -1.2, 3.7, 3.7, 0.9, 1.5)) == (-0.7, 2.5, 7.4, 4.6000000000000005, 2.4)", "assert add_pairwise((1, -3, -3, 5, 4)) == (-2, -6, 2, 9)", "assert add_pairwise((-1.7891388020246002, 0.5, -1.2, 3.7, 0.9)) == (-1.2891388020246002, -0.7, 2.5, 4.6000000000000005)", "assert add_pairwise((2, -1, -0.5, -0.5, -0.5)) == (1, -1.5, -1.0, -1.0)", "assert add_pairwise((2, 5, 2, -0.5, -0.5)) == (7, 7, 1.5, -1.0)", "assert add_pairwise((2, 2.5, -3, 1.5, 3.7, 2.5, 1.5)) == (4.5, -0.5, -1.5, 5.2, 6.2, 4.0)", "assert add_pairwise((0.5, 0.9, -1.2, 0.9, 3.7)) == (1.4, -0.29999999999999993, -0.29999999999999993, 4.6000000000000005)", "assert add_pairwise((1, 2, -10, 4, 5, 4)) == (3, -8, -6, 9, 9)", "assert add_pairwise((7, 7, 7)) == (14, 14)", "assert add_pairwise((2, 3.5, 3, 2, -0.5)) == (5.5, 6.5, 5, 1.5)", "assert add_pairwise((1, -10, -10, 4, 5, 4)) == (-9, -20, -6, 9, 9)", "assert add_pairwise((2, 2.5, -3, 1.5)) == (4.5, -0.5, -1.5)", "assert add_pairwise((2, -1, 2, -0.5, -0.5, -1)) == (1, 1, 1.5, -1.0, -1.5)", "assert add_pairwise((3.393222332151918, 2, 3.5, -20, -1, 1, -0.5, -1)) == (5.393222332151918, 5.5, -16.5, -21, 0, 0.5, -1.5)", "assert add_pairwise((-1.7891388020246002, 0.6001249926867311, -1.2, 3.7, 0.9)) == (-1.189013809337869, -0.5998750073132688, 2.5, 4.6000000000000005)", "assert add_pairwise((5, 5, 5)) == (10, 10)", "assert add_pairwise((7, -20, 3, 7)) == (-13, -17, 10)", "assert add_pairwise((0.6637886009017347, -1.1953847540147688, 3.7, 0.9, 3.7)) == (-0.5315961531130341, 2.5046152459852316, 4.6000000000000005, 4.6000000000000005)", "assert add_pairwise((0.5, -1.2, 3.7, 0.9, 3.7, 3.7)) == (-0.7, 2.5, 4.6000000000000005, 4.6000000000000005, 7.4)", "assert add_pairwise((-2, 0, 7)) == (-2, 7)", "assert add_pairwise((1, 2, -3, -10, -19, -20, 4, 5, 4)) == (3, -1, -13, -29, -39, -16, 9, 9)", "assert add_pairwise((7, -20, -20, 3, 7)) == (-13, -40, -17, 10)", "assert add_pairwise((0.5, 0.9, -1.2, 3.7)) == (1.4, -0.29999999999999993, 2.5)", "assert add_pairwise((0, 0, 0, 0, 0, 0, 0)) == (0, 0, 0, 0, 0, 0)", "assert add_pairwise((0, 0, 0, 0, 0, 0, 0, 0)) == (0, 0, 0, 0, 0, 0, 0)", "assert add_pairwise((0.5, -1.2, 3.7, 0.9, 3.7, -1.2)) == (-0.7, 2.5, 4.6000000000000005, 4.6000000000000005, 2.5)", "assert add_pairwise((2, 3.5, -0.5)) == (5.5, 3.0)", "assert add_pairwise((5, 5, 5, 5)) == (10, 10, 10)", "assert add_pairwise((3.393222332151918, 2, 3.5, -20, -1, 1, -0.5, -3, -1)) == (5.393222332151918, 5.5, -16.5, -21, 0, 0.5, -3.5, -4)", "assert add_pairwise((1, -10, -10, 3, 4, 5, 4)) == (-9, -20, -7, 7, 9, 9)", "assert add_pairwise((2, -1, -0.5, -0.5, -0.5, -1)) == (1, -1.5, -1.0, -1.0, -1.5)", "assert add_pairwise((0.5, 0.9, -1.1953847540147688, -1.2, 0.9, 3.7, 0.5, 0.9)) == (1.4, -0.2953847540147688, -2.395384754014769, -0.29999999999999993, 4.6000000000000005, 4.2, 1.4)", "assert add_pairwise((7, -20, 3)) == (-13, -17)", "assert add_pairwise((5, 6, 7, 7)) == (11, 13, 14)", "assert add_pairwise((2, -1, -0.5, -0.5, -0.5, -0.5)) == (1, -1.5, -1.0, -1.0, -1.0)", "assert add_pairwise((-1.0905407746693552, -1.7891388020246002, 0.5, -1.2, 3.7, 2.5)) == (-2.879679576693955, -1.2891388020246002, -0.7, 2.5, 6.2)", "assert add_pairwise((-1.0905407746693552, -1.7891388020246002, 0.5, -1.2, 2.5)) == (-2.879679576693955, -1.2891388020246002, -0.7, 1.3)", "assert add_pairwise((-10, 5)) == (-5,)", "assert add_pairwise((1, -3, -3, 5, 4, 4)) == (-2, -6, 2, 9, 8)", "assert add_pairwise((2, 5, -0.5, -0.5, -0.5)) == (7, 4.5, -1.0, -1.0)", "assert add_pairwise((15, 1, 2, -10, 4, 5, 4)) == (16, 3, -8, -6, 9, 9)", "assert add_pairwise((5, 1, 6, 2, -3, 4, 5, 4, -3)) == (6, 7, 8, -1, 1, 9, 9, 1)", "assert add_pairwise((0.5, 0.9, -1.1953847540147688, -1.2, 0.6637886009017347, 3.7, 3.7, 0.5, 0.9, -1.2, 0.9)) == (1.4, -0.2953847540147688, -2.395384754014769, -0.5362113990982652, 4.363788600901735, 7.4, 4.2, 1.4, -0.29999999999999993, -0.29999999999999993)", "assert add_pairwise((1, 2.5, -3, 1.5, 3)) == (3.5, -0.5, -1.5, 4.5)", "assert add_pairwise((2, 2.5, -3, 0.795579078414846)) == (4.5, -0.5, -2.204420921585154)", "assert add_pairwise((2, 2.5, -3, -2)) == (4.5, -0.5, -5)", "assert add_pairwise((1, 1, 2, -3, 4, 5, 4, 4)) == (2, 3, -1, 1, 9, 9, 8)", "assert add_pairwise((2, -1, -0.5, -0.5, -0.5, -1, -1)) == (1, -1.5, -1.0, -1.0, -1.5, -2)", "assert add_pairwise((0.5, -1.2, 3.7, 0.9, 3.7, -1.2, -1.2)) == (-0.7, 2.5, 4.6000000000000005, 4.6000000000000005, 2.5, -2.4)", "assert add_pairwise((0, -1, 0, 0, 0, 0, 0)) == (-1, -1, 0, 0, 0, 0)", "assert add_pairwise((7, -20, 3, -20)) == (-13, -17, -17)", "assert add_pairwise((2, -3, -10, -19, -20, 4, 5, 4)) == (-1, -13, -29, -39, -16, 9, 9)", "assert add_pairwise((1, 2, -3, -10, 4, 6, 4, -20)) == (3, -1, -13, -6, 10, 10, -16)", "assert add_pairwise((7, 7, 7, 7)) == (14, 14, 14)", "assert add_pairwise((2.5, -3, 1.5, 3.7, 2.5, 1.5)) == (-0.5, -1.5, 5.2, 6.2, 4.0)", "assert add_pairwise((-10,)) == ()", "assert add_pairwise((7, -19, 3)) == (-12, -16)", "assert add_pairwise((7, 7, 7, 7, 7)) == (14, 14, 14, 14)", "assert add_pairwise((2, 2.5, -3, 1.5, 3.7)) == (4.5, -0.5, -1.5, 5.2)", "assert add_pairwise((2.5, -3, 1.5, 3.7100374284077136, 0.6001249926867311, 2.5, 1.5)) == (-0.5, -1.5, 5.2100374284077136, 4.310162421094445, 3.100124992686731, 4.0)", "assert add_pairwise((7, 8, -20, -20, 3, 7)) == (15, -12, -40, -17, 10)", "assert add_pairwise((5, 1, 6, -10, 2, -3, 4, 5, -3)) == (6, 7, -4, -8, -1, 1, 9, 2)", "assert add_pairwise((1, 2, -10, -10, 4, 5, 4)) == (3, -8, -20, -6, 9, 9)", "assert add_pairwise((-1.7891388020246002, 0.6001249926867311, -1.2, 1.5, 0.9)) == (-1.189013809337869, -0.5998750073132688, 0.30000000000000004, 2.4)", "assert add_pairwise((0.5, -1.2, 3.7, 0.6001249926867311, 3.7, 0.9, 1.5)) == (-0.7, 2.5, 4.300124992686731, 4.300124992686731, 4.6000000000000005, 2.4)", "assert add_pairwise((0.5, 1.5, 0.9, -1.2, 0.9, 3.7)) == (2.0, 2.4, -0.29999999999999993, -0.29999999999999993, 4.6000000000000005)", "assert add_pairwise((-2.1831604355627974, -1.5121530645391967, 0.6001249926867311, -1.2, 3.7, 0.9)) == (-3.695313500101994, -0.9120280718524656, -0.5998750073132688, 2.5, 4.6000000000000005)", "assert add_pairwise((2, 2.5, -3, 1.5, -1.1953847540147688, 2.5)) == (4.5, -0.5, -1.5, 0.30461524598523115, 1.3046152459852312)", "assert add_pairwise((2, 5, 2, -0.5, -0.5, -0.5)) == (7, 7, 1.5, -1.0, -1.0)", "assert add_pairwise((0.5, -1.2, 3.7, 3.7)) == (-0.7, 2.5, 7.4)", "assert add_pairwise((2, 2, -1, -0.5, -0.5, -0.5, -0.4924192336004098)) == (4, 1, -1.5, -1.0, -1.0, -0.9924192336004098)", "assert add_pairwise((0.37940521647331327, 0.9, -1.2, 0.9, 3.7)) == (1.2794052164733132, -0.29999999999999993, -0.29999999999999993, 4.6000000000000005)", "assert add_pairwise((2, -1, 2, -0.5)) == (1, 1, 1.5)", "assert add_pairwise((1, 2, -3, 4, 5, 4, 2)) == (3, -1, 1, 9, 9, 6)", "assert add_pairwise((8, 5)) == (13,)", "assert add_pairwise((-29, 1, -3, -30, 4, 1)) == (-28, -2, -33, -26, 5)", "assert add_pairwise((1, 1.3351074136147694, -3, 1.5, 3)) == (2.3351074136147694, -1.6648925863852306, -1.5, 4.5)", "assert add_pairwise((-29, 1, -3, 1)) == (-28, -2, -2)", "assert add_pairwise((2, -3, -10, -19, -20, 4, 5, 4, 5)) == (-1, -13, -29, -39, -16, 9, 9, 9)", "assert add_pairwise((2, 2.5, -3, 1.5, 0, -1.2)) == (4.5, -0.5, -1.5, 1.5, -1.2)", "assert add_pairwise((0, -1, 0, 0, 0, 0)) == (-1, -1, 0, 0, 0)", "assert add_pairwise((2, 3.5, -1, 2, -0.5, -0.5, -0.5)) == (5.5, 2.5, 1, 1.5, -1.0, -1.0)", "assert add_pairwise((3.5, -1, 2, -0.5, -0.5, -0.5)) == (2.5, 1, 1.5, -1.0, -1.0)", "assert add_pairwise((-1.7891388020246002, 0.6001249926867311, -1.2, 1.5, 0.9, 1.3351074136147694)) == (-1.189013809337869, -0.5998750073132688, 0.30000000000000004, 2.4, 2.2351074136147693)", "assert add_pairwise((2, 2.5, -2)) == (4.5, 0.5)", "assert add_pairwise((0.6637886009017347, 3.7, 0.9, 3.7)) == (4.363788600901735, 4.6000000000000005, 4.6000000000000005)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the product of the array multiplication modulo n.\nassert find_remainder([ 100, 10, 5, 25, 35, 14 ],11) ==9\nYour code should pass the test:\nassert find_remainder([ 100, 10, 5, 25, 35, 14 ],11) ==9", "test_list": [ "assert find_remainder([ 100, 10, 5, 25, 35, 14 ],11) ==9", "assert find_remainder([1,1,1],1) == 0", "assert find_remainder([1,2,1],2) == 0", "assert find_remainder([1000000, 2000000, 3000000], 10000) == 0", "assert find_remainder([1000000, 2000000, 3000000], 10001) == 600", "assert find_remainder([2000000, 3000000], 10001) == 9995", "assert find_remainder([1000000, 2000000], 10001) == 9999", "assert find_remainder([1000000, 2000000, 3000000], 1000000) == 0", "assert find_remainder([1000000, 2000000, 3000000], 3000000) == 0", "assert find_remainder([2000000, 10001, 3000000], 2000000) == 0", "assert find_remainder([1000000, 3000000], 3000000) == 0", "assert find_remainder([1000000, 2000000, 3000000], 2000000) == 0", "assert find_remainder([1000000, 2000000, 3000000, 1000000], 2000000) == 0", "assert find_remainder([2000000, 3000000, 3000000], 10001) == 1800", "assert find_remainder([2000000, 1000001, 1000000, 2000000], 10001) == 404", "assert find_remainder([2000000, 3000000, 3000000], 10002) == 8796", "assert find_remainder([2000000, 3000001, 3000000], 10002) == 8748", "assert find_remainder([1000000, 2000000, 3000000, 1000000], 1000001) == 6", "assert find_remainder([2000000, 10001, 3000000], 3000000) == 0", "assert find_remainder([1000000, 2000000, 2000000], 10001) == 400", "assert find_remainder([1000000, 2000000, 3000000, 2000000], 1000001) == 12", "assert find_remainder([2000000, 10001, 3000000], 10001) == 0", "assert find_remainder([1000000, 2000000, 10002, 3000000], 3000000) == 0", "assert find_remainder([2000000], 10001) == 9801", "assert find_remainder([1000000], 3000000) == 1000000", "assert find_remainder([1000000, 2000000, 3000000, 2000000, 1000000], 1000001) == 999989", "assert find_remainder([10000, 2000000, 3000000], 2000000) == 0", "assert find_remainder([1000001, 1000000, 2000000], 10001) == 198", "assert find_remainder([2000000, 10001, 3000000], 1000000) == 0", "assert find_remainder([1000001, 1000000, 1000000], 10001) == 99", "assert find_remainder([1000000, 2000000, 10002, 3000000, 10002], 3000000) == 0", "assert find_remainder([1000001, 1000000], 10000) == 0", "assert find_remainder([2000000, 3000000, 2000000, 1000000], 1000000) == 0", "assert find_remainder([2000000, 10001, 3000000, 10001], 10001) == 0", "assert find_remainder([2000000, 3000000], 10002) == 9954", "assert find_remainder([1000000, 1000000, 2000000, 3000000, 1000000], 2000000) == 0", "assert find_remainder([2000001], 10001) == 9802", "assert find_remainder([3000000], 10001) == 9701", "assert find_remainder([1000001, 1000000, 3000000], 3000000) == 0", "assert find_remainder([1000000, 2000000, 3000000, 1000000], 10000) == 0", "assert find_remainder([2000000, 3000000, 1999999, 1000000, 1999999], 1000000) == 0", "assert find_remainder([2000000, 10002, 3000000], 3000000) == 0", "assert find_remainder([2000000, 2000000, 1000001, 1000000, 2000000], 10001) == 9209", "assert find_remainder([2000000, 10001, 3000000], 3000001) == 2006668", "assert find_remainder([2000000, 3000000], 10000) == 0", "assert find_remainder([10000, 3000000], 2000000) == 0", "assert find_remainder([2999999, 10000, 2000000, 3000000], 2000000) == 0", "assert find_remainder([1000000, 2000000, 3000000, 2000000], 10001) == 12", "assert find_remainder([1000000, 2000000, 3000000, 1000000], 10001) == 6", "assert find_remainder([2000000, 1000001, 3000000], 1000000) == 0", "assert find_remainder([2000000, 10001, 3000000, 10001], 10002) == 9954", "assert find_remainder([1000001, 1000000, 1000001], 10001) == 9999", "assert find_remainder([1000001, 1000000, 1000000, 1000000], 10000) == 0", "assert find_remainder([2000000, 2000000, 3000000], 3000000) == 0", "assert find_remainder([1000000, 3000000, 2000000, 3000000], 10001) == 18", "assert find_remainder([3000000, 2000001], 10001) == 9695", "assert find_remainder([1000000, 3000000, 2000001, 3000000], 10001) == 918", "assert find_remainder([1000001, 3000000, 2000001, 3000000], 10001) == 2709", "assert find_remainder([1000001, 1000000], 10002) == 9794", "assert find_remainder([1000001, 1000000, 2000000], 1000000) == 0", "assert find_remainder([1000001, 1000000, 10000, 3000000], 3000000) == 0", "assert find_remainder([1000001, 1000000, 1000000], 10000) == 0", "assert find_remainder([2000000, 1000001, 2999999], 1000000) == 0", "assert find_remainder([2000000, 2000000, 1000001, 1000000, 1000001, 2000000], 2000001) == 1750001", "assert find_remainder([3000000, 3000000], 10001) == 9992", "assert find_remainder([2000000, 3000000], 1999999) == 1000001", "assert find_remainder([1000000, 3000000, 3000000], 10001) == 900", "assert find_remainder([1000000, 2000000, 3000000, 1000000, 2000000], 10001) == 8801", "assert find_remainder([3000001, 3000000], 10002) == 9330", "assert find_remainder([2000000, 2999999, 10001, 3000000], 3000001) == 1986666", "assert find_remainder([1000000, 2000000, 3000000, 1000000, 1000000], 2000000) == 0", "assert find_remainder([1000001, 1000000, 1000001], 10000) == 0", "assert find_remainder([2000000, 3000000, 10001, 3000000], 1000001) == 819983", "assert find_remainder([1999999], 10002) == 9601", "assert find_remainder([2000000, 1000001, 3000000], 2999999) == 1666667", "assert find_remainder([1000001, 1000000, 1000000, 1000000, 1000000], 10000) == 0", "assert find_remainder([2000000, 1000001, 1000000, 2000000], 10002) == 6656", "assert find_remainder([2000000, 2999999, 10001, 3000000], 1999999) == 1507500", "assert find_remainder([1000000, 3000001, 2000000, 3000000, 1000000, 10002], 2000000) == 0", "assert find_remainder([2000000, 2999999, 10001, 3000000], 1000000) == 0", "assert find_remainder([1000000, 2000000], 10000) == 0", "assert find_remainder([2000000, 1000001, 3000000], 999999) == 12", "assert find_remainder([999999], 1000000) == 999999", "assert find_remainder([2000000, 2000000, 1000001, 1000000, 1000001, 2000000, 1000001], 2000001) == 1875001", "assert find_remainder([1000000, 3000000, 2000001, 3000000], 10002) == 5550", "assert find_remainder([1000000, 2000000, 3000000, 1000000, 1000000], 1999999) == 375000", "assert find_remainder([2000000, 1000001, 2000001, 2000000], 2999999) == 1518519", "assert find_remainder([2000000, 3000000, 10001, 3000001], 2000000) == 0", "assert find_remainder([2000000, 2999999, 10001, 3000000], 999999) == 120012", "assert find_remainder([1000001, 1000000, 3000000], 3000001) == 1333334", "assert find_remainder([1000001, 1000000, 1000001], 2000000) == 1000000", "assert find_remainder([1000001], 10002) == 9803", "assert find_remainder([2999999, 2000000, 1000001, 3000000], 1000000) == 0", "assert find_remainder([2000000, 10001, 3000000, 10002], 10001) == 0", "assert find_remainder([2000000, 3000000, 3000000, 10001, 3000000], 1000000) == 0", "assert find_remainder([1000000, 3000000, 2000001, 3000000, 1000000], 10001) == 8210", "assert find_remainder([2999999, 1000000], 10001) == 97", "assert find_remainder([1000000, 1000000, 1000001], 10001) == 99", "assert find_remainder([2000000, 10001, 3000000], 3000002) == 1026670", "assert find_remainder([2000000, 3000000, 10001, 3000000], 2999999) == 1006667", "assert find_remainder([10000, 3000000, 3000000], 2000000) == 0", "assert find_remainder([1000000, 2000000, 3000000, 1000000], 10002) == 384", "assert find_remainder([2999999, 10000, 2000000, 3000000, 2000000], 1000001) == 480000", "assert find_remainder([10000, 3000000, 3000000], 1999999) == 22500" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the given list contains consecutive numbers or not.\nassert check_Consecutive([1,2,3,4,5]) == True\nYour code should pass the test:\nassert check_Consecutive([1,2,3,4,5]) == True", "test_list": [ "assert check_Consecutive([1,2,3,4,5]) == True", "assert check_Consecutive([1,2,3,5,6]) == False", "assert check_Consecutive([1,2,1]) == False", "assert check_Consecutive([4, 1, 9, 5, 2]) == False", "assert check_Consecutive([4, 9, 5, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 2]) == False", "assert check_Consecutive([4, 4, 9, 5, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 2, 2]) == False", "assert check_Consecutive([5, 1, 9, 5, 2]) == False", "assert check_Consecutive([4, 1, 9, 5, 2, 9]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 2, 5]) == False", "assert check_Consecutive([5, 1, 9, 1, 2]) == False", "assert check_Consecutive([4, 2, 4, 9, 5, 2]) == False", "assert check_Consecutive([4, 1, 0, 9, 5, 2, 9]) == False", "assert check_Consecutive([4, 9, 5, 3]) == False", "assert check_Consecutive([0, 9, 2, 9]) == False", "assert check_Consecutive([4, 1, 5, 2, 9]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 5, 2, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 1]) == False", "assert check_Consecutive([4, 5, 1, 9, 6, 2, 2]) == False", "assert check_Consecutive([1, 4, 5, 2]) == False", "assert check_Consecutive([4, 5, 1, 5, 5, 2, 1, 5]) == False", "assert check_Consecutive([5, 1, 9, 1, 1, 2]) == False", "assert check_Consecutive([4, 9, 5, 2, 9]) == False", "assert check_Consecutive([0, 4, 2, 9]) == False", "assert check_Consecutive([4, 9, 1, 5]) == False", "assert check_Consecutive([1, 5, 1, 9, 4, 5, 2]) == False", "assert check_Consecutive([1, 5, 1, 9, 2, 4, 5, 2]) == False", "assert check_Consecutive([5, 1, 3, 1, 1, 2]) == False", "assert check_Consecutive([9, 2, 9, 9, 0, 0, 9]) == False", "assert check_Consecutive([5, 1, 9, 5, 2, 9]) == False", "assert check_Consecutive([6, 5, 1, 5, 5, 2, 1, 5]) == False", "assert check_Consecutive([4, 2, 3, 4, 9, 5, 2]) == False", "assert check_Consecutive([4, 2, 9, 3, 2]) == False", "assert check_Consecutive([4, 2, 9, 3, 2, 9]) == False", "assert check_Consecutive([2, 9, 2, 9, 9, 0, 0, 9]) == False", "assert check_Consecutive([2, 4, 5, 1, 0, 2, 9, 5, 2, 2, 5]) == False", "assert check_Consecutive([4, 3, 5, 1, 9, 5, 5, 2, 2]) == False", "assert check_Consecutive([4, 9, 5]) == False", "assert check_Consecutive([1, 4, 9, 2]) == False", "assert check_Consecutive([4, 5, 1, 6, 5, 2, 1, 5]) == False", "assert check_Consecutive([6, 5, 1, 9, 2, 4, 2]) == False", "assert check_Consecutive([3, 2, 4, 9, 5, 2]) == False", "assert check_Consecutive([4, 1, 9, 5]) == False", "assert check_Consecutive([4, 9, 1, 4, 9]) == False", "assert check_Consecutive([4, 2, 9, 2, 3, 2, 9]) == False", "assert check_Consecutive([1, 4, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 5, 9, 2]) == False", "assert check_Consecutive([4, 5, 1, 6, 5, 2, 1, 5, 6]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 1, 9]) == False", "assert check_Consecutive([4, 3, 1, 0, 9, 5, 2, 9]) == False", "assert check_Consecutive([4, 9, 5, 3, 5, 3]) == False", "assert check_Consecutive([5, 1, 5, 2]) == False", "assert check_Consecutive([4, 5, 3, 9, 5, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 9]) == False", "assert check_Consecutive([4, 3, 3, 4, 5, 2]) == False", "assert check_Consecutive([5, 5, 1, 9, 5, 2]) == False", "assert check_Consecutive([4, 2, 3, 4, 9, 5, 2, 9, 3]) == False", "assert check_Consecutive([4, 2, 9, 2, 3, 2, 9, 2]) == False", "assert check_Consecutive([4, 6, 6, 3, 9, 5, 2, 5]) == False", "assert check_Consecutive([5, 9, 5, 2, 9]) == False", "assert check_Consecutive([4, 2, 6, 3, 4, 9, 5, 2, 9, 3]) == False", "assert check_Consecutive([4, 2, 9, 2, 9, 9]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 1, 1]) == False", "assert check_Consecutive([2, 9, 2, 9, 9, 0, 0, 9, 0]) == False", "assert check_Consecutive([2, 9, 9, 0, 0, 9]) == False", "assert check_Consecutive([4, 5, 5, 9, 5, 2, 2, 2]) == False", "assert check_Consecutive([4, 4, 2, 3, 4, 9, 5, 2, 9, 3]) == False", "assert check_Consecutive([1, 5, 2]) == False", "assert check_Consecutive([1, 5, 1, 9, 2, 4, 2]) == False", "assert check_Consecutive([2, 4, 5, 1, 0, 2, 9, 5, 2, 2, 4, 5]) == False", "assert check_Consecutive([4, 5, 1, 9, 5, 2, 8]) == False", "assert check_Consecutive([1, 4, 5]) == False", "assert check_Consecutive([2, 9, 9, 9, 0, 0, 9, 0]) == False", "assert check_Consecutive([1, 4, 9, 8, 2, 2]) == False", "assert check_Consecutive([4]) == True", "assert check_Consecutive([5, 1, 5, 1, 9, 2, 4, 5, 2, 1]) == False", "assert check_Consecutive([4, 3, 5, 1, 10, 9, 5, 2, 1, 1]) == False", "assert check_Consecutive([1, 1, 9, 2, 4, 6, 2]) == False", "assert check_Consecutive([4, 1, 5, 2, 9, 4]) == False", "assert check_Consecutive([4, 1, 9, 0, 9, 2, 9]) == False", "assert check_Consecutive([5, 1, 9, 5, 5, 2]) == False", "assert check_Consecutive([1, 5, 1, 9, 2, 4, 2, 2]) == False", "assert check_Consecutive([4, 5, 1, 9, 1, 8, 2, 2]) == False", "assert check_Consecutive([4, 1, 9, 10]) == False", "assert check_Consecutive([4, 3, 5, 1, 9, 5, 5, 2, 2, 2]) == False", "assert check_Consecutive([6, 6, 1, 9, 4, 2]) == False", "assert check_Consecutive([4, 1, 9, 5, 5, 2, 2]) == False", "assert check_Consecutive([4, 9, 10, 5, 3, 5, 3]) == False", "assert check_Consecutive([5, 1, 9, 2]) == False", "assert check_Consecutive([6, 6, 1, 9, 4, 1]) == False", "assert check_Consecutive([4, 1, 5, 8, 2, 9, 4]) == False", "assert check_Consecutive([4, 5, 1, 6, 5, 2, 1, 5, 5]) == False", "assert check_Consecutive([6, 6, 1, 9, 1, 6, 6]) == False", "assert check_Consecutive([4, 6, 5, 1, 9, 5, 2, 2, 2]) == False", "assert check_Consecutive([1, 5, 1, 9, 2, 4, 2, 8, 2, 1]) == False", "assert check_Consecutive([4, 5, 1, 1]) == False", "assert check_Consecutive([4, 5, 1, 4, 1]) == False", "assert check_Consecutive([4, 1, 5, 8, 2, 9]) == False", "assert check_Consecutive([0, 4, 9]) == False", "assert check_Consecutive([4, 1, 1]) == False", "assert check_Consecutive([4, 5, 1, 5, 5, 5, 9, 2]) == False", "assert check_Consecutive([4, 2, 9, 2, 9, 9, 2, 2, 9]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the tuple intersection of elements in the given tuple list irrespective of their order.\nassert tuple_intersection([(3, 4), (5, 6), (9, 10), (4, 5)] , [(5, 4), (3, 4), (6, 5), (9, 11)]) == {(4, 5), (3, 4), (5, 6)}\nYour code should pass the test:\nassert tuple_intersection([(3, 4), (5, 6), (9, 10), (4, 5)] , [(5, 4), (3, 4), (6, 5), (9, 11)]) == {(4, 5), (3, 4), (5, 6)}", "test_list": [ "assert tuple_intersection([(3, 4), (5, 6), (9, 10), (4, 5)] , [(5, 4), (3, 4), (6, 5), (9, 11)]) == {(4, 5), (3, 4), (5, 6)}", "assert tuple_intersection([(4, 1), (7, 4), (11, 13), (17, 14)] , [(1, 4), (7, 4), (16, 12), (10, 13)]) == {(4, 7), (1, 4)}", "assert tuple_intersection([(2, 1), (3, 2), (1, 3), (1, 4)] , [(11, 2), (2, 3), (6, 2), (1, 3)]) == {(1, 3), (2, 3)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9)], [(1, 2, 3), (7, 8, 9), (10, 11, 12)]) == {(7, 8, 9), (1, 2, 3)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(2, 3, 1), (6, 5, 4), (11, 12, 10)]) == {(1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9)], [(4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(7, 8, 9), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9)], [(4, 5, 6), (7, 8, 9), (1, 2, 3), (10, 11, 12)]) == {(7, 8, 9), (1, 2, 3), (4, 5, 6)}", "assert tuple_intersection([(), (), ()], [()]) == {()}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(12, 10, 9), (8, 7, 6), (6, 5, 4), (3, 2, 1)]) == {(1, 2, 3), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(4, 5, 6), (7, 8, 9)]) == {(7, 8, 9), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7)], [(1, 3), (3, 5), (5, 7), (7, 9)]) == set()", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(7, 8, 9), (1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(2, 3, 1), (6, 5, 4), (11, 12, 10)], [(2, 3, 1), (6, 5, 4), (11, 12, 10)]) == {(1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (7, 8, 9), (10, 11, 12)], [(4, 5, 6), (7, 8, 9)]) == {(7, 8, 9)}", "assert tuple_intersection([(4, 5, 6)], [(4, 5, 6)]) == {(4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (10, 11, 12), (1, 2, 3)], [(1, 2, 3), (4, 5, 6), (10, 11, 12), (1, 2, 3)]) == {(1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7), (6, 7)], [(1, 3), (3,), (5, 7), (6, 7, 9)]) == set()", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 1, 9)], [(4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4), (7, 8, 9)], [(4, 5, 6), (1, 2, 3)]) == {(1, 2, 3)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4), (7, 8, 9)], [(4, 5, 6), (1, 2)]) == set()", "assert tuple_intersection([(1, 2), (1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(1, 2), (1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(1, 2), (1, 2, 3), (10, 11, 12), (4, 5, 6), (7, 8, 9)}", "assert tuple_intersection([(1, 2, 3), (7, 8, 9), (1, 2, 3, 3), (10, 11, 12)], [(1, 2, 3), (7, 8, 9), (1, 2, 3, 3), (10, 11, 12)]) == {(7, 8, 9), (1, 2, 3), (10, 11, 12), (1, 2, 3, 3)}", "assert tuple_intersection([(7, 9, 7), (7, 8, 9, 8), (1, 2, 3), (4, 5, 6), (7, 8, 9, 7), (7, 9, 7)], [(7, 9, 7), (7, 8, 9, 8), (1, 2, 3), (4, 5, 6), (7, 8, 9, 7), (7, 9, 7)]) == {(1, 2, 3), (7, 8, 8, 9), (7, 7, 9), (4, 5, 6), (7, 7, 8, 9)}", "assert tuple_intersection([(4, 5, 6), (7, 8, 9), (4, 5, 6)], [(4, 5, 6), (7, 8, 9), (4, 5, 6)]) == {(7, 8, 9), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4)], [(1, 2, 3), (4, 5, 6, 4)]) == {(1, 2, 3), (4, 4, 5, 6)}", "assert tuple_intersection([(2, 1, 3, 1), (11, 12, 10), (2, 3, 1)], [(2, 1, 3, 1), (11, 12, 10), (2, 3, 1)]) == {(1, 1, 2, 3), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(1, 2, 3, 1), (4, 5, 6, 4), (7, 8, 9), (1, 2, 3, 1)], [(1, 2, 3, 1), (4, 5, 6, 4), (7, 8, 9), (1, 2, 3, 1)]) == {(7, 8, 9), (1, 1, 2, 3), (4, 4, 5, 6)}", "assert tuple_intersection([], []) == set()", "assert tuple_intersection([(1, 2, 3, 3), (7, 8, 9), (10, 11, 12), (7, 8, 9)], [(1, 2, 3, 3), (7, 8, 9), (10, 11, 12), (7, 8, 9)]) == {(7, 8, 9), (10, 11, 12), (1, 2, 3, 3)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 7, 9, 9), (10, 11, 12)], [(1, 2, 3), (4, 5, 6), (7, 7, 9, 9), (10, 11, 12)]) == {(7, 7, 9, 9), (1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7)], [(1, 11), (1, 3), (3, 5), (5, 7), (7, 9)]) == set()", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4)], [(4, 5, 6), (1, 2, 3)]) == {(1, 2, 3)}", "assert tuple_intersection([(2, 1, 3, 1), (2, 3, 1)], [(2, 1, 3, 1), (2, 3, 1)]) == {(1, 1, 2, 3), (1, 2, 3)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (5, 6), (7, 8, 9), (10, 11, 12)], [(1, 2, 3), (4, 5, 6), (5, 6), (7, 8, 9), (10, 11, 12)]) == {(1, 2, 3), (10, 11, 12), (5, 6), (4, 5, 6), (7, 8, 9)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 8, 9)], [(4, 5, 6), (1, 2, 3), (10, 11, 12)]) == {(1, 2, 3), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 8, 9), (7, 8, 8, 9)], [(4, 5, 6), (1, 2, 3), (10, 11, 12)]) == {(1, 2, 3), (4, 5, 6)}", "assert tuple_intersection([(4, 5, 6), (1, 2)], [(4, 5, 6), (1, 2)]) == {(1, 2), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (7, 7)], [(1, 11), (1, 3), (3, 5), (5, 7), (7, 9), (1, 3)]) == set()", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4)], []) == set()", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 5), (10, 11, 12), (1, 2, 3)], [(1, 2, 3), (4, 5, 6, 5), (10, 11, 12), (1, 2, 3)]) == {(4, 5, 5, 6), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(1, 2, 3), (8, 10, 11, 12)], [(1, 2, 3), (8, 10, 11, 12)]) == {(8, 10, 11, 12), (1, 2, 3)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 5), (10, 11, 12), (1, 2, 3), (1, 2, 3)], [(1, 2, 3), (4, 5, 6, 5), (10, 11, 12), (1, 2, 3), (1, 2, 3)]) == {(4, 5, 5, 6), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(1, 2), (2, 3), (4, 5), (5, 6), (6, 7)], [(1, 2), (2, 3), (4, 5), (5, 6), (6, 7)]) == {(1, 2), (2, 3), (6, 7), (4, 5), (5, 6)}", "assert tuple_intersection([(1, 2), (2, 2), (3, 4), (5, 6), (6, 7), (3, 4)], [(1, 2), (2, 2), (3, 4), (5, 6), (6, 7), (3, 4)]) == {(1, 2), (3, 4), (6, 7), (5, 6), (2, 2)}", "assert tuple_intersection([(1, 2), (4, 5, 6)], [(1, 2), (4, 5, 6)]) == {(1, 2), (4, 5, 6)}", "assert tuple_intersection([(1, 1), (4, 5, 6), (1, 2)], [(1, 1), (4, 5, 6), (1, 2)]) == {(1, 1), (1, 2), (4, 5, 6)}", "assert tuple_intersection([(2, 1, 3, 1), (11, 12, 10), (2, 3, 1), (2, 1, 3, 1), (2, 1, 3, 1)], [(2, 1, 3, 1), (11, 12, 10), (2, 3, 1), (2, 1, 3, 1), (2, 1, 3, 1)]) == {(1, 1, 2, 3), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(2,), (1, 2), (2, 3), (3, 4), (4, 5), (6, 7)], [(2,), (1, 2), (2, 3), (3, 4), (4, 5), (6, 7)]) == {(1, 2), (2,), (3, 4), (2, 3), (6, 7), (4, 5)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 8, 9), (7, 8, 8, 9)], [(1, 2, 3), (4, 5, 6), (7, 8, 8, 9), (7, 8, 8, 9)]) == {(1, 2, 3), (4, 5, 6), (7, 8, 8, 9)}", "assert tuple_intersection([(3,), (1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (7, 7)], [(1, 11), (1, 3), (3, 5), (5, 7), (7, 9), (1, 3)]) == set()", "assert tuple_intersection([(1, 2, 3), (1, 2, 3, 3, 1)], [(1, 2, 3), (1, 2, 3, 3, 1)]) == {(1, 2, 3), (1, 1, 2, 3, 3)}", "assert tuple_intersection([(1, 2), (4, 7), (5, 6), (6, 7)], [(1, 2), (4, 7), (5, 6), (6, 7)]) == {(6, 7), (1, 2), (4, 7), (5, 6)}", "assert tuple_intersection([(10, 11, 2), (1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(10, 11, 2), (1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(1, 2, 3), (10, 11, 12), (2, 10, 11), (4, 5, 6), (7, 8, 9)}", "assert tuple_intersection([(1, 2), (3, 4), (4, 5), (5, 6), (6, 7)], [(1, 2), (3, 4), (4, 5), (5, 6), (6, 7)]) == {(1, 2), (3, 4), (6, 7), (4, 5), (5, 6)}", "assert tuple_intersection([(1, 2, 3), (11, 12), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(1, 2, 3), (11, 12), (4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(1, 2, 3), (10, 11, 12), (11, 12), (4, 5, 6), (7, 8, 9)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 6, 6), (4, 5, 6), (4, 5, 6, 6), (7, 1, 9)], [(1, 2, 3), (4, 5, 6, 6, 6), (4, 5, 6), (4, 5, 6, 6), (7, 1, 9)]) == {(4, 5, 6, 6, 6), (4, 5, 6, 6), (1, 2, 3), (4, 5, 6), (1, 7, 9)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(7, 8, 9, 8), (4, 5, 6), (7, 8, 9)]) == {(7, 8, 9), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12), (7, 8, 9)], [(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12), (7, 8, 9)]) == {(7, 8, 9), (1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (2, 2), (3, 4), (5, 6), (6, 7), (3, 4), (5, 6)], [(1, 2), (2, 2), (3, 4), (5, 6), (6, 7), (3, 4), (5, 6)]) == {(1, 2), (3, 4), (6, 7), (5, 6), (2, 2)}", "assert tuple_intersection([(4, 5, 6, 6), (4, 5, 6), (4, 5, 6)], [(4, 5, 6, 6), (4, 5, 6), (4, 5, 6)]) == {(4, 5, 6, 6), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4), (4, 5, 6, 4)], [(1, 2, 3), (4, 5, 6, 4), (4, 5, 6, 4)]) == {(1, 2, 3), (4, 4, 5, 6)}", "assert tuple_intersection([(12, 10, 9), (8, 7, 6), (6, 5, 4), (3, 2, 1), (8, 7, 6)], [(12, 10, 9), (8, 7, 6), (6, 5, 4), (3, 2, 1), (8, 7, 6)]) == {(1, 2, 3), (9, 10, 12), (4, 5, 6), (6, 7, 8)}", "assert tuple_intersection([(4, 5, 6), (10, 11, 11), (7, 8, 9), (10, 11, 12), (10, 11, 12)], [(4, 5, 6), (10, 11, 11), (7, 8, 9), (10, 11, 12), (10, 11, 12)]) == {(7, 8, 9), (10, 11, 11), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(4, 5, 6), (7, 8, 9), (10, 11, 12)], [(7, 8, 9)]) == {(7, 8, 9)}", "assert tuple_intersection([(4, 5, 6), (7, 8, 9), (10, 11, 12, 11)], [(4, 5, 6), (7, 8, 9), (10, 11, 12, 11)]) == {(7, 8, 9), (4, 5, 6), (10, 11, 11, 12)}", "assert tuple_intersection([(4, 5, 6), (7, 7, 9, 9), (10, 11, 12)], [(4, 5, 6), (7, 7, 9, 9), (10, 11, 12)]) == {(7, 7, 9, 9), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 1), (1, 2, 2), (4, 5, 6), (1, 2)], [(1, 1), (1, 2, 2), (4, 5, 6), (1, 2)]) == {(1, 1), (1, 2), (4, 5, 6), (1, 2, 2)}", "assert tuple_intersection([(1, 2), (3, 4), (4, 5), (5, 6), (1, 2)], [(1, 2), (3, 4), (4, 5), (5, 6), (1, 2)]) == {(4, 5), (1, 2), (3, 4), (5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 6, 6), (4, 5, 6), (7, 1, 9)], [(1, 2, 3), (4, 5, 6, 6, 6), (4, 5, 6), (7, 1, 9)]) == {(4, 5, 6, 6, 6), (1, 7, 9), (1, 2, 3), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (4,), (3, 4), (4, 5), (5, 6), (1, 2)], [(1, 2), (4,), (3, 4), (4, 5), (5, 6), (1, 2)]) == {(1, 2), (3, 4), (4,), (4, 5), (5, 6)}", "assert tuple_intersection([(4, 5, 6), (7, 8, 9), (1, 2, 3), (10, 11, 12)], [(4, 5, 6), (7, 8, 9), (1, 2, 3), (10, 11, 12)]) == {(7, 8, 9), (1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(12, 10, 9), (8, 7, 6), (6, 5, 4), (3, 2, 1), (8, 7, 6), (3, 2, 1)], [(12, 10, 9), (8, 7, 6), (6, 5, 4), (3, 2, 1), (8, 7, 6), (3, 2, 1)]) == {(1, 2, 3), (9, 10, 12), (4, 5, 6), (6, 7, 8)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (7, 7)], [(1, 11), (1, 3), (3, 5), (5, 7), (7, 9, 7), (1, 3)]) == set()", "assert tuple_intersection([(4, 5, 6), (7, 7, 9, 9), (10, 11), (10, 11, 12), (10, 11, 12)], [(4, 5, 6), (7, 7, 9, 9), (10, 11), (10, 11, 12), (10, 11, 12)]) == {(7, 7, 9, 9), (10, 11), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (6, 8, 9), (1, 2, 3)], [(1, 2, 3), (4, 5, 6), (6, 8, 9), (1, 2, 3)]) == {(6, 8, 9), (1, 2, 3), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4), (1, 2, 3)], [(1, 2, 3), (4, 5, 6, 4), (1, 2, 3)]) == {(1, 2, 3), (4, 4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (1, 2, 3), (4, 5, 6), (10, 11, 12), (1, 2, 3)], [(1, 2, 3), (1, 2, 3), (4, 5, 6), (10, 11, 12), (1, 2, 3)]) == {(1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6, 6), (6, 7)], [(1, 3), (3, 5), (5, 7), (7, 9)]) == set()", "assert tuple_intersection([(1, 2, 3), (7, 8, 9), (10, 11, 12), (7, 8, 9)], [(1, 2, 3), (7, 8, 9), (10, 11, 12), (7, 8, 9)]) == {(7, 8, 9), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(4, 5, 6), (4, 5), (7, 8, 9), (1, 2, 3), (10, 11, 12)], [(4, 5, 6), (4, 5), (7, 8, 9), (1, 2, 3), (10, 11, 12)]) == {(1, 2, 3), (10, 11, 12), (4, 5), (4, 5, 6), (7, 8, 9)}", "assert tuple_intersection([(2, 1, 3, 1), (11, 12, 10), (2, 3, 1), (11, 12), (2, 1, 3, 1), (2, 1, 3, 1)], [(2, 1, 3, 1), (11, 12, 10), (2, 3, 1), (11, 12), (2, 1, 3, 1), (2, 1, 3, 1)]) == {(11, 12), (1, 1, 2, 3), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(1, 2), (6, 4), (4,), (5, 6), (1, 2, 1), (2, 2)], [(1, 2), (6, 4), (4,), (5, 6), (1, 2, 1), (2, 2)]) == {(1, 2), (4, 6), (4,), (1, 1, 2), (5, 6), (2, 2)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7)], [(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7)]) == {(1, 2), (3, 4), (2, 3), (6, 7), (4, 5), (5, 6)}", "assert tuple_intersection([(1, 11), (1, 3), (3, 5), (5, 7), (1, 3)], [(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (7, 7, 7)]) == set()", "assert tuple_intersection([(1, 2), (3, 4), (4, 5), (5, 6), (6, 7), (1, 3, 2), (1, 2)], [(1, 2), (3, 4), (4, 5), (5, 6), (6, 7), (1, 3, 2), (1, 2)]) == {(1, 2), (3, 4), (1, 2, 3), (6, 7), (4, 5), (5, 6)}", "assert tuple_intersection([(1, 2), (4, 7), (5, 6)], [(1, 2), (4, 7), (5, 6)]) == {(1, 2), (4, 7), (5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (4, 5, 6)], [(1, 2, 3), (7, 8, 9), (10, 11, 12)]) == {(1, 2, 3)}", "assert tuple_intersection([(1, 11), (1, 4, 3), (3, 5), (1,), (5, 7), (1, 3)], [(1, 11), (1, 4, 3), (3, 5), (1,), (5, 7), (1, 3)]) == {(1, 11), (1, 3, 4), (5, 7), (1,), (1, 3), (3, 5)}", "assert tuple_intersection([(7, 9, 8, 9), (10, 11, 12)], [(7, 9, 8, 9), (10, 11, 12)]) == {(7, 8, 9, 9), (10, 11, 12)}", "assert tuple_intersection([(1, 2), (2, 2), (3, 4), (5, 6), (6, 7), (5, 6)], [(1, 2), (2, 2), (3, 4), (5, 6), (6, 7), (5, 6)]) == {(1, 2), (3, 4), (6, 7), (5, 6), (2, 2)}", "assert tuple_intersection([(1, 4, 3), (3, 5), (1,), (5, 7), (1, 3)], [(1, 4, 3), (3, 5), (1,), (5, 7), (1, 3)]) == {(1, 3, 4), (5, 7), (1,), (1, 3), (3, 5)}", "assert tuple_intersection([(4, 5, 6, 5), (10, 11, 12)], [(4, 5, 6, 5), (10, 11, 12)]) == {(4, 5, 5, 6), (10, 11, 12)}", "assert tuple_intersection([(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7, 6)], [(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7, 6)]) == {(1, 2), (3, 4), (2, 3), (4, 5), (6, 6, 7), (5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12), (7, 8, 9), (4, 5, 6)], [(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12), (7, 8, 9), (4, 5, 6)]) == {(7, 8, 9), (1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (4, 5, 6, 4, 5)], [(1, 2, 3), (4, 5, 6, 4, 5)]) == {(4, 4, 5, 5, 6), (1, 2, 3)}", "assert tuple_intersection([(4, 5, 5), (4, 5, 5)], [(4, 5, 5), (4, 5, 5)]) == {(4, 5, 5)}", "assert tuple_intersection([(7, 7, 8, 9), (7, 8, 9)], [(7, 7, 8, 9), (7, 8, 9)]) == {(7, 8, 9), (7, 7, 8, 9)}", "assert tuple_intersection([(1,), (1, 2), (4, 5, 6), (1, 2)], [(1,), (1, 2), (4, 5, 6), (1, 2)]) == {(1,), (1, 2), (4, 5, 6)}", "assert tuple_intersection([(4, 5, 6), (10, 11, 12, 11), (7, 8, 9), (10, 11, 12)], [(12, 10, 9), (8, 7, 6), (6, 5, 4)]) == {(4, 5, 6)}", "assert tuple_intersection([(1, 4, 3), (3, 5), (3,), (5, 7), (5, 12, 7)], [(1, 4, 3), (3, 5), (3,), (5, 7), (5, 12, 7)]) == {(5, 7, 12), (1, 3, 4), (5, 7), (3,), (3, 5)}", "assert tuple_intersection([(1, 2, 3, 1), (1, 2, 3), (10, 11, 12), (1, 2, 3), (1, 2, 3)], [(1, 2, 3, 1), (1, 2, 3), (10, 11, 12), (1, 2, 3), (1, 2, 3)]) == {(1, 1, 2, 3), (1, 2, 3), (10, 11, 12)}", "assert tuple_intersection([(4, 5, 6), (6, 5, 6), (7, 7, 9, 9), (10, 11, 12), (7, 7, 9, 9)], [(4, 5, 6), (6, 5, 6), (7, 7, 9, 9), (10, 11, 12), (7, 7, 9, 9)]) == {(7, 7, 9, 9), (4, 5, 6), (10, 11, 12), (5, 6, 6)}", "assert tuple_intersection([(1, 2, 3), (1, 2, 3), (4, 5, 6), (10, 11, 12), (1, 2, 3), (1, 2, 3)], [(1, 2, 3), (1, 2, 3), (4, 5, 6), (10, 11, 12), (1, 2, 3), (1, 2, 3)]) == {(1, 2, 3), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(4, 5, 6), (7, 8, 9)], [(4, 5, 6), (7, 8, 9)]) == {(7, 8, 9), (4, 5, 6)}", "assert tuple_intersection([(1, 11), (1, 3), (3, 5), (5, 7), (7, 9), (1, 3)], [(1, 11), (1, 3), (3, 5), (5, 7), (7, 9), (1, 3)]) == {(1, 11), (5, 7), (7, 9), (1, 3), (3, 5)}", "assert tuple_intersection([(1, 11), (1, 3), (3, 5), (5, 7), (8, 1, 3), (7, 9), (1, 3)], [(1, 11), (1, 3), (3, 5), (5, 7), (8, 1, 3), (7, 9), (1, 3)]) == {(1, 3, 8), (1, 11), (5, 7), (7, 9), (1, 3), (3, 5)}", "assert tuple_intersection([(1, 2), (6, 4), (4,), (5, 6), (1, 2, 1), (2, 2), (5, 6)], [(1, 2), (6, 4), (4,), (5, 6), (1, 2, 1), (2, 2), (5, 6)]) == {(1, 2), (4, 6), (4,), (1, 1, 2), (5, 6), (2, 2)}", "assert tuple_intersection([(3, 5), (1,), (5, 7), (1, 3), (3, 5)], [(3, 5), (1,), (5, 7), (1, 3), (3, 5)]) == {(1,), (1, 3), (3, 5), (5, 7)}", "assert tuple_intersection([(1, 2, 3, 3), (7, 8, 9), (10, 11, 12), (7, 8, 9), (7, 8, 9)], [(1, 2, 3, 3), (7, 8, 9), (10, 11, 12), (7, 8, 9), (7, 8, 9)]) == {(7, 8, 9), (10, 11, 12), (1, 2, 3, 3)}", "assert tuple_intersection([(4, 5, 6), (7, 8, 9), (10, 11, 12)], [(4, 5, 6), (7, 8, 9), (10, 11, 12)]) == {(7, 8, 9), (10, 11, 12), (4, 5, 6)}", "assert tuple_intersection([(1, 2, 3), (7, 8, 8), (4, 5, 6), (7, 8, 9), (10, 11, 12)], [(12, 10, 9), (8, 7, 6), (6, 5, 4), (3, 2, 1)]) == {(1, 2, 3), (4, 5, 6)}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to replace characters in a string.\nassert replace_char(\"polygon\",'y','l')==(\"pollgon\")\nYour code should pass the test:\nassert replace_char(\"polygon\",'y','l')==(\"pollgon\")", "test_list": [ "assert replace_char(\"polygon\",'y','l')==(\"pollgon\")", "assert replace_char(\"character\",'c','a')==(\"aharaater\")", "assert replace_char(\"python\",'l','a')==(\"python\")", "assert replace_char('', 'a', 'b') == ''", "assert replace_char('python', 'z', 'a') == 'python'", "assert replace_char('python', 'o', 'o') == 'python'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxYz', 'm', 'n') == 'AbCdEfGhIjKlMnOpQrStUvWxYz'", "assert replace_char('pythoon', 'a', 'b') == 'pythoon'", "assert replace_char('python', 'z', 'o') == 'python'", "assert replace_char('z', 'a', 'a') == 'z'", "assert replace_char('z', 'z', 'z') == 'z'", "assert replace_char('', 'm', 'm') == ''", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxYz', 'a', 'b') == 'AbCdEfGhIjKlMnOpQrStUvWxYz'", "assert replace_char('python', 'z', 'z') == 'python'", "assert replace_char('zzz', 'z', 'z') == 'zzz'", "assert replace_char('zzz', 'a', 'a') == 'zzz'", "assert replace_char('a', 'a', 'a') == 'a'", "assert replace_char('a', 'b', 'o') == 'a'", "assert replace_char('b', 'z', 'o') == 'b'", "assert replace_char('', 'o', 'm') == ''", "assert replace_char('', 'a', 'a') == ''", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWYzz', 'a', 'a') == 'AbCdEfGhIjKlMnOpQrStUvWYzz'", "assert replace_char('n', 'z', 'a') == 'n'", "assert replace_char('', 'b', 'o') == ''", "assert replace_char('pythona', 'z', 'a') == 'pythona'", "assert replace_char('pythoonpythona', 'z', 'a') == 'pythoonpythona'", "assert replace_char('zz', 'a', 'a') == 'zz'", "assert replace_char('mz', 'z', 'z') == 'mz'", "assert replace_char('', 'o', 'o') == ''", "assert replace_char('a', 'm', 'o') == 'a'", "assert replace_char('b', 'a', 'b') == 'b'", "assert replace_char('b', 'o', 'o') == 'b'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz', 'm', 'n') == 'AbCdEfGhIjKlMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('b', 'a', 'a') == 'b'", "assert replace_char('mz', 'a', 'a') == 'mz'", "assert replace_char('zzz', 'z', 'a') == 'aaa'", "assert replace_char('m', 'a', 'a') == 'm'", "assert replace_char('zz', 'z', 'a') == 'aa'", "assert replace_char('mz', 'a', 'b') == 'mz'", "assert replace_char('aa', 'b', 'o') == 'aa'", "assert replace_char('m', 'n', 'm') == 'm'", "assert replace_char('a', 'o', 'b') == 'a'", "assert replace_char('z', 'a', 'z') == 'z'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxYz', 'a', 'a') == 'AbCdEfGhIjKlMnOpQrStUvWxYz'", "assert replace_char('bb', 'a', 'a') == 'bb'", "assert replace_char('python', 'o', 'b') == 'pythbn'", "assert replace_char('n', 'n', 'n') == 'n'", "assert replace_char('zzzzz', 'a', 'a') == 'zzzzz'", "assert replace_char('zz', 'z', 'o') == 'oo'", "assert replace_char('zz', 'o', 'o') == 'zz'", "assert replace_char('a', 'z', 'a') == 'a'", "assert replace_char('a', 'b', 'a') == 'a'", "assert replace_char('n', 'z', 'z') == 'n'", "assert replace_char('opythoon', 'a', 'o') == 'opythoon'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxYz', 'm', 'b') == 'AbCdEfGhIjKlMnOpQrStUvWxYz'", "assert replace_char('zzzzza', 'b', 'b') == 'zzzzza'", "assert replace_char('AbCdEfGhIjKlMnOpQrSthUvWYzz', 'a', 'a') == 'AbCdEfGhIjKlMnOpQrSthUvWYzz'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz', 'b', 'b') == 'AbCdEfGhIjKlMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz', 'z', 'z') == 'AbCdEfGhIjKlMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('zz', 'z', 'z') == 'zz'", "assert replace_char('aa', 'b', 'b') == 'aa'", "assert replace_char('pythona', 'a', 'a') == 'pythona'", "assert replace_char('AbCdEfGhIjKlaMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz', 'o', 'o') == 'AbCdEfGhIjKlaMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('mz', 'b', 'o') == 'mz'", "assert replace_char('mAbCdEfGhIjKlMnOpQrSthUvWYzz', 'm', 'm') == 'mAbCdEfGhIjKlMnOpQrSthUvWYzz'", "assert replace_char('zz', 'n', 'a') == 'zz'", "assert replace_char('pythoonpynthona', 'z', 'a') == 'pythoonpynthona'", "assert replace_char('aa', 'o', 'o') == 'aa'", "assert replace_char('b', 'b', 'b') == 'b'", "assert replace_char('a', 'a', 'z') == 'z'", "assert replace_char('zpythoonpynthona', 'z', 'o') == 'opythoonpynthona'", "assert replace_char('zzzzz', 'm', 'm') == 'zzzzz'", "assert replace_char('a', 'm', 'm') == 'a'", "assert replace_char('oopythoon', 'a', 'o') == 'oopythoon'", "assert replace_char('m', 'm', 'm') == 'm'", "assert replace_char('zpythoonpynthona', 'o', 'b') == 'zpythbbnpynthbna'", "assert replace_char('o', 'o', 'o') == 'o'", "assert replace_char('pytoopythoonhona', 'z', 'a') == 'pytoopythoonhona'", "assert replace_char('AbCdEfGhIjKlaMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz', 'z', 'a') == 'AbCdEfGhIjKlaMnOpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYaa'", "assert replace_char('bb', 'a', 'o') == 'bb'", "assert replace_char('oo', 'o', 'o') == 'oo'", "assert replace_char('pytbboopythoonhona', 'z', 'z') == 'pytbboopythoonhona'", "assert replace_char('opythoon', 'z', 'z') == 'opythoon'", "assert replace_char('aa', 'z', 'b') == 'aa'", "assert replace_char('pythnn', 'o', 'b') == 'pythnn'", "assert replace_char('zzzzza', 'o', 'b') == 'zzzzza'", "assert replace_char('AbCdEfGhIjKlaMnOGpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz', 'o', 'o') == 'AbCdEfGhIjKlaMnOGpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('aaa', 'b', 'b') == 'aaa'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxAWbCdEfGhIjKlMnOpQrStUvWxYzz', 'b', 'b') == 'AbCdEfGhIjKlMnOpQrStUvWxAWbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('a', 'o', 'a') == 'a'", "assert replace_char('pythoAbCdEpythnnfGhIjKlMnOpQaaaxYzn', 'z', 'z') == 'pythoAbCdEpythnnfGhIjKlMnOpQaaaxYzn'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxAbCdEfKGhIjKlMnOpQrStUvWxYzz', 'm', 'n') == 'AbCdEfGhIjKlMnOpQrStUvWxAbCdEfKGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('opythoon', 'o', 'o') == 'opythoon'", "assert replace_char('pythooon', 'a', 'b') == 'pythooon'", "assert replace_char('pythooon', 'm', 'm') == 'pythooon'", "assert replace_char('', 'b', 'b') == ''", "assert replace_char('zpythoonpynthona', 'b', 'o') == 'zpythoonpynthona'", "assert replace_char('o', 'b', 'o') == 'o'", "assert replace_char('b', 'b', 'o') == 'o'", "assert replace_char('n', 'z', 'n') == 'n'", "assert replace_char('zzzzza', 'b', 'a') == 'zzzzza'", "assert replace_char('o', 'b', 'a') == 'o'", "assert replace_char('ma', 'm', 'm') == 'ma'", "assert replace_char('mz', 'z', 'a') == 'ma'", "assert replace_char('AbCdEfGhIjKlMnOpQrStUvWxAWbCdEfGhIjKlMnOpQrStUvWxYzz', 'a', 'a') == 'AbCdEfGhIjKlMnOpQrStUvWxAWbCdEfGhIjKlMnOpQrStUvWxYzz'", "assert replace_char('zzzAbCdEfGhIjKlaMnOGpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzzzz', 'a', 'a') == 'zzzAbCdEfGhIjKlaMnOGpQrStUvWxAbCdEfGhIjKlMnOpQrStUvWxYzzzz'", "assert replace_char('pytohona', 'z', 'a') == 'pytohona'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort a dictionary by value.\nassert sort_counter({'Math':81, 'Physics':83, 'Chemistry':87})==[('Chemistry', 87), ('Physics', 83), ('Math', 81)]\nYour code should pass the test:\nassert sort_counter({'Math':81, 'Physics':83, 'Chemistry':87})==[('Chemistry', 87), ('Physics', 83), ('Math', 81)]", "test_list": [ "assert sort_counter({'Math':81, 'Physics':83, 'Chemistry':87})==[('Chemistry', 87), ('Physics', 83), ('Math', 81)]", "assert sort_counter({'Math':400, 'Physics':300, 'Chemistry':250})==[('Math', 400), ('Physics', 300), ('Chemistry', 250)]", "assert sort_counter({'Math':900, 'Physics':1000, 'Chemistry':1250})==[('Chemistry', 1250), ('Physics', 1000), ('Math', 900)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': 1000, 'D': 1000, 'E': 1000}) == [('A', 1000), ('B', 1000), ('C', 1000), ('D', 1000), ('E', 1000)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -5, 'D': 15, 'E': 0}) == [('B', 20), ('D', 15), ('E', 0), ('C', -5), ('A', -10)]", "assert sort_counter({}) == []", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 750000, 'D': 250000, 'E': 500000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('C', 750000), ('B', 500000), ('E', 500000), ('D', 250000)]", "assert sort_counter({'A': 1, 'B': 3, 'C': 2, 'D': 5, 'E': 4, 'F': 7, 'G': 6}) == [('F', 7), ('G', 6), ('D', 5), ('E', 4), ('B', 3), ('C', 2), ('A', 1)]", "assert sort_counter({'A': -5, 'B': -10, 'C': 0, 'D': -2, 'E': -7, 'F': -3}) == [('C', 0), ('D', -2), ('F', -3), ('A', -5), ('E', -7), ('B', -10)]", "assert sort_counter({'A': 10, 'B': 20, 'C': 30, 'D': 40, 'E': 50, 'F': 60, 'G': 70, 'H': 80, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('H', 80), ('G', 70), ('F', 60), ('E', 50), ('D', 40), ('C', 30), ('B', 20), ('A', 10)]", "assert sort_counter({'A': 100, 'B': 200, 'C': 300, 'D': -100, 'E': -200, 'F': -300}) == [('C', 300), ('B', 200), ('A', 100), ('D', -100), ('E', -200), ('F', -300)]", "assert sort_counter({'Apple': 5, 'Banana': 10, 'Cherry': 15, 'Durian': 20, 'Elderberry': 25}) == [('Elderberry', 25), ('Durian', 20), ('Cherry', 15), ('Banana', 10), ('Apple', 5)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 5}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Elderberry', 5)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 100000, 'D': 1000000000}) == [('D', 1000000000), ('A', 1000000), ('B', 500000), ('C', 100000)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 100000, 'D': 1000000000, 'E': 100001}) == [('D', 1000000000), ('A', 1000000), ('B', 500000), ('E', 100001), ('C', 100000)]", "assert sort_counter({'B': 20, 'C': -5, 'D': 15, 'E': 6, 'Durian': 19}) == [('B', 20), ('Durian', 19), ('D', 15), ('E', 6), ('C', -5)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': 66.75054378343333, '23.456168040559433': -21.785397857424897, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '87.65436569878796': 40.25079980305773, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224}) == [('60.92484190584344', 80.77796251561224), ('18.594228907699772', 66.75054378343333), ('-35.77677868980413', 52.11949901444851), ('87.65436569878796', 40.25079980305773), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -21.785397857424897), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('64.16101544098183', -89.55867599806567), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'D': 1000000000}) == [('D', 1000000000), ('A', 1000000), ('B', 500000)]", "assert sort_counter({'A': 1000000, 'B': 19, 'C': 750000, 'D': 250000, 'E': 500000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('C', 750000), ('E', 500000), ('D', 250000), ('B', 19)]", "assert sort_counter({'A': -5, 'B': -10, 'C': 0, 'E': -7, 'F': 7}) == [('F', 7), ('C', 0), ('A', -5), ('E', -7), ('B', -10)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5)]", "assert sort_counter({'A': 1000000, 'C': 750000, 'D': 250000, 'E': 500000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('C', 750000), ('E', 500000), ('D', 250000)]", "assert sort_counter({'A': -10, 'C': -5, 'D': 15, 'E': 0}) == [('D', 15), ('E', 0), ('C', -5), ('A', -10)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 100000, 'D': 1000000000, 'AA': -7, '': 500000}) == [('D', 1000000000), ('A', 1000000), ('B', 500000), ('', 500000), ('C', 100000), ('AA', -7)]", "assert sort_counter({'A': 1000000, 'B': 19, 'C': 749999, 'D': 250000, 'E': 500000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('C', 749999), ('E', 500000), ('D', 250000), ('B', 19)]", "assert sort_counter({'A': 1000000, 'B': 499999, 'D': 1000000000}) == [('D', 1000000000), ('A', 1000000), ('B', 499999)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 4}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Elderberry', 4)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': 66.75054378343333, '23.456168040559433': -22.73580203466535, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224}) == [('60.92484190584344', 80.77796251561224), ('18.594228907699772', 66.75054378343333), ('-35.77677868980413', 52.11949901444851), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -22.73580203466535), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('64.16101544098183', -89.55867599806567), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'ChEerry': 5, 'Duarian': 5}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('ChEerry', 5), ('Duarian', 5)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': -5, 'D': 1000, 'E': 1000, 'CC': 1001}) == [('CC', 1001), ('A', 1000), ('B', 1000), ('D', 1000), ('E', 1000), ('C', -5)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 5, 'Appl': 6}) == [('Appl', 6), ('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Elderberry', 5)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -6, 'D': 15, 'E': 0}) == [('B', 20), ('D', 15), ('E', 0), ('C', -6), ('A', -10)]", "assert sort_counter({'Apple': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 4, '': 6}) == [('', 6), ('Apple', 5), ('Cherry', 5), ('Durian', 5), ('Elderberry', 4)]", "assert sort_counter({'A': 1000, 'B': -6, 'C': -5, 'D': 1000, 'E': 1000, 'CC': 1001}) == [('CC', 1001), ('A', 1000), ('D', 1000), ('E', 1000), ('C', -5), ('B', -6)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -5, 'D': 15, 'E': 749999}) == [('E', 749999), ('B', 20), ('D', 15), ('C', -5), ('A', -10)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': -200, 'D': 1000, 'E': 1000}) == [('A', 1000), ('B', 1000), ('D', 1000), ('E', 1000), ('C', -200)]", "assert sort_counter({'Apple': 5, 'Cherry': 4, 'Durian': 5, 'Elderberry': 4, '': 30, 'DurBian': 6}) == [('', 30), ('DurBian', 6), ('Apple', 5), ('Durian', 5), ('Cherry', 4), ('Elderberry', 4)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 4, 'ChEerry': 5, 'Duarian': 5}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('ChEerry', 5), ('Duarian', 5), ('Durian', 4)]", "assert sort_counter({'A': 1000000, 'B': 19, 'C': 749999, 'D': 250000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('C', 749999), ('D', 250000), ('B', 19)]", "assert sort_counter({'A': 10, 'B': 20, 'C': 30, 'D': 40, 'E': 10, 'F': 60, 'G': 70, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('G', 70), ('F', 60), ('D', 40), ('C', 30), ('B', 20), ('A', 10), ('E', 10)]", "assert sort_counter({'A': 1000000, 'B': 500000}) == [('A', 1000000), ('B', 500000)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -5, 'E': 0}) == [('B', 20), ('E', 0), ('C', -5), ('A', -10)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -5, 'D': -100, 'E': 749999}) == [('E', 749999), ('B', 20), ('C', -5), ('A', -10), ('D', -100)]", "assert sort_counter({'A': 1000000, 'C': 750000, 'D': 250000, 'E': 500000, 'F': 1000000, 'G': 50}) == [('A', 1000000), ('F', 1000000), ('C', 750000), ('E', 500000), ('D', 250000), ('G', 50)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': 86.96654380163642, '23.456168040559433': -22.73580203466535, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224}) == [('18.594228907699772', 86.96654380163642), ('60.92484190584344', 80.77796251561224), ('-35.77677868980413', 52.11949901444851), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -22.73580203466535), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('64.16101544098183', -89.55867599806567), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 1, 'Durian': 5, 'Elderberry': 4}) == [('Apple', 5), ('Banana', 5), ('Durian', 5), ('Elderberry', 4), ('Cherry', 1)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Durian': 5, 'Elderberry': 5, 'Duriian': 6}) == [('Duriian', 6), ('Apple', 5), ('Banana', 5), ('Durian', 5), ('Elderberry', 5)]", "assert sort_counter({'B': 200, 'C': 300, 'D': -100, 'E': -200, 'F': -300}) == [('C', 300), ('B', 200), ('D', -100), ('E', -200), ('F', -300)]", "assert sort_counter({'A': 10, 'B': 20, 'C': 30, 'E': 50, 'F': 60, 'G': 70, 'H': 80, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('H', 80), ('G', 70), ('F', 60), ('E', 50), ('C', 30), ('B', 20), ('A', 10)]", "assert sort_counter({'A': 10, 'B': 20, 'C': 30, 'E': 50, 'F': 60, 'H': 80, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('H', 80), ('F', 60), ('E', 50), ('C', 30), ('B', 20), ('A', 10)]", "assert sort_counter({'A': 1000000, 'B': 19, 'C': 749999, 'D': 250000, 'E': 500000, 'F': 999999}) == [('A', 1000000), ('F', 999999), ('C', 749999), ('E', 500000), ('D', 250000), ('B', 19)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': -5, 'D': 1000, 'E': 1000, 'Duarian': 999}) == [('A', 1000), ('B', 1000), ('D', 1000), ('E', 1000), ('Duarian', 999), ('C', -5)]", "assert sort_counter({'200': -13.699369452712531, '19': -22.73580203466535, '50': 87.65436569878796, '13': -54.297828045785266, '82': 86.96654380163642, '29': -74.13390884180842}) == [('50', 87.65436569878796), ('82', 86.96654380163642), ('200', -13.699369452712531), ('19', -22.73580203466535), ('13', -54.297828045785266), ('29', -74.13390884180842)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': 71, 'D': 1000, 'E': 1000, 'CC': 1001, 'ECC': 2}) == [('CC', 1001), ('A', 1000), ('B', 1000), ('D', 1000), ('E', 1000), ('C', 71), ('ECC', 2)]", "assert sort_counter({'Banana': 5, 'Durian': 5, 'Elderberry': 4}) == [('Banana', 5), ('Durian', 5), ('Elderberry', 4)]", "assert sort_counter({'A': -10, 'C': -5, 'D': 15, 'E': 749999}) == [('E', 749999), ('D', 15), ('C', -5), ('A', -10)]", "assert sort_counter({'200': 87.65436569878796, '19': -22.73580203466535, '50': 87.65436569878796, '13': -54.297828045785266, '82': 86.96654380163642, '29': -74.13390884180842}) == [('200', 87.65436569878796), ('50', 87.65436569878796), ('82', 86.96654380163642), ('19', -22.73580203466535), ('13', -54.297828045785266), ('29', -74.13390884180842)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 5, 'Bananaa': 6}) == [('Bananaa', 6), ('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Elderberry', 5)]", "assert sort_counter({'A': 10, 'C': 30, 'D': 40, 'E': 50, 'F': 60, 'G': 70, 'H': 80, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('H', 80), ('G', 70), ('F', 60), ('E', 50), ('D', 40), ('C', 30), ('A', 10)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Duarian': 5}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Duarian', 5)]", "assert sort_counter({'Banana': 15, 'Durian': 5, 'Elderberry': 4}) == [('Banana', 15), ('Durian', 5), ('Elderberry', 4)]", "assert sort_counter({'Durian': 5}) == [('Durian', 5)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': 71, 'D': 1000, 'E': 1000, 'CC': 1001, 'ECC': -6, '': 1001}) == [('CC', 1001), ('', 1001), ('A', 1000), ('B', 1000), ('D', 1000), ('E', 1000), ('C', 71), ('ECC', -6)]", "assert sort_counter({'A': 1000000, 'B': 19, 'C': 749999, 'D': 250000, 'F': 999999}) == [('A', 1000000), ('F', 999999), ('C', 749999), ('D', 250000), ('B', 19)]", "assert sort_counter({'A': 1000, 'C': -5, 'D': 1000, 'E': 1000, 'Duarian': 999, 'AA': 300}) == [('A', 1000), ('D', 1000), ('E', 1000), ('Duarian', 999), ('AA', 300), ('C', -5)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 100000, 'D': 1000000000, 'AA': -7}) == [('D', 1000000000), ('A', 1000000), ('B', 500000), ('C', 100000), ('AA', -7)]", "assert sort_counter({'Apple': 5, 'Cherry': 4, 'Durian': 5, 'Elderberry': 4, '': 30, 'DurBian': 6, 'ChEerry': -7}) == [('', 30), ('DurBian', 6), ('Apple', 5), ('Durian', 5), ('Cherry', 4), ('Elderberry', 4), ('ChEerry', -7)]", "assert sort_counter({'A': 1000000, 'C': 750000, 'D': 250000, 'E': 500000}) == [('A', 1000000), ('C', 750000), ('E', 500000), ('D', 250000)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 750000, 'D': 250000, 'F': 1000000, 'EB': 249999}) == [('A', 1000000), ('F', 1000000), ('C', 750000), ('B', 500000), ('D', 250000), ('EB', 249999)]", "assert sort_counter({'Apple': 5, 'Banana': 19, 'Durian': 5, 'Elderberry': 5, 'Duriian': 6}) == [('Banana', 19), ('Duriian', 6), ('Apple', 5), ('Durian', 5), ('Elderberry', 5)]", "assert sort_counter({'Apple': 5, 'Cherry': 5, 'Elderberry': 5, 'Appl': 19}) == [('Appl', 19), ('Apple', 5), ('Cherry', 5), ('Elderberry', 5)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': 86.96654380163642, '23.456168040559433': -22.73580203466535, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224, '-45.19320955711239': 40.25079980305773}) == [('18.594228907699772', 86.96654380163642), ('60.92484190584344', 80.77796251561224), ('-35.77677868980413', 52.11949901444851), ('-45.19320955711239', 40.25079980305773), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -22.73580203466535), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('64.16101544098183', -89.55867599806567), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -6, 'E': 0, 'BI': -300}) == [('B', 20), ('E', 0), ('C', -6), ('A', -10), ('BI', -300)]", "assert sort_counter({'B': 20, 'C': -6, 'E': 0}) == [('B', 20), ('E', 0), ('C', -6)]", "assert sort_counter({'A': 80, 'C': -5, 'D': 15, 'E': 749999}) == [('E', 749999), ('A', 80), ('D', 15), ('C', -5)]", "assert sort_counter({'B': 20, 'C': -5, 'D': 15, 'E': 0}) == [('B', 20), ('D', 15), ('E', 0), ('C', -5)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': 999, 'D': 1000, 'E': 1000}) == [('A', 1000), ('B', 1000), ('D', 1000), ('E', 1000), ('C', 999)]", "assert sort_counter({'B': 1000, 'C': -5, 'D': 1000, 'CC': 1001}) == [('CC', 1001), ('B', 1000), ('D', 1000), ('C', -5)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': -7, 'Elderberry': 5, 'Bananaa': 6}) == [('Bananaa', 6), ('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Elderberry', 5), ('Durian', -7)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': 86.96654380163642, '23.456168040559433': -22.73580203466535, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224, '18.187389932137382': 40.020936818852114}) == [('18.594228907699772', 86.96654380163642), ('60.92484190584344', 80.77796251561224), ('-35.77677868980413', 52.11949901444851), ('18.187389932137382', 40.020936818852114), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -22.73580203466535), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('64.16101544098183', -89.55867599806567), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'Cherry': 5, 'Durian': 5, 'Elderberry': 4, '': 6}) == [('', 6), ('Cherry', 5), ('Durian', 5), ('Elderberry', 4)]", "assert sort_counter({'Durian': 5, 'DurBian': 6}) == [('DurBian', 6), ('Durian', 5)]", "assert sort_counter({'A': 10, 'B': 20, 'C': 30, 'D': 40, 'E': -100, 'F': 60, 'G': 70, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('G', 70), ('F', 60), ('D', 40), ('C', 30), ('B', 20), ('A', 10), ('E', -100)]", "assert sort_counter({'B': -10, 'C': 0, 'D': -2, 'E': -7, 'F': -3}) == [('C', 0), ('D', -2), ('F', -3), ('E', -7), ('B', -10)]", "assert sort_counter({'A': 10, 'C': 30, 'D': 40, 'E': 50, 'G': 70, 'H': 80, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('H', 80), ('G', 70), ('E', 50), ('D', 40), ('C', 30), ('A', 10)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': 86.96654380163642, '23.456168040559433': -22.73580203466535, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224, '18.187389932137382': 40.020936818852114, '-90.92860167400039': 80.77796251561224}) == [('18.594228907699772', 86.96654380163642), ('60.92484190584344', 80.77796251561224), ('-90.92860167400039', 80.77796251561224), ('-35.77677868980413', 52.11949901444851), ('18.187389932137382', 40.020936818852114), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -22.73580203466535), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('64.16101544098183', -89.55867599806567), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'Apple': 5, 'Cherry': 4, 'Durian': 249999, 'Elderberry': 4, '': 30, 'DurBian': 6}) == [('Durian', 249999), ('', 30), ('DurBian', 6), ('Apple', 5), ('Cherry', 4), ('Elderberry', 4)]", "assert sort_counter({'A': 1000000, 'B': 499999, 'C': 750000, 'D': 250000, 'E': 500000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('C', 750000), ('E', 500000), ('B', 499999), ('D', 250000)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': -7, 'Elderberry': 5, 'Bananaa': 6, 'Ch': -8}) == [('Bananaa', 6), ('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Elderberry', 5), ('Durian', -7), ('Ch', -8)]", "assert sort_counter({'B': 200, 'C': 300, 'D': -100, 'E': -200, 'F': -300, '': 200}) == [('C', 300), ('B', 200), ('', 200), ('D', -100), ('E', -200), ('F', -300)]", "assert sort_counter({'Apple': 15, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 5, 'Bananaa': 6, 'Bannanaa': 5}) == [('Apple', 15), ('Bananaa', 6), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Elderberry', 5), ('Bannanaa', 5)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'ChEerry': 5}) == [('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('ChEerry', 5)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'C': 100000}) == [('A', 1000000), ('B', 500000), ('C', 100000)]", "assert sort_counter({'A': 10, 'B': 21, 'C': 30, 'D': 40, 'E': 10, 'F': 60, 'G': 70, 'I': 90, 'J': 100}) == [('J', 100), ('I', 90), ('G', 70), ('F', 60), ('D', 40), ('C', 30), ('B', 21), ('A', 10), ('E', 10)]", "assert sort_counter({'Apple': 5, 'Cherry': 4, 'Durian': 21, 'Elderberry': 4, '': 30, 'DurBian': 6, 'ChEerry': -7, 'B': 4}) == [('', 30), ('Durian', 21), ('DurBian', 6), ('Apple', 5), ('Cherry', 4), ('Elderberry', 4), ('B', 4), ('ChEerry', -7)]", "assert sort_counter({'Banana': 5, 'Durian': 5, 'Elderberry': 4, 'Elyderberry': 70}) == [('Elyderberry', 70), ('Banana', 5), ('Durian', 5), ('Elderberry', 4)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Elderberry': 5, 'Duriian': 6}) == [('Duriian', 6), ('Apple', 5), ('Banana', 5), ('Elderberry', 5)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': -86.29486535994447, '23.456168040559433': -22.73580203466535, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224, '-51.29311357277765': -90.12008614835415}) == [('60.92484190584344', 80.77796251561224), ('-35.77677868980413', 52.11949901444851), ('-1.5040512093813732', 31.088880669323828), ('23.456168040559433', -22.73580203466535), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('18.594228907699772', -86.29486535994447), ('64.16101544098183', -89.55867599806567), ('-51.29311357277765', -90.12008614835415), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'A': 1000000, 'B': 500000, 'D': 250000, 'E': 500000, 'F': 1000000}) == [('A', 1000000), ('F', 1000000), ('B', 500000), ('E', 500000), ('D', 250000)]", "assert sort_counter({'A': 10, 'C': 30, 'D': 40, 'E': 50, 'G': 70, 'H': 80, 'I': 90, 'J': 21}) == [('I', 90), ('H', 80), ('G', 70), ('E', 50), ('D', 40), ('C', 30), ('J', 21), ('A', 10)]", "assert sort_counter({'A': -10, 'B': 20, 'C': -5, 'D': 1001, 'E': 749999}) == [('E', 749999), ('D', 1001), ('B', 20), ('C', -5), ('A', -10)]", "assert sort_counter({'B': 200, 'D': -100, 'F': -300, 'FAppl': -201, 'AA': 201}) == [('AA', 201), ('B', 200), ('D', -100), ('FAppl', -201), ('F', -300)]", "assert sort_counter({'B': -10, 'C': 0, 'E': -7, 'F': 7}) == [('F', 7), ('C', 0), ('E', -7), ('B', -10)]", "assert sort_counter({'A': 80, 'C': -5, 'D': 15, 'E': 749999, 'J': 16, 'CC': 749998}) == [('E', 749999), ('CC', 749998), ('A', 80), ('J', 16), ('D', 15), ('C', -5)]", "assert sort_counter({'200': -13.699369452712531, '19': -22.73580203466535, '50': 87.65436569878796, '13': -54.297828045785266, '82': 86.96654380163642, '29': -74.13390884180842, '12': -109.25130401662261}) == [('50', 87.65436569878796), ('82', 86.96654380163642), ('200', -13.699369452712531), ('19', -22.73580203466535), ('13', -54.297828045785266), ('29', -74.13390884180842), ('12', -109.25130401662261)]", "assert sort_counter({'A': -10, 'C': -5, 'E': 749999, 'J': 6, 'Cherry': 750000}) == [('Cherry', 750000), ('E', 749999), ('J', 6), ('C', -5), ('A', -10)]", "assert sort_counter({'-1.5040512093813732': 31.088880669323828, '-68.06007644803495': -45.19320955711239, '-35.77677868980413': 52.11949901444851, '18.594228907699772': -86.29486535994447, '-64.82206635736263': -90.92860167400039, '34.37817144478964': -54.297828045785266, '64.16101544098183': -89.55867599806567, '60.92484190584344': 80.77796251561224, '-51.29311357277765': -90.12008614835415, '-68.51509638551735': 60.92484190584344}) == [('60.92484190584344', 80.77796251561224), ('-68.51509638551735', 60.92484190584344), ('-35.77677868980413', 52.11949901444851), ('-1.5040512093813732', 31.088880669323828), ('-68.06007644803495', -45.19320955711239), ('34.37817144478964', -54.297828045785266), ('18.594228907699772', -86.29486535994447), ('64.16101544098183', -89.55867599806567), ('-51.29311357277765', -90.12008614835415), ('-64.82206635736263', -90.92860167400039)]", "assert sort_counter({'A': -10, 'B': 19, 'C': -6, 'D': 15, 'E': 0, 'CECC': 10}) == [('B', 19), ('D', 15), ('CECC', 10), ('E', 0), ('C', -6), ('A', -10)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Elderberry': 12, 'Bananaa': 6}) == [('Elderberry', 12), ('Bananaa', 6), ('Apple', 5), ('Banana', 5), ('Cherry', 5), ('Durian', 5)]", "assert sort_counter({'Banana': 4, 'Elderberry': 4, 'EDuarianlderberry': 29, 'Duarian': 29}) == [('EDuarianlderberry', 29), ('Duarian', 29), ('Banana', 4), ('Elderberry', 4)]", "assert sort_counter({'Apple': 15, 'Banana': 5, 'Cherry': 5, 'Durian': 5, 'Bananaa': 200, 'Bannanaa': 5}) == [('Bananaa', 200), ('Apple', 15), ('Banana', 5), ('Cherry', 5), ('Durian', 5), ('Bannanaa', 5)]", "assert sort_counter({'A': -5, 'B': -10, 'C': 100001, 'D': -2, 'E': -7, 'F': -3}) == [('C', 100001), ('D', -2), ('F', -3), ('A', -5), ('E', -7), ('B', -10)]", "assert sort_counter({'Apple': 5, 'Banana': 5, 'Cherry': 5, 'Durian': 71, 'Bananaa': 6}) == [('Durian', 71), ('Bananaa', 6), ('Apple', 5), ('Banana', 5), ('Cherry', 5)]", "assert sort_counter({'A': 1000, 'B': 1000, 'C': 71, 'D': 1000, 'E': 21, 'CC': 1001, 'ECC': -6, 'DD': 29}) == [('CC', 1001), ('A', 1000), ('B', 1000), ('D', 1000), ('C', 71), ('DD', 29), ('E', 21), ('ECC', -6)]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of the largest and smallest value in a given array.\nassert big_sum([1,2,3]) == 4\nYour code should pass the test:\nassert big_sum([1,2,3]) == 4", "test_list": [ "assert big_sum([1,2,3]) == 4", "assert big_sum([-1,2,3,4]) == 3", "assert big_sum([2,3,6]) == 8", "assert big_sum([-10, -5, -3, -1, -7]) == -11", "assert big_sum([-10, -5, -4, -3, -1, -7, -4]) == -11", "assert big_sum([-10, -5, -1, -7]) == -11", "assert big_sum([-10, -5, -4, -3, -1, -7, -4, -5]) == -11", "assert big_sum([-10, -5, -4, -3, -7, -4]) == -13", "assert big_sum([-10, -3, -1, -7, -5]) == -11", "assert big_sum([-10, -5, -4, -3, -6, -4]) == -13", "assert big_sum([-10, -5, -4, -5, -3, -6, -4]) == -13", "assert big_sum([-10, -5, -3, -1, -7, -3]) == -11", "assert big_sum([-10, -5, -4, -3, -6, -1, -7, -4, -7]) == -11", "assert big_sum([-10, -5, -4, -5, -9, -3, -6, -4, -5]) == -13", "assert big_sum([-10, -5, -4, -5, -9, -3, -6, -4, -5, -4]) == -13", "assert big_sum([-10, -5, -4, -3, -6, -4, -6]) == -13", "assert big_sum([-10, -3, -7, -5]) == -13", "assert big_sum([-2, -10, -5, -4, -3, -1, -7, -4]) == -11", "assert big_sum([-10, -5, -1, -4]) == -11", "assert big_sum([-2, -10, -3, -1, -7, -5]) == -11", "assert big_sum([-4, -5, -3, -1, -7]) == -8", "assert big_sum([-10, -3, -5, -7, -5]) == -13", "assert big_sum([-10, -5, -4, -3, -1, -7, -4, -5, -3]) == -11", "assert big_sum([-10, -5, -4, -1, -7, -4, -5, -3]) == -11", "assert big_sum([-4, -5, -3, -1, -7, -1]) == -8", "assert big_sum([-10, -5, -4, -3, -4, -6, -4, -10]) == -13", "assert big_sum([-4, -5, -3, -1, -7, -7]) == -8", "assert big_sum([-4, -5, -1, -7, -7]) == -8", "assert big_sum([-5, -5, -2, -7]) == -9", "assert big_sum([-10, -5, -4, -3, -6, -7, -4, -7]) == -13", "assert big_sum([-10, -5, -3, -2, -7]) == -12", "assert big_sum([-2, -5, -3, -2, -7]) == -9", "assert big_sum([-2, -10, -3, -1, -7, -2, -5]) == -11", "assert big_sum([-4, -5, -3, -1, -10, -1]) == -11", "assert big_sum([-4, -5, -3, -1, -10]) == -11", "assert big_sum([-10, -5, -4, -4, -1, -7, -4, -5, -3]) == -11", "assert big_sum([-5, -4, -7, -1, -7, -4, -5, -3]) == -8", "assert big_sum([-10, -5, -4, -5, -9, -3, -6, -4, -5, -10]) == -13", "assert big_sum([-10, -5, -4, -2, -4, -6, -4, -10]) == -12", "assert big_sum([-10, -5, -4, -4, -1, -7, -4, -5, -3, -3]) == -11", "assert big_sum([-10, -5, -4, -5, -7, -3, -6, -4]) == -13", "assert big_sum([-8, -4, -5, -3, -1, -7, -7]) == -9", "assert big_sum([-10, -5, -1, -4, -10]) == -11", "assert big_sum([-4, -5, -1, -10, -1]) == -11", "assert big_sum([-5, -5, -3, -1, -7]) == -8", "assert big_sum([-10, -5, -5, -5]) == -15", "assert big_sum([-9, -10, -3, -7, -5]) == -13", "assert big_sum([-10, -5, -4, -3, -6, -4, -10]) == -13", "assert big_sum([-10, -5, -4, -5, -3, -3, -4]) == -13", "assert big_sum([-4, -5, -1, -10, -1, -1]) == -11", "assert big_sum([-10, -7, -5]) == -15", "assert big_sum([-10, -5, -5, -7, -5, -3, -6, -4]) == -13", "assert big_sum([-4, -5, -3, -1, -4]) == -6", "assert big_sum([-4, -5, -3, -1, -5, -10]) == -11", "assert big_sum([-10, -5, -4, -1, -9, -7, -4, -5, -3]) == -11", "assert big_sum([-10, -4, -5, -7, -5]) == -14", "assert big_sum([-2, -10, -3, -1, -7, -5, -5]) == -11", "assert big_sum([-4, -3, -10]) == -13", "assert big_sum([-2, -5, -3, -2, -7, -5]) == -9", "assert big_sum([-6, -2]) == -8", "assert big_sum([-10, -5, -3, -4, -3, -4, -6, -4, -10]) == -13", "assert big_sum([-10, -5, -4, -1, -9, -7, -3, -5, -3, -5]) == -11", "assert big_sum([-5, -5, -7]) == -12", "assert big_sum([-10, -5, -4, -1, -7, -4, -5, -3, -5]) == -11", "assert big_sum([-10, -5, -4, -2, -4, -6, -10, -10]) == -12", "assert big_sum([-6, -5, -4, -7, -1, -7, -4, -5, -3]) == -8", "assert big_sum([-5, -5, -3, -6, -7]) == -10", "assert big_sum([-1, -5, -1, -4, -10]) == -11", "assert big_sum([-10, -5, -4, -2, -4, -6, -10]) == -12", "assert big_sum([-10, -5, -1, -4, -5]) == -11", "assert big_sum([-9, -10, -3, -9, -5]) == -13", "assert big_sum([-5, -1, -4]) == -6", "assert big_sum([-9, -2, -10, -3, -7, -2]) == -12", "assert big_sum([-10, -5, -5, -3, -5]) == -13", "assert big_sum([-10, -5, -4, -3, -1, -7, -4, -10]) == -11", "assert big_sum([-10, -5, -4, -4, -1, -7, -4, -5, -1, -3]) == -11", "assert big_sum([-10, -5, -4, -5, -9, -3, -6, -4, -5, -6, -4]) == -13", "assert big_sum([-10, -4, -5, -4, -5, -3, -4, -5]) == -13", "assert big_sum([-9, -10, -3, -9, -5, -10, -9]) == -13", "assert big_sum([-10, -5, -4, -1, -9, -7, -3, -5, -8, -3, -5]) == -11", "assert big_sum([-10, -8, -4, -3, -1, -7, -4]) == -11", "assert big_sum([-4, -5, -1, -7]) == -8", "assert big_sum([-9, -10, -5, -4, -3, -1, -7, -4, -5, -3, -3]) == -11", "assert big_sum([-9, -10, -5, -5, -7, -5, -8, -3, -6, -4]) == -13", "assert big_sum([-2, -4, -9, -3, -1, -7, -2, -5]) == -10", "assert big_sum([-10, -5, -4, -4, -7, -3, -6, -4]) == -13", "assert big_sum([-5, -5, -3, -9, -1, -7]) == -10", "assert big_sum([-2, -10, -4, -4, -3, -1, -7, -4]) == -11", "assert big_sum([-6, -5, -9, -7, -1, -7, -4, -5, -3]) == -10", "assert big_sum([-10, -4, -7, -5]) == -14", "assert big_sum([-10, -4, -4, -2, -10]) == -12", "assert big_sum([-6, -5, -9, -7, -1, -7, -4, -5, -3, -6]) == -10", "assert big_sum([-10, -4, -5, -7, -5, -7]) == -14", "assert big_sum([-10, -5, -4, -5, -7, -3, -6, -4, -3]) == -13", "assert big_sum([-10, -5, -4, -5, -7, -3, -6, -1, -4]) == -11", "assert big_sum([-10, -5, -3, -1, -8, -7, -8]) == -11", "assert big_sum([-10, -4, -7, -5, -7]) == -14", "assert big_sum([-10, -5, -4, -5, -9, -6, -4, -5, -6, -4, -6, -6]) == -14", "assert big_sum([-10, -5, -4, -4, -1, -7, -4, -5, -5, -3]) == -11", "assert big_sum([-10, -5, -9, -1, -4, -5]) == -11", "assert big_sum([-10, -5, -4, -4, -1, -7, -4, -3, -3, -3]) == -11", "assert big_sum([-9, -10, -5, -4, -11, -3, -1, -7, -4, -5, -3, -3, -5]) == -12", "assert big_sum([-5, -10, -5, -7, -5, -6, -4]) == -14", "assert big_sum([-9, -10, -3, -9, -5, -5]) == -13" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to convert the given string to lower case.\nassert is_lower(\"InValid\") == \"invalid\"\nYour code should pass the test:\nassert is_lower(\"InValid\") == \"invalid\"", "test_list": [ "assert is_lower(\"InValid\") == \"invalid\"", "assert is_lower(\"TruE\") == \"true\"", "assert is_lower(\"SenTenCE\") == \"sentence\"", "assert is_lower('') == ''", "assert is_lower('True') == 'true'", "assert is_lower('FALSE') == 'false'", "assert is_lower('123') == '123'", "assert is_lower('StRiNg') == 'string'", "assert is_lower('LOWER CASE') == 'lower case'", "assert is_lower('nUmBeRs 123') == 'numbers 123'", "assert is_lower(' extra spaces ') == ' extra spaces '", "assert is_lower('camelCase') == 'camelcase'", "assert is_lower('UPPERCASE') == 'uppercase'", "assert is_lower('LOWER CASOE') == 'lower casoe'", "assert is_lower('LOWER SE') == 'lower se'", "assert is_lower('camelCacamelCasese') == 'camelcacamelcasese'", "assert is_lower('1123') == '1123'", "assert is_lower('LOWTrueER CASOE') == 'lowtrueer casoe'", "assert is_lower('11123') == '11123'", "assert is_lower('spaces') == 'spaces'", "assert is_lower('LOWER CASCE') == 'lower casce'", "assert is_lower('LOWTrucamespaceslCacamelCaseseeER CASOE') == 'lowtrucamespaceslcacamelcaseseeer casoe'", "assert is_lower('SE') == 'se'", "assert is_lower('extra') == 'extra'", "assert is_lower('X') == 'x'", "assert is_lower('LOWTrucamespaceslCacam11123 CASOE') == 'lowtrucamespaceslcacam11123 casoe'", "assert is_lower('exxtra') == 'exxtra'", "assert is_lower('LOWTrucamespaceslCacam11123') == 'lowtrucamespaceslcacam11123'", "assert is_lower('Trrue') == 'trrue'", "assert is_lower('LOWRER CASOE') == 'lowrer casoe'", "assert is_lower('LOWEWR CEASE') == 'lowewr cease'", "assert is_lower('LOWER CASROE') == 'lower casroe'", "assert is_lower('TUPPERCASErue') == 'tuppercaserue'", "assert is_lower('Trrrue') == 'trrrue'", "assert is_lower('LOWER CAROE') == 'lower caroe'", "assert is_lower('LOWER') == 'lower'", "assert is_lower('LOWER CAS ROLOWRERE') == 'lower cas rolowrere'", "assert is_lower('LOWER ROLOWRERECAS ROLOWRERE') == 'lower rolowrerecas rolowrere'", "assert is_lower('LOWER LCASCE') == 'lower lcasce'", "assert is_lower('CASCE') == 'casce'", "assert is_lower('camelCaese') == 'camelcaese'", "assert is_lower('LOWRER') == 'lowrer'", "assert is_lower('CAROE') == 'caroe'", "assert is_lower('xLOWER CASOexxtraE') == 'xlower casoexxtrae'", "assert is_lower('camelCasme') == 'camelcasme'", "assert is_lower('eTrrCASOexxtraEue') == 'etrrcasoexxtraeue'", "assert is_lower('xLOWER') == 'xlower'", "assert is_lower('11eTrrCASOexxtraEue123') == '11etrrcasoexxtraeue123'", "assert is_lower('eTrrCASOexxtraaEue') == 'etrrcasoexxtraaeue'", "assert is_lower('C') == 'c'", "assert is_lower('camelCsme') == 'camelcsme'", "assert is_lower('spnUmBeRsaces') == 'spnumbersaces'", "assert is_lower('LOWEWR') == 'lowewr'", "assert is_lower('LOWER ALCASCE') == 'lower alcasce'", "assert is_lower('camelCslme') == 'camelcslme'", "assert is_lower('LCASCE') == 'lcasce'", "assert is_lower('LR CASOE') == 'lr casoe'", "assert is_lower('oa') == 'oa'", "assert is_lower('LOWTrueER') == 'lowtrueer'", "assert is_lower('SLOWER SE') == 'slower se'", "assert is_lower('eTrrCASOexxtraaEuCASOexxtraEe') == 'etrrcasoexxtraaeucasoexxtraee'", "assert is_lower('LLOWTrueEROWER CASLOWEWR CEASE ROROLOWREREOLOWRERE') == 'llowtrueerower caslowewr cease rorolowrereolowrere'", "assert is_lower('TruenUmBeRs') == 'truenumbers'", "assert is_lower('g') == 'g'", "assert is_lower('CASE') == 'case'", "assert is_lower('oaa') == 'oaa'", "assert is_lower('LOWER ROLOWRERECAS ROLLOWER SEOWRERE') == 'lower rolowrerecas rollower seowrere'", "assert is_lower('11eTrrCASOexxte123') == '11etrrcasoexxte123'", "assert is_lower('SSE') == 'sse'", "assert is_lower('FvqXvHKtQ') == 'fvqxvhktq'", "assert is_lower('xLOWERO CASOexxtra') == 'xlowero casoexxtra'", "assert is_lower('ROROLOWREREOLOWRERE') == 'rorolowrereolowrere'", "assert is_lower('RACAROE') == 'racaroe'", "assert is_lower('LOWR SE') == 'lowr se'", "assert is_lower('cLLOWTrueEROWER CASLOWEWR CEASE ROROLOWREREOLOWREREamelCacamelCasese') == 'cllowtrueerower caslowewr cease rorolowrereolowrereamelcacamelcasese'", "assert is_lower('eLCASCExtra') == 'elcascextra'", "assert is_lower('sspnUmBeRsaces') == 'sspnumbersaces'", "assert is_lower('LOWER ROLOWRERECAS ROLLOWER SEOWREREoa') == 'lower rolowrerecas rollower seowrereoa'", "assert is_lower('Trueg') == 'trueg'", "assert is_lower('LOWER ROLOWRERxLOWERO CASOexxtraECAS ROLLOWER SEOWREREoa') == 'lower rolowrerxlowero casoexxtraecas rollower seowrereoa'", "assert is_lower('cLLOWTrueEROWER') == 'cllowtrueerower'", "assert is_lower('LOWTrueR') == 'lowtruer'", "assert is_lower('11eTrrCASOexxtraExLOWEaROue123') == '11etrrcasoexxtraexlowearoue123'", "assert is_lower('CCAROE') == 'ccaroe'", "assert is_lower('ceamelCasme') == 'ceamelcasme'", "assert is_lower('SL OWER SE') == 'sl ower se'", "assert is_lower('eLCASCExtraSSE') == 'elcascextrasse'", "assert is_lower('TUPPERCASErueSE') == 'tuppercaseruese'", "assert is_lower('caeTrrCASexxtraEuemelCase') == 'caetrrcasexxtraeuemelcase'", "assert is_lower('LOWOTrueER') == 'lowotrueer'", "assert is_lower('111323') == '111323'", "assert is_lower('WLOWEWOR CEASE') == 'wlowewor cease'", "assert is_lower('CASOexxtraE') == 'casoexxtrae'", "assert is_lower('SEOWRERE') == 'seowrere'", "assert is_lower('123LOWTrueER CASOE') == '123lowtrueer casoe'", "assert is_lower('cLLOWTrueEROWER CASLOWEWR CEASE ROROLOWREREOLEOWREREamelCacamelCaLOWRER CASOEsese') == 'cllowtrueerower caslowewr cease rorolowrereoleowrereamelcacamelcalowrer casoesese'", "assert is_lower('camTruegelCaese') == 'camtruegelcaese'", "assert is_lower('oeTrrCASOexxtraEueaa') == 'oetrrcasoexxtraeueaa'", "assert is_lower('SL OWER oeTrrCASOexxtraEueaaSE') == 'sl ower oetrrcasoexxtraeueaase'", "assert is_lower('Tre') == 'tre'", "assert is_lower('ROLLOWER') == 'rollower'", "assert is_lower('cLLOWTrueEROWERSLOWER SE') == 'cllowtrueerowerslower se'", "assert is_lower('CASOexxtra LCASRCE') == 'casoexxtra lcasrce'", "assert is_lower('LOWER cLLOWTrueEROWERSLOWERASCE') == 'lower cllowtrueerowerslowerasce'", "assert is_lower('LOWER CCE') == 'lower cce'", "assert is_lower('LsspnUmBeRsacesOWER LCASCE') == 'lsspnumbersacesower lcasce'", "assert is_lower('cLLOWTrueEROWERSLOWERASCE') == 'cllowtrueerowerslowerasce'", "assert is_lower('CASOexxtra LC ASRCE') == 'casoexxtra lc asrce'", "assert is_lower('LROROLOWREREOLEOWREREamelCacamelCaLOWRERER') == 'lrorolowrereoleowrereamelcacamelcalowrerer'", "assert is_lower('LCASRCE') == 'lcasrce'", "assert is_lower('spaceROLOWREREs') == 'spacerolowreres'", "assert is_lower('LR nUmBeRsxLOWERCASOE') == 'lr numbersxlowercasoe'", "assert is_lower('12LOWEROROLOWREREOLEOWREREamelCacamelCaLOWRERR CASE3LOWTrueER CASOE') == '12lowerorolowrereoleowrereamelcacamelcalowrerr case3lowtrueer casoe'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove lowercase substrings from a given string.\nassert remove_lowercase(\"PYTHon\")==('PYTH')\nYour code should pass the test:\nassert remove_lowercase(\"PYTHon\")==('PYTH')", "test_list": [ "assert remove_lowercase(\"PYTHon\")==('PYTH')", "assert remove_lowercase(\"FInD\")==('FID')", "assert remove_lowercase(\"STRinG\")==('STRG')" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the first digit of a given number.\nassert first_Digit(123) == 1\nYour code should pass the test:\nassert first_Digit(123) == 1", "test_list": [ "assert first_Digit(123) == 1", "assert first_Digit(456) == 4", "assert first_Digit(12) == 1", "assert first_Digit(0) == 0", "assert first_Digit(9999999999999999) == 9", "assert first_Digit(12345678901234567890) == 1", "assert first_Digit(1) == 1", "assert first_Digit(9999999999999998) == 9", "assert first_Digit(12345678901234567889) == 1", "assert first_Digit(12345678901234567888) == 1", "assert first_Digit(10000000000000000) == 1", "assert first_Digit(12345678901234567887) == 1", "assert first_Digit(10000000000000001) == 1", "assert first_Digit(12345678901234567885) == 1", "assert first_Digit(12345678901234567886) == 1", "assert first_Digit(9999999999999997) == 9", "assert first_Digit(2) == 2", "assert first_Digit(12345678901234567891) == 1", "assert first_Digit(75) == 7", "assert first_Digit(76) == 7", "assert first_Digit(74) == 7", "assert first_Digit(12345678901234567892) == 1", "assert first_Digit(3) == 3", "assert first_Digit(77) == 7", "assert first_Digit(73) == 7", "assert first_Digit(12345678901234567893) == 1", "assert first_Digit(26) == 2", "assert first_Digit(95) == 9", "assert first_Digit(96) == 9", "assert first_Digit(78) == 7", "assert first_Digit(10000000000000003) == 1", "assert first_Digit(94) == 9", "assert first_Digit(12345678901234567894) == 1", "assert first_Digit(12345678901234567884) == 1", "assert first_Digit(79) == 7", "assert first_Digit(25) == 2", "assert first_Digit(10000000000000002) == 1", "assert first_Digit(12345678901234567883) == 1", "assert first_Digit(80) == 8", "assert first_Digit(12345678901234567895) == 1", "assert first_Digit(12345678901234567896) == 1", "assert first_Digit(71) == 7", "assert first_Digit(9999999999999996) == 9", "assert first_Digit(72) == 7", "assert first_Digit(12345678901234567882) == 1", "assert first_Digit(88) == 8", "assert first_Digit(27) == 2", "assert first_Digit(10000000000000004) == 1", "assert first_Digit(4) == 4", "assert first_Digit(89) == 8", "assert first_Digit(10000000000000005) == 1", "assert first_Digit(5) == 5", "assert first_Digit(97) == 9", "assert first_Digit(87) == 8", "assert first_Digit(98) == 9", "assert first_Digit(24) == 2", "assert first_Digit(90) == 9", "assert first_Digit(10000000000000006) == 1", "assert first_Digit(12345678901234567897) == 1", "assert first_Digit(62) == 6", "assert first_Digit(70) == 7", "assert first_Digit(28) == 2", "assert first_Digit(23) == 2", "assert first_Digit(69) == 6", "assert first_Digit(93) == 9", "assert first_Digit(86) == 8", "assert first_Digit(10000000000000007) == 1", "assert first_Digit(68) == 6", "assert first_Digit(61) == 6", "assert first_Digit(92) == 9", "assert first_Digit(22) == 2", "assert first_Digit(12345678901234567881) == 1", "assert first_Digit(9999999999999995) == 9", "assert first_Digit(55) == 5", "assert first_Digit(10000000000000008) == 1", "assert first_Digit(9999999999999994) == 9", "assert first_Digit(81) == 8", "assert first_Digit(21) == 2", "assert first_Digit(99) == 9", "assert first_Digit(85) == 8", "assert first_Digit(6) == 6", "assert first_Digit(54) == 5", "assert first_Digit(12345678901234567898) == 1", "assert first_Digit(91) == 9", "assert first_Digit(20) == 2", "assert first_Digit(19) == 1", "assert first_Digit(53) == 5", "assert first_Digit(8) == 8", "assert first_Digit(67) == 6", "assert first_Digit(82) == 8", "assert first_Digit(9999999999999993) == 9", "assert first_Digit(56) == 5", "assert first_Digit(49) == 4", "assert first_Digit(63) == 6", "assert first_Digit(64) == 6", "assert first_Digit(30) == 3", "assert first_Digit(12345678901234567899) == 1", "assert first_Digit(65) == 6", "assert first_Digit(66) == 6", "assert first_Digit(42) == 4", "assert first_Digit(12345678901234567880) == 1", "assert first_Digit(29) == 2", "assert first_Digit(9) == 9", "assert first_Digit(48) == 4", "assert first_Digit(60) == 6", "assert first_Digit(31) == 3" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function which takes a list of integers and only returns the odd ones.\nassert Split([1,2,3,4,5,6]) == [1,3,5]\nYour code should pass the test:\nassert Split([1,2,3,4,5,6]) == [1,3,5]", "test_list": [ "assert Split([1,2,3,4,5,6]) == [1,3,5]", "assert Split([10,11,12,13]) == [11,13]", "assert Split([7,8,9,1]) == [7,9,1]", "assert Split([-3, 0, 5, -9, 10, -13]) == [-3, 5, -9, -13]", "assert Split([1, -2, 3, -4, 5, -6, 7, -8, 9, -10]) == [1, 3, 5, 7, 9]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, -1]) == [43, 65, 23, -1]", "assert Split([-1000, 500, -100, 250, 100, -50, 0, 150, 200, -300, 350, 400, -450, 500, 600, -700, 800, 900, -1000]) == []", "assert Split([-3, 0, 5, -9, 10, -13, 5]) == [-3, 5, -9, -13, 5]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, 23, -12, -1]) == [43, 23, -1]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, -1, 65]) == [43, 65, 23, -1, 65]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, 65, -12, 0]) == [43, 65, 23, 65]", "assert Split([12, 43, -56, 78, -13, 90, -34, 64, 0, 23, -12, -1]) == [43, -13, 23, -1]", "assert Split([-3, 0, 5, -9, 10, 1, -13, 5]) == [-3, 5, -9, 1, -13, 5]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, 65, 0]) == [43, 65, 23, 65]", "assert Split([12, 43, -56, 78, -13, 90, -34, 64, 0, -12, -1]) == [43, -13, -1]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, 23, -12, -1, 90]) == [43, 23, -1]", "assert Split([-3, 0, 5, -9, 10, -13, 5, -13]) == [-3, 5, -9, -13, 5, -13]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -1]) == [43, 65, 23, -1]", "assert Split([-1000, 500, -100, 10, 100, -50, 0, 150, 200, -300, 350, 400, -450, 500, 600, -700, 800, 900, -1000]) == []", "assert Split([12, 43, -56, 78, -13, 90, -34, 64, 0, -12, -1, -13]) == [43, -13, -1, -13]", "assert Split([12, 43, -56, 78, 90, 65, 0, 23, -1, 12]) == [43, 65, 23, -1]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 0, 23, -12, 65, -12, 0]) == [43, 65, 23, 65]", "assert Split([-3, 0, 5, -9, 10, -13, 1, -13]) == [-3, 5, -9, -13, 1, -13]", "assert Split([-3, 0, 5, -9, 10, -13, 1, -13, 10]) == [-3, 5, -9, -13, 1, -13]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, 23, -12]) == [43, 23]", "assert Split([12, 350, 43, -56, 78, 90, -34, 65, 0, 23, -12, 65, -12, 0, 90]) == [43, 65, 23, 65]", "assert Split([-3, 0, 5, -9, 10]) == [-3, 5, -9]", "assert Split([12, 350, 43, -56, 78, 90, -34, 65, 0, 23, -12, 65, 0, 90]) == [43, 65, 23, 65]", "assert Split([12, 43, -56, 78, 90, 65, 0, 23, -1, 12, 43]) == [43, 65, 23, -1, 43]", "assert Split([0, 5, -9, 10]) == [5, -9]", "assert Split([12, 43, 5, 78, 90, -34, 65, 0, 0, 23, -12, 65, -12, 0]) == [43, 5, 65, 23, 65]", "assert Split([12, 43, 78, 90, -34, 65, 0, 23, -12, 65, 0]) == [43, 65, 23, 65]", "assert Split([False, False, False]) == []", "assert Split([12, -56, 78, 90, -34, 65, 0, 23, -12, 65, 0]) == [65, 23, 65]", "assert Split([-3, 0, 5, 10, -13, 1, -13]) == [-3, 5, -13, 1, -13]", "assert Split([9, 43, -56, 78, 90, -34, 65, 0, 23, -12, -1, 65, 78]) == [9, 43, 65, 23, -1, 65]", "assert Split([-3, 10, 0, 5, 10, -13]) == [-3, 5, -13]", "assert Split([-3, 0, 5, -9, 10, -13, 1, -13, 0]) == [-3, 5, -9, -13, 1, -13]", "assert Split([-3, 0, 5, -9, 10, 12, -13, 1, -13, 0]) == [-3, 5, -9, -13, 1, -13]", "assert Split([12, 43, -56, 78, -13, -450, 90, -34, 64, 0, -12, -1, -13]) == [43, -13, -1, -13]", "assert Split([12, 43, -56, 78, -13, 90, 64, 0, 23, -12, -1, -1]) == [43, -13, 23, -1, -1]", "assert Split([-50, 43, -56, 78, -13, 90, -34, 64, 0, 23, -12, -1]) == [43, -13, 23, -1]", "assert Split([500, 0, 5, -9, 10, -13]) == [5, -9, -13]", "assert Split([1, -2, 6, 3, 100, 5, -6, 7, -8, 9]) == [1, 3, 5, 7, 9]", "assert Split([12, 250, -56, 78, 90, -34, 64, 0, 23, 90, -12, -1, 90, -12]) == [23, -1]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, -1, -34]) == [43, 65, 23, -1]", "assert Split([-3, -50, -9, 9, -13, 0]) == [-3, -9, 9, -13]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, 77, 23, -12, -1, 90]) == [43, 77, 23, -1]", "assert Split([12, 43, -56, 78, 90, 65, -56, 0, 23, -1, 12]) == [43, 65, 23, -1]", "assert Split([12, -56, 78, 90, 10, -34, 65, 0, 23, -12, 65, 0]) == [65, 23, 65]", "assert Split([12, 43, -56, 78, -13, -450, 90, -34, 64, 0, 9, -12, -1, -13]) == [43, -13, 9, -1, -13]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, 65, -11, -12, 0]) == [43, 65, 23, 65, -11]", "assert Split([-3, 5, -9, 10, 1, -13, 5]) == [-3, 5, -9, 1, -13, 5]", "assert Split([77, -3, 5, -9, 10, 1, -13, 5]) == [77, -3, 5, -9, 1, -13, 5]", "assert Split([13, 43, -56, 78, 90, 65, -56, 0, 23, -1, 12]) == [13, 43, 65, 23, -1]", "assert Split([12, -56, 78, 90, 10, -6, 65, 0, 23, -12, 65, 0]) == [65, 23, 65]", "assert Split([12, 43, -56, 78, -13, 90, -34, 64, 0, 23, -12, -1, 23]) == [43, -13, 23, -1, 23]", "assert Split([-3, 5, -9, 10, -13]) == [-3, 5, -9, -13]", "assert Split([12, 43, -56, 78, -13, 90, -1000, 77, 0, 23, -12, -1, 23]) == [43, -13, 77, 23, -1, 23]", "assert Split([-3, 0, -13, -9, 10, -13, 5, -13]) == [-3, -13, -9, -13, 5, -13]", "assert Split([-3, 0, 5, 10, 10, 1, -13, 5]) == [-3, 5, 1, -13, 5]", "assert Split([-3, 0, 5, 10, 10, 1, -13]) == [-3, 5, 1, -13]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, 23, -12, -1, 90, 64]) == [43, 23, -1]", "assert Split([-3, 0, 5, -9, 10, 1, -13]) == [-3, 5, -9, 1, -13]", "assert Split([12, -56, 78, 90, -34, 0, 23, -12, 65, 0, 0]) == [23, 65]", "assert Split([12, 43, -56, 78, 90, -34, 65, 0, 23, -12, 900, -11, -12, 0]) == [43, 65, 23, -11]", "assert Split([12, 43, 78, 90, -34, 65, 0, 78, 23, -12, 65, 0, 0]) == [43, 65, 23, 65]", "assert Split([12, -56, 78, 90, 10, -6, 65, 0, 23, -12, 65, 0, 12]) == [65, 23, 65]", "assert Split([12, 43, -56, 78, 43, -34, 65, 0, 23, -1, 43]) == [43, 43, 65, 23, -1, 43]", "assert Split([-3, 0, 5, -1, 10, -13, 1, -13]) == [-3, 5, -1, -13, 1, -13]", "assert Split([12, 43, -56, 400, 90, -34, 64, 0, 23, -12, -1, 90]) == [43, 23, -1]", "assert Split([43, -56, 78, 90, 77, -34, -12, 0, -12, -1, 65, 78]) == [43, 77, -1, 65]", "assert Split([0, 5, 10]) == [5]", "assert Split([-3, 0, -9, 10, -13, 1, -13]) == [-3, -9, -13, 1, -13]", "assert Split([43, 5, 78, 90, -34, 65, 0, 0, 23, -12, 65, -12, -1]) == [43, 5, 65, 23, 65, -1]", "assert Split([-1000, 500, -100, 10, 100, -50, 0, 150, 200, -300, 350, 400, -450, 500, 600, -700, 800, 900, -1000, 10]) == []", "assert Split([-1000, 500, -100, 250, 100, -50, 0, 150, 200, -300, 350, 400, -450, 500, 1, -700, 800, 900, -1000]) == [1]", "assert Split([12, 43, -56, 78, -13, 90, -34, 64, 0, 23, -12, -1, 23, 0]) == [43, -13, 23, -1, 23]", "assert Split([-1000, 599, 500, -100, 10, 100, -50, 0, 150, 200, -300, 350, 400, -450, 500, 600, -700, 800, 900, -1000]) == [599]", "assert Split([12, 350, 43, -56, 78, 90, -34, 65, 0, 23, -12, 0, -9, 90]) == [43, 65, 23, -9]", "assert Split([-1000, 500, -100, 250, 100, -50, 0, 150, 200, -300, 400, -450, 500, 600, -700, 800, 900, -1000]) == []", "assert Split([12, -56, 78, 90, -34, 65, 0, 23, -12, 65, 65, 0]) == [65, 23, 65, 65]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, -9, 77, 23, -12, -1, 90]) == [43, -9, 77, 23, -1]", "assert Split([-12, 43, -56, 78, -13, 90, -34, 64, 0, 23, -12, -1, 23, 0]) == [43, -13, 23, -1, 23]", "assert Split([12, 350, 43, -56, 78, -34, 90, -34, 65, 0, 23, -12, 65, 0, 90, 65]) == [43, 65, 23, 65, 65]", "assert Split([5, 78, 90, -34, 65, 0, 0, 23, -12, 65, -12, -1]) == [5, 65, 23, 65, -1]", "assert Split([12, 350, 43, -56, 78, 90, -34, 0, 23, -12, 0, -9, 90, 23]) == [43, 23, -9, 23]", "assert Split([12, -56, 78, 90, 10, -34, 65, 0, 23, -12, 65, 5]) == [65, 23, 65, 5]", "assert Split([12, -56, 78, 90, 65, 0, 23, -12, 65, 0, 90]) == [65, 23, 65]", "assert Split([-1000, 599, 500, -100, 10, 100, -50, 0, 150, 200, -300, 350, 400, -450, 500, 6, 600, -700, 800, 900, -1000]) == [599]", "assert Split([-12, 43, -56, 78, -13, 90, -34, 64, 0, -12, -1, 23, 0, 78]) == [43, -13, -1, 23]", "assert Split([12, 43, -56, 78, 90, -34, 64, 0, 23, -12, 0]) == [43, 23]", "assert Split([12, -56, 78, 90, 90, -34, 65, 0, 23, -12, 65, 0]) == [65, 23, 65]", "assert Split([-3, -50, -9, 9, -100, -13, 0]) == [-3, -9, 9, -13]", "assert Split([12, -56, 78, 90, -34, 65, 0, 23, -12, 65, 65, 0, 0]) == [65, 23, 65, 65]", "assert Split([12, 43, -56, 78, -13, 90, -34, 64, 0, -12, -1, 90, -1]) == [43, -13, -1, -1]", "assert Split([12, 43, -56, 78, 43, -34, 65, 0, 23, -1, 43, 23]) == [43, 43, 65, 23, -1, 43, 23]", "assert Split([12, 43, -56, -35, 78, 90, -34, 65, 0, 23, -12, 65, -12, 0]) == [43, -35, 65, 23, 65]", "assert Split([12, 43, -56, 400, 90, -34, -9, 0, 23, -12, -1, 90]) == [43, -9, 23, -1]", "assert Split([12, 43, -56, 90, -34, 64, 0, 77, 23, -12, -1, 90]) == [43, 77, 23, -1]", "assert Split([12, 43, -56, 400, 90, -34, -9, 0, 23, -12, -1]) == [43, -9, 23, -1]", "assert Split([12, 43, 78, 90, -34, 65, 0, 64, 78, 23, -12, 65, 0, 0, 90]) == [43, 65, 23, 65]", "assert Split([12, 43, -56, 78, -34, 64, 0, 77, 23, -12, -1, 90]) == [43, 77, 23, -1]", "assert Split([43, 5, 78, 90, -34, 65, 0, 0, 23, -12, 65, -10, -1]) == [43, 5, 65, 23, 65, -1]", "assert Split([-3, 5, -9, 10, -13, 1, -13, 10]) == [-3, 5, -9, -13, 1, -13]", "assert Split([12, 43, -56, 78, 90, 65, 0, 23, -1, 12, 44]) == [43, 65, 23, -1]", "assert Split([11, 12, 43, -56, 78, 90, -34, 65, 0, -35, -12, 65, -12, 0, 65, -12]) == [11, 43, 65, -35, 65, 65]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the difference between the sum of cubes of the first n natural numbers and the sum of the first n natural numbers.\nassert difference(3) == 30\nYour code should pass the test:\nassert difference(3) == 30", "test_list": [ "assert difference(3) == 30", "assert difference(5) == 210", "assert difference(2) == 6", "assert difference(0) == 0", "assert difference(10) == 2970", "assert difference(100) == 25497450", "assert difference(101) == 26527650", "assert difference(99) == 24497550", "assert difference(1) == 0", "assert difference(102) == 27588756", "assert difference(8) == 1260", "assert difference(2) == 6", "assert difference(3) == 30", "assert difference(4) == 90", "assert difference(True) == 0", "assert difference(False) == 0", "assert difference(11) == 4290", "assert difference(9) == 1980", "assert difference(5) == 210", "assert difference(42) == 814506", "assert difference(7) == 756", "assert difference(43) == 893970", "assert difference(103) == 28681380", "assert difference(51) == 1756950", "assert difference(6) == 420", "assert difference(81) == 11025720", "assert difference(82) == 11577006", "assert difference(50) == 1624350", "assert difference(52) == 1897506", "assert difference(98) == 23527350", "assert difference(12) == 6006", "assert difference(49) == 1499400", "assert difference(97) == 22586256", "assert difference(37) == 493506", "assert difference(41) == 740460", "assert difference(22) == 63756", "assert difference(26) == 122850", "assert difference(80) == 10494360", "assert difference(40) == 671580", "assert difference(44) == 979110", "assert difference(13) == 8190", "assert difference(21) == 53130", "assert difference(46) == 1167480", "assert difference(20) == 43890", "assert difference(96) == 21673680", "assert difference(48) == 1381800", "assert difference(45) == 1070190", "assert difference(47) == 1271256", "assert difference(53) == 2046330", "assert difference(38) == 548340", "assert difference(79) == 9982440", "assert difference(23) == 75900", "assert difference(25) == 105300", "assert difference(104) == 29806140", "assert difference(19) == 35910", "assert difference(24) == 89700", "assert difference(95) == 20789040", "assert difference(91) == 17518410", "assert difference(78) == 9489480", "assert difference(14) == 10920", "assert difference(36) == 442890", "assert difference(94) == 19931760", "assert difference(39) == 607620", "assert difference(63) == 4062240", "assert difference(93) == 19101270", "assert difference(30) == 215760", "assert difference(62) == 3812256", "assert difference(29) == 188790", "assert difference(77) == 9015006", "assert difference(35) == 396270", "assert difference(90) == 16764930", "assert difference(92) == 18297006", "assert difference(28) == 164430", "assert difference(83) == 12148710", "assert difference(89) == 16036020", "assert difference(57) == 2730756", "assert difference(18) == 29070", "assert difference(105) == 30963660", "assert difference(61) == 3573990", "assert difference(16) == 18360", "assert difference(15) == 14280", "assert difference(58) == 2925810", "assert difference(27) == 142506", "assert difference(72) == 6903756", "assert difference(56) == 2545620", "assert difference(85) == 13355370", "assert difference(33) == 314160", "assert difference(76) == 8558550", "assert difference(73) == 7292700", "assert difference(75) == 8119650", "assert difference(59) == 3131130", "assert difference(60) == 3347070", "assert difference(17) == 23256", "assert difference(84) == 12741330", "assert difference(55) == 2370060", "assert difference(31) == 245520", "assert difference(74) == 7697850", "assert difference(32) == 278256", "assert difference(88) == 15331140", "assert difference(54) == 2203740", "assert difference(87) == 14649756", "assert difference(106) == 32154570", "assert difference(64) == 4324320", "assert difference(107) == 33379506", "assert difference(108) == 34639110", "assert difference(34) == 353430" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of pairs whose xor value is odd.\nassert find_Odd_Pair([5,4,7,2,1],5) == 6\nYour code should pass the test:\nassert find_Odd_Pair([5,4,7,2,1],5) == 6", "test_list": [ "assert find_Odd_Pair([5,4,7,2,1],5) == 6", "assert find_Odd_Pair([7,2,8,1,0,5,11],7) == 12", "assert find_Odd_Pair([1,2,3],3) == 2", "assert find_Odd_Pair([], 0) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 10) == 25", "assert find_Odd_Pair([2, 4, 6, 8], 4) == 0", "assert find_Odd_Pair([2, 4, 6, 8], 0) == 0", "assert find_Odd_Pair([2, 4, 6, 8], -2) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 2], 10) == 25", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 1) == 0", "assert find_Odd_Pair([1, 8, 2, 3, 4, 5, 6, 7, 8, 9, 10], 10) == 25", "assert find_Odd_Pair([10, 1, 8, 2, 3, 4, 5, 6, 7, 8, 9, 10], 7) == 12", "assert find_Odd_Pair([2, 4, 6, 6, 8], 4) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 2) == 1", "assert find_Odd_Pair([2, 6, 8], -2) == 0", "assert find_Odd_Pair([2, 4, 6, 8, 4, 2], 4) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8], 3) == 0", "assert find_Odd_Pair([1, 8, 2, 3, 4, 5, 6, 7, 8, -2, 9, 10], 7) == 12", "assert find_Odd_Pair([5, 2, 6, 8], -3) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 3) == 2", "assert find_Odd_Pair([2, 4, 6, 8, 4], 0) == 0", "assert find_Odd_Pair([2, 4, 5, 6, 8], -2) == 0", "assert find_Odd_Pair([-3, 2, 4, 6, 8], 0) == 0", "assert find_Odd_Pair([2, 4, 5, 6, 8], -1) == 0", "assert find_Odd_Pair([2, 4, -2, 6, 8], 2) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 9) == 20", "assert find_Odd_Pair([2, -2, 6, 8], 2) == 0", "assert find_Odd_Pair([-3, 2, 4, 8], 0) == 0", "assert find_Odd_Pair([1, 8, 2, 3, 4, 5, 6, 7, 8, 9, 10], 8) == 16", "assert find_Odd_Pair([1, 4, 6, 6, 8], -2) == 0", "assert find_Odd_Pair([2, 4, 6, 8, 4, 4], 0) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8, 8], -2) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 1, 8, 6], 1) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8, 8, 2], -3) == 0", "assert find_Odd_Pair([-3, 2, 4, 6, 6, 8], 3) == 2", "assert find_Odd_Pair([2, 4, 6, 8, 4, 4], -1) == 0", "assert find_Odd_Pair([2, 4, 6, 8, 4, 3, 2], 4) == 0", "assert find_Odd_Pair([-3, 2, 4, 6, 6, 8, 8], 3) == 2", "assert find_Odd_Pair([2, 3, 6, 6, 1, 8, 6], 1) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6], 1) == 0", "assert find_Odd_Pair([-3, 2, 4, 6, 6, 8, 8], -3) == 0", "assert find_Odd_Pair([2, 0, 4, 6, 8, 4], 0) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 1], 1) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8], 2) == 0", "assert find_Odd_Pair([2, 4, 1, 6, 8, 4, 2], 4) == 3", "assert find_Odd_Pair([1, 7, 2, 3, 4, 5, 6, 7, 8, 9, 10], 5) == 6", "assert find_Odd_Pair([2, -2, 6, 8], 1) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 8, 7, 8, 9], 10) == 25", "assert find_Odd_Pair([2, 4, 6, 8, 4, 4, 8], -1) == 0", "assert find_Odd_Pair([8, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 0) == 0", "assert find_Odd_Pair([2, 4, 1, 8], 4) == 3", "assert find_Odd_Pair([1, 4, 6, 6, 8, 6], -2) == 0", "assert find_Odd_Pair([2, 8], -1) == 0", "assert find_Odd_Pair([2, 3, 6, 6, 1, 8, 6], 4) == 3", "assert find_Odd_Pair([2, 4, 5, 6, 8, 4, 4], -1) == 0", "assert find_Odd_Pair([0, 2, 4, 6], 4) == 0", "assert find_Odd_Pair([-3, 2, 4, 10, 6, 6, 8], 7) == 6", "assert find_Odd_Pair([8, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4], 0) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8], -1) == 0", "assert find_Odd_Pair([1, 7, 2, 3, 5, 6, 7, 8, 9, 10], 8) == 15", "assert find_Odd_Pair([-3, 2, 4, 6, 6, 8, -3, 8], 4) == 3", "assert find_Odd_Pair([-3, 2, 4, 6, 6, 8, -3, 8], -3) == 0", "assert find_Odd_Pair([-2, 6, 8], 1) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 10, 10, 1], 1) == 0", "assert find_Odd_Pair([2, 4, 9, 6, 6, 8], -1) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8, 8, 2, 2], -3) == 0", "assert find_Odd_Pair([2, 4, -2, 6, 2, 8], 2) == 0", "assert find_Odd_Pair([0, 2, 4, 6, 0], 1) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 2, 10], 10) == 25", "assert find_Odd_Pair([2, 4, -2, 6, 8, 4], 2) == 0", "assert find_Odd_Pair([9, 2, 4, 6, 6, 8], 4) == 3", "assert find_Odd_Pair([4, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 2) == 1", "assert find_Odd_Pair([2, 4, 6, 8, 4, 4, 8, 8], -1) == 0", "assert find_Odd_Pair([2, 4, 6, 8, 8], -2) == 0", "assert find_Odd_Pair([2, 4, -2, 6, 2, -3, 8], 2) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8], -2) == 0", "assert find_Odd_Pair([2, 4, 6, 8, 4, 4, 8], 0) == 0", "assert find_Odd_Pair([1, 2, 2, 4, 10, 5, 6, 7, 8, 9, 10, 6], 1) == 0", "assert find_Odd_Pair([8, 1, 3, 4, 5, 6, 7, 8, 9, 10, 4], 0) == 0", "assert find_Odd_Pair([2, 4, 6, 8, 4, 3, 8, 2], 3) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 1, 8], 3) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8, 8, 2], 7) == 0", "assert find_Odd_Pair([-3, 2, 4, -3, 6, 6, 8, -3, 8], -3) == 0", "assert find_Odd_Pair([2, 5, 4, 5, 6, 8, 4], 7) == 10", "assert find_Odd_Pair([-2, 1, 3, 4, 5, 6, 7, 8, 9, 10, 4], 0) == 0", "assert find_Odd_Pair([2, 4, -2, 6, 8], 1) == 0", "assert find_Odd_Pair([-3, 2, 4, 6, 6, 8, 4], 3) == 2", "assert find_Odd_Pair([10, 1, 8, 2, 3, 5, 6, 7, 8, 9, 10], 6) == 9", "assert find_Odd_Pair([2, 4, 1, 6, 8, 4, 2], 3) == 2", "assert find_Odd_Pair([8, 1, 2, 3, 4, 5, 6, 8, 9, 10], 0) == 0", "assert find_Odd_Pair([2, 6, 8], -1) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8, 4], -1) == 0", "assert find_Odd_Pair([-14, 2, -25, 0], 0) == 0", "assert find_Odd_Pair([2, 4, 6, 6, 8], 5) == 0", "assert find_Odd_Pair([2, 4, 6, 6], 3) == 0", "assert find_Odd_Pair([8, 1, 2, 3, 4, 5, 6, 8, 9, 10, 6], 1) == 0", "assert find_Odd_Pair([2, 4, 7, 8, 8], -2) == 0", "assert find_Odd_Pair([2, 5, 6, 8], -2) == 0", "assert find_Odd_Pair([10, 1, 8, 2, 3, 5, 6, 7, 8, 10, 10], 6) == 9", "assert find_Odd_Pair([10, 1, 8, 2, 3, 5, 6, 7, 8, 9, 10], 10) == 25", "assert find_Odd_Pair([-3, 2, 4, 6, 8, 8], -1) == 0", "assert find_Odd_Pair([10, 0, -3, 2, 9, 6], 5) == 6", "assert find_Odd_Pair([2, 4, -25, 8, 4, 4], 0) == 0", "assert find_Odd_Pair([2, 4, 7, 8, 7, 8], -2) == 0", "assert find_Odd_Pair([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6], 2) == 1", "assert find_Odd_Pair([1, 7, 3, 4, 5, 5, 7, 8, 9, 10], 5) == 4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to toggle the case of all characters in a string.\nassert toggle_string(\"Python\")==(\"pYTHON\")\nYour code should pass the test:\nassert toggle_string(\"Python\")==(\"pYTHON\")", "test_list": [ "assert toggle_string(\"Python\")==(\"pYTHON\")", "assert toggle_string(\"Pangram\")==(\"pANGRAM\")", "assert toggle_string(\"LIttLE\")==(\"liTTle\")", "assert toggle_string('') == ''", "assert toggle_string('ABCDEFGHIJKLMNOPQRSTUVWXYZ') == 'abcdefghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOPQRSTUVHWXYZ') == 'abcdefghijklmnopqrstuvhwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOPQRSTUV') == 'abcdefghijklmnopqrstuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZV') == 'abcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLTMNOPQRABCDEFGHIJKLMNOPQRSTUVSTUVHWXYYZ') == 'abcdefghijkltmnopqrabcdefghijklmnopqrstuvstuvhwxyyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVHWXYZSABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvhwxyzsabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyztuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCODHIJKLMNOPQRSTUVSTUVHWXYYZ') == 'abcodhijklmnopqrstuvstuvhwxyyz'", "assert toggle_string('uSB') == 'Usb'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVHWXYZSABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZTUVABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvhwxyzsabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyztuvabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('BuSB') == 'bUsb'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEFGHIJRABCDEFGHIJKLMNOPQRSTUVSTUVHWYX') == 'abcdefghijrabcdefghijklmnopqrstuvstuvhwyx'", "assert toggle_string('uBSBB') == 'Ubsbb'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuv'", "assert toggle_string('ABCDEABCDEFABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZTUVWXYZ') == 'abcdeabcdefabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijkabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyztuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('uBSBBB') == 'Ubsbbb'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEFGHIJKLMNOPGQRSTUVVHWXYZ') == 'abcdefghijklmnopgqrstuvvhwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuv'", "assert toggle_string('BuSSABCODHIJKLMNOPQRSTUVHSTUVHWXYYZB') == 'bUssabcodhijklmnopqrstuvhstuvhwxyyzb'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOWPQRSTUVWXYABCDEABCDEFGHIJKRLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZZ') == 'abcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnowpqrstuvwxyabcdeabcdefghijkrlmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQHRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqhrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqrstuvhwvxyzfghijklabcdefgthijklmnuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQPRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqprstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQuBSBBBRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqUbsbbbrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWBuSSABCODHIJKLMNOPQRSTUVHSTUVHWXYYZBXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwbUssabcodhijklmnopqrstuvhstuvhwxyyzbxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQuBSBBBRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqUbsbbbrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcddefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHABCDEFGHIJRABCDEFGHIJKLMNOPQRSTUVSTUVHWYXIJKLMNOPABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghabcdefghijrabcdefghijklmnopqrstuvstuvhwyxijklmnopabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefgnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNSOPQRSTUVHWXYZWXYZFGHIJKLMNOPQPRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcbdefghijklmnsopqrstuvhwxyzwxyzfghijklmnopqprstuvwxyz'", "assert toggle_string('ABCABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOWPQRSTUVWXYABCDEABCDEFGHIJKRLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZZDEFGHIJKLMNOPQRSTUVWXYZ') == 'abcabcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnowpqrstuvwxyabcdeabcdefghijkrlmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzzdefghijklmnopqrstuvwxyz'", "assert toggle_string('ABABCABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVMNOPQRSTUVHWXYZWXYZFGHIJKLMNOWPQRSTUVWXYABCDEABCDEFGHIJKRLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZZDEFGHIJKLMNOPQRSTUVWXYZCDEFGHIJRABCDEFGHIJKLMNOPQRSTUVSTUVHWYX') == 'ababcabcdeabcdefghijklmnopqrstuvhabcbdefghijklabcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvmnopqrstuvhwxyzwxyzfghijklmnowpqrstuvwxyabcdeabcdefghijkrlmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzzdefghijklmnopqrstuvwxyzcdefghijrabcdefghijklmnopqrstuvstuvhwyx'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHITUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghituvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUEVHABCDEFGNOPQRVWXYZ') == 'abcdeabcdefghijklmnopqrstuevhabcdefgnopqrvwxyz'", "assert toggle_string('ABABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'ababcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMSTUVWXYZ') == 'abcdefghijklmstuvwxyz'", "assert toggle_string('ABCDEFGHABCDEFGHIJKLMNOPGQRSTUVVHWXYZIJKLMNOPQRSTUV') == 'abcdefghabcdefghijklmnopgqrstuvvhwxyzijklmnopqrstuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHABCDEFGHIJRABCDEFGHIJKLMNOPQRSTUVSTUVHWYXIJKLMNOPABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYuBSBBVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghabcdefghijrabcdefghijklmnopqrstuvstuvhwyxijklmnopabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyUbsbbvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOBPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznobpqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpuv'", "assert toggle_string('BuSSABCODHIJKDLMNOPQRSTUVHSTUVHWXYYZB') == 'bUssabcodhijkdlmnopqrstuvhstuvhwxyyzb'", "assert toggle_string('EzeJQlRM') == 'eZEjqLrm'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXQYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxqyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXQYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXY') == 'abcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxqyzstuvhwxyzwxyzfghijklmnopqrstuvwxy'", "assert toggle_string('ABCDEFGHIJKLTMNOYZ') == 'abcdefghijkltmnoyz'", "assert toggle_string('ABCDEFGHIJABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWBuSSABCODHIJKLMNOPQRSTUVHSTUVHWXYYZBXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVKLTMNOPQRABCDEFGHIJKLMNOPQRSTUVSTUVHWXYYZ') == 'abcdefghijabcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwbUssabcodhijklmnopqrstuvhstuvhwxyyzbxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvkltmnopqrabcdefghijklmnopqrstuvstuvhwxyyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTJUVHWXYZFGHHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHITUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstjuvhwxyzfghhijklabcdefgthijklmnopqrstuabcdeabcdefghituvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('vE') == 'Ve'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWBuSSABCODHIJKLMNOPQRSTUVHSTUVHWXYYZBXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVUVHWVXYZFGHIJKLABCDEFGTHIJKLMNUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqrstabcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwbUssabcodhijklmnopqrstuvhstuvhwxyyzbxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvuvhwvxyzfghijklabcdefgthijklmnuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEABCDEFGGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGEHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefgghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefgehijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEFGHIJRABCDEFGHIJKLMNOPQRSTUVSTURVHWYX') == 'abcdefghijrabcdefghijklmnopqrstuvsturvhwyx'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFBGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefbghijklmabcdefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEFGHIJKLMNOPGQRYZ') == 'abcdefghijklmnopgqryz'", "assert toggle_string('BeeBaaOMF') == 'bEEbAAomf'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHINJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOBPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthinjklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznobpqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpuv'", "assert toggle_string('BuSSABCODHIJKLMNOPQRSTUVHSTUVHWXYYABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQPRSTUVWXYZZB') == 'bUssabcodhijklmnopqrstuvhstuvhwxyyabcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqprstuvwxyzzb'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPDQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopdqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpuv'", "assert toggle_string('ABCDEFGHIJKLMSTUXYZ') == 'abcdefghijklmstuxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQuBSBBBRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDELFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqUbsbbbrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdelfghijklmabcdefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEFGHIJKLMNOPGQRSTUVVHWXYZABCDEFGHIJKLMNOPGQRSTUVVHWQXYZ') == 'abcdefghijklmnopgqrstuvvhwxyzabcdefghijklmnopgqrstuvvhwqxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXBYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxbyzpuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTJUVHWXYZFGHHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHITUVABCDEABCDEFGHIJKLMNOPQuBSBBBRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstjuvhwxyzfghhijklabcdefgthijklmnopqrstuabcdeabcdefghituvabcdeabcdefghijklmnopqUbsbbbrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcddefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxzwxyzvrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFABCDEFGHIJKLMSTUXYZZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefabcdefghijklmstuxyzz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQuBSBBABCDEABCDEFGHIJKLMNOPQRSTUEVHABCDEFGNOPQRVWXYZBRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqUbsbbabcdeabcdefghijklmnopqrstuevhabcdefgnopqrvwxyzbrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcddefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHOWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'ababcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhowxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOPQRSABCDEABCDEFGHIJKLMNOPQRSTUEVHABCDEFGNOPQRVWXYZTUV') == 'abcdefghijklmnopqrsabcdeabcdefghijklmnopqrstuevhabcdefgnopqrvwxyztuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEYABCDEFGHIJMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeyabcdefghijmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('BuBSBBBB') == 'bUbsbbbb'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTWXYZVRSTUVWXBYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstwxyzvrstuvwxbyzpuv'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFBuSBABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefbUsbabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyzxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('uSABCABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVDEABCDEFGHIJKLMNOPQRSTUEVHABCDEFGNOPQRVWXYZ') == 'Usabcabcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvdeabcdefghijklmnopqrstuevhabcdefgnopqrvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHITUVTWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghituvtwxyzvrstuvwxyz'", "assert toggle_string('BaeeBa') == 'bAEEbA'", "assert toggle_string('ABABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVCDEABCDEFGGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'ababcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvcdeabcdefgghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTJUVHWXYZFGHHIJKLABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDDEFGHIJKLMNOPQRSTUVWXXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstjuvhwxyzfghhijklabcdefghijklmnopqrbstuvhabcdefghijklmabcddefghijklmnopqrstuvwxxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxzwxyzvrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOPGQRSTUVVHWXYZABABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHABCDEFGHIJRABCDEFGHIJKLMNOPQRSTUVSTUVHWYXIJKLMNOPABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYuBSBBVWXYZCDEFGHIJKLMNOPGQRSTUVVHWQXYZ') == 'abcdefghijklmnopgqrstuvvhwxyzababcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghabcdefghijrabcdefghijklmnopqrstuvstuvhwyxijklmnopabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyUbsbbvwxyzcdefghijklmnopgqrstuvvhwqxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHITUVWXYZVRSTUVWXYZLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTWXYZVRSTUVWXBYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdeabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghituvwxyzvrstuvwxyzlmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstwxyzvrstuvwxbyzpuv'", "assert toggle_string('ABABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXBYZPUVNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVCDEABCDEFGGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZ') == 'ababcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmabcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxbyzpuvnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvcdeabcdefgghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTWXYZVRSTUVWXBYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstwxyzvrstuvwxbyzpuv'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWVXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZXYZNOPQRSTABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXZ') == 'abcdeabcdefghijklmnopqrstuvhwvxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyzxyznopqrstabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOWPQRSTUVWXYABCDEABCDEFGHIJKRLMNOPQRSTUVHABCDEFGHIJKLMNOPABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZZ') == 'abcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnowpqrstuvwxyabcdeabcdefghijkrlmnopqrstuvhabcdefghijklmnopabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyzqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzz'", "assert toggle_string('JuPAx') == 'jUpaX'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOABABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSABCDEABCDEFGHIJKLMNOPQRSTUVHABCBDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZTUVWXBYZPUVNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUVCDEABCDEFGGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZPQRSTUABCDEABCDEFGHIJKLMNOPQRBSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnoababcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmabcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrsabcdeabcdefghijklmnopqrstuvhabcbdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyztuvwxbyzpuvnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuvcdeabcdefgghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxyzstuvhwxyzwxyzfghijklmnopqrstuvwxyzpqrstuabcdeabcdefghijklmnopqrbstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEABCDEFGHIJKLMNOPUQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHITUVTWXYZVRSTUVWXYZ') == 'abcdeabcdefghijklmnopuqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghituvtwxyzvrstuvwxyz'", "assert toggle_string('uBSABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZBBB') == 'Ubsabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzbbb'", "assert toggle_string('ABCDEABCDEFGGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGEHIJKLMABCDEFGHIJKLMNOPQRSWTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZ') == 'abcdeabcdefgghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklmnopqrstuvhabcdefgehijklmabcdefghijklmnopqrswtuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyz'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCJDEABCDEFGHIJKLABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHIJKLMNOPQRSTUVZSTUVHWBuSSABCODHIJKLMNOPQRSTUVHSTUVHWXYYZBXYZWXYZFGHIJKLMNOPQRSTUVWXYZMNOPQRSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPQRSTUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcjdeabcdefghijklabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghijklmnopqrstuvzstuvhwbUssabcodhijklmnopqrstuvhstuvhwxyyzbxyzwxyzfghijklmnopqrstuvwxyzmnopqrstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpqrstuv'", "assert toggle_string('ABCDEFGHIJRABCDEFGHIJABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZKLMNOPQRSTUVSTURVHWYX') == 'abcdefghijrabcdefghijabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzklmnopqrstuvsturvhwyx'", "assert toggle_string('ABCDEFGHIJKLMNOABCDEABCDEFGHIJKLMNOPDQRSTUVHWXYZFGHIJKLABCDEFGTHIJKLMNOPQRSTUABCDEABCDEFGHIJKLABCDEABCDSTUVHABCDEFGHIJKLMABCDEFGHIJKLMNOPQRSTUVWXYZNOPQRSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZVRSTUVWXYZPUV') == 'abcdefghijklmnoabcdeabcdefghijklmnopdqrstuvhwxyzfghijklabcdefgthijklmnopqrstuabcdeabcdefghijklabcdeabcdstuvhabcdefghijklmabcdefghijklmnopqrstuvwxyznopqrstuvhwxyzwxyzfghijklmnopqrstuvwxyzvrstuvwxyzpuv'", "assert toggle_string('BuSSABCODHIJKABCDEABCDEFGHIJKLMNOPQRSTUVHABCDEFGHIJKLMNOPEFGHWIJKLMNOPQRSTUVHWXQYZSTUVHWXYZWXYZFGHIJKLMNOPQRSTUVWXYZDLMNOPQRSTUVHSTUVHWXYYZB') == 'bUssabcodhijkabcdeabcdefghijklmnopqrstuvhabcdefghijklmnopefghwijklmnopqrstuvhwxqyzstuvhwxyzwxyzfghijklmnopqrstuvwxyzdlmnopqrstuvhstuvhwxyyzb'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of the per-digit difference between two integers.\nassert digit_distance_nums(1,2) == 1\nYour code should pass the test:\nassert digit_distance_nums(1,2) == 1", "test_list": [ "assert digit_distance_nums(1,2) == 1", "assert digit_distance_nums(23,56) == 6", "assert digit_distance_nums(123,256) == 7", "assert digit_distance_nums(123456789, 987654321) == 40", "assert digit_distance_nums(12345, 9) == 8", "assert digit_distance_nums(9876543210, 123) == 18", "assert digit_distance_nums(11111111, 99999999) == 64", "assert digit_distance_nums(123456789, 987654321) == 40", "assert digit_distance_nums(98765, 54321) == 20", "assert digit_distance_nums(999999, 111111) == 48", "assert digit_distance_nums(0, 987654321) == 9", "assert digit_distance_nums(987654321, 23456789) == 32", "assert digit_distance_nums(123456789123456789, 987654321987654321) == 80", "assert digit_distance_nums(1000000, 999999) == 53", "assert digit_distance_nums(9999, 8888) == 4", "assert digit_distance_nums(123456789, 123) == 0", "assert digit_distance_nums(1, 1234567890) == 0", "assert digit_distance_nums(12345, 567891) == 20", "assert digit_distance_nums(0, 256) == 2", "assert digit_distance_nums(123, 0) == 1", "assert digit_distance_nums(0, 0) == 0", "assert digit_distance_nums(1000000, 999999) == 53", "assert digit_distance_nums(123, 456789) == 9", "assert digit_distance_nums(12345, 5678) == 16", "assert digit_distance_nums(1111, 2222) == 4", "assert digit_distance_nums(1020304, 2030405) == 4", "assert digit_distance_nums(1, 9) == 8", "assert digit_distance_nums(10000000, 9999999) == 62", "assert digit_distance_nums(200, 500) == 3", "assert digit_distance_nums(3000, 30) == 0", "assert digit_distance_nums(10, 256) == 6", "assert digit_distance_nums(123, 5) == 4", "assert digit_distance_nums(10, 10) == 0", "assert digit_distance_nums(9999999999, 1111111111) == 80", "assert digit_distance_nums(123, 256789) == 7", "assert digit_distance_nums(23, 568) == 6", "assert digit_distance_nums(0, 0) == 0", "assert digit_distance_nums(0, 1) == 1", "assert digit_distance_nums(1, 0) == 1", "assert digit_distance_nums(1, 1) == 0", "assert digit_distance_nums(3, 0) == 3", "assert digit_distance_nums(24, 30) == 5", "assert digit_distance_nums(9876543, 12) == 14", "assert digit_distance_nums(1, 2) == 1", "assert digit_distance_nums(23, 56) == 6", "assert digit_distance_nums(123, 256) == 7", "assert digit_distance_nums(8888, 9999) == 4", "assert digit_distance_nums(5678, 1000000) == 25", "assert digit_distance_nums(256, 256) == 0", "assert digit_distance_nums(9999, 0) == 9", "assert digit_distance_nums(123, 122) == 1", "assert digit_distance_nums(30, 2) == 1", "assert digit_distance_nums(123456788, 123456789) == 1", "assert digit_distance_nums(1234567888, 1234567889) == 1", "assert digit_distance_nums(1000000, 256) == 12", "assert digit_distance_nums(12, 256) == 4", "assert digit_distance_nums(256, 456789) == 2", "assert digit_distance_nums(11, 256) == 5", "assert digit_distance_nums(99999999, 99999999) == 0", "assert digit_distance_nums(1234567889, 568) == 13", "assert digit_distance_nums(1, 5) == 4", "assert digit_distance_nums(23456788, 23456789) == 1", "assert digit_distance_nums(123, 123) == 0", "assert digit_distance_nums(54321, 0) == 5", "assert digit_distance_nums(56, 9876543) == 6", "assert digit_distance_nums(500, 500) == 0", "assert digit_distance_nums(10000000, 10000000) == 0", "assert digit_distance_nums(23456787, 23456789) == 2", "assert digit_distance_nums(999999, 456789) == 15", "assert digit_distance_nums(10001, 10000) == 1", "assert digit_distance_nums(1111, 2223) == 5", "assert digit_distance_nums(5, 568) == 0", "assert digit_distance_nums(98765, 98765) == 0", "assert digit_distance_nums(1111111111, 1111111111) == 0", "assert digit_distance_nums(201, 500) == 4", "assert digit_distance_nums(201, 123456788) == 5", "assert digit_distance_nums(3, 2223) == 1", "assert digit_distance_nums(456788, 456788) == 0", "assert digit_distance_nums(23456788, 11111111) == 35", "assert digit_distance_nums(567890, 567891) == 1", "assert digit_distance_nums(54321, 123) == 6", "assert digit_distance_nums(123456789, 123456789) == 0", "assert digit_distance_nums(999999, 0) == 9", "assert digit_distance_nums(2, 1) == 1", "assert digit_distance_nums(10000, 123456788) == 14", "assert digit_distance_nums(8889, 8888) == 1", "assert digit_distance_nums(10, 8888) == 15", "assert digit_distance_nums(1, 1111111111) == 0", "assert digit_distance_nums(1111111111, 1111111110) == 1", "assert digit_distance_nums(456787, 123) == 9", "assert digit_distance_nums(98766, 54321) == 21", "assert digit_distance_nums(256789, 1000000) == 36", "assert digit_distance_nums(456789, 456789) == 0", "assert digit_distance_nums(202, 201) == 1", "assert digit_distance_nums(123456789123456789, 1234567890) == 1", "assert digit_distance_nums(23456787, 23456788) == 1", "assert digit_distance_nums(1111111110, 1111111110) == 0", "assert digit_distance_nums(5678, 987654321987654320) == 8", "assert digit_distance_nums(11111111, 123456789) == 28", "assert digit_distance_nums(1000001, 256) == 12", "assert digit_distance_nums(1111111112, 1) == 0", "assert digit_distance_nums(1, 123) == 0", "assert digit_distance_nums(456788, 123456789123456789) == 17", "assert digit_distance_nums(2, 2) == 0", "assert digit_distance_nums(1234567889, 202) == 4", "assert digit_distance_nums(9, 56) == 4", "assert digit_distance_nums(11, 11) == 0", "assert digit_distance_nums(3, 2) == 1", "assert digit_distance_nums(567, 568) == 1", "assert digit_distance_nums(567890, 567890) == 0", "assert digit_distance_nums(256, 3) == 1", "assert digit_distance_nums(257, 257) == 0", "assert digit_distance_nums(10, 499) == 12", "assert digit_distance_nums(9, 256) == 7", "assert digit_distance_nums(1000000, 1000000) == 0", "assert digit_distance_nums(123456789, 123456790) == 10", "assert digit_distance_nums(99999999, 3000) == 33", "assert digit_distance_nums(98765, 987654321) == 0", "assert digit_distance_nums(568, 8888) == 5", "assert digit_distance_nums(0, 11111111) == 1", "assert digit_distance_nums(8889, 8889) == 0", "assert digit_distance_nums(1000003, 1000001) == 2", "assert digit_distance_nums(456788, 456789) == 1", "assert digit_distance_nums(1111111111, 9) == 8", "assert digit_distance_nums(1111111111, 11) == 0", "assert digit_distance_nums(5678, 9999) == 10", "assert digit_distance_nums(8889, 56) == 5", "assert digit_distance_nums(12346, 9) == 8", "assert digit_distance_nums(9999, 2) == 7", "assert digit_distance_nums(999998, 999999) == 1", "assert digit_distance_nums(6, 5) == 1", "assert digit_distance_nums(201, 200) == 1", "assert digit_distance_nums(98765, 568) == 7", "assert digit_distance_nums(8888, 8888) == 0", "assert digit_distance_nums(99999999, 456789) == 15", "assert digit_distance_nums(9999999999, 9999999999) == 0", "assert digit_distance_nums(1000001, 1000001) == 0", "assert digit_distance_nums(255, 256) == 1", "assert digit_distance_nums(23456788, 8888) == 18", "assert digit_distance_nums(123456788, 256) == 7", "assert digit_distance_nums(501, 456789) == 11", "assert digit_distance_nums(255, 1000001) == 11", "assert digit_distance_nums(5678, 12) == 8", "assert digit_distance_nums(1111111111, 2224) == 6", "assert digit_distance_nums(987654321, 987654321) == 0", "assert digit_distance_nums(9, 2030405) == 7" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the sum of the largest contiguous sublist in the given list.\nassert max_sub_array_sum([-2, -3, 4, -1, -2, 1, 5, -3], 8) == 7\nYour code should pass the test:\nassert max_sub_array_sum([-2, -3, 4, -1, -2, 1, 5, -3], 8) == 7", "test_list": [ "assert max_sub_array_sum([-2, -3, 4, -1, -2, 1, 5, -3], 8) == 7", "assert max_sub_array_sum([-3, -4, 5, -2, -3, 2, 6, -4], 8) == 8", "assert max_sub_array_sum([-4, -5, 6, -3, -4, 3, 7, -5], 8) == 10", "assert max_sub_array_sum([], 0) == 0", "assert max_sub_array_sum([-10, -5, -3, -2, -1], 5) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -1], 9) == 5", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10], 10) == 0", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400], 14) == 4900", "assert max_sub_array_sum([1000, 900, 800, 700, 600, -1000, -900, -800, -700, -600], 10) == 4000", "assert max_sub_array_sum([100, -100, 200, -200, 300, -300, 400, -400, 500, -500], 10) == 500", "assert max_sub_array_sum([-100, 200, -300, 400, -500, 600, -700, 800, -900, 1000], 10) == 1000", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1], 10) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -4, -3, -2, -1], 10) == 14", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7], -1) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1], -1) == 0", "assert max_sub_array_sum([-1000, -5, -900, -800, -700, -600, -500, -400, 900, 800, 700, 600, 500, 400], 14) == 3900", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7], -800) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7], 0) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7, -30], -7) == 0", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10], 9) == 0", "assert max_sub_array_sum([1000, 900, 800, 700, 600, -1000, -900, -800, -700, -600], 9) == 4000", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400], -800) == 0", "assert max_sub_array_sum([900, 800, 700, 600, -1000, -900, -800, -700, -600], 9) == 3000", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 400, 800, 700, 600, 500, 400], -800) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1], -600) == 0", "assert max_sub_array_sum([1000, 900, 800, 600, -1000, -900, -800, -700, -600], 9) == 3300", "assert max_sub_array_sum([1000, 900, 800, 700, -400, -1000, -900, -800, -700, -600], 9) == 3400", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10], -20) == 0", "assert max_sub_array_sum([-1000, -800, -700, -600, -500, -400, 1000, 900, 400, 800, 700, 600, 500, 400, 600], -800) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1], 9) == 0", "assert max_sub_array_sum([-100, -50, -30, -21, -10, 5, -3, -2, -7], -800) == 0", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400], -1000) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 9, -2, -1], -600) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -4, -3, -2, -1], 9) == 14", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 9, -2], -601) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -4, -3, -2, -1], -400) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 9, -2], -1) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7, -30], -6) == 0", "assert max_sub_array_sum([1000, 900, 800, 700, 600, -1000, -900, -800, -700, -600, 1000], 10) == 4000", "assert max_sub_array_sum([-1000, -800, -700, -600, -500, -400, 1000, 900, 400, 800, 700, 600, 500, 400, 600], -801) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -2, -4, -3, -2, -1], 10) == 14", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 9, -2, -5], -1) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -4, -3, -2, -1], -30) == 0", "assert max_sub_array_sum([1000, 900, 800, 700, 600, -1000, -900, -800, -700, -599], -400) == 0", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400, 500], 14) == 4900", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -4, -3, -2, -1], 8) == 14", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7], -799) == 0", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10], -3) == 0", "assert max_sub_array_sum([-100, -50, -30, -21, 5, -3, -2, -7, -2], -800) == 0", "assert max_sub_array_sum([14, -50, -30, -20, -10, 5, -3, -2, -1], 9) == 14", "assert max_sub_array_sum([-100, -31, -50, -30, -21, -10, 5, -3, -2, -7], -1000) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 9, -2], 0) == 0", "assert max_sub_array_sum([-100, -50, -30, -21, -10, 5, -3, -2, 400], -4) == 0", "assert max_sub_array_sum([14, -9, -8, -7, 14, -6, -5, -4, -3, -2, -1], 8) == 14", "assert max_sub_array_sum([-100, -50, -30, -21, -10, 4, -3, -2, 400], -4) == 0", "assert max_sub_array_sum([14, -50, -30, -20, -10, -9, 5, -3, -2, -1, -20], 9) == 14", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -2, -4, -3, -2, -1, -9, 14], 10) == 14", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400, 1000], -1000) == 0", "assert max_sub_array_sum([-2, -3, -4, -5, -6, -7, -8, -8, -10], -20) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 9, -2, -9], 0) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -1, -5, -2, -4, -3, -2, -1, -9, 14], 9) == 14", "assert max_sub_array_sum([-100, -50, -21, -10, 5, -3, -2, 400], -4) == 0", "assert max_sub_array_sum([-100, -50, -30, -21, 5, -3, -2, -599, -2], -50) == 0", "assert max_sub_array_sum([900, 800, 700, 600, -1000, -900, -800, -700, -600, -1000], 9) == 3000", "assert max_sub_array_sum([-2, -3, -200, -5, -6, -8, -8, -10], -21) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -700, -7], 0) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1], -601) == 0", "assert max_sub_array_sum([-100, -30, -21, 5, -3, -2, -7, -2], -800) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -31, -7], -1) == 0", "assert max_sub_array_sum([900, -4, 700, 600, -1000, -900, -799, -800, -700, -500, -600], 10) == 2196", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -7, -8, -9, -5, -10], -9) == 0", "assert max_sub_array_sum([-100, -50, -6, -30, -20, -10, 5, -3, -2, -7], -1) == 0", "assert max_sub_array_sum([-1, -3, -4, -5, -6, -7, -8, -9, -10], -3) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, -11, 5, -3, -2, -7], 0) == 0", "assert max_sub_array_sum([-1, -3, -4, -6, -7, -8, -9, -10, -10], -500) == 0", "assert max_sub_array_sum([14, -9, -8, -7, 14, -6, -5, -4, -3, -2, -1, -6], 8) == 14", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -7, -50], 0) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, 5, -10, 5, -3, -2, -7], -32) == 0", "assert max_sub_array_sum([-100, -50, -30, -20, -10, -11, 5, -3, -2, -7, -30], 0) == 0", "assert max_sub_array_sum([1000, 900, -300, 600, -1000, -900, -800, -700, -600], 9) == 2200", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400], -400) == 0", "assert max_sub_array_sum([-2, -2, -200, -5, -6, -8, -8, -10], -21) == 0", "assert max_sub_array_sum([-900, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400], -300) == 0", "assert max_sub_array_sum([-100, -31, -50, -30, -21, -10, -599, -3, -2, -7], -1000) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -1, -5, -2, -4, -3, -2, -1, -9, 14, -7], 9) == 14", "assert max_sub_array_sum([-1000, -900, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 399, 500, 400], 14) == 5299", "assert max_sub_array_sum([100, -100, 200, -200, 300, 5, -300, 400, -400, 500, -500], 10) == 505", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1], -50) == 0", "assert max_sub_array_sum([-100, -31, -30, -20, -10, -11, 5, -3, -2, -7, -30], 0) == 0", "assert max_sub_array_sum([-100, -31, -11, -50, -30, -21, -10, -599, -3, -2, -7], -1000) == 0", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 400, 800, 700, 600, 500, 400], -801) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -7, -5, -4, -3, -2, -1], 10) == 14", "assert max_sub_array_sum([1000, 900, 800, 700, -801, 600, -1000, -900, -800, -700, -600], 9) == 3400", "assert max_sub_array_sum([-100, -50, -10, -30, -20, -10, 5, -3, -2, -7], -800) == 0", "assert max_sub_array_sum([14, -50, -30, -20, -10, -9, -10, 5, -3, -2, -1, -20], 9) == 14", "assert max_sub_array_sum([14, -9, -8, -7, 14, -6, -5, -4, -3, -2, -1, -6], 9) == 14", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 600, -2, -1], -400) == 0", "assert max_sub_array_sum([100, -100, 200, -200, 300, -300, 400, 501, -400, 500, -500], 10) == 1001", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -8], 9) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -6, -5, -2, -4, -3, -2, -1, -9, 14], 9) == 14", "assert max_sub_array_sum([-1000, -900, -800, -700, -600, -500, -400, 1000, 900, 800, 700, 600, 500, 400, 500], -21) == 0", "assert max_sub_array_sum([-1, -2, -4, -5, -6, -7, -8, -9, -10], -20) == 0", "assert max_sub_array_sum([14, -9, -8, -7, 900, 14, -6, -5, -4, -3, -2, -1], -31) == 0", "assert max_sub_array_sum([1000, 900, 800, 700, 600, -1000, -900, -800, -700, -600], -300) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, -3, -2, -1, -10], 9) == 0", "assert max_sub_array_sum([14, -9, -8, -7, -7, -5, -4, -3, -2, -1, -7], 10) == 14", "assert max_sub_array_sum([-100, -50, -30, -20, -10, 5, -3, -2, -1], 8) == 5", "assert max_sub_array_sum([-100, -31, -11, -50, -30, -21, -10, -3, -2, -7], -1000) == 0", "assert max_sub_array_sum([-1, -2, -4, -5, -3, -6, -7, -8, -10], -20) == 0", "assert max_sub_array_sum([-100, -9, -8, -7, -6, -1, -5, -2, -4, -3, -2, -1, -9, 14], 9) == 0", "assert max_sub_array_sum([-1, -2, -3, -4, -5, -6, -8, -9, -10], -20) == 0", "assert max_sub_array_sum([-10, -9, -8, -7, -6, -5, -4, 600, -2, -1], -401) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check if a given number is one less than twice its reverse.\nassert check(70) == False\nYour code should pass the test:\nassert check(70) == False", "test_list": [ "assert check(70) == False", "assert check(23) == False", "assert check(73) == True", "assert check(0) == False", "assert check(1) == True", "assert check(9) == False", "assert check(10) == False", "assert check(20) == False", "assert check(100) == False", "assert check(1000) == False", "assert check(11) == False", "assert check(22) == False", "assert check(33) == False", "assert check(44) == False", "assert check(55) == False", "assert check(66) == False", "assert check(77) == False", "assert check(88) == False", "assert check(99) == False", "assert check(12) == False", "assert check(21) == False", "assert check(34) == False", "assert check(43) == False", "assert check(56) == False", "assert check(65) == False", "assert check(78) == False", "assert check(87) == False", "assert check(90) == False", "assert check(8) == False", "assert check(999) == False", "assert check(45) == False", "assert check(102) == False", "assert check(42) == False", "assert check(103) == False", "assert check(79) == False", "assert check(64) == False", "assert check(41) == False", "assert check(54) == False", "assert check(72) == False", "assert check(73) == True", "assert check(23) == False", "assert check(71) == False", "assert check(13) == False", "assert check(76) == False", "assert check(98) == False", "assert check(2) == False", "assert check(86) == False", "assert check(40) == False", "assert check(57) == False", "assert check(39) == False", "assert check(7) == False", "assert check(89) == False", "assert check(63) == False", "assert check(46) == False", "assert check(70) == False", "assert check(53) == False", "assert check(67) == False", "assert check(38) == False", "assert check(101) == False", "assert check(80) == False", "assert check(74) == False", "assert check(15) == False", "assert check(91) == False", "assert check(37) == False", "assert check(35) == False", "assert check(24) == False", "assert check(32) == False", "assert check(75) == False", "assert check(19) == False", "assert check(14) == False", "assert check(104) == False", "assert check(3) == False", "assert check(82) == False", "assert check(6) == False", "assert check(25) == False", "assert check(1001) == False", "assert check(85) == False", "assert check(81) == False", "assert check(5) == False", "assert check(92) == False", "assert check(18) == False", "assert check(4) == False", "assert check(83) == False", "assert check(52) == False", "assert check(105) == False", "assert check(31) == False", "assert check(30) == False", "assert check(93) == False", "assert check(36) == False", "assert check(1002) == False", "assert check(97) == False", "assert check(1003) == False", "assert check(95) == False", "assert check(26) == False", "assert check(1004) == False", "assert check(27) == False", "assert check(84) == False", "assert check(68) == False", "assert check(51) == False", "assert check(96) == False", "assert check(998) == False", "assert check(47) == False", "assert check(62) == False", "assert check(50) == False", "assert check(58) == False", "assert check(49) == False", "assert check(1005) == False", "assert check(69) == False", "assert check(29) == False", "assert check(997) == False", "assert check(17) == False", "assert check(94) == False", "assert check(28) == False", "assert check(59) == False", "assert check(48) == False", "assert check(16) == False", "assert check(60) == False", "assert check(61) == False", "assert check(107) == False", "assert check(1006) == False", "assert check(106) == False", "assert check(996) == False", "assert check(108) == False", "assert check(1007) == False", "assert check(995) == False", "assert check(1008) == False", "assert check(109) == False", "assert check(110) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the union of the elements of two given tuples and output them in sorted order.\nassert union_elements((3, 4, 5, 6),(5, 7, 4, 10) ) == (3, 4, 5, 6, 7, 10)\nYour code should pass the test:\nassert union_elements((3, 4, 5, 6),(5, 7, 4, 10) ) == (3, 4, 5, 6, 7, 10)", "test_list": [ "assert union_elements((3, 4, 5, 6),(5, 7, 4, 10) ) == (3, 4, 5, 6, 7, 10)", "assert union_elements((1, 2, 3, 4),(3, 4, 5, 6) ) == (1, 2, 3, 4, 5, 6)", "assert union_elements((11, 12, 13, 14),(13, 15, 16, 17) ) == (11, 12, 13, 14, 15, 16, 17)", "assert union_elements((1, 1, 2, 3, 4), (2, 3, 3, 4, 5)) == (1, 2, 3, 4, 5)", "assert union_elements((5, 7, 7, 4, 10), (3, 4, 5, 6, 6)) == (3, 4, 5, 6, 7, 10)", "assert union_elements((1, 2, 3, 4), (5, 6, 7, 8)) == (1, 2, 3, 4, 5, 6, 7, 8)", "assert union_elements((10, 20, 30, 40), (40, 50, 60, 70)) == (10, 20, 30, 40, 50, 60, 70)", "assert union_elements((1, 1, 2, 2, 3, 3), (3, 3, 4, 4, 5, 5)) == (1, 2, 3, 4, 5)", "assert union_elements((7, 8, 9, 10), (1, 2, 3, 4)) == (1, 2, 3, 4, 7, 8, 9, 10)", "assert union_elements((5, 15, 25, 35), (35, 45, 55, 65)) == (5, 15, 25, 35, 45, 55, 65)", "assert union_elements((1,), (1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (1,)", "assert union_elements((1, 2, 3, 4, 5, 6, 7), (7, 8, 9, 10, 11, 12)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12)", "assert union_elements((1, 2, 3), (4, 5, 6)) == (1, 2, 3, 4, 5, 6)", "assert union_elements((1, 2, 3), (3, 4, 5)) == (1, 2, 3, 4, 5)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4), (2, 3, 3, 4, 4, 5, 5, 6)) == (1, 2, 3, 4, 5, 6)", "assert union_elements((), (1, 2, 3)) == (1, 2, 3)", "assert union_elements((1, 2, 3), ()) == (1, 2, 3)", "assert union_elements((1, 2, 3), (1,)) == (1, 2, 3)", "assert union_elements((1, 2, 3), (3, 2, 1)) == (1, 2, 3)", "assert union_elements((1, 2, 3), (2, 4, 6)) == (1, 2, 3, 4, 6)", "assert union_elements((1, 2, 3), (4, 5, 6, 7)) == (1, 2, 3, 4, 5, 6, 7)", "assert union_elements((1, 2, 3, 4, 5), (6, 7, 8, 9, 10)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert union_elements((1, 2, 3, 4, 5, 6, 7, 8, 9), (9, 8, 7, 6, 5, 4, 3, 2, 1)) == (1, 2, 3, 4, 5, 6, 7, 8, 9)", "assert union_elements((1, 3, 5, 7, 9, 11, 13, 15), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)", "assert union_elements((1, 2, 3, 4, 5), (1, 2, 3, 4, 5)) == (1, 2, 3, 4, 5)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4), (5, 5, 6, 6, 7, 7, 8, 8)) == (1, 2, 3, 4, 5, 6, 7, 8)", "assert union_elements((1, 3, 3, 5, 7, 7, 9, 11, 13, 13, 15), (2, 4, 6, 8, 8, 10, 12, 14, 16)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)", "assert union_elements((1, 3, 5, 7, 9, 11, 13, 15), (2, 2, 4, 6, 6, 8, 10, 12, 14, 14, 16, 16)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)", "assert union_elements((1, 1, 1, 1, 1, 1, 1, 1, 1, 1), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 2, 4, 6, 8, 10, 12, 14, 16)", "assert union_elements((10, 20, 30, 30, 40), (40, 50, 60, 70)) == (10, 20, 30, 40, 50, 60, 70)", "assert union_elements((), (2, 2, 3)) == (2, 3)", "assert union_elements((), ()) == ()", "assert union_elements((6, 7, 8, 9, 10, 6), (6, 7, 8, 9, 10, 7)) == (6, 7, 8, 9, 10)", "assert union_elements((35, 45, 55, 65), (35, 45, 55, 65)) == (35, 45, 55, 65)", "assert union_elements((1, 1, 2, 3, 3), (3, 3, 4, 4, 5, 5)) == (1, 2, 3, 4, 5)", "assert union_elements((1,), (1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (1, 2)", "assert union_elements((0, 2, 3), (4, 5, 6, 7)) == (0, 2, 3, 4, 5, 6, 7)", "assert union_elements((10, 20, 30, 30, 40), (40, 50, 60, 70, 70)) == (10, 20, 30, 40, 50, 60, 70)", "assert union_elements((1, 2, 3, 4, 5), (1, 2, 3, 4)) == (1, 2, 3, 4, 5)", "assert union_elements((1, 2, 3), (2, 3)) == (1, 2, 3)", "assert union_elements((), (True, False, True, False, True, False)) == (False, True)", "assert union_elements((1, 2, 3, 5, 5), (1, 2, 3, 5, 5)) == (1, 2, 3, 5)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4, 3), (1, 1, 2, 2, 3, 3, 4, 4)) == (1, 2, 3, 4)", "assert union_elements((1, 2, 3, 4, 5, 6, 7, 8, 9, 8), (9, 8, 7, 6, 5, 4, 3, 2, 1)) == (1, 2, 3, 4, 5, 6, 7, 8, 9)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4), (5, 6, 5, 6, 6, 7, 7, 8, 8)) == (1, 2, 3, 4, 5, 6, 7, 8)", "assert union_elements((1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1), (1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (1, 2)", "assert union_elements((10, 20, 30, 40, 10), (10, 20, 30, 40)) == (10, 20, 30, 40)", "assert union_elements((2, 2, 3), (2, 2, 3)) == (2, 3)", "assert union_elements((1, 2, 50, 3, 4, 5, 6, 7, 8, 9, 9), (9, 8, 7, 6, 5, 4, 3, 2, 1)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 50)", "assert union_elements((1, 3, 5, 7, 30, 9, 11, 13, 15), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 30)", "assert union_elements((1, 1, 1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1), (1, 1, 1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (1, 9)", "assert union_elements((8, 5, 6, 5, 6, 6, 7, 12, 8, 8), (5, 6, 5, 6, 6, 7, 12, 8, 11)) == (5, 6, 7, 8, 11, 12)", "assert union_elements((1, 3, 5, 7, 9, 11, 13, 15), (1, 3, 5, 7, 9, 11, 13, 15)) == (1, 3, 5, 7, 9, 11, 13, 15)", "assert union_elements((35, 36, 35, 45, 55), (36, 35, 45, 55)) == (35, 36, 45, 55)", "assert union_elements((1, 2, 3, 1), (4, 5, 6)) == (1, 2, 3, 4, 5, 6)", "assert union_elements((40, 50, 61, 70), (40, 50, 60, 70)) == (40, 50, 60, 61, 70)", "assert union_elements((40, 50, 60, 70, 70), (40, 50, 60, 70, 70)) == (40, 50, 60, 70)", "assert union_elements((1, 2, 3, 3), (1, 2, 3)) == (1, 2, 3)", "assert union_elements((2, 2, 3, 3), (2, 2, 3)) == (2, 3)", "assert union_elements((1, 2, 3), (11, 20, 1, 99, 2, 35, 1, 86)) == (1, 2, 3, 11, 20, 35, 86, 99)", "assert union_elements((1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1), (1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (1, 8)", "assert union_elements((10, 20, 30, 41, 20), (40, 50, 60, 70)) == (10, 20, 30, 40, 41, 50, 60, 70)", "assert union_elements((9, 16, 8, 7, 6, 5, 4, 3, 2, 1), (9, 16, 8, 7, 6, 5, 4, 3, 2, 1)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 16)", "assert union_elements((95.3833483813928,), (95.3833483813928,)) == (95.3833483813928,)", "assert union_elements((8, 6, 5, 6, 6, 7, 12, 8, 8), (5, 6, 5, 6, 6, 7, 12, 8, 11)) == (5, 6, 7, 8, 11, 12)", "assert union_elements((1, 60, 3), (1, 2, 3)) == (1, 2, 3, 60)", "assert union_elements((9,), (0,)) == (0, 9)", "assert union_elements((2, 5, 6), (2, 4, 6)) == (2, 4, 5, 6)", "assert union_elements((2, 3, 5, 3, 4, 5), (2, 3, 3, 4, 5)) == (2, 3, 4, 5)", "assert union_elements((5, 6, 6, 7, 7, 8, 8, 6), (5, 6, 6, 7, 7, 8, 8, 6)) == (5, 6, 7, 8)", "assert union_elements((1, 2, 70, 70), (11, 20, 1, 99, 2, 35, 1, 86)) == (1, 2, 11, 20, 35, 70, 86, 99)", "assert union_elements((36, 1, 2, 3, 3), (1, 3, 3)) == (1, 2, 3, 36)", "assert union_elements((0, 1), (0, 0)) == (0, 1)", "assert union_elements((2, 60, 6, 8, 10, 12, 14, 16), (1, 3, 5, 30, 30, 9, 11, 13, 15)) == (1, 2, 3, 5, 6, 8, 9, 10, 11, 12, 13, 14, 15, 16, 30, 60)", "assert union_elements((1, 2, 3, 4), (5, 6, 7, 8, 8)) == (1, 2, 3, 4, 5, 6, 7, 8)", "assert union_elements((5, 15, 25, 35), (36, 45, 55, 65)) == (5, 15, 25, 35, 36, 45, 55, 65)", "assert union_elements((6, 7, 8, 9, 10, 6), (6, 7, 8, 9, 10, 6)) == (6, 7, 8, 9, 10)", "assert union_elements((0, 1, 1), (0, 0)) == (0, 1)", "assert union_elements((2, 60, 6, 8, 10, 12, 14, 16), (2, 60, 6, 8, 10, 12, 14, 16)) == (2, 6, 8, 10, 12, 14, 16, 60)", "assert union_elements((35, 45, 55, 65, 65), (35, 45, 55, 65, 65)) == (35, 45, 55, 65)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4), (1, 1, 2, 2, 3, 3, 4, 4)) == (1, 2, 3, 4)", "assert union_elements((1, 1, 3, 5, 5), (1, 2, 3, 5, 5)) == (1, 2, 3, 5)", "assert union_elements((1, 2, 2, 3, 3, 4, 4), (1, 1, 2, 2, 3, 3, 4, 4)) == (1, 2, 3, 4)", "assert union_elements((10, 20, 30, 30), (40, 50, 60, 70)) == (10, 20, 30, 40, 50, 60, 70)", "assert union_elements((11, 20, 99, 2, 35, 1, 45, 86), (11, 20, 1, 99, 2, 35, 1, 45, 86, 35)) == (1, 2, 11, 20, 35, 45, 86, 99)", "assert union_elements((69, 40, 50, 60, 70, 70), (40, 50, 60, 70, 70)) == (40, 50, 60, 69, 70)", "assert union_elements((6, 7, 8, 9, 10), (1, 2, 3, 4, 5)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert union_elements((11, 20, 1, 99, 2, 35, 1, 87, 86), (11, 20, 1, 99, 2, 35, 1, 86)) == (1, 2, 11, 20, 35, 86, 87, 99)", "assert union_elements((4, 5, 6, 7, 4), (4, 5, 6, 7)) == (4, 5, 6, 7)", "assert union_elements((20, 30, 40), (20, 30, 14, 40)) == (14, 20, 30, 40)", "assert union_elements((1, 1, 2, 3, 3), (3, 0, 4, 4, 5, 5)) == (0, 1, 2, 3, 4, 5)", "assert union_elements((2, 3, 5, 3, 4, 5), (2, 3, 5, 3, 4, 5)) == (2, 3, 4, 5)", "assert union_elements((7, 8, 9, 2, 10), (7, 8, 9, 10)) == (2, 7, 8, 9, 10)", "assert union_elements((11, 20, 99, 2, 35, 0, 45, 86), (11, 20, 99, 2, 35, 1, 45, 86)) == (0, 1, 2, 11, 20, 35, 45, 86, 99)", "assert union_elements((1, 40, 3, 3, 5, 7, 7, 9, 11, 13, 13, 15), (1, 3, 3, 5, 7, 7, 9, 11, 13, 13, 15)) == (1, 3, 5, 7, 9, 11, 13, 15, 40)", "assert union_elements((1, 1, 2, 3, 1), (1, 1, 2, 3, 3, 1)) == (1, 2, 3)", "assert union_elements((1, 3, 3, 5, 7, 7, 9, 11, 13, 13, 15), (1, 40, 3, 3, 5, 7, 7, 9, 11, 13, 60, 15)) == (1, 3, 5, 7, 9, 11, 13, 15, 40, 60)", "assert union_elements((1, 3, 5, 7, 9, 11, 13, 15), (2, 4, 6, 8, 10, 12, 14, 16, 8)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)", "assert union_elements((2, 3), (4, 5, 6, 7)) == (2, 3, 4, 5, 6, 7)", "assert union_elements((2, 3), (2, 4, 6)) == (2, 3, 4, 6)", "assert union_elements((7, 8, 9, 2, 10), (7, 8, 9, 10, 9)) == (2, 7, 8, 9, 10)", "assert union_elements((1, 2, 3), (1, 2, 3)) == (1, 2, 3)", "assert union_elements((1, 3), (1, 3, 3)) == (1, 3)", "assert union_elements((5, 6, 5, 6, 6, 9, 7, 11, 8, 11, 11), (5, 6, 5, 6, 6, 9, 7, 12, 8, 11)) == (5, 6, 7, 8, 9, 11, 12)", "assert union_elements((2, 4, 5, 8, 10, 12, 14, 16), (2, 4, 6, 8, 10, 12, 14, 16)) == (2, 4, 5, 6, 8, 10, 12, 14, 16)", "assert union_elements((10, 20, 30, 40), (41, 40, 50, 60, 70)) == (10, 20, 30, 40, 41, 50, 60, 70)", "assert union_elements((1,), (87, 1)) == (1, 87)", "assert union_elements((2, 4, 6), (2, 6)) == (2, 4, 6)", "assert union_elements((1, 2, 2, 3), (1, 2, 3)) == (1, 2, 3)", "assert union_elements((1, 2, 3, 4, 3), (5, 6, 7, 8)) == (1, 2, 3, 4, 5, 6, 7, 8)", "assert union_elements((5, 5, 6, 7, 7, 8, 8, 6), (5, 5, 6, 6, 7, 7, 8, 8)) == (5, 6, 7, 8)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4), (5, 6, 5, 6, 6, 7, 7, 30, 8)) == (1, 2, 3, 4, 5, 6, 7, 8, 30)", "assert union_elements((3, 4, 3), (3, 4)) == (3, 4)", "assert union_elements((10, 20, 30, 30, 30), (40, 50, 60, 70)) == (10, 20, 30, 40, 50, 60, 70)", "assert union_elements((20, 30, 30), (40, 50, 60, 70)) == (20, 30, 40, 50, 60, 70)", "assert union_elements((4, 5, 30, 7), (4, 5, 6, 7)) == (4, 5, 6, 7, 30)", "assert union_elements((1, 1, 2, 2, 3, 3, 4, 4, 3), (6, 1, 2, 2, 3, 3, 4, 4)) == (1, 2, 3, 4, 6)", "assert union_elements((-14, -59, -4, 74, 36), ()) == (-59, -14, -4, 36, 74)", "assert union_elements((1,), (1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (1,)", "assert union_elements((1, 2, 3, 4), (5, 6, 87, 7, 9)) == (1, 2, 3, 4, 5, 6, 7, 9, 87)", "assert union_elements((1, 2, 3, 1), (5, 5, 6)) == (1, 2, 3, 5, 6)", "assert union_elements((1, 1), (1,)) == (1,)", "assert union_elements((9, 16, 8, 7, 6, 5, 4, 3, 2, 1), (30, 16, 8, 7, 6, 5, 4, 3, 2, 1)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 16, 30)", "assert union_elements((35, 45, 55, 65), (45, 55, 65)) == (35, 45, 55, 65)", "assert union_elements((2, 3), (41, 2, 4, 6)) == (2, 3, 4, 6, 41)", "assert union_elements((2, 3), (4, 6)) == (2, 3, 4, 6)", "assert union_elements((2, 3, 3, 4, 4), (2, 3, 3, 4, 5)) == (2, 3, 4, 5)", "assert union_elements((5, 6, 5, 6, 6, 7, 7, 8, 8), (5, 6, 5, 6, 6, 7, 7, 8, 8)) == (5, 6, 7, 8)", "assert union_elements((5, -14, 1), (1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1)) == (-14, 1, 5)", "assert union_elements((1, 2, 3, 4), (1, 2, 3, 4)) == (1, 2, 3, 4)", "assert union_elements((2, 3, 3, 4, 4), (2, 3, 3, 4, 4)) == (2, 3, 4)", "assert union_elements((1, 2, 3, 2), (11, 20, 1, 99, 2, 35, 1, 86)) == (1, 2, 3, 11, 20, 35, 86, 99)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the length of the longest sublists.\nassert Find_Max_Length([[1],[1,4],[5,6,7,8]]) == 4\nYour code should pass the test:\nassert Find_Max_Length([[1],[1,4],[5,6,7,8]]) == 4", "test_list": [ "assert Find_Max_Length([[1],[1,4],[5,6,7,8]]) == 4", "assert Find_Max_Length([[0,1],[2,2,],[3,2,1]]) == 3", "assert Find_Max_Length([[7],[22,23],[13,14,15],[10,20,30,40,50]]) == 5", "assert Find_Max_Length([[], [], []]) == 0", "assert Find_Max_Length([[[[[1]]]]]) == 1", "assert Find_Max_Length([[[[[1]], [[2]], [[3]]]]]) == 1", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3], [4, 5], [6, 7, 8], [9]], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [[25, 26]], [[27, 28, 29], [30, 31, 32], [33, 34], [35, 36, 37, 38, 39, 40], [41, 42, 43]]]) == 5", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[True, True, False, False], [], [], []]) == 4", "assert Find_Max_Length([[[6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[17], [18, 19, 20], [21, 22], [24, 25, 26, 27], [17]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22], [24, 25, 26, 27], [17]]]) == 5", "assert Find_Max_Length([[[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[17, 17], [18, 19, 20], [21, 22], [17, 17], [24, 25, 26, 27], [17, 17]], [[17, 17], [18, 19, 20], [21, 22], [17, 17], [24, 25, 26, 27], [17, 17]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[17, 17], [18, 19, 20], [21, 22], [17, 17], [24, 25, 26, 27], [17, 17]]]) == 6", "assert Find_Max_Length([[[[[1]]]], [[[[1]]]]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[32]]]], [[[[32]]]], [[[[32]]]]]) == 1", "assert Find_Max_Length([[[[[]]]], [[[[]]]], [[[[]]]], [[[[]]]]]) == 1", "assert Find_Max_Length([[[11, 12], [13, 14, 15, 16], [11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[]]], [[[]]]], [[[[]]], [[[]]]], [[[[]]], [[[]]]], [[[[]]], [[[]]]]]) == 2", "assert Find_Max_Length([[[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]]]) == 3", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[12, 11, 12], [12, 11, 12], [13, 14, 15, 16]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3], [4, 5], [6, 7, 8], [9]], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [[25, 26]], [[32, 27, 28, 29], [30, 31, 32], [33, 34], [35, 36, 37, 38, 39, 40], [32, 27, 28, 29], [41, 42, 43]]]) == 6", "assert Find_Max_Length([[True, True, False, False], [], [True, 'oUycV', 'zar', None, 'v', False, True, False, False, 89.01601789196613], []]) == 10", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10], [8, 9, 10]], [[11, 12]], [[17], [18, 20], [21, 22, 23], [18, 20], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10], [8, 9, 10]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10], [8, 9, 10]], [[11, 12]], [[17], [18, 20], [21, 22, 23], [18, 20], [24, 25, 26, 27]]]) == 5", "assert Find_Max_Length([[[11, 12], [13, 14, 15, 16], [11, 12]]]) == 3", "assert Find_Max_Length([[], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[18], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [], [[18], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[True, True, False, False], [False, True, True, True, False, False, False, False, True], [], [], [True, True, False, False]]) == 9", "assert Find_Max_Length([[], [], [18]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]]]) == 4", "assert Find_Max_Length([[[11, 12], [13, 14, 15, 16]]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[11, 12], [13, 14, 15, 16]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[11, 12]]]) == 4", "assert Find_Max_Length([[], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], []]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[6, 7, 6], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[[], []]], [[[], []]], [[[], []]]]) == 1", "assert Find_Max_Length([[[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [24, 25, 26, 27]], [[11, 12], [13, 14, 15, 16], [11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [24, 25, 26, 27]]]) == 5", "assert Find_Max_Length([[[[[], []]]], [[[[], []]]], [[[[], []]]], [[[[], []]]], [[[[], []]]]]) == 1", "assert Find_Max_Length([[[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [24, 25, 26, 27]], [[11, 12], [13, 14, 15, 16], [11, 12], [13, 14, 15, 16]]]) == 5", "assert Find_Max_Length([[[6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[6, 7], [8, 9, 10]]]) == 4", "assert Find_Max_Length([[[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[36, 13, 14, 15, 16]], [[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[36, 13, 14, 15, 16]], [[36, 13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[]], [[]]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]]]) == 3", "assert Find_Max_Length([[[[], []], [[], []]]]) == 2", "assert Find_Max_Length([[True, True, False, False], [False, True, True, True, False, False, False, False, True], [], [], [True, True, False, False], [True, True, False, False]]) == 9", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]]]) == 3", "assert Find_Max_Length([[], [], [], []]) == 0", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[12, 11, 12], [12, 11, 12], [13, 14, 15, 16]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]]]) == 2", "assert Find_Max_Length([[], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[18], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[18], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3], [4, 5], [6, 7, 8], [9]], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [[25, 26]]]) == 5", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 23, 9, 10]], [[1, 2, 3, 4, 5], [6, 7], [8, 23, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[-29.953961965754488, 89.01601789196613, 89.01601789196613, 89.01601789196613, -13.248116391508603], [18]]) == 5", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8], [1, 2, 3, 4, 5]], [[11, 12], [13, 14, 15, 16]], [[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8], [1, 2, 3, 4, 5]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 5", "assert Find_Max_Length([[[1, 2, 3], [4, 5], [6, 7, 8], [9]], [[25, 26], [25, 26]], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [[25, 26], [25, 26]]]) == 5", "assert Find_Max_Length([[[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]]]]) == 1", "assert Find_Max_Length([[[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [24, 25, 26, 27]], [[11, 12], [13, 14, 15, 16, 15], [11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [24, 25, 26, 27]]]) == 5", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]], [[11, 12]], [[17], [18, 19, 20], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10]]]) == 3", "assert Find_Max_Length([[[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]]]) == 2", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]]]) == 2", "assert Find_Max_Length([[[[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]]], [[[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]], [[[1, 2], [3, 4, 4], [3, 4, 4], [5, 6]], [[7, 8], [9, 10]]]]]) == 2", "assert Find_Max_Length([[[], []], [[], []], [[], []]]) == 2", "assert Find_Max_Length([[[11, 12], [13, 14, 15], [13, 14, 15]], [[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[11, 12], [13, 14, 15], [13, 14, 15]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]], [[[7, 8], [9, 10]]]]]) == 3", "assert Find_Max_Length([[[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]], [[[[True], None, -34.7782057789035], []], [[[True], None, -34.7782057789035], []]]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5, 2], [6, 7], [1, 2, 3, 4, 5, 2], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]]]) == 5", "assert Find_Max_Length([[[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23]], [[25, 26]], [[27, 28, 29], [30, 31, 32], [33, 34], [35, 36, 37, 38, 39, 40], [41, 42, 43]]]) == 5", "assert Find_Max_Length([[[1, 2, 3], [4, 5], [6, 7, 8], [9]], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [[25, 26]], [[32, 27, 28, 29], [30, 31, 32], [33, 34], [35, 36, 37, 38, 39, 40], [32, 27, 28, 29], [41, 42, 43]], [[25, 26]]]) == 6", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]], [[[[7, 8], [9, 10]], [[7, 8], [9, 10]]], [[[7, 8], [9, 10]], [[7, 8], [9, 10]]]]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[11, 12], [13, 14, 15, 16]]]) == 4", "assert Find_Max_Length([[[[[]]], [[[]]]], [[[[]]], [[[]]]], [[[[]]], [[[]]]], [[[[]]], [[[]]]], [[[[]]], [[[]]]], [[[[]]], [[[]]]]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5, 2], [6, 7], [1, 2, 3, 4, 5, 2], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23], [21, 22, 23]]]) == 6", "assert Find_Max_Length([[[1, 2, 3, 4, 5, 2], [6, 7, 6], [1, 2, 3, 4, 5, 2], [6, 7, 6], [22, 8, 9, 10], [22, 8, 9, 10]], [[1, 2, 3, 4, 5, 2], [6, 7, 6], [1, 2, 3, 4, 5, 2], [6, 7, 6], [22, 8, 9, 10], [22, 8, 9, 10]], [[1, 2, 3, 4, 5, 2], [6, 7, 6], [1, 2, 3, 4, 5, 2], [6, 7, 6], [22, 8, 9, 10], [22, 8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23], [21, 22, 23]]]) == 6", "assert Find_Max_Length([[], [[1, 2, 3], [4, 5], [6, 7, 8], [9]], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [], [[32, 27, 28, 29], [30, 31, 32], [33, 34], [35, 36, 37, 38, 39, 40], [32, 27, 28, 29], [41, 42, 43]], []]) == 6", "assert Find_Max_Length([[True, True, False, False], ['fGZxz'], [True, 'oUycV', 'zar', None, 'v', False, True, False, False, 89.01601789196613], []]) == 10", "assert Find_Max_Length([[[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]], [[[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]], [[[1, 2], [3, 4], [5, 6]], [[7, 8], [9, 10]], [[1, 2], [3, 4], [5, 6]]]]]) == 3", "assert Find_Max_Length([[True, False, False, False], [False, True, True, True, False, False, False, False, True], [True, False, False, False], [], ['oUycV', 'fGZxz'], [], [True, False, False, False]]) == 9", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[], [[10, 11, 12, 13, 14], [15], [16, 17], [18, 19, 20], [21, 22, 23, 24]], [], [[32, 27, 28, 29], [30, 31, 32], [33, 34], [35, 36, 37, 38, 39, 40], [32, 27, 28, 29], [41, 42, 43]], [], [[1, 2, 3], [4, 5], [6, 7, 8], [9]]]) == 6", "assert Find_Max_Length([[-34.7782057789035, 58.961234853425736, -13.248116391508603, -29.953961965754488, 89.01601789196613, 20.346774353093892, -13.248116391508603, -34.7782057789035], [], [], [False, False, True, False, True], [], [False, False, True, False, True]]) == 8", "assert Find_Max_Length([[[1, 2, 3, 4, 5, 2], [6, 7], [1, 2, 3, 4, 5, 2], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]]]) == 5", "assert Find_Max_Length([[[1, 2, 3, 4, 8, 5, 2], [1, 2, 3, 4, 8, 5, 2], [6, 7], [1, 2, 3, 4, 8, 5, 2], [8, 9, 10]], [[1, 2, 3, 4, 8, 5, 2], [1, 2, 3, 4, 8, 5, 2], [6, 7], [1, 2, 3, 4, 8, 5, 2], [8, 9, 10]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23], [21, 22, 23]], [[1, 2, 3, 4, 8, 5, 2], [1, 2, 3, 4, 8, 5, 2], [6, 7], [1, 2, 3, 4, 8, 5, 2], [8, 9, 10]]]) == 6", "assert Find_Max_Length([[[-68.16625979003155, -62.96554521379542, -86.85137099894868, 7.690185997395233, -34.7782057789035], []], [[-68.16625979003155, -62.96554521379542, -86.85137099894868, 7.690185997395233, -34.7782057789035], []], [[-68.16625979003155, -62.96554521379542, -86.85137099894868, 7.690185997395233, -34.7782057789035], []], [[-68.16625979003155, -62.96554521379542, -86.85137099894868, 7.690185997395233, -34.7782057789035], []]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7], [8, 9, 10], [8, 9, 10]], [[11, 12]], [[17], [18, 20], [21, 22, 23, 22], [18, 20], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10], [8, 9, 10]], [[1, 2, 3, 4, 5], [6, 7], [8, 9, 10], [8, 9, 10]], [[11, 12]], [[17], [18, 20], [21, 22, 23, 22], [18, 20], [24, 25, 26, 27]]]) == 5", "assert Find_Max_Length([[], [True, True, True, False, True, True, True, True, True, True], [], [], [], []]) == 10", "assert Find_Max_Length([[[1, 2, 3, 4, 5, 2], [6, 7], [1, 2, 3, 4, 5, 2], [8, 9, 10]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]], [[18, 19, 20], [21, 22, 23], [24, 25, 26, 27], [21, 22, 23]]]) == 4", "assert Find_Max_Length([[[18, 19, 20], [26, 22, 23], [26, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [26, 22, 23], [26, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [26, 22, 23], [26, 22, 23], [24, 25, 26, 27]], [[18, 19, 20], [26, 22, 23], [26, 22, 23], [24, 25, 26, 27]]]) == 4", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8], [1, 2, 3, 4, 5]], [[1, 2, 3, 4, 5], [8, 9, 10, 8], [6, 7], [8, 9, 10, 8], [1, 2, 3, 4, 5]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]]]) == 5", "assert Find_Max_Length([[[], [False]], [[], [False]], [[], [False]], [[], [False]]]) == 2", "assert Find_Max_Length([[[1, 2, 3, 4, 5], [6, 7]], [[11, 12], [13, 14, 15, 16]], [[17], [18, 19, 20], [21, 22, 23], [24, 25, 26, 27]], [[1, 2, 3, 4, 5], [6, 7]]]) == 4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract values between quotation marks from a string.\nassert extract_values('\"Python\", \"PHP\", \"Java\"')==['Python', 'PHP', 'Java']\nYour code should pass the test:\nassert extract_values('\"Python\", \"PHP\", \"Java\"')==['Python', 'PHP', 'Java']", "test_list": [ "assert extract_values('\"Python\", \"PHP\", \"Java\"')==['Python', 'PHP', 'Java']", "assert extract_values('\"python\",\"program\",\"language\"')==['python','program','language']", "assert extract_values('\"red\",\"blue\",\"green\",\"yellow\"')==['red','blue','green','yellow']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function which takes a list of integers and counts the number of possible unordered pairs where both elements are unequal.\nassert count_Pairs([1,2,1],3) == 2\nYour code should pass the test:\nassert count_Pairs([1,2,1],3) == 2", "test_list": [ "assert count_Pairs([1,2,1],3) == 2", "assert count_Pairs([1,1,1,1],4) == 0", "assert count_Pairs([1,2,3,4,5],5) == 10", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 10) == 45", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12], 12) == 66", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 4, 5, 5], 10) == 40", "assert count_Pairs([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 10) == 45", "assert count_Pairs([1, 2, 1, 2, 1, 2], 6) == 9", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10], 11) == 54", "assert count_Pairs([10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 100], 11) == 54", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 14) == 81", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10], 20) == 135", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 7, 6], 2) == 1", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 70, 9, 10, 10, 10, 10, 10, 7, 6], 2) == 1", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 10, 10, 10, 10, 7, 6], 2) == 1", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 7, 9, 11, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10], 20) == 144", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0], 10) == 41", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 9) == 36", "assert count_Pairs([1, 1, 2, 2, 3, 3, 5, 4, 4, 5], 10) == 40", "assert count_Pairs([1, 2, 4, 5, 6, 7, 8, 9, 10, 10, 2], 11) == 53", "assert count_Pairs([1, 2, 3, 4, 5, 6, 70, 8, 9, 10], 10) == 45", "assert count_Pairs([10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 100], 7) == 21", "assert count_Pairs([1, 2, 4, 5, 6, 7, 8, 9, 10, 10, 2], 10) == 44", "assert count_Pairs([10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 80], 10) == 45", "assert count_Pairs([1, 2, 1, 2, 1, 2, 2], 6) == 9", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 13) == 72", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10], 3) == 3", "assert count_Pairs([1, 2, 3, 7, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 13) == 74", "assert count_Pairs([1, 2, 4, 5, 6, 7, 8, 9, 10, 10, 2, 10], 10) == 44", "assert count_Pairs([1, 2, 3, 4, 5, 6, 70, 8, 9, 10], 9) == 36", "assert count_Pairs([1, 2, 3, 4, 5, 6, 70, 8, 9, 10, 9], 9) == 36", "assert count_Pairs([1, 2, 3, 7, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 8) == 27", "assert count_Pairs([20, 2, 3, 4, 5, 6, 70, 8, 9, 10], 9) == 36", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 2], 10) == 45", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 70, 9, 10, 10, 6, 10, 10, 10, 7, 6], 2) == 1", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0], 4) == 4", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 2], 12) == 66", "assert count_Pairs([1, 2, 3, 4, 5, 6, 8, 8, 9, 10], 9) == 35", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 4], 13) == 72", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0, 3], 3) == 2", "assert count_Pairs([1, 2, 4, 5, 6, 70, 8, 9, 10, 1], 10) == 44", "assert count_Pairs([1, 2, 1, 2, 1, 2, 2], 7) == 12", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0, 5], 4) == 4", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 10, 11, 12], 12) == 65", "assert count_Pairs([1, 1, 2, 2, 3, 3, 5, 4, 4, 5], 3) == 2", "assert count_Pairs([10, 20, 29, 40, 50, 60, 70, 80, 90, 100, 80], 10) == 45", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 7, 6, 3], 2) == 1", "assert count_Pairs([8, 1, 1, 2, 2, 3, 3, 4, 5, 5, 0], 10) == 41", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 2, 6], 8) == 28", "assert count_Pairs([1, 2, 4, 5, 6, 7, 8, 9, 10, 10, 2, 10, 6], 10) == 44", "assert count_Pairs([1, 1, 2, 2, 3, 3, 5, 4, 4, 5], 9) == 32", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 70, 9, 10, 10, 10, 10, 10, 7, 6], 1) == 0", "assert count_Pairs([1, 2, 1, 2, 1, 2, 2, 2], 6) == 9", "assert count_Pairs([1, 2, 3, 4, 5, 0, 6, 70, 8, 9, 10], 9) == 36", "assert count_Pairs([1, 2, 4, 3, 4, 5, 6, 7, 8, 9, 10, 10], 11) == 54", "assert count_Pairs([1, 2, 3, 4, 5, 6, 70, 8, 60, 9, 10], 5) == 10", "assert count_Pairs([1, 2, 3, 4, 5, 6, 70, 8, 9, 10, 10], 10) == 45", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 2, 6], 9) == 36", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0, 5, 3], 4) == 4", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 12) == 63", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 12, 2], 12) == 65", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 2, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10], 20) == 144", "assert count_Pairs([1, 2, 3, 4, 5, 29, 6, 7, 8, 9, 10, 2], 10) == 45", "assert count_Pairs([1, 2, 3, 7, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 12) == 64", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 4, 10, 10], 12) == 63", "assert count_Pairs([1, 1, 2, 1, 2, 2, 2], 7) == 12", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 4, 10], 9) == 36", "assert count_Pairs([10, 20, 30, 50, 60, 70, 80, 90, 100, 100], 5) == 10", "assert count_Pairs([8, 1, 1, 2, 2, 3, 3, 5, 5, 0], 10) == 41", "assert count_Pairs([1, 2, 3, 4, 5, 7, 8, 9, 10, 13, 10], 10) == 45", "assert count_Pairs([1, 2, 3, 7, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 10], 9) == 35", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 4, 10, 6], 9) == 36", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 2, 6], 10) == 45", "assert count_Pairs([1, 2, 3, 4, 5, 4, 6, 7, 7, 9, 11, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10], 20) == 152", "assert count_Pairs([1, 1, 2, 3, 3, 4, 5, 70, 0, 3], 3) == 2", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 4, 10, 1], 9) == 36", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 10, 10, 10, 10, 7, 6, 7], 2) == 1", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 70, 9, 10, 10, 6, 10, 10, 10, 7, 6], 12) == 64", "assert count_Pairs([1, 2, 3, 4, 7, 80, 5, 6, 7, 8, 9, 10], 9) == 35", "assert count_Pairs([1, 2, 4, 3, 4, 6, 7, 8, 9, 10, 10], 11) == 53", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 20, 5, 0, 5, 2], 4) == 4", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 2, 9, 6], 9) == 36", "assert count_Pairs([1, 2, 3, 4, 5, 50, 8, 8, 9, 10], 9) == 35", "assert count_Pairs([1, 2, 3, 4, 5, 6, 8, 8, 9, 10], 8) == 27", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 1, 0, 3], 3) == 2", "assert count_Pairs([1, 2, 4, 5, 6, 70, 8, 9, 10, 1], 7) == 21", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 4, 10], 10) == 45", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0, 5, 3], 9) == 32", "assert count_Pairs([10, 20, 30, 40, 50, 60, 70, 79, 90, 100, 100], 11) == 54", "assert count_Pairs([1, 2, 3, 7, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10], 6) == 15", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 5, 5, 0, 5, 5], 2) == 0", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 30, 10, 10, 10, 10, 10, 10], 21) == 155", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 7, 9, 11, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 7], 20) == 144", "assert count_Pairs([1, 2, 1, 2, 11, 1, 2, 2], 7) == 15", "assert count_Pairs([1, 3, 2, 1, 2, 1, 2, 2], 6) == 11", "assert count_Pairs([1, 2, 3, 4, 5, 6, 8, 8, 9, 10, 3], 9) == 35", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 30, 10, 10, 10, 10, 10, 10, 10, 10], 21) == 155", "assert count_Pairs([1, 2, 3, 5, 6, 8, 8, 9, 10], 8) == 27", "assert count_Pairs([1, 1, 2, 1, 2, 2, 2], 6) == 9", "assert count_Pairs([1, 1, 2, 2, 3, 3, 4, 20, 5, 5, 0, 5, 3], 4) == 4", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 1, 10, 10, 10, 10, 7, 6, 7], 1) == 0", "assert count_Pairs([1, 2, 1, 2, 6, 2, 2], 6) == 11", "assert count_Pairs([1, 1, 2, 2, 3, 3, 5, 4, 1, 5, 4], 9) == 31", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, 10, 10, 7, 5, 3], 2) == 1", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 70, 9, 10, 10, 10, 10, 10, 7, 6, 10], 1) == 0", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 2], 2) == 1", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 1, 10, 10, 10, 10, 7, 9, 6, 7], 1) == 0", "assert count_Pairs([1, 2, 4, 5, 6, 7, 8, 60, 9, 10, 2], 11) == 54", "assert count_Pairs([1, 2, 3, 4, 5, 6, 50, 7, 70, 9, 10, 10, 10, 10, 10, 7, 6, 10], 1) == 0", "assert count_Pairs([1, 2, 2, 6, 2, 2, 2], 6) == 9", "assert count_Pairs([1, 2, 3, 4, 7, 80, 5, 6, 7, 8, 9, 10], 10) == 44", "assert count_Pairs([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 2, 6, 12], 10) == 45" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to split a string into characters.\nassert split('python') == ['p','y','t','h','o','n']\nYour code should pass the test:\nassert split('python') == ['p','y','t','h','o','n']", "test_list": [ "assert split('python') == ['p','y','t','h','o','n']", "assert split('Name') == ['N','a','m','e']", "assert split('program') == ['p','r','o','g','r','a','m']", "assert split('') == []", "assert split('String with spaces') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split(' String with spaces ') == [' ', ' ', ' ', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', ' ', ' ', ' ']", "assert split('@!$p1y2t3h4o5n6') == ['@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split(' ') == [' ']", "assert split('\\t') == ['\\t']", "assert split('\\n') == ['\\n']", "assert split('\\r') == ['\\r']", "assert split('\\t\\n\\r ') == ['\\t', '\\n', '\\r', ' ', ' ', ' ']", "assert split('String with sp aces') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('String wit h spa\\t\\n\\r ces') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', ' ', 'h', ' ', 's', 'p', 'a', '\\t', '\\n', '\\r', ' ', ' ', ' ', 'c', 'e', 's']", "assert split('String wString with spacesith spaces') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('aces') == ['a', 'c', 'e', 's']", "assert split('String withh sp aces') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('\\races') == ['\\r', 'a', 'c', 'e', 's']", "assert split('\\n\\n') == ['\\n', '\\n']", "assert split('es') == ['e', 's']", "assert split('wStritng') == ['w', 'S', 't', 'r', 'i', 't', 'n', 'g']", "assert split('acs') == ['a', 'c', 's']", "assert split('withh') == ['w', 'i', 't', 'h', 'h']", "assert split('ceswit') == ['c', 'e', 's', 'w', 'i', 't']", "assert split('\\tsp') == ['\\t', 's', 'p']", "assert split('String with spaces\\t') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', '\\t']", "assert split('p') == ['p']", "assert split('Strin\\racesg wString with spacesith spaces') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('\\t\\n\\np') == ['\\t', '\\n', '\\n', 'p']", "assert split('ces') == ['c', 'e', 's']", "assert split('\\n\\n@!$p1y2t3h4o5n6') == ['\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('hh') == ['h', 'h']", "assert split('\\t\\n\\r ') == ['\\t', '\\n', '\\r', ' ', ' ', ' ', ' ']", "assert split('\\n\\n@!Strin\\racesg wString with spacesith spaces$p1y2t3h4o5n6') == ['\\n', '\\n', '@', '!', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('wStriString wit h spa\\t\\n\\r cesng') == ['w', 'S', 't', 'r', 'i', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', ' ', 'h', ' ', 's', 'p', 'a', '\\t', '\\n', '\\r', ' ', ' ', ' ', 'c', 'e', 's', 'n', 'g']", "assert split('spacesithString withh ssp aces') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', 'h', ' ', 's', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('SString with spacestring with sp aces') == ['S', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('SS\\racestring \\rng with sp aces') == ['S', 'S', '\\r', 'a', 'c', 'e', 's', 't', 'r', 'i', 'n', 'g', ' ', '\\r', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('ssp') == ['s', 's', 'p']", "assert split('acspaces$p1y2ts3h4o5n6es') == ['a', 'c', 's', 'p', 'a', 'c', 'e', 's', '$', 'p', '1', 'y', '2', 't', 's', '3', 'h', '4', 'o', '5', 'n', '6', 'e', 's']", "assert split('hspacesithString withh ssp aces') == ['h', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', 'h', ' ', 's', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('Strin\\racesg wString with spaspaces') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 's', 'p', 'a', 'c', 'e', 's']", "assert split('acesg') == ['a', 'c', 'e', 's', 'g']", "assert split('spacesithString') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g']", "assert split('acaesg') == ['a', 'c', 'a', 'e', 's', 'g']", "assert split('cesiwit') == ['c', 'e', 's', 'i', 'w', 'i', 't']", "assert split('\\n\\n@!$p1y42t3h4o5n6') == ['\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '4', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('Strin\\racesg wString with spacsesith spaces') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('\\n\\n@!$np1y42t3h4o5n6') == ['\\n', '\\n', '@', '!', '$', 'n', 'p', '1', 'y', '4', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('cesiwit\\r\\r') == ['c', 'e', 's', 'i', 'w', 'i', 't', '\\r', '\\r']", "assert split('spacsesith') == ['s', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h']", "assert split(' SS ') == [' ', 'S', 'S', ' ']", "assert split('\\nStrin\\racesg wString with spacsesith spaces') == ['\\n', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('ceswit@!Strin') == ['c', 'e', 's', 'w', 'i', 't', '@', '!', 'S', 't', 'r', 'i', 'n']", "assert split('ce\\n\\n@!Strin\\racesg wString with spacesith spaces$p1y2t3h4o5n6') == ['c', 'e', '\\n', '\\n', '@', '!', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('ce') == ['c', 'e']", "assert split('ceswit@!Strceswit@!Strinin') == ['c', 'e', 's', 'w', 'i', 't', '@', '!', 'S', 't', 'r', 'c', 'e', 's', 'w', 'i', 't', '@', '!', 'S', 't', 'r', 'i', 'n', 'i', 'n']", "assert split('Strin\\racesg wString with spaspacString wit h spa\\t\\n\\r cess') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 's', 'p', 'a', 'c', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', ' ', 'h', ' ', 's', 'p', 'a', '\\t', '\\n', '\\r', ' ', ' ', ' ', 'c', 'e', 's', 's']", "assert split('spacesithStringes') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', 'e', 's']", "assert split('hspacesithssp aces') == ['h', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 's', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('cesiwStrint') == ['c', 'e', 's', 'i', 'w', 'S', 't', 'r', 'i', 'n', 't']", "assert split('wStriString hspacesithssp aces cesng') == ['w', 'S', 't', 'r', 'i', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'h', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 's', 's', 'p', ' ', 'a', 'c', 'e', 's', ' ', ' ', 'c', 'e', 's', 'n', 'g']", "assert split('acSS\\racestring \\rng with sp acesesg') == ['a', 'c', 'S', 'S', '\\r', 'a', 'c', 'e', 's', 't', 'r', 'i', 'n', 'g', ' ', '\\r', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's', 'e', 's', 'g']", "assert split('hspacesith\\tsp') == ['h', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', '\\t', 's', 'p']", "assert split('Strin\\racesg wStrs') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 's']", "assert split('\\n\\n@!StString with sp aces$p1y2t3h4o5n6') == ['\\n', '\\n', '@', '!', 'S', 't', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('cesiwit\\r\\r\\tscessp') == ['c', 'e', 's', 'i', 'w', 'i', 't', '\\r', '\\r', '\\t', 's', 'c', 'e', 's', 's', 'p']", "assert split('hsptacesith\\tsp') == ['h', 's', 'p', 't', 'a', 'c', 'e', 's', 'i', 't', 'h', '\\t', 's', 'p']", "assert split('@!StString') == ['@', '!', 'S', 't', 'S', 't', 'r', 'i', 'n', 'g']", "assert split('accespaspacStringsiwits') == ['a', 'c', 'c', 'e', 's', 'p', 'a', 's', 'p', 'a', 'c', 'S', 't', 'r', 'i', 'n', 'g', 's', 'i', 'w', 'i', 't', 's']", "assert split('\\t\\n\\r \\races') == ['\\t', '\\n', '\\r', ' ', ' ', ' ', ' ', '\\r', 'a', 'c', 'e', 's']", "assert split('\\n\\n@!$p1y2t3h4o5n String with spaces ') == ['\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', ' ', ' ', ' ', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', ' ', ' ', ' ']", "assert split('a') == ['a']", "assert split(' String with@!$p1y42t3h4o5n6 spaces ') == [' ', ' ', ' ', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', '@', '!', '$', 'p', '1', 'y', '4', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6', ' ', 's', 'p', 'a', 'c', 'e', 's', ' ', ' ', ' ']", "assert split(' ') == [' ', ' ']", "assert split('String wStrwiting with spacesith spaces') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'S', 't', 'r', 'w', 'i', 't', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('\\nStrin\\racescesngg wString with spacsesith spaces') == ['\\n', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'c', 'e', 's', 'n', 'g', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('pp') == ['p', 'p']", "assert split('SString Strin\\racesg wString with spaspacString wit h spa\\t\\n\\r cesswith spacestring with sp aces') == ['S', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 's', 'p', 'a', 'c', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', ' ', 'h', ' ', 's', 'p', 'a', '\\t', '\\n', '\\r', ' ', ' ', ' ', 'c', 'e', 's', 's', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('Strin\\raScesg wString \\rwith spaspaces') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'S', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', '\\r', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 's', 'p', 'a', 'c', 'e', 's']", "assert split('String wStrwiting with spacesith spaces\\t\\n\\r ') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'S', 't', 'r', 'w', 'i', 't', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', '\\t', '\\n', '\\r', ' ', ' ', ' ']", "assert split(' p') == [' ', 'p']", "assert split('spacesithStringesspacesi pString') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', 'e', 's', 's', 'p', 'a', 'c', 'e', 's', 'i', ' ', 'p', 'S', 't', 'r', 'i', 'n', 'g']", "assert split('String with spactrwiting with spacesith spaces\\t\\n\\r \\t') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 't', 'r', 'w', 'i', 't', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', '\\t', '\\n', '\\r', ' ', ' ', ' ', '\\t']", "assert split('sptring') == ['s', 'p', 't', 'r', 'i', 'n', 'g']", "assert split('spa cesithStringesspacesi pString') == ['s', 'p', 'a', ' ', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', 'e', 's', 's', 'p', 'a', 'c', 'e', 's', 'i', ' ', 'p', 'S', 't', 'r', 'i', 'n', 'g']", "assert split('SStrspa cesithStringesspacesi pStringing') == ['S', 'S', 't', 'r', 's', 'p', 'a', ' ', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', 'e', 's', 's', 'p', 'a', 'c', 'e', 's', 'i', ' ', 'p', 'S', 't', 'r', 'i', 'n', 'g', 'i', 'n', 'g']", "assert split('SString Strin\\racesg wString with spaspacString wit h spa\\t\\n\\r cesswspaces$p1y@!$np1y42t3h4o5n62t3h4o5n6ith spacestring with sp aces') == ['S', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 's', 'p', 'a', 'c', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', ' ', 'h', ' ', 's', 'p', 'a', '\\t', '\\n', '\\r', ' ', ' ', ' ', 'c', 'e', 's', 's', 'w', 's', 'p', 'a', 'c', 'e', 's', '$', 'p', '1', 'y', '@', '!', '$', 'n', 'p', '1', 'y', '4', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's']", "assert split('\\n\\n@String wStrwiting with spacesith spacesy42t3h4o5n6') == ['\\n', '\\n', '@', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'S', 't', 'r', 'w', 'i', 't', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'y', '4', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('Strin\\racesg wString with spawStriString hspacesithssp aces cesnges') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'w', 'S', 't', 'r', 'i', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'h', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 's', 's', 'p', ' ', 'a', 'c', 'e', 's', ' ', ' ', 'c', 'e', 's', 'n', 'g', 'e', 's']", "assert split('Strin\\racegsg wString with acSS\\racestring \\rng with sp acesesgspacsesith spaces') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 'g', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 'a', 'c', 'S', 'S', '\\r', 'a', 'c', 'e', 's', 't', 'r', 'i', 'n', 'g', ' ', '\\r', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', ' ', 'a', 'c', 'e', 's', 'e', 's', 'g', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('SStrspa cesithStringescesi pSitringing') == ['S', 'S', 't', 'r', 's', 'p', 'a', ' ', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'n', 'g', 'e', 's', 'c', 'e', 's', 'i', ' ', 'p', 'S', 'i', 't', 'r', 'i', 'n', 'g', 'i', 'n', 'g']", "assert split('@\\n\\n@!$p1y2t3h4o5n6') == ['@', '\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6']", "assert split('SS') == ['S', 'S']", "assert split('spacesithStraingesspacesi pString') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'a', 'i', 'n', 'g', 'e', 's', 's', 'p', 'a', 'c', 'e', 's', 'i', ' ', 'p', 'S', 't', 'r', 'i', 'n', 'g']", "assert split('aString wi thhacesesgspacsesith sp \\n\\naces') == ['a', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', ' ', 't', 'h', 'h', 'a', 'c', 'e', 's', 'e', 's', 'g', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', ' ', '\\n', '\\n', 'a', 'c', 'e', 's']", "assert split('String with spactrwiting with spacesith spacehs\\t\\n\\r \\t') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 't', 'r', 'w', 'i', 't', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 'h', 's', '\\t', '\\n', '\\r', ' ', ' ', ' ', '\\t']", "assert split('spa cesithStricngesspacesi pString') == ['s', 'p', 'a', ' ', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'i', 'c', 'n', 'g', 'e', 's', 's', 'p', 'a', 'c', 'e', 's', 'i', ' ', 'p', 'S', 't', 'r', 'i', 'n', 'g']", "assert split('\\race\\n\\n@!$np1y42t3h4o5n6s') == ['\\r', 'a', 'c', 'e', '\\n', '\\n', '@', '!', '$', 'n', 'p', '1', 'y', '4', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6', 's']", "assert split('Sspaces\\t') == ['S', 's', 'p', 'a', 'c', 'e', 's', '\\t']", "assert split('acegsg') == ['a', 'c', 'e', 'g', 's', 'g']", "assert split('acesesgspacsesith') == ['a', 'c', 'e', 's', 'e', 's', 'g', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h']", "assert split('@\\n\\n@!$p1y2t3h4 String with spaces n6') == ['@', '\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', ' ', ' ', ' ', 'S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', ' ', ' ', ' ', 'n', '6']", "assert split('String with ispactrwiting with spacesith s \\t') == ['S', 't', 'r', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 'i', 's', 'p', 'a', 'c', 't', 'r', 'w', 'i', 't', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', ' ', 's', ' ', '\\t']", "assert split('\\t\\n\\r \\t ') == ['\\t', '\\n', '\\r', ' ', ' ', '\\t', ' ']", "assert split('n6Strin\\racesg wStrs') == ['n', '6', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 's']", "assert split('\\nStrin\\racescesngg wString with spacsesith spaces') == ['\\n', 'S', 't', 'r', 'i', 'n', '\\r', 'a', 'c', 'e', 's', 'c', 'e', 's', 'n', 'g', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's']", "assert split('\\n\\n@!$p1y2t3h4o5n Str ing with spaces ') == ['\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', ' ', ' ', ' ', 'S', 't', 'r', ' ', 'i', 'n', 'g', ' ', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 'c', 'e', 's', ' ', ' ', ' ']", "assert split('Strin\\raScesg wString \\riwith spaspaces') == ['S', 't', 'r', 'i', 'n', '\\r', 'a', 'S', 'c', 'e', 's', 'g', ' ', 'w', 'S', 't', 'r', 'i', 'n', 'g', ' ', '\\r', 'i', 'w', 'i', 't', 'h', ' ', 's', 'p', 'a', 's', 'p', 'a', 'c', 'e', 's']", "assert split('spacesith') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h']", "assert split('aStr ping wi thhacesesgspacsesith sp \\n\\naces') == ['a', 'S', 't', 'r', ' ', 'p', 'i', 'n', 'g', ' ', 'w', 'i', ' ', 't', 'h', 'h', 'a', 'c', 'e', 's', 'e', 's', 'g', 's', 'p', 'a', 'c', 's', 'e', 's', 'i', 't', 'h', ' ', 's', 'p', ' ', '\\n', '\\n', 'a', 'c', 'e', 's']", "assert split('spacesithStraing\\n\\n@!$p1y2t3h4o5n6esispacesi pString') == ['s', 'p', 'a', 'c', 'e', 's', 'i', 't', 'h', 'S', 't', 'r', 'a', 'i', 'n', 'g', '\\n', '\\n', '@', '!', '$', 'p', '1', 'y', '2', 't', '3', 'h', '4', 'o', '5', 'n', '6', 'e', 's', 'i', 's', 'p', 'a', 'c', 'e', 's', 'i', ' ', 'p', 'S', 't', 'r', 'i', 'n', 'g']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to get the sum of the digits of a non-negative integer.\nassert sum_digits(345)==12\nYour code should pass the test:\nassert sum_digits(345)==12", "test_list": [ "assert sum_digits(345)==12", "assert sum_digits(12)==3", "assert sum_digits(97)==16", "assert sum_digits(9876543210) == 45", "assert sum_digits(1234567890987654321) == 90", "assert sum_digits(1111111111111) == 13", "assert sum_digits(2147483647) == 46", "assert sum_digits(999999999999999999999999999999999) == 297", "assert sum_digits(987654321987654321987654321987654321) == 180", "assert sum_digits(10000000000000000000000000000000000000000000000000) == 1", "assert sum_digits(987654321012345678998765432101234567899876543210) == 225", "assert sum_digits(1234567890123456789012345678901234567890123456789) == 225", "assert sum_digits(987654321987654321) == 90", "assert sum_digits(0) == 0", "assert sum_digits(5) == 5", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000) == 1", "assert sum_digits(1234567890123456789012345678901234567890123456788) == 224", "assert sum_digits(1111111111110) == 12", "assert sum_digits(987654321987654322) == 91", "assert sum_digits(1000000000000000000000000000000000) == 1", "assert sum_digits(9876543211) == 46", "assert sum_digits(1234567890123456789012345678901234567890123456790) == 217", "assert sum_digits(1111111111112) == 14", "assert sum_digits(10000000000000000000000000000000000000000000000001) == 2", "assert sum_digits(987654321987654321987654321987654320) == 179", "assert sum_digits(9999999999999999999999999999999999999999999999999) == 441", "assert sum_digits(1234567890987654322) == 91", "assert sum_digits(1234567890123456789012345678901234567890123456791) == 218", "assert sum_digits(9999999999999999999999999999999999999999999999998) == 440", "assert sum_digits(987654321987654323) == 92", "assert sum_digits(1234567890987654323) == 92", "assert sum_digits(4) == 4", "assert sum_digits(1234567890987654320) == 89", "assert sum_digits(987654321987654324) == 93", "assert sum_digits(2147483648) == 47", "assert sum_digits(1234567890987654324) == 93", "assert sum_digits(987654321987654325) == 94", "assert sum_digits(1234567890123456789012345678901234567890123456787) == 223", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000001) == 2", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000002) == 3", "assert sum_digits(1) == 1", "assert sum_digits(1000000000000000000000000000000001) == 2", "assert sum_digits(1234567890987654319) == 97", "assert sum_digits(2) == 2", "assert sum_digits(987654321012345678998765432101234567899876543211) == 226", "assert sum_digits(1234567890987654318) == 96", "assert sum_digits(987654321987654320) == 89", "assert sum_digits(987654321987654326) == 95", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000003) == 4", "assert sum_digits(9999999999999999999999999999999999999999999999997) == 439", "assert sum_digits(9999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999) == 900", "assert sum_digits(64) == 10", "assert sum_digits(9876543212) == 47", "assert sum_digits(999999999999999999999999999999998) == 296", "assert sum_digits(987654321987654321987654321987654322) == 181", "assert sum_digits(1111111111113) == 15", "assert sum_digits(9999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999998) == 899", "assert sum_digits(1234567890987654317) == 95", "assert sum_digits(10000000000000000000000000000000000000000000000002) == 3", "assert sum_digits(1234567890987654316) == 94", "assert sum_digits(65) == 11", "assert sum_digits(9999999999999999999999999999999999999999999999995) == 437", "assert sum_digits(987654321987654321987654321987654323) == 182", "assert sum_digits(9876543214) == 49", "assert sum_digits(999999999999999999999999999999997) == 295", "assert sum_digits(1234567890123456789012345678901234567890123456786) == 222", "assert sum_digits(1000000000000000000000000000000002) == 3", "assert sum_digits(1111111111109) == 20", "assert sum_digits(1234567890987654315) == 93", "assert sum_digits(9876543213) == 48", "assert sum_digits(36) == 9", "assert sum_digits(1111111111114) == 16", "assert sum_digits(9999999999999999999999999999999999999999999999996) == 438", "assert sum_digits(62) == 8", "assert sum_digits(1234567890123456789012345678901234567890123456792) == 219", "assert sum_digits(1111111111115) == 17", "assert sum_digits(9999999999999999999999999999999999999999999999994) == 436", "assert sum_digits(2147483649) == 48", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000005) == 6", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000004) == 5", "assert sum_digits(2147483650) == 40", "assert sum_digits(987654321987654319) == 97", "assert sum_digits(9876543215) == 50", "assert sum_digits(63) == 9", "assert sum_digits(987654321987654318) == 96", "assert sum_digits(9876543216) == 51", "assert sum_digits(3) == 3", "assert sum_digits(66) == 12", "assert sum_digits(37) == 10", "assert sum_digits(9999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999996) == 897", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000006) == 7", "assert sum_digits(999999999999999999999999999999996) == 294", "assert sum_digits(9999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999995) == 896", "assert sum_digits(987654321987654327) == 96", "assert sum_digits(1234567890123456789012345678901234567890123456785) == 221", "assert sum_digits(987654321012345678998765432101234567899876543209) == 233", "assert sum_digits(10000000000000000000000000000000000000000000000003) == 4", "assert sum_digits(1000000000000000000000000000000003) == 4", "assert sum_digits(987654321987654328) == 97", "assert sum_digits(10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000007) == 8", "assert sum_digits(45) == 9", "assert sum_digits(9999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999994) == 895", "assert sum_digits(9876543217) == 52", "assert sum_digits(46) == 10", "assert sum_digits(9999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999999997) == 898", "assert sum_digits(6) == 6", "assert sum_digits(1111111111116) == 18", "assert sum_digits(61) == 7", "assert sum_digits(1234567890987654314) == 92", "assert sum_digits(1234567890987654313) == 91", "assert sum_digits(987654321987654321987654321987654324) == 183", "assert sum_digits(1234567890123456789012345678901234567890123456793) == 220", "assert sum_digits(1000000000000000000000000000000004) == 5", "assert sum_digits(60) == 6", "assert sum_digits(7) == 7", "assert sum_digits(35) == 8" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether a specified list is sorted or not.\nassert issort_list([1,2,4,6,8,10,12,14,16,17])==True\nYour code should pass the test:\nassert issort_list([1,2,4,6,8,10,12,14,16,17])==True", "test_list": [ "assert issort_list([1,2,4,6,8,10,12,14,16,17])==True", "assert issort_list([1, 2, 4, 6, 8, 10, 12, 14, 20, 17])==False", "assert issort_list([1, 2, 4, 6, 8, 10,15,14,20])==False", "assert issort_list([]) == True", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 12]) == True", "assert issort_list([9, 4, 7, 3, 1, 6, 8, 2, 5]) == False", "assert issort_list([2, 2, 3, 4, 1, 1, 3, 4]) == False", "assert issort_list([10, 8, 5, 7, 2, 4, 9, 6, 3, 1]) == False", "assert issort_list([2, 3, 4, 1, 4, 1, 3, 4]) == False", "assert issort_list([92.95564823643227, -98.33857708861429, -2.290411094930974, -82.09915106558478, -60.68800671675019, -60.68800671675019]) == False", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 12, 6]) == False", "assert issort_list([9, 4, 7, 3, 1, 6, 8, 2, 5, 8]) == False", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 12, 13, 6, 10]) == False", "assert issort_list([9, 4, 7, 3, 1, 5, 8, 2, 5]) == False", "assert issort_list(['AwjEwVgE', '', 'iTVHG', 'USyZK', 'EPA']) == False", "assert issort_list([2, 2, 10, 3, 4, 1, 1, 3, 4]) == False", "assert issort_list([9, 4, 7, 7, 3, 1, 6, 8, 2, 5, 2, 7]) == False", "assert issort_list(['AwjEwVgE', '', 'iTVHG', 'EPA']) == False", "assert issort_list(['AwjEwVgE', 'iiTVHG', 'EPA']) == False", "assert issort_list([9, 4, 9, 7, 7, 3, 1, 6, 8, 2, 5, 2, 7]) == False", "assert issort_list([2, 2, 10, 3, 4, 1, 1, 3, 3, 4]) == False", "assert issort_list([2, 2, 10, 4, 1, 1, 3, 4]) == False", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 12, 6, 6, 12]) == False", "assert issort_list([2, 2, 10, 3, 5, 1, 1, 3, 4]) == False", "assert issort_list(['AwjEwVgE', 'AwjEwVgE', 'iiGTVHG', 'iTVHG']) == False", "assert issort_list([2, 2, 10, 3, 4, 1, 3, 3, 4]) == False", "assert issort_list(['AwjEwVgE', 'iTVHG', 'USyZK', 'EPA', 'USyZK']) == False", "assert issort_list([2, 2, 10, 3, 5, 1, 1, 3, 4, 2]) == False", "assert issort_list(['AwjEwVgE', '', 'iTVHG', 'EPA', 'EPA', 'EPA', '']) == False", "assert issort_list(['AwjEwVgE', 'iiGTVHG', 'AwjEwVgE', 'iTVHG']) == False", "assert issort_list([2, 2, 10, 3, 4, 1, 1, 3, 3, 9, 4]) == False", "assert issort_list(['', 'iTVHG', 'EPA']) == False", "assert issort_list([1, 2, 4, 5, 4, 6, 8, 10, 10, 12, 12]) == False", "assert issort_list(['AwjEwVgE', '', 'USyZK', 'EPA']) == False", "assert issort_list([2, 8, 2, 10, 3, 4, 1, 1, 3, 3, 4, 2, 1]) == False", "assert issort_list([2, 10, 4, 1, 1, 3, 4]) == False", "assert issort_list([2, 11, 2, 10, 2, 3, 4, 9, 1, 3, 3, 4]) == False", "assert issort_list(['iiTVHG']) == True", "assert issort_list([9, 4, 7, 3, 6, 8, 2, 5, 8, 9]) == False", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 12, 6, 6, 12, 4]) == False", "assert issort_list([2, 10, 3, 5, 1, 1, 3, 4, 2]) == False", "assert issort_list([1, 4, 4, 6, 8, 10, 10, 12, 12, 10, 6, 12, 5]) == False", "assert issort_list([10, 4, 1, 1, 4]) == False", "assert issort_list([2, 3, 1, 4, 1, 3]) == False", "assert issort_list([9, 4, 7, 7, 3, 1, 6, 8, 13, 5, 2, 7]) == False", "assert issort_list([2, 10, 3, 4, 1, 1, 11, 4]) == False", "assert issort_list(['AwjEwVgE', '', 'iTVHG', 'EPA', 'EPA', 'EPA', 'PEPA', '']) == False", "assert issort_list([10, 8, 5, 4, 2, 4, 9, 6, 3, 1]) == False", "assert issort_list([2, 10, 5, 3, 5, 1, 1, 3, 4, 2]) == False", "assert issort_list([9, 4, 7, 3, 1, 6, 8, 5, 8]) == False", "assert issort_list(['iiTVHG', 'iiTVHG']) == True", "assert issort_list(['AwjEwVgE', 'AwjEwVVgE', '', 'iTVHG', 'USyZK', 'EPA']) == False", "assert issort_list([2, 10, 3, 5, 1, 1, 3, 4, 3]) == False", "assert issort_list(['AwjEwVgE', '', 'iTVHG', 'EPA', 'EPA', 'EPA', 'PEPA', '', 'EPA']) == False", "assert issort_list(['iiTVTHG', 'iiTVHG']) == False", "assert issort_list([2, 2, 1, 4, 1, 3]) == False", "assert issort_list(['EPA', 'AwjEwVgE', 'EPA', 'AwjEwVgE']) == False", "assert issort_list([10, 4, 1, 1, 4, 4]) == False", "assert issort_list([1, 2, 4, 6, 8, 10, 10, 7, 12, 12, 6, 12, 2]) == False", "assert issort_list(['PEPA', 'iiTVHG']) == True", "assert issort_list([2, 3, 4, 1, 4, 1, 1, 4, 2, 1]) == False", "assert issort_list(['AwjEwVgE', 'iTVHG', 'iTVHG']) == True", "assert issort_list([10, 4, 1, 1, 4, 4, 10]) == False", "assert issort_list([1, 2, 4, 5, 4, 6, 8, 10, 10, 6, 12]) == False", "assert issort_list(['AwjEwVgE', 'iiGTVHG', 'AwjVEwVgE', 'iTVHG', 'AwjEwVgE']) == False", "assert issort_list([10, 4, 1, 4, 4, 10]) == False", "assert issort_list([1, 3, 4, 6, 8, 10, 10, 12, 12, 6]) == False", "assert issort_list(['iiTVHG', 'iiTVTHG']) == True", "assert issort_list([2, 3, 4, 1, 4, 1, 0, 4, 2, 1]) == False", "assert issort_list([9, 4, 9, 7, 7, 3, 1, 6, 8, 2, 5, 2, 7, 6]) == False", "assert issort_list(['AwjEwVgE', 'iiTVHG']) == True", "assert issort_list(['AwjEwVgE', 'iTVHG', 'yUSyZK', 'EPA', 'USyZK']) == False", "assert issort_list(['iiTVTHG', 'iiTVHG', 'iiTVTHG']) == False", "assert issort_list(['AwjEwVgE', '', 'AwjEwVgyUSyZKE', 'iTVHG', 'USyZK', 'EPA', 'AwjEwVVgE']) == False", "assert issort_list([2, 2, 2, 3, 4, 1, 1, 3, 4, 4]) == False", "assert issort_list(['AwjEwVgE', 'iiGTVHG', '', 'AwjVEwVgE', 'iTVHG', 'AwjEwVgE', 'iiGTVHG']) == False", "assert issort_list([9, 4, 7, 3, 1, 6, 8, 8]) == False", "assert issort_list(['EPA', 'AwjEwVgE', 'EPA', 'EPA']) == False", "assert issort_list([9, 4, 9, 7, 7, 3, 1, 6, 8, 2, 5, 2, 7, 8]) == False", "assert issort_list([2, 11, 2, 10, 3, 4, 9, 1, 3, 5, 3, 4, 4]) == False", "assert issort_list([2, 2, 10, 3, 5, 3, 1, 1, 3, 4, 3]) == False", "assert issort_list([2, 3, 4, 1, 4, 1, 1, 4, 5, 1]) == False", "assert issort_list([2, 10, 3, 5, 1, 1, 11, 3, 4]) == False", "assert issort_list([2, 3, 8, 2, 1, 4, 1, 3]) == False", "assert issort_list([2, 10, 5, 3, 5, 1, 1, 3, 4, 1]) == False", "assert issort_list([10, 4, 1, 2, 4, 7, 10]) == False", "assert issort_list(['iiTG']) == True", "assert issort_list(['AwjEwVgE', 'AwjEwVVgE', '', 'iTVHG', 'UySyZK', 'EPA']) == False", "assert issort_list([9, 4, 7, 3, 1, 6, 8, 2, 5, 2, 7, 9, 7]) == False", "assert issort_list([1, 2, 4, 6, 8, 10, 10, 7, 12, 12, 6, 12, 2, 12]) == False", "assert issort_list([1, 6, 2, 4, 4, 6, 8, 10, 10, 12, 12, 6, 4]) == False", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 6]) == False", "assert issort_list([2, 3, 4, 1, 4, 1, 0, 5, 2, 1]) == False", "assert issort_list([2, 10, 5, 1, 1, 11, 3, 4, 5]) == False", "assert issort_list([10, 4, 1, 1, 2, 4, 10]) == False", "assert issort_list([2, 11, 10, 3, 5, 1, 1, 3, 4]) == False", "assert issort_list([2, 2, 10, 3, 5, 6, 1, 1, 3, 4, 3]) == False", "assert issort_list([1, 2, 4, 4, 6, 8, 10, 10, 12, 12, 6, 6, 12, 10]) == False", "assert issort_list([9, 4, 7, 3, 1, 6, 8, 5, 5, 8]) == False", "assert issort_list([2, 11, 10, 3, 5, 1, 1, 3, 4, 10]) == False", "assert issort_list([2, 2, 10, 2, 5, 6, 1, 1, 3, 3]) == False", "assert issort_list([10, 4, 11, 1, 1, 4, 4, 10]) == False", "assert issort_list([2, 10, 3, 5, 1, 11, 3, 4]) == False", "assert issort_list([2, 10, 4, 7, 1, 1, 3, 4, 4]) == False", "assert issort_list([10, 4, 11, 1, 2, 4, 4, 10]) == False", "assert issort_list([9, 4, 7, 1, 5, 8, 2, 5, 1]) == False", "assert issort_list([1, 4, 6, 8, 10, 12, 12, 10, 6, 12, 5, 12]) == False", "assert issort_list(['AwjEwVgE', 'iTVHG', 'USyZK', 'EPA', 'AwAwjEwVgyUSyZKEwVgE', 'USyZK']) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to create a list of N empty dictionaries.\nassert empty_list(5)==[{},{},{},{},{}]\nYour code should pass the test:\nassert empty_list(5)==[{},{},{},{},{}]", "test_list": [ "assert empty_list(5)==[{},{},{},{},{}]", "assert empty_list(6)==[{},{},{},{},{},{}]", "assert empty_list(7)==[{},{},{},{},{},{},{}]", "assert empty_list(0) == []", "assert empty_list(1) == [{}]", "assert empty_list(2) == [{}, {}]", "assert empty_list(3) == [{}, {}, {}]", "assert empty_list(4) == [{}, {}, {}, {}]", "assert empty_list(5) == [{}, {}, {}, {}, {}]", "assert empty_list(23) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(7) == [{}, {}, {}, {}, {}, {}, {}]", "assert empty_list(6) == [{}, {}, {}, {}, {}, {}]", "assert empty_list(True) == [{}]", "assert empty_list(False) == []", "assert empty_list(22) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(9) == [{}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(10) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(8) == [{}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(62) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(42) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(61) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(24) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(63) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(21) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(11) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(60) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(65) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(66) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(25) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(64) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(12) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(67) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(43) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(20) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(41) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(13) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(40) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(44) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(45) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(27) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(68) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(69) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(39) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(91) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(89) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(37) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(92) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(90) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(26) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(19) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(36) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(38) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(93) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(35) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(71) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(70) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(72) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(32) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(46) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(31) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(94) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(30) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(88) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(73) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(14) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(58) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(33) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(79) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(59) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(50) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(87) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(86) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(95) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(34) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(18) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(74) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(47) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(78) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(57) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(49) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(16) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(96) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(51) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(76) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(29) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(48) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(75) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(85) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(84) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(97) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(83) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(15) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(28) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(77) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(17) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(80) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(81) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(82) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(52) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(56) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(53) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(54) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(98) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]", "assert empty_list(55) == [{}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}, {}]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort each sublist of strings in a given list of lists.\nassert sort_sublists([['green', 'orange'], ['black', 'white'], ['white', 'black', 'orange']])==[['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]\nYour code should pass the test:\nassert sort_sublists([['green', 'orange'], ['black', 'white'], ['white', 'black', 'orange']])==[['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]", "test_list": [ "assert sort_sublists([['green', 'orange'], ['black', 'white'], ['white', 'black', 'orange']])==[['green', 'orange'], ['black', 'white'], ['black', 'orange', 'white']]", "assert sort_sublists([['green', 'orange'], ['black'], ['green', 'orange'], ['white']])==[['green', 'orange'], ['black'], ['green', 'orange'], ['white']]", "assert sort_sublists([['a','b'],['d','c'],['g','h'] , ['f','e']])==[['a', 'b'], ['c', 'd'], ['g', 'h'], ['e', 'f']]", "assert sort_sublists([[]]) == [[]]", "assert sort_sublists([['a', 'b'], ['d', 'c'], ['g', 'h'], ['f', 'e'], ['d', 'c'], ['a', 'b']]) == [['a', 'b'], ['c', 'd'], ['g', 'h'], ['e', 'f'], ['c', 'd'], ['a', 'b']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['green', 'orange'], ['black', 'white', 'yellow'], ['red'], ['blue', 'pink', 'purple', 'gray']]) == [['green', 'orange'], ['black', 'white', 'yellow'], ['red'], ['blue', 'gray', 'pink', 'purple']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([[], []]) == [[], []]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple'], []]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple'], []]", "assert sort_sublists([['kiwblacki', 'grape'], ['kiwblacki', 'grape'], ['apple'], ['kiwblacki', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple']]) == [['grape', 'kiwblacki'], ['grape', 'kiwblacki'], ['apple'], ['grape', 'kiwblacki'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple']]", "assert sort_sublists([['a', 'b'], ['d', 'c'], ['g', 'h'], ['f', 'e'], ['d', 'c']]) == [['a', 'b'], ['c', 'd'], ['g', 'h'], ['e', 'f'], ['c', 'd']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], ['watermelon'], [], []]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], []]", "assert sort_sublists([['green', 'orange'], ['black', 'white', 'yellow'], ['red'], ['blue', 'pink', 'purple', 'gray'], ['green', 'orange'], ['green', 'orange']]) == [['green', 'orange'], ['black', 'white', 'yellow'], ['red'], ['blue', 'gray', 'pink', 'purple'], ['green', 'orange'], ['green', 'orange']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['orange', 'mango'], ['kiwi', 'grape'], ['kiwi', 'grape']]) == [['grape', 'kiwi'], ['apple'], ['grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['mango', 'orange'], ['grape', 'kiwi'], ['grape', 'kiwi']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple'], ['watermelon']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple'], ['watermelon']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'gkiwirape', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple'], ['watermelon']]) == [['apple'], ['banana', 'gkiwirape', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple'], ['watermelon']]", "assert sort_sublists([['kiwi'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]) == [['kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['kiwi', 'grape'], ['orange', 'mango'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['grape', 'kiwi'], ['mango', 'orange'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['green', 'gkiwirape', 'orange'], ['black', 'white', 'yellow', 'yellow'], ['red'], ['blue', 'pink', 'purple', 'gray']]) == [['gkiwirape', 'green', 'orange'], ['black', 'white', 'yellow', 'yellow'], ['red'], ['blue', 'gray', 'pink', 'purple']]", "assert sort_sublists([['kiwi', 'banana', 'grape'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['banana', 'grape', 'kiwi'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry'], ['watermelon']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry'], ['watermelon']]", "assert sort_sublists([['', 'b'], ['d', 'c'], ['g', 'h'], ['f', 'e'], ['d', 'c'], ['a', 'b']]) == [['', 'b'], ['c', 'd'], ['g', 'h'], ['e', 'f'], ['c', 'd'], ['a', 'b']]", "assert sort_sublists([['ge', 'kiwi', 'grape'], ['apple'], ['ge', 'kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'kiwi', 'grape'], ['orange', 'mango'], ['ge', 'kiwi', 'grape'], ['ge', 'kiwi', 'grape']]) == [['ge', 'grape', 'kiwi'], ['apple'], ['ge', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'grape', 'kiwi'], ['mango', 'orange'], ['ge', 'grape', 'kiwi'], ['ge', 'grape', 'kiwi']]", "assert sort_sublists([['kiwigrape'], ['kiwigrape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['kiwigrape'], ['kiwigrape'], ['kiwigrape'], ['kiwigrape']]) == [['kiwigrape'], ['kiwigrape'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['kiwigrape'], ['kiwigrape'], ['kiwigrape'], ['kiwigrape']]", "assert sort_sublists([['kiwi'], ['orange', 'mango'], ['watermelon'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]) == [['kiwi'], ['mango', 'orange'], ['watermelon'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]", "assert sort_sublists([[], [], []]) == [[], [], []]", "assert sort_sublists([['TiNPm', 'h', 'gray', 'pineapple'], []]) == [['TiNPm', 'gray', 'h', 'pineapple'], []]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], ['watermelon'], ['che', 'pineapple'], [], ['che', 'pineapple']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], ['watermelon'], ['che', 'pineapple'], [], ['che', 'pineapple']]", "assert sort_sublists([['apple'], ['kiiwi', 'banana', 'gkiwirape', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['apple'], ['banana', 'gkiwirape', 'grape', 'kiiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['ge', 'kiwi', 'grape'], ['apple'], ['ge', 'kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'kiwi', 'grape'], ['orange', 'mango'], ['ge', 'kiwi', 'grape'], ['ge', 'kiwi', 'grape'], ['ge', 'kiwi', 'grape']]) == [['ge', 'grape', 'kiwi'], ['apple'], ['ge', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'grape', 'kiwi'], ['mango', 'orange'], ['ge', 'grape', 'kiwi'], ['ge', 'grape', 'kiwi'], ['ge', 'grape', 'kiwi']]", "assert sort_sublists([['kiwi', 'grape'], ['kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['orange', 'mango'], ['kiwi', 'grape'], ['kiwi', 'grape']]) == [['grape', 'kiwi'], ['grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['mango', 'orange'], ['grape', 'kiwi'], ['grape', 'kiwi']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], [], ['cherry', 'pineapple']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi'], ['orange', 'mango'], ['watermelon', 'watermelon'], ['kiwi'], ['kiwi'], ['watermelon', 'watermelon'], ['kiwi'], ['kiwi']]) == [['kiwi'], ['mango', 'orange'], ['watermelon', 'watermelon'], ['kiwi'], ['kiwi'], ['watermelon', 'watermelon'], ['kiwi'], ['kiwi']]", "assert sort_sublists([['grapeapple', 'apple'], ['orange', 'mango'], [], [], ['cherry', 'pineapple'], [], []]) == [['apple', 'grapeapple'], ['mango', 'orange'], [], [], ['cherry', 'pineapple'], [], []]", "assert sort_sublists([['kiwblacki', 'grape'], ['kiwblacki', 'grape'], ['apple'], ['kiwblacki', 'grape'], ['orange', 'mango', 'mango'], ['watermelon'], ['cherry', 'pineapple']]) == [['grape', 'kiwblacki'], ['grape', 'kiwblacki'], ['apple'], ['grape', 'kiwblacki'], ['mango', 'mango', 'orange'], ['watermelon'], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape']]) == [['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape'], ['kiwigrape', 'kiwigrape']]", "assert sort_sublists([['kiwi', 'grape'], ['kiwi', 'grape'], ['orange', 'mango'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['grape', 'kiwi'], ['mango', 'orange'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwblacki', 'green', 'grape', 'kiwblacki'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['apple'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple']]) == [['grape', 'green', 'kiwblacki', 'kiwblacki'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['apple'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry'], ['watermelon'], ['kiwi', 'banana', 'grape']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry'], ['watermelon'], ['banana', 'grape', 'kiwi']]", "assert sort_sublists([['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['apple'], ['ge', 'black', 'kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'black', 'kiwi', 'grape'], ['orange', 'mango'], ['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape']]) == [['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['apple'], ['black', 'ge', 'grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['black', 'ge', 'grape', 'kiwi'], ['mango', 'orange'], ['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], ['watermelon'], [], ['cherry', 'pineapple'], ['watermelon']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], ['watermelon'], [], ['cherry', 'pineapple'], ['watermelon']]", "assert sort_sublists([['kiwi'], ['orange', 'mnango', 'mango'], ['watermelon', 'watermelon'], ['kiwi'], ['kiwi'], ['watermelon', 'watermelon'], ['kiwi'], ['orange', 'mnango', 'mango'], ['kiwi']]) == [['kiwi'], ['mango', 'mnango', 'orange'], ['watermelon', 'watermelon'], ['kiwi'], ['kiwi'], ['watermelon', 'watermelon'], ['kiwi'], ['mango', 'mnango', 'orange'], ['kiwi']]", "assert sort_sublists([['kiwblacki', 'green', 'grape', 'kiwblacki'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['apple'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple']]) == [['grape', 'green', 'kiwblacki', 'kiwblacki'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['apple'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple']]", "assert sort_sublists([['', 'b'], ['d', 'c'], ['g', 'h'], ['f', 'e'], ['a', 'b', 'b'], ['d', 'c'], ['a', 'b', 'b']]) == [['', 'b'], ['c', 'd'], ['g', 'h'], ['e', 'f'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b']]", "assert sort_sublists([['kiwigramankiwiope', 'kiwigrape'], ['kiwigramankiwiope', 'kiwigrape'], ['orange', 'mango'], ['watermelon', 'watermelon'], ['cherry', 'pineapple'], ['kiwigramankiwiope', 'kiwigrape'], ['kiwigramankiwiope', 'kiwigrape'], ['watermelon', 'watermelon'], ['kiwigramankiwiope', 'kiwigrape']]) == [['kiwigramankiwiope', 'kiwigrape'], ['kiwigramankiwiope', 'kiwigrape'], ['mango', 'orange'], ['watermelon', 'watermelon'], ['cherry', 'pineapple'], ['kiwigramankiwiope', 'kiwigrape'], ['kiwigramankiwiope', 'kiwigrape'], ['watermelon', 'watermelon'], ['kiwigramankiwiope', 'kiwigrape']]", "assert sort_sublists([['grapeapple', 'apple'], ['gorange', 'orange', 'mango'], [], [], ['cherry', 'pineapple'], [], []]) == [['apple', 'grapeapple'], ['gorange', 'mango', 'orange'], [], [], ['cherry', 'pineapple'], [], []]", "assert sort_sublists([['d', 'c'], ['g', 'h'], ['f', 'e'], ['d', 'c'], ['a', 'b']]) == [['c', 'd'], ['g', 'h'], ['e', 'f'], ['c', 'd'], ['a', 'b']]", "assert sort_sublists([['kiwi', 'grapegray', 'grape'], ['orange', 'mango'], ['watermelon'], []]) == [['grape', 'grapegray', 'kiwi'], ['mango', 'orange'], ['watermelon'], []]", "assert sort_sublists([['blgrapeack', 'ge', 'black', 'kiwi', 'grape'], ['blgrapeack', 'ge', 'black', 'kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['blgrapeack', 'ge', 'black', 'kiwi', 'grape'], ['watermelon'], ['cherry', 'pineapple'], ['blgrapeack', 'ge', 'black', 'kiwi', 'grape'], ['orange', 'mango'], ['blgrapeack', 'ge', 'black', 'kiwi', 'grape'], ['blgrapeack', 'ge', 'black', 'kiwi', 'grape'], ['blgrapeack', 'ge', 'black', 'kiwi', 'grape']]) == [['black', 'blgrapeack', 'ge', 'grape', 'kiwi'], ['black', 'blgrapeack', 'ge', 'grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['black', 'blgrapeack', 'ge', 'grape', 'kiwi'], ['watermelon'], ['cherry', 'pineapple'], ['black', 'blgrapeack', 'ge', 'grape', 'kiwi'], ['mango', 'orange'], ['black', 'blgrapeack', 'ge', 'grape', 'kiwi'], ['black', 'blgrapeack', 'ge', 'grape', 'kiwi'], ['black', 'blgrapeack', 'ge', 'grape', 'kiwi']]", "assert sort_sublists([[], ['orange', 'mango'], ['watermelon', 'watermelon'], ['cherry', 'pineapple'], [], [], [], []]) == [[], ['mango', 'orange'], ['watermelon', 'watermelon'], ['cherry', 'pineapple'], [], [], [], []]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], [], ['cherry', 'pineapple'], ['orange', 'mankiwio']]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], [], ['cherry', 'pineapple'], ['mankiwio', 'orange']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], ['orange', 'mango'], [], ['watermelon'], [], []]) == [['apple'], ['banana', 'grape', 'kiwi'], ['mango', 'orange'], [], ['watermelon'], [], []]", "assert sort_sublists([['TiNPm', 'h', 'gray', 'pineapple'], ['yellow', 'pineapple', 'blgrapeack', 'RPqMEp', 'TwOPAWfh', 'c']]) == [['TiNPm', 'gray', 'h', 'pineapple'], ['RPqMEp', 'TwOPAWfh', 'blgrapeack', 'c', 'pineapple', 'yellow']]", "assert sort_sublists([['grapeapple', 'apple'], ['gorange', 'orange', 'mango'], [], [], ['pineappple', 'cherry', 'pineapple'], [], []]) == [['apple', 'grapeapple'], ['gorange', 'mango', 'orange'], [], [], ['cherry', 'pineapple', 'pineappple'], [], []]", "assert sort_sublists([['grapeapple', 'apple'], ['dEEf', '', 'fhiTqBKG', 'D', 'mankiwio', 'fh', 'peEkNRSS', 'd', 'green'], ['orange', 'mango'], [], [], ['cherry', 'pineapple'], [], [], []]) == [['apple', 'grapeapple'], ['', 'D', 'd', 'dEEf', 'fh', 'fhiTqBKG', 'green', 'mankiwio', 'peEkNRSS'], ['mango', 'orange'], [], [], ['cherry', 'pineapple'], [], [], []]", "assert sort_sublists([['kiwi'], ['watermelon'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]) == [['kiwi'], ['watermelon'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]", "assert sort_sublists([['kiwi'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]) == [['kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi'], ['kiwi']]", "assert sort_sublists([['ge', 'kiwi', 'grape'], [], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'kiwi', 'grape'], ['orange', 'mango'], ['ge', 'kiwi', 'grape'], ['ge', 'kiwi', 'grape']]) == [['ge', 'grape', 'kiwi'], [], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'grape', 'kiwi'], ['mango', 'orange'], ['ge', 'grape', 'kiwi'], ['ge', 'grape', 'kiwi']]", "assert sort_sublists([['green', 'gkappleiwirape', 'orange'], ['black', 'white', 'yellow', 'yellow'], ['green', 'gkappleiwirape', 'orange'], ['red'], ['blue', 'pink', 'purple', 'gray']]) == [['gkappleiwirape', 'green', 'orange'], ['black', 'white', 'yellow', 'yellow'], ['gkappleiwirape', 'green', 'orange'], ['red'], ['blue', 'gray', 'pink', 'purple']]", "assert sort_sublists([['kiwi', 'grapegray', 'grape'], ['orange', 'mawatermelonngo', 'mango'], ['watermelon'], []]) == [['grape', 'grapegray', 'kiwi'], ['mango', 'mawatermelonngo', 'orange'], ['watermelon'], []]", "assert sort_sublists([['TiNPm', 'h', 'gray', 'pineapple', 'TiNPm'], ['TiNPm', 'h', 'gray', 'pineapple', 'TiNPm'], [], ['TiNPm', 'h', 'gray', 'pineapple', 'TiNPm']]) == [['TiNPm', 'TiNPm', 'gray', 'h', 'pineapple'], ['TiNPm', 'TiNPm', 'gray', 'h', 'pineapple'], [], ['TiNPm', 'TiNPm', 'gray', 'h', 'pineapple']]", "assert sort_sublists([['', 'b'], ['d', 'c'], ['g', 'h'], ['a', 'b', 'b'], ['d', 'c'], ['a', 'b', 'b']]) == [['', 'b'], ['c', 'd'], ['g', 'h'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b']]", "assert sort_sublists([['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['apple'], ['ge', 'black', 'kiwi', 'grape'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'black', 'kiwi', 'grape'], ['orange', 'mango'], ['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['orange', 'mango']]) == [['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['apple'], ['black', 'ge', 'grape', 'kiwi'], ['watermelon'], ['cherry', 'pineapple'], ['black', 'ge', 'grape', 'kiwi'], ['mango', 'orange'], ['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['mango', 'orange']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['watermelo', 'watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['watermelo', 'watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwblacki', 'grape'], ['apple'], ['kiwblacki', 'grape'], ['orange', 'mango', 'mango'], ['watermelon'], ['cherry', 'pineapple']]) == [['grape', 'kiwblacki'], ['apple'], ['grape', 'kiwblacki'], ['mango', 'mango', 'orange'], ['watermelon'], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['aapple'], ['orange', 'mango'], ['aapple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['aapple'], ['mango', 'orange'], ['aapple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['kiwi', 'grape'], ['orange', 'mango'], []]) == [['grape', 'kiwi'], ['grape', 'kiwi'], ['mango', 'orange'], []]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['kiwi', 'grape'], ['orange', 'mango'], [], ['cherry', 'pink', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['grape', 'kiwi'], ['mango', 'orange'], [], ['cherry', 'pineapple', 'pink']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['watermelo', 'wlatermelon', 'watermelon'], ['watermelo', 'wlatermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['watermelo', 'watermelon', 'wlatermelon'], ['watermelo', 'watermelon', 'wlatermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['grapeapple', 'apple'], ['dEEf', '', 'fhiTqBKG', 'D', 'mankiwio', 'fh', 'peEkNRSS', 'd', 'green'], ['orange', 'mango'], [], [], ['cherry', 'pineapple'], [], [], [], ['dEEf', '', 'fhiTqBKG', 'D', 'mankiwio', 'fh', 'peEkNRSS', 'd', 'green']]) == [['apple', 'grapeapple'], ['', 'D', 'd', 'dEEf', 'fh', 'fhiTqBKG', 'green', 'mankiwio', 'peEkNRSS'], ['mango', 'orange'], [], [], ['cherry', 'pineapple'], [], [], [], ['', 'D', 'd', 'dEEf', 'fh', 'fhiTqBKG', 'green', 'mankiwio', 'peEkNRSS']]", "assert sort_sublists([['kiwi', 'kiwi'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['cherry', 'pineapple'], ['watermelon']]) == [['kiwi', 'kiwi'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['kiwi', 'kiwi'], ['cherry', 'pineapple'], ['watermelon']]", "assert sort_sublists([['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], [], ['cherry', 'pineapple']]) == [['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['d', 'red', 'c'], ['g', 'h'], ['f', 'e'], ['a', 'b', 'b'], ['d', 'c'], ['a', 'b', 'b'], ['d', 'red', 'c']]) == [['c', 'd', 'red'], ['g', 'h'], ['e', 'f'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b'], ['c', 'd', 'red']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['watermelo', 'wlatermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['watermelo', 'watermelon', 'wlatermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['ki', 'grape'], ['apple'], ['ki', 'grape'], ['ki', 'grape'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['orange', 'mango'], ['ki', 'grape'], ['ki', 'grape'], ['apple']]) == [['grape', 'ki'], ['apple'], ['grape', 'ki'], ['grape', 'ki'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['mango', 'orange'], ['grape', 'ki'], ['grape', 'ki'], ['apple']]", "assert sort_sublists([['TiNPm', 'h', 'gray', 'pineapple']]) == [['TiNPm', 'gray', 'h', 'pineapple']]", "assert sort_sublists([['kiwigramankiwiope'], ['apple'], ['kiwigramankiwiope'], ['kiwigramankiwiope'], ['orange', 'mango'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['kiwigramankiwiope'], ['apple'], ['kiwigramankiwiope'], ['kiwigramankiwiope'], ['mango', 'orange'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['apple'], ['kiwi', 'banana', 'grape'], [], ['cherry', 'pineapple']]) == [['apple'], ['banana', 'grape', 'kiwi'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['green', 'orange'], ['black', 'white', 'yellow'], ['red'], ['blue', 'pink', 'purple', 'gray'], ['black', 'white', 'yellow']]) == [['green', 'orange'], ['black', 'white', 'yellow'], ['red'], ['blue', 'gray', 'pink', 'purple'], ['black', 'white', 'yellow']]", "assert sort_sublists([['green', 'gkiwirape', 'orange'], ['mango', 'white', 'yellow', 'ybananaellow', 'yellow'], ['mango', 'white', 'yellow', 'ybananaellow', 'yellow'], ['mango', 'white', 'yellow', 'ybananaellow', 'yellow'], ['red'], ['mango', 'white', 'yellow', 'ybananaellow', 'yellow']]) == [['gkiwirape', 'green', 'orange'], ['mango', 'white', 'ybananaellow', 'yellow', 'yellow'], ['mango', 'white', 'ybananaellow', 'yellow', 'yellow'], ['mango', 'white', 'ybananaellow', 'yellow', 'yellow'], ['red'], ['mango', 'white', 'ybananaellow', 'yellow', 'yellow']]", "assert sort_sublists([['kiwi', 'grape'], ['kiwi', 'grape'], ['orange', 'mango'], ['watermelon'], [], ['cherry', 'pineapple'], ['kiwi', 'grape']]) == [['grape', 'kiwi'], ['grape', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['cherry', 'pineapple'], ['grape', 'kiwi']]", "assert sort_sublists([['', 'b'], ['d', 'c', 'd'], ['g', 'h'], ['d', 'c', 'd'], ['a', 'b', 'b'], ['d', 'c'], ['a', 'b', 'b']]) == [['', 'b'], ['c', 'd', 'd'], ['g', 'h'], ['c', 'd', 'd'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b']]", "assert sort_sublists([['kiwi', 'grape'], ['aapple', 'aapple'], ['aapple', 'aapple'], ['orange', 'mango'], ['aapple', 'aapple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['aapple', 'aapple'], ['aapple', 'aapple'], ['mango', 'orange'], ['aapple', 'aapple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['grapeapple', 'apple'], ['gorangkiwblackie', 'orange', 'mango'], [], [], ['gorangkiwblackie', 'orange', 'mango'], ['pineappple', 'cherry', 'pineapple'], [], [], []]) == [['apple', 'grapeapple'], ['gorangkiwblackie', 'mango', 'orange'], [], [], ['gorangkiwblackie', 'mango', 'orange'], ['cherry', 'pineapple', 'pineappple'], [], [], []]", "assert sort_sublists([['apple'], ['kiwi', 'grape'], ['ybananaellow', 'mango'], ['watermelon'], [], ['cherry', 'pineapple'], ['cherry', 'pineapple']]) == [['apple'], ['grape', 'kiwi'], ['mango', 'ybananaellow'], ['watermelon'], [], ['cherry', 'pineapple'], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['watermelo', 'wlatermelon', 'watermelon'], [], ['cherry', 'pineapple', 'pineapple']]) == [['grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['watermelo', 'watermelon', 'wlatermelon'], [], ['cherry', 'pineapple', 'pineapple']]", "assert sort_sublists([['grapeapple', 'apple'], ['gorangkiwblackie', 'orange', 'mango'], [], [], ['blgrapeack', 'e', 'ETRGKXBvvw', 'mankiwio', 'grape', 'kiwi', 'IukhEbw', 'grapeapple', 'peEkNRSS'], ['gorangkiwblackie', 'orange', 'mango'], ['pineappple', 'cherry', 'pineapple'], [], [], [], []]) == [['apple', 'grapeapple'], ['gorangkiwblackie', 'mango', 'orange'], [], [], ['ETRGKXBvvw', 'IukhEbw', 'blgrapeack', 'e', 'grape', 'grapeapple', 'kiwi', 'mankiwio', 'peEkNRSS'], ['gorangkiwblackie', 'mango', 'orange'], ['cherry', 'pineapple', 'pineappple'], [], [], [], []]", "assert sort_sublists([['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['apple'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'black', 'kiwi', 'grape'], ['orange', 'mango', 'orange'], ['orange', 'mango', 'orange'], ['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['ge', 'black', 'kiwi', 'grape'], ['orange', 'mango', 'orange']]) == [['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['apple'], ['watermelon'], ['cherry', 'pineapple'], ['black', 'ge', 'grape', 'kiwi'], ['mango', 'orange', 'orange'], ['mango', 'orange', 'orange'], ['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['black', 'ge', 'grape', 'kiwi'], ['mango', 'orange', 'orange']]", "assert sort_sublists([['kiwi', 'grape'], ['aapple', 'aapple'], ['aapple', 'aapple'], ['mango'], ['aapple', 'aapple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['aapple', 'aapple'], ['aapple', 'aapple'], ['mango'], ['aapple', 'aapple'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple']]", "assert sort_sublists([['kiwi', 'grape'], ['apple'], ['orange', 'mango'], ['watermelo', 'watermelon', 'watermelon'], ['cherry', 'pineapple'], ['watermelo', 'watermelon', 'watermelon']]) == [['grape', 'kiwi'], ['apple'], ['mango', 'orange'], ['watermelo', 'watermelon', 'watermelon'], ['cherry', 'pineapple'], ['watermelo', 'watermelon', 'watermelon']]", "assert sort_sublists([['apple'], ['fh', 'gkiwirape', 'mZFQv', 'zAz', 'Gpfv', 'Tih'], [], ['chcerry', 'pineapple'], []]) == [['apple'], ['Gpfv', 'Tih', 'fh', 'gkiwirape', 'mZFQv', 'zAz'], [], ['chcerry', 'pineapple'], []]", "assert sort_sublists([['grapeapple', 'apple'], ['orange', 'mango'], [], [], ['cherry', 'pineapple'], []]) == [['apple', 'grapeapple'], ['mango', 'orange'], [], [], ['cherry', 'pineapple'], []]", "assert sort_sublists([['green', 'gkiwirape', 'orange', 'green'], ['black', 'white', 'yellow', 'yellow'], ['red'], ['green', 'gkiwirape', 'orange', 'green'], ['blue', 'pink', 'purple', 'gray']]) == [['gkiwirape', 'green', 'green', 'orange'], ['black', 'white', 'yellow', 'yellow'], ['red'], ['gkiwirape', 'green', 'green', 'orange'], ['blue', 'gray', 'pink', 'purple']]", "assert sort_sublists([['kiwblacki', 'green', 'grape', 'kiwblacki'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['apple'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['kiwblacki', 'green', 'grape', 'kiwblacki'], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['kiwblacki', 'green', 'grape', 'kiwblacki']]) == [['grape', 'green', 'kiwblacki', 'kiwblacki'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['apple'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['grape', 'green', 'kiwblacki', 'kiwblacki'], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['grape', 'green', 'kiwblacki', 'kiwblacki']]", "assert sort_sublists([['kiwi', 'grappe'], ['apple'], ['kiwi', 'grappe'], ['orange', 'mango'], ['watermelon'], [], ['pineapple']]) == [['grappe', 'kiwi'], ['apple'], ['grappe', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['pineapple']]", "assert sort_sublists([['kiwi', 'banana', 'grape'], ['orange', 'mankiwio'], ['watermelon'], [], ['cherry', 'pineapple'], ['kiwi', 'banana', 'grape']]) == [['banana', 'grape', 'kiwi'], ['mankiwio', 'orange'], ['watermelon'], [], ['cherry', 'pineapple'], ['banana', 'grape', 'kiwi']]", "assert sort_sublists([['kiwi', 'banana', 'grape'], ['cherryy', 'cherry', 'pineapple'], ['watermelon'], [], ['cherryy', 'cherry', 'pineapple']]) == [['banana', 'grape', 'kiwi'], ['cherry', 'cherryy', 'pineapple'], ['watermelon'], [], ['cherry', 'cherryy', 'pineapple']]", "assert sort_sublists([['kiwi', 'grappkiwie', 'grappe'], ['apple'], ['kiwi', 'grappkiwie', 'grappe'], ['orange', 'mango'], ['watermelon'], [], ['pineapple']]) == [['grappe', 'grappkiwie', 'kiwi'], ['apple'], ['grappe', 'grappkiwie', 'kiwi'], ['mango', 'orange'], ['watermelon'], [], ['pineapple']]", "assert sort_sublists([['', 'b'], ['g', 'h'], ['f', 'e'], ['a', 'b', 'b'], ['d', 'c'], ['a', 'b', 'b']]) == [['', 'b'], ['g', 'h'], ['e', 'f'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b']]", "assert sort_sublists([['kiwi', 'grape'], ['e'], ['e'], ['mango'], ['e'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple'], ['cherry', 'pineapple']]) == [['grape', 'kiwi'], ['e'], ['e'], ['mango'], ['e'], ['watermelon', 'watermelon'], [], ['cherry', 'pineapple'], ['cherry', 'pineapple']]", "assert sort_sublists([['ge', 'kiwi', 'grape'], [], ['orange', 'mango'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'kiwi', 'grape'], ['orange', 'mango'], ['ge', 'kiwi', 'grape'], ['ge', 'kiwi', 'grape'], ['cherry', 'pineapple']]) == [['ge', 'grape', 'kiwi'], [], ['mango', 'orange'], ['watermelon'], ['cherry', 'pineapple'], ['ge', 'grape', 'kiwi'], ['mango', 'orange'], ['ge', 'grape', 'kiwi'], ['ge', 'grape', 'kiwi'], ['cherry', 'pineapple']]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the largest number that can be formed with the given list of digits.\nassert find_Max_Num([1,2,3]) == 321\nYour code should pass the test:\nassert find_Max_Num([1,2,3]) == 321", "test_list": [ "assert find_Max_Num([1,2,3]) == 321", "assert find_Max_Num([4,5,6,1]) == 6541", "assert find_Max_Num([1,2,3,9]) == 9321", "assert find_Max_Num([9, 3, 2, 1]) == 9321", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 2, 1]) == 987654321", "assert find_Max_Num([9, 9, 3, 2, 2, 1]) == 993221", "assert find_Max_Num([9, 9, 3, 2, 2, 1, 1]) == 9932211", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 3, 2, 1]) == 9876543321", "assert find_Max_Num([9, 8, 8, 7, 7, 6, 6, 5, 3, 3, 2]) == 98877665332", "assert find_Max_Num([9, 3, 3, 2, 1]) == 93321", "assert find_Max_Num([9, 3, 3, 3, 2, 1]) == 933321", "assert find_Max_Num([9, 3, 3, 3, 2, 2, 1]) == 9333221", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 2, 2, 1]) == 9876543221", "assert find_Max_Num([9, 3, 2, 2, 1]) == 93221", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 1]) == 9993221", "assert find_Max_Num([9, 4, 3, 2, 1]) == 94321", "assert find_Max_Num([9, 5, 3, 2, 1]) == 95321", "assert find_Max_Num([9, 3, 2, 2, 2, 1]) == 932221", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 1, 1]) == 99932211", "assert find_Max_Num([9, 5, 2, 1]) == 9521", "assert find_Max_Num([9, 3, 2, 2, 2, 2, 1]) == 9322221", "assert find_Max_Num([9, 9, 3, 3, 3, 2, 2, 1]) == 99333221", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 4, 3, 2, 1]) == 9876544321", "assert find_Max_Num([9, 4, 3, 2, 2, 2, 1]) == 9432221", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 1, 1, 1, 1]) == 9993221111", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 4, 4, 3, 2, 1]) == 98765444321", "assert find_Max_Num([9, 9, 3, 2, 1]) == 99321", "assert find_Max_Num([9, 9, 3, 2, 2, 2]) == 993222", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 2]) == 9993222", "assert find_Max_Num([9, 8, 7, 6, 5, 5, 4, 2, 1]) == 987655421", "assert find_Max_Num([9, 5, 5, 2, 1]) == 95521", "assert find_Max_Num([9, 9, 3, 3, 3, 3, 2, 2, 1]) == 993333221", "assert find_Max_Num([9, 4, 3, 2, 2, 1, 1]) == 9432211", "assert find_Max_Num([9, 4, 3, 3, 2]) == 94332", "assert find_Max_Num([9, 9, 3, 2, 2, 1, 1, 1]) == 99322111", "assert find_Max_Num([9, 9, 3, 2, 2]) == 99322", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 2, 2, 1]) == 9876543221", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 3, 1]) == 987654331", "assert find_Max_Num([9, 9, 9, 3, 2, 2]) == 999322", "assert find_Max_Num([9, 9, 7, 2, 1]) == 99721", "assert find_Max_Num([9, 4, 4, 3, 2, 1]) == 944321", "assert find_Max_Num([9, 9, 7, 3, 2, 2]) == 997322", "assert find_Max_Num([9, 6, 3, 2, 1, 1]) == 963211", "assert find_Max_Num([9, 3, 3, 3, 2, 1, 1]) == 9333211", "assert find_Max_Num([9, 4, 3, 2, 1, 1]) == 943211", "assert find_Max_Num([9, 6, 3, 2, 2, 1, 1]) == 9632211", "assert find_Max_Num([8, 7, 7, 6, 5, 4, 3, 2, 2, 1]) == 8776543221", "assert find_Max_Num([6, 5, 3, 2, 1, 1]) == 653211", "assert find_Max_Num([9, 6, 3, 2, 2, 2, 1, 1]) == 96322211", "assert find_Max_Num([9, 9, 3, 3, 3, 3, 2, 2, 1, 1]) == 9933332211", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 2, 1]) == 987654321", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 2, 2]) == 99932222", "assert find_Max_Num([9, 9, 3, 3, 2]) == 99332", "assert find_Max_Num([9, 5, 3, 2, 2, 1]) == 953221", "assert find_Max_Num([9, 9, 5, 2, 1]) == 99521", "assert find_Max_Num([9, 9, 3, 3, 2, 1]) == 993321", "assert find_Max_Num([9, 5, 2, 2]) == 9522", "assert find_Max_Num([9, 9, 4, 4, 2, 2, 1]) == 9944221", "assert find_Max_Num([9, 9, 1]) == 991", "assert find_Max_Num([9, 3, 3, 2, 2, 2, 1]) == 9332221", "assert find_Max_Num([9, 4, 3, 3, 2, 0]) == 943320", "assert find_Max_Num([9, 8, 7, 6, 6, 5, 3, 3, 2]) == 987665332", "assert find_Max_Num([9, 5, 5, 2, 1, 1, 1, 1]) == 95521111", "assert find_Max_Num([9, 9, 2, 0]) == 9920", "assert find_Max_Num([9, 8, 6, 5, 4, 3, 2, 1]) == 98654321", "assert find_Max_Num([6, 5, 3, 2, 2, 1, 1]) == 6532211", "assert find_Max_Num([9, 3, 2, 2, 2, 2, 1]) == 9322221", "assert find_Max_Num([9, 9, 3, 2, 2, 1]) == 993221", "assert find_Max_Num([9, 9, 7, 7, 2, 1]) == 997721", "assert find_Max_Num([6, 5, 3, 3, 2, 2, 2, 1]) == 65332221", "assert find_Max_Num([9, 3, 3, 2, 2, 1]) == 933221", "assert find_Max_Num([9, 3, 3, 2, 2, 2, 2, 1]) == 93322221", "assert find_Max_Num([9, 3, 3, 2, 2, 2]) == 933222", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 1, 1, 1]) == 999322111", "assert find_Max_Num([9, 6, 5, 4, 3, 2, 1]) == 9654321", "assert find_Max_Num([9, 6, 3, 2, 1, 1, 0]) == 9632110", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 4, 3, 3, 2, 1]) == 98765443321", "assert find_Max_Num([9, 3, 3, 2, 2, 1]) == 933221", "assert find_Max_Num([9, 9, 3, 3, 2, 2, 1, 1, 1]) == 993322111", "assert find_Max_Num([9, 6, 3, 2, 2, 1, 1, 1]) == 96322111", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 4, 3, 2, 1, 1]) == 98765443211", "assert find_Max_Num([9, 4, 3, 3, 1, 1]) == 943311", "assert find_Max_Num([6, 4, 3, 2, 2, 1, 1, 1]) == 64322111", "assert find_Max_Num([9, 5, 4, 3, 2, 2, 1, 1]) == 95432211", "assert find_Max_Num([9, 8, 7, 5, 5, 4, 2, 1]) == 98755421", "assert find_Max_Num([8, 7, 7, 6, 5, 4, 2, 2, 1]) == 877654221", "assert find_Max_Num([9, 9, 3, 3, 2, 2, 1]) == 9933221", "assert find_Max_Num([9, 9, 7, 3, 2, 2, 1, 1]) == 99732211", "assert find_Max_Num([9, 9, 3, 2, 2, 1]) == 993221", "assert find_Max_Num([9, 9, 3, 3, 3, 3, 3, 2, 2, 1, 1]) == 99333332211", "assert find_Max_Num([9, 6, 3, 1, 1, 0]) == 963110", "assert find_Max_Num([9, 8, 7, 7, 6, 5, 4, 3, 2, 2, 1]) == 98776543221", "assert find_Max_Num([9, 9, 9, 3, 3, 2, 2]) == 9993322", "assert find_Max_Num([9, 9, 3, 3, 3, 3, 3, 2, 2, 1, 1]) == 99333332211", "assert find_Max_Num([9, 5, 5, 2]) == 9552", "assert find_Max_Num([9, 5, 5, 2, 1]) == 95521", "assert find_Max_Num([9, 9, 9, 9, 3, 3, 2, 2, 1, 1, 1]) == 99993322111", "assert find_Max_Num([9, 3, 3, 2, 2, 2, 1]) == 9332221", "assert find_Max_Num([9, 9, 9, 3, 2, 2, 2, 1, 1, 1]) == 9993222111", "assert find_Max_Num([9, 9, 3, 2, 2, 1]) == 993221", "assert find_Max_Num([9, 8, 7, 6, 5, 4, 3, 3, 3, 2, 1]) == 98765433321", "assert find_Max_Num([9, 9, 3, 3, 3, 3, 2, 1, 1]) == 993333211", "assert find_Max_Num([8, 7, 7, 6, 5, 5, 4, 2, 2, 1]) == 8776554221", "assert find_Max_Num([9, 9, 3, 3, 2, 2, 1, 1, 1, 1]) == 9933221111", "assert find_Max_Num([9, 6, 5, 2, 1]) == 96521" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to remove duplicate numbers from a given number of lists.\nassert two_unique_nums([1,2,3,2,3,4,5]) == [1, 4, 5]\nYour code should pass the test:\nassert two_unique_nums([1,2,3,2,3,4,5]) == [1, 4, 5]", "test_list": [ "assert two_unique_nums([1,2,3,2,3,4,5]) == [1, 4, 5]", "assert two_unique_nums([1,2,3,2,4,5]) == [1, 3, 4, 5]", "assert two_unique_nums([1,2,3,4,5]) == [1, 2, 3, 4, 5]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6]) == [1, 7, 8, 9]", "assert two_unique_nums([2, 3, 4, 2, 3, 5, 6, 4, 7, 8, 9, 5, 6, 10, 11, 12, 11, 13, 14, 10]) == [7, 8, 9, 12, 13, 14]", "assert two_unique_nums([1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8]) == []", "assert two_unique_nums([]) == []", "assert two_unique_nums([1, 1, 2, 2, 3, 3, 4, 4, 5, 5]) == []", "assert two_unique_nums([1]) == [1]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 8, 9, 5, 6, 2]) == [1, 7, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 8, 9, 5, 6, 2, 3, 6, 4]) == [1, 7, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 2, 3, 6, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([-0.9997483195812293, 8.805625175692413]) == [-0.9997483195812293, 8.805625175692413]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 6]) == [1, 7, 8, 9]", "assert two_unique_nums([-0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, 41.68649670810572, -52.065808653681664]) == [47.66683343680117, 41.68649670810572, -52.065808653681664]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 3, 2, 5, 6]) == [1, 7, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 8, 4, 7, 8, 9, 5, 6, 2, 3, 6, 6, 4]) == [1, 7, 9]", "assert two_unique_nums([1, 1]) == []", "assert two_unique_nums([2, 3, 4, 2, 3, 5, 6, 4, 7, 8, 9, 5, 10, 11, 12, 11, 13, 14, 10]) == [6, 7, 8, 9, 12, 13, 14]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 2, 3, 6, 8, 4, 7, 8, 9, 5, 6, 2, 3, 6, 6, 4, 3]) == [1, 7, 9]", "assert two_unique_nums([2, 3, 4, 2, 3, 10, 6, 4, 7, 8, 9, 5, 6, 10, 11, 12, 11, 13, 14, 10]) == [7, 8, 9, 5, 12, 13, 14]", "assert two_unique_nums([1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 5]) == []", "assert two_unique_nums([1, 0]) == [1, 0]", "assert two_unique_nums([4, 2, 3, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 8, 9, 5, 6, 2]) == [7, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1, 4]) == [7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1, 4]) == [7, 8, 9, 5]", "assert two_unique_nums([True, False, True]) == [False]", "assert two_unique_nums([1, 1, 2, 2, 3, 3, 3, 4, 5, 5, 6, 6, 6, 7, 7, 8, 8]) == [4]", "assert two_unique_nums([1, 8]) == [1, 8]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4, 3]) == [1, 7, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 2, 3, 6, 8, 4, 7, 8, 9, 5, 6, 2, 6, 6, 4, 3, 2]) == [1, 7, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 2, 3, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 1, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1, 4]) == [7, 8, 9, 5]", "assert two_unique_nums([1, 1, 2, 3, 3, 4, 4, 5, 5]) == [2]", "assert two_unique_nums([1, 2, 3, 2, 4, 1, 3, 6, 8, 4, 7, 8, 9, 5, 6, 4, 1, 4]) == [7, 9, 5]", "assert two_unique_nums([1, 13, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6]) == [1, 13, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 3, 2, 4, 5, 6]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 3, 6, 4, 5, 7, 8, 9, 7, 5, 6, 4, 1, 4, 7]) == [8, 9]", "assert two_unique_nums([1, 2, 3, 4, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 4, 9, 2, 5, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 5, 4, 5, 5, 3, 5, 6, 4, 7, 8, 9, 2, 5, 6, 4]) == [1, 3, 7, 8, 9]", "assert two_unique_nums([-0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 41.68649670810572, -52.065808653681664]) == [47.66683343680117, 8.805625175692413, 41.68649670810572, -52.065808653681664]", "assert two_unique_nums([1, 1, 8, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8]) == []", "assert two_unique_nums([4, 1, 3, 2, 3, 5, 4, 5, 3, 6, 4, 7, 8, 9, 5, 3, 2, 3, 6, 6, 4, 5]) == [1, 7, 8, 9]", "assert two_unique_nums([4, 1, 2, 2, 3, 4, 5, 3, 6, 4, 7, 8, 8, 9, 5, 6, 2]) == [1, 7, 9]", "assert two_unique_nums([1, 2, 3, 4, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4, 6, 7]) == [1, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 3, 6, 4, 5, 7, 8, 9, 7, 6, 4, 1, 4, 7]) == [5, 8, 9]", "assert two_unique_nums([10.355737996821157]) == [10.355737996821157]", "assert two_unique_nums([1, 1, 2, 3, 3, 4, 4, 5, 5, 4]) == [2]", "assert two_unique_nums([1, 7, 1, 2, 3, 3, 4, 4, 5, 4, 4]) == [7, 2, 5]", "assert two_unique_nums([True, False, False, False]) == [True]", "assert two_unique_nums([True, False, False, False, False]) == [True]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4, 3, 9, 3]) == [1, 7, 8]", "assert two_unique_nums([1, 1, 2, 2, 3, 3, 3, 4, 5, 5, 6, 6, 6, 7, 7, 8, 8, 3]) == [4]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1, 4, 6]) == [7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 2, 7, 5, 6, 4, 3]) == [1, 8]", "assert two_unique_nums([-1.651524063439472, -0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 41.68649670810572, -52.065808653681664]) == [-1.651524063439472, 47.66683343680117, 8.805625175692413, 41.68649670810572, -52.065808653681664]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 2, 3, 6, 8, 4, 7, 8, 9, 5, 12, 6, 2, 6, 6, 4, 3, 2]) == [1, 7, 9, 12]", "assert two_unique_nums([1, 1, 2, 3, 3, 4, 4, 5, 4, 4]) == [2, 5]", "assert two_unique_nums([0, 1, 8, 1]) == [0, 8]", "assert two_unique_nums([8.805625175692413]) == [8.805625175692413]", "assert two_unique_nums([1, 1, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 6]) == [2, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 9, 9, 2, 5, 6, 4, 3, 9, 3]) == [1, 7]", "assert two_unique_nums([4]) == [4]", "assert two_unique_nums([1, 9, 8]) == [1, 9, 8]", "assert two_unique_nums([-0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 41.68649670810572, -0.18222326312457193, -52.065808653681664]) == [47.66683343680117, 8.805625175692413, 41.68649670810572, -0.18222326312457193, -52.065808653681664]", "assert two_unique_nums([1, 2, 3, 2, 4, 1, 3, 6, 3, 7, 8, 9, 5, 6, 4, 1, 4]) == [7, 8, 9, 5]", "assert two_unique_nums([4, 1, 2, 3, 3, 4, 5, 3, 6, 4, 7, 8, 8, 9, 5, 6, 2, 6, 4]) == [1, 7, 9]", "assert two_unique_nums([0, 8, 2]) == [0, 8, 2]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 6, 9, 5, 6, 2, 3, 6, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([0]) == [0]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1, 4, 6, 1]) == [7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 3, 6, 4]) == [1, 5, 7, 8, 9]", "assert two_unique_nums([1, 2, 2, 4, 3, 6, 4, 7, 8, 4, 9, 2, 5, 6, 4, 2]) == [1, 3, 7, 8, 9, 5]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 7, 6, 4, 7, 8, 9, 5, 6]) == [1, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 4, 7, 8, 8, 9, 5, 6, 2, 3, 6, 4, 4]) == [1, 7, 9]", "assert two_unique_nums([2, 4, 2, 3, 5, 6, 4, 7, 8, 9, 5, 6, 10, 11, 12, 11, 13, 14, 10]) == [3, 7, 8, 9, 12, 13, 14]", "assert two_unique_nums([1, 3, 4, 2, 3, 5, 6, 4, 7, 8, 9, 5, 10, 11, 12, 11, 13, 14, 10]) == [1, 2, 6, 7, 8, 9, 12, 13, 14]", "assert two_unique_nums([-0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 41.68649670810572, -0.18222326312457193, -52.065808653681664, 41.68649670810572]) == [47.66683343680117, 8.805625175692413, -0.18222326312457193, -52.065808653681664]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 8, 9, 2, 3, 6, 4]) == [1, 5, 8, 9]", "assert two_unique_nums([1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 3]) == []", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 8, 6, 4, 7, 8, 8, 9, 5, 6, 2]) == [1, 7, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 5, 7, 8, 9, 5, 6, 4, 1, 4, 6]) == [7, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 3, 4, 5, 3, 6, 5, 4, 7, 8, 8, 9, 5, 6, 2, 6, 4]) == [1, 7, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1]) == [7, 8, 9, 5]", "assert two_unique_nums([1, 2, 5, 4, 5, 5, 3, 5, 6, 4, 7, 8, 9, 2, 8, 6, 4]) == [1, 3, 7, 9]", "assert two_unique_nums([10.355737996821157, 47.66683343680117, -0.9997483195812293, -0.9997483195812293, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 10.355737996821157, 41.68649670810572, -52.065808653681664]) == [47.66683343680117, 8.805625175692413, 41.68649670810572, -52.065808653681664]", "assert two_unique_nums([-0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.3831321228840481, -0.943443387927682, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, 41.68649670810572, -52.065808653681664]) == [47.66683343680117, -0.3831321228840481, -0.943443387927682, 8.805625175692413, 41.68649670810572, -52.065808653681664]", "assert two_unique_nums([1, 1, 2, 3, 3, 4, 5, 5]) == [2, 4]", "assert two_unique_nums([-0.9997483195812293, 47.66683343680117, -0.9997483195812293, -0.3831321228840481, -0.943443387927682, 8.805625175692413, -0.9997483195812293, -0.9997483195812293, -52.065808653681664]) == [47.66683343680117, -0.3831321228840481, -0.943443387927682, 8.805625175692413, -52.065808653681664]", "assert two_unique_nums([2, 3, 4, 2, 3, 5, 6, 4, 7, 8, 9, 5, 10, 11, 12, 11, 13, 10]) == [6, 7, 8, 9, 12, 13]", "assert two_unique_nums([1, 1, 2, 3, 3, 4, 4, 5, 5, 5]) == [2]", "assert two_unique_nums([0, 9, 8, 2]) == [0, 9, 8, 2]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 3, 2, 5, 6, 2]) == [1, 7, 8, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 3, 6, 5, 7, 8, 9, 5, 6, 2, 3, 6, 6, 4]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 2, 5, 6, 4, 3, 9]) == [1, 7, 8]", "assert two_unique_nums([1, 1, 8, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 4]) == []", "assert two_unique_nums([1, 1, 8, 2, 2, 3, 3, 9, 4, 5, 5, 6, 6, 7, 7, 8]) == [9, 4]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 9, 10, 6, 4, 4]) == [1, 5, 7, 9, 10]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 8, 9, 2, 3, 6, 4, 8]) == [1, 5, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 3, 2, 5, 6, 3]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 6, 2]) == [1, 7, 8, 9]", "assert two_unique_nums([1, 0, 0, 0]) == [1]", "assert two_unique_nums([8, 1, 2, 3, 2, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6]) == [1, 7, 9]", "assert two_unique_nums([4, 1, 2, 3, 2, 3, 4, 5, 2, 3, 6, 8, 4, 7, 8, 9, 5, 12, 6, 2, 6, 6, 4, 3, 2, 3]) == [1, 7, 9, 12]", "assert two_unique_nums([1, 2, 3, 4, 5, 3, 6, 4, 7, 8, 9, 5, 6, 4, 1, 4, 6, 1, 1]) == [2, 7, 8, 9]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to calculate the product of the unique numbers in a given list.\nassert unique_product([10, 20, 30, 40, 20, 50, 60, 40]) == 720000000\nYour code should pass the test:\nassert unique_product([10, 20, 30, 40, 20, 50, 60, 40]) == 720000000", "test_list": [ "assert unique_product([10, 20, 30, 40, 20, 50, 60, 40]) == 720000000", "assert unique_product([1, 2, 3, 1,]) == 6", "assert unique_product([7, 8, 9, 0, 1, 1]) == 0", "assert unique_product([1000000, 2000000, 3000000, 2000000, 4000000, 5000000]) == 120000000000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 4000000]) == 40000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000000, 5000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 5000000]) == 40000000000000000000", "assert unique_product([3000000, 4000000, 2000000, 3999999, 2000001, 4000000, 5000000, 3999999]) == 960000239999880000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 2000000, 3000000, 5000000, 1000000]) == 30000000000000000000000000", "assert unique_product([3999999, 3000000, 4000000, 2000000, 3999999, 5000000, 2000001, 4000000, 5000000, 3999999, 3999999]) == 960000239999880000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 2000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000000, 4000000]) == 40000000000000000000", "assert unique_product([1000000, 3000000, 2000000, 3000000, 5000000, 1000001, 1000000, 5000000]) == 30000030000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 2000000, 4000001, 5000000]) == 120000030000000000000000000000000", "assert unique_product([3000000, 4000000, 2000000, 3999999, 2000001, 4000000, 5000000, 3999999, 3999999]) == 960000239999880000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 5000000, 4000000, 5000000]) == 40000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 1000001, 3000000, 5000000, 1000000]) == 30000030000000000000000000000000", "assert unique_product([3999999, 3000000, 2000000, 4000000, 2000000, 3999999, 5000000, 3999999, 2000001, 4000000, 5000000, 3999999, 3999999]) == 960000239999880000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 2000001, 5000000, 4000000, 2000000]) == 80000040000000000000000000", "assert unique_product([3999999, 3000000, 2000000, 4000000, 2000000, 3999999, 5000000, 3999999, 2000001, 4000000, 5000000, 3999999, 3999999, 5000000]) == 960000239999880000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 2000000, 4000001, 5000000, 5000000]) == 120000030000000000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 5000000]) == 200000040000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 5000000, 5000001]) == 200000040000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 5000000, 1999999, 4000000, 5000001]) == 399999879999960000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000001, 5000000, 4000000, 2000000]) == 160000040000000000000000000", "assert unique_product([1000000, 999999, 2000000, 3000000, 1000001, 3000000, 5000000, 1000000, 5000000]) == 29999999999970000000000000000000000000", "assert unique_product([2000000, 4000000, 4000000, 5000000]) == 40000000000000000000", "assert unique_product([3999999, 3000000, 2000000, 4000000, 2000000, 3999999, 5000000, 3999999, 2000001, 4000000, 5000000, 3999999, 3999999, 5000000, 3999999]) == 960000239999880000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000000, 4000000, 2000000]) == 40000000000000000000", "assert unique_product([2000000, 5000000, 4000000, 2000000, 4000000, 5000000, 4000000, 4000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 5000000, 4000000, 5000000, 4000000]) == 40000000000000000000", "assert unique_product([4000000, 999999, 2000000, 4000000, 5000001, 5000000, 5000000, 5000001]) == 199999839999960000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 5000001, 4000000, 5000000, 5000000, 4000000]) == 200000040000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 2000000, 2000000]) == 40000000000000000000", "assert unique_product([1000000, 2000000, 2000000, 4000000, 5000000]) == 40000000000000000000000000", "assert unique_product([4000000, 4000000, 2000000, 4000000, 5000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 4000000]) == 8000000000000", "assert unique_product([2000000, 4000000, 2000000, 5000001, 4000000, 5000000, 5000000, 4000000, 4000000]) == 200000040000000000000000000", "assert unique_product([2000000, 4000001, 4000000, 2000000, 4000000, 3999999, 4000001, 5000000]) == 639999999999960000000000000000000", "assert unique_product([1000000, 3000000, 2000000, 3000000, 5000000, 1000000]) == 30000000000000000000000000", "assert unique_product([2000000, 2000000, 2000000, 4000000, 5000000, 5000000, 3999999, 2000000]) == 159999960000000000000000000", "assert unique_product([2000000, 2000000, 2000000, 3999998, 4000000, 5000000, 5000000, 3999999, 2000000]) == 639999520000080000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 5000001, 4000000, 5000000, 5000000, 4000001, 4000000]) == 800000360000040000000000000000000", "assert unique_product([1000001, 4000000, 2000000, 4000000, 4000000]) == 8000008000000000000", "assert unique_product([1999999, 1000000, 2000000, 3000000, 2000000, 4000001, 5000000]) == 239999939999970000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 1000001, 5000000, 1000000, 1000000]) == 30000030000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000001, 5000000, 4000000, 2000000, 2000000, 4000000]) == 160000040000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 5000000, 1999999, 4000000, 5000001, 999999, 4000000]) == 399999480000080000040000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 2000000, 4000000, 5000000, 4000000]) == 120000000000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 1000001, 5000000, 1000000, 1000000, 1000000]) == 30000030000000000000000000000000", "assert unique_product([2000000, 3999999, 5000000]) == 39999990000000000000", "assert unique_product([2000000, 3999999, 1000001]) == 8000005999998000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000000, 4000000, 2000000, 5000000]) == 40000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 1999999, 4000001, 5000001]) == 1599999919999719999960000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 2000000, 4000001, 5000000, 1000000]) == 120000030000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 2000000, 5000000]) == 40000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 1000001, 5000000, 1000000, 1000000, 1000001]) == 30000030000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000001, 4000000, 2000000, 5000000]) == 200000040000000000000000000", "assert unique_product([3000000, 4000000, 2000000, 3999999, 2000001, 4000000, 5000000, 4999999, 5000001, 3999999, 5000000]) == 24000005999996039999760000120000000000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 5000000, 1999999, 4000000, 5000001, 999999, 4000000, 5000000]) == 399999480000080000040000000000000000000", "assert unique_product([1000000, 3000000, 2000000, 3000000, 2000000, 4000000, 5000000, 4000000]) == 120000000000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 5000000, 2000000]) == 40000000000000000000", "assert unique_product([1000000, 5000000, 3000000, 1000001, 5000000, 1000000, 1000000, 1000001]) == 15000015000000000000000000", "assert unique_product([2000000, 4000000, 2000001, 5000000, 2000000, 4000000, 5000000, 4000000, 2000000, 4000001]) == 320000240000040000000000000000000", "assert unique_product([3999999, 3000000, 4000000, 2000000, 4999999, 3999999, 5000000, 2000001, 4000000, 5000000, 3999999, 3999999]) == 4800000239999160000120000000000000000000000000", "assert unique_product([2000001, 2000000, 2000000, 3999998, 4000000, 5000000, 5000001, 3999999, 2000000]) == 6399999679998080000080000080000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 4000000, 4000000]) == 8000000000000", "assert unique_product([1999999, 2000000, 3999999, 5000000]) == 79999940000010000000000000", "assert unique_product([4000000, 2000000, 999999, 2000000, 4000000, 5000001, 5000000, 5000000, 5000001]) == 199999839999960000000000000000000", "assert unique_product([3000000, 4000000, 2000000, 3999999, 2000001, 4000000, 5000000, 4999999, 3999999, 5000000]) == 4800000239999160000120000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 3000000, 2000000, 4000001, 5000000]) == 120000030000000000000000000000000", "assert unique_product([2000000, 2000000, 4000000, 2000000, 4000000, 5000000, 4000000, 2000000]) == 40000000000000000000", "assert unique_product([2000000, 2000000, 5000001, 4000000, 5000000, 5000000, 4000001, 4000000]) == 800000360000040000000000000000000", "assert unique_product([1000000, 3000000, 1000001, 5000000, 1000000, 1000000]) == 15000015000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 3000000, 5000000, 4000000, 2000000]) == 120000000000000000000000000", "assert unique_product([4000000, 999999, 5000001, 4000000, 5000001, 5000000, 5000000, 5000001]) == 99999919999980000000000000", "assert unique_product([1000000, 2000000, 3000000, 1000001, 1000000]) == 6000006000000000000000000", "assert unique_product([2000000, 4000001, 2000000, 5000000, 4000000, 5000000, 4000000]) == 160000040000000000000000000", "assert unique_product([2000000, 4000000, 999999, 4000000, 2000001, 5000000, 4000000, 2000000, 2000001]) == 79999959999960000000000000000000", "assert unique_product([2000000, 4000001, 4000000, 2000000, 4000000, 3999999, 4000001, 5000000, 4000000]) == 639999999999960000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000000, 4000000, 2000000, 2000000]) == 40000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000]) == 200000040000000000000000000", "assert unique_product([2000000, 4000000, 5000000, 2000000, 4000000, 5000000, 5000000, 4000000, 2000000, 5000000, 4000000]) == 40000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000000, 4000000, 2000000, 2000000, 4000000, 5000000]) == 40000000000000000000", "assert unique_product([3999999, 3000000, 2000000, 4000000, 2000000, 3999999, 5000000, 3999999, 2000001, 4000000, 5000000, 2000001, 3999999, 3999999, 5000000, 3999999]) == 960000239999880000000000000000000000000", "assert unique_product([1999999, 1000000, 2000000, 3000000, 2000000, 4000001, 5000000, 5000000]) == 239999939999970000000000000000000000000", "assert unique_product([1000000, 2000000, 3000000, 2000000, 4000001, 5000001, 1000000]) == 120000054000006000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 2000000]) == 40000000000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 1999999, 4000000, 5000001, 999999, 4000000, 5000000]) == 399999480000080000040000000000000000000", "assert unique_product([3000000, 4000000, 2000000, 3999999, 4000000, 5000000, 4999999, 3999999, 5000000]) == 2399998920000120000000000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 5000001, 4000000, 5000000, 4999999, 4000000, 4000000, 2000000]) == 999999999999960000000000000000000", "assert unique_product([3999999, 2000000, 1999999, 2000000, 5000001, 4000000, 5000000, 5000000, 4000001, 4000000, 4000000, 4000000]) == 6399998079998960000120000040000000000000000000", "assert unique_product([2000001, 3999999, 5000000]) == 40000009999995000000", "assert unique_product([1000000, 2000000, 4000000, 5000000]) == 40000000000000000000000000", "assert unique_product([2000000, 2000000, 3999998, 4000000, 5000000, 5000000, 3999999, 2000000]) == 639999520000080000000000000000000", "assert unique_product([2000000, 2000000, 5000000, 5000000]) == 10000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000001, 5000000, 4000000, 2000000, 2000000, 4000000, 4000000]) == 160000040000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000001, 5000000, 4000000, 2000000, 2000000, 1999999, 4000000, 4000000]) == 319999919999960000000000000000000", "assert unique_product([2000000, 4000001, 2000000, 4000000, 4000000, 3999999, 4000000, 4000000]) == 127999999999992000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 5000000, 5000000, 4000000, 999999, 2000000, 5000000]) == 39999960000000000000000000", "assert unique_product([2000000, 4000000, 2000000, 4000000, 4000000, 4000000, 3999999, 4000000]) == 31999992000000000000", "assert unique_product([4000000, 2000000, 4000000, 5000001, 5000000, 5000001]) == 200000040000000000000000000" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether a list is sublist of another or not.\nassert is_Sub_Array([1,4,3,5],[1,2]) == False\nYour code should pass the test:\nassert is_Sub_Array([1,4,3,5],[1,2]) == False", "test_list": [ "assert is_Sub_Array([1,4,3,5],[1,2]) == False", "assert is_Sub_Array([1,2,1],[1,2,1]) == True", "assert is_Sub_Array([1,0,2,2],[2,2,0]) ==False", "assert is_Sub_Array([], []) == True", "assert is_Sub_Array([], [1, 2, 3]) == False", "assert is_Sub_Array([1, 2, 3], []) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [1, 3, 5]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [1, 2, 3]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [3, 4, 5]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [2, 4]) == True", "assert is_Sub_Array([1, 2, 4, 3, 2, 1], [4, 3]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [6, 7, 8]) == False", "assert is_Sub_Array([1, 1, 1, 1, 1], [1, 1, 1]) == True", "assert is_Sub_Array([True, False, True, True, False, True, True, False], [True, 5, 'pKVtiZ', True, True, -66]) == False", "assert is_Sub_Array([1, 1, 2, 3, 4, 5], [1, 3, 5]) == True", "assert is_Sub_Array([4, 1, 3], [4, 1, 3]) == True", "assert is_Sub_Array([True, True, True], []) == True", "assert is_Sub_Array([1, 3, 4, 5], [2, 4]) == False", "assert is_Sub_Array([1, 1], [1, 1]) == True", "assert is_Sub_Array([3, 4, 5, 5], [3, 4, 5, 5]) == True", "assert is_Sub_Array([-46.57347103376453, 3.1226647009953297, -30.45147357338469, -82.59243850873601, 48.432211942516204, 75.37283925638667], [3, 2, 2, 3]) == False", "assert is_Sub_Array([5, 1, 3, 3], [5, 1, 3, 3]) == True", "assert is_Sub_Array([True, 'pKVtiZ', True, True, -66], [True, 'pKVtiZ', True, True, -66]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5, 2], [6, 7, 8]) == False", "assert is_Sub_Array([1, 2, 3, 3], [1, 2, 3, 3]) == True", "assert is_Sub_Array([1, 3, 4, 5, 5], [1, 3, 4, 5, 5]) == True", "assert is_Sub_Array([1, 3, 3, 4, 5, 5], [1, 3, 3, 4, 5, 5]) == True", "assert is_Sub_Array([1, 1, 1, 1, 1], [1, 1, 1, 1, 1]) == True", "assert is_Sub_Array([1, 1, 1, 1, 2, 1, 1], [False, 1, 1, 1]) == False", "assert is_Sub_Array([-41, -69, False, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}], [-41, -69, False, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}]) == True", "assert is_Sub_Array([True, 'pKVtiZ', True, True, -66, 'pKVtiZ'], [True, 'pKVtiZ', True, True, -66, 'pKVtiZ']) == True", "assert is_Sub_Array([5, 1, 3, 3, 3], [5, 1, 3, 3, 3]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5, 2], [1, 2, 3, 4, 5, 2]) == True", "assert is_Sub_Array([3, 5], [3, 5]) == True", "assert is_Sub_Array([1, 2, 3, 4, 3], [1, 2, 3, 4, 3]) == True", "assert is_Sub_Array([1, 2, 3, 4, 3, 2], [1, 2, 3, 4, 3, 2]) == True", "assert is_Sub_Array([3], [3]) == True", "assert is_Sub_Array([1, 2, 2, 4, 5], [1, 2, 2, 4, 5]) == True", "assert is_Sub_Array([False, 4, -99, -84, -69], []) == True", "assert is_Sub_Array([3, 4, 5, -41], [3, 4, 5, -41]) == True", "assert is_Sub_Array([-41, -69, False, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}, False], [-41, -69, False, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}, False]) == True", "assert is_Sub_Array([1, 2, 3, 2, 4, 5, 2], [1, 2, 3, 2, 4, 5, 2]) == True", "assert is_Sub_Array([3, -69, 5, -41], [3, -69, 5, -41]) == True", "assert is_Sub_Array([5], [5]) == True", "assert is_Sub_Array([True, False, False, True, False, False, False, False, False, False], [2, 3]) == False", "assert is_Sub_Array([-42, -69, True, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}], [-42, -69, True, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}]) == True", "assert is_Sub_Array([8, 1, 1, 1, 1, 1, 1], [8, 1, 1, 1, 1, 1, 1]) == True", "assert is_Sub_Array([83, False, {'-37': 'pKVptiZ', '65': 'pKVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, {'-37': 'pKVptiZ', '65': 'pKVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, -77.86017743246624, False], [83, False, {'-37': 'pKVptiZ', '65': 'pKVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, {'-37': 'pKVptiZ', '65': 'pKVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, -77.86017743246624, False]) == True", "assert is_Sub_Array([True, False, False, True, False, False, False, False, False, False], [True, False, False, True, False, False, False, False, False, False]) == True", "assert is_Sub_Array([], [-41, 5, -27, -81, -41, 7, -56, -66, -98]) == False", "assert is_Sub_Array([83, False, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, -77.86017743246624, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, False], [83, False, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, -77.86017743246624, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, False]) == True", "assert is_Sub_Array([4, 5, 83, 5], [4, 5, 83, 5]) == True", "assert is_Sub_Array([1, 1, 1, 1, 2, 1, 1], [1, 1, 1]) == True", "assert is_Sub_Array([2, 4, 1, 3], [2, 4, 1, 3]) == True", "assert is_Sub_Array([True, 'pKVtiZ', True, True, -66, 'pKVtiZ', 'pKVtiZ'], [True, 'pKVtiZ', True, True, -66, 'pKVtiZ', 'pKVtiZ']) == True", "assert is_Sub_Array([1, 1, 1, 1, 1], [1, 1, 1, 1]) == True", "assert is_Sub_Array([83, False, 4, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, -77.86017743246624, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, False], [83, False, 4, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, -77.86017743246624, {'-37': 'pKVptiZ', '65': 'pKpVtiZ', '9': 'pKVtiZ', '3': 'ZWwH', '-12': 'pKVtiZ'}, False]) == True", "assert is_Sub_Array([1, 2, -41, 4, 3, 2], [1, 2, -41, 4, 3, 2]) == True", "assert is_Sub_Array([2], [2]) == True", "assert is_Sub_Array([2, 4], [2, 4]) == True", "assert is_Sub_Array([-84, 3, 3, 4, 5, 5], [-84, 3, 3, 4, 5, 5]) == True", "assert is_Sub_Array([True, 'pKVtiZ', True, True, 'pKVtiZ', 'pKVtiZ'], [True, 'pKVtiZ', True, True, 'pKVtiZ', 'pKVtiZ']) == True", "assert is_Sub_Array(['pKVtiZ', True, True, 'pKVtiZ'], ['pKVtiZ', True, True, 'pKVtiZ']) == True", "assert is_Sub_Array([True, True, True], [True, True, True]) == True", "assert is_Sub_Array([-41, -69, False, False, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}, False], [-41, -69, False, False, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}, False]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5, 1, 2], [1, 2, 3, 4, 5, 1, 2]) == True", "assert is_Sub_Array([1, 3, 3], [1, 3, 3]) == True", "assert is_Sub_Array([True, 'pKVtiZ', True, True, -66, -66, 'pKVtiZ'], [True, 'pKVtiZ', True, True, -66, -66, 'pKVtiZ']) == True", "assert is_Sub_Array([9, 1, 3, 4, 5, 5], [9, 1, 3, 4, 5, 5]) == True", "assert is_Sub_Array([1, -99, 2, 3, -69, 2, 4, 5], [1, -99, 2, 3, -69, 2, 4, 5]) == True", "assert is_Sub_Array([1, 3, 2, 4, 5], [1, 3, 2, 4, 5]) == True", "assert is_Sub_Array([1, 8, 2, 3], []) == True", "assert is_Sub_Array([5, 1, 3, 3, 3, 5], [5, 1, 3, 3, 3, 5]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [3, 5]) == True", "assert is_Sub_Array([1, 2, 3, 4, 5], [1, 2, 3, 4, 5]) == True", "assert is_Sub_Array([5, -1, 0, 3, 3], [5, -1, 0, 3, 3]) == True", "assert is_Sub_Array([2, 4, 1, 3, 3], [2, 4, 1, 3, 3]) == True", "assert is_Sub_Array([1, 3, 2, 4, 5, 4], [1, 3, 2, 4, 5, 4]) == True", "assert is_Sub_Array([4, 1, 8, 3], [4, 1, 8, 3]) == True", "assert is_Sub_Array(['kvYsHUDga', 'ZWwH', 'JKq', 'FDmCp', 'pKpVtiZ'], []) == True", "assert is_Sub_Array([1, 3, 4, 9, 5], [1, 3, 4, 9, 5]) == True", "assert is_Sub_Array([-41, -69, True, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}, False], [-41, -69, True, {'-99': -42.77556548447436, '3': 3.1226647009953297, '8': -46.57347103376453, '2': -46.57347103376453, '5': 59.33643533503681, '-37': 48.432211942516204}, False]) == True", "assert is_Sub_Array([True, 5, 'pKVtiZ', True, True, -66, -66], [True, 5, 'pKVtiZ', True, True, -66, -66]) == True", "assert is_Sub_Array([-69, False], [-69, False]) == True", "assert is_Sub_Array([2, -42, 4, 4], [2, -42, 4, 4]) == True", "assert is_Sub_Array([9, 1, 3, 4, 5, 5, 5], [9, 1, 3, 4, 5, 5, 5]) == True", "assert is_Sub_Array([1, 1, 65, 1, 1, 1], [1, 1, 1]) == True", "assert is_Sub_Array([2, -69, False], [2, -69, False]) == True", "assert is_Sub_Array([False, False, 4, -99, -84, -69], []) == True", "assert is_Sub_Array([-69, True, False], [-69, True, False]) == True", "assert is_Sub_Array([4, 3], [4, 3]) == True", "assert is_Sub_Array([8, 1, 1, 1, 1, 1], [8, 1, 1, 1, 1, 1]) == True", "assert is_Sub_Array([-66, 1, 8, 3], [-66, 1, 8, 3]) == True", "assert is_Sub_Array([8, 1, 1, -37, -98, 1, 1], [8, 1, 1, -37, -98, 1, 1]) == True", "assert is_Sub_Array([True, False, True, True, False, True, False], [True, 5, 'pKVtiZ', True, True, -66]) == False", "assert is_Sub_Array([8, 83, 1, 1, -37, -98, 1, 1], [8, 83, 1, 1, -37, -98, 1, 1]) == True", "assert is_Sub_Array([True, False, False, False, False, False, False, False, False], [True, False, False, False, False, False, False, False, False]) == True", "assert is_Sub_Array(['kvYsHUDga', 'ZWwH', 'JKq', 'FDmCp', 'pKpVtiZ'], [-4.874268149645673, -77.86017743246624, -33.718853590345745, -77.86017743246624, -21.16888114566433, -46.57347103376453, -46.57347103376453, -46.57347103376453, 75.37283925638667, 67.81478209152664]) == False", "assert is_Sub_Array([1, 2, -41, 4, 3, 2, 1], [1, 2, -41, 4, 3, 2, 1]) == True", "assert is_Sub_Array([1, 1, 65, 1, 1, 1], [1, 1, 65, 1, 1, 1]) == True", "assert is_Sub_Array(['vbL', 'SohtgNm'], []) == True", "assert is_Sub_Array([1, 1, 2, 3, 4, 5, 2], [1, 1, 2, 3, 4, 5, 2]) == True", "assert is_Sub_Array([8, 1, 1, -85, 1, 1, 1, 1, 1], [8, 1, 1, -85, 1, 1, 1, 1, 1]) == True", "assert is_Sub_Array([8, 1, -85, 1, 1, 1, 1, 1], [8, 1, -85, 1, 1, 1, 1, 1]) == True", "assert is_Sub_Array([2, False], [2, False]) == True", "assert is_Sub_Array([1, 3, 3, 3], [1, 3, 3, 3]) == True", "assert is_Sub_Array([1, 1, 1, 1, 1, 1], [1, 1, 1, 1, 1, 1]) == True", "assert is_Sub_Array([True, False, False, True, False, False, False, False, True], []) == True", "assert is_Sub_Array([1, 2, 4], [1, 2, 4]) == True", "assert is_Sub_Array([-82, -69, -58.58022067422433], [-82, -69, -58.58022067422433]) == True", "assert is_Sub_Array([3, 4, 4], [3, 4, 4]) == True", "assert is_Sub_Array([1, 2, 0, -41, 4, 3, 2], [1, 2, 0, -41, 4, 3, 2]) == True", "assert is_Sub_Array([-82, 5, -66], [-82, 5, -66]) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the last digit in factorial of a given number.\nassert last_Digit_Factorial(4) == 4\nYour code should pass the test:\nassert last_Digit_Factorial(4) == 4", "test_list": [ "assert last_Digit_Factorial(4) == 4", "assert last_Digit_Factorial(21) == 0", "assert last_Digit_Factorial(30) == 0", "assert last_Digit_Factorial(0) == 1", "assert last_Digit_Factorial(100) == 0", "assert last_Digit_Factorial(1000) == 0", "assert last_Digit_Factorial(2.5) == 0", "assert last_Digit_Factorial(3.8) == 0", "assert last_Digit_Factorial(23.074387180674933) == 0", "assert last_Digit_Factorial(1002) == 0", "assert last_Digit_Factorial(3.6549340293875163) == 0", "assert last_Digit_Factorial(1) == 1", "assert last_Digit_Factorial(1001) == 0", "assert last_Digit_Factorial(1004) == 0", "assert last_Digit_Factorial(1005) == 0", "assert last_Digit_Factorial(2.7450543076525977) == 0", "assert last_Digit_Factorial(2.984088088976573) == 0", "assert last_Digit_Factorial(False) == 1", "assert last_Digit_Factorial(1.5869584267664152) == 1.5869584267664152", "assert last_Digit_Factorial(4.4891610250151395) == 0", "assert last_Digit_Factorial(3.089056366033627) == 0", "assert last_Digit_Factorial(5.3027554376354065) == 0", "assert last_Digit_Factorial(4.028700461024416) == 0", "assert last_Digit_Factorial(3.3725660528964188) == 0", "assert last_Digit_Factorial(2.659818066786769) == 0", "assert last_Digit_Factorial(101) == 0", "assert last_Digit_Factorial(3.9892249182433384) == 0", "assert last_Digit_Factorial(43.22021574103846) == 0", "assert last_Digit_Factorial(1003) == 0", "assert last_Digit_Factorial(3.4810848948595883) == 0", "assert last_Digit_Factorial(3.1692815338650804) == 0", "assert last_Digit_Factorial(1.0650899101182285) == 1.0650899101182285", "assert last_Digit_Factorial(4.8986268408429705) == 0", "assert last_Digit_Factorial(3.69259942495845) == 0", "assert last_Digit_Factorial(4.010566044386772) == 0", "assert last_Digit_Factorial(2.46052609812118) == 0", "assert last_Digit_Factorial(4.3768561489787015) == 0", "assert last_Digit_Factorial(3.6713224100924298) == 0", "assert last_Digit_Factorial(6.935501596893169) == 0", "assert last_Digit_Factorial(True) == True", "assert last_Digit_Factorial(5.576255197840953) == 0", "assert last_Digit_Factorial(3.1502544356560356) == 0", "assert last_Digit_Factorial(2) == 2", "assert last_Digit_Factorial(4.300091801377514) == 0", "assert last_Digit_Factorial(52) == 0", "assert last_Digit_Factorial(3.9155933853489917) == 0", "assert last_Digit_Factorial(1.2988016591670484) == 1.2988016591670484", "assert last_Digit_Factorial(3.1345443196257796) == 0", "assert last_Digit_Factorial(4.702845843512329) == 0", "assert last_Digit_Factorial(5.7904698753969095) == 0", "assert last_Digit_Factorial(5.08429332701897) == 0", "assert last_Digit_Factorial(2.70011255752315) == 0", "assert last_Digit_Factorial(4.2559869433188195) == 0", "assert last_Digit_Factorial(102) == 0", "assert last_Digit_Factorial(3.406797610867242) == 0", "assert last_Digit_Factorial(99) == 0", "assert last_Digit_Factorial(4.435038737799036) == 0", "assert last_Digit_Factorial(1.4008586626684183) == 1.4008586626684183", "assert last_Digit_Factorial(4.651659050694365) == 0", "assert last_Digit_Factorial(53.1496871886536) == 0", "assert last_Digit_Factorial(0.8498008825679926) == 0.8498008825679926", "assert last_Digit_Factorial(4.236748701784517) == 0", "assert last_Digit_Factorial(3.0176093048380817) == 0", "assert last_Digit_Factorial(5.133463974586371) == 0", "assert last_Digit_Factorial(3.393657330126743) == 0", "assert last_Digit_Factorial(4.344750174563699) == 0", "assert last_Digit_Factorial(4.837864419812973) == 0", "assert last_Digit_Factorial(2.6908650361350013) == 0", "assert last_Digit_Factorial(5.772166921072477) == 0", "assert last_Digit_Factorial(0.5074731900068552) == 0.5074731900068552", "assert last_Digit_Factorial(69.33184166028241) == 0", "assert last_Digit_Factorial(3.3762535480187235) == 0", "assert last_Digit_Factorial(7.243263284188997) == 0", "assert last_Digit_Factorial(4.974431164462356) == 0", "assert last_Digit_Factorial(5.469285749841541) == 0", "assert last_Digit_Factorial(1.5343753447253605) == 1.5343753447253605", "assert last_Digit_Factorial(2.5781387688594126) == 0", "assert last_Digit_Factorial(3.918207627535553) == 0", "assert last_Digit_Factorial(0.9205123885721357) == 0.9205123885721357", "assert last_Digit_Factorial(103.48263235407262) == 0", "assert last_Digit_Factorial(69.56546331692546) == 0", "assert last_Digit_Factorial(52.786214360228406) == 0", "assert last_Digit_Factorial(1.1082663739985814) == 1.1082663739985814", "assert last_Digit_Factorial(1.5553181988910334) == 1.5553181988910334", "assert last_Digit_Factorial(3.6259722043628435) == 0", "assert last_Digit_Factorial(1.512932111354384) == 1.512932111354384", "assert last_Digit_Factorial(5.427953835612454) == 0", "assert last_Digit_Factorial(5.301127862149642) == 0", "assert last_Digit_Factorial(3.101495225095455) == 0", "assert last_Digit_Factorial(5.053328029880188) == 0", "assert last_Digit_Factorial(2.827561476523175) == 0", "assert last_Digit_Factorial(69.55434074938697) == 0", "assert last_Digit_Factorial(999) == 0", "assert last_Digit_Factorial(0.3200065092069435) == 0.3200065092069435", "assert last_Digit_Factorial(6.517544303154645) == 0", "assert last_Digit_Factorial(5.969669418741442) == 0", "assert last_Digit_Factorial(6.995408755091795) == 0", "assert last_Digit_Factorial(3.779793140475027) == 0", "assert last_Digit_Factorial(39.76359690298631) == 0", "assert last_Digit_Factorial(4.837924418596985) == 0", "assert last_Digit_Factorial(53.87971805413539) == 0", "assert last_Digit_Factorial(6.222949720825474) == 0", "assert last_Digit_Factorial(2.1433527265004884) == 0", "assert last_Digit_Factorial(2.7823798633471695) == 0", "assert last_Digit_Factorial(3.315018436042766) == 0", "assert last_Digit_Factorial(4.0729861275073915) == 0", "assert last_Digit_Factorial(1.9387560331276734) == 1.9387560331276734", "assert last_Digit_Factorial(2.5216632117725064) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to interleave 3 lists of the same length into a single flat list.\nassert interleave_lists([1,2,3,4,5,6,7],[10,20,30,40,50,60,70],[100,200,300,400,500,600,700])==[1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500, 6, 60, 600, 7, 70, 700]\nYour code should pass the test:\nassert interleave_lists([1,2,3,4,5,6,7],[10,20,30,40,50,60,70],[100,200,300,400,500,600,700])==[1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500, 6, 60, 600, 7, 70, 700]", "test_list": [ "assert interleave_lists([1,2,3,4,5,6,7],[10,20,30,40,50,60,70],[100,200,300,400,500,600,700])==[1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500, 6, 60, 600, 7, 70, 700]", "assert interleave_lists([10,20],[15,2],[5,10])==[10,15,5,20,2,10]", "assert interleave_lists([11,44], [10,15], [20,5])==[11,10,20,44,15,5]", "assert interleave_lists([], [], []) == []", "assert interleave_lists([1, 2, 3, 4, 5], [10, 20, 30, 40, 50], [100, 200, 300, 400, 500]) == [1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500]", "assert interleave_lists([1, 2, 3, 4, 5, 6], [10, 20, 30, 40, 50, 60], [100, 200, 300, 400, 500, 600]) == [1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500, 6, 60, 600]", "assert interleave_lists([11, 22, 33], [10, 20, 30], [100, 200, 300]) == [11, 10, 100, 22, 20, 200, 33, 30, 300]", "assert interleave_lists([1, 2, 3, 4], [10, 20, 30, 40], [100, 200, 300, 400]) == [1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400]", "assert interleave_lists([0, 1, 2, 3, 4], [5, 6, 7, 8, 9], [10, 11, 12, 13, 14]) == [0, 5, 10, 1, 6, 11, 2, 7, 12, 3, 8, 13, 4, 9, 14]", "assert interleave_lists([1, 2, 3], [4, 5, 6], [7, 8, 9]) == [1, 4, 7, 2, 5, 8, 3, 6, 9]", "assert interleave_lists([1, 2, 3, 4], [5, 6, 7, 8], [9, 10, 11, 12]) == [1, 5, 9, 2, 6, 10, 3, 7, 11, 4, 8, 12]", "assert interleave_lists([13, 14, 15], [16, 17, 18], [19, 20, 21]) == [13, 16, 19, 14, 17, 20, 15, 18, 21]", "assert interleave_lists([22, 23, 24], [25, 26, 27], [28, 29, 30]) == [22, 25, 28, 23, 26, 29, 24, 27, 30]", "assert interleave_lists([22, 16, 33], [10, 20, 30], [22, 16, 33]) == [22, 10, 22, 16, 20, 16, 33, 30, 33]", "assert interleave_lists([5, 6, 7, 8, 9], [10, 11, 12, 13, 14], [10, 11, 12, 13, 14]) == [5, 10, 10, 6, 11, 11, 7, 12, 12, 8, 13, 13, 9, 14, 14]", "assert interleave_lists([1, 7, 3], [1, 7, 3], [1, 7, 3]) == [1, 1, 1, 7, 7, 7, 3, 3, 3]", "assert interleave_lists([4, 1, 7, 3], [4, 1, 7, 3], [4, 1, 7, 3]) == [4, 4, 4, 1, 1, 1, 7, 7, 7, 3, 3, 3]", "assert interleave_lists([16, 17, 18], [19, 20, 21], [19, 20, 21]) == [16, 19, 19, 17, 20, 20, 18, 21, 21]", "assert interleave_lists([5, 6, 7, 8, 9], [9, 11, 12, 13, 14], [9, 11, 12, 13, 14]) == [5, 9, 9, 6, 11, 11, 7, 12, 12, 8, 13, 13, 9, 14, 14]", "assert interleave_lists([13, 14, 15], [16, 17, 18], [13, 14, 15]) == [13, 16, 13, 14, 17, 14, 15, 18, 15]", "assert interleave_lists([1, 30, 7, 3, 1], [1, 30, 7, 3, 1], [1, 30, 7, 3, 1]) == [1, 1, 1, 30, 30, 30, 7, 7, 7, 3, 3, 3, 1, 1, 1]", "assert interleave_lists([9, 11, 12, 13], [9, 11, 12, 13], [9, 11, 12, 13]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 13, 13, 13]", "assert interleave_lists([10, 11, 12, 14, 14], [10, 11, 12, 14, 14], [10, 11, 12, 14, 14]) == [10, 10, 10, 11, 11, 11, 12, 12, 12, 14, 14, 14, 14, 14, 14]", "assert interleave_lists([10, 11, 12, 15, 14, 15], [10, 11, 12, 15, 14, 15], [10, 11, 12, 15, 14, 15]) == [10, 10, 10, 11, 11, 11, 12, 12, 12, 15, 15, 15, 14, 14, 14, 15, 15, 15]", "assert interleave_lists([9, 12, 13], [9, 12, 13], [9, 12, 13]) == [9, 9, 9, 12, 12, 12, 13, 13, 13]", "assert interleave_lists([1, 2, 3, 4], [10, 20, 30, 40], [10, 20, 30, 40]) == [1, 10, 10, 2, 20, 20, 3, 30, 30, 4, 40, 40]", "assert interleave_lists([0, 1, 2, 3, 4], [5, 6, 7, 8, 9], [5, 6, 7, 8, 9]) == [0, 5, 5, 1, 6, 6, 2, 7, 7, 3, 8, 8, 4, 9, 9]", "assert interleave_lists([9, 11, 12, 13, 13], [9, 11, 12, 13, 13], [9, 11, 12, 13, 13]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([16, 17, 18], [19, 21, 21], [19, 21, 21]) == [16, 19, 19, 17, 21, 21, 18, 21, 21]", "assert interleave_lists([1, 2, 3, 4, 5, 6, 4], [10, 20, 30, 40, 2, 50, 60], [10, 20, 30, 40, 2, 50, 60]) == [1, 10, 10, 2, 20, 20, 3, 30, 30, 4, 40, 40, 5, 2, 2, 6, 50, 50, 4, 60, 60]", "assert interleave_lists([0, 1, 2, 3, 8], [5, 6, 7, 8, 9], [10, 11, 12, 13, 14]) == [0, 5, 10, 1, 6, 11, 2, 7, 12, 3, 8, 13, 8, 9, 14]", "assert interleave_lists([10, 12, 15, 14, 15], [10, 12, 15, 14, 15], [10, 12, 15, 14, 15]) == [10, 10, 10, 12, 12, 12, 15, 15, 15, 14, 14, 14, 15, 15, 15]", "assert interleave_lists([9, 11, 12, 3, 13, 9], [9, 11, 12, 3, 13, 9], [9, 11, 12, 3, 13, 9]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 3, 3, 3, 13, 13, 13, 9, 9, 9]", "assert interleave_lists([17, 17, 18], [19, 20, 21], [19, 20, 21]) == [17, 19, 19, 17, 20, 20, 18, 21, 21]", "assert interleave_lists([2, 1, 7, 3, 1], [2, 1, 7, 3, 1], [2, 1, 7, 3, 1]) == [2, 2, 2, 1, 1, 1, 7, 7, 7, 3, 3, 3, 1, 1, 1]", "assert interleave_lists([11, 12, 13, 13], [11, 12, 13, 13], [11, 12, 13, 13]) == [11, 11, 11, 12, 12, 12, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([2, 1, 7, 1], [2, 1, 7, 1], [2, 1, 7, 1]) == [2, 2, 2, 1, 1, 1, 7, 7, 7, 1, 1, 1]", "assert interleave_lists([4, 6, 6], [4, 6, 6], [7, 8, 9]) == [4, 4, 7, 6, 6, 8, 6, 6, 9]", "assert interleave_lists([16, 17, 18], [20, 21, 21], [20, 21, 21]) == [16, 20, 20, 17, 21, 21, 18, 21, 21]", "assert interleave_lists([2, 29, 7, 1, 29], [2, 29, 7, 1, 29], [2, 29, 7, 1, 29]) == [2, 2, 2, 29, 29, 29, 7, 7, 7, 1, 1, 1, 29, 29, 29]", "assert interleave_lists([1, 30, 7, 3, 2], [1, 30, 7, 3, 2], [1, 30, 7, 3, 2]) == [1, 1, 1, 30, 30, 30, 7, 7, 7, 3, 3, 3, 2, 2, 2]", "assert interleave_lists([9, 11, 12, 3, 13, 8], [9, 11, 12, 3, 13, 8], [9, 11, 12, 3, 13, 8]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 3, 3, 3, 13, 13, 13, 8, 8, 8]", "assert interleave_lists([2, 29, 7, 0, 29], [2, 29, 7, 0, 29], [2, 29, 7, 0, 29]) == [2, 2, 2, 29, 29, 29, 7, 7, 7, 0, 0, 0, 29, 29, 29]", "assert interleave_lists([1, 30, 7, 500, 3, 1, 7, 1], [1, 30, 7, 500, 3, 1, 7, 1], [1, 30, 7, 500, 3, 1, 7, 1]) == [1, 1, 1, 30, 30, 30, 7, 7, 7, 500, 500, 500, 3, 3, 3, 1, 1, 1, 7, 7, 7, 1, 1, 1]", "assert interleave_lists([9, 12, 12, 12, 13], [9, 12, 12, 12, 13], [9, 12, 12, 12, 13]) == [9, 9, 9, 12, 12, 12, 12, 12, 12, 12, 12, 12, 13, 13, 13]", "assert interleave_lists([1, 30, 7, 7, 500, 3, 1, 7, 1], [1, 30, 7, 7, 500, 3, 1, 7, 1], [1, 30, 7, 7, 500, 3, 1, 7, 1]) == [1, 1, 1, 30, 30, 30, 7, 7, 7, 7, 7, 7, 500, 500, 500, 3, 3, 3, 1, 1, 1, 7, 7, 7, 1, 1, 1]", "assert interleave_lists([16, 17, 18, 18], [19, 21, 21, 19], [19, 21, 21, 19]) == [16, 19, 19, 17, 21, 21, 18, 21, 21, 18, 19, 19]", "assert interleave_lists([1, 29, 7, 29, 29], [1, 29, 7, 29, 29], [1, 29, 7, 29, 29]) == [1, 1, 1, 29, 29, 29, 7, 7, 7, 29, 29, 29, 29, 29, 29]", "assert interleave_lists([4, 1, 30, 7, 3, 2, 4], [4, 1, 30, 7, 3, 2, 4], [4, 1, 30, 7, 3, 2, 4]) == [4, 4, 4, 1, 1, 1, 30, 30, 30, 7, 7, 7, 3, 3, 3, 2, 2, 2, 4, 4, 4]", "assert interleave_lists([19, 20, 21, 21], [19, 20, 21, 21], [19, 20, 21, 21]) == [19, 19, 19, 20, 20, 20, 21, 21, 21, 21, 21, 21]", "assert interleave_lists([9, 12, 3, 9], [9, 12, 3, 9], [9, 12, 3, 9]) == [9, 9, 9, 12, 12, 12, 3, 3, 3, 9, 9, 9]", "assert interleave_lists([1, 30, 11, 7, 500, 3, 1, 7, 1], [1, 30, 11, 7, 500, 3, 1, 7, 1], [1, 30, 11, 7, 500, 3, 1, 7, 1]) == [1, 1, 1, 30, 30, 30, 11, 11, 11, 7, 7, 7, 500, 500, 500, 3, 3, 3, 1, 1, 1, 7, 7, 7, 1, 1, 1]", "assert interleave_lists([19, 20, 21, 21, 21], [19, 20, 21, 21, 21], [19, 20, 21, 21, 21]) == [19, 19, 19, 20, 20, 20, 21, 21, 21, 21, 21, 21, 21, 21, 21]", "assert interleave_lists([20, 19, 20, 21, 21], [20, 19, 20, 21, 21], [20, 19, 20, 21, 21]) == [20, 20, 20, 19, 19, 19, 20, 20, 20, 21, 21, 21, 21, 21, 21]", "assert interleave_lists([9, 8, 13], [9, 8, 13], [9, 8, 13]) == [9, 9, 9, 8, 8, 8, 13, 13, 13]", "assert interleave_lists([9, 8, 13, 13], [9, 8, 13, 13], [9, 8, 13, 13]) == [9, 9, 9, 8, 8, 8, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([10, 12, 15, 15, 14, 15], [10, 12, 15, 15, 14, 15], [10, 12, 15, 15, 14, 15]) == [10, 10, 10, 12, 12, 12, 15, 15, 15, 15, 15, 15, 14, 14, 14, 15, 15, 15]", "assert interleave_lists([1, 30, 7, 7, 500, 3, 1, 7, 1, 1, 500], [1, 30, 7, 7, 500, 3, 1, 7, 1, 1, 500], [1, 30, 7, 7, 500, 3, 1, 7, 1, 1, 500]) == [1, 1, 1, 30, 30, 30, 7, 7, 7, 7, 7, 7, 500, 500, 500, 3, 3, 3, 1, 1, 1, 7, 7, 7, 1, 1, 1, 1, 1, 1, 500, 500, 500]", "assert interleave_lists([2, 1, 7, 3, 1, 2, 7, 1], [2, 1, 7, 3, 1, 2, 7, 1], [2, 1, 7, 3, 1, 2, 7, 1]) == [2, 2, 2, 1, 1, 1, 7, 7, 7, 3, 3, 3, 1, 1, 1, 2, 2, 2, 7, 7, 7, 1, 1, 1]", "assert interleave_lists([0, 12, 1, 6], [0, 12, 1, 6], [0, 12, 1, 6]) == [0, 0, 0, 12, 12, 12, 1, 1, 1, 6, 6, 6]", "assert interleave_lists([9, 11, 12, 3, 13, 9, 9], [9, 11, 12, 3, 13, 9, 9], [9, 11, 12, 3, 13, 9, 9]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 3, 3, 3, 13, 13, 13, 9, 9, 9, 9, 9, 9]", "assert interleave_lists([1, 30, 7, 3, 17, 1], [1, 30, 7, 3, 17, 1], [1, 30, 7, 3, 17, 1]) == [1, 1, 1, 30, 30, 30, 7, 7, 7, 3, 3, 3, 17, 17, 17, 1, 1, 1]", "assert interleave_lists([26, 9, 8, 13, 13], [26, 9, 8, 13, 13], [26, 9, 8, 13, 13]) == [26, 26, 26, 9, 9, 9, 8, 8, 8, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([1, 2, 3], [4, 5, 6], [1, 2, 3]) == [1, 4, 1, 2, 5, 2, 3, 6, 3]", "assert interleave_lists([1, 30, 3, 2], [1, 30, 3, 2], [1, 30, 3, 2]) == [1, 1, 1, 30, 30, 30, 3, 3, 3, 2, 2, 2]", "assert interleave_lists([100, 200, 299, 400], [1, 2, 3, 4], [100, 200, 299, 400]) == [100, 1, 100, 200, 2, 200, 299, 3, 299, 400, 4, 400]", "assert interleave_lists([12, 13], [12, 13], [12, 13]) == [12, 12, 12, 13, 13, 13]", "assert interleave_lists([11, 12, 13, 13, 12], [11, 12, 13, 13, 12], [11, 12, 13, 13, 12]) == [11, 11, 11, 12, 12, 12, 13, 13, 13, 13, 13, 13, 12, 12, 12]", "assert interleave_lists([0, 1, 30, 7, 500, 3, 1, 7, 1, 30], [0, 1, 30, 7, 500, 3, 1, 7, 1, 30], [0, 1, 30, 7, 500, 3, 1, 7, 1, 30]) == [0, 0, 0, 1, 1, 1, 30, 30, 30, 7, 7, 7, 500, 500, 500, 3, 3, 3, 1, 1, 1, 7, 7, 7, 1, 1, 1, 30, 30, 30]", "assert interleave_lists([11, 12, 12, 13], [11, 12, 12, 13], [11, 12, 12, 13]) == [11, 11, 11, 12, 12, 12, 12, 12, 12, 13, 13, 13]", "assert interleave_lists([9, 12, 3, 9, 12], [9, 12, 3, 9, 12], [9, 12, 3, 9, 12]) == [9, 9, 9, 12, 12, 12, 3, 3, 3, 9, 9, 9, 12, 12, 12]", "assert interleave_lists([9, 11, 12, 3, 13, 9, 11], [9, 11, 12, 3, 13, 9, 11], [9, 11, 12, 3, 13, 9, 11]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 3, 3, 3, 13, 13, 13, 9, 9, 9, 11, 11, 11]", "assert interleave_lists([11, 12, 13], [11, 12, 13], [11, 12, 13]) == [11, 11, 11, 12, 12, 12, 13, 13, 13]", "assert interleave_lists([9, 13, 12, 12, 13, 13], [9, 13, 12, 12, 13, 13], [9, 13, 12, 12, 13, 13]) == [9, 9, 9, 13, 13, 13, 12, 12, 12, 12, 12, 12, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([-1, 29, 7, 29, 29], [-1, 29, 7, 29, 29], [-1, 29, 7, 29, 29]) == [-1, -1, -1, 29, 29, 29, 7, 7, 7, 29, 29, 29, 29, 29, 29]", "assert interleave_lists([12, 13, 13, 12, 13], [12, 13, 13, 12, 13], [12, 13, 13, 12, 13]) == [12, 12, 12, 13, 13, 13, 13, 13, 13, 12, 12, 12, 13, 13, 13]", "assert interleave_lists([11, 9, 12, 6], [11, 9, 12, 6], [11, 9, 12, 6]) == [11, 11, 11, 9, 9, 9, 12, 12, 12, 6, 6, 6]", "assert interleave_lists([26, 10, 8, 13, 13], [26, 10, 8, 13, 13], [26, 10, 8, 13, 13]) == [26, 26, 26, 10, 10, 10, 8, 8, 8, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([19, 20, 21, 8, 21], [19, 20, 21, 8, 21], [19, 20, 21, 8, 21]) == [19, 19, 19, 20, 20, 20, 21, 21, 21, 8, 8, 8, 21, 21, 21]", "assert interleave_lists([2, 28, 7, 0, 29, 0], [2, 28, 7, 0, 29, 0], [2, 28, 7, 0, 29, 0]) == [2, 2, 2, 28, 28, 28, 7, 7, 7, 0, 0, 0, 29, 29, 29, 0, 0, 0]", "assert interleave_lists([9, 8, 13, 13, 9], [9, 8, 13, 13, 9], [9, 8, 13, 13, 9]) == [9, 9, 9, 8, 8, 8, 13, 13, 13, 13, 13, 13, 9, 9, 9]", "assert interleave_lists([1, 31, 30, 7, 3, 1], [1, 31, 30, 7, 3, 1], [1, 31, 30, 7, 3, 1]) == [1, 1, 1, 31, 31, 31, 30, 30, 30, 7, 7, 7, 3, 3, 3, 1, 1, 1]", "assert interleave_lists([26, 10, 13, 13], [26, 10, 13, 13], [26, 10, 13, 13]) == [26, 26, 26, 10, 10, 10, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([4, 6, 6], [12, 8, 9], [12, 8, 9]) == [4, 12, 12, 6, 8, 8, 6, 9, 9]", "assert interleave_lists([11, 12, 12, 13, 11], [11, 12, 12, 13, 11], [11, 12, 12, 13, 11]) == [11, 11, 11, 12, 12, 12, 12, 12, 12, 13, 13, 13, 11, 11, 11]", "assert interleave_lists([11, 12, 13, 12], [11, 12, 13, 12], [11, 12, 13, 12]) == [11, 11, 11, 12, 12, 12, 13, 13, 13, 12, 12, 12]", "assert interleave_lists([2, 29, 0, 29, 2], [2, 29, 0, 29, 2], [2, 29, 0, 29, 2]) == [2, 2, 2, 29, 29, 29, 0, 0, 0, 29, 29, 29, 2, 2, 2]", "assert interleave_lists([10, 12, 15, 33, 15, 33], [10, 12, 15, 33, 15, 33], [10, 12, 15, 33, 15, 33]) == [10, 10, 10, 12, 12, 12, 15, 15, 15, 33, 33, 33, 15, 15, 15, 33, 33, 33]", "assert interleave_lists([19, 20, 2, 21], [19, 20, 2, 21], [19, 20, 2, 21]) == [19, 19, 19, 20, 20, 20, 2, 2, 2, 21, 21, 21]", "assert interleave_lists([9, 13, 12, 12, 12, 13, 13], [9, 13, 12, 12, 12, 13, 13], [9, 13, 12, 12, 12, 13, 13]) == [9, 9, 9, 13, 13, 13, 12, 12, 12, 12, 12, 12, 12, 12, 12, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([-1, 29, 7, 29, 29, 29], [-1, 29, 7, 29, 29, 29], [-1, 29, 7, 29, 29, 29]) == [-1, -1, -1, 29, 29, 29, 7, 7, 7, 29, 29, 29, 29, 29, 29, 29, 29, 29]", "assert interleave_lists([26, 8, 13, 13], [26, 8, 13, 13], [26, 8, 13, 13]) == [26, 26, 26, 8, 8, 8, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([11, 12, 13, 13, 13], [11, 12, 13, 13, 13], [11, 12, 13, 13, 13]) == [11, 11, 11, 12, 12, 12, 13, 13, 13, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([10, 11, 12, 14, 14, 11], [10, 11, 12, 14, 14, 11], [10, 11, 12, 14, 14, 11]) == [10, 10, 10, 11, 11, 11, 12, 12, 12, 14, 14, 14, 14, 14, 14, 11, 11, 11]", "assert interleave_lists([9, 12, 3, 8, 12, 9], [9, 12, 3, 8, 12, 9], [9, 12, 3, 8, 12, 9]) == [9, 9, 9, 12, 12, 12, 3, 3, 3, 8, 8, 8, 12, 12, 12, 9, 9, 9]", "assert interleave_lists([2, 0, 29, 7, 1, 29], [2, 0, 29, 7, 1, 29], [2, 0, 29, 7, 1, 29]) == [2, 2, 2, 0, 0, 0, 29, 29, 29, 7, 7, 7, 1, 1, 1, 29, 29, 29]", "assert interleave_lists([11, 12, 13, 13, 12, 12], [11, 12, 13, 13, 12, 12], [11, 12, 13, 13, 12, 12]) == [11, 11, 11, 12, 12, 12, 13, 13, 13, 13, 13, 13, 12, 12, 12, 12, 12, 12]", "assert interleave_lists([10, 12, 15, 14, 14, 15], [10, 12, 15, 14, 14, 15], [10, 12, 15, 14, 14, 15]) == [10, 10, 10, 12, 12, 12, 15, 15, 15, 14, 14, 14, 14, 14, 14, 15, 15, 15]", "assert interleave_lists([9, 11, 12, 15, 13], [9, 11, 12, 15, 13], [9, 11, 12, 15, 13]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 15, 15, 15, 13, 13, 13]", "assert interleave_lists([9, 11, 12, 13, 13, 13], [9, 11, 12, 13, 13, 13], [9, 11, 12, 13, 13, 13]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 13, 13, 13, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([29, 30, 3, 2], [29, 30, 3, 2], [29, 30, 3, 2]) == [29, 29, 29, 30, 30, 30, 3, 3, 3, 2, 2, 2]", "assert interleave_lists([26, 13, 13], [26, 13, 13], [26, 13, 13]) == [26, 26, 26, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([9, 10, 11, 12], [9, 10, 11, 12], [9, 10, 11, 12]) == [9, 9, 9, 10, 10, 10, 11, 11, 11, 12, 12, 12]", "assert interleave_lists([19, 20, 21, 8, 21, 21, 21], [19, 20, 21, 8, 21, 21, 21], [19, 20, 21, 8, 21, 21, 21]) == [19, 19, 19, 20, 20, 20, 21, 21, 21, 8, 8, 8, 21, 21, 21, 21, 21, 21, 21, 21, 21]", "assert interleave_lists([9, 11, 12, 15], [9, 11, 12, 15], [9, 11, 12, 15]) == [9, 9, 9, 11, 11, 11, 12, 12, 12, 15, 15, 15]", "assert interleave_lists([19, 20, 21, 8, 500, 21, 21], [19, 20, 21, 8, 500, 21, 21], [19, 20, 21, 8, 500, 21, 21]) == [19, 19, 19, 20, 20, 20, 21, 21, 21, 8, 8, 8, 500, 500, 500, 21, 21, 21, 21, 21, 21]", "assert interleave_lists([4, 19, 20, 21], [4, 19, 20, 21], [4, 19, 20, 21]) == [4, 4, 4, 19, 19, 19, 20, 20, 20, 21, 21, 21]", "assert interleave_lists([26, 13, 8, 13, 13], [26, 13, 8, 13, 13], [26, 13, 8, 13, 13]) == [26, 26, 26, 13, 13, 13, 8, 8, 8, 13, 13, 13, 13, 13, 13]", "assert interleave_lists([10, 11, 12, 14, 11], [10, 11, 12, 14, 11], [10, 11, 12, 14, 11]) == [10, 10, 10, 11, 11, 11, 12, 12, 12, 14, 14, 14, 11, 11, 11]", "assert interleave_lists([11, 13, 12, 12, 13, 12], [11, 13, 12, 12, 13, 12], [11, 13, 12, 12, 13, 12]) == [11, 11, 11, 13, 13, 13, 12, 12, 12, 12, 12, 12, 13, 13, 13, 12, 12, 12]", "assert interleave_lists([2, 1, 0, 7, 3, 1], [2, 1, 0, 7, 3, 1], [2, 1, 0, 7, 3, 1]) == [2, 2, 2, 1, 1, 1, 0, 0, 0, 7, 7, 7, 3, 3, 3, 1, 1, 1]", "assert interleave_lists([10, 11, 9, 9, 14, 14, 10], [10, 11, 9, 9, 14, 14, 10], [10, 11, 9, 9, 14, 14, 10]) == [10, 10, 10, 11, 11, 11, 9, 9, 9, 9, 9, 9, 14, 14, 14, 14, 14, 14, 10, 10, 10]", "assert interleave_lists([19, 20, 0, 8, 500, 21, 21], [19, 20, 0, 8, 500, 21, 21], [19, 20, 0, 8, 500, 21, 21]) == [19, 19, 19, 20, 20, 20, 0, 0, 0, 8, 8, 8, 500, 500, 500, 21, 21, 21, 21, 21, 21]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the dissimilar elements in the given two tuples.\nassert find_dissimilar((3, 4, 5, 6), (5, 7, 4, 10)) == (3, 6, 7, 10)\nYour code should pass the test:\nassert find_dissimilar((3, 4, 5, 6), (5, 7, 4, 10)) == (3, 6, 7, 10)", "test_list": [ "assert find_dissimilar((3, 4, 5, 6), (5, 7, 4, 10)) == (3, 6, 7, 10)", "assert find_dissimilar((1, 2, 3, 4), (7, 2, 3, 9)) == (1, 4, 7, 9)", "assert find_dissimilar((21, 11, 25, 26), (26, 34, 21, 36)) == (34, 36, 11, 25)", "assert find_dissimilar((3, 4, 5, 6, 7, 8, 9), (5, 7, 4, 10, 12, 14, 16)) == (3, 6, 8, 9, 10, 12, 14, 16)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12), (7, 2, 3, 9, 14, 18, 21, 25)) == (1, 4, 5, 6, 8, 10, 11, 12, 14, 18, 21, 25)", "assert find_dissimilar((21, 11, 25, 26, 30, 35, 40), (26, 34, 21, 36, 40, 45, 50)) == (11, 25, 30, 34, 35, 36, 45, 50)", "assert find_dissimilar((), ()) == ()", "assert find_dissimilar((), (1, 2, 3)) == (1, 2, 3)", "assert find_dissimilar((1, 2, 3), ()) == (1, 2, 3)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (11, 12, 13, 14, 15, 16, 17, 18, 19, 20)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20)", "assert find_dissimilar((1, 1, 1, 1, 2, 2, 2, 2), (2, 2, 2, 2, 3, 3, 3, 3)) == (1, 3)", "assert find_dissimilar((1, 2, 3, 4, 5, 5, 5, 5), (5, 5, 5, 5, 6, 6, 6, 6)) == (1, 2, 3, 4, 6)", "assert find_dissimilar((10, 20, 30, 40, 50, 60, 70, 80, 90, 100), (10, 10, 20, 20, 30, 30, 40, 40, 50, 50)) == (100, 70, 80, 90, 60)", "assert find_dissimilar((1, 2, 3, 4, 5), (6, 7, 8, 9, 10)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert find_dissimilar((1, 2, 3, 4, 5), (1, 2, 3, 4, 5)) == ()", "assert find_dissimilar((1, 2, 3, 4, 5, 6), (7, 8, 9, 10, 11)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11)", "assert find_dissimilar((1, 1, 2, 2, 3, 3, 4, 4, 5, 5), (2, 2, 4, 4, 6, 6, 8, 8, 10, 10)) == (1, 3, 5, 6, 8, 10)", "assert find_dissimilar(('a', 'b', 'c', 'd', 'e', 'f', 'g'), ('h', 'i', 'j', 'k', 'l', 'm', 'n')) == ('e', 'c', 'f', 'g', 'm', 'b', 'a', 'n', 'h', 'j', 'l', 'd', 'i', 'k')", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (10, 9, 8, 7, 6, 5, 4, 3, 2, 1)) == ()", "assert find_dissimilar(('apple', 'banana', 'cherry', 'durian', 'elderberry', 'fig'), ('apple', 'banana', 'cherry', 'durian', 'elderberry', 'fig')) == ()", "assert find_dissimilar(('a', 'b', 'c', 'd', 'e', 'f', 'g'), ('c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l')) == ('h', 'j', 'l', 'i', 'k', 'b', 'a')", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 3, 5, 7, 10, 12, 14, 16)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 3, 5, 7, 8, 10, 12, 14, 16)", "assert find_dissimilar(('apple', 'banana', 'cucumber', 'dragonfruit'), ('banana', 'dragonfruit', 'eggplant', 'fig')) == ('cucumber', 'fig', 'apple', 'eggplant')", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15), (10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 16, 17, 18, 19, 20)) == (11, 12, 13, 14, 15, 16, 17, 18, 19, 20)", "assert find_dissimilar(('apple', 'banana', 'cherry', 'durian', 'elderberry', 'fig'), ('apple', 'banana', 'cherry', 'guava', 'kiwi', 'mango')) == ('mango', 'durian', 'elderberry', 'fig', 'kiwi', 'guava')", "assert find_dissimilar((1, 2, 3, 1), (1, 2, 3, 1)) == ()", "assert find_dissimilar(('', 'apple', 'banana'), ('banana', 'apple', '')) == ()", "assert find_dissimilar((1, 2, 3, 4, 5), (5, 6, 7, 8, 9)) == (1, 2, 3, 4, 6, 7, 8, 9)", "assert find_dissimilar(('a', 'b', 'c', 'd'), ('d', 'e', 'f', 'g')) == ('e', 'f', 'c', 'g', 'b', 'a')", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)) == ()", "assert find_dissimilar((1, 2, 3, 4, 5, 'a', 'b', 'c', 'd', 'e'), ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j')) == ('h', 'j', 'f', 1, 2, 3, 4, 5, 'g', 'i')", "assert find_dissimilar((1, 2, 3, 1), (1, 16, 3, 1)) == (16, 2)", "assert find_dissimilar((1, 1, 2, 1, 2, 2, 2, 2, 2, 2), (2, 2, 2, 3, 3, 3, 3)) == (1, 3)", "assert find_dissimilar(('apple', 'banana', 'cucumber', 'dragonfruit'), ('banana', 'dragonfruit', 'egcherrygplant', 'eggplant', 'fig', 'dragonfruit')) == ('egcherrygplant', 'cucumber', 'apple', 'fig', 'eggplant')", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 15, 7, 8, 9, 10), (1, 2, 3, 4, 30, 6, 7, 9, 10)) == (5, 8, 15, 30)", "assert find_dissimilar((1, 16, 3, 1), (1, 16, 3, 1)) == ()", "assert find_dissimilar((1, 2, 3, 1, 3), (1, 2, 3, 1)) == ()", "assert find_dissimilar(('', 'apple', 'elderberry', 'banana', ''), ('', 'apple', 'banana')) == ('elderberry',)", "assert find_dissimilar(('', 'apple'), ('banana', 'apple', '')) == ('banana',)", "assert find_dissimilar((21, 11, 25, 26, 30, 35, 40, 40), (26, 34, 21, 36, 40, 45, 50)) == (11, 25, 30, 34, 35, 36, 45, 50)", "assert find_dissimilar((10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 16, 17, 18, 19, 20), (10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 16, 17, 18, 19, 20)) == ()", "assert find_dissimilar((10, 10, 20, 20, 30, 30, 40, 50, 40, 50, 50), (10, 10, 20, 20, 30, 30, 40, 40, 50, 50)) == ()", "assert find_dissimilar(('apple', 'banana', 'cucumber', 'dragonfruit'), ('banana', 'dragonfruit', 'fig')) == ('cucumber', 'fig', 'apple')", "assert find_dissimilar((26, 34, 21, 36, 40, 45, 50), (26, 34, 21, 36, 40, 45, 50)) == ()", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15), (10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 17, 16, 17, 18, 19, 20)) == (11, 12, 13, 14, 15, 16, 17, 18, 19, 20)", "assert find_dissimilar((1, 2, 3, 4, 7), (1, 2, 3, 4, 5)) == (5, 7)", "assert find_dissimilar(('', 'apple', 'banana'), ('', 'apple', 'banana')) == ()", "assert find_dissimilar((1, 2, 3, 4, 5, 2), (6, 7, 8, 9, 10)) == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert find_dissimilar((21, 11, 25, 26, 30, 35, 40, 40, 21), (26, 34, 21, 36, 40, 45, 50)) == (11, 25, 30, 34, 35, 36, 45, 50)", "assert find_dissimilar((1, 2, 3, 1, 1), (1, 2, 3, 1)) == ()", "assert find_dissimilar(('a', 'b', 'c', 'd', 'e', 'f', 'gg'), ('h', 'i', 'j', 'k', 'l', 'm', 'n')) == ('e', 'c', 'f', 'gg', 'm', 'b', 'a', 'n', 'h', 'j', 'l', 'd', 'i', 'k')", "assert find_dissimilar(('', 'apple', 'a'), ('', 'apple', 'apple')) == ('a',)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 15, 7, 8, 9, 10, 6), (1, 2, 3, 4, 30, 6, 7, 9, 10)) == (5, 8, 15, 30)", "assert find_dissimilar(('', 'apple', 'banana'), ('egcherrygplant', 'a', 'banana')) == ('egcherrygplant', '', 'apple', 'a')", "assert find_dissimilar((1, 2, 3), (1, 2, 3)) == ()", "assert find_dissimilar((1, 2, 3, 4, 5), (1, 2, 15, 3, 4, 5, 1)) == (15,)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 2), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 3, 5, 7, 8, 10, 12, 14, 16)", "assert find_dissimilar((1, 16, 3, 1), (2, 1, 16, 3, 1)) == (2,)", "assert find_dissimilar(('a', 'b', 'c', 'd', 'e', 'f', 'g'), ('durian', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l')) == ('h', 'j', 'l', 'durian', 'i', 'k', 'b', 'a')", "assert find_dissimilar((), (32.93260841054931, -74.09499781125828, -54.49719674608351, -59.91254473588992, 66.77507074495682)) == (32.93260841054931, 66.77507074495682, -59.91254473588992, -74.09499781125828, -54.49719674608351)", "assert find_dissimilar(('apple',), ('apple',)) == ()", "assert find_dissimilar((10, 9, 21, 8, 7, 6, 5, 4, 3, 2, 1, 11, 16, 17, 18, 19, 20), (10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 11, 16, 17, 18, 19, 20)) == (21,)", "assert find_dissimilar((10, 20, 30, 40, 50, 60, 70, 80, 90, 100), (10, 20, 20, 30, 30, 40, 40, 50, 50)) == (100, 70, 80, 90, 60)", "assert find_dissimilar((10, 20, 30, 40, 50, 60, 70, 80, 90, 100), (10, 20, 30, 40, 50, 60, 70, 80, 90, 100)) == ()", "assert find_dissimilar((5, 60, 18, 10, 11, 8, 26, -35, 2, 34), (5, 60, 18, 10, 11, 8, 26, -35, 2, 34, 18)) == ()", "assert find_dissimilar((1, 2, 3, 90, 5, 2, 7, 8, 9, 10, 11, 12), (1, 2, 3, 90, 5, 2, 7, 8, 9, 10, 11, 12)) == ()", "assert find_dissimilar(('n', '', 'cherry'), ('banana', 'apple', '')) == ('cherry', 'n', 'banana', 'apple')", "assert find_dissimilar(('banana', 'apple', '', ''), ('banana', 'apple', '', '')) == ()", "assert find_dissimilar((10, 3, 9, 8, 7, 6, 4, 3, 2, 1), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)) == (5,)", "assert find_dissimilar((1, 2, 3, 4, 9, 5), (1, 2, 15, 3, 4, 35, 5, 1)) == (35, 9, 15)", "assert find_dissimilar((1, 1, 1, 1, 2, 2, 2, 2, 2, 2), (1, 1, 1, 1, 2, 2, 2, 2)) == ()", "assert find_dissimilar(('apple', 'banana', 'n', 'cucumber', 'dragonfruit'), ('apple', 'banana', 'cucumber', 'dragonfruit')) == ('n',)", "assert find_dissimilar((1, 2, 3, 4, 5, 2), (1, 2, 3, 4, 5, 2)) == ()", "assert find_dissimilar(('apple', 'banana', 'f', 'guava', 'm', 'kiwi', 'mango', 'guava'), ('banana', 'f', 'guava', 'kiwi', 'mango')) == ('m', 'apple')", "assert find_dissimilar((1, 2, 3, 4, 80, 5), (2, 15, 35, 3, 60, 4, 5, 1)) == (35, 15, 80, 60)", "assert find_dissimilar(('a', 'b', 'c', 'c', 'd', 'e', 'gg'), ('a', 'b', 'c', 'd', 'e', 'gg')) == ()", "assert find_dissimilar((False,), ()) == (False,)", "assert find_dissimilar((21, 11, 25, 26, 30, 35, 40, 40), (21, 11, 25, 26, 30, 35, 40, 40)) == ()", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7), (1, 2, 3, 4, 5, 6, 7)) == ()", "assert find_dissimilar(('', 'appple', 'a', 'apple'), ('', 'apple', 'apple')) == ('appple', 'a')", "assert find_dissimilar((5, 60, 18, 10, 11, 8, 26, -35, 34), (5, 60, 18, 10, 11, 8, 26, -35, 2, 34, 18)) == (2,)", "assert find_dissimilar(('apple', 'banana', 'cherry', 'durian', 'elderberry', 'eggplant', 'fig', 'durian'), ('apple', 'banana', 'cherrappple', 'guava', 'kiwi', 'mango')) == ('mango', 'durian', 'elderberry', 'cherrappple', 'eggplant', 'cherry', 'fig', 'kiwi', 'guava')", "assert find_dissimilar((5, 5, 5, 5, 6, 6, 6, 6, 5), (5, 5, 5, 5, 6, 6, 6, 6)) == ()", "assert find_dissimilar((1, 2, 3, 4, 30, 6, 7, 9, 10, 9), (1, 3, 4, 30, 6, 7, 9, 10, 9)) == (2,)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15), (10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 16, 18, 19, 20)) == (11, 12, 13, 14, 15, 16, 18, 19, 20)", "assert find_dissimilar(('apple', 'guva', 'banana', 'guava', 'kiwi', 'mango'), ('apple', 'banana', 'guava', 'kiwi', 'mango')) == ('guva',)", "assert find_dissimilar(('', 'apple', ''), ('', 'apple')) == ()", "assert find_dissimilar(('a', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j'), ('a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j')) == ('b',)", "assert find_dissimilar((7, 8, 10, 9, 10, 11), (7, 8, 9, 10, 11)) == ()", "assert find_dissimilar((5, 5, 5, 5, 6, 5, 6, 6, 5), (5, 5, 5, 5, 6, 6, 6, 6, 5, 5)) == ()", "assert find_dissimilar((1, 1, 1, 1, 2, 2, 2, 2), (1, 1, 1, 1, 2, 2, 2, 2)) == ()", "assert find_dissimilar((21, 11, 25, 26, 30, 35, 40, 40, 21), (26, 34, 21, 36, 50, 40, 45, 50)) == (11, 25, 30, 34, 35, 36, 45, 50)", "assert find_dissimilar((1, 2, 3, 90, 5, 2, 7, 8, 9, 10, 11, 12), (1, 2, 3, 90, 5, 12, 7, 8, 9, 10, 11, 12)) == ()", "assert find_dissimilar(('apple', 'banana', 'egcherrygplant', 'guava', 'kiwi', 'mango', 'kiwi'), ('apple', 'banana', 'egcherrygplant', 'guava', 'kiwi', 'mango')) == ()", "assert find_dissimilar(('e', 'f', 'g'), ('d', 'e', 'f', 'g')) == ('d',)", "assert find_dissimilar((1, 1, 60, 2, 3, 3, 4, 4, 5, 5), (2, 2, 4, 4, 6, 6, 8, 8, 10, 10)) == (1, 3, 5, 6, 8, 10, 60)", "assert find_dissimilar((1, 2, 3, 4, 5, 2), (1, 2, 3, 4, 5, 2, 1)) == ()", "assert find_dissimilar((1, 2, 3, 19, 5), (1, 2, 3, 4, 7)) == (19, 4, 5, 7)", "assert find_dissimilar((1, 2, 3, 4, 5, 7, 8, 9, 10), (11, 12, 13, 14, 15, 16, 17, 18, 19, 20)) == (1, 2, 3, 4, 5, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20)", "assert find_dissimilar((21, 11, 25, 26, 30, 35, 40), (26, 34, 21, 40, 45, 50)) == (34, 35, 11, 45, 50, 25, 30)", "assert find_dissimilar(('', 'apple', 'banana'), ('egcherrygplant', 'a', 'banana', 'egcherrygplant')) == ('egcherrygplant', '', 'apple', 'a')", "assert find_dissimilar((10, 9, 8, 5, 7, 6, 5, 4, 3, 2, 1, 16, 17, 18, 19, 20), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 15)) == (11, 12, 13, 15, 16, 17, 18, 19, 20)", "assert find_dissimilar((1, 2, 3, 4, 5, 6), (1, 2, 3, 4, 5, 6, 7)) == (7,)", "assert find_dissimilar((11, 20, 30, 40, 50, 60, 70, 80, 90, 100), (10, 20, 30, 40, 50, 60, 70, 9, 90, 100)) == (9, 10, 11, 80)", "assert find_dissimilar((1, 2, 90, 5, 12, 7, 8, 9, 10, 11, 12), (1, 2, 90, 5, 12, 7, 8, 9, 10, 11, 12)) == ()", "assert find_dissimilar((10, 20, 15, 40, 50, 60, 70, 9, 90, 100), (10, 20, 15, 40, 50, 60, 70, 9, 90, 100)) == ()", "assert find_dissimilar((2, 4, 6, 8, 10, 12, 1, 14, 25, 16), (2, 4, 6, 8, 10, 12, 14, 16)) == (1, 25)", "assert find_dissimilar((10, 9, 8, 7, 6, 5, 4, 3, 1, 11, 16, 17, 18, 19, 20), (10, 9, 21, 8, 7, 6, 5, 4, 3, 2, 1, 11, 16, 17, 18, 19, 20)) == (2, 21)", "assert find_dissimilar((1, 2, 3, 1, 3), (1, 2, 1)) == (3,)", "assert find_dissimilar(('apple', 'banana', 'cherry', 'guava', 'kiwi', 'mango'), ('apple', 'banana', 'cherry', 'guava', 'kiwi', 'mango')) == ()", "assert find_dissimilar((10, 10, 20, 20, 30, 30, 7, 40, 50, 50), (10, 10, 20, 20, 30, 30, 40, 40, 50, 50)) == (7,)", "assert find_dissimilar((1, 2, 3, 90, 5, 2, 7, 8, 9, 10, 11, 12), (1, 2, 3, 90, 5, 2, 7, 8, 9, 60, 10, 11, 12)) == (60,)", "assert find_dissimilar((1, 2, 3, 0, 4, 5, 5, 5, 5, 5), (1, 2, 3, 4, 5, 5, 5, 5, 5)) == (0,)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6, 2), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6)) == ()", "assert find_dissimilar(('banana', 'dragonfruit', 'j'), ('banana', 'dragonfruit', 'fig')) == ('j', 'fig')", "assert find_dissimilar(('', 'banana', 'banana'), ('banana', 'apple', '')) == ('apple',)", "assert find_dissimilar((1, 2, 3, 2, 4, 5, 1, 1), (1, 2, 3, 4, 7)) == (5, 7)", "assert find_dissimilar(('a', 'b', 'c'), ('d', 'e', 'f', 'g')) == ('e', 'f', 'c', 'g', 'd', 'b', 'a')", "assert find_dissimilar((1, 2, 3, 4, 30, 6, 7, 9, 10, 9), (1, 3, 4, 30, 6, 7, 9, 10, 9, 4)) == (2,)", "assert find_dissimilar((1, 2, 3, 4, 30, 6, 7, 9, 10), (1, 2, 3, 4, 30, 6, 7, 9, 10)) == ()", "assert find_dissimilar((1, 2, 25, 4, 5, 6, 7), (1, 2, 3, 4, 5, 6, 7)) == (3, 25)", "assert find_dissimilar((1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 25, 13, 14), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 25, 13, 14, 15)) == (15,)", "assert find_dissimilar((1, 2, 3, 4, 5, 2), (1, 2, 3, 4, 5)) == ()", "assert find_dissimilar(('apple',), ('kiwi', 'pple', 'apple')) == ('pple', 'kiwi')", "assert find_dissimilar((16, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12), (7, 2, 3, 9, 13, 14, 18, 21, 25)) == (4, 5, 6, 8, 10, 11, 12, 13, 14, 16, 18, 21, 25)", "assert find_dissimilar(('a', 'b', 'c', 'd'), ('a', 'b', 'c', 'd')) == ()", "assert find_dissimilar(('egcherrygplantbanana', 'apple', ''), ('banana', 'apple', '')) == ('egcherrygplantbanana', 'banana')", "assert find_dissimilar(('apple', 'banana', 'cherry', 'dian', 'elderberry', 'fig'), ('apple', 'banana', 'cherry', 'daurian', 'elderberry', 'fig')) == ('daurian', 'dian')", "assert find_dissimilar(('a', 'b', 'c', 'd', 'e', 'f'), ('h', 'i', 'j', 'k', 'l', 'm', 'n')) == ('e', 'c', 'f', 'm', 'b', 'a', 'n', 'h', 'j', 'l', 'd', 'i', 'k')", "assert find_dissimilar(('ebanana', '', 'apple', 'banana'), ('', 'apple', 'banana')) == ('ebanana',)", "assert find_dissimilar((26, 34, 21, 36, 50, 40, 45, 50), (26, 34, 21, 36, 50, 40, 45, 50, 45)) == ()" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the given two integers have opposite sign or not.\nassert opposite_Signs(1,-2) == True\nYour code should pass the test:\nassert opposite_Signs(1,-2) == True", "test_list": [ "assert opposite_Signs(1,-2) == True", "assert opposite_Signs(3,2) == False", "assert opposite_Signs(-10,-10) == False", "assert opposite_Signs(-2,2) == True", "assert opposite_Signs(1000000000000, -1000000000000) == True", "assert opposite_Signs(999999999999, -999999999999) == True", "assert opposite_Signs(1000000000, -1000000000) == True", "assert opposite_Signs(999999999, -999999999) == True", "assert opposite_Signs(987654321, -987654321) == True", "assert opposite_Signs(1000000000000, -1000000000) == True", "assert opposite_Signs(-1000000000, 999999999) == True", "assert opposite_Signs(-987654321, -987654321) == False", "assert opposite_Signs(1000000000000, 987654321) == False", "assert opposite_Signs(1000000000000, 987654322) == False", "assert opposite_Signs(999999999, -1000000000000) == True", "assert opposite_Signs(999999999, 999999999) == False", "assert opposite_Signs(999999999999, 1000000000000) == False", "assert opposite_Signs(-1000000000000, -987654321) == False", "assert opposite_Signs(-1000000000000, -1000000000000) == False", "assert opposite_Signs(-999999999999, -1000000000000) == False", "assert opposite_Signs(987654321, 987654321) == False", "assert opposite_Signs(1000000000, 999999999999) == False", "assert opposite_Signs(1000000000, -1000000000000) == True", "assert opposite_Signs(987654321, 987654322) == False", "assert opposite_Signs(-987654319, -987654320) == False", "assert opposite_Signs(-999999998, -999999999) == False", "assert opposite_Signs(987654321, 1000000000000) == False", "assert opposite_Signs(-1000000000, -1000000000) == False", "assert opposite_Signs(1000000000000, 1000000000000) == False", "assert opposite_Signs(1000000000001, -1000000000000) == True", "assert opposite_Signs(1000000000000, -1000000000001) == True", "assert opposite_Signs(999999999999, -987654319) == True", "assert opposite_Signs(-1000000000, 987654321) == True", "assert opposite_Signs(999999999999, 999999999999) == False", "assert opposite_Signs(987654322, 987654322) == False", "assert opposite_Signs(-987654321, -999999998) == False", "assert opposite_Signs(-987654322, -987654321) == False", "assert opposite_Signs(999999999, -987654321) == True", "assert opposite_Signs(-1000000000000, -987654320) == False", "assert opposite_Signs(-987654320, -987654320) == False", "assert opposite_Signs(-999999999, -999999999) == False", "assert opposite_Signs(-1000000000001, -1000000000000) == False", "assert opposite_Signs(-1000000000000, 999999999) == True", "assert opposite_Signs(-987654322, -1000000000000) == False", "assert opposite_Signs(987654320, -1000000000000) == True", "assert opposite_Signs(-987654322, -987654322) == False", "assert opposite_Signs(-999999998, -1000000000000) == False", "assert opposite_Signs(999999999999, -1000000000) == True", "assert opposite_Signs(-987654320, -987654319) == False", "assert opposite_Signs(987654321, -1000000000001) == True", "assert opposite_Signs(987654321, 987654323) == False", "assert opposite_Signs(1000000000000, -987654322) == True", "assert opposite_Signs(-987654322, 1000000000000) == True", "assert opposite_Signs(1000000000000, -1000000000002) == True", "assert opposite_Signs(-1000000000000, 1000000000000) == True", "assert opposite_Signs(-999999999999, -999999999999) == False", "assert opposite_Signs(-1000000000002, -1000000000000) == False", "assert opposite_Signs(1000000000001, -987654321) == True", "assert opposite_Signs(-999999999999, -999999999998) == False", "assert opposite_Signs(-999999998, -1000000000002) == False", "assert opposite_Signs(-987654321, -987654322) == False", "assert opposite_Signs(-987654319, -1000000000000) == False", "assert opposite_Signs(1000000000000, 999999999999) == False", "assert opposite_Signs(-999999998, -1000000000) == False", "assert opposite_Signs(999999999999, 987654322) == False", "assert opposite_Signs(-1000000000002, -1000000000002) == False", "assert opposite_Signs(-1000000000000, 987654323) == True", "assert opposite_Signs(1000000000000, 1000000000) == False", "assert opposite_Signs(-1000000000000, -987654319) == False", "assert opposite_Signs(987654321, -999999999999) == True", "assert opposite_Signs(1000000000001, 987654321) == False", "assert opposite_Signs(-1000000000000, 987654322) == True", "assert opposite_Signs(-987654319, -1000000000002) == False", "assert opposite_Signs(-987654319, -1000000000001) == False", "assert opposite_Signs(999999999, -999999998) == True", "assert opposite_Signs(-999999999, 987654321) == True", "assert opposite_Signs(987654321, -987654322) == True", "assert opposite_Signs(987654321, 1000000000) == False", "assert opposite_Signs(-1000000000001, -1000000000001) == False", "assert opposite_Signs(-999999999, -1000000000002) == False", "assert opposite_Signs(-1000000000000, 999999998) == True", "assert opposite_Signs(1000000000002, -987654319) == True", "assert opposite_Signs(1000000000, 987654321) == False", "assert opposite_Signs(999999998, -999999998) == True", "assert opposite_Signs(-1000000001, 987654321) == True", "assert opposite_Signs(999999999999, 1000000000002) == False", "assert opposite_Signs(-1000000000003, -987654321) == False", "assert opposite_Signs(-987654319, -987654319) == False", "assert opposite_Signs(-999999998, -987654321) == False", "assert opposite_Signs(-1000000001, -999999999999) == False", "assert opposite_Signs(-1000000000004, -1000000000002) == False", "assert opposite_Signs(1000000000002, -1000000000001) == True", "assert opposite_Signs(-1000000000002, 987654322) == True", "assert opposite_Signs(-987654319, -1000000000003) == False", "assert opposite_Signs(-1000000000, 987654323) == True", "assert opposite_Signs(-1000000000003, 1000000000000) == True", "assert opposite_Signs(-1000000000, 999999999999) == True", "assert opposite_Signs(-1000000001, -1000000000) == False", "assert opposite_Signs(1000000000000, 1000000000001) == False", "assert opposite_Signs(-1000000000003, -1000000000000) == False", "assert opposite_Signs(1000000000000, -987654319) == True", "assert opposite_Signs(987654320, 987654321) == False", "assert opposite_Signs(-1000000000001, -1000000000002) == False", "assert opposite_Signs(987654322, 987654323) == False", "assert opposite_Signs(-999999997, -1000000000) == False", "assert opposite_Signs(-987654319, 999999999999) == True", "assert opposite_Signs(-999999997, 1000000000000) == True", "assert opposite_Signs(-1000000000000, -987654322) == False", "assert opposite_Signs(1000000000001, 1000000000002) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove uneven elements in the nested mixed tuple.\nassert extract_even((4, 5, (7, 6, (2, 4)), 6, 8)) == (4, (6, (2, 4)), 6, 8)\nYour code should pass the test:\nassert extract_even((4, 5, (7, 6, (2, 4)), 6, 8)) == (4, (6, (2, 4)), 6, 8)", "test_list": [ "assert extract_even((4, 5, (7, 6, (2, 4)), 6, 8)) == (4, (6, (2, 4)), 6, 8)", "assert extract_even((5, 6, (8, 7, (4, 8)), 7, 9)) == (6, (8, (4, 8)))", "assert extract_even((5, 6, (9, 8, (4, 6)), 8, 10)) == (6, (8, (4, 6)), 8, 10)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the surface area of a square pyramid with a given base edge and height.\nassert surface_Area(3,4) == 33\nYour code should pass the test:\nassert surface_Area(3,4) == 33", "test_list": [ "assert surface_Area(3,4) == 33", "assert surface_Area(4,5) == 56", "assert surface_Area(1,2) == 5", "assert surface_Area(10, 20) == 500", "assert surface_Area(100, 50) == 20000", "assert surface_Area(1000, 200) == 1400000", "assert surface_Area(100, 49) == 19800", "assert surface_Area(200, 49) == 59600", "assert surface_Area(100, 100) == 30000", "assert surface_Area(1000, 199) == 1398000", "assert surface_Area(200, 200) == 120000", "assert surface_Area(100, 200) == 50000", "assert surface_Area(200, 50) == 60000", "assert surface_Area(99, 100) == 29601", "assert surface_Area(100, 101) == 30200", "assert surface_Area(99, 99) == 29403", "assert surface_Area(200, 201) == 120400", "assert surface_Area(20, 100) == 4400", "assert surface_Area(999, 1000) == 2996001", "assert surface_Area(20, 50) == 2400", "assert surface_Area(21, 200) == 8841", "assert surface_Area(99, 21) == 13959", "assert surface_Area(998, 1000) == 2992004", "assert surface_Area(50, 51) == 7600", "assert surface_Area(999, 100) == 1197801", "assert surface_Area(21, 100) == 4641", "assert surface_Area(201, 199) == 120399", "assert surface_Area(100, 998) == 209600", "assert surface_Area(21, 21) == 1323", "assert surface_Area(50, 50) == 7500", "assert surface_Area(49, 200) == 22001", "assert surface_Area(199, 199) == 118803", "assert surface_Area(1000, 1000) == 3000000", "assert surface_Area(51, 100) == 12801", "assert surface_Area(20, 1000) == 40400", "assert surface_Area(201, 200) == 120801", "assert surface_Area(20, 51) == 2440", "assert surface_Area(10, 1000) == 20100", "assert surface_Area(100, 1000) == 210000", "assert surface_Area(201, 201) == 121203", "assert surface_Area(49, 201) == 22099", "assert surface_Area(999, 49) == 1095903", "assert surface_Area(21, 998) == 42357", "assert surface_Area(101, 101) == 30603", "assert surface_Area(998, 100) == 1195604", "assert surface_Area(998, 998) == 2988012", "assert surface_Area(100, 99) == 29800", "assert surface_Area(99, 999) == 207603", "assert surface_Area(200, 199) == 119600", "assert surface_Area(21, 22) == 1365", "assert surface_Area(999, 20) == 1037961", "assert surface_Area(200, 10) == 44000", "assert surface_Area(999, 1001) == 2997999", "assert surface_Area(True, True) == 3", "assert surface_Area(99, 998) == 207405", "assert surface_Area(199, 200) == 119201", "assert surface_Area(10, 10) == 300", "assert surface_Area(198, 199) == 118008", "assert surface_Area(21, 51) == 2583", "assert surface_Area(198, 1000) == 435204", "assert surface_Area(998, 999) == 2990008", "assert surface_Area(101, 100) == 30401", "assert surface_Area(20, 10) == 800", "assert surface_Area(19, 20) == 1121", "assert surface_Area(100, 21) == 14200", "assert surface_Area(20, 20) == 1200", "assert surface_Area(102, 102) == 31212", "assert surface_Area(48, 201) == 21600", "assert surface_Area(20, True) == 440", "assert surface_Area(199, 100) == 79401", "assert surface_Area(1000, 102) == 1204000", "assert surface_Area(199, 50) == 59501", "assert surface_Area(1001, 200) == 1402401", "assert surface_Area(49, 49) == 7203", "assert surface_Area(22, 49) == 2640", "assert surface_Area(51, 50) == 7701", "assert surface_Area(101, 201) == 50803", "assert surface_Area(48, 999) == 98208", "assert surface_Area(101, 102) == 30805", "assert surface_Area(199, 48) == 58705", "assert surface_Area(99, True) == 9999", "assert surface_Area(20, 201) == 8440", "assert surface_Area(21, 9) == 819", "assert surface_Area(18, 19) == 1008", "assert surface_Area(100, 11) == 12200", "assert surface_Area(998, 49) == 1093808", "assert surface_Area(197, 197) == 116427", "assert surface_Area(1001, 197) == 1396395", "assert surface_Area(20, 21) == 1240", "assert surface_Area(10, 21) == 520", "assert surface_Area(999, 999) == 2994003", "assert surface_Area(199, 49) == 59103", "assert surface_Area(1000, 21) == 1042000", "assert surface_Area(197, 196) == 116033", "assert surface_Area(997, 101) == 1195403", "assert surface_Area(19, 997) == 38247", "assert surface_Area(22, 48) == 2596", "assert surface_Area(1000, 999) == 2998000", "assert surface_Area(200, 198) == 119200", "assert surface_Area(1000, 1001) == 3002000", "assert surface_Area(1001, 101) == 1204203", "assert surface_Area(197, 201) == 118003", "assert surface_Area(200, 8) == 43200", "assert surface_Area(997, 997) == 2982027", "assert surface_Area(200, 196) == 118400", "assert surface_Area(1001, 999) == 3001999" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function which returns nth catalan number.\nassert catalan_number(10)==16796\nYour code should pass the test:\nassert catalan_number(10)==16796", "test_list": [ "assert catalan_number(10)==16796", "assert catalan_number(9)==4862", "assert catalan_number(7)==429", "assert catalan_number(0) == 1", "assert catalan_number(1) == 1", "assert catalan_number(True) == 1", "assert catalan_number(False) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the n most expensive items in a given dataset.\nassert expensive_items([{'name': 'Item-1', 'price': 101.1},{'name': 'Item-2', 'price': 555.22}],1)==[{'name': 'Item-2', 'price': 555.22}]\nYour code should pass the test:\nassert expensive_items([{'name': 'Item-1', 'price': 101.1},{'name': 'Item-2', 'price': 555.22}],1)==[{'name': 'Item-2', 'price': 555.22}]", "test_list": [ "assert expensive_items([{'name': 'Item-1', 'price': 101.1},{'name': 'Item-2', 'price': 555.22}],1)==[{'name': 'Item-2', 'price': 555.22}]", "assert expensive_items([{'name': 'Item-1', 'price': 101.1},{'name': 'Item-2', 'price': 555.22}, {'name': 'Item-3', 'price': 45.09}],2)==[{'name': 'Item-2', 'price': 555.22},{'name': 'Item-1', 'price': 101.1}]", "assert expensive_items([{'name': 'Item-1', 'price': 101.1},{'name': 'Item-2', 'price': 555.22}, {'name': 'Item-3', 'price': 45.09},{'name': 'Item-4', 'price': 22.75}],1)==[{'name': 'Item-2', 'price': 555.22}]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to split a list at the nth eelment and add the first part to the end.\nassert split_Arr([12,10,5,6,52,36],2) == [5,6,52,36,12,10]\nYour code should pass the test:\nassert split_Arr([12,10,5,6,52,36],2) == [5,6,52,36,12,10]", "test_list": [ "assert split_Arr([12,10,5,6,52,36],2) == [5,6,52,36,12,10]", "assert split_Arr([1,2,3,4],1) == [2,3,4,1]", "assert split_Arr([0,1,2,3,4,5,6,7],3) == [3,4,5,6,7,0,1,2]", "assert split_Arr([], 0) == []", "assert split_Arr(['apple', 'banana', 'cherry', 'date'], 2) == ['cherry', 'date', 'apple', 'banana']", "assert split_Arr([1, 2, 3, 1, 2, 3], 3) == [1, 2, 3, 1, 2, 3]", "assert split_Arr([2, 4, 6, 8, 10, 8, 6, 4, 2], 7) == [4, 2, 2, 4, 6, 8, 10, 8, 6]", "assert split_Arr(['banana', 'cherry', 'date'], 2) == ['date', 'banana', 'cherry']", "assert split_Arr(['banana', 'date'], 2) == ['banana', 'date']", "assert split_Arr([2, 4, 6, 8, 0, 8, 6, 4, 2, 0], 3) == [8, 0, 8, 6, 4, 2, 0, 2, 4, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0], 3) == [0, 8, 6, 8, 4, 2, 0, 2, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2], 3) == [0, 8, 6, 8, 4, 2, 0, 2, 2, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 6, 2], 4) == [8, 6, 8, 4, 2, 0, 6, 2, 2, 6, 8, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0], 2) == [8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 2, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 2) == [8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 2, 6]", "assert split_Arr(['apple', 'banana', 'date'], 2) == ['date', 'apple', 'banana']", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 0) == [2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 4) == [8, 6, 8, 4, 2, 0, 2, 0, 0, 2, 6, 8, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0], 1) == [6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 2]", "assert split_Arr([1, 2, 3, 1, 2, 8], 3) == [1, 2, 8, 1, 2, 3]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2], 4) == [8, 6, 8, 4, 2, 0, 2, 2, 6, 8, 0]", "assert split_Arr([2, 6, 8, 7, 8, 6, 8, 4, 2, 0, 2, 0], 2) == [8, 7, 8, 6, 8, 4, 2, 0, 2, 0, 2, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0], 0) == [2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 6) == [8, 4, 2, 0, 2, 0, 0, 2, 6, 8, 0, 8, 6]", "assert split_Arr([2, 6, 5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 2) == [5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 2, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 1, 0, 2, 8], 3) == [0, 8, 6, 8, 4, 1, 0, 2, 8, 2, 6, 8]", "assert split_Arr([4, 6, 8, 10, 8, 6, 4, 2, 8], 7) == [2, 8, 4, 6, 8, 10, 8, 6, 4]", "assert split_Arr([1, 2, 3, 1, 2, 3], 4) == [2, 3, 1, 2, 3, 1]", "assert split_Arr([2, 5, 4, 6, 8, 0, 8, 6, 4, 2, 0], 4) == [8, 0, 8, 6, 4, 2, 0, 2, 5, 4, 6]", "assert split_Arr([7, 1, 2, 3, 1, 2, 3], 3) == [3, 1, 2, 3, 7, 1, 2]", "assert split_Arr([2, 6, 5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 8, 8], 2) == [5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 8, 8, 2, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8], 3) == [0, 8, 6, 8, 4, 2, 0, 2, 8, 2, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8], 6) == [8, 4, 2, 0, 2, 8, 2, 6, 8, 0, 8, 6]", "assert split_Arr([4, 6, 8, 10, 8, 6, 4, 2, 8], 4) == [8, 6, 4, 2, 8, 4, 6, 8, 10]", "assert split_Arr([2, 4, 6, 8, 10, 8, 6, 4, 2], 4) == [10, 8, 6, 4, 2, 2, 4, 6, 8]", "assert split_Arr([2, 5, 4, 6, 8, 0, 8, 6, 4, 2, 0, 2], 4) == [8, 0, 8, 6, 4, 2, 0, 2, 2, 5, 4, 6]", "assert split_Arr([5, 6, 5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 2) == [5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 5, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 1, 0, 2, 8], 4) == [8, 6, 8, 4, 1, 0, 2, 8, 2, 6, 8, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 1, 4, 2, 0, 2], 3) == [0, 8, 6, 8, 1, 4, 2, 0, 2, 2, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 1, 0, 2, 8], 5) == [6, 8, 4, 1, 0, 2, 8, 2, 6, 8, 0, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 10) == [2, 0, 0, 2, 6, 8, 0, 8, 6, 8, 4, 2, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8], 4) == [8, 6, 8, 4, 2, 0, 2, 8, 2, 6, 8, 0]", "assert split_Arr(['bbanana', 'banana', 'date'], 1) == ['banana', 'date', 'bbanana']", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 0, 2, 8], 6) == [8, 4, 2, 0, 0, 2, 8, 2, 6, 8, 0, 8, 6]", "assert split_Arr([4, 6, 8, 10, 8, 6, 4, 2, 8], 8) == [8, 4, 6, 8, 10, 8, 6, 4, 2]", "assert split_Arr(['apple', 'cherry', 'date'], 2) == ['date', 'apple', 'cherry']", "assert split_Arr([5, 6, 5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 3) == [8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 5, 6, 5]", "assert split_Arr([2, 8, 6, 8, 10, 8, 6, 4, 2], 7) == [4, 2, 2, 8, 6, 8, 10, 8, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8], 7) == [4, 2, 0, 2, 8, 2, 6, 8, 0, 8, 6, 8]", "assert split_Arr([6, 8, 0, 8, 6, 8, 4, 2, 0, 0, 2, 0, 0], 4) == [6, 8, 4, 2, 0, 0, 2, 0, 0, 6, 8, 0, 8]", "assert split_Arr([2, 4, 5, 6, 8, 10, 8, 6, 4, 2], 7) == [6, 4, 2, 2, 4, 5, 6, 8, 10, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 8], 1) == [6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 8, 2]", "assert split_Arr([5, 6, 5, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 6) == [6, 8, 4, 2, 0, 2, 0, 0, 5, 6, 5, 8, 0, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 2, 0, 2, 0, 8], 1) == [6, 8, 0, 8, 6, 8, 2, 0, 2, 0, 8, 2]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 5, 0, 2, 0], 1) == [6, 8, 0, 8, 6, 8, 4, 5, 0, 2, 0, 2]", "assert split_Arr([7, 1, 2, 3, 1, 2, 3, 3], 1) == [1, 2, 3, 1, 2, 3, 3, 7]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 2, 0, 0, 2, 0, 8], 1) == [6, 8, 0, 8, 6, 8, 2, 0, 0, 2, 0, 8, 2]", "assert split_Arr([4, 6, 8, 10, 8, 6, 4, 2, 8, 6], 7) == [2, 8, 6, 4, 6, 8, 10, 8, 6, 4]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 7, 1, 4, 2, 0, 2], 3) == [0, 8, 6, 8, 7, 1, 4, 2, 0, 2, 2, 6, 8]", "assert split_Arr([2, 5, 4, 6, 6, 8, 0, 8, 6, 3, 2, 0], 6) == [0, 8, 6, 3, 2, 0, 2, 5, 4, 6, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8, 8], 7) == [4, 2, 0, 2, 8, 8, 2, 6, 8, 0, 8, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2], 2) == [8, 0, 8, 6, 8, 4, 2, 0, 2, 2, 6]", "assert split_Arr([4, 6, 10, 8, 6, 4, 2, 8], 4) == [6, 4, 2, 8, 4, 6, 10, 8]", "assert split_Arr([2, 8, 7, 8, 6, 8, 4, 2, 0, 2, 0], 2) == [7, 8, 6, 8, 4, 2, 0, 2, 0, 2, 8]", "assert split_Arr([6, 8, 0, 8, 8, 4, 2, 0, 2], 0) == [6, 8, 0, 8, 8, 4, 2, 0, 2]", "assert split_Arr([7, 1, 2, 3, 1, 2, 3, 10, 3], 1) == [1, 2, 3, 1, 2, 3, 10, 3, 7]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 0, 0, 2, 0, 8], 1) == [6, 8, 0, 8, 6, 8, 0, 0, 2, 0, 8, 2]", "assert split_Arr(['apple', 'cherry', 'date', 'date'], 2) == ['date', 'date', 'apple', 'cherry']", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8, 8, 0], 7) == [4, 2, 0, 2, 8, 8, 0, 2, 6, 8, 0, 8, 6, 8]", "assert split_Arr([2, 4, 6, 8, 0, 8, 6, 4, 2, 0], 1) == [4, 6, 8, 0, 8, 6, 4, 2, 0, 2]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8, 8, 0, 6], 7) == [4, 2, 0, 2, 8, 8, 0, 6, 2, 6, 8, 0, 8, 6, 8]", "assert split_Arr([1, 2, 4, 3, 1, 2, 3], 4) == [1, 2, 3, 1, 2, 4, 3]", "assert split_Arr([4, 6, 8, 10, 8, 6, 4, 2, 7, 8], 7) == [2, 7, 8, 4, 6, 8, 10, 8, 6, 4]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 0, 2, 8, 2], 6) == [8, 4, 2, 0, 0, 2, 8, 2, 2, 6, 8, 0, 8, 6]", "assert split_Arr([7, 1, 2, 3, 1, 2, 3, 10, 3], 0) == [7, 1, 2, 3, 1, 2, 3, 10, 3]", "assert split_Arr([2, 6, 8, 0, 7, 6, 8, 4, 2, 0, 2, 8, 8, 0, 6], 3) == [0, 7, 6, 8, 4, 2, 0, 2, 8, 8, 0, 6, 2, 6, 8]", "assert split_Arr([2, 6, 8, 4, 0, 8, 6, 8, 4, 2, 0, 2, 0, 8], 1) == [6, 8, 4, 0, 8, 6, 8, 4, 2, 0, 2, 0, 8, 2]", "assert split_Arr([2, 8, 6, 8, 10, 6, 4, 2, 6], 8) == [6, 2, 8, 6, 8, 10, 6, 4, 2]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8, 0, 0, 0], 0) == [2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 8, 0, 0, 0]", "assert split_Arr([0, 0, 75, 4, 5, 3, 58, 8], 0) == [0, 0, 75, 4, 5, 3, 58, 8]", "assert split_Arr([6, 8, 0, 8, 8, 4, 2, 0, 2, 8], 0) == [6, 8, 0, 8, 8, 4, 2, 0, 2, 8]", "assert split_Arr([2, 6, 10, 8, 0, 8, 6, 8, 2, 0, 2, 0, 8], 2) == [10, 8, 0, 8, 6, 8, 2, 0, 2, 0, 8, 2, 6]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 1, 4, 2, 0, 2, 8], 3) == [0, 8, 6, 8, 1, 4, 2, 0, 2, 8, 2, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 7, 1, 4, 2, 0, 2], 2) == [8, 0, 8, 6, 8, 7, 1, 4, 2, 0, 2, 2, 6]", "assert split_Arr([True, False, True, True, False, True, False, False, False], 0) == [True, False, True, True, False, True, False, False, False]", "assert split_Arr([2, 4, 6, 8, 0, 8, 6, 4, 2, 0, 0], 3) == [8, 0, 8, 6, 4, 2, 0, 0, 2, 4, 6]", "assert split_Arr([4, 6, 8, 0, 8, 6, 4, 2, 0], 3) == [0, 8, 6, 4, 2, 0, 4, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 5) == [6, 8, 4, 2, 0, 2, 0, 0, 2, 6, 8, 0, 8]", "assert split_Arr(['apple', 'cherry', 'date', 'date'], 1) == ['cherry', 'date', 'date', 'apple']", "assert split_Arr([6, 8, 0, 8, 6, 8, 4, 2, 0], 3) == [8, 6, 8, 4, 2, 0, 6, 8, 0]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 2, 0, 0, 2, 0, 8], 2) == [8, 0, 8, 6, 8, 2, 0, 0, 2, 0, 8, 2, 6]", "assert split_Arr(['apple', 'cherry', 'date'], 1) == ['cherry', 'date', 'apple']", "assert split_Arr([1, 2, 3, 1, 2, 3], 5) == [3, 1, 2, 3, 1, 2]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 5, 0, 2, 0], 2) == [8, 0, 8, 6, 8, 4, 5, 0, 2, 0, 2, 6]", "assert split_Arr([2, 6, 5, 8, 0, 8, 6, 8, 4, 0, 2, 0, 0, 8, 8], 2) == [5, 8, 0, 8, 6, 8, 4, 0, 2, 0, 0, 8, 8, 2, 6]", "assert split_Arr([6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 4) == [6, 8, 4, 2, 0, 2, 0, 0, 6, 8, 0, 8]", "assert split_Arr([2, 6, 8, 0, 8, 8, 2, 0, 0, 2, 2, 0, 8], 1) == [6, 8, 0, 8, 8, 2, 0, 0, 2, 2, 0, 8, 2]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 1, 0, 2, 8, 6], 10) == [2, 8, 6, 2, 6, 8, 0, 8, 6, 8, 4, 1, 0]", "assert split_Arr([2, 6, 8, 3, 0, 8, 6, 8, 5, 2, 0, 2, 0, 8], 1) == [6, 8, 3, 0, 8, 6, 8, 5, 2, 0, 2, 0, 8, 2]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 0, 0, 2, 6, 0, 8], 3) == [0, 8, 6, 8, 0, 0, 2, 6, 0, 8, 2, 6, 8]", "assert split_Arr(['banana', 'cherry', 'cherry', 'date'], 2) == ['cherry', 'date', 'banana', 'cherry']", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 0, 0, 2, 0, 8, 0], 1) == [6, 8, 0, 8, 6, 8, 0, 0, 2, 0, 8, 0, 2]", "assert split_Arr(['cherry', 'banana', 'cherry', 'cherry', 'date'], 2) == ['cherry', 'cherry', 'date', 'cherry', 'banana']", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 2, 0, 0], 3) == [0, 8, 6, 8, 4, 2, 0, 2, 0, 0, 2, 6, 8]", "assert split_Arr([2, 6, 8, 0, 8, 6, 8, 4, 2, 0, 8], 7) == [4, 2, 0, 8, 2, 6, 8, 0, 8, 6, 8]", "assert split_Arr([2, 6, 8, 0, 7, 6, 8, 0, 0, 2, 0, 8], 1) == [6, 8, 0, 7, 6, 8, 0, 0, 2, 0, 8, 2]", "assert split_Arr([7, 1, 2, 3, 1, 2, 3], 6) == [3, 7, 1, 2, 3, 1, 2]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert a list to a tuple.\nassert list_tuple([5, 10, 7, 4, 15, 3])==(5, 10, 7, 4, 15, 3)\nYour code should pass the test:\nassert list_tuple([5, 10, 7, 4, 15, 3])==(5, 10, 7, 4, 15, 3)", "test_list": [ "assert list_tuple([5, 10, 7, 4, 15, 3])==(5, 10, 7, 4, 15, 3)", "assert list_tuple([2, 4, 5, 6, 2, 3, 4, 4, 7])==(2, 4, 5, 6, 2, 3, 4, 4, 7)", "assert list_tuple([58,44,56])==(58,44,56)", "assert list_tuple([[], [], []]) == ([], [], [])", "assert list_tuple([[1, 2], [3, 4], [5, 6]]) == ([1, 2], [3, 4], [5, 6])", "assert list_tuple([[1, 2, 3], [4, 5, 6], [7, 8, 9]]) == ([1, 2, 3], [4, 5, 6], [7, 8, 9])", "assert list_tuple([{'name': 'John', 'age': 25}, {'name': 'Mary', 'age': 30}, {'name': 'Bob', 'age': 35}]) == ({'name': 'John', 'age': 25}, {'name': 'Mary', 'age': 30}, {'name': 'Bob', 'age': 35})", "assert list_tuple([[1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6]]) == ([1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6])", "assert list_tuple(['apple', 'banana', 'cherry', 'date']) == ('apple', 'banana', 'cherry', 'date')", "assert list_tuple([[1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'key': [7, 8, 9]}, [10, [11, 12], 13]]) == ([1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'key': [7, 8, 9]}, [10, [11, 12], 13])", "assert list_tuple([1, 'hello', True, 3.14, [2, 5], {'name': 'John'}, [4, 7]]) == (1, 'hello', True, 3.14, [2, 5], {'name': 'John'}, [4, 7])", "assert list_tuple([1, 2, 3]) == (1, 2, 3)", "assert list_tuple([[1, 2, [3, [4, 5]], 6], [7, 8]]) == ([1, 2, [3, [4, 5]], 6], [7, 8])", "assert list_tuple([]) == ()", "assert list_tuple([[1, [2, 3]], [4, [5, 6]], [7, [8, 9]]]) == ([1, [2, 3]], [4, [5, 6]], [7, [8, 9]])", "assert list_tuple([[[1], [2]], [[3], [4]], [[5], [6]]]) == ([[1], [2]], [[3], [4]], [[5], [6]])", "assert list_tuple([[7, 7], [7, 7]]) == ([7, 7], [7, 7])", "assert list_tuple([[[1], [2]], [[3], [4]], [[5], [6]], [[5], [6]]]) == ([[1], [2]], [[3], [4]], [[5], [6]], [[5], [6]])", "assert list_tuple(['key', 'banana', 'cherry', 'date']) == ('key', 'banana', 'cherry', 'date')", "assert list_tuple(['key', 'kdateey', 'banana', 'cherry', 'date']) == ('key', 'kdateey', 'banana', 'cherry', 'date')", "assert list_tuple([[[1], [2]], [[3], [4]], [[8], [8], [6]], [[8], [8], [6]]]) == ([[1], [2]], [[3], [4]], [[8], [8], [6]], [[8], [8], [6]])", "assert list_tuple([1, 'hello', True, [8, 7], 3.14, [2, 5], {'name': 'John'}, [4, 7]]) == (1, 'hello', True, [8, 7], 3.14, [2, 5], {'name': 'John'}, [4, 7])", "assert list_tuple([[1, 2], [5, 6]]) == ([1, 2], [5, 6])", "assert list_tuple([[1, 2, 3], [4, 5, 6]]) == ([1, 2, 3], [4, 5, 6])", "assert list_tuple([[1, 2, 3], [4, 5, 6]]) == ([1, 2, 3], [4, 5, 6])", "assert list_tuple(['dRkl', True, 'WN', False, 'Xyd', 'OqBu', 'XBFV']) == ('dRkl', True, 'WN', False, 'Xyd', 'OqBu', 'XBFV')", "assert list_tuple([[], [], [], []]) == ([], [], [], [])", "assert list_tuple([[5, 4], [], [], []]) == ([5, 4], [], [], [])", "assert list_tuple([[1, [2, 3]], [4, [5, 6]], [1, [2, 3]]]) == ([1, [2, 3]], [4, [5, 6]], [1, [2, 3]])", "assert list_tuple(['kdateey', 'kdateey', 'banana', 'cherry', 'date']) == ('kdateey', 'kdateey', 'banana', 'cherry', 'date')", "assert list_tuple(['key', 'banana', 'cherry', 'date', 'key']) == ('key', 'banana', 'cherry', 'date', 'key')", "assert list_tuple([[1, 2, 7, [3, [4, 5]], 6], [7, 8]]) == ([1, 2, 7, [3, [4, 5]], 6], [7, 8])", "assert list_tuple([[1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'key': [7, 8, 9]}]) == ([1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'key': [7, 8, 9]})", "assert list_tuple([[1, 12, 2], [3, 4], [5, 6]]) == ([1, 12, 2], [3, 4], [5, 6])", "assert list_tuple([True, 'WN', False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'Xyd']) == (True, 'WN', False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'Xyd')", "assert list_tuple([[[1], [2]], [[3], [4]], [[5], [6]], [[5], [6]], [[3], [4]], [[5], [6]]]) == ([[1], [2]], [[3], [4]], [[5], [6]], [[5], [6]], [[3], [4]], [[5], [6]])", "assert list_tuple([1, 'hello', True, [8, 7], 3.14, [2, 5], {'name': 'John'}, [4, 7], [8, 7]]) == (1, 'hello', True, [8, 7], 3.14, [2, 5], {'name': 'John'}, [4, 7], [8, 7])", "assert list_tuple([1, 'hello', {'name': 'kdateey'}, True, [8, 7], 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7]]) == (1, 'hello', {'name': 'kdateey'}, True, [8, 7], 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7])", "assert list_tuple(['kdateey', 'kdateey', 'banana', 'cherry', 'date', 'kdateey']) == ('kdateey', 'kdateey', 'banana', 'cherry', 'date', 'kdateey')", "assert list_tuple(['hello', True, 3.14, True, [2, 5], {'name': 'John'}, [4, 7], [2, 5]]) == ('hello', True, 3.14, True, [2, 5], {'name': 'John'}, [4, 7], [2, 5])", "assert list_tuple([[3, 4], [5, 6]]) == ([3, 4], [5, 6])", "assert list_tuple(['key', 'banana', 'cherry', 'daatte']) == ('key', 'banana', 'cherry', 'daatte')", "assert list_tuple(['key', 'kdateey', 'cherry', 'date']) == ('key', 'kdateey', 'cherry', 'date')", "assert list_tuple([1, 'hello', {'name': 'kdateey'}, True, [8, 7], [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7], {'name': 'kdateey'}]) == (1, 'hello', {'name': 'kdateey'}, True, [8, 7], [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7], {'name': 'kdateey'})", "assert list_tuple([[7, 6], [7, 6]]) == ([7, 6], [7, 6])", "assert list_tuple(['kdateey', 'date', 'kdateey', 'banana', 'cherry', 'date', 'kdateey']) == ('kdateey', 'date', 'kdateey', 'banana', 'cherry', 'date', 'kdateey')", "assert list_tuple([[[1], [2]], [[3], [4]]]) == ([[1], [2]], [[3], [4]])", "assert list_tuple([True, False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'Xyd']) == (True, False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'Xyd')", "assert list_tuple(['dRkl', 'XBFJohnV', True, True, 'WN', False, 'Xyd', 'OqBu', 'XBFV']) == ('dRkl', 'XBFJohnV', True, True, 'WN', False, 'Xyd', 'OqBu', 'XBFV')", "assert list_tuple([[1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'name': 'John', 'age': 25}]) == ([1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'name': 'John', 'age': 25})", "assert list_tuple(['banana', 'WN', 'cherry', 'date']) == ('banana', 'WN', 'cherry', 'date')", "assert list_tuple([1, 'hello', True, [8, 7], 3.14, [2, 5], {'name': 'John'}, [4, 7], 'hello']) == (1, 'hello', True, [8, 7], 3.14, [2, 5], {'name': 'John'}, [4, 7], 'hello')", "assert list_tuple([True, 'WN', False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'nbanana', 'Xyd']) == (True, 'WN', False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'nbanana', 'Xyd')", "assert list_tuple([1, {'name': 'kdateey'}, True, [7], 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7]]) == (1, {'name': 'kdateey'}, True, [7], 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7])", "assert list_tuple(['key', 'cherry', 'dMaryaatte']) == ('key', 'cherry', 'dMaryaatte')", "assert list_tuple([1, 'hello', True, [2, 6, 4], [2, 6, 4], {'name': 'John'}, [4, 7]]) == (1, 'hello', True, [2, 6, 4], [2, 6, 4], {'name': 'John'}, [4, 7])", "assert list_tuple([[1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8]]) == ([1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8])", "assert list_tuple(['kdateey', 'kdateedy', 'banana', 'cherry', 'date', 'kdateey']) == ('kdateey', 'kdateedy', 'banana', 'cherry', 'date', 'kdateey')", "assert list_tuple([{'name': 'John', 'age': 25}, {'name': 'Mary', 'age': 30}, {'name': 'John', 'age': 25}]) == ({'name': 'John', 'age': 25}, {'name': 'Mary', 'age': 30}, {'name': 'John', 'age': 25})", "assert list_tuple([[7, 8], [1, 2, 7, [3, [4, 5]], 6]]) == ([7, 8], [1, 2, 7, [3, [4, 5]], 6])", "assert list_tuple(['kdateey', 'date', 'kdateey', 'banana', 'cherry', 'date', 'kdateey', 'kdateey']) == ('kdateey', 'date', 'kdateey', 'banana', 'cherry', 'date', 'kdateey', 'kdateey')", "assert list_tuple(['key', 'kdateey', 'cherry', 'date', 'kdateey']) == ('key', 'kdateey', 'cherry', 'date', 'kdateey')", "assert list_tuple([[1, 2], [3, 4], [5, 6], [1, 2]]) == ([1, 2], [3, 4], [5, 6], [1, 2])", "assert list_tuple([[1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [7, 8]]) == ([1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [7, 8])", "assert list_tuple(['key', 'cherry', 'dJohnate']) == ('key', 'cherry', 'dJohnate')", "assert list_tuple([[1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6]]) == ([1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6])", "assert list_tuple([True, True, True]) == (True, True, True)", "assert list_tuple([True, True]) == (True, True)", "assert list_tuple(['key', 'kdateey', 'date', 'kdateey']) == ('key', 'kdateey', 'date', 'kdateey')", "assert list_tuple([[1, 2, 7, [3, [4, 5]], 6], [7, 8], [7, 8]]) == ([1, 2, 7, [3, [4, 5]], 6], [7, 8], [7, 8])", "assert list_tuple(['key', 'dMaryaatte', 'kdateey', 'date', 'kdateey']) == ('key', 'dMaryaatte', 'kdateey', 'date', 'kdateey')", "assert list_tuple(['key', 'banana', 'cherry', 'date', 'key', 'cherry', 'key']) == ('key', 'banana', 'cherry', 'date', 'key', 'cherry', 'key')", "assert list_tuple([[5, 6]]) == ([5, 6],)", "assert list_tuple([1, {'name': 'kdateey'}, True, [7], 2.9949746810892433, 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7]]) == (1, {'name': 'kdateey'}, True, [7], 2.9949746810892433, 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7])", "assert list_tuple(['dRkl', True, 'WN', False, 'Xyd', 'OqBu']) == ('dRkl', True, 'WN', False, 'Xyd', 'OqBu')", "assert list_tuple([[], [], [3, 4], []]) == ([], [], [3, 4], [])", "assert list_tuple(['key', 'cherry', 'kdayteey', 'date']) == ('key', 'cherry', 'kdayteey', 'date')", "assert list_tuple([[1, 2, 7, [3, [4, 5]], 6], [7, 8], [7, 8], [1, 2, 7, [3, [4, 5]], 6]]) == ([1, 2, 7, [3, [4, 5]], 6], [7, 8], [7, 8], [1, 2, 7, [3, [4, 5]], 6])", "assert list_tuple([[1, 2, [3, [4, 5]], 6, 6, 8], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 8], [1, 2, [3, [4, 5]], 6, 6, 8], [7, 8], [7, 8]]) == ([1, 2, [3, [4, 5]], 6, 6, 8], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 8], [1, 2, [3, [4, 5]], 6, 6, 8], [7, 8], [7, 8])", "assert list_tuple([{'name': 'John', 'age': 25, 'date': 2}, {'name': 'Mary', 'age': 30}, {'name': 'John', 'age': 25, 'date': 2}]) == ({'name': 'John', 'age': 25, 'date': 2}, {'name': 'Mary', 'age': 30}, {'name': 'John', 'age': 25, 'date': 2})", "assert list_tuple([True]) == (True,)", "assert list_tuple([[5, 4], [], [], [], []]) == ([5, 4], [], [], [], [])", "assert list_tuple([{'name': 'John', 'age': 25}, {'name': 'Mary', 'age': 30}]) == ({'name': 'John', 'age': 25}, {'name': 'Mary', 'age': 30})", "assert list_tuple([{'name': 'Mary', 'age': 30}]) == ({'name': 'Mary', 'age': 30},)", "assert list_tuple([[5, 4], [], []]) == ([5, 4], [], [])", "assert list_tuple([1, 'hello', True, [2, 6, 4, 2], {'name': 'John'}, [6, 4, 7]]) == (1, 'hello', True, [2, 6, 4, 2], {'name': 'John'}, [6, 4, 7])", "assert list_tuple([1, 'hello', {'name': 'kdateey'}, True, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7], {'name': 'kdateey'}]) == (1, 'hello', {'name': 'kdateey'}, True, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7], {'name': 'kdateey'})", "assert list_tuple([[1, 2, 7, [3, [4, 5]], 6], [7, 8], [7, 8], [1, 2, 7, [3, [4, 5]], 6], [1, 2, 7, [3, [4, 5]], 6]]) == ([1, 2, 7, [3, [4, 5]], 6], [7, 8], [7, 8], [1, 2, 7, [3, [4, 5]], 6], [1, 2, 7, [3, [4, 5]], 6])", "assert list_tuple([[1, 2, 2], [1, 2, 2], [5, 6]]) == ([1, 2, 2], [1, 2, 2], [5, 6])", "assert list_tuple([1, {'name': 'kdateey'}, 3.14, True, [7], 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7]]) == (1, {'name': 'kdateey'}, 3.14, True, [7], 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7])", "assert list_tuple([[1, 2, 3], {'name': 'John', 'age': 25}, [5, 5, 6], [4, 5, 6], {'key': [7, 8, 9]}, [4, 5, 6]]) == ([1, 2, 3], {'name': 'John', 'age': 25}, [5, 5, 6], [4, 5, 6], {'key': [7, 8, 9]}, [4, 5, 6])", "assert list_tuple(['kdateey', 'cherry', 'date']) == ('kdateey', 'cherry', 'date')", "assert list_tuple([[1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'key': [7, 8, 9]}, [10, 13]]) == ([1, 2, 3], {'name': 'John', 'age': 25}, [4, 5, 6], {'key': [7, 8, 9]}, [10, 13])", "assert list_tuple([[1, 2, [3, [4, 5]], 6], [1, 2, [3, [4, 5]], 6], [7, 8], [7, 8], [1, 2, [3, [4, 5]], 6]]) == ([1, 2, [3, [4, 5]], 6], [1, 2, [3, [4, 5]], 6], [7, 8], [7, 8], [1, 2, [3, [4, 5]], 6])", "assert list_tuple([1, {'name': 'kdateey'}, [7], 2.9949746810892433, 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7]]) == (1, {'name': 'kdateey'}, [7], 2.9949746810892433, 3.14, [2, 5], {'name': 'kdateey'}, [4, 7], [8, 7])", "assert list_tuple([['age', 'Xyd', 'MpyclUujFG', 'kdayteey', 'key', 'daatte', 'kdateey', 'nbanana'], [], []]) == (['age', 'Xyd', 'MpyclUujFG', 'kdayteey', 'key', 'daatte', 'kdateey', 'nbanana'], [], [])", "assert list_tuple([[2, [3, [4, 5]], 5], [2, [3, [4, 5]], 5], [2, [3, [4, 5]], 5], [7, 8]]) == ([2, [3, [4, 5]], 5], [2, [3, [4, 5]], 5], [2, [3, [4, 5]], 5], [7, 8])", "assert list_tuple([[1, 2, 3], [4, 5, 6], [8, 9], [1, 2, 3]]) == ([1, 2, 3], [4, 5, 6], [8, 9], [1, 2, 3])", "assert list_tuple(['hello', True, 3.14, [2, 5], {}, {}, [4, 7]]) == ('hello', True, 3.14, [2, 5], {}, {}, [4, 7])", "assert list_tuple(['OqBu', 'date', 'kdateey', 'banana', 'cherry', 'date', 'hellodate', 'kdateey']) == ('OqBu', 'date', 'kdateey', 'banana', 'cherry', 'date', 'hellodate', 'kdateey')", "assert list_tuple([[6], [1, 12, 2], [9, 3, 4], [9, 3, 4], [6]]) == ([6], [1, 12, 2], [9, 3, 4], [9, 3, 4], [6])", "assert list_tuple([{'name': 'hello', 'age': 26}, {'name': 'Mary', 'age': 30}, {'name': 'hello', 'age': 26}]) == ({'name': 'hello', 'age': 26}, {'name': 'Mary', 'age': 30}, {'name': 'hello', 'age': 26})", "assert list_tuple([True, 3.14, True, [2, 5], {'name': 'John'}, [4, 7], [2, 5]]) == (True, 3.14, True, [2, 5], {'name': 'John'}, [4, 7], [2, 5])", "assert list_tuple([[25, 1, 2, 3], {'name': 'John', 'age': 25}, [5, 5, 6], [4, 5, 6], {'key': [7, 8, 9]}, [4, 5, 6]]) == ([25, 1, 2, 3], {'name': 'John', 'age': 25}, [5, 5, 6], [4, 5, 6], {'key': [7, 8, 9]}, [4, 5, 6])", "assert list_tuple([[[1], []], [[3], [4]], [[5], [6]], [[5], [6]]]) == ([[1], []], [[3], [4]], [[5], [6]], [[5], [6]])", "assert list_tuple([False]) == (False,)", "assert list_tuple([True, 3.14, True, [2, 5], {'name': 'Johnbanana'}, {'name': 'Johnbanana'}, [4, 7], [2, 5]]) == (True, 3.14, True, [2, 5], {'name': 'Johnbanana'}, {'name': 'Johnbanana'}, [4, 7], [2, 5])", "assert list_tuple([False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'Xyd', 'XBFV']) == (False, 'banana', 'Xyd', 'OqBu', 'XBFV', 'Xyd', 'XBFV')", "assert list_tuple([[1, 2, 3], [1, 2, 3], [5, 6]]) == ([1, 2, 3], [1, 2, 3], [5, 6])", "assert list_tuple(['kkey', 'cherry', 'kdayteey', 'date']) == ('kkey', 'cherry', 'kdayteey', 'date')", "assert list_tuple([[1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [7, 8]]) == ([1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [1, 2, [3, [4, 5]], 6, 6, 6], [7, 8], [7, 8])", "assert list_tuple([['age', 'Xyd', 'MpyclUujFG', 'kdayteey', 'key', 'daatte', 'kdateey', 'nbanana'], [], [], []]) == (['age', 'Xyd', 'MpyclUujFG', 'kdayteey', 'key', 'daatte', 'kdateey', 'nbanana'], [], [], [])", "assert list_tuple(['', 'apple', 'banana', 'cherry', 'date']) == ('', 'apple', 'banana', 'cherry', 'date')", "assert list_tuple([[7, 6]]) == ([7, 6],)", "assert list_tuple([[7, 8], [1, 2, 7, [3, [4, 5]], 6], [7, 8]]) == ([7, 8], [1, 2, 7, [3, [4, 5]], 6], [7, 8])", "assert list_tuple(['hello', True, 2.1155785597926853, [2, 5], {}, [4, 7, 4], {}, [4, 7]]) == ('hello', True, 2.1155785597926853, [2, 5], {}, [4, 7, 4], {}, [4, 7])" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the difference between largest and smallest value in a given list.\nassert big_diff([1,2,3,4]) == 3\nYour code should pass the test:\nassert big_diff([1,2,3,4]) == 3", "test_list": [ "assert big_diff([1,2,3,4]) == 3", "assert big_diff([4,5,12]) == 8", "assert big_diff([9,2,3]) == 7", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 8]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 7, 6]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 7, 9, 6, 8, 7, 6]) == 8", "assert big_diff([9, 5, 3, 8, 5, 1, 2, 4, 7, 6]) == 8", "assert big_diff([9, 5, 2, 3, 8, 1, 2, 7, 6, 1]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 6]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 8]) == 8", "assert big_diff([9, 5, 3, 8, 0, 2, 7, 7, 6, 8]) == 9", "assert big_diff([9, 5, 3, 8, 1, 4, 4, 7, 6]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 8, 2]) == 8", "assert big_diff([9, 5, 3, 8, 0, 7, 7, 6, 8]) == 9", "assert big_diff([9, 3, 5, 2, 3, 8, 1, 2, 7, 6, 1]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 7, 5]) == 8", "assert big_diff([9, 3, 5, 8, 2, 3, 7, 8, 1, 2, 7, 6, 1]) == 8", "assert big_diff([9, 3, 8, 1, 2, 4, 7, 6, 8]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 8, 1]) == 8", "assert big_diff([9, 3, 8, 0, 7, 7, 6, 8]) == 9", "assert big_diff([9, 5, 3, 8, 1, 4, 4, 7, 6, 8]) == 8", "assert big_diff([9, 5, 1, 3, 8, 1, 2, 7, 6]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 8, 8]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 8, 5]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 9, 2]) == 8", "assert big_diff([9, 10, 5, 3, 8, 1, 2, 4, 6]) == 9", "assert big_diff([9, 5, 3, 8, 1, 6, 4, 5, 6, 8]) == 8", "assert big_diff([9, 5, 3, 8, 2, 2, 4, 6]) == 7", "assert big_diff([9, 5, 3, 8, 4, 4, 7, 6]) == 6", "assert big_diff([9, 5, 3, 8, 4, 4, 7, 6, 5]) == 6", "assert big_diff([9, 5, 2, 3, 8, 1, 2, 7, 6, 1, 2]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 9]) == 8", "assert big_diff([9, 5, 2, 3, 8, 1, 4, 4, 8, 6]) == 8", "assert big_diff([9, 3, 5, 8, 2, 3, 7, 8, 1, 2, 7, 5, 1]) == 8", "assert big_diff([9, 5, 3, 8, 0, 7, 7, 6, 8, 6]) == 9", "assert big_diff([9, 5, 3, 1, 8, 1, 2, 4, 2]) == 8", "assert big_diff([9, 3, 8, 10, 2, 4, 7, 6, 9, 8]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 8, 2]) == 8", "assert big_diff([9, 3, 3, 8, 2, 2, 4, 6]) == 7", "assert big_diff([9, 1, 5, 3, 8, 1, 2, 2, 7, 6, 8, 2]) == 8", "assert big_diff([9, 5, 1, 3, 8, 1, 2, 7, 6, 3]) == 8", "assert big_diff([9, 5, 3, 8, 1, 6, 4, 5, 6, 8, 3]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 8, 9, 1]) == 8", "assert big_diff([9, 3, 8, 8, 1, 2, 4, 7, 8, 8]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 8, 8, 9]) == 8", "assert big_diff([9, 5, 4, 8, 1, 2, 4, 7, 6, 8, 1]) == 8", "assert big_diff([2, 9, 5, 3, 8, 6, 4, 5, 6, 8]) == 7", "assert big_diff([9, 5, 2, 8, 1, 4, 4, 8]) == 8", "assert big_diff([8, 1, 3, 8, 1, 2, 7, 6]) == 7", "assert big_diff([9, 6, 3, 9, 8, 1, 2, 2, 7, 6, 8, 5]) == 8", "assert big_diff([9, 5, 2, 8, 4, 4, 8]) == 7", "assert big_diff([9, 10, 5, 3, 8, 1, 4, 6, 6]) == 9", "assert big_diff([9, 5, 3, 3, 8, 1, 4, 4, 7, 6, 8, 5]) == 8", "assert big_diff([9, 5, 3, 9, 8, 1, 2, 2, 7, 6, 8, 9, 1]) == 8", "assert big_diff([10, 7, 3, 8, 2, 4, 6]) == 8", "assert big_diff([9, 3, 4, 8, 2, 2, 4, 7, 6, 8, 1]) == 8", "assert big_diff([9, 6, 3, 9, 8, 1, 2, 2, 8, 7, 6, 8, 5]) == 8", "assert big_diff([9, 5, 3, 8, 1, 3, 4, 4, 6, 8, 1]) == 8", "assert big_diff([9, 3, 3, 8, 2, 2, 6]) == 7", "assert big_diff([9, 3, 3, 8, 2, 2, 3, 6]) == 7", "assert big_diff([9, 2, 5, 2, 3, 8, 1, 2, 7, 6, 1, 2]) == 8", "assert big_diff([9, 5, 1, 8, 3, 8, 1, 2, 7, 6]) == 8", "assert big_diff([1, 9, 5, 3, 8, 1, 2, 4, 6]) == 8", "assert big_diff([9, 5, 1, 3, 8, 1, 2, 7, 6, 1, 2]) == 8", "assert big_diff([9, 8, 8, 1, 2, 4, 2, 7, 8, 8, 7]) == 8", "assert big_diff([9, 1, 5, 4, 8, 1, 2, 2, 7, 6, 8, 2]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 7, 9, 6, 6, 8, 7, 6]) == 8", "assert big_diff([9, 5, 2, 3, 8, 1, 4, 4, 8, 6, 8]) == 8", "assert big_diff([9, 5, 8, 2, 7, 9, 6, 8, 7, 6, 6]) == 7", "assert big_diff([10, 5, 3, 8, 5, 1, 2, 4, 7, 6]) == 9", "assert big_diff([9, 5, 3, 8, 1, 2, 4, 7, 6, 6, 9]) == 8", "assert big_diff([9, 5, 1, 8, 1, 5, 2, 4, 2]) == 8", "assert big_diff([9, 3, 8, 10, 2, 8, 7, 6, 8]) == 8", "assert big_diff([9, 9, 5, 3, 8, 4, 4, 7, 6]) == 6", "assert big_diff([9, 3, 5, 0, 8, 1, 2, 7, 5]) == 9", "assert big_diff([9, 5, 3, 8, 1, 4, 4, 7, 6, 8, 6]) == 8", "assert big_diff([9, 5, 3, 8, 1, 4, 4, 7, 6, 4]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 9, 2, 9]) == 8", "assert big_diff([9, 3, 4, 2, 2, 2, 4, 7, 6, 8, 1, 9]) == 8", "assert big_diff([9, 5, 3, 2, 1, 2, 2, 7, 8, 9, 1]) == 8", "assert big_diff([9, 5, 8, 2, 3, 7, 8, 1, 2, 7, 6, 1]) == 8", "assert big_diff([9, 5, 8, 1, 2, 4, 6]) == 8", "assert big_diff([7, 3, 8, 2, 4, 6]) == 6", "assert big_diff([9, 5, 2, 4, 8, 1, 3, 2, 7, 6, 1]) == 8", "assert big_diff([9, 5, 3, 8, 2, 1, 2, 2, 7, 6, 8, 5]) == 8", "assert big_diff([7, 3, 7, 2, 4]) == 5", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 7, 6, 8, 9, 1, 1]) == 8", "assert big_diff([9, 5, 3, 8, 2, 2, 7, 6, 8, 10, 1, 1]) == 9", "assert big_diff([9, 5, 3, 8, 4, 4, 7, 6, 7]) == 6", "assert big_diff([9, 3, 5, 7, 8, 2, 3, 7, 8, 1, 2, 7, 5, 1]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 1, 7, 8, 1]) == 8", "assert big_diff([9, 5, 3, 8, 2, 2, 4, 6, 2]) == 7", "assert big_diff([9, 3, 8, 1, 2, 5, 7, 6, 8]) == 8", "assert big_diff([9, 5, 2, 4, 1, 8, 10, 2, 4, 2]) == 9", "assert big_diff([9, 5, 3, 8, 0, 7, 7, 6, 8, 8]) == 9", "assert big_diff([9, 3, 5, 0, 8, 2, 3, 7, 8, 1, 2, 7, 6, 1]) == 9", "assert big_diff([9, 5, 3, 8, 1, 4, 7, 6, 8, 6]) == 8", "assert big_diff([10, 7, 3, 8, 2, 4, 5]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 6, 8, 9, 1, 1]) == 8", "assert big_diff([9, 5, 3, 8, 1, 2, 2, 6, 0, 9, 1, 1]) == 9", "assert big_diff([9, 5, 2, 8, 1, 9, 4, 4, 8]) == 8", "assert big_diff([9, 3, 8, 0, 7, 7, 6]) == 9", "assert big_diff([10, 9, 5, 3, 9, 8, 1, 2, 2, 7, 6, 8, 9, 1]) == 9" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find perfect squares between two given numbers.\nassert perfect_squares(1,30)==[1, 4, 9, 16, 25]\nYour code should pass the test:\nassert perfect_squares(1,30)==[1, 4, 9, 16, 25]", "test_list": [ "assert perfect_squares(1,30)==[1, 4, 9, 16, 25]", "assert perfect_squares(50,100)==[64, 81, 100]", "assert perfect_squares(100,200)==[100, 121, 144, 169, 196]", "assert perfect_squares(-10, -1) == []", "assert perfect_squares(-1000, -1) == []", "assert perfect_squares(-1, -1000) == []", "assert perfect_squares(-1000, -1000) == []", "assert perfect_squares(-2, -1) == []", "assert perfect_squares(-999, -2) == []", "assert perfect_squares(-999, -1000) == []", "assert perfect_squares(-999, -999) == []", "assert perfect_squares(-2, -2) == []", "assert perfect_squares(-1, -3) == []", "assert perfect_squares(-2, -10) == []", "assert perfect_squares(-1001, -1001) == []", "assert perfect_squares(-2, -999) == []", "assert perfect_squares(-1, -999) == []", "assert perfect_squares(-3, -1) == []", "assert perfect_squares(-1000, -1001) == []", "assert perfect_squares(-2, -998) == []", "assert perfect_squares(-3, -1001) == []", "assert perfect_squares(-999, -998) == []", "assert perfect_squares(-998, -1) == []", "assert perfect_squares(-1001, -999) == []", "assert perfect_squares(-1000, -2) == []", "assert perfect_squares(-999, -1001) == []", "assert perfect_squares(-999, -3) == []", "assert perfect_squares(-3, -3) == []", "assert perfect_squares(-3, -2) == []", "assert perfect_squares(-1000, -10) == []", "assert perfect_squares(-10, -1000) == []", "assert perfect_squares(-2, -1000) == []", "assert perfect_squares(-1000, -999) == []", "assert perfect_squares(-998, -1000) == []", "assert perfect_squares(-1000, -3) == []", "assert perfect_squares(-11, -10) == []", "assert perfect_squares(-998, -998) == []", "assert perfect_squares(-10, -10) == []", "assert perfect_squares(-1, -1) == []", "assert perfect_squares(-998, -999) == []", "assert perfect_squares(-998, -997) == []", "assert perfect_squares(-998, -996) == []", "assert perfect_squares(-10, -9) == []", "assert perfect_squares(-997, -997) == []", "assert perfect_squares(-8, -996) == []", "assert perfect_squares(-3, -997) == []", "assert perfect_squares(-11, -11) == []", "assert perfect_squares(-1, -2) == []", "assert perfect_squares(-2, -3) == []", "assert perfect_squares(-1002, -9) == []", "assert perfect_squares(-11, -1) == []", "assert perfect_squares(-8, -9) == []", "assert perfect_squares(-8, -997) == []", "assert perfect_squares(-1001, -8) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth octagonal number.\nassert is_octagonal(5) == 65\nYour code should pass the test:\nassert is_octagonal(5) == 65", "test_list": [ "assert is_octagonal(5) == 65", "assert is_octagonal(10) == 280", "assert is_octagonal(15) == 645", "assert is_octagonal(100) == 29800", "assert is_octagonal(99) == 29205", "assert is_octagonal(98) == 28616", "assert is_octagonal(96) == 27456", "assert is_octagonal(101) == 30401", "assert is_octagonal(97) == 28033", "assert is_octagonal(102) == 31008", "assert is_octagonal(22) == 1408", "assert is_octagonal(True) == 1", "assert is_octagonal(23) == 1541", "assert is_octagonal(103) == 31621", "assert is_octagonal(104) == 32240", "assert is_octagonal(21) == 1281", "assert is_octagonal(95) == 26885", "assert is_octagonal(105) == 32865", "assert is_octagonal(20) == 1160", "assert is_octagonal(7) == 133", "assert is_octagonal(9) == 225", "assert is_octagonal(10) == 280", "assert is_octagonal(8) == 176", "assert is_octagonal(6) == 96", "assert is_octagonal(5) == 65", "assert is_octagonal(4) == 40", "assert is_octagonal(106) == 33496", "assert is_octagonal(24) == 1680", "assert is_octagonal(19) == 1045", "assert is_octagonal(11) == 341", "assert is_octagonal(94) == 26320", "assert is_octagonal(25) == 1825", "assert is_octagonal(3) == 21", "assert is_octagonal(26) == 1976", "assert is_octagonal(93) == 25761", "assert is_octagonal(12) == 408", "assert is_octagonal(108) == 34776", "assert is_octagonal(92) == 25208", "assert is_octagonal(42) == 5208", "assert is_octagonal(41) == 4961", "assert is_octagonal(43) == 5461", "assert is_octagonal(107) == 34133", "assert is_octagonal(2) == 8", "assert is_octagonal(1) == 1", "assert is_octagonal(13) == 481", "assert is_octagonal(14) == 560", "assert is_octagonal(38) == 4256", "assert is_octagonal(39) == 4485", "assert is_octagonal(53) == 8321", "assert is_octagonal(37) == 4033", "assert is_octagonal(52) == 8008", "assert is_octagonal(18) == 936", "assert is_octagonal(54) == 8640", "assert is_octagonal(91) == 24661", "assert is_octagonal(55) == 8965", "assert is_octagonal(51) == 7701", "assert is_octagonal(50) == 7400", "assert is_octagonal(40) == 4720", "assert is_octagonal(90) == 24120", "assert is_octagonal(89) == 23585", "assert is_octagonal(56) == 9296", "assert is_octagonal(17) == 833", "assert is_octagonal(76) == 17176", "assert is_octagonal(109) == 35425", "assert is_octagonal(110) == 36080", "assert is_octagonal(111) == 36741", "assert is_octagonal(27) == 2133", "assert is_octagonal(16) == 736", "assert is_octagonal(44) == 5720", "assert is_octagonal(15) == 645", "assert is_octagonal(57) == 9633", "assert is_octagonal(88) == 23056", "assert is_octagonal(77) == 17633", "assert is_octagonal(58) == 9976", "assert is_octagonal(75) == 16725", "assert is_octagonal(28) == 2296", "assert is_octagonal(113) == 38081", "assert is_octagonal(112) == 37408", "assert is_octagonal(87) == 22533", "assert is_octagonal(59) == 10325", "assert is_octagonal(78) == 18096", "assert is_octagonal(70) == 14560", "assert is_octagonal(71) == 14981", "assert is_octagonal(69) == 14145", "assert is_octagonal(86) == 22016", "assert is_octagonal(72) == 15408", "assert is_octagonal(45) == 5985", "assert is_octagonal(47) == 6533", "assert is_octagonal(46) == 6256", "assert is_octagonal(49) == 7105", "assert is_octagonal(29) == 2465", "assert is_octagonal(60) == 10680", "assert is_octagonal(36) == 3816", "assert is_octagonal(30) == 2640", "assert is_octagonal(85) == 21505", "assert is_octagonal(48) == 6816", "assert is_octagonal(73) == 15841", "assert is_octagonal(84) == 21000", "assert is_octagonal(114) == 38760", "assert is_octagonal(31) == 2821", "assert is_octagonal(35) == 3605", "assert is_octagonal(34) == 3400", "assert is_octagonal(79) == 18565", "assert is_octagonal(83) == 20501" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert polar coordinates to rectangular coordinates.\nassert polar_rect(3,4)==((5.0, 0.9272952180016122), (-2+2.4492935982947064e-16j))\nYour code should pass the test:\nassert polar_rect(3, 4)==((5.0, 0.9272952180016122), (-2+2.4492935982947064e-16j))", "test_list": [ "assert polar_rect(3, 4)==((5.0, 0.9272952180016122), (-2+2.4492935982947064e-16j))", "assert polar_rect(4, 7)==((8.06225774829855, 1.0516502125483738), (-2+2.4492935982947064e-16j))", "assert polar_rect(15, 17)==((22.67156809750927, 0.8478169733934057), (-2+2.4492935982947064e-16j))" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to interchange the first and last elements in a list.\nassert swap_List([12, 35, 9, 56, 24]) == [24, 35, 9, 56, 12]\nYour code should pass the test:\nassert swap_List([12, 35, 9, 56, 24]) == [24, 35, 9, 56, 12]", "test_list": [ "assert swap_List([12, 35, 9, 56, 24]) == [24, 35, 9, 56, 12]", "assert swap_List([1, 2, 3]) == [3, 2, 1]", "assert swap_List([4, 5, 6]) == [6, 5, 4]", "assert swap_List([4, 'apple', 6.5, True, ['a', 'b', 'c']]) == [['a', 'b', 'c'], 'apple', 6.5, True, 4]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana']]) == [['apple', 'banana'], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], None]", "assert swap_List([['a', 'b'], {'name': 'John', 'age': 30}, ['c', 'a', 'b'], [[1, 2, 3], [4, 5, 6]], 'hello world']) == ['hello world', {'name': 'John', 'age': 30}, ['c', 'a', 'b'], [[1, 2, 3], [4, 5, 6]], ['a', 'b']]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'banana', 'apple'], 123.456, [False, True]]) == [[False, True], [1, 2, 3, 4, 5], ['cherry', 'banana', 'apple'], 123.456, {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([{'a': [1, 2, 3], 'b': [4, 5, 6]}, {'x': 'apple', 'y': 'banana'}, [True, False, False, True], [1, 2, 3, 4, 5], 'hello']) == ['hello', {'x': 'apple', 'y': 'banana'}, [True, False, False, True], [1, 2, 3, 4, 5], {'a': [1, 2, 3], 'b': [4, 5, 6]}]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True], [False, True]]) == [[False, True], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([4, 'apple', 6.5, True, ['a', 'b', 'c'], 6.5]) == [6.5, 'apple', 6.5, True, ['a', 'b', 'c'], 4]", "assert swap_List([{'a': [1, 2, 3], 'b': [4, 5, 6]}, [True, False, False, True], [1, 2, 3, 4, 5], 'hello']) == ['hello', [True, False, False, True], [1, 2, 3, 4, 5], {'a': [1, 2, 3], 'b': [4, 5, 6]}]", "assert swap_List([4, 'apple', 6.5, True]) == [True, 'apple', 6.5, 4]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True]]) == [[False, True, True], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], [True, False]]) == [[True, False], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], None]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True], [False, True]]) == [[False, True], ['cherry', 'apple', 'banana'], 123.456, [False, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([4, 'apple', 6.5, True, ['a', 'b', 'c'], 6.5, ['a', 'b', 'c']]) == [['a', 'b', 'c'], 'apple', 6.5, True, ['a', 'b', 'c'], 6.5, 4]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], [True, False], 'hello']) == ['hello', 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], [True, False], None]", "assert swap_List([{'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, [True, False, True, False, True], [True, False, True, False, True], [1, 2, 3, 4, 5], 'hello', [True, False, True, False, True], {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}]) == [{'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, [True, False, True, False, True], [True, False, True, False, True], [1, 2, 3, 4, 5], 'hello', [True, False, True, False, True], {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}]", "assert swap_List([['a', 'aa', 'b'], {'name': 'John', 'age': 30}, ['a', 'b', 'c'], [[1, 2, 3], [4, 5, 6]], 'hello world']) == ['hello world', {'name': 'John', 'age': 30}, ['a', 'b', 'c'], [[1, 2, 3], [4, 5, 6]], ['a', 'aa', 'b']]", "assert swap_List([{'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, [True, False, True, False, True], [True, False, True, False, True], [1, 2, 3, 4, 5], 'hello', [True, False, True, False, True], {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, [True, False, True, False, True]]) == [[True, False, True, False, True], {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, [True, False, True, False, True], [True, False, True, False, True], [1, 2, 3, 4, 5], 'hello', [True, False, True, False, True], {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}, {'a': [1, True, 2, 3, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3, 3], 'York': [1, True, 2, 3, 3]}]", "assert swap_List([{'a': [1, True, 2, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3], 'York': [1, True, 2, 3], 'Alice': [1, True, 2, 3]}, {'a': [1, True, 2, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3], 'York': [1, True, 2, 3], 'Alice': [1, True, 2, 3]}, [True, False, True, False, True], [True, False, True, False, True], [1, 2, 3, 4, 5], 'hello', [True, False, True, False, True], {'a': [1, True, 2, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3], 'York': [1, True, 2, 3], 'Alice': [1, True, 2, 3]}, [True, False, True, False, True]]) == [[True, False, True, False, True], {'a': [1, True, 2, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3], 'York': [1, True, 2, 3], 'Alice': [1, True, 2, 3]}, [True, False, True, False, True], [True, False, True, False, True], [1, 2, 3, 4, 5], 'hello', [True, False, True, False, True], {'a': [1, True, 2, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3], 'York': [1, True, 2, 3], 'Alice': [1, True, 2, 3]}, {'a': [1, True, 2, 3], 'b': [4, 5, 6], 'world': [1, True, 2, 3], 'York': [1, True, 2, 3], 'Alice': [1, True, 2, 3]}]", "assert swap_List([4, 'apple', 6.5, ['a', 'b', 'c'], 6.5]) == [6.5, 'apple', 6.5, ['a', 'b', 'c'], 4]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True], ['banana', 'apple'], [False, True]]) == [[False, True], ['cherry', 'apple', 'banana'], 123.456, [False, True], ['banana', 'apple'], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True], [True], ['apple', 'banana'], [True]]) == [[True], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True], [True], ['apple', 'banana'], None]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, False]]) == [[False, False], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], [True, False], 'hello', 'hello']) == ['hello', 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], [True, False], 'hello', None]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana', 'banana'], [True, False], 'hello']) == ['hello', 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana', 'banana'], [True, False], None]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True]]) == [[True], 'hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], None]", "assert swap_List([4, 'aJohnple', 6.5, True, ['a', 'b', 'c']]) == [['a', 'b', 'c'], 'aJohnple', 6.5, True, 4]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], [True]]) == [[True], 'hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], None]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana'], [True, False, False]]) == [[True, False, False], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana'], None]", "assert swap_List([4, False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c']]) == [['a', 'b', 'c'], False, 'aJohnple', False, 6.5, True, 4]", "assert swap_List([['cherry', 'apple', 'banana'], 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], 123.456]) == [123.456, 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], ['cherry', 'apple', 'banana']]", "assert swap_List([False, 4, 123.456, 2, 'aJohnple', 6.5, True, ['a', 'x', 'c']]) == [['a', 'x', 'c'], 4, 123.456, 2, 'aJohnple', 6.5, True, False]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, ['apple', 'banana'], [True, False], 'hello']) == ['hello', 'hello', {'1': 'a', '2': 'b'}, 3.14, ['apple', 'banana'], [True, False], None]", "assert swap_List([4, False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], 'aJohnple']) == ['aJohnple', False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], 4]", "assert swap_List([4, 3, 'apple', 6.5, ['a', 'b', 'c'], 6.5]) == [6.5, 3, 'apple', 6.5, ['a', 'b', 'c'], 4]", "assert swap_List([None, 'hellho', {'1': 'a', '2': 'aa'}, 'hello', {'1': 'a', '2': 'aa'}, 3.14, ['apple', 'banana'], [True, False], 'hello']) == ['hello', 'hellho', {'1': 'a', '2': 'aa'}, 'hello', {'1': 'a', '2': 'aa'}, 3.14, ['apple', 'banana'], [True, False], None]", "assert swap_List([{'a': [1, 2, 3], 'b': [4, 5, 6]}, {'x': 'apple', 'y': 'banana'}, [True, False, False, True], 'hello', {'x': 'apple', 'y': 'banana'}]) == [{'x': 'apple', 'y': 'banana'}, {'x': 'apple', 'y': 'banana'}, [True, False, False, True], 'hello', {'a': [1, 2, 3], 'b': [4, 5, 6]}]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False], 3.14]) == [3.14, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana']]) == [['apple', 'banana'], {'1': 'a', '2': 'b'}, 3.14, [True, False], None]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True], [True], ['apple', 'banana'], [True], 3.14]) == [3.14, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True], [True], ['apple', 'banana'], [True], None]", "assert swap_List([4, 'apple', 6.5, True, ['a', 'b', 'c'], ['a', 'b', 'c']]) == [['a', 'b', 'c'], 'apple', 6.5, True, ['a', 'b', 'c'], 4]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, ['apple', 'bnanana'], [True, False], 'hello']) == ['hello', 'hello', {'1': 'a', '2': 'b'}, 3.14, ['apple', 'bnanana'], [True, False], None]", "assert swap_List(['hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], [True]]) == [[True], {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], 'hello']", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, False, True], [False, True, False, True]]) == [[False, True, False, True], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, False, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List(['aJohnple', 6.5, True, ['a', 'b', 'c']]) == [['a', 'b', 'c'], 6.5, True, 'aJohnple']", "assert swap_List(['hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], [True], {'1': 'a', '2': 'bb'}]) == [{'1': 'a', '2': 'bb'}, {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], [True], 'hello']", "assert swap_List([[1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True], ['John', 'cherry', 'banana']]) == [['John', 'cherry', 'banana'], ['cherry', 'apple', 'banana'], 123.456, [False, True], [1, 2, 3, 4, 5]]", "assert swap_List([['cherry', 'apple', 'banana'], 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], 123.456, [False, True]]) == [[False, True], 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], 123.456, ['cherry', 'apple', 'banana']]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, 91.09602532263384, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True]]) == [[False, True, True], 91.09602532263384, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([[1, 2, 3, 5], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, False, True], {'name': 'Alice', 'age': 25, 'city': 'New York', 'agge': 'Ne w York'}, [False, True, False, True]]) == [[False, True, False, True], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True, False, True], {'name': 'Alice', 'age': 25, 'city': 'New York', 'agge': 'Ne w York'}, [1, 2, 3, 5]]", "assert swap_List([False, 4, ['agge', 'aa', 'a', 'x', 'c'], 123.456, 3.14, 2, 'aJohnple', 6.5, True, ['agge', 'aa', 'a', 'x', 'c'], True]) == [True, 4, ['agge', 'aa', 'a', 'x', 'c'], 123.456, 3.14, 2, 'aJohnple', 6.5, True, ['agge', 'aa', 'a', 'x', 'c'], False]", "assert swap_List([4, 'aJohnple', 6.5, True, ['a', 'b', 'c'], 6.5]) == [6.5, 'aJohnple', 6.5, True, ['a', 'b', 'c'], 4]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], [True], 3.14]) == [3.14, 'hello', {'1': 'a', '2': 'bb'}, 3.14, [True], {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], [True], None]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 91.09602532263384, [False, True]]) == [[False, True], [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 91.09602532263384, {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List(['hello', {'1': 'a'}, 3.14, [True], {'1': 'a'}, [True], ['apple', 'banana'], {'1': 'a'}, [True], [True], [True], {'1': 'a'}]) == [{'1': 'a'}, {'1': 'a'}, 3.14, [True], {'1': 'a'}, [True], ['apple', 'banana'], {'1': 'a'}, [True], [True], [True], 'hello']", "assert swap_List([None, ['helloapple', 'apple', 'banana'], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana'], [True, False, False]]) == [[True, False, False], ['helloapple', 'apple', 'banana'], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana'], None]", "assert swap_List([123.456, {'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False], 3.14]) == [3.14, {'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False], 123.456]", "assert swap_List([None, 'hello', {'1': 'a'}, 3.14, ['apple', 'banana'], [True, False, True], 'hello']) == ['hello', 'hello', {'1': 'a'}, 3.14, ['apple', 'banana'], [True, False, True], None]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 3, 4, 5], ['cherry', 'chapplerry', 'apple', 'banana'], ['cherry', 'apple', 'banana'], 123.456, [False, False]]) == [[False, False], [1, 3, 4, 5], ['cherry', 'chapplerry', 'apple', 'banana'], ['cherry', 'apple', 'banana'], 123.456, {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List(['apple', 6.5]) == [6.5, 'apple']", "assert swap_List([None, 'hello', {'1': 'a'}, 3.14, [True, False, True], 'hello']) == ['hello', 'hello', {'1': 'a'}, 3.14, [True, False, True], None]", "assert swap_List([False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], 'aJohnple']) == ['aJohnple', 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], False]", "assert swap_List([4, 'apple', 6.5, 'nameapple', True, ['a', 'b', 'c'], ['a', 'b', 'c']]) == [['a', 'b', 'c'], 'apple', 6.5, 'nameapple', True, ['a', 'b', 'c'], 4]", "assert swap_List(['hello', {'1': 'a', '2': 'bb'}, 3.14, [], [], {'1': 'a', '2': 'bb'}, [], ['apple', 'banana'], [], [], {'1': 'a', '2': 'bb'}]) == [{'1': 'a', '2': 'bb'}, {'1': 'a', '2': 'bb'}, 3.14, [], [], {'1': 'a', '2': 'bb'}, [], ['apple', 'banana'], [], [], 'hello']", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True], [False, True, True]]) == [[False, True, True], ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True], [False, True], 123.456]) == [123.456, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, [False, True], [False, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([['a', 'cherry', 'apple', 'banana'], {'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True]]) == [[False, True, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True, True], ['a', 'cherry', 'apple', 'banana']]", "assert swap_List([False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], 'aJohnple', 'aJohnple']) == ['aJohnple', 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], 'aJohnple', False]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], 90.44632212554903, ['cherry', 'apple', 'banana'], 91.09602532263384, [False, True]]) == [[False, True], [1, 2, 3, 4, 5], 90.44632212554903, ['cherry', 'apple', 'banana'], 91.09602532263384, {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, {'1': 'a', '2': 'b'}, 3.14, [True, False], None, ['apple', 'banana']]) == [['apple', 'banana'], {'1': 'a', '2': 'b'}, 3.14, [True, False], None, None]", "assert swap_List([4, 'apple', 6.5, True, ['a', 'b', 'c', 'c'], True, 6.5, ['a', 'b', 'c', 'c'], ['a', 'b', 'c', 'c']]) == [['a', 'b', 'c', 'c'], 'apple', 6.5, True, ['a', 'b', 'c', 'c'], True, 6.5, ['a', 'b', 'c', 'c'], 4]", "assert swap_List([None, 'hello', {'1': 'a'}, 3.14, [True, False, True], 'hello', None]) == [None, 'hello', {'1': 'a'}, 3.14, [True, False, True], 'hello', None]", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, True], ['apple', 'banana', 'banana'], [True, False, True], 'hello']) == ['hello', 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, True], ['apple', 'banana', 'banana'], [True, False, True], None]", "assert swap_List(['hello', {'1': 'a'}, 3.14, [True, False, True], 'hello', None]) == [None, {'1': 'a'}, 3.14, [True, False, True], 'hello', 'hello']", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 99.02323667903467, 123.456, [False, True], ['apple'], [False, True]]) == [[False, True], ['cherry', 'apple', 'banana'], 99.02323667903467, 123.456, [False, True], ['apple'], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, 'hello', 'hebllo', {'1': 'a', '2': 'b'}, ['apple', 'bnanana'], [True, False], 'hello']) == ['hello', 'hello', 'hebllo', {'1': 'a', '2': 'b'}, ['apple', 'bnanana'], [True, False], None]", "assert swap_List([123.456, {'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], 123.456, [False], 3.14]) == [3.14, {'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], 123.456, [False], 123.456]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 124.87654535111933, [False, True], [False, True], 123.456]) == [123.456, [1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 124.87654535111933, [False, True], [False, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([None, 'hellho', {'1': 'a', '2': 'aa'}, 'hello', {'1': 'a', '2': 'aa'}, 3.14, [True, False], 'hello']) == ['hello', 'hellho', {'1': 'a', '2': 'aa'}, 'hello', {'1': 'a', '2': 'aa'}, 3.14, [True, False], None]", "assert swap_List([None, ['helloapple', 'apple', 'banana'], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana']]) == [['apple', 'banana'], ['helloapple', 'apple', 'banana'], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], None]", "assert swap_List(['aJohnple', 6.5, True, False, ['a', 'b', 'c']]) == [['a', 'b', 'c'], 6.5, True, False, 'aJohnple']", "assert swap_List([None, 'hello', {'1': 'a', '2': 'bb'}, 3.14, {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], ['apple', 'banana']]) == [['apple', 'banana'], 'hello', {'1': 'a', '2': 'bb'}, 3.14, {'1': 'a', '2': 'bb'}, [True], ['apple', 'banana'], [True], None]", "assert swap_List([4, 'apple', 6.5, 6.5, 8.707176323319572, True, ['a', 'b', 'c'], 'apple', 6.5]) == [6.5, 'apple', 6.5, 6.5, 8.707176323319572, True, ['a', 'b', 'c'], 'apple', 4]", "assert swap_List(['hell', 'hello', {'1': 'a'}, 3.14, [True, False, True], 'hello', None]) == [None, 'hello', {'1': 'a'}, 3.14, [True, False, True], 'hello', 'hell']", "assert swap_List(['hello', {'1': 'a'}, 3.14, [True], {'1': 'a'}, [True], ['apple', 'banana'], {'1': 'a'}, [True], [True], [True], {'1': 'a'}, 'hello']) == ['hello', {'1': 'a'}, 3.14, [True], {'1': 'a'}, [True], ['apple', 'banana'], {'1': 'a'}, [True], [True], [True], {'1': 'a'}, 'hello']", "assert swap_List([[1, 2, 3, 4], ['cherry', 'apple', 'banana'], 123.456, [False, True], ['John', 'cherry', 'banana']]) == [['John', 'cherry', 'banana'], ['cherry', 'apple', 'banana'], 123.456, [False, True], [1, 2, 3, 4]]", "assert swap_List([[1, 2, 3, 4, 5], ['cherry', 'apple', 'banana'], 123.456, 8.707176323319572, [False], ['John', 'cherry', 'banana']]) == [['John', 'cherry', 'banana'], ['cherry', 'apple', 'banana'], 123.456, 8.707176323319572, [False], [1, 2, 3, 4, 5]]", "assert swap_List(['hello', {'1': 'a'}, 6.5, 3.14, [True, True], {'1': 'a'}, [True, True], ['apple', 'banana'], [True, True], {'1': 'a'}, [True, True]]) == [[True, True], {'1': 'a'}, 6.5, 3.14, [True, True], {'1': 'a'}, [True, True], ['apple', 'banana'], [True, True], {'1': 'a'}, 'hello']", "assert swap_List([['cherry', 'apple', 'banana'], 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], ['cherry', 'banana'], 122.59910668667563]) == [122.59910668667563, 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], ['cherry', 'banana'], ['cherry', 'apple', 'banana']]", "assert swap_List([['a', 'b', 'c', 'a'], 4, False, 'w', False, 6.5, True, ['a', 'b', 'c', 'a']]) == [['a', 'b', 'c', 'a'], 4, False, 'w', False, 6.5, True, ['a', 'b', 'c', 'a']]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], 90.44632212554903, ['cherry', 'apple', 'banana'], 91.09602532263384, [False, True], ['cherry', 'apple', 'banana']]) == [['cherry', 'apple', 'banana'], [1, 2, 3, 4, 5], 90.44632212554903, ['cherry', 'apple', 'banana'], 91.09602532263384, [False, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}]", "assert swap_List([['a', 'b'], {'name': 'John', 'age': 30}, ['c', 'a', 'b'], [[1, 2, 3], [4, 5, 6]], 'hello world', 'hello world']) == ['hello world', {'name': 'John', 'age': 30}, ['c', 'a', 'b'], [[1, 2, 3], [4, 5, 6]], 'hello world', ['a', 'b']]", "assert swap_List([['cherry', 'apple', 'banana'], ['cheraay', 'cherry', 'apple', 'banana'], 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], 123.456]) == [123.456, ['cheraay', 'cherry', 'apple', 'banana'], 123.456, [False, True], ['cheraay', 'cherry', 'apple', 'banana'], [False, True], ['cherry', 'apple', 'banana']]", "assert swap_List([None, {'1': 'a', '2': 'b'}, 3.14, 124.87654535111933, [True, False, True], ['apple', 'banana']]) == [['apple', 'banana'], {'1': 'a', '2': 'b'}, 3.14, 124.87654535111933, [True, False, True], None]", "assert swap_List([['cherry', 'apple', 'banana'], 123.456, [True], [True], ['cheraay', 'cherry', 'apple', 'banana'], [True], 123.456, [True]]) == [[True], 123.456, [True], [True], ['cheraay', 'cherry', 'apple', 'banana'], [True], 123.456, ['cherry', 'apple', 'banana']]", "assert swap_List([4, False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], False]) == [False, False, 'aJohnple', False, 6.5, True, ['a', 'b', 'c'], 4]", "assert swap_List([4, ['bbc', 'a', 'b', 'c', 'hell', 'c'], 'apple', 6.5, ['bbc', 'a', 'b', 'c', 'hell', 'c'], True, ['bbc', 'a', 'b', 'c', 'hell', 'c'], True, 6.5, ['bbc', 'a', 'b', 'c', 'hell', 'c'], ['bbc', 'a', 'b', 'c', 'hell', 'c']]) == [['bbc', 'a', 'b', 'c', 'hell', 'c'], ['bbc', 'a', 'b', 'c', 'hell', 'c'], 'apple', 6.5, ['bbc', 'a', 'b', 'c', 'hell', 'c'], True, ['bbc', 'a', 'b', 'c', 'hell', 'c'], True, 6.5, ['bbc', 'a', 'b', 'c', 'hell', 'c'], 4]", "assert swap_List(['hello', {'1': 'a'}, 3.14, [True], {'1': 'a'}, [True], ['apple', 'banana'], {'1': 'a'}, [True], [True], [True], {'1': 'a'}, [True]]) == [[True], {'1': 'a'}, 3.14, [True], {'1': 'a'}, [True], ['apple', 'banana'], {'1': 'a'}, [True], [True], [True], {'1': 'a'}, 'hello']", "assert swap_List([None, 'world', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana'], [True, False, False], None]) == [None, 'world', {'1': 'a', '2': 'b'}, 3.14, [True, False, False], ['apple', 'banana'], [True, False, False], None]", "assert swap_List(['aJohnple', 6.5, True, 122.59910668667563, ['a', 'b', 'c']]) == [['a', 'b', 'c'], 6.5, True, 122.59910668667563, 'aJohnple']", "assert swap_List([4, 'apple', False, 6.5, True, ['a', 'b', 'c'], ['a', 'b', 'c']]) == [['a', 'b', 'c'], 'apple', False, 6.5, True, ['a', 'b', 'c'], 4]", "assert swap_List([['a', 'cherry', 'apple', 'banana'], {'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True], [False, True, True]]) == [[False, True, True], {'name': 'Alice', 'age': 25, 'city': 'New York'}, ['cherry', 'apple', 'banana'], 123.456, [False, True, True], [False, True, True], ['a', 'cherry', 'apple', 'banana']]", "assert swap_List(['aJohnple', 6.5, True, ['a', 'b'], 'aJohnple']) == ['aJohnple', 6.5, True, ['a', 'b'], 'aJohnple']", "assert swap_List([None, 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana', 'banana'], [True, False], 'hello', ['apple', 'banana', 'banana']]) == [['apple', 'banana', 'banana'], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana', 'banana'], [True, False], 'hello', None]", "assert swap_List([None, ['helloapple', 'apple', 'banana'], [True, False], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], [True, False]]) == [[True, False], ['helloapple', 'apple', 'banana'], [True, False], 'hello', {'1': 'a', '2': 'b'}, 3.14, [True, False], ['apple', 'banana'], None]", "assert swap_List([{'name': 'Alice', 'age': 25, 'city': 'New York'}, [1, 2, 3, 4, 5], 90.44632212554903, ['cherry', 'apple', 'banana'], 91.09602532263384, [False, True], ['cherry', 'apple', 'banana'], [1, 2, 3, 4, 5]]) == [[1, 2, 3, 4, 5], [1, 2, 3, 4, 5], 90.44632212554903, ['cherry', 'apple', 'banana'], 91.09602532263384, [False, True], ['cherry', 'apple', 'banana'], {'name': 'Alice', 'age': 25, 'city': 'New York'}]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of the product of consecutive binomial co-efficients.\nassert sum_Of_product(3) == 15\nYour code should pass the test:\nassert sum_Of_product(3) == 15", "test_list": [ "assert sum_Of_product(3) == 15", "assert sum_Of_product(4) == 56", "assert sum_Of_product(1) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove leading zeroes from an ip address.\nassert removezero_ip(\"216.08.094.196\")==('216.8.94.196')\nYour code should pass the test:\nassert removezero_ip(\"216.08.094.196\")==('216.8.94.196')", "test_list": [ "assert removezero_ip(\"216.08.094.196\")==('216.8.94.196')", "assert removezero_ip(\"12.01.024\")==('12.1.24')", "assert removezero_ip(\"216.08.094.0196\")==('216.8.94.196')" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the difference of the first even and first odd number of a given list.\nassert diff_even_odd([1,3,5,7,4,1,6,8])==3\nYour code should pass the test:\nassert diff_even_odd([1,3,5,7,4,1,6,8])==3", "test_list": [ "assert diff_even_odd([1,3,5,7,4,1,6,8])==3", "assert diff_even_odd([1,2,3,4,5,6,7,8,9,10])==1", "assert diff_even_odd([1,5,7,9,10])==9", "assert diff_even_odd([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12]) == 1", "assert diff_even_odd([7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8]) == 1", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 18, 20]) == 1", "assert diff_even_odd([2, 5, 3, 6, 1, 4, 9, 8, 7]) == -3", "assert diff_even_odd([13, 12, 15, 11, 10, 19, 16, 14, 18, 17]) == -1", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 32, 31, 29, 30, 28]) == -1", "assert diff_even_odd([7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8]) == 1", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 32, 31, 29, 30, 28, 25]) == -1", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12]) == 5", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 7, 8, 8, 10, 11, 12]) == 5", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 8, 31, 10, 11, 12, 11]) == 27", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 8, 10, 11, 12, 11, 4]) == 27", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 32, 29, 30, 28, 25]) == -1", "assert diff_even_odd([30, 1, 3, 4, 5, 6, 7, 31, 10, 11, 12, 11]) == 29", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 18, 20, 16]) == 1", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 11]) == 27", "assert diff_even_odd([13, 12, 15, 11, 10, 19, 16, 18, 17]) == -1", "assert diff_even_odd([1, 3, 7, 5, 2, 4, 6, 8, 7, 9, 11, 19, 13, 15, 16, 18, 20, 16, 19]) == 1", "assert diff_even_odd([13, 12, 12, 15, 13, 10, 19, 16, 14, 18, 17, 13]) == -1", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 18, 20, 16, 6]) == 1", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30]) == 27", "assert diff_even_odd([28, 22, 23, 27, 24, 26, 25, 32, 31, 29, 30, 28, 25]) == 5", "assert diff_even_odd([13, 12, 15, 11, 19, 16, 18, 18, 17]) == -1", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 4, 31, 10, 10, 11, 12, 11, 30]) == 27", "assert diff_even_odd([20, 7, 7, 7, 7, 7, 26, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8]) == 13", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 32, 31, 29, 30, 27, 25]) == -1", "assert diff_even_odd([1, 3, 5, 2, 4, 8, 6, 8, 7, 9, 11, 13, 15, 16, 18, 20]) == 1", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 2, 20]) == 1", "assert diff_even_odd([1, 3, 5, 2, 4, 8, 6, 8, 7, 6, 9, 11, 13, 15, 16, 18, 20]) == 1", "assert diff_even_odd([30, 2, 3, 15, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30]) == 27", "assert diff_even_odd([1, 2, 3, 4, 5, 6, 28, 8, 9, 10, 11, 12]) == 1", "assert diff_even_odd([2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30, 7]) == -1", "assert diff_even_odd([2, 3, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30, 7]) == -1", "assert diff_even_odd([13, 12, 12, 15, 13, 10, 19, 16, 14, 18, 17]) == -1", "assert diff_even_odd([28, 22, 23, 27, 24, 26, 25, 31, 29, 30, 28, 27, 25]) == 5", "assert diff_even_odd([23, 27, 24, 26, 25, 32, 31, 29, 30, 27, 25]) == 1", "assert diff_even_odd([12, 30, 1, 3, 4, 5, 6, 7, 31, 10, 11, 16, 12, 11]) == 11", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 32, 31, 29, 30, 28, 25, 25]) == -1", "assert diff_even_odd([30, 2, 3, 5, 6, 7, 4, 31, 10, 11, 12, 11]) == 27", "assert diff_even_odd([22, 23, 24, 26, 25, 32, 31, 29, 33, 30, 28, 25, 25]) == -1", "assert diff_even_odd([4, 6, 2, 3, 4, 5, 7, 8, 8, 10, 11, 12]) == 1", "assert diff_even_odd([1, 27, 3, 7, 5, 2, 4, 6, 8, 8, 9, 11, 19, 13, 15, 17, 16, 18, 20, 16, 19]) == 1", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 6, 18, 9, 11, 13, 15, 16, 2, 20, 16]) == 1", "assert diff_even_odd([1, 3, 7, 5, 2, 4, 6, 8, 7, 9, 11, 19, 13, 15, 16, 18, 20, 16, 19, 2]) == 1", "assert diff_even_odd([1, 2, 3, 4, 5, 28, 8, 9, 10, 11, 12]) == 1", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 7, 8, 8, 10, 11, 12, 8, 1]) == 5", "assert diff_even_odd([7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8]) == 1", "assert diff_even_odd([7, 7, 7, 7, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7]) == 1", "assert diff_even_odd([1, 5, 2, 3, 4, 5, 28, 8, 9, 10, 11, 12, 28]) == 1", "assert diff_even_odd([30, 8, 2, 3, 5, 6, 7, 4, 31, 10, 11, 12, 11]) == 27", "assert diff_even_odd([1, 6, 2, 3, 5, 6, 7, 8, 9, 10, 11, 12]) == 5", "assert diff_even_odd([14, 22, 23, 24, 26, 25, 32, 31, 29, 33, 30, 28, 25, 25]) == -9", "assert diff_even_odd([13, 31, 12, 15, 13, 10, 19, 16, 14, 18, 17, 13]) == -1", "assert diff_even_odd([22, 23, 24, 25, 32, 31, 29, 33, 30, 28, 25, 15]) == -1", "assert diff_even_odd([1, 5, 2, 3, 4, 5, 28, 8, 9, 10, 11, 12, 28, 5]) == 1", "assert diff_even_odd([30, 2, 9, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30]) == 21", "assert diff_even_odd([1, 3, 5, 2, 4, 8, 6, 8, 7, 9, 32, 11, 13, 15, 16, 18, 20]) == 1", "assert diff_even_odd([20, 7, 7, 7, 7, 7, 26, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7, 8]) == 13", "assert diff_even_odd([13, 12, 13, 8, 13, 10, 19, 16, 14, 18, 17, 13]) == -1", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 8, 31, 3, 10, 11, 12, 12]) == 27", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 6, 7, 9, 10, 11, 12, 12]) == 5", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 11]) == 5", "assert diff_even_odd([1, 5, 2, 3, 4, 5, 28, 8, 9, 10, 25, 11, 12, 28]) == 1", "assert diff_even_odd([4, 6, 2, 3, 10, 4, 5, 7, 8, 8, 10, 11, 12]) == 1", "assert diff_even_odd([1, 2, 4, 5, 6, 7, 8, 9, 10, 11, 12, 6, 10]) == 1", "assert diff_even_odd([23, 27, 24, 9, 25, 32, 31, 29, 30, 27, 25]) == 1", "assert diff_even_odd([20, 7, 7, 7, 7, 26, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7]) == 13", "assert diff_even_odd([28, 22, 23, 27, 24, 26, 25, 31, 29, 30, 28, 27, 25, 22]) == 5", "assert diff_even_odd([20, 7, 7, 7, 7, 26, 7, 30, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7, 8, 8]) == 13", "assert diff_even_odd([4, 2, 3, 4, 5, 7, 8, 8, 10, 11, 12]) == 1", "assert diff_even_odd([20, 7, 24, 7, 7, 26, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7]) == 13", "assert diff_even_odd([23, 30, 2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30]) == 7", "assert diff_even_odd([20, 7, 24, 7, 7, 26, 7, 7, 7, 7, 8, 8, 8, 8, 8, 7, 8, 8, 8, 8, 8, 7]) == 13", "assert diff_even_odd([2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 12, 9, 7, 4]) == -1", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 6, 7, 9, 10, 11, 12, 12, 7]) == 5", "assert diff_even_odd([30, 3, 4, 5, 6, 7, 8, 31, 10, 11, 12, 11]) == 27", "assert diff_even_odd([13, 25, 12, 15, 11, 19, 16, 18, 18, 17]) == -1", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 32, 31, 29, 30]) == -1", "assert diff_even_odd([23, 27, 24, 9, 30, 25, 32, 31, 29, 30, 27, 25]) == 1", "assert diff_even_odd([20, 7, 7, 7, 7, 7, 26, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7, 8, 7, 7]) == 13", "assert diff_even_odd([13, 31, 12, 15, 13, 10, 19, 16, 18, 17, 13]) == -1", "assert diff_even_odd([7, 7, 8, 7, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7]) == 1", "assert diff_even_odd([17, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 18, 20, 11, 4]) == -15", "assert diff_even_odd([23, 27, 24, 9, 25, 17, 32, 31, 29, 30, 27, 25]) == 1", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 4]) == 27", "assert diff_even_odd([2, 3, 4, 6, 7, 4, 31, 10, 11, 12, 12, 9, 7, 4, 7]) == -1", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 18, 20, 3]) == 1", "assert diff_even_odd([22, 23, 27, 24, 26, 25, 31, 29, 30, 28, 27, 25]) == -1", "assert diff_even_odd([13, 12, 12, 14, 13, 10, 19, 16, 14, 18, 17]) == -1", "assert diff_even_odd([1, 6, 2, 3, 4, 5, 6, 7, 9, 10, 11, 12, 7]) == 5", "assert diff_even_odd([30, 3, 4, 5, 6, 7, 8, 31, 10, 11, 12, 11, 4]) == 27", "assert diff_even_odd([30, 3, 4, 5, 6, 7, 8, 10, 11, 12, 11]) == 27", "assert diff_even_odd([1, 3, 5, 2, 4, 6, 8, 7, 9, 11, 13, 15, 16, 4, 12, 2, 20, 13, 2]) == 1", "assert diff_even_odd([23, 24, 9, 25, 32, 31, 29, 30, 27, 23]) == 1", "assert diff_even_odd([20, 7, 24, 7, 7, 26, 7, 7, 7, 7, 9, 8, 8, 8, 8, 7, 8, 8, 8, 8, 7]) == 13", "assert diff_even_odd([1, 17, 2, 3, 5, 6, 7, 8, 9, 10, 11, 12]) == 1", "assert diff_even_odd([1, 6, 2, 3, 4, 6, 7, 8, 9, 10, 11, 11]) == 5", "assert diff_even_odd([30, 2, 3, 4, 5, 6, 7, 8, 10, 11, 33, 11, 4]) == 27", "assert diff_even_odd([7, 7, 8, 7, 7, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 8, 7, 8]) == 1", "assert diff_even_odd([2, 3, 5, 6, 7, 4, 31, 10, 11, 12, 11, 30, 7, 7]) == -1", "assert diff_even_odd([1, 8, 2, 3, 4, 5, 6, 7, 9, 10, 11, 12, 7]) == 7", "assert diff_even_odd([30, 1, 3, 4, 5, 6, 7, 31, 10, 11, 16, 12, 11]) == 29", "assert diff_even_odd([2, 3, 4, 5, 6, 7, 4, 31, 10, 11, 12, 12, 9, 7, 4, 9]) == -1", "assert diff_even_odd([30, 3, 4, 5, 6, 7, 8, 10, 11, 12, 11, 12]) == 27", "assert diff_even_odd([31, 30, 1, 3, 4, 5, 6, 7, 31, 10, 11, 16, 12, 11]) == -1", "assert diff_even_odd([30, 8, 2, 3, 5, 7, 7, 4, 31, 10, 11, 12, 11]) == 27" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the size in bytes of the given tuple.\nassert tuple_size((\"A\", 1, \"B\", 2, \"C\", 3) ) == sys.getsizeof((\"A\", 1, \"B\", 2, \"C\", 3))\nYour code should pass the test:\nassert tuple_size((\"A\", 1, \"B\", 2, \"C\", 3) ) == sys.getsizeof((\"A\", 1, \"B\", 2, \"C\", 3))", "test_list": [ "assert tuple_size((\"A\", 1, \"B\", 2, \"C\", 3) ) == sys.getsizeof((\"A\", 1, \"B\", 2, \"C\", 3))", "assert tuple_size((1, \"Raju\", 2, \"Nikhil\", 3, \"Deepanshu\") ) == sys.getsizeof((1, \"Raju\", 2, \"Nikhil\", 3, \"Deepanshu\"))", "assert tuple_size(((1, \"Lion\"), ( 2, \"Tiger\"), (3, \"Fox\"), (4, \"Wolf\")) ) == sys.getsizeof(((1, \"Lion\"), ( 2, \"Tiger\"), (3, \"Fox\"), (4, \"Wolf\")))" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find kth element from the given two sorted arrays.\nassert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6\nYour code should pass the test:\nassert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6", "test_list": [ "assert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6", "assert find_kth([100, 112, 256, 349, 770], [72, 86, 113, 119, 265, 445, 892], 7) == 256", "assert find_kth([3, 4, 7, 8, 10], [2, 5, 9, 11], 6) == 8", "assert find_kth([1, 2, 3], [], 1) == 1", "assert find_kth([], [1, 2, 3], 2) == 2", "assert find_kth([], [1], 1) == 1", "assert find_kth([1], [], 1) == 1", "assert find_kth([1, 2, 3], [], 3) == 3", "assert find_kth([1, 1, 1], [], 2) == 1", "assert find_kth([1, 2, 3], [True, True, False], 3) == True", "assert find_kth([1, 2, 3, 1], [], 3) == 2", "assert find_kth([False, -64, 27, -83, 3, -39], [1], 1) == -83", "assert find_kth([False, -64, 27, -83, 3, -39], [1, 1], 1) == -83", "assert find_kth([96, False, 3, 50], [1, 2, 3, 3], 2) == 1", "assert find_kth([1, 2, 3, 2], [], 3) == 2", "assert find_kth([True, True, False, True], [True, True, False, True], 3) == True", "assert find_kth([False, -64, 27, 3, -39], [False, -64, 27, 3, -39], 2) == -64", "assert find_kth([1, 2, 3, 1], [], 2) == 1", "assert find_kth([1, 50], [1, 50], 1) == 1", "assert find_kth([1, 1], [], 2) == 1", "assert find_kth([False, True, False, True], [False, True, False, True], 3) == False", "assert find_kth([1, 2, 3, 2, 3], [], 3) == 2", "assert find_kth([1, 2, 3], [-39.319443006981004, -57.39432084514247, -76.34186082848302, -70.39547602882918, 5.979370667934944, -70.11319095554586, -77.67992498473315, -35.264606501444845, 53.4388130843717, -2.8800159179744185], 3) == -70.39547602882918", "assert find_kth([1, 2], [1, 2], 2) == 1", "assert find_kth([1, 2, 3, 1], [6.592840281996914, False], 3) == 1", "assert find_kth([False, 97, 96, 27, -83, 3, -39], [1, 1], 1) == -83", "assert find_kth([False, -64, 27, -83, 3], [False, -64, 27, -83, 3], 1) == -83", "assert find_kth([False, 28, -64, 27, 29, -83, 3], [False, 28, -64, 27, 29, -83, 3], 1) == -83", "assert find_kth([1, 2, 3, 2], [1, 2, 3, 2], 2) == 1", "assert find_kth([2], [2], 2) == 2", "assert find_kth([False, 4, -64, 27, -83, 3, -39], [1, 1], 1) == -83", "assert find_kth([False, 97, 96, 27, -83, 3, -39], [0, 1], 1) == -83", "assert find_kth([False, -64, 27, -83, 3, -39], [1, 1, 1], 1) == -83", "assert find_kth([1, 2, 28, 2], [], 3) == 2", "assert find_kth([1, 2, 3, 2], [1, 2, 3, 2], 4) == 2", "assert find_kth([1, 28, 2, 3, 2], [1, 28, 2, 3, 2], 2) == 1", "assert find_kth([96, False, 3], [1, 2, 3, 3], 2) == 1", "assert find_kth([False, 97, 96, 27, -83, 3, -39], [0, 1, 1], 1) == -83", "assert find_kth([False, -64, 27, -83, 3, -39], [3, 1], 1) == -83", "assert find_kth([False, 1, 1, 1], [], 2) == 1", "assert find_kth([1, 2, 29, 3, 2, 3], [], 3) == 2", "assert find_kth(['r', 'zJBCERjzbi', 'dAeIcPYLJw'], [], 2) == 'r'", "assert find_kth([1, 28, 4, 3, 2], [1, 28, 4, 3, 2], 1) == 1", "assert find_kth([True, True, False, True, True], [True, True, False, True, True], 3) == True", "assert find_kth([True, True, False], [True, True, False], 3) == True", "assert find_kth([1, 1, 1], [False, False, False, True, False, True], 3) == False", "assert find_kth([False, True, True, True], [False, True, True, True], 3) == True", "assert find_kth([False, -64, 27, -83, 3, -39], [2], 1) == -83", "assert find_kth([False, -64, 27, -83, 3, False], [False, -64, 27, -83, 3, False], 1) == -83", "assert find_kth([1, 28, 2, 3, 3], [1, 28, 2, 3, 3], 2) == 1", "assert find_kth([1, 2, 3], [True, False], 3) == True", "assert find_kth([96, -39, 3], [1, 2, 3, 3], 2) == 1", "assert find_kth([1, 1], [1, 1], 1) == 1", "assert find_kth([1, 2, 4, 3, 3], [96, -39, 3], 2) == 1", "assert find_kth([False, -64, 27, -83, 3, -39], [1, 1, 1], 2) == -64", "assert find_kth([96, False, 3, 50, False], [1, 2, 3, 3], 2) == False", "assert find_kth([1, -39, 2, 3], [True, False, True], 3) == 1", "assert find_kth([-39, 2, 29, 4, -18, -31, 28, 3, -68, 43], [1, 2, 3], 2) == -39", "assert find_kth([False, 97, 96, 27, -83, 3, -39], [0, -31, 1], 1) == -83", "assert find_kth(['r', 'zJBCERjzbi', 'dAeIcPYLrJw'], [], 3) == 'zJBCERjzbi'", "assert find_kth([1, 1, 1, 1], [1, 1, 1, 1], 1) == 1", "assert find_kth([False, 97, 96, 27, -83, 3, -39], [0, 1], 2) == -39", "assert find_kth([-64, 3, -83, 3, -39, 3], [3, 1], 1) == -83", "assert find_kth([2, 3], [2, 3], 1) == 2", "assert find_kth([1, 2, 3], [-39.319443006981004, -57.39432084514247, -76.34186082848302, -70.39547602882918, 5.979370667934944, -70.11319095554586, -77.67992498473315, -35.264606501444845, 53.4388130843717, -2.8800159179744185], 4) == -70.11319095554586", "assert find_kth([4, False, -64, 27, -83, 3, -39, -39, 3], [4, False, -64, 27, -83, 3, -39, -39, 3], 1) == -83", "assert find_kth([False, 28, -64, 27, 29, -83, -64, 3, 29], [False, 28, -64, 27, 29, -83, -64, 3, 29], 1) == -83", "assert find_kth([], [25.76844865917127, 5.979370667934944, 34.20953059107049, 73.57245412264768, 19.02562370256588, -57.39432084514247, 5.979370667934944, -39.319443006981004], 2) == -39.319443006981004", "assert find_kth([False, False, False], [False, False, False], 3) == False", "assert find_kth([1, 1, 2, 3, 2], [1, 1, 2, 3, 2], 4) == 1", "assert find_kth([True, False, True, False, True, True], [True, False, True, False, True, True], 3) == False", "assert find_kth([1, 28, 2, 3, 3, 2], [1, 28, 2, 3, 3, 2], 2) == 1", "assert find_kth([1, 2, 3, 2, 2], [1, 2, 3, 2, 2], 2) == 1", "assert find_kth([False, 96, 96, 27, -83, 3, -39], [False, 96, 96, 27, -83, 3, -39], 1) == -83", "assert find_kth(['r', 'r', 'zJBCERjzbi', 'dAeIcPYLJw'], [], 2) == 'r'", "assert find_kth([False, 27, -83, 3, -39], [1, 1], 1) == -83", "assert find_kth([1, 2, 4, 3, 3, 3], [96, -39, 3], 2) == 1", "assert find_kth([1, 1, 1, 1], [1, 1, 1, 1], 3) == 1", "assert find_kth([1, 2, 2, 1], [6.592840281996914, False], 3) == 1", "assert find_kth([False, 27, -83, 3, -39], [1, 2, 1], 1) == -83", "assert find_kth([-64, 3, -83, 3, -39, 3], [3, -39, 1], 1) == -83", "assert find_kth([False, False, True], [False, False, True], 3) == False", "assert find_kth([False, -64, 27, -83, 3, -38], [1, 1], 1) == -83", "assert find_kth([1, 2, 3], [True], 3) == 2", "assert find_kth([False, 27, -83, 3, -39], [1, 1, 1], 1) == -83", "assert find_kth([1, 2, 3, 43], [], 2) == 2", "assert find_kth([False, -64, False, 27, -83, 3, -83], [False, -64, False, 27, -83, 3, -83], 1) == -83", "assert find_kth([-64, 3, -83, 3, -39, 3], [4], 1) == -83", "assert find_kth([3, 1, 3], [3, 1, 3], 1) == 1", "assert find_kth([-39, 2, 29, -31, 4, -18, -31, 28, -68, 43], [-39, 2, 29, -31, 4, -18, -31, 28, -68, 43], 2) == -68", "assert find_kth([1, 2, 3, 3, 3, 3], [96, -31, 3], 2) == 1", "assert find_kth([3, False, 27, -83, 3, 3, -39], [3, False, 27, -83, 3, 3, -39], 1) == -83", "assert find_kth([4, 1, 2, 3, 1], [6.592840281996914, False], 4) == 2", "assert find_kth([False, -64, 27, -83, 3, -39], [3], 1) == -83", "assert find_kth([1, 3, 2, 3, 3, 2], [1, 3, 2, 3, 3, 2], 2) == 1", "assert find_kth([2, 1], [2, 1], 1) == 1", "assert find_kth([1, 2, 3, 2, 2], [1, 2, 3, 2, 2], 1) == 1", "assert find_kth([-68, 1, 1, 1, 1], [-68, 1, 1, 1, 1], 1) == -68", "assert find_kth([False, False], [False, False], 3) == False", "assert find_kth([96, False, 3, 50], [1, 43, 2, 3, 3], 2) == 1", "assert find_kth([1, 2, 1], [], 3) == 2", "assert find_kth([50, 2, 3, 2, 2], [50, 2, 3, 2, 2], 1) == 2", "assert find_kth([False, True, True, False], [False, True, True, False], 4) == False", "assert find_kth([43, -68, 1, 1, 1], [43, -68, 1, 1, 1], 1) == -68", "assert find_kth([False], [False], 1) == False", "assert find_kth([1, 2, -83, 3], [-39.319443006981004, -57.39432084514247, -35.264606501444845, -76.34186082848302, -70.39547602882918, 5.979370667934944, -70.11319095554586, -77.67992498473315, -35.264606501444845, 53.4388130843717, -2.8800159179744185], 5) == -70.11319095554586", "assert find_kth([2, 1, 1], [2, 1, 1], 1) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given number is armstrong or not.\nassert armstrong_number(153)==True\nYour code should pass the test:\nassert armstrong_number(153)==True", "test_list": [ "assert armstrong_number(153)==True", "assert armstrong_number(259)==False", "assert armstrong_number(4458)==False", "assert armstrong_number(12345678901234567890) == False", "assert armstrong_number(12345678901234567889) == False", "assert armstrong_number(12345678901234567891) == False", "assert armstrong_number(12345678901234567892) == False", "assert armstrong_number(12345678901234567888) == False", "assert armstrong_number(12345678901234567893) == False", "assert armstrong_number(12345678901234567887) == False", "assert armstrong_number(12345678901234567886) == False", "assert armstrong_number(12345678901234567894) == False", "assert armstrong_number(12345678901234567885) == False", "assert armstrong_number(3) == True", "assert armstrong_number(12345678901234567895) == False", "assert armstrong_number(72) == False", "assert armstrong_number(71) == False", "assert armstrong_number(2) == True", "assert armstrong_number(1) == True", "assert armstrong_number(12345678901234567896) == False", "assert armstrong_number(73) == False", "assert armstrong_number(12345678901234567884) == False", "assert armstrong_number(4) == True", "assert armstrong_number(74) == False", "assert armstrong_number(70) == False", "assert armstrong_number(68) == False", "assert armstrong_number(12345678901234567883) == False", "assert armstrong_number(21) == False", "assert armstrong_number(22) == False", "assert armstrong_number(12345678901234567882) == False", "assert armstrong_number(75) == False", "assert armstrong_number(67) == False", "assert armstrong_number(20) == False", "assert armstrong_number(12345678901234567881) == False", "assert armstrong_number(12345678901234567897) == False", "assert armstrong_number(44) == False", "assert armstrong_number(69) == False", "assert armstrong_number(12345678901234567880) == False", "assert armstrong_number(12345678901234567879) == False", "assert armstrong_number(64) == False", "assert armstrong_number(76) == False", "assert armstrong_number(12345678901234567878) == False", "assert armstrong_number(12345678901234567898) == False", "assert armstrong_number(66) == False", "assert armstrong_number(5) == True", "assert armstrong_number(12345678901234567899) == False", "assert armstrong_number(19) == False", "assert armstrong_number(65) == False", "assert armstrong_number(12345678901234567901) == False", "assert armstrong_number(45) == False", "assert armstrong_number(43) == False", "assert armstrong_number(83) == False", "assert armstrong_number(63) == False", "assert armstrong_number(42) == False", "assert armstrong_number(18) == False", "assert armstrong_number(23) == False", "assert armstrong_number(41) == False", "assert armstrong_number(12345678901234567900) == False", "assert armstrong_number(12345678901234567902) == False", "assert armstrong_number(62) == False", "assert armstrong_number(53) == False", "assert armstrong_number(17) == False", "assert armstrong_number(82) == False", "assert armstrong_number(84) == False", "assert armstrong_number(12345678901234567905) == False", "assert armstrong_number(52) == False", "assert armstrong_number(51) == False", "assert armstrong_number(46) == False", "assert armstrong_number(24) == False", "assert armstrong_number(50) == False", "assert armstrong_number(16) == False", "assert armstrong_number(6) == True", "assert armstrong_number(61) == False", "assert armstrong_number(12345678901234567903) == False", "assert armstrong_number(49) == False", "assert armstrong_number(85) == False", "assert armstrong_number(86) == False", "assert armstrong_number(7) == True", "assert armstrong_number(25) == False", "assert armstrong_number(87) == False", "assert armstrong_number(60) == False", "assert armstrong_number(54) == False", "assert armstrong_number(40) == False", "assert armstrong_number(47) == False", "assert armstrong_number(12345678901234567906) == False", "assert armstrong_number(8) == True", "assert armstrong_number(48) == False", "assert armstrong_number(89) == False", "assert armstrong_number(26) == False", "assert armstrong_number(9) == True", "assert armstrong_number(12345678901234567907) == False", "assert armstrong_number(77) == False", "assert armstrong_number(59) == False", "assert armstrong_number(55) == False", "assert armstrong_number(10) == False", "assert armstrong_number(78) == False", "assert armstrong_number(15) == False", "assert armstrong_number(88) == False", "assert armstrong_number(90) == False", "assert armstrong_number(12345678901234567904) == False", "assert armstrong_number(14) == False", "assert armstrong_number(56) == False", "assert armstrong_number(12345678901234567908) == False", "assert armstrong_number(11) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find sum and average of first n natural numbers.\nassert sum_average(10)==(55, 5.5)\nYour code should pass the test:\nassert sum_average(10)==(55, 5.5)", "test_list": [ "assert sum_average(10)==(55, 5.5)", "assert sum_average(15)==(120, 8.0)", "assert sum_average(20)==(210, 10.5)", "assert sum_average(1000000) == (500000500000, 500000.5)", "assert sum_average(100000000) == (5000000050000000, 50000000.5)", "assert sum_average(1000001) == (500001500001, 500001.0)", "assert sum_average(53) == (1431, 27.0)", "assert sum_average(54) == (1485, 27.5)", "assert sum_average(True) == (1, 1.0)", "assert sum_average(99999999) == (4999999950000000, 50000000.0)", "assert sum_average(999999) == (499999500000, 500000.0)", "assert sum_average(52) == (1378, 26.5)", "assert sum_average(100000001) == (5000000150000001, 50000001.0)", "assert sum_average(55) == (1540, 28.0)", "assert sum_average(999998) == (499998500001, 499999.5)", "assert sum_average(1000002) == (500002500003, 500001.5)", "assert sum_average(100000002) == (5000000250000003, 50000001.5)", "assert sum_average(1000003) == (500003500006, 500002.0)", "assert sum_average(100000003) == (5000000350000006, 50000002.0)", "assert sum_average(100000004) == (5000000450000010, 50000002.5)", "assert sum_average(56) == (1596, 28.5)", "assert sum_average(99999998) == (4999999850000001, 49999999.5)", "assert sum_average(100000005) == (5000000550000015, 50000003.0)", "assert sum_average(100000006) == (5000000650000021, 50000003.5)", "assert sum_average(99999997) == (4999999750000003, 49999999.0)", "assert sum_average(57) == (1653, 29.0)", "assert sum_average(99999996) == (4999999650000006, 49999998.5)", "assert sum_average(29) == (435, 15.0)", "assert sum_average(28) == (406, 14.5)", "assert sum_average(58) == (1711, 29.5)", "assert sum_average(999996) == (499996500006, 499998.5)", "assert sum_average(999997) == (499997500003, 499999.0)", "assert sum_average(59) == (1770, 30.0)", "assert sum_average(27) == (378, 14.0)", "assert sum_average(51) == (1326, 26.0)", "assert sum_average(99999995) == (4999999550000010, 49999998.0)", "assert sum_average(60) == (1830, 30.5)", "assert sum_average(99999994) == (4999999450000015, 49999997.5)", "assert sum_average(999995) == (499995500010, 499998.0)", "assert sum_average(50) == (1275, 25.5)", "assert sum_average(61) == (1891, 31.0)", "assert sum_average(999994) == (499994500015, 499997.5)", "assert sum_average(99999993) == (4999999350000021, 49999997.0)", "assert sum_average(5) == (15, 3.0)", "assert sum_average(4) == (10, 2.5)", "assert sum_average(62) == (1953, 31.5)", "assert sum_average(85) == (3655, 43.0)", "assert sum_average(63) == (2016, 32.0)", "assert sum_average(64) == (2080, 32.5)", "assert sum_average(3) == (6, 2.0)", "assert sum_average(30) == (465, 15.5)", "assert sum_average(999993) == (499993500021, 499997.0)", "assert sum_average(86) == (3741, 43.5)", "assert sum_average(100000007) == (5000000750000028, 50000004.0)", "assert sum_average(2) == (3, 1.5)", "assert sum_average(83) == (3486, 42.0)", "assert sum_average(6) == (21, 3.5)", "assert sum_average(31) == (496, 16.0)", "assert sum_average(26) == (351, 13.5)", "assert sum_average(32) == (528, 16.5)", "assert sum_average(7) == (28, 4.0)", "assert sum_average(1) == (1, 1.0)", "assert sum_average(1000004) == (500004500010, 500002.5)", "assert sum_average(25) == (325, 13.0)", "assert sum_average(65) == (2145, 33.0)", "assert sum_average(66) == (2211, 33.5)", "assert sum_average(9) == (45, 5.0)", "assert sum_average(33) == (561, 17.0)", "assert sum_average(84) == (3570, 42.5)", "assert sum_average(68) == (2346, 34.5)", "assert sum_average(1000005) == (500005500015, 500003.0)", "assert sum_average(87) == (3828, 44.0)", "assert sum_average(1000006) == (500006500021, 500003.5)", "assert sum_average(99999992) == (4999999250000028, 49999996.5)", "assert sum_average(67) == (2278, 34.0)", "assert sum_average(82) == (3403, 41.5)", "assert sum_average(1000007) == (500007500028, 500004.0)", "assert sum_average(35) == (630, 18.0)", "assert sum_average(88) == (3916, 44.5)", "assert sum_average(49) == (1225, 25.0)", "assert sum_average(81) == (3321, 41.0)", "assert sum_average(93) == (4371, 47.0)", "assert sum_average(69) == (2415, 35.0)", "assert sum_average(48) == (1176, 24.5)", "assert sum_average(92) == (4278, 46.5)", "assert sum_average(34) == (595, 17.5)", "assert sum_average(80) == (3240, 40.5)", "assert sum_average(10) == (55, 5.5)", "assert sum_average(8) == (36, 4.5)", "assert sum_average(999992) == (499992500028, 499996.5)", "assert sum_average(1000008) == (500008500036, 500004.5)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the two numbers differ at one bit position only or not.\nassert differ_At_One_Bit_Pos(13,9) == True\nYour code should pass the test:\nassert differ_At_One_Bit_Pos(13,9) == True", "test_list": [ "assert differ_At_One_Bit_Pos(13,9) == True", "assert differ_At_One_Bit_Pos(15,8) == False", "assert differ_At_One_Bit_Pos(2,4) == False", "assert differ_At_One_Bit_Pos(2, 3) == True", "assert differ_At_One_Bit_Pos(5, 1) == True", "assert differ_At_One_Bit_Pos(1, 5) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the given number is even or not.\nassert is_Even(1) == False\nYour code should pass the test:\nassert is_Even(1) == False", "test_list": [ "assert is_Even(1) == False", "assert is_Even(2) == True", "assert is_Even(3) == False", "assert is_Even(-10) == True", "assert is_Even(-283) == False", "assert is_Even(-1000) == True", "assert is_Even(1000000000) == True", "assert is_Even(-999) == False", "assert is_Even(999999999) == False", "assert is_Even(-284) == True", "assert is_Even(-9) == False", "assert is_Even(False) == True", "assert is_Even(-282) == True", "assert is_Even(True) == False", "assert is_Even(999999998) == True", "assert is_Even(999999997) == False", "assert is_Even(-281) == False", "assert is_Even(-73) == False", "assert is_Even(-279) == False", "assert is_Even(-74) == True", "assert is_Even(94) == True", "assert is_Even(-280) == True", "assert is_Even(-72) == True", "assert is_Even(-278) == True", "assert is_Even(93) == False", "assert is_Even(-276) == True", "assert is_Even(999999995) == False", "assert is_Even(-285) == False", "assert is_Even(-277) == False", "assert is_Even(95) == False", "assert is_Even(-11) == False", "assert is_Even(-75) == False", "assert is_Even(-76) == True", "assert is_Even(1000000001) == False", "assert is_Even(-286) == True", "assert is_Even(-71) == False", "assert is_Even(92) == True", "assert is_Even(91) == False", "assert is_Even(-12) == True", "assert is_Even(-8) == True", "assert is_Even(1000000002) == True", "assert is_Even(90) == True", "assert is_Even(999999994) == True", "assert is_Even(89) == False", "assert is_Even(-1001) == False", "assert is_Even(1000000003) == False", "assert is_Even(-13) == False", "assert is_Even(-14) == True", "assert is_Even(-94) == True", "assert is_Even(999999996) == True", "assert is_Even(-95) == False", "assert is_Even(-98) == True", "assert is_Even(999999993) == False", "assert is_Even(-15) == False", "assert is_Even(76) == True", "assert is_Even(74) == True", "assert is_Even(40) == True", "assert is_Even(-96) == True", "assert is_Even(-70) == True", "assert is_Even(-97) == False", "assert is_Even(75) == False", "assert is_Even(41) == False", "assert is_Even(-99) == False", "assert is_Even(-19) == False", "assert is_Even(96) == True", "assert is_Even(88) == True", "assert is_Even(73) == False", "assert is_Even(39) == False", "assert is_Even(-16) == True", "assert is_Even(59) == False", "assert is_Even(16) == True", "assert is_Even(-69) == False", "assert is_Even(-77) == False", "assert is_Even(-43) == False", "assert is_Even(-44) == True", "assert is_Even(999999992) == True", "assert is_Even(77) == False", "assert is_Even(87) == False", "assert is_Even(-78) == True", "assert is_Even(18) == True", "assert is_Even(45) == False", "assert is_Even(8) == True", "assert is_Even(-100) == True", "assert is_Even(14) == True", "assert is_Even(-68) == True", "assert is_Even(-101) == False", "assert is_Even(13) == False", "assert is_Even(-79) == False", "assert is_Even(-287) == False", "assert is_Even(-102) == True", "assert is_Even(58) == True", "assert is_Even(-17) == False", "assert is_Even(38) == True", "assert is_Even(98) == True", "assert is_Even(-1002) == True", "assert is_Even(15) == False", "assert is_Even(1000000004) == True", "assert is_Even(57) == False", "assert is_Even(-288) == True", "assert is_Even(-1003) == False", "assert is_Even(60) == True", "assert is_Even(-20) == True", "assert is_Even(-998) == True", "assert is_Even(-7) == False", "assert is_Even(1000000005) == False", "assert is_Even(-18) == True", "assert is_Even(-1005) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the first repeated character in a given string.\nassert first_repeated_char(\"abcabc\") == \"a\"\nYour code should pass the test:\nassert first_repeated_char(\"abcabc\") == \"a\"", "test_list": [ "assert first_repeated_char(\"abcabc\") == \"a\"", "assert first_repeated_char(\"abc\") == None", "assert first_repeated_char(\"123123\") == \"1\"", "assert first_repeated_char('') == None", "assert first_repeated_char('abcdefghijklmnopqrstuvwxyz') == None", "assert first_repeated_char('abcabcxyz') == 'a'", "assert first_repeated_char('ABCaBC') == 'B'", "assert first_repeated_char('a') == None", "assert first_repeated_char('aaa') == 'a'", "assert first_repeated_char('aaaabcabcxyz') == 'a'", "assert first_repeated_char('aaaaaaabcabcxyzz') == 'a'", "assert first_repeated_char('abcdefghinjklmnopqrstuvwxyz') == 'n'", "assert first_repeated_char('aaaa') == 'a'", "assert first_repeated_char('aaaaaaabcabcxyzzaaaa') == 'a'", "assert first_repeated_char('aaaaa') == 'a'", "assert first_repeated_char('aa') == 'a'", "assert first_repeated_char('aaaaaaaabcabcxyzzaaaa') == 'a'", "assert first_repeated_char('aaaaaaaabcabcxyzzaaaaABCaaBC') == 'a'", "assert first_repeated_char('aaaaaaaabcabaaaaaaabcabcxyzzcxyzzaaaa') == 'a'", "assert first_repeated_char('aaaabcabcabcdefghinjklmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('aaaaaaabcabcxyzzaaaaa') == 'a'", "assert first_repeated_char('aaaabcabcabcdABCaBCeafghinjklmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('abcdefgxhinjklmnopqrstuvwxyz') == 'n'", "assert first_repeated_char('aaaaaaabcabaaacxyzzaaaa') == 'a'", "assert first_repeated_char('aaaaaaabcabacxyzzaaaa') == 'a'", "assert first_repeated_char('aaaaaaaaa') == 'a'", "assert first_repeated_char('aaaabcabcabcdABCaBaCeafghinjklmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('aaaaaaabaaaaaaaa') == 'a'", "assert first_repeated_char('abccdefghinjzklabcdefghijklmnopqrstuvwxyzmnopxyz') == 'c'", "assert first_repeated_char('aaaaaaabcabcABCaBCxyzzaaaa') == 'a'", "assert first_repeated_char('aaaaaaabcabcABCaBCzaaaa') == 'a'", "assert first_repeated_char('aaaaazcxyzzaaaa') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopqrsaaaaaaabcabaaacxyzzaaaatuvwxyz') == 'a'", "assert first_repeated_char('ababcdefghinjklmnopqrstuvwxyzcdefghinjklmnopqrstuvwxyz') == 'a'", "assert first_repeated_char('abcdefghijklmnopqrstuvwvz') == 'v'", "assert first_repeated_char('abcdefgxhzinjklmnopqrstuvwxyz') == 'n'", "assert first_repeated_char('aaaaaabcabcxyz') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyz') == 'a'", "assert first_repeated_char('aaaaaaaabaaaaaaaa') == 'a'", "assert first_repeated_char('aaaabcabcABCaBCabcdABCaBCeafghinjklmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyz') == 'a'", "assert first_repeated_char('aaaaaaaaaa') == 'a'", "assert first_repeated_char('aaaaaaabcabcxyza') == 'a'", "assert first_repeated_char('MJ') == None", "assert first_repeated_char('abcdefghijkvlmnopqrstuvwvz') == 'v'", "assert first_repeated_char('aaaaaaabcabcdefghijklmnopqrstuvwxyzabcABCaBCzaaaa') == 'a'", "assert first_repeated_char('abcxyza') == 'a'", "assert first_repeated_char('aabcdefghijklmnopqrstuvwvz') == 'a'", "assert first_repeated_char('aaaaaa') == 'a'", "assert first_repeated_char('aaaaaaaaaaaaaaaabcabcxyzza') == 'a'", "assert first_repeated_char('aaaabcxyzzaaaa') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzaaaaa') == 'a'", "assert first_repeated_char('JF') == None", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyznqrsaaaaaaabcabaaacxyzzaaaatuvwxyz') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmcnopaaaaaaabcdefgxhzinjklmnopqrstuvwxyzbcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzaaaaa') == 'a'", "assert first_repeated_char('aaaaaaaaaaaaabcabcxyz') == 'a'", "assert first_repeated_char('aaaaaaaaabcxyzabcabcxyzzaaaaABCaaBC') == 'a'", "assert first_repeated_char('aaaabaaabcabcxyzz') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaaaaaabcabacxaaaatuvwxyz') == 'a'", "assert first_repeated_char('abcdefghiuvwvz') == 'v'", "assert first_repeated_char('aaaaaaabcabcdefghijklmnaaaaaaabcabcABCaBCzaaaaopqrstuvwxyzabcABCaBCzaaaa') == 'a'", "assert first_repeated_char('abcdefgxhlmnopqrstuvwxyz') == 'x'", "assert first_repeated_char('aaaaaaabcabcxaaaaaaabcabcxyzzaaaaayzzaaaabmcabcabcdefghinjklmnopqrstuvwxyzxyzaaaaaaaaaaaaaaaabcabcxyzza') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzABCaBCzaaaaaaaabcazbacxaaaatuvwxyz') == 'a'", "assert first_repeated_char('aaaaaaabcaaaaaaabcabcABCaBCzaaaazzaaaaa') == 'a'", "assert first_repeated_char('aaaaaaaaabcabcxyzzaaaa') == 'a'", "assert first_repeated_char('JJF') == 'J'", "assert first_repeated_char('abcaaaaaaabcabcxyzzaaaaaabcxyz') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmcnopaaaaaaabcdefgxhzinjklmnopqrstuvwxyzbcabcxyzqrsaaaaaaabcabaaacxyzzaaabcdefgxaahinjklmnopqrsaaaaaaabcabaaacxyzzaaaatuvwxyzxyzaaaaa') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzaaeaaa') == 'a'", "assert first_repeated_char('aaaaaaaaaaaaaabcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaaaaaabcabacxaaaatuvwxyzbcabcxyz') == 'a'", "assert first_repeated_char('aaaaaaa') == 'a'", "assert first_repeated_char('abcdefgxaahabcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzinjklmnopaaaaaabcabcxyznqrsaaaaaaabcabaaacxyzzaaaatuvwxyz') == 'a'", "assert first_repeated_char('aaaaaaaaJJFaa') == 'a'", "assert first_repeated_char('aaaaaaabcabcxyzaaa') == 'a'", "assert first_repeated_char('aaabcdefghijklmnopqrstuvwxyzaabcabcxyz') == 'a'", "assert first_repeated_char('aacaaaaaaabcxyzabcabcxyzzaaaaABCaaBC') == 'a'", "assert first_repeated_char('aaaaaaabcabcxyzaaaaaaa') == 'a'", "assert first_repeated_char('abcxayza') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmmcnopaaaaaaabcdefgxhzinjklmnopqrstuvwxyzbcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzaaaaa') == 'a'", "assert first_repeated_char('Mlszaaabcdefghijklmnopqrstuvwxyzaabcabcxyzvopvu') == 'a'", "assert first_repeated_char('MMJ') == 'M'", "assert first_repeated_char('aaaaaaabcabcdefghiyzabcABCaBCzaaaa') == 'a'", "assert first_repeated_char('aabcaaaaaaabacabcxyzzaaaaaabcxyz') == 'a'", "assert first_repeated_char('aaaabcabcabcdefghjklmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('aabcabcxyz') == 'a'", "assert first_repeated_char('aaaaklmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('aaaaaaaabcabcxyzz') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmcnopaaaaaaabcdefgxhzinjklmnopqraaaaaaabcabcxaaaaaaabcabcxyzzaaaaayzzaaaabmcabcabcdefghinaaaaaaabcabcxyzajklmnopqrstuvwxyzxyzaaaaaaaabcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzaaaaa') == 'a'", "assert first_repeated_char('MMJaaaaaaabcabcxyzaaa') == 'M'", "assert first_repeated_char('abcaaaaaaabcabcxyzzaaaaaabcxbyz') == 'a'", "assert first_repeated_char('aaaabcabcablmnopqrstuvwxyzxyz') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaabcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyzxyzABCaBCzaaaaaavwxyz') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaaaaaabcabacxaaaatuvwzxyz') == 'a'", "assert first_repeated_char('aaaaaaabaaaaxyzaaa') == 'a'", "assert first_repeated_char('aabcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaababcdefghinjklmnopqrstuvwxyzcdefghinjklmnopqrstuvwxyzaaacxyzzaaaatuvwxyzaaaaa') == 'a'", "assert first_repeated_char('JJJFaaaabcabcabcdefghjklmnopqrstuvwxyzxyz') == 'J'", "assert first_repeated_char('BCaaaabcabcABCaBCabcdABCaBCeafghinjklmnopqrstuvwxyzxyzaBC') == 'a'", "assert first_repeated_char('abcdefgxaahabcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatuvwxyabcdefghinjklmnopqrstuvwxyzzinjklmnopaaaaaabcabcxyznqrsaaaaaaabcabaaacxyzzaaaatuvwxyz') == 'a'", "assert first_repeated_char('aacaaaaaabcdefghijklmnopqrstuvwvzaaaaABCaaBC') == 'a'", "assert first_repeated_char('aaaaaaabcaMMJaaaaaaabcabcxyzaaabcABCaBCxyzzaaa') == 'a'", "assert first_repeated_char('aaaabcabcabcdABCaBCeafghinjklmnopqrstuvwxyzaaaaaaaaJJFaaxyz') == 'a'", "assert first_repeated_char('aaaabcabcabcdABCaBaCeafghinjklmnaaaaaaabcabcdefghiyzabcABCaBCzaaaa') == 'a'", "assert first_repeated_char('aaaacaaaaaaabcxyzabcabcxyzzaaaaABCaaBCaaaaabcabacxyzzaaaa') == 'a'", "assert first_repeated_char('abcdefgxaahinjklmnopaaaaaabcabcxyzqrsaaabcdefgxaahinjklmcnopaaaaaabcabcxyzqrsaaaaaaabcabaaacxyzzaaaatugvwxyzxyzABCaBCzaaaaaavwxyz') == 'a'", "assert first_repeated_char('MaaaaaaabaaaaxyzaaaMJ') == 'a'", "assert first_repeated_char('aaaaaaabcabcdefghijklamnaaaaaaabcabcABCaBCzaaaaopqrstuvwxyzabcABCaBCzaaaa') == 'a'", "assert first_repeated_char('abcdefgxhlmnopqrstutvwxyz') == 't'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to get all lucid numbers smaller than or equal to a given integer.\nassert get_ludic(10) == [1, 2, 3, 5, 7]\nYour code should pass the test:\nassert get_ludic(10) == [1, 2, 3, 5, 7]", "test_list": [ "assert get_ludic(10) == [1, 2, 3, 5, 7]", "assert get_ludic(25) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25]", "assert get_ludic(45) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43]", "assert get_ludic(100) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(1000) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(10000) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(999) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(9999) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(True) == [1]", "assert get_ludic(9998) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(101) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(102) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(998) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(9997) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(997) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(99) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(10001) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(1001) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(103) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(10002) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(104) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(996) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991]", "assert get_ludic(995) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991]", "assert get_ludic(9996) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(61) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61]", "assert get_ludic(31) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(60) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(32) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(106) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(9995) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(9994) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(9993) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(105) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(1002) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(62) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61]", "assert get_ludic(33) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(1003) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(59) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(107) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107]", "assert get_ludic(58) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(15) == [1, 2, 3, 5, 7, 11, 13]", "assert get_ludic(57) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(30) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(81) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77]", "assert get_ludic(16) == [1, 2, 3, 5, 7, 11, 13]", "assert get_ludic(69) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67]", "assert get_ludic(34) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(70) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67]", "assert get_ludic(27) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25]", "assert get_ludic(51) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47]", "assert get_ludic(29) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(71) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71]", "assert get_ludic(35) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(50) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47]", "assert get_ludic(79) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77]", "assert get_ludic(108) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107]", "assert get_ludic(56) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(10003) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(72) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71]", "assert get_ludic(63) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61]", "assert get_ludic(17) == [1, 2, 3, 5, 7, 11, 13, 17]", "assert get_ludic(49) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47]", "assert get_ludic(9992) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(10004) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(10005) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(68) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67]", "assert get_ludic(80) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77]", "assert get_ludic(36) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29]", "assert get_ludic(64) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61]", "assert get_ludic(109) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107]", "assert get_ludic(88) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83]", "assert get_ludic(82) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77]", "assert get_ludic(47) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47]", "assert get_ludic(66) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61]", "assert get_ludic(10006) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989, 9997]", "assert get_ludic(55) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(78) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77]", "assert get_ludic(28) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25]", "assert get_ludic(1004) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997]", "assert get_ludic(67) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67]", "assert get_ludic(41) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41]", "assert get_ludic(91) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91]", "assert get_ludic(87) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83]", "assert get_ludic(48) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47]", "assert get_ludic(18) == [1, 2, 3, 5, 7, 11, 13, 17]", "assert get_ludic(9991) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(5) == [1, 2, 3, 5]", "assert get_ludic(54) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53]", "assert get_ludic(76) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71]", "assert get_ludic(110) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107]", "assert get_ludic(85) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83]", "assert get_ludic(97) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97]", "assert get_ludic(52) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47]", "assert get_ludic(84) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83]", "assert get_ludic(96) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91]", "assert get_ludic(90) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89]", "assert get_ludic(86) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83]", "assert get_ludic(994) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991]", "assert get_ludic(9990) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91, 97, 107, 115, 119, 121, 127, 131, 143, 149, 157, 161, 173, 175, 179, 181, 193, 209, 211, 221, 223, 227, 233, 235, 239, 247, 257, 265, 277, 283, 287, 301, 307, 313, 329, 331, 337, 341, 353, 359, 361, 377, 383, 389, 397, 407, 415, 419, 421, 431, 433, 437, 445, 463, 467, 475, 481, 493, 497, 503, 509, 517, 527, 535, 541, 553, 565, 577, 581, 593, 595, 607, 613, 617, 625, 643, 647, 653, 659, 667, 673, 685, 691, 697, 703, 707, 727, 733, 749, 751, 757, 775, 787, 791, 797, 803, 805, 811, 835, 839, 841, 851, 853, 857, 863, 865, 881, 893, 913, 929, 931, 937, 941, 943, 959, 961, 967, 973, 991, 997, 1007, 1015, 1021, 1043, 1045, 1049, 1061, 1063, 1093, 1097, 1103, 1105, 1111, 1123, 1133, 1141, 1147, 1151, 1177, 1193, 1201, 1207, 1217, 1223, 1225, 1229, 1231, 1237, 1247, 1255, 1271, 1277, 1283, 1297, 1303, 1313, 1315, 1333, 1351, 1361, 1363, 1367, 1375, 1379, 1381, 1391, 1403, 1427, 1435, 1439, 1441, 1465, 1481, 1487, 1493, 1507, 1511, 1517, 1525, 1531, 1537, 1541, 1553, 1559, 1567, 1577, 1589, 1601, 1627, 1631, 1643, 1651, 1657, 1667, 1675, 1679, 1691, 1705, 1709, 1717, 1721, 1723, 1735, 1757, 1769, 1777, 1781, 1795, 1799, 1811, 1813, 1823, 1829, 1831, 1841, 1847, 1853, 1859, 1877, 1891, 1901, 1907, 1915, 1919, 1931, 1943, 1961, 1973, 1987, 1993, 1997, 2005, 2017, 2023, 2035, 2039, 2047, 2063, 2065, 2083, 2093, 2095, 2111, 2123, 2129, 2155, 2161, 2167, 2189, 2197, 2203, 2207, 2215, 2219, 2243, 2251, 2257, 2267, 2279, 2281, 2297, 2303, 2333, 2351, 2353, 2357, 2363, 2371, 2377, 2381, 2383, 2393, 2411, 2417, 2425, 2429, 2443, 2455, 2459, 2467, 2477, 2485, 2489, 2503, 2507, 2519, 2531, 2533, 2537, 2545, 2573, 2591, 2603, 2611, 2621, 2635, 2641, 2651, 2663, 2669, 2677, 2681, 2687, 2695, 2707, 2723, 2725, 2729, 2731, 2743, 2747, 2755, 2777, 2785, 2803, 2807, 2813, 2837, 2845, 2857, 2861, 2873, 2879, 2891, 2903, 2905, 2927, 2933, 2939, 2957, 2963, 2969, 2981, 2983, 3001, 3007, 3011, 3017, 3037, 3055, 3067, 3083, 3085, 3097, 3101, 3107, 3119, 3121, 3133, 3151, 3161, 3173, 3191, 3193, 3221, 3223, 3227, 3239, 3247, 3251, 3253, 3269, 3271, 3293, 3299, 3301, 3311, 3323, 3337, 3343, 3355, 3359, 3361, 3373, 3385, 3403, 3413, 3415, 3433, 3449, 3479, 3481, 3487, 3503, 3505, 3509, 3517, 3535, 3539, 3547, 3553, 3565, 3571, 3583, 3593, 3595, 3599, 3611, 3623, 3625, 3631, 3659, 3661, 3671, 3673, 3689, 3697, 3721, 3731, 3743, 3745, 3751, 3757, 3775, 3779, 3793, 3797, 3817, 3833, 3847, 3851, 3863, 3877, 3881, 3883, 3901, 3911, 3923, 3925, 3931, 3937, 3941, 3973, 3977, 3985, 3989, 4013, 4031, 4033, 4037, 4045, 4073, 4081, 4105, 4109, 4111, 4117, 4121, 4123, 4133, 4141, 4165, 4187, 4193, 4199, 4211, 4213, 4237, 4253, 4255, 4261, 4277, 4289, 4301, 4303, 4307, 4321, 4331, 4361, 4375, 4381, 4397, 4405, 4409, 4423, 4427, 4433, 4451, 4457, 4463, 4487, 4493, 4499, 4517, 4525, 4529, 4541, 4543, 4571, 4589, 4591, 4607, 4615, 4621, 4633, 4637, 4645, 4663, 4667, 4681, 4691, 4693, 4697, 4709, 4717, 4721, 4727, 4739, 4753, 4793, 4801, 4813, 4817, 4841, 4847, 4853, 4867, 4873, 4883, 4897, 4901, 4907, 4913, 4933, 4945, 4949, 4957, 4961, 4973, 4981, 5003, 5005, 5023, 5027, 5035, 5039, 5041, 5057, 5069, 5077, 5083, 5093, 5123, 5129, 5137, 5147, 5167, 5171, 5173, 5183, 5197, 5213, 5221, 5233, 5245, 5261, 5263, 5273, 5279, 5287, 5291, 5311, 5323, 5339, 5353, 5357, 5365, 5371, 5381, 5395, 5401, 5417, 5431, 5453, 5459, 5461, 5471, 5473, 5501, 5503, 5521, 5531, 5533, 5537, 5549, 5561, 5563, 5575, 5581, 5593, 5627, 5633, 5635, 5653, 5657, 5663, 5669, 5671, 5693, 5699, 5723, 5725, 5741, 5753, 5759, 5771, 5789, 5791, 5801, 5815, 5819, 5837, 5843, 5849, 5851, 5857, 5867, 5873, 5903, 5909, 5917, 5933, 5935, 5947, 5963, 5969, 5987, 5995, 5999, 6011, 6023, 6059, 6061, 6067, 6077, 6089, 6103, 6107, 6113, 6115, 6127, 6137, 6145, 6161, 6173, 6179, 6181, 6187, 6193, 6233, 6247, 6277, 6283, 6293, 6295, 6299, 6311, 6337, 6343, 6353, 6355, 6373, 6403, 6415, 6421, 6431, 6433, 6445, 6449, 6467, 6473, 6479, 6487, 6503, 6509, 6527, 6533, 6539, 6557, 6563, 6577, 6583, 6587, 6593, 6617, 6629, 6631, 6643, 6655, 6659, 6685, 6691, 6703, 6713, 6715, 6721, 6743, 6757, 6761, 6787, 6797, 6803, 6809, 6823, 6853, 6865, 6877, 6901, 6907, 6913, 6917, 6923, 6929, 6931, 6943, 6947, 6953, 6967, 6983, 6991, 7007, 7031, 7037, 7049, 7051, 7061, 7063, 7073, 7075, 7087, 7109, 7123, 7127, 7139, 7151, 7157, 7163, 7169, 7177, 7183, 7201, 7211, 7213, 7223, 7231, 7237, 7259, 7261, 7271, 7289, 7291, 7301, 7307, 7327, 7349, 7361, 7379, 7391, 7411, 7417, 7433, 7439, 7441, 7451, 7465, 7483, 7495, 7499, 7511, 7525, 7555, 7559, 7571, 7585, 7589, 7597, 7601, 7603, 7607, 7621, 7649, 7657, 7675, 7681, 7703, 7717, 7733, 7741, 7763, 7765, 7781, 7783, 7795, 7799, 7811, 7817, 7837, 7843, 7847, 7859, 7871, 7873, 7885, 7897, 7913, 7927, 7937, 7943, 7945, 7967, 7973, 7993, 8003, 8009, 8017, 8023, 8027, 8035, 8053, 8057, 8083, 8099, 8101, 8111, 8123, 8129, 8131, 8153, 8155, 8183, 8185, 8201, 8203, 8215, 8227, 8231, 8245, 8261, 8263, 8293, 8317, 8321, 8339, 8341, 8357, 8363, 8365, 8387, 8393, 8411, 8425, 8447, 8453, 8467, 8471, 8473, 8489, 8491, 8497, 8501, 8507, 8531, 8543, 8545, 8549, 8557, 8587, 8603, 8627, 8633, 8635, 8639, 8651, 8657, 8677, 8683, 8713, 8729, 8731, 8741, 8743, 8753, 8755, 8783, 8821, 8831, 8837, 8843, 8845, 8861, 8867, 8887, 8891, 8897, 8909, 8917, 8921, 8923, 8947, 8951, 8965, 8977, 8993, 8999, 9013, 9017, 9031, 9043, 9059, 9071, 9077, 9085, 9097, 9107, 9121, 9131, 9149, 9157, 9161, 9175, 9179, 9181, 9191, 9197, 9205, 9211, 9227, 9241, 9253, 9263, 9277, 9281, 9287, 9341, 9347, 9355, 9361, 9367, 9383, 9385, 9389, 9421, 9449, 9467, 9475, 9479, 9487, 9493, 9503, 9523, 9547, 9551, 9557, 9565, 9577, 9599, 9601, 9617, 9623, 9625, 9653, 9659, 9677, 9685, 9689, 9697, 9703, 9715, 9727, 9751, 9781, 9803, 9805, 9817, 9833, 9839, 9841, 9847, 9863, 9869, 9881, 9883, 9899, 9907, 9911, 9913, 9937, 9961, 9973, 9977, 9985, 9989]", "assert get_ludic(6) == [1, 2, 3, 5]", "assert get_ludic(83) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83]", "assert get_ludic(77) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77]", "assert get_ludic(95) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89, 91]", "assert get_ludic(89) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43, 47, 53, 61, 67, 71, 77, 83, 89]", "assert get_ludic(19) == [1, 2, 3, 5, 7, 11, 13, 17]", "assert get_ludic(42) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to reverse words seperated by spaces in a given string.\nassert reverse_words(\"python program\")==(\"program python\")\nYour code should pass the test:\nassert reverse_words(\"python program\")==(\"program python\")", "test_list": [ "assert reverse_words(\"python program\")==(\"program python\")", "assert reverse_words(\"java language\")==(\"language java\")", "assert reverse_words(\"indian man\")==(\"man indian\")", "assert reverse_words('') == ''", "assert reverse_words(' ') == ''", "assert reverse_words(' ') == ''", "assert reverse_words('word') == 'word'", "assert reverse_words('a') == 'a'", "assert reverse_words('ab') == 'ab'", "assert reverse_words(' word ') == 'word'", "assert reverse_words(' a a a a a a ') == 'a a a a a a'", "assert reverse_words('word1 word2 word3') == 'word3 word2 word1'", "assert reverse_words('word1 word2 word3') == 'word3 word2 word1'", "assert reverse_words(' a a a a a a') == 'a a a a a a'", "assert reverse_words(' java language ') == 'language java'", "assert reverse_words('word1 word2 word3') == 'word3 word2 word1'", "assert reverse_words('abb') == 'abb'", "assert reverse_words('java') == 'java'", "assert reverse_words('word1') == 'word1'", "assert reverse_words('word1 word2 word3java') == 'word3java word2 word1'", "assert reverse_words('language') == 'language'", "assert reverse_words(' a a a a a ') == 'a a a a a'", "assert reverse_words(' a a a a a a a') == 'a a a a a a a'", "assert reverse_words('u java language ') == 'language java u'", "assert reverse_words('wordword11') == 'wordword11'", "assert reverse_words('word a a a a a ') == 'a a a a a word'", "assert reverse_words(' j java language ') == 'language java j'", "assert reverse_words('word11') == 'word11'", "assert reverse_words(' word3java ') == 'word3java'", "assert reverse_words('word1 wo rd2 word3') == 'word3 rd2 wo word1'", "assert reverse_words('rwordword11') == 'rwordword11'", "assert reverse_words('worword1 word2 word3javad1') == 'word3javad1 word2 worword1'", "assert reverse_words(' a a a a a ') == 'a a a a a'", "assert reverse_words('worword1') == 'worword1'", "assert reverse_words('u java langu java language ') == 'language java langu java u'", "assert reverse_words(' word j java language ') == 'language java j word'", "assert reverse_words('u java languageword1 ') == 'languageword1 java u'", "assert reverse_words(' a a a a a ') == 'a a a a a'", "assert reverse_words('javaabb') == 'javaabb'", "assert reverse_words('javvaabb') == 'javvaabb'", "assert reverse_words('abword') == 'abword'", "assert reverse_words('jaaabb') == 'jaaabb'", "assert reverse_words('javaabbwordword11') == 'javaabbwordword11'", "assert reverse_words('aorbword') == 'aorbword'", "assert reverse_words('word1 a a a a a word2 word3') == 'word3 word2 a a a a a word1'", "assert reverse_words(' worword1 a ') == 'a worword1'", "assert reverse_words('Ml') == 'Ml'", "assert reverse_words('languageword1') == 'languageword1'", "assert reverse_words('rwoordword11') == 'rwoordword11'", "assert reverse_words('wordword11word') == 'wordword11word'", "assert reverse_words(' word3langu java ') == 'java word3langu'", "assert reverse_words('javabwordword11') == 'javabwordword11'", "assert reverse_words('wword2 word3') == 'word3 wword2'", "assert reverse_words('word3langu') == 'word3langu'", "assert reverse_words(' ') == ''", "assert reverse_words('wordwordword11word1') == 'wordwordword11word1'", "assert reverse_words('langueage') == 'langueage'", "assert reverse_words(' java lwordword11anguage ') == 'lwordword11anguage java'", "assert reverse_words('la a a a a a anguageword1') == 'anguageword1 a a a a a la'", "assert reverse_words('aorbwordangueage') == 'aorbwordangueage'", "assert reverse_words(' word j java langjavaabbwordword11uage ') == 'langjavaabbwordword11uage java j word'", "assert reverse_words(' ') == ''", "assert reverse_words('rd11') == 'rd11'", "assert reverse_words('wvord1 word2 word3java') == 'word3java word2 wvord1'", "assert reverse_words('aorbwor java lwordword11anguag') == 'lwordword11anguag java aorbwor'", "assert reverse_words(' a a a') == 'a a a'", "assert reverse_words('worjavaabbwordword11d a a a a a ') == 'a a a a a worjavaabbwordword11d'", "assert reverse_words('word1 wo rd2 word1 word2 word3 word3') == 'word3 word3 word2 word1 rd2 wo word1'", "assert reverse_words('rdd11') == 'rdd11'", "assert reverse_words('D') == 'D'", "assert reverse_words('wor d1 wo rd2 ') == 'rd2 wo d1 wor'", "assert reverse_words('wor11wdord') == 'wor11wdord'", "assert reverse_words('jaavaabb') == 'jaavaabb'", "assert reverse_words('worworwd1') == 'worworwd1'", "assert reverse_words('jaa') == 'jaa'", "assert reverse_words(' word j java language worword1') == 'worword1 language java j word'", "assert reverse_words('u java language bb') == 'bb language java u'", "assert reverse_words('awoor') == 'awoor'", "assert reverse_words('d1') == 'd1'", "assert reverse_words('ja') == 'ja'", "assert reverse_words('javbaabb') == 'javbaabb'", "assert reverse_words(' word worworwd1java lwordword11anguage uage worword1') == 'worword1 uage lwordword11anguage worworwd1java word'", "assert reverse_words('worlaenguage1') == 'worlaenguage1'", "assert reverse_words('la a a a a a anguagejaword1') == 'anguagejaword1 a a a a a la'", "assert reverse_words(' a a') == 'a a'", "assert reverse_words('abwor java lwordword11anguag') == 'lwordword11anguag java abwor'", "assert reverse_words('wordwordword11rword1') == 'wordwordword11rword1'", "assert reverse_words('javabwoardword11') == 'javabwoardword11'", "assert reverse_words('Db') == 'Db'", "assert reverse_words('awoorr') == 'awoorr'", "assert reverse_words(' a a a word worworwd1java lwordword11anguage uage ') == 'uage lwordword11anguage worworwd1java word a a a'", "assert reverse_words('dabword') == 'dabword'", "assert reverse_words('javaabbwordword1wonguage1') == 'javaabbwordword1wonguage1'", "assert reverse_words(' wu java language ord3langu java ') == 'java ord3langu language java wu'", "assert reverse_words('worwword1') == 'worwword1'", "assert reverse_words(' j java language vaabb') == 'vaabb language java j'", "assert reverse_words('la a a a a a anguagejaaword1') == 'anguagejaaword1 a a a a a la'", "assert reverse_words('laguageword1') == 'laguageword1'", "assert reverse_words('lwordword11anguag') == 'lwordword11anguag'", "assert reverse_words('word a a a3langu') == 'a3langu a a word'", "assert reverse_words('u java languagewoord1 ') == 'languagewoord1 java u'", "assert reverse_words('lwordword11abwor java lwordword11anguaganguag') == 'lwordword11anguaganguag java lwordword11abwor'", "assert reverse_words(' aa a a a a ') == 'a a a a aa'", "assert reverse_words('lwordword11anguagang a a a a a a uag') == 'uag a a a a a a lwordword11anguagang'", "assert reverse_words('wword3oord1 word2 word3') == 'word3 word2 wword3oord1'", "assert reverse_words('abwor') == 'abwor'", "assert reverse_words('uag') == 'uag'", "assert reverse_words('anguageword1') == 'anguageword1'", "assert reverse_words('iQnak') == 'iQnak'", "assert reverse_words('javbaajbb') == 'javbaajbb'", "assert reverse_words(' a a a a wu java language ord3langu java a a a') == 'a a a java ord3langu language java wu a a a a'", "assert reverse_words('wo') == 'wo'", "assert reverse_words('word2') == 'word2'", "assert reverse_words('u java languwword2agewoord1 ') == 'languwword2agewoord1 java u'", "assert reverse_words('word a a a a ') == 'a a a a word'", "assert reverse_words('languageweord1') == 'languageweord1'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if the given integer is a prime number.\nassert prime_num(13)==True\nYour code should pass the test:\nassert prime_num(13)==True", "test_list": [ "assert prime_num(13)==True", "assert prime_num(7)==True", "assert prime_num(-1010)==False", "assert prime_num(0) == False", "assert prime_num(False) == False", "assert prime_num(1) == False", "assert prime_num(True) == False", "assert prime_num(-1) == False", "assert prime_num(-71) == False", "assert prime_num(-70) == False", "assert prime_num(-55) == False", "assert prime_num(-72) == False", "assert prime_num(-56) == False", "assert prime_num(-69) == False", "assert prime_num(-62) == False", "assert prime_num(-45) == False", "assert prime_num(-16) == False", "assert prime_num(-63) == False", "assert prime_num(-68) == False", "assert prime_num(-67) == False", "assert prime_num(-44) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert degrees to radians.\nassert radian_degree(90)==1.5707963267948966\nYour code should pass the test:\nassert radian_degree(90)==1.5707963267948966", "test_list": [ "assert radian_degree(90)==1.5707963267948966", "assert radian_degree(60)==1.0471975511965976", "assert radian_degree(120)==2.0943951023931953" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to search a string for a regex pattern. The function should return the matching subtring, a start index and an end index.\nassert find_literals('The quick brown fox jumps over the lazy dog.', 'fox') == ('fox', 16, 19)\nYour code should pass the test:\nassert find_literals('The quick brown fox jumps over the lazy dog.', 'fox') == ('fox', 16, 19)", "test_list": [ "assert find_literals('The quick brown fox jumps over the lazy dog.', 'fox') == ('fox', 16, 19)", "assert find_literals('Its been a very crazy procedure right', 'crazy') == ('crazy', 16, 21)", "assert find_literals('Hardest choices required strongest will', 'will') == ('will', 35, 39)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find nth bell number.\nassert bell_Number(2) == 2\nYour code should pass the test:\nassert bell_Number(2) == 2", "test_list": [ "assert bell_Number(2) == 2", "assert bell_Number(3) == 5", "assert bell_Number(4) == 15", "assert bell_Number(10) == 115975", "assert bell_Number(20) == 51724158235372", "assert bell_Number(30) == 846749014511809332450147", "assert bell_Number(50) == 185724268771078270438257767181908917499221852770", "assert bell_Number(100) == 47585391276764833658790768841387207826363669686825611466616334637559114497892442622672724044217756306953557882560751", "assert bell_Number(9) == 21147", "assert bell_Number(29) == 71339801938860275191172", "assert bell_Number(31) == 10293358946226376485095653", "assert bell_Number(32) == 128064670049908713818925644", "assert bell_Number(11) == 678570", "assert bell_Number(101) == 1409730628836818079651989640877750147939649550972810633687810677623397460767033916688901247498361259223729545318022772", "assert bell_Number(12) == 4213597", "assert bell_Number(98) == 55494677927746340698788238667452126040563242441827634980157203368430358083090722409217101274455481270374885095618", "assert bell_Number(82) == 624387454429479848302014120414448006907125370284776661891529899343806658375826740689137423", "assert bell_Number(49) == 10726137154573358400342215518590002633917247281", "assert bell_Number(81) == 24761288718465863816962119279306788401954401906692653427329808967315171931611751006838915", "assert bell_Number(19) == 5832742205057", "assert bell_Number(99) == 1618706027446068305855680628161135741330684513088812399898409470089128730792407044351108134019449028191480663320741", "assert bell_Number(83) == 15892292813296951899433594303207669496517041849871581501737510069308817348770226226653966474", "assert bell_Number(True) == 1", "assert bell_Number(8) == 4140", "assert bell_Number(13) == 27644437", "assert bell_Number(28) == 6160539404599934652455", "assert bell_Number(False) == 1", "assert bell_Number(21) == 474869816156751", "assert bell_Number(15) == 1382958545", "assert bell_Number(22) == 4506715738447323", "assert bell_Number(23) == 44152005855084346", "assert bell_Number(24) == 445958869294805289", "assert bell_Number(27) == 545717047936059989389", "assert bell_Number(14) == 190899322", "assert bell_Number(102) == 42084666540833185842642967837240149415161590759353344007314645260420497143427684492445799768869877724552914717726382251", "assert bell_Number(97) == 1917593350464112616752757157565032460248311804906650215954187246738986739924580790084847891233423398173059771233", "assert bell_Number(80) == 991267988808424794443839434655920239360814764000951599022939879419136287216681744888844", "assert bell_Number(16) == 10480142147", "assert bell_Number(7) == 877", "assert bell_Number(103) == 1265919065795174549371363379464334700009602169860726980253928198510310363247588066603292934648225930087902273645619467469", "assert bell_Number(18) == 682076806159", "assert bell_Number(6) == 203", "assert bell_Number(33) == 1629595892846007606764728147", "assert bell_Number(25) == 4638590332229999353", "assert bell_Number(34) == 21195039388640360462388656799", "assert bell_Number(5) == 52", "assert bell_Number(35) == 281600203019560266563340426570", "assert bell_Number(17) == 82864869804", "assert bell_Number(73) == 214834623568478894452765605511928333367140719361291003997161390043701285425833", "assert bell_Number(36) == 3819714729894818339975525681317", "assert bell_Number(84) == 408248141291805738980141314733701533991578374164094348787738475995651988600158415299211778933", "assert bell_Number(51) == 3263983870004111524856951830191582524419255819477", "assert bell_Number(52) == 58205338024195872785464627063218599149503972126463", "assert bell_Number(4) == 15", "assert bell_Number(53) == 1052928518014714166107781298021583534928402714242132", "assert bell_Number(26) == 49631246523618756274", "assert bell_Number(96) == 66790853422797408533421892496106177820862555650400879850993569405575404871887998514898872210341414631481213729", "assert bell_Number(3) == 5", "assert bell_Number(72) == 9314528182092653288251451483527341806516792394674496725578935706029134658745", "assert bell_Number(48) == 628919796303118415420210454071849537746015761", "assert bell_Number(68) == 36628224206696135478834640618028539032699174847931909480671725803995436", "assert bell_Number(57) == 129482661947506964462616580633806000917491602609372517195", "assert bell_Number(2) == 2", "assert bell_Number(74) == 5006908024247925379707076470957722220463116781409659160159536981161298714301202", "assert bell_Number(93) == 2962614388531218251190227244935749736828675583113926711461226180042633884248639975904464409686755210349399", "assert bell_Number(58) == 2507136358984296114560786627437574942253015623445622326263", "assert bell_Number(54) == 19317287589145618265728950069285503257349832850302011", "assert bell_Number(67) == 1676501284301523453367212880854005182365748317589888660477021013719409", "assert bell_Number(95) == 2345129936856330144543337656630809098301482271000632150222900693128839447045930834163493232282141300734566042", "assert bell_Number(79) == 40064166844084356404509204005730815621427040237270563024820379702392240194729249115029", "assert bell_Number(78) == 1635000770532737216633829256032779450518375544542935181844299348876855151241590189395", "assert bell_Number(92) == 106611797892739782364113678801520610524431974731789913132104301942153476208366519192812848588253648356364", "assert bell_Number(55) == 359334085968622831041960188598043661065388726959079837", "assert bell_Number(104) == 38366475041646865074030130357856485967809135091591298905875457636899561102873744110584209435752975314259123206403829820332", "assert bell_Number(0) == 1", "assert bell_Number(46) == 2265418219334494002928484444705392276158355", "assert bell_Number(47) == 37450059502461511196505342096431510120174682", "assert bell_Number(39) == 10738823330774692832768857986425209", "assert bell_Number(75) == 117896026920858300966730642538212084059025603061199813571998059942386637656568797", "assert bell_Number(71) == 408130093410464274259945600962134706689859323636922532443365594726056131962", "assert bell_Number(56) == 6775685320645824322581483068371419745979053216268760300", "assert bell_Number(70) == 18075003898340511237556784424498369141305841234468097908227993035088029195", "assert bell_Number(37) == 52868366208550447901945575624941", "assert bell_Number(105) == 1171472088078323629273598738775155497312005921610042438212729219444269087638395679944434145639114680447889587554579533719803", "assert bell_Number(42) == 35742549198872617291353508656626642567", "assert bell_Number(85) == 10583321873228234424552137744344434100391955309436425797852108559510434249855735357360593574749", "assert bell_Number(45) == 139258505266263669602347053993654079693415", "assert bell_Number(91) == 3868731362280702160655673912482765098905555785458740412264329844745080937342264610781770223818259614025", "assert bell_Number(38) == 746289892095625330523099540639146", "assert bell_Number(1) == 1", "assert bell_Number(66) == 77605907238843669482155930857960017792778059887519278038000759795263", "assert bell_Number(43) == 552950118797165484321714693280737767385", "assert bell_Number(40) == 157450588391204931289324344702531067", "assert bell_Number(41) == 2351152507740617628200694077243788988", "assert bell_Number(44) == 8701963427387055089023600531855797148876", "assert bell_Number(106) == 36034359301723008726124271620804476487937046215813768980284152191207142535396036213884437727361649089256288707084077251557863", "assert bell_Number(69) == 809212768387947836336846277707066239391942323998649273771736744420003007", "assert bell_Number(94) == 83012043550967281787120476720274991081436431402381752242504514629481800064636673934392827445150961387102019", "assert bell_Number(65) == 3633778785457899322415257682767737441410036994560435982365219287372", "assert bell_Number(90) == 141580318123392930464192819123202606981284563291786545804370223525364095085412667328027643050802912567", "assert bell_Number(59) == 49176743336309621659000944152624896853591018248919168867818", "assert bell_Number(107) == 1116548875515523377204501107984449932940666631021908060976492220258832392131432246333491725937263576277552088960296339671304490", "assert bell_Number(86) == 276844443054160876160126038812506987515878490163433019207947986484590126191194780416973565092618", "assert bell_Number(76) == 2804379077740744643020190973126488180455295657360401565474468309847623573788115607", "assert bell_Number(64) == 172134143357358850934369963665272571125557575184049758045339873395", "assert bell_Number(87) == 7306720755827530589639480511232846731775215754200303890190355852772713202556415109429779445622537", "assert bell_Number(108) == 34848695651570832694681995982612146702519513392294088468593795408372234278629243707804509644015837249924829627067628405567147261", "assert bell_Number(88) == 194553897403965647871786295024290690576513032341195649821051001205884166153194143340809062985041067" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of substrings with the sum of digits equal to their length.\nassert count_Substrings('112112') == 6\nYour code should pass the test:\nassert count_Substrings('112112') == 6", "test_list": [ "assert count_Substrings('112112') == 6", "assert count_Substrings('111') == 6", "assert count_Substrings('1101112') == 12" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function which takes a list and returns a list with the same elements, but the k'th element removed.\nassert remove_kth_element([1,1,2,3,4,4,5,1],3)==[1, 1, 3, 4, 4, 5, 1]\nYour code should pass the test:\nassert remove_kth_element([1,1,2,3,4,4,5,1],3)==[1, 1, 3, 4, 4, 5, 1]", "test_list": [ "assert remove_kth_element([1,1,2,3,4,4,5,1],3)==[1, 1, 3, 4, 4, 5, 1]", "assert remove_kth_element([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4],4)==[0, 0, 1, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4]", "assert remove_kth_element([10, 10, 15, 19, 18, 18, 17, 26, 26, 17, 18, 10],5)==[10,10,15,19, 18, 17, 26, 26, 17, 18, 10]", "assert remove_kth_element([1, 2, 3, 4, 5], 1) == [2, 3, 4, 5]", "assert remove_kth_element([1, 2, 3, 4, 5], 5) == [1, 2, 3, 4]", "assert remove_kth_element([1, 1, 1, 2, 2, 3, 3, 3], 4) == [1, 1, 1, 2, 3, 3, 3]", "assert remove_kth_element([10, 20, 30, 40, 50, 60], 3) == [10, 20, 40, 50, 60]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 7) == [1, 2, 3, 4, 5, 6, 8, 9, 10]", "assert remove_kth_element([1, 1, 1, 2, 2, 40, 3, 3], 4) == [1, 1, 1, 2, 40, 3, 3]", "assert remove_kth_element([1, 1, 1, 2, 39, 2, 40, 50, 3, 3], 4) == [1, 1, 1, 39, 2, 40, 50, 3, 3]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 6) == [1, 2, 3, 4, 5, 7, 8, 9, 10]", "assert remove_kth_element([1, 1, 1, 2, 39, 2, 40, 3, 3, 3], 4) == [1, 1, 1, 39, 2, 40, 3, 3, 3]", "assert remove_kth_element([2, 1, 1, 1, 2, 2, 40, 3, 3], 4) == [2, 1, 1, 2, 2, 40, 3, 3]", "assert remove_kth_element([1, 2, 3, 4, 5], 2) == [1, 3, 4, 5]", "assert remove_kth_element([10, 20, 30, 40, 50, 60], 5) == [10, 20, 30, 40, 60]", "assert remove_kth_element([1, 1, 1, 39, 2, 40, 7, 3, 3, 3], 2) == [1, 1, 39, 2, 40, 7, 3, 3, 3]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 1) == [2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert remove_kth_element([2, 1, 1, 1, 2, 2, 40, 3, 3], 1) == [1, 1, 1, 2, 2, 40, 3, 3]", "assert remove_kth_element([1, 2, 3, 4, 5], 3) == [1, 2, 4, 5]", "assert remove_kth_element([1, 2, 3, 4, 3, 4], 5) == [1, 2, 3, 4, 4]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 10], 9) == [1, 2, 3, 4, 5, 6, 7, 8]", "assert remove_kth_element([1, 1, 1, 2, 2, 3, 3], 4) == [1, 1, 1, 2, 3, 3]", "assert remove_kth_element([1, 4, 3, 4, 3, 4], 6) == [1, 4, 3, 4, 3]", "assert remove_kth_element([2, 1, 1, 2, 2, 40, 3, 3], 1) == [1, 1, 2, 2, 40, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 39, 2, 40, 3, 3, 3], 1) == [1, 1, 39, 39, 2, 40, 3, 3, 3]", "assert remove_kth_element([10, 20, 30, 40, 50, 60], 6) == [10, 20, 30, 40, 50]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 8], 5) == [1, 2, 3, 4, 6, 7, 8, 9, 10, 8]", "assert remove_kth_element([10, 20, 40, 50, 60, 40], 3) == [10, 20, 50, 60, 40]", "assert remove_kth_element([1, 4, 3, 4, 3, 4], 5) == [1, 4, 3, 4, 4]", "assert remove_kth_element([1, 2, 3, 2, 4, 5, 6, 7, 8, 9, 10, 8], 5) == [1, 2, 3, 2, 5, 6, 7, 8, 9, 10, 8]", "assert remove_kth_element([1, 2, 3, 4, 4], 1) == [2, 3, 4, 4]", "assert remove_kth_element([1, 2, 3, 2, 4, 5, 7, 7, 8, 9, 10, 8], 5) == [1, 2, 3, 2, 5, 7, 7, 8, 9, 10, 8]", "assert remove_kth_element([50, 2, 3, 4, 5], 5) == [50, 2, 3, 4]", "assert remove_kth_element([3, 1, 2, 3, 4, 5], 3) == [3, 1, 3, 4, 5]", "assert remove_kth_element([1, 1, 1, 2, 39, 2, 40, 3, 3, 3], 1) == [1, 1, 2, 39, 2, 40, 3, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 2, 40, 3, 3, 3, 3], 2) == [1, 1, 39, 2, 40, 3, 3, 3, 3]", "assert remove_kth_element([2, 1, 1, 2, 2, 2, 40, 3, 3], 1) == [1, 1, 2, 2, 2, 40, 3, 3]", "assert remove_kth_element([1, 1, 1, 4, 39, 2, 40, 7, 3, 3, 3, 4], 1) == [1, 1, 4, 39, 2, 40, 7, 3, 3, 3, 4]", "assert remove_kth_element([1, 40, 2, 3, 1, 4, 4], 2) == [1, 2, 3, 1, 4, 4]", "assert remove_kth_element([1, 2, 3, 2, 4, 30, 5, 6, 7, 8, 9, 10, 8], 5) == [1, 2, 3, 2, 30, 5, 6, 7, 8, 9, 10, 8]", "assert remove_kth_element([1, 2, 3, 2, 4, 30, 5, 6, 7, 8, 9, 10, 8], 4) == [1, 2, 3, 4, 30, 5, 6, 7, 8, 9, 10, 8]", "assert remove_kth_element([2, 1, 1, 2, 2, 40, 3, 3], 2) == [2, 1, 2, 2, 40, 3, 3]", "assert remove_kth_element([10, 20, 30, 40, 50, 60], 4) == [10, 20, 30, 50, 60]", "assert remove_kth_element([1, 2, 3, 2, 4, 30, 5, 6, 7, 8, 9, 10], 5) == [1, 2, 3, 2, 30, 5, 6, 7, 8, 9, 10]", "assert remove_kth_element([1, 40, 2, 3, 1, 4, 4, 1], 2) == [1, 2, 3, 1, 4, 4, 1]", "assert remove_kth_element([1, 1, 1, 39, 39, 2, 40, 3, 3, 3, 3], 1) == [1, 1, 39, 39, 2, 40, 3, 3, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 2, 40, 7, 3, 3, 3, 3, 1], 2) == [1, 1, 39, 2, 40, 7, 3, 3, 3, 3, 1]", "assert remove_kth_element([1, 1, 1, 39, 2, 40, 7, 3, 3, 3, 7], 2) == [1, 1, 39, 2, 40, 7, 3, 3, 3, 7]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 9) == [1, 2, 3, 4, 5, 6, 7, 8, 10]", "assert remove_kth_element([1, 2, 3, 4, 3, 4], 3) == [1, 2, 4, 3, 4]", "assert remove_kth_element([1, 40, 2, 3, 1, 4, 4, 1, 40], 2) == [1, 2, 3, 1, 4, 4, 1, 40]", "assert remove_kth_element([1, 2, 3, 0, 4, 5, 6, 7, 8, 9, 10, 8], 5) == [1, 2, 3, 0, 5, 6, 7, 8, 9, 10, 8]", "assert remove_kth_element([1, 1, 1, 2, 2, 40, 3, 0], 4) == [1, 1, 1, 2, 40, 3, 0]", "assert remove_kth_element([1, 2, 3, 0, 4, 5, 6, 6, 8, 9, 10, 8, 0], 5) == [1, 2, 3, 0, 5, 6, 6, 8, 9, 10, 8, 0]", "assert remove_kth_element([2, 1, 1, 2, 2, 3, 3], 1) == [1, 1, 2, 2, 3, 3]", "assert remove_kth_element([2, 1, 1, 2, 2, 40, 3, 3], 4) == [2, 1, 1, 2, 40, 3, 3]", "assert remove_kth_element([1, 1, 2, 2, 3, 3, 3], 4) == [1, 1, 2, 3, 3, 3]", "assert remove_kth_element([2, 1, 1, 0, 2, 2, 40, 3, 3, 2], 1) == [1, 1, 0, 2, 2, 40, 3, 3, 2]", "assert remove_kth_element([2, 1, 1, 2, 2, 40, 40, 3, 3], 1) == [1, 1, 2, 2, 40, 40, 3, 3]", "assert remove_kth_element([1, 40, 2, 3, 1, 4, 4, 1], 3) == [1, 40, 3, 1, 4, 4, 1]", "assert remove_kth_element([1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3], 1) == [1, 1, 39, 39, 30, 2, 40, 3, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 39, 8, 30, 2, 40, 3, 3, 3], 1) == [1, 1, 39, 39, 8, 30, 2, 40, 3, 3, 3]", "assert remove_kth_element([10, 20, 40, 50, 60, 40, 50], 3) == [10, 20, 50, 60, 40, 50]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9], 9) == [1, 2, 3, 4, 5, 6, 7, 8]", "assert remove_kth_element([1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3], 1) == [1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3]", "assert remove_kth_element([3, 1, 2, 3, 1, 4, 5], 3) == [3, 1, 3, 1, 4, 5]", "assert remove_kth_element([2, 1, 1, 2, 2, 2, 40, 3, 3, 3], 1) == [1, 1, 2, 2, 2, 40, 3, 3, 3]", "assert remove_kth_element([10, 0, 30, 40, 50, 4], 6) == [10, 0, 30, 40, 50]", "assert remove_kth_element([2, 6, 1, 2, 2, 40, 3, 3], 2) == [2, 1, 2, 2, 40, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3], 2) == [1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 9, 10, 5], 6) == [1, 2, 3, 4, 5, 7, 9, 10, 5]", "assert remove_kth_element([1, 1, 1, 39, 2, 40, 7, 3, 3, 3, 7], 7) == [1, 1, 1, 39, 2, 40, 3, 3, 3, 7]", "assert remove_kth_element([1, 40, 2, 3, 1, 4, 4, 1, 40], 1) == [40, 2, 3, 1, 4, 4, 1, 40]", "assert remove_kth_element([1, 1, 7, 1, 2, 39, 2, 40, 3, 3, 3], 2) == [1, 7, 1, 2, 39, 2, 40, 3, 3, 3]", "assert remove_kth_element([2, 7, 1, 1, 2, 2, 40, 3, 3], 1) == [7, 1, 1, 2, 2, 40, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 39, 8, 30, 2, 40, 3, 3, 3], 9) == [1, 1, 1, 39, 39, 8, 30, 2, 3, 3, 3]", "assert remove_kth_element([1, 4, 3, 4, 3, 4, 4], 6) == [1, 4, 3, 4, 3, 4]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 9, 10, 5, 10], 6) == [1, 2, 3, 4, 5, 7, 9, 10, 5, 10]", "assert remove_kth_element([1, 1, 1, 2, 39, 2, 40, 3, 3, 3], 5) == [1, 1, 1, 2, 2, 40, 3, 3, 3]", "assert remove_kth_element([10, 20, 40, 50, 60, 7, 40, 50, 50], 2) == [10, 40, 50, 60, 7, 40, 50, 50]", "assert remove_kth_element([1, 8, 2, 3, 2, 4, 30, 5, 6, 7, 8, 9, 10, 8, 30], 5) == [1, 8, 2, 3, 4, 30, 5, 6, 7, 8, 9, 10, 8, 30]", "assert remove_kth_element([3, 10, 0, 30, 40, 50, 4], 6) == [3, 10, 0, 30, 40, 4]", "assert remove_kth_element([2, 1, 1, 1, 2, 40, 3, 3], 4) == [2, 1, 1, 2, 40, 3, 3]", "assert remove_kth_element([10, 20, 40, 50, 60, 40, 50], 2) == [10, 40, 50, 60, 40, 50]", "assert remove_kth_element([1, 2, 3, 10, 4, 5], 5) == [1, 2, 3, 10, 5]", "assert remove_kth_element([1, 1, 1, 2, 2, 40, 3, 0], 7) == [1, 1, 1, 2, 2, 40, 0]", "assert remove_kth_element([2, 1, 1, 2, 2, 40, 40, 3, 3, 3], 7) == [2, 1, 1, 2, 2, 40, 3, 3, 3]", "assert remove_kth_element([1, 1, 1, 39, 2, 40, 7, 3, 3, 3, 7], 8) == [1, 1, 1, 39, 2, 40, 7, 3, 3, 7]", "assert remove_kth_element([2, 1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3, 1], 1) == [1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3, 1]", "assert remove_kth_element([1, 2, 3, 4, 4, 1], 1) == [2, 3, 4, 4, 1]", "assert remove_kth_element([1, 2, 3, 2, 4, 30, 5, 6, 7, 8, 9, 10, 8, 8], 5) == [1, 2, 3, 2, 30, 5, 6, 7, 8, 9, 10, 8, 8]", "assert remove_kth_element([1, 2, 3, 2, 2, 30, 7, 5, 6, 7, 8, 9, 10, 8, 2], 5) == [1, 2, 3, 2, 30, 7, 5, 6, 7, 8, 9, 10, 8, 2]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 9, 10, 5, 3, 10], 6) == [1, 2, 3, 4, 5, 7, 9, 10, 5, 3, 10]", "assert remove_kth_element([2, 1, 1, 2, 2, 40, 40, 3, 3], 9) == [2, 1, 1, 2, 2, 40, 40, 3]", "assert remove_kth_element([1, 40, 2, 3, 1, 4, 5, 1], 2) == [1, 2, 3, 1, 4, 5, 1]", "assert remove_kth_element([2, 60, 1, 1, 2, 2, 2, 40, 3, 3, 3], 1) == [60, 1, 1, 2, 2, 2, 40, 3, 3, 3]", "assert remove_kth_element([50, 2, 4, 5], 2) == [50, 4, 5]", "assert remove_kth_element([10, 10, 20, 40, 50, 60, 40, 50], 2) == [10, 20, 40, 50, 60, 40, 50]", "assert remove_kth_element([10, 20, 40, 50, 60, 19, 40, 50], 2) == [10, 40, 50, 60, 19, 40, 50]", "assert remove_kth_element([1, 1, 7, 1, 2, 39, 2, 40, 3, 3, 3], 3) == [1, 1, 1, 2, 39, 2, 40, 3, 3, 3]", "assert remove_kth_element([1, 2, 3, 2, 2, 30, 7, 5, 6, 6, 8, 9, 10, 8, 2], 5) == [1, 2, 3, 2, 30, 7, 5, 6, 6, 8, 9, 10, 8, 2]", "assert remove_kth_element([1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 3], 7) == [1, 1, 1, 39, 39, 30, 40, 3, 3, 3, 3]", "assert remove_kth_element([2, 1, 1, 1, 39, 39, 30, 2, 40, 3, 3, 3, 1], 8) == [2, 1, 1, 1, 39, 39, 30, 40, 3, 3, 3, 1]", "assert remove_kth_element([1, 1, 1, 39, 39, 30, 60, 2, 40, 3, 3, 3], 1) == [1, 1, 39, 39, 30, 60, 2, 40, 3, 3, 3]", "assert remove_kth_element([50, 4, 5], 2) == [50, 5]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 9, 10, 5, 10], 10) == [1, 2, 3, 4, 5, 6, 7, 9, 10, 10]", "assert remove_kth_element([1, 1, 1, 4, 39, 2, 40, 3, 3, 3, 4], 1) == [1, 1, 4, 39, 2, 40, 3, 3, 3, 4]", "assert remove_kth_element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 8) == [1, 2, 3, 4, 5, 6, 7, 9, 10]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function which given a matrix represented as a list of lists returns the max of the n'th column.\nassert max_of_nth([[5, 6, 7], [1, 3, 5], [8, 9, 19]], 2) == 19\nYour code should pass the test:\nassert max_of_nth([[5, 6, 7], [1, 3, 5], [8, 9, 19]], 2) == 19", "test_list": [ "assert max_of_nth([[5, 6, 7], [1, 3, 5], [8, 9, 19]], 2) == 19", "assert max_of_nth([[6, 7, 8], [2, 4, 6], [9, 10, 20]], 1) == 10", "assert max_of_nth([[7, 8, 9], [3, 5, 7], [10, 11, 21]], 1) == 11", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7]], 2) == -7", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-6, -9, -4], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-6, -8, -4], [-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -8, -4]], 1) == -2", "assert max_of_nth([[-6, -8, -4], [-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -8, -4], [-8, -3, -7]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 0) == -5", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-5, -2, -10]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7]], 0) == -5", "assert max_of_nth([[-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], -1) == -4", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-5, -2, -10], [-5, -2, -10]], 0) == -5", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-5, -2, -10], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-4, -2, -10], [-4, -2, -10], [-4, -2, -10], [-8, -3, -7], [-4, -2, -10], [-4, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-8, -3, -6], [-6, -9, -4], [-5, -1, -10]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-6, -9, -4], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-5, -2, -10]], 2) == -7", "assert max_of_nth([[-5, -2, -10], [-6, -9, -4], [-5, -2, -10]], 0) == -5", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4]], 0) == -5", "assert max_of_nth([[-5, -2, -10], [-6, -9, -4], [-5, -2, -10]], -1) == -4", "assert max_of_nth([[-5, -2, -10], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10], [-5, -2, -10]], 0) == -5", "assert max_of_nth([[-5, -2, -10]], 2) == -10", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10]], 0) == -5", "assert max_of_nth([[-8, -3, -7], [-5, -2, -10]], 2) == -7", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-6, -8, -4], [0, -2, -10], [0, -2, -10], [-8, -3, -7], [-6, -8, -4], [-8, -3, -7]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], -2) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7]], -2) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7]], -1) == -7", "assert max_of_nth([[-6, -9, -4], [-5, -2, -10]], -1) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10]], -3) == -5", "assert max_of_nth([[-6, -8, -4], [0, -2, -10], [0, -2, -10], [-8, -3, -7], [-6, -8, -4], [-8, -3, -7]], 0) == 0", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], -1) == -4", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-8, -3, -6], [-6, -9, -4], [-5, -1, -10]], 1) == -1", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-3, -7, -7], [-3, -7, -7], [-3, -7, -7], [-5, -2, -10]], 2) == -7", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10], [-5, -2, -10]], 0) == -5", "assert max_of_nth([[-4, -2, -10], [-4, -2, -10], [-4, -2, -10], [-8, -3, -7], [-4, -2, -10], [-4, -2, -10]], -1) == -7", "assert max_of_nth([[-3, -6, -7], [-3, -6, -7], [-3, -6, -7], [-3, -6, -7], [-3, -6, -7], [-5, -2, -10]], 2) == -7", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-5, -2, -10], [-5, -2, -10]], 2) == -7", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-6, -9, -4], [-5, -2, -10]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-8, -3, -7]], 0) == -5", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-8, -3, -6], [-6, -9, -4], [-5, -1, -10], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10], [-5, -2, -10]], 2) == -4", "assert max_of_nth([[-5, -2, -10, -2, -2], [-5, -2, -10, -2, -2], [-5, -2, -10, -2, -2], [-5, -2, -10, -2, -2]], -1) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-8, -3, -7]], 1) == -2", "assert max_of_nth([[-5, -2, -1, -10, -2, -2], [-5, -2, -1, -10, -2, -2], [-5, -2, -1, -10, -2, -2], [-5, -2, -1, -10, -2, -2]], -1) == -2", "assert max_of_nth([[-6, -9, -4]], 1) == -9", "assert max_of_nth([[-5, -2, -10], [-6, -9, -4], [-5, -2, -10]], 2) == -4", "assert max_of_nth([[-8, -3, -7]], -2) == -3", "assert max_of_nth([[-5, -8, -10], [-6, -9, -4]], 1) == -8", "assert max_of_nth([[-5, -8, -10]], 1) == -8", "assert max_of_nth([[-6, -8, -4], [-5, -3, -10], [-5, -3, -10], [-6, -8, -4], [-8, -3, -7], [-5, -3, -10]], 1) == -3", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -10], [-6, -9, -10]], 1) == -2", "assert max_of_nth([[-6, -9, -4, -4], [-6, -9, -4, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10]], 1) == -2", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-8, -3, -6], [-5, -1, -10]], 1) == -1", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-5, -2, -10], [-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-5, -2, -10]], 0) == -5", "assert max_of_nth([[-8, -3, -7]], -3) == -8", "assert max_of_nth([[-5, -2, -10, -2], [-5, -2, -10, -2], [-5, -2, -10, -2]], -3) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10]], 2) == -4", "assert max_of_nth([[-5, -2, -10, -2, -2], [-5, -2, -10, -2, -2], [-5, -2, -10, -2, -2]], -3) == -10", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-6, -9, -4], [-6, -9, -4]], 0) == -5", "assert max_of_nth([[-6, -8, -4], [-5, -3, -10], [-5, -3, -10], [-6, -8, -4], [-8, -3, -7]], 1) == -3", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10]], -1) == -4", "assert max_of_nth([[-5, -1, -10], [-8, -3, -6], [-5, -1, -10]], 1) == -1", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-6, -9, -4], [-5, -2, -10], [-8, -3, -7]], 0) == -5", "assert max_of_nth([[-4, -2, -9], [-4, -2, -9], [-4, -2, -9], [-8, -3, -7], [-4, -2, -9], [-4, -2, -9], [-4, -2, -9]], -1) == -7", "assert max_of_nth([[-5, -2, -10], [-8, -3, 1], [-6, -9, -4]], -2) == -2", "assert max_of_nth([[-4, -2, -10], [-4, -2, -10], [-4, -2, -10], [-6, -9, -4]], 1) == -2", "assert max_of_nth([[-8, -3, -5]], 2) == -5", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -7, -4], [-6, -7, -4], [-5, -2, -10], [-5, -2, -10]], 1) == -2", "assert max_of_nth([[-8, -3, -7]], 2) == -7", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-6, -9, -4], [-5, -1, -10], [-6, -9, -4]], 2) == -4", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-5, -2, -10], [-5, -2, -10]], -1) == -7", "assert max_of_nth([[-5, -1, -10], [-5, -1, -10], [-6, -9, -4], [-5, -1, -10], [-6, -9, -4]], 1) == -1", "assert max_of_nth([[-4, -2, -10], [-8, -3, -7], [-6, -9, -4], [-4, -2, -10], [-4, -2, -10], [-4, -2, -10], [-8, -3, -7], [-4, -2, -10]], 0) == -4", "assert max_of_nth([[-5, -2, -10]], -2) == -2", "assert max_of_nth([[-2, -2, -10], [-8, -3, -7], [-6, -9, -4], [-2, -2, -10], [-2, -2, -10], [-2, -2, -10]], 0) == -2", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10]], -1) == -10", "assert max_of_nth([[-8, -8, -7], [-6, -9, -4], [-4, -2, -10], [-4, -2, -10], [-8, -8, -7], [-4, -2, -10]], 0) == -4", "assert max_of_nth([[-5, -2, -10], [-5, -2, -10], [-8, -3, -7], [-6, -9, -4], [-8, -3, -7]], -1) == -4", "assert max_of_nth([[-5, -2, -10], [-8, -3, -7], [-6, -9, -4]], 0) == -5", "assert max_of_nth([[-8, -8, -5]], 2) == -5", "assert max_of_nth([[-5, -8, -10]], 0) == -5", "assert max_of_nth([[-5, -2, -10, -2, -2, -10], [-5, -2, -10, -2, -2, -10], [-5, -2, -10, -2, -2, -10], [-5, -2, -10, -2, -2, -10]], -1) == -10" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function which takes a list of lists, where each sublist has two elements, and returns a list of two lists where the first list has the first element of each sublist and the second one has the second.\nassert merge([['x', 'y'], ['a', 'b'], ['m', 'n']]) == [['x', 'a', 'm'], ['y', 'b', 'n']]\nYour code should pass the test:\nassert merge([['x', 'y'], ['a', 'b'], ['m', 'n']]) == [['x', 'a', 'm'], ['y', 'b', 'n']]", "test_list": [ "assert merge([['x', 'y'], ['a', 'b'], ['m', 'n']]) == [['x', 'a', 'm'], ['y', 'b', 'n']]", "assert merge([[1, 2], [3, 4], [5, 6], [7, 8]]) == [[1, 3, 5, 7], [2, 4, 6, 8]]", "assert merge([[[1], [2]], [[3], [4]], [[5], [6]], [[7], [8]]]) == [[[1], [3], [5], [7]], [[2], [4], [6], [8]]]", "assert merge([['x', 1], ['y', 2], [True, 'z']]) == [['x', 'y', True], [1, 2, 'z']]", "assert merge([[[1, 2, 3], [4, 5, 6]], [[7, 8, 9], [10, 11, 12]]]) == [[[1, 2, 3], [7, 8, 9]], [[4, 5, 6], [10, 11, 12]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f']], [[1, 2], [3, 4], [5, 6]]]", "assert merge([[['hello', 'world'], ['foo', 'bar']], [['baz', 'qux'], ['python', 'programming']]]) == [[['hello', 'world'], ['baz', 'qux']], [['foo', 'bar'], ['python', 'programming']]]", "assert merge([['y', 2], [True, 'z']]) == [['y', True], [2, 'z']]", "assert merge([[['a', 'b', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]]]) == [[['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b'], ['e', 'f']], [[1, 2], [3, 4], [1, 2], [5, 6]]]", "assert merge([[['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']]]) == [[['hello', 'world'], ['hello', 'world'], ['hello', 'world'], ['baz', 'qux']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming']]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f']], [[1, 2], [3, 4], [5, 6], [5, 6]]]", "assert merge([['y', 2], ['y', 2]]) == [['y', 'y'], [2, 2]]", "assert merge([[['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]]]) == [[['c', 'd'], ['a', 'b', 'b'], ['e', 'f']], [[3, 4], [1, 2], [5, 6]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f'], ['a', 'b']], [[1, 2], [3, 4], [5, 6], [5, 6], [1, 2]]]", "assert merge([['y', 2]]) == [['y'], [2]]", "assert merge([[['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['c', 'd'], [3, 4]]]) == [[['c', 'd'], ['a', 'b', 'b'], ['e', 'f'], ['c', 'd']], [[3, 4], [1, 2], [5, 6], [3, 4]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['a', 'b']], [[1, 2], [3, 4], [5, 6], [1, 2]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4, 4]], [['c', 'd'], [3, 4, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['c', 'd'], ['c', 'd'], ['e', 'f'], ['e', 'f']], [[1, 2], [3, 4, 4], [3, 4, 4], [5, 6], [5, 6]]]", "assert merge([[['a', 'b', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['c', 'd'], [3, 4]]]) == [[['a', 'b', 'b'], ['c', 'd'], ['e', 'f'], ['c', 'd']], [[1, 2], [3, 4], [5, 6], [3, 4]]]", "assert merge([['y', 2], [True, 'z'], [True, 'z']]) == [['y', True, True], [2, 'z', 'z']]", "assert merge([[['hello', 'world'], ['foo', 'bar']], [['baz', 'qux'], ['python', 'programming']], [['hello', 'world'], ['foo', 'bar']]]) == [[['hello', 'world'], ['baz', 'qux'], ['hello', 'world']], [['foo', 'bar'], ['python', 'programming'], ['foo', 'bar']]]", "assert merge([[['hello', 'world'], ['foo', 'bar']], [['hello', 'world'], ['foo', 'bar']]]) == [[['hello', 'world'], ['hello', 'world']], [['foo', 'bar'], ['foo', 'bar']]]", "assert merge([[['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']]]) == [[['hello', 'world'], ['hello', 'world'], ['baz', 'qux']], [['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming']]]", "assert merge([[['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 6, 2]]]) == [[['a', 'b'], ['a', 'b'], ['c', 'd'], ['e', 'f'], ['a', 'b']], [[1, 6, 2], [1, 6, 2], [3, 4], [5, 6], [1, 6, 2]]]", "assert merge([['y', 1], ['y', 1]]) == [['y', 'y'], [1, 1]]", "assert merge([['y', 2], ['y', 2], ['y', 2]]) == [['y', 'y', 'y'], [2, 2, 2]]", "assert merge([[['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['hello', 'world'], ['foo', 'bbar']]]) == [[['hello', 'world'], ['hello', 'world'], ['hello', 'world'], ['baz', 'qux'], ['hello', 'world']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar']]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 2]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f'], ['a', 'b'], ['a', 'b']], [[1, 2], [3, 4], [5, 6], [5, 6], [1, 2], [1, 2]]]", "assert merge([[True, 'z'], [True, 'z']]) == [[True, True], ['z', 'z']]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f'], ['e', 'f']], [[1, 2], [3, 4], [5, 6], [5, 6], [5, 6]]]", "assert merge([[['c', 'd'], [3, 4]], [['e', 'ff', 'f'], ['e', 'ff', 'f']], [['e', 'ff', 'f'], ['e', 'ff', 'f']], [['c', 'd'], [3, 4]]]) == [[['c', 'd'], ['e', 'ff', 'f'], ['e', 'ff', 'f'], ['c', 'd']], [[3, 4], ['e', 'ff', 'f'], ['e', 'ff', 'f'], [3, 4]]]", "assert merge([[['a', 'b', 'b'], [1]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1]]]) == [[['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b']], [[1], [3, 4], [1]]]", "assert merge([[['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar'], ['foo', 'bbar']]]) == [[['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['baz', 'qux'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar']]]", "assert merge([[['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]]]) == [[['a', 'b'], ['a', 'b'], ['c', 'd'], ['e', 'f'], ['a', 'b'], ['a', 'b']], [[1, 6, 2], [1, 6, 2], [3, 4], [5, 6], [1, 6, 2], [1, 6, 2]]]", "assert merge([[['hello', 'world'], ['foo', 'bar']], [['hello', 'world'], ['foo', 'bar']], [['hello', 'world'], ['foo', 'bar']]]) == [[['hello', 'world'], ['hello', 'world'], ['hello', 'world']], [['foo', 'bar'], ['foo', 'bar'], ['foo', 'bar']]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [[5, 6], [5, 6]], [[5, 6], [5, 6]], [[5, 6], [5, 6]], [['a', 'b'], [1, 2]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['c', 'd'], [5, 6], [5, 6], [5, 6], ['a', 'b'], ['a', 'b']], [[1, 2], [3, 4], [5, 6], [5, 6], [5, 6], [1, 2], [1, 2]]]", "assert merge([['yy', 1], ['yy', 1]]) == [['yy', 'yy'], [1, 1]]", "assert merge([['z', 2]]) == [['z'], [2]]", "assert merge([[['e', ''], [5, 6]], [['a', 'b', 'b'], [1, 2]], [['e', ''], [5, 6]]]) == [[['e', ''], ['a', 'b', 'b'], ['e', '']], [[5, 6], [1, 2], [5, 6]]]", "assert merge([['x', 1], [True, 'z']]) == [['x', True], [1, 'z']]", "assert merge([[['c', 'd'], [3, 4]], [['c', 'd'], [3, 4]]]) == [[['c', 'd'], ['c', 'd']], [[3, 4], [3, 4]]]", "assert merge([['y', 2], ['y', 2], ['y', 2], ['y', 2]]) == [['y', 'y', 'y', 'y'], [2, 2, 2, 2]]", "assert merge([[['a', 'b', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]]]) == [[['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b']], [[1, 2], [3, 4], [1, 2]]]", "assert merge([[['e', 'f'], [5, 6, 6]], [['a', 'b', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6, 6]], [['e', 'f'], [5, 6, 6]]]) == [[['e', 'f'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b'], ['e', 'f'], ['e', 'f']], [[5, 6, 6], [1, 2], [3, 4], [1, 2], [5, 6, 6], [5, 6, 6]]]", "assert merge([['x', 1], [True, 'z'], ['x', 1]]) == [['x', True, 'x'], [1, 'z', 1]]", "assert merge([[['hello', 'world'], ['foo', 'bar']], [['hello', 'world'], ['foo', 'bar']], [['hello', 'world'], ['foo', 'bar']], [['hello', 'world'], ['foo', 'bar']]]) == [[['hello', 'world'], ['hello', 'world'], ['hello', 'world'], ['hello', 'world']], [['foo', 'bar'], ['foo', 'bar'], ['foo', 'bar'], ['foo', 'bar']]]", "assert merge([[['baz', 'qux'], ['python', 'python', 'programming']], [['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'python', 'programming']]]) == [[['baz', 'qux'], ['hello', 'world'], ['hello', 'world'], ['baz', 'qux']], [['python', 'python', 'programming'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'python', 'programming']]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4, 4]], [['c', 'd'], [3, 4, 4]], [[5, 6], ['e', 'f']], [[5, 6], ['e', 'f']]]) == [[['a', 'b'], ['c', 'd'], ['c', 'd'], [5, 6], [5, 6]], [[1, 2], [3, 4, 4], [3, 4, 4], ['e', 'f'], ['e', 'f']]]", "assert merge([[['e', 'f'], [5, 6, 6]], [['a', 'b', 'b'], [1, 2]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6, 6]]]) == [[['e', 'f'], ['a', 'b', 'b'], ['a', 'b', 'b'], ['e', 'f']], [[5, 6, 6], [1, 2], [1, 2], [5, 6, 6]]]", "assert merge([['z', 2], ['z', 2]]) == [['z', 'z'], [2, 2]]", "assert merge([['y', 1], ['y', 1], ['y', 1]]) == [['y', 'y', 'y'], [1, 1, 1]]", "assert merge([[['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar'], ['foo', 'bbar']]]) == [[['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['baz', 'qux'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar']]]", "assert merge([[['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['c', 'd'], ['a', 'b', 'b'], ['e', 'f'], ['e', 'f']], [[3, 4], [1, 2], [5, 6], [5, 6]]]", "assert merge([[['c', 'd'], [3, 4, 4]], [['c', 'd'], [3, 4, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['c', 'd'], ['c', 'd'], ['e', 'f'], ['e', 'f']], [[3, 4, 4], [3, 4, 4], [5, 6], [5, 6]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f'], ['e', 'f'], ['e', 'f']], [[1, 2], [3, 4], [5, 6], [5, 6], [5, 6], [5, 6]]]", "assert merge([[['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']]]) == [[['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['baz', 'qux']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming']]]", "assert merge([['y', 2], [True, 'z'], [True, 'z'], ['y', 2]]) == [['y', True, True, 'y'], [2, 'z', 'z', 2]]", "assert merge([[['a', 'b', 'b'], [1]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1]], [['a', 'b', 'b'], [1]]]) == [[['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b'], ['a', 'b', 'b']], [[1], [3, 4], [1], [1]]]", "assert merge([[['a', 'b', 'b'], [1, 2]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]]]) == [[['a', 'b', 'b'], ['a', 'b', 'b'], ['e', 'f']], [[1, 2], [1, 2], [5, 6]]]", "assert merge([[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']]]) == [[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['baz', 'qux'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['python', 'programming'], ['foo', 'bbar', 'foo']]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4, 4]], [['c', 'd'], [3, 4, 4]], [[5, 6], ['e', 'f']], [[5, 6], ['e', 'f']], [['c', 'd'], [3, 4, 4]]]) == [[['a', 'b'], ['c', 'd'], ['c', 'd'], [5, 6], [5, 6], ['c', 'd']], [[1, 2], [3, 4, 4], [3, 4, 4], ['e', 'f'], ['e', 'f'], [3, 4, 4]]]", "assert merge([[['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']]]) == [[['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['baz', 'qux'], ['foo', 'bbar', 'bbar'], ['baz', 'qux'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['python', 'programming'], ['foo', 'bbar', 'bbar'], ['python', 'programming'], ['foo', 'bbar', 'bbar']]]", "assert merge([[['c', 'd'], [3, 4]], [['e', 'f'], [5, 5, 6]]]) == [[['c', 'd'], ['e', 'f']], [[3, 4], [5, 5, 6]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['c', 'd'], ['a', 'b']], [[1, 2], [3, 4], [1, 2]]]", "assert merge([[['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']]]) == [[['hello', 'world'], ['hello', 'world'], ['hello', 'world'], ['hello', 'world']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar']]]", "assert merge([[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['baz', 'qux'], ['python', 'programming', 'programming']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']]]) == [[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['baz', 'qux'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['python', 'programming', 'programming'], ['foo', 'bbar', 'foo']]]", "assert merge([[['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]]]) == [[['c', 'd'], ['a', 'b', 'b'], ['e', 'f'], ['e', 'f'], ['a', 'b', 'b'], ['e', 'f']], [[3, 4], [1, 2], [5, 6], [5, 6], [1, 2], [5, 6]]]", "assert merge([['y', 2], [True, 'z'], ['y', 2]]) == [['y', True, 'y'], [2, 'z', 2]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 10]], [['e', 'f'], [5, 10]], [['e', 'f'], [5, 10]], [['e', 'f'], [5, 10]], [['e', 'f'], [5, 10]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f'], ['e', 'f'], ['e', 'f'], ['e', 'f']], [[1, 2], [3, 4], [5, 10], [5, 10], [5, 10], [5, 10], [5, 10]]]", "assert merge([[['e', 'f'], [5, 6, 6]], [['a', 'b', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6, 6]], [['e', 'f'], [5, 6, 6]], [['a', 'b', 'b'], [1, 2]]]) == [[['e', 'f'], ['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b'], ['e', 'f'], ['e', 'f'], ['a', 'b', 'b']], [[5, 6, 6], [1, 2], [3, 4], [1, 2], [5, 6, 6], [5, 6, 6], [1, 2]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b'], [1, 2]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['c', 'd'], ['a', 'b'], ['a', 'b']], [[1, 2], [3, 4], [1, 2], [1, 2]]]", "assert merge([[['e', ''], [5, 6]], [['a', 'b', 'b'], [1, 2]], [['e', ''], [5, 6]], [['e', ''], [5, 6]]]) == [[['e', ''], ['a', 'b', 'b'], ['e', ''], ['e', '']], [[5, 6], [1, 2], [5, 6], [5, 6]]]", "assert merge([[['a', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['e', 'f'], ['e', 'f']], [[1, 2], [5, 6], [5, 6]]]", "assert merge([[['c', 'd'], [3, 4]], [['a', 'b', 'b'], [8, 2]], [['a', 'b', 'b'], [8, 2]], [['e', 'f'], [5, 6]]]) == [[['c', 'd'], ['a', 'b', 'b'], ['a', 'b', 'b'], ['e', 'f']], [[3, 4], [8, 2], [8, 2], [5, 6]]]", "assert merge([['y', 2], [True, 'yy'], [True, 'yy'], ['y', 2], ['y', 2]]) == [['y', True, True, 'y', 'y'], [2, 'yy', 'yy', 2, 2]]", "assert merge([[['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['c', 'd'], [3, 4]]]) == [[['c', 'd'], ['e', 'f'], ['c', 'd']], [[3, 4], [5, 6], [3, 4]]]", "assert merge([[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['baz', 'qux'], ['python', 'programming', 'programming']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']]]) == [[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['baz', 'qux'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['python', 'programming', 'programming'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']]]", "assert merge([[['e'], [5, 6]], [['a', 'b', 'b'], [1, 2]], [['e'], [5, 6]], [['e'], [5, 6]]]) == [[['e'], ['a', 'b', 'b'], ['e'], ['e']], [[5, 6], [1, 2], [5, 6], [5, 6]]]", "assert merge([[['hello', 'world'], ['foo', 'bar']]]) == [[['hello', 'world']], [['foo', 'bar']]]", "assert merge([[['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar']]]) == [[['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['baz', 'qux'], ['foo', 'bbar', 'bbar'], ['baz', 'qux'], ['foo', 'bbar', 'bbar']], [['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['foo', 'bbar', 'bbar'], ['python', 'programming'], ['foo', 'bbar', 'bbar'], ['python', 'programming'], ['foo', 'bbar', 'bbar']]]", "assert merge([[['a', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['e', 'f'], ['e', 'f'], ['e', 'f']], [[1, 2], [5, 6], [5, 6], [5, 6]]]", "assert merge([['x', 1], [True, 'z'], ['x', 1], [True, 'z']]) == [['x', True, 'x', True], [1, 'z', 1, 'z']]", "assert merge([[['a', 'b'], [1, 2, 1]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 2, 1]], [['a', 'b'], [1, 2, 1]], [['a', 'b'], [1, 2, 1]]]) == [[['a', 'b'], ['c', 'd'], ['e', 'f'], ['e', 'f'], ['a', 'b'], ['a', 'b'], ['a', 'b']], [[1, 2, 1], [3, 4], [5, 6], [5, 6], [1, 2, 1], [1, 2, 1], [1, 2, 1]]]", "assert merge([[['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['hello', 'world', 'hello'], ['foo', 'bbar']]]) == [[['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['baz', 'qux'], ['hello', 'world', 'hello']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar']]]", "assert merge([[['e', 'f'], [5, 6, 6]], [['a', 'b', 'b'], [1, 2]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6, 6]], [['a', 'b', 'b'], [1, 2]]]) == [[['e', 'f'], ['a', 'b', 'b'], ['a', 'b', 'b'], ['e', 'f'], ['a', 'b', 'b']], [[5, 6, 6], [1, 2], [1, 2], [5, 6, 6], [1, 2]]]", "assert merge([[['hello', 'world'], ['foo', 'bbar']], [['hello', 'world'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['hello', 'world'], ['foo', 'bbar']]]) == [[['hello', 'world'], ['hello', 'world'], ['baz', 'qux'], ['hello', 'world']], [['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar']]]", "assert merge([[['c', 'd'], [3, 4]]]) == [[['c', 'd']], [[3, 4]]]", "assert merge([[['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]], [['c', 'd'], [3, 4]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 6, 2]], [['c', 'd'], [3, 4]]]) == [[['a', 'b'], ['a', 'b'], ['c', 'd'], ['e', 'f'], ['a', 'b'], ['c', 'd']], [[1, 6, 2], [1, 6, 2], [3, 4], [5, 6], [1, 6, 2], [3, 4]]]", "assert merge([[['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['hello', 'world', 'hello'], ['foo', 'bbar']], [['hello', 'world', 'hello'], ['foo', 'bbar']]]) == [[['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello'], ['baz', 'qux'], ['hello', 'world', 'hello'], ['hello', 'world', 'hello']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar'], ['foo', 'bbar']]]", "assert merge([[['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['baz', 'qux'], ['python', 'programming', 'programming']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']]]) == [[['foo', 'bbar', 'foo'], ['baz', 'qux'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']], [['foo', 'bbar', 'foo'], ['python', 'programming', 'programming'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo'], ['foo', 'bbar', 'foo']]]", "assert merge([[['e', ''], [5, 6]], [['a', 'b', 'b'], [1, 2]]]) == [[['e', ''], ['a', 'b', 'b']], [[5, 6], [1, 2]]]", "assert merge([[['e'], [5, 6]], [['a', 'b', 'b'], [1, 2]], [['e'], [5, 6]], [['e'], [5, 6]], [['e'], [5, 6]]]) == [[['e'], ['a', 'b', 'b'], ['e'], ['e'], ['e']], [[5, 6], [1, 2], [5, 6], [5, 6], [5, 6]]]", "assert merge([[['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar'], ['foo', 'bbar']]]) == [[['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['baz', 'qux'], ['foo', 'bbar'], ['baz', 'qux'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar']]]", "assert merge([['y', 2], [True, 'z'], [True, 'z'], [True, 'z']]) == [['y', True, True, True], [2, 'z', 'z', 'z']]", "assert merge([[['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar'], ['foo', 'bbar']], [['baz', 'qux'], ['python', 'programming']], [['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar']]]) == [[['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['baz', 'qux'], ['foo', 'bbar'], ['baz', 'qux'], ['foo', 'bbar'], ['foo', 'bbar']], [['foo', 'bbar'], ['foo', 'bbar'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar'], ['python', 'programming'], ['foo', 'bbar'], ['foo', 'bbar']]]", "assert merge([[['a', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 2]]]) == [[['a', 'b'], ['e', 'f'], ['a', 'b']], [[1, 2], [5, 6], [1, 2]]]", "assert merge([[['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]], [['d'], [3, 4]], [['e', 'f'], [5, 6]], [['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]], [['a', 'b'], [1, 6, 2]]]) == [[['a', 'b'], ['a', 'b'], ['d'], ['e', 'f'], ['a', 'b'], ['a', 'b'], ['a', 'b']], [[1, 6, 2], [1, 6, 2], [3, 4], [5, 6], [1, 6, 2], [1, 6, 2], [1, 6, 2]]]", "assert merge([['e', 2], ['e', 2], [True, 'z'], [True, 'z'], [True, 'z']]) == [['e', 'e', True, True, True], [2, 2, 'z', 'z', 'z']]", "assert merge([[['a', 'b', 'b'], [1, 2]], [['c', 'd'], [3, 4]], [['a', 'b', 'b'], [1, 2]], [['e', 'f'], [5, 6]], [['c', 'd'], [3, 4]]]) == [[['a', 'b', 'b'], ['c', 'd'], ['a', 'b', 'b'], ['e', 'f'], ['c', 'd']], [[1, 2], [3, 4], [1, 2], [5, 6], [3, 4]]]", "assert merge([[['e', ''], [5, 6]], [['a', 'b', 'b'], [1, 2]], [['a', 'b', 'b'], [1, 2]]]) == [[['e', ''], ['a', 'b', 'b'], ['a', 'b', 'b']], [[5, 6], [1, 2], [1, 2]]]", "assert merge([[[1, 2, 3], [4, 5, 6]]]) == [[[1, 2, 3]], [[4, 5, 6]]]", "assert merge([[['c', 'd'], [3, 4]], [['c', 'd'], [3, 4]], [['c', 'd'], [3, 4]]]) == [[['c', 'd'], ['c', 'd'], ['c', 'd']], [[3, 4], [3, 4], [3, 4]]]", "assert merge([[['a', 'b'], [1, 2]], [['c', 'd'], [3, 4, 4, 4]], [['c', 'd'], [3, 4, 4, 4]], [[5, 6], ['e', 'f']], [[5, 6], ['e', 'f']], [['c', 'd'], [3, 4, 4, 4]], [['c', 'd'], [3, 4, 4, 4]]]) == [[['a', 'b'], ['c', 'd'], ['c', 'd'], [5, 6], [5, 6], ['c', 'd'], ['c', 'd']], [[1, 2], [3, 4, 4, 4], [3, 4, 4, 4], ['e', 'f'], ['e', 'f'], [3, 4, 4, 4], [3, 4, 4, 4]]]", "assert merge([['yy', 1]]) == [['yy'], [1]]", "assert merge([['y', 8], ['y', 8], ['y', 8], ['y', 8]]) == [['y', 'y', 'y', 'y'], [8, 8, 8, 8]]", "assert merge([[['e'], [5, 7]], [['a', 'b', 'b'], [1, 2]], [['e'], [5, 7]], [['e'], [5, 7]], [['e'], [5, 7]]]) == [[['e'], ['a', 'b', 'b'], ['e'], ['e'], ['e']], [[5, 7], [1, 2], [5, 7], [5, 7], [5, 7]]]", "assert merge([[['a', 'b'], [1, 2]], [['e', 'f'], [5, 6]]]) == [[['a', 'b'], ['e', 'f']], [[1, 2], [5, 6]]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the cumulative sum of all the values that are present in the given tuple list.\nassert cummulative_sum([(1, 3), (5, 6, 7), (2, 6)]) == 30\nYour code should pass the test:\nassert cummulative_sum([(1, 3), (5, 6, 7), (2, 6)]) == 30", "test_list": [ "assert cummulative_sum([(1, 3), (5, 6, 7), (2, 6)]) == 30", "assert cummulative_sum([(2, 4), (6, 7, 8), (3, 7)]) == 37", "assert cummulative_sum([(3, 5), (7, 8, 9), (4, 8)]) == 44", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 55", "assert cummulative_sum([(3, 5, -2, -4, 6), (-1, 2, -3)]) == 6", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 0, 0, 0)]) == 0", "assert cummulative_sum([(10, -5), (-3, -8, 2), (7, -2)]) == 1", "assert cummulative_sum([(10, 100, 1000), (10000, 100000, 1000000), (-1, -10, -100, -1000)]) == 1109999", "assert cummulative_sum([(1, 2, 3), (4, 5, 6), (7, 8, 9)]) == 45", "assert cummulative_sum([(1, 2), (3, 4), (5, 6), (7, 8), (9, 10), (11, 12), (13, 14), (15, 16), (17, 18), (19, 20)]) == 210", "assert cummulative_sum([(10, 20, 30), (40, 50, 60), (70, 80, 90), (100, 110, 120), (130, 140, 150), (160, 170, 180)]) == 1710", "assert cummulative_sum([]) == 0", "assert cummulative_sum([(1000000, 2000000, 3000000)]) == 6000000", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 165", "assert cummulative_sum([(10, -5), (7, -2)]) == 10", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 3, 4, 5, 6, 7, 8, 9, 10)]) == 108", "assert cummulative_sum([(180, 7, -2)]) == 185", "assert cummulative_sum([(10, -5, -5), (10, -5), (7, -2)]) == 10", "assert cummulative_sum([(1, 2, 3, 3, 5, 6, 7, 8, 9, 10)]) == 54", "assert cummulative_sum([(10, -5, -5), (10, -4), (7, -2)]) == 11", "assert cummulative_sum([(1000000, 1999999), (1000000, 2000000, 3000000)]) == 8999999", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 0, 0, 1, 0)]) == 1", "assert cummulative_sum([(10, -4), (7, -2, 7)]) == 18", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0)]) == 20", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0)]) == 20", "assert cummulative_sum([(10, -4), (7, -2, 7), (7, -2, 7)]) == 30", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 120", "assert cummulative_sum([(1, 2, 3), (4, 5, 6), (7, 8, 9, 9)]) == 54", "assert cummulative_sum([(7, 9, 9), (1, 2, 3, 1), (7, 8, 9, 9)]) == 65", "assert cummulative_sum([(10, -5, -5), (10, -5), (7, -2), (10, -5)]) == 15", "assert cummulative_sum([(1, 2, 3), (4, 5, 6), (170, 7, 8, 9), (7, 8, 140, 9)]) == 379", "assert cummulative_sum([(10, -5)]) == 5", "assert cummulative_sum([(1, 2), (3, 4), (5, 6), (7, 8), (9, 10), (18, 12), (13, 14), (15, 16), (17, 18), (19, 20)]) == 217", "assert cummulative_sum([(3, 5, -2, -4, 6, -4), (3, 5, -2, -4, 6), (-1, 2, -3)]) == 10", "assert cummulative_sum([(1, 2, 3, 1), (7, 9, 9, 9), (7, 8, 9, 9)]) == 74", "assert cummulative_sum([(1, 2, 3), (7, 80, 8, 9), (5, 6), (7, 8, 9)]) == 145", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 110", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0)]) == 0", "assert cummulative_sum([(10, 20, 30), (40, 50, 60), (70, 80, 90), (70, 80, 90), (100, 110, 120), (130, 140, 150), (160, 170, 180)]) == 1950", "assert cummulative_sum([(10, -5), (7, 140), (7, -2), (10, -5)]) == 162", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0)]) == 0", "assert cummulative_sum([(7, 9, 9, 9, 9), (7, 8, 9, 9)]) == 76", "assert cummulative_sum([(10, 20, 30), (40, 50, 60), (70, 80, 90), (70, 80, 90), (100, 110, 119), (130, 140, 150), (160, 170, 180, 160)]) == 2109", "assert cummulative_sum([(10, -4), (7, -2, 7), (-2, 7), (-2, 7)]) == 28", "assert cummulative_sum([(1, 2), (3, 4), (5, 6), (7, 8), (9, 10), (11, 12), (13, 14), (15, 16), (18, 17, 18), (19, 20)]) == 228", "assert cummulative_sum([(10, -5, -5), (9, -6, -5), (7, -2)]) == 3", "assert cummulative_sum([(10, -5, -5), (10, -4), (-1, 7, 8, -2), (-1, 7, 8, -2)]) == 30", "assert cummulative_sum([(1, 2, 3), (170, 7, 8, 9), (7, 8, 140, 9)]) == 364", "assert cummulative_sum([(160, 2000001, 1000000, 2000000, 3000000), (2000001, 1000000, 120, 3000000), (2000001, 1000000, 2000000, 3000000), (2000000, 3000000)]) == 27000283", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0)]) == 0", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 163", "assert cummulative_sum([(10, -5), (7, -2), (7, -2)]) == 15", "assert cummulative_sum([(10, -5, -5), (10, -5), (7, -2, 6, -2), (7, -2, -2), (10, -5), (10, -5, -5), (10, -5, -5)]) == 22", "assert cummulative_sum([(3, 5, -2, -4, 6), (-1, 3000000, -3)]) == 3000004", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0, 0)]) == 20", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 6), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 161", "assert cummulative_sum([(10, -5, -5), (10, -5), (7, -2), (10, -5), (-5, -5)]) == 5", "assert cummulative_sum([(3, 5, -2, -4, 6), (3, 5, -2, -4, 6)]) == 16", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 7, 9, 10, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 184", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 167", "assert cummulative_sum([(10, -5), (7, 140), (10, -5)]) == 157", "assert cummulative_sum([(1, 2), (3, 4), (5, 6), (7, 8), (9, 10), (11, 12), (13, 14), (15, 16), (18, 17, 18), (19, 20), (3, 4)]) == 235", "assert cummulative_sum([(1, 2), (3, 4), (5, 6), (7, 8), (9, 10), (11, 11), (13, 14), (15, 16), (17, 18), (19, 20), (11,)]) == 220", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4)]) == 112", "assert cummulative_sum([(-1, 7, 8, -2), (-1, 7, 8, -2)]) == 24", "assert cummulative_sum([(1, 2, 3), (1, 3), (4, 5, 6), (7, 8, 9, 9)]) == 58", "assert cummulative_sum([(0, 0, 0), (0, 0, 20, 0, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0, 0), (0, 0, 0, 0, 0, 0)]) == 40", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 8, 9, 10), (2, 1, 2, 3, 4, 5, 6, 8, 9, 10), (1, 2, 3, 4, 5, 6, 8, 9, 10)]) == 146", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10, 9), (1, 3, 4, 5, 6, 7, 8, 9, 10, 9), (1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4)]) == 295", "assert cummulative_sum([(10, -5, -5), (9, -6, -5), (9, -7, -5), (7, -2)]) == 0", "assert cummulative_sum([(1, 2, 3), (7, 8, 140, 9), (7, 8, 140, 9)]) == 334", "assert cummulative_sum([(1, 2, 3), (7, 80, 8, 9), (100000, 6)]) == 100116", "assert cummulative_sum([(10, -4), (10,), (7, -2, 7)]) == 28", "assert cummulative_sum([(10, 20, 30), (40, 50, 60), (160, 170), (70, 80, 90), (100, 110, 120), (130, 140, 150), (160, 170, 180)]) == 2040", "assert cummulative_sum([(1, 2, 3, 4, 6, 7, 8, 9, 10, 4), (1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4)]) == 166", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0)]) == 20", "assert cummulative_sum([(3, 5, -2, -4, 6)]) == 8", "assert cummulative_sum([(3, 5, -2, -4, 6, -4)]) == 4", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 18, 9, 10)]) == 173", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10, 9), (1, 3, 4, 5, 6, 7, 8, 9, 10, 9), (1, 3, 4, 5, 160, 6, 7, 8, 9, 40, 10), (1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4), (1, 3, 4, 5, 6, 7, 8, 9, 10, 9)]) == 610", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 3, 4, 5, 6, 7, 8, 9, 10)]) == 269", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)]) == 175", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0, 0)]) == 0", "assert cummulative_sum([(3, 5, -2, -4, 6, 3), (3, 5, -4, 6), (3, 5, -2, -4, 6)]) == 29", "assert cummulative_sum([(1, 2, 3), (1, 3), (4, 5, 6), (3,), (7, 8, 9, 9), (4, 5, 6)]) == 76", "assert cummulative_sum([(10, -4), (10,), (7, -2, 7), (10,)]) == 38", "assert cummulative_sum([(10, -4), (7, -2, 7), (7, 7), (10, -4)]) == 38", "assert cummulative_sum([(180, -2)]) == 178", "assert cummulative_sum([(180, -2), (180, -2)]) == 356", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0)]) == 0", "assert cummulative_sum([(0, 0, 0), (0, 20, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0)]) == 40", "assert cummulative_sum([(10, -5, -5), (10, -5), (9, 10, -5, -5), (7, -2), (10, -5)]) == 24", "assert cummulative_sum([(10, -5, -5), (10, -4), (-1, 7, 8, -2)]) == 18", "assert cummulative_sum([(7, 9, 9), (1, 2, 3, 1)]) == 32", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 7, 7, 9, 10, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10)]) == 249", "assert cummulative_sum([(1, 2, 3, 1), (7, 9, 9, 9, 9), (7, 8, 9, 9)]) == 83", "assert cummulative_sum([(10, -5, -5), (9, -6, -5), (9, -7, -5), (6, -2), (9, -6, -5)]) == -3", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0, 0, 0), (0, 0, 0, 0, 0, 0)]) == 20", "assert cummulative_sum([(4, 5, 6), (7, 8, 9, 9)]) == 48", "assert cummulative_sum([(-1, 7, 8, -2), (-1, 13, 7, 8, -2), (-1, 7, 8, -2)]) == 49", "assert cummulative_sum([(1, 2, 3)]) == 6", "assert cummulative_sum([(-1, 7, 8, -2), (-1, 13, 7, 8, -2), (-1, 7, 8, -2, 8), (-1, 7, 8, -2)]) == 69", "assert cummulative_sum([(0, 0, 0), (0, 0, 20, 0, 0), (0, 0, 0, 40, 0), (0, 0, 20, 0), (0, 0, 0, 0, 0, 0)]) == 80", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0)]) == 0", "assert cummulative_sum([(3, 5, -2, -4, 6, -4), (3, 5, -2, -4, 6), (-1, 2, -3), (3, 5, -2, -4, 6, -4), (3, 5, -2, -4, 6)]) == 22", "assert cummulative_sum([(10, 20, 30), (40, 50, 60), (70, 80, 90), (100, 110, 120), (130, 140, 150)]) == 1200", "assert cummulative_sum([(10, -4), (), (7, -2, 7), (10,)]) == 28", "assert cummulative_sum([(0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0)]) == 0", "assert cummulative_sum([(1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 3, 4, 5, 6, 7, 8, 9, 10), (1, 2, 3, 4, 5, 6, 7, 18, 9, 10)]) == 171", "assert cummulative_sum([(0, 0, 0), (0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0, 0), (0, 0, 0, 0)]) == 0", "assert cummulative_sum([(0, 0, 0, 0, 0), (0, 0, 0), (0, 0, 0, 0), (0, 0, 180, 20, 0), (0, 0, 0, 0, 0, 0, 0), (0, 0, 0, 0, 0, 0)]) == 200", "assert cummulative_sum([(180, -2), (180, -2), (180, -2)]) == 534", "assert cummulative_sum([(1, 2, 3, 4, 5, 6, 8, 8, 9, 10, 4)]) == 60" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function which takes a tuple of tuples and returns the average value for each tuple as a list.\nassert average_tuple(((10, 10, 10, 12), (30, 45, 56, 45), (81, 80, 39, 32), (1, 2, 3, 4)))==[30.5, 34.25, 27.0, 23.25]\nYour code should pass the test:\nassert average_tuple(((10, 10, 10, 12), (30, 45, 56, 45), (81, 80, 39, 32), (1, 2, 3, 4)))==[30.5, 34.25, 27.0, 23.25]", "test_list": [ "assert average_tuple(((10, 10, 10, 12), (30, 45, 56, 45), (81, 80, 39, 32), (1, 2, 3, 4)))==[30.5, 34.25, 27.0, 23.25]", "assert average_tuple(((1, 1, -5), (30, -15, 56), (81, -60, -39), (-10, 2, 3)))== [25.5, -18.0, 3.75]", "assert average_tuple( ((100, 100, 100, 120), (300, 450, 560, 450), (810, 800, 390, 320), (10, 20, 30, 40)))==[305.0, 342.5, 270.0, 232.5]", "assert average_tuple(((),)) == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function which takes two tuples of the same length and performs the element wise modulo.\nassert tuple_modulo((10, 4, 5, 6), (5, 6, 7, 5)) == (0, 4, 5, 1)\nYour code should pass the test:\nassert tuple_modulo((10, 4, 5, 6), (5, 6, 7, 5)) == (0, 4, 5, 1)", "test_list": [ "assert tuple_modulo((10, 4, 5, 6), (5, 6, 7, 5)) == (0, 4, 5, 1)", "assert tuple_modulo((11, 5, 6, 7), (6, 7, 8, 6)) == (5, 5, 6, 1)", "assert tuple_modulo((12, 6, 7, 8), (7, 8, 9, 7)) == (5, 6, 7, 1)", "assert tuple_modulo((), ()) == ()", "assert tuple_modulo((0, 0, 0), (1, 1, 1)) == (0, 0, 0)", "assert tuple_modulo((1000000000, 1000000000), (999999999, 999999999)) == (1, 1)", "assert tuple_modulo((2, 5, 8, 11), (2, 3, 4, 5)) == (0, 2, 0, 1)", "assert tuple_modulo((10, 20, 30, 40, 50), (5, 10, 15, 20, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((2, 5, 8, 11), (2, 5, 8, 11)) == (0, 0, 0, 0)", "assert tuple_modulo((10, 20, 30, 40, 50), (10, 20, 30, 40, 50)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 10, 15, 20, 25), (5, 10, 15, 20, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((10, 20, 30, 40, 49), (10, 20, 30, 40, 50)) == (0, 0, 0, 0, 49)", "assert tuple_modulo((5, 10, 15, 20, 25), (5, 11, 15, 20, 25)) == (0, 10, 0, 0, 0)", "assert tuple_modulo((6, 11, 5, 20, 25), (5, 11, 15, 20, 25)) == (1, 0, 5, 0, 0)", "assert tuple_modulo((1000000001, 1000000000, 1000000000), (1000000000, 1000000000, 1000000000)) == (1, 0, 0)", "assert tuple_modulo((0, 0, 0), (1, 4, 1)) == (0, 0, 0)", "assert tuple_modulo((5, 10, 15, 20, 24), (5, 11, 15, 20, 25)) == (0, 10, 0, 0, 24)", "assert tuple_modulo((5, 10, 15, 20, 24), (5, 11, 15, 20, 50)) == (0, 10, 0, 0, 24)", "assert tuple_modulo((2, 5, 8, 20), (2, 5, 8, 11)) == (0, 0, 0, 9)", "assert tuple_modulo((5, 11, 10, 20, 25), (5, 11, 10, 20, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 10, 15, 20, 24), (5, 11, 50, 20, 50)) == (0, 10, 15, 0, 24)", "assert tuple_modulo((1000000001, 1000000000, 1000000000), (1000000001, 1000000000, 1000000000)) == (0, 0, 0)", "assert tuple_modulo((2, 3, 1000000001, 4, 5), (2, 3, 1000000001, 4, 5)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 10, 15, 20, 24), (5, 10, 15, 20, 24)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((1, 0, 1), (1, 1, 1)) == (0, 0, 0)", "assert tuple_modulo((11, 5, 20, 25, 25), (5, 11, 15, 20, 25)) == (1, 5, 5, 5, 0)", "assert tuple_modulo((5, 11, 10, 1000000001, 25), (5, 11, 10, 20, 25)) == (0, 0, 0, 1, 0)", "assert tuple_modulo((1, 4, 1), (1, 4, 1)) == (0, 0, 0)", "assert tuple_modulo((10, 20, 30, 40), (10, 20, 30, 40)) == (0, 0, 0, 0)", "assert tuple_modulo((11, 5, 20, 25, 25, 5), (5, 11, 15, 2, 20, 25)) == (1, 5, 5, 1, 5, 5)", "assert tuple_modulo((2, 5, 8, 11), (1000000001, 5, 8, 11)) == (2, 0, 0, 0)", "assert tuple_modulo((10, 30, 30, 40, 49), (10, 20, 30, 40, 50)) == (0, 10, 0, 0, 49)", "assert tuple_modulo((2, 8, 11, 5), (2, 3, 4, 5)) == (0, 2, 3, 0)", "assert tuple_modulo((5, 11, 15, 20, 50), (5, 11, 15, 20, 50)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((11, 5, 20, 25, 25, 5), (5, 12, 11, 15, 2, 20)) == (1, 5, 9, 10, 1, 5)", "assert tuple_modulo((6, 11, 5, 20, 25), (6, 11, 5, 20, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 15, 2, 20, 25, 11), (5, 11, 15, 2, 20, 25, 11)) == (0, 0, 0, 0, 0, 0, 0)", "assert tuple_modulo((0, 0, 0, 0), (1, 4, 2, 1)) == (0, 0, 0, 0)", "assert tuple_modulo((10, 20, 30, 40, 50), (5, 10, 15, 12, 25)) == (0, 0, 0, 4, 0)", "assert tuple_modulo((5, 10, 15, 20, 24), (5, 10, 15, 20, 30)) == (0, 0, 0, 0, 24)", "assert tuple_modulo((5, 10, 15, 20, 25), (10, 20, 30, 40, 50)) == (5, 10, 15, 20, 25)", "assert tuple_modulo((5, 1, 4, 4, 1), (5, 1, 4, 4, 1)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((2, 3, 4, 5, 3), (2, 3, 4, 5, 3)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((1000000001, 1000000000, 1000000000, 1000000000), (1000000001, 1000000000, 1000000000, 1000000000)) == (0, 0, 0, 0)", "assert tuple_modulo((10, 30, 30, 40, 49), (10, 30, 30, 40, 49)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 50, 20, 50), (5, 11, 50, 20, 50)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((11, 5, 20, 25, 25, 5, 5), (11, 5, 20, 25, 25, 5, 5)) == (0, 0, 0, 0, 0, 0, 0)", "assert tuple_modulo((1000000001, 1000000001, 1000000000, 1000000000), (1000000001, 1000000000, 1000000000, 1000000000)) == (0, 1, 0, 0)", "assert tuple_modulo((10, 2, 19, 30, 40, 50), (10, 2, 20, 30, 40, 50)) == (0, 0, 19, 0, 0, 0)", "assert tuple_modulo((6, 5, 11, 15, 5, 2, 20, 25, 11), (6, 5, 11, 15, 5, 2, 20, 25, 11)) == (0, 0, 0, 0, 0, 0, 0, 0, 0)", "assert tuple_modulo((10, 2, 19, 30, 40, 50), (10, 2, 19, 30, 40, 50)) == (0, 0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 10, 1000000001, 25), (5, 11, 9, 20, 25)) == (0, 0, 1, 1, 0)", "assert tuple_modulo((8, 5, 8, 11), (2, 5, 8, 11)) == (0, 0, 0, 0)", "assert tuple_modulo((10, 20, 31, 40), (10, 20, 30, 40)) == (0, 0, 1, 0)", "assert tuple_modulo((9, 5, 8, 11), (2, 5, 8, 11)) == (1, 0, 0, 0)", "assert tuple_modulo((2, 8, 11, 5, 8), (2, 3, 3, 4, 5)) == (0, 2, 2, 1, 3)", "assert tuple_modulo((10, 50, 2, 18, 40, 50), (10, 2, 20, 30, 40, 50)) == (0, 0, 2, 18, 0, 0)", "assert tuple_modulo((10, 20, 30, 40), (9, 20, 30, 40)) == (1, 0, 0, 0)", "assert tuple_modulo((6, 5, 20, 25, 20), (5, 11, 15, 20, 25)) == (1, 5, 5, 5, 20)", "assert tuple_modulo((5, 11, 15, 20, 25), (5, 11, 15, 20, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 10, 1000000001, 25), (11, 10, 20, 25, 20)) == (5, 1, 10, 1, 5)", "assert tuple_modulo((1, 4, 1), (1, 5, 30)) == (0, 4, 1)", "assert tuple_modulo((10, 2, 20, 30, 40, 50), (10, 50, 2, 18, 40, 50)) == (0, 2, 0, 12, 0, 0)", "assert tuple_modulo((0, 1, 0, 0), (1, 1, 20, 1)) == (0, 0, 0, 0)", "assert tuple_modulo((1, 3, 1), (1, 5, 30)) == (0, 3, 1)", "assert tuple_modulo((11, 5, 20, 25, 25, 5, 5), (11, 5, 20, 25, 9, 5, 5)) == (0, 0, 0, 0, 7, 0, 0)", "assert tuple_modulo((2, 11, 5), (2, 11, 5)) == (0, 0, 0)", "assert tuple_modulo((10, 40, 10), (10, 30, 40)) == (0, 10, 10)", "assert tuple_modulo((5, 10, 15, 12, 25), (5, 10, 15, 12, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 15, 11, 50), (5, 11, 15, 20, 50)) == (0, 0, 0, 11, 0)", "assert tuple_modulo((10, 20, 30, 50), (10, 20, 31, 40)) == (0, 0, 30, 10)", "assert tuple_modulo((2, 3, 4, 5), (2, 5, 8, 11)) == (0, 3, 4, 5)", "assert tuple_modulo((2, 5, 8, 20), (2, 5, 8, 20)) == (0, 0, 0, 0)", "assert tuple_modulo((1000000000, 1000000000), (1000000000, 1000000000)) == (0, 0)", "assert tuple_modulo((5, 11, 15, 20, 50, 11), (5, 11, 15, 20, 50, 11)) == (0, 0, 0, 0, 0, 0)", "assert tuple_modulo((1, 5, 30), (1, 5, 30)) == (0, 0, 0)", "assert tuple_modulo((10, 2, 19, 30, 40, 50, 2), (10, 2, 20, 30, 50, 40, 40)) == (0, 0, 19, 0, 40, 10, 2)", "assert tuple_modulo((10, 20, 30, 40, 20), (10, 20, 30, 40, 50)) == (0, 0, 0, 0, 20)", "assert tuple_modulo((5, 11, 15, 20, 25, 20), (5, 11, 15, 20, 25, 20)) == (0, 0, 0, 0, 0, 0)", "assert tuple_modulo((9, 2, 3, 4, 5), (2, 5, 8, 11, 5)) == (1, 2, 3, 4, 0)", "assert tuple_modulo((2, 3, 4, 24), (2, 3, 4, 5)) == (0, 0, 0, 4)", "assert tuple_modulo((2, 3, 4, 5, 3), (1, 3, 4, 5, 3)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((2, 3, 4, 5), (2, 3, 4, 5)) == (0, 0, 0, 0)", "assert tuple_modulo((2, 3, 1000000001, 18, 5), (2, 3, 1000000001, 4, 5)) == (0, 0, 0, 2, 0)", "assert tuple_modulo((10, 20, 30, 40, 49), (10, 20, 30, 40, 49)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((9, 20, 30, 40), (9, 20, 30, 40)) == (0, 0, 0, 0)", "assert tuple_modulo((5, 11, 15, 20, 50, 11), (6, 11, 15, 20, 50, 11)) == (5, 0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 10, 1000000002, 25), (5, 11, 10, 1000000002, 25)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((11,), (10,)) == (1,)", "assert tuple_modulo((6, 5, 11, 15, 5, 2, 20, 11), (6, 5, 11, 15, 5, 2, 20, 11)) == (0, 0, 0, 0, 0, 0, 0, 0)", "assert tuple_modulo((1000000000, 1000000000), (1000000000, 40)) == (0, 0)", "assert tuple_modulo((2, 3, 4, 5, 4), (2, 3, 4, 5, 4)) == (0, 0, 0, 0, 0)", "assert tuple_modulo((10, 2, 19, 30, 40, 2, 50), (10, 2, 20, 30, 50, 40, 40)) == (0, 0, 19, 0, 40, 2, 10)", "assert tuple_modulo((10, 20, 8, 40), (10, 20, 31, 40)) == (0, 0, 8, 0)", "assert tuple_modulo((11, 5, 20, 25, 25), (3, 11, 15, 20, 25)) == (2, 5, 5, 5, 0)", "assert tuple_modulo((1000000002, 1000000000, 1000000000), (1000000001, 1000000000, 1000000000)) == (1, 0, 0)", "assert tuple_modulo((11, 15, 5, 20, 25, 25), (11, 15, 5, 20, 25, 25)) == (0, 0, 0, 0, 0, 0)", "assert tuple_modulo((5, 11, 10, 20, 25), (5, 10, 10, 20, 25)) == (0, 1, 0, 0, 0)", "assert tuple_modulo((5, 11, 15, 20, 25, 25), (5, 11, 15, 20, 25, 25)) == (0, 0, 0, 0, 0, 0)", "assert tuple_modulo((9, 2, 4, 4, 5), (9, 2, 3, 4, 5)) == (0, 0, 1, 0, 0)", "assert tuple_modulo((10, 2, 19, 25, 40, 50), (10, 2, 20, 30, 40, 50)) == (0, 0, 19, 25, 0, 0)", "assert tuple_modulo((5, 11, 15, 20, 25, 20), (5, 11, 15, 31, 25, 20)) == (0, 0, 0, 20, 0, 0)", "assert tuple_modulo((1, 5, 30), (1, 6, 30)) == (0, 5, 0)", "assert tuple_modulo((2, 3, 4, 24), (31, 3, 4, 5)) == (2, 0, 0, 4)", "assert tuple_modulo((10, 2, 19, 25, 40, 50), (10, 2, 19, 25, 40, 50)) == (0, 0, 0, 0, 0, 0)", "assert tuple_modulo((10, 30, 40), (10, 40, 10)) == (0, 30, 0)", "assert tuple_modulo((2, 1000000001, 4, 5), (2, 1000000001, 4, 5)) == (0, 0, 0, 0)", "assert tuple_modulo((1000000000, 1000000000, 1000000000), (1000000000, 1000000000, 1000000000)) == (0, 0, 0)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to divide two lists element wise.\nassert div_list([4,5,6],[1, 2, 3])==[4.0,2.5,2.0]\nYour code should pass the test:\nassert div_list([4,5,6],[1, 2, 3])==[4.0,2.5,2.0]", "test_list": [ "assert div_list([4,5,6],[1, 2, 3])==[4.0,2.5,2.0]", "assert div_list([3,2],[1,4])==[3.0, 0.5]", "assert div_list([90,120],[50,70])==[1.8, 1.7142857142857142]", "assert div_list([0, 0], [50, 70]) == [0.0, 0.0]", "assert div_list([-10, 10], [5, -2]) == [-2.0, -5.0]", "assert div_list([-5, -8, 12], [2, -4, 3]) == [-2.5, 2.0, 4.0]", "assert div_list([50, 70], [50, 70]) == [1.0, 1.0]", "assert div_list([50, 10, 70], [50, 10, 70]) == [1.0, 1.0, 1.0]", "assert div_list([50, 70, 70], [50, 70, 70]) == [1.0, 1.0, 1.0]", "assert div_list([50, 70, 70, 70, 50, 70], [50, 70, 70, 70, 50, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -5, -8, 12, -8], [2, -5, -8, 12, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-4, 5, 70], [-4, 5, 70]) == [1.0, 1.0, 1.0]", "assert div_list([50, 70, 50], [50, 70, 50]) == [1.0, 1.0, 1.0]", "assert div_list([5, 70], [5, 70]) == [1.0, 1.0]", "assert div_list([2, -5, -8, 12, -7, -8], [2, -5, -8, 12, -7, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([0, 1], [50, 70]) == [0.0, 0.014285714285714285]", "assert div_list([51, 70, 50], [51, 70, 50]) == [1.0, 1.0, 1.0]", "assert div_list([51, 70, -8], [51, 70, -8]) == [1.0, 1.0, 1.0]", "assert div_list([5, 51, 50], [5, 51, 50]) == [1.0, 1.0, 1.0]", "assert div_list([51, 70, 50, 50], [51, 70, 50, 50]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([50, 10, 70, 70], [50, 10, 70, 70]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -5, -8, -5, 12, -8], [2, -5, -8, -5, 12, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([50, 10], [50, 10]) == [1.0, 1.0]", "assert div_list([5], [5]) == [1.0]", "assert div_list([50, 70, 50, 50], [50, 70, 50, 50]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([5, 51, 51], [5, 51, 51]) == [1.0, 1.0, 1.0]", "assert div_list([5, 70, 70], [5, 70, 70]) == [1.0, 1.0, 1.0]", "assert div_list([10, 70, 70], [10, 70, 70]) == [1.0, 1.0, 1.0]", "assert div_list([51, -4, -7, 50], [51, -4, -7, 50]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([5, 51, 49], [5, 51, 49]) == [1.0, 1.0, 1.0]", "assert div_list([5, 4, 51, 49], [5, 4, 51, 49]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -5, -8, -5, 12, -8, -8], [2, -5, -8, -5, 12, -8, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([11], [11]) == [1.0]", "assert div_list([50, 70, 70, 70], [50, 70, 70, 70]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([50, -7, 70, 50, 70], [50, -7, 70, 50, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([5, 70, 70, 70], [5, 70, 70, 70]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([5, -2], [5, -2]) == [1.0, 1.0]", "assert div_list([12], [12]) == [1.0]", "assert div_list([1, 1], [1, 1]) == [1.0, 1.0]", "assert div_list([11, 11], [11, 11]) == [1.0, 1.0]", "assert div_list([50, 70, 70, 70, 70, 50, 70, 50], [50, 70, 70, 70, 70, 50, 70, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-2, -2], [-2, -2]) == [1.0, 1.0]", "assert div_list([11, 11, 11], [11, 11, 11]) == [1.0, 1.0, 1.0]", "assert div_list([1, 50, 50], [1, 50, 50]) == [1.0, 1.0, 1.0]", "assert div_list([-8, 12], [-8, 12]) == [1.0, 1.0]", "assert div_list([-2], [-2]) == [1.0]", "assert div_list([3, -8, 12], [3, -8, 12]) == [1.0, 1.0, 1.0]", "assert div_list([12, 12], [12, 12]) == [1.0, 1.0]", "assert div_list([51, -4, -7, 50, 50], [51, -4, -7, 50, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([5, 5, 51, 49], [5, 5, 51, 49]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -8, 12, -8], [2, -8, 12, -8]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([5, 51, 51, 51], [5, 51, 51, 51]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([3, -7, 12], [3, -7, 12]) == [1.0, 1.0, 1.0]", "assert div_list([5, 71, 70, 70], [5, 71, 70, 70]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([3, -7, 12, 2, 3], [3, -7, 12, 2, 3]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-2, 4], [-2, 4]) == [1.0, 1.0]", "assert div_list([50, 70, 70, 70, 70], [50, 70, 70, 70, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-3], [-3]) == [1.0]", "assert div_list([5, 51, 51, 50, 50], [5, 51, 51, 50, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([51, -4, -6, -4, 50, 51], [51, -4, -6, -4, 50, 51]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([50, 70, 70, 70, 50, 70, 70, 70], [50, 70, 70, 70, 50, 70, 70, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-10, 10], [51, -2]) == [-0.19607843137254902, -5.0]", "assert div_list([50, 10, 70, 70, 50], [50, 10, 70, 70, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([10, 1], [10, 1]) == [1.0, 1.0]", "assert div_list([50, -7, 70, 70], [50, -7, 70, 70]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([10, 70], [10, 70]) == [1.0, 1.0]", "assert div_list([4, 4], [4, 4]) == [1.0, 1.0]", "assert div_list([5, 5, 51, 51, 5], [5, 5, 51, 51, 5]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-2, 4, 4], [-2, 4, 4]) == [1.0, 1.0, 1.0]", "assert div_list([51, 70, 4], [51, 70, 4]) == [1.0, 1.0, 1.0]", "assert div_list([50, -7, 70, 70, -7], [50, -7, 70, 70, -7]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([51, -4, 1, 50, 50], [51, -4, 1, 50, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([1, 5, 51, 51, 5, 51, 5], [1, 5, 51, 51, 5, 51, 5]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-10, 2, 10], [-10, 2, 10]) == [1.0, 1.0, 1.0]", "assert div_list([3], [3]) == [1.0]", "assert div_list([1], [1]) == [1.0]", "assert div_list([5, 51, 51, 51, 5], [5, 51, 51, 51, 5]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([3, -6, -5, 11, -8, 12, -7, -8], [3, -6, -5, 11, -8, 12, -7, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([1, 0, 1], [71, 50, 70]) == [0.014084507042253521, 0.0, 0.014285714285714285]", "assert div_list([3, -6, 71, 11, -8, 12, 70, -7, -8], [3, -6, 71, 11, -8, 12, 70, -7, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([10, 70, 12, 70, 70], [10, 70, 12, 70, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([71, 50, 50, 70], [71, 50, 50, 70]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([3, 51, 49], [3, 51, 49]) == [1.0, 1.0, 1.0]", "assert div_list([70], [70]) == [1.0]", "assert div_list([1, 49, 50, 1], [1, 49, 50, 1]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -5, -8, -5, 12, -8, -5], [2, -5, -8, -5, 12, -8, -5]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([4, 4, 4], [4, 4, 4]) == [1.0, 1.0, 1.0]", "assert div_list([-2, -2, -2], [-2, -2, -2]) == [1.0, 1.0, 1.0]", "assert div_list([4, 4, 4, 4, 4], [4, 4, 4, 4, 4]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([69, 10, 70, 70, 70], [69, 10, 70, 70, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([51, -4, -6, -4, 50, 51, 50], [51, -4, -6, -4, 50, 51, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([5, -6, -4, 51, 51], [5, -6, -4, 51, 51]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([70, 50, 70, 50], [70, 50, 70, 50]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -5, -8, 12, -7, -8, -7], [2, -5, -8, 12, -7, -8, -7]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-7, 12, -7], [-7, 12, -7]) == [1.0, 1.0, 1.0]", "assert div_list([-7, 51, 70, 69, -8], [-7, 51, 70, 69, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([69, 10, 70, 70, 70, 69, 69], [69, 10, 70, 70, 70, 69, 69]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([-2, 70, 12, 69, 70], [-2, 70, 12, 69, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([51, 70, 50, 50, 50, 50], [51, 70, 50, 50, 50, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([2, 11, 11], [2, 11, 11]) == [1.0, 1.0, 1.0]", "assert div_list([5, 4, 51, 49, 5], [5, 4, 51, 49, 5]) == [1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([50, 70, 70, 70, 50, 70, 70], [50, 70, 70, 70, 50, 70, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([71, 50, 50, 71], [71, 50, 50, 71]) == [1.0, 1.0, 1.0, 1.0]", "assert div_list([70, 71, 50, 10, 70, 70], [70, 71, 50, 10, 70, 70]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([51, 50, -6, -4, 50, 51, 50], [51, 50, -6, -4, 50, 51, 50]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]", "assert div_list([2, -5, -8, -5, 12, -8, -8, -8], [2, -5, -8, -5, 12, -8, -8, -8]) == [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to move all the numbers to the end of the given string.\nassert move_num('I1love143you55three3000thousand') == 'Iloveyouthreethousand1143553000'\nYour code should pass the test:\nassert move_num('I1love143you55three3000thousand') == 'Iloveyouthreethousand1143553000'", "test_list": [ "assert move_num('I1love143you55three3000thousand') == 'Iloveyouthreethousand1143553000'", "assert move_num('Avengers124Assemble') == 'AvengersAssemble124'", "assert move_num('Its11our12path13to14see15things16do17things') == 'Itsourpathtoseethingsdothings11121314151617'", "assert move_num('Hello! My age is 28. I was born on the 1st of January, 1992.') == 'Hello! My age is . I was born on the st of January, .2811992'", "assert move_num('') == ''", "assert move_num('1234567890') == '1234567890'", "assert move_num('Hello! This string contains no numbers') == 'Hello! This string contains no numbers'", "assert move_num('Hello! My age is 28. I was borln on the 1st of January, 1992.') == 'Hello! My age is . I was borln on the st of January, .2811992'", "assert move_num('was') == 'was'", "assert move_num('Hello! My age is 28.. I was borln on the 1st of January 1992.') == 'Hello! My age is .. I was borln on the st of January .2811992'", "assert move_num('Hello! on the 1st of January 1992.') == 'Hello! on the st of January .11992'", "assert move_num('Helloa! My age is 22.') == 'Helloa! My age is .22'", "assert move_num('Helloa!.') == 'Helloa!.'", "assert move_num('waws') == 'waws'", "assert move_num('Hellorn on the 1st of January, 1992.') == 'Hellorn on the st of January, .11992'", "assert move_num('wawMys') == 'wawMys'", "assert move_num('1992.') == '.1992'", "assert move_num('brorln') == 'brorln'", "assert move_num('Hello! My age is 28. I was born on the 1st of 28.January, 1992.') == 'Hello! My age is . I was born on the st of .January, .281281992'", "assert move_num('string') == 'string'", "assert move_num('Hellorn on onry, 1992.') == 'Hellorn on onry, .1992'", "assert move_num('199Hello! My age is 28.. I was borln on the 1st of January 1992.2.') == 'Hello! My age is .. I was borln on the st of January ..19928119922'", "assert move_num('Hello! My age is 28. I was born on the 1st of JanuaHello!ry, 1992.') == 'Hello! My age is . I was born on the st of JanuaHello!ry, .2811992'", "assert move_num('TThis') == 'TThis'", "assert move_num('numbers') == 'numbers'", "assert move_num('199Hello! My age iln on the 1st of January 1992.2.') == 'Hello! My age iln on the st of January ..199119922'", "assert move_num('199Hello! My age is 28.. I was borln on the 1st of JanuarHellorn on the 1st of January, 1992.y 1992.2.') == 'Hello! My age is .. I was borln on the st of JanuarHellorn on the st of January, .y ..1992811199219922'", "assert move_num('swawsing') == 'swawsing'", "assert move_num('Hello! My age is 28. I was born on the 1st of anuary, 1992.') == 'Hello! My age is . I was born on the st of anuary, .2811992'", "assert move_num('stnumbersring') == 'stnumbersring'", "assert move_num('I') == 'I'", "assert move_num('Hello! 28.My agei is 28.. I was borln wawson the 1st of January 1992.') == 'Hello! .My agei is .. I was borln wawson the st of January .282811992'", "assert move_num('Hello! My age is 28. , 1992.') == 'Hello! My age is . , .281992'", "assert move_num('Hello! My age is 28a. , 1992.brorln') == 'Hello! My age is a. , .brorln281992'", "assert move_num('Hellorn on the 1sHellorn on onry, 1992.t of January, 1992.') == 'Hellorn on the sHellorn on onry, .t of January, .119921992'", "assert move_num('Hellorn on the 1lst of January, 1992.') == 'Hellorn on the lst of January, .11992'", "assert move_num('January,') == 'January,'", "assert move_num('He.') == 'He.'", "assert move_num('Hello! 2f January 1992.') == 'Hello! f January .21992'", "assert move_num('19912.') == '.19912'", "assert move_num('num1sHers') == 'numsHers1'", "assert move_num('age') == 'age'", "assert move_num('1992.y') == '.y1992'", "assert move_num('He.H') == 'He.H'", "assert move_num('Hel My age is 28. I was born yon the 1st of January, 1 992.') == 'Hel My age is . I was born yon the st of January, .2811992'", "assert move_num('28a.') == 'a.28'", "assert move_num('Hello! This strings') == 'Hello! This strings'", "assert move_num('MMy') == 'MMy'", "assert move_num('TThiHello! My age is 28.. I was borln on the 1st of January 1992.s') == 'TThiHello! My age is .. I was borln on the st of January .s2811992'", "assert move_num('TThiHellothe e1st of January 1992.s') == 'TThiHellothe est of January .s11992'", "assert move_num('1st') == 'st1'", "assert move_num('Hello! This string contains no numbersHello! 2f January 1992.') == 'Hello! This string contains no numbersHello! f January .21992'", "assert move_num('1992.Hellorn on the 1sHellorn on onry, 1992.t of January, 1992.y') == '.Hellorn on the sHellorn on onry, .t of January, .y1992119921992'", "assert move_num('28.My') == '.My28'", "assert move_num('1992.brorln') == '.brorln1992'", "assert move_num('anuary,') == 'anuary,'", "assert move_num('Hello! My age is 28. I was borln on the 1st of January, 19born92.') == 'Hello! My age is . I was borln on the st of January, born.2811992'", "assert move_num('II199Hello! My age is 28.. I was borln on the 1st of January 1992.2.') == 'IIHello! My age is .. I was borln on the st of January ..19928119922'", "assert move_num('1') == '1'", "assert move_num('199Hello! My age is 28.. I was borln on9 the 1st of January 1992.2.') == 'Hello! My age is .. I was borln on the st of January ..199289119922'", "assert move_num('1992.t') == '.t1992'", "assert move_num('TThiHellolthe e1st of January 1992.s') == 'TThiHellolthe est of January .s11992'", "assert move_num('January') == 'January'", "assert move_num('strin1g') == 'string1'", "assert move_num('Hello! My age is 28.. hI was borln on the 1st of January 1992January.') == 'Hello! My age is .. hI was borln on the st of January January.2811992'", "assert move_num('Hellorn on the 1lst of Januaory, 1992.') == 'Hellorn on the lst of Januaory, .11992'", "assert move_num('yon') == 'yon'", "assert move_num('anu,ary,') == 'anu,ary,'", "assert move_num('1Hellorn on the 1lst of Januaory, 1992.st') == 'Hellorn on the lst of Januaory, .st111992'", "assert move_num('199Hello! My age is 28.. I was borln on the 1st of JanuarHellorn on the 1st of Ja') == 'Hello! My age is .. I was borln on the st of JanuarHellorn on the st of Ja1992811'", "assert move_num('1992January.') == 'January.1992'", "assert move_num('1sHello! My age is 28. I was born on the 1st of JanuaHello!ry, 1992.t') == 'sHello! My age is . I was born on the st of JanuaHello!ry, .t12811992'", "assert move_num('borln') == 'borln'", "assert move_num('b992.orln') == 'b.orln992'", "assert move_num('199Hel') == 'Hel199'", "assert move_num('HeHellorn on the 1lst of January, 1992.lloa!.') == 'HeHellorn on the lst of January, .lloa!.11992'", "assert move_num('Hello! My age is 28. I was bo rn on the 1st of anuary, 1992.') == 'Hello! My age is . I was bo rn on the st of anuary, .2811992'", "assert move_num('He.Hb992.orln') == 'He.Hb.orln992'", "assert move_num('TThiHelonlolthe e1st of January 1992.s1992.TThiHello!brorln') == 'TThiHelonlolthe est of January .s.TThiHello!brorln119921992'", "assert move_num('Hello! My age is 28. I was born on the 1st o f 28.January, 1992.') == 'Hello! My age is . I was born on the st o f .January, .281281992'", "assert move_num('sHello! My age is 28. I was born on the 1st of 28.January, 1992.tring') == 'sHello! My age is . I was born on the st of .January, .tring281281992'", "assert move_num('Hello! My age is 28. I wlas born on the 1st of JanuaHello!ry, 1992.') == 'Hello! My age is . I wlas born on the st of JanuaHello!ry, .2811992'", "assert move_num('onstnumbersring9') == 'onstnumbersring9'", "assert move_num('Helloaa!.') == 'Helloaa!.'", "assert move_num('no') == 'no'", "assert move_num('stsrin1g') == 'stsring1'", "assert move_num('Hellorn on onry, 91992n.') == 'Hellorn on onry, n.91992'", "assert move_num('992.') == '.992'", "assert move_num('wlas') == 'wlas'", "assert move_num('11992.tring992.') == '.tring.11992992'", "assert move_num('Helloa!') == 'Helloa!'", "assert move_num('sn1g') == 'sng1'", "assert move_num('JanuarHellorn') == 'JanuarHellorn'", "assert move_num('1sHello!') == 'sHello!1'", "assert move_num('waJas') == 'waJas'", "assert move_num('199Hello! My age is 28.. I was borln on the 1st ofTThiHello! My age i28.January,s 28.. I was borln on the 1st of January 1992.s JanuarHellorn on the 1st of Ja') == 'Hello! My age is .. I was borln on the st ofTThiHello! My age i.January,s .. I was borln on the st of January .s JanuarHellorn on the st of Ja1992812828119921'", "assert move_num('yHello! This string contains no numbers') == 'yHello! This string contains no numbers'", "assert move_num('anu,ary,1') == 'anu,ary,1'", "assert move_num('born') == 'born'", "assert move_num('anuabornry,') == 'anuabornry,'", "assert move_num('199Hello!') == 'Hello!199'", "assert move_num('b9922.orln') == 'b.orln9922'", "assert move_num('TThis992.') == 'TThis.992'", "assert move_num('ofTThiHello!') == 'ofTThiHello!'", "assert move_num('9992no.') == 'no.9992'", "assert move_num('oof') == 'oof'", "assert move_num('1992January.y') == 'January.y1992'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find smallest number in a list.\nassert smallest_num([10, 20, 1, 45, 99]) == 1\nYour code should pass the test:\nassert smallest_num([10, 20, 1, 45, 99]) == 1", "test_list": [ "assert smallest_num([10, 20, 1, 45, 99]) == 1", "assert smallest_num([1, 2, 3]) == 1", "assert smallest_num([45, 46, 50, 60]) == 45", "assert smallest_num([10]) == 10", "assert smallest_num([10, 10, 10]) == 10", "assert smallest_num([10, 9, 10]) == 9", "assert smallest_num([10, 9, 10, 9]) == 9", "assert smallest_num([10, 10, 10, 10]) == 10", "assert smallest_num([10, 9, 10, 10]) == 9", "assert smallest_num([10, 10]) == 10", "assert smallest_num([10, 10, 10, 9]) == 9", "assert smallest_num([10, 10, 10, 9, 10]) == 9", "assert smallest_num([10, 9, 10, 10, 10]) == 9", "assert smallest_num([9, 10]) == 9", "assert smallest_num([10, 9, 9, 10]) == 9", "assert smallest_num([10, 10, 10, 10, 9]) == 9", "assert smallest_num([10, 10, 10, 9, 10, 10]) == 9", "assert smallest_num([9, 10, 10, 10, 10]) == 9", "assert smallest_num([10, 9, 9]) == 9", "assert smallest_num([10, 10, 9, 10, 9]) == 9", "assert smallest_num([9, 10, 10]) == 9", "assert smallest_num([11, 10, 9, 10, 9, 10]) == 9", "assert smallest_num([10, 9, 10, 9, 9]) == 9", "assert smallest_num([11, 10, 10]) == 10", "assert smallest_num([9, 9, 10, 10]) == 9", "assert smallest_num([10, 11, 10, 9]) == 9", "assert smallest_num([10, 9, 9, 10, 9]) == 9", "assert smallest_num([11, 10, 9, 10, 10, 10, 10, 10]) == 9", "assert smallest_num([9, 10, 10, 9, 10]) == 9", "assert smallest_num([9, 10, 10, 10, 9, 10, 10]) == 9", "assert smallest_num([10, 9, 9, 9]) == 9", "assert smallest_num([9, 10, 10, 10]) == 9", "assert smallest_num([11, 10, 10, 9]) == 9", "assert smallest_num([10, 10, 9, 10]) == 9", "assert smallest_num([9, 9, 10]) == 9", "assert smallest_num([9, 10, 9, 9, 10]) == 9", "assert smallest_num([11, 11, 10, 10, 9]) == 9", "assert smallest_num([10, 10, 8, 10, 9, 10]) == 8", "assert smallest_num([8, 9, 10, 10, 9]) == 8", "assert smallest_num([8, 10, 10]) == 8", "assert smallest_num([10, 9, 8, 9, 10, 9]) == 8", "assert smallest_num([8, 10]) == 8", "assert smallest_num([10, 9, 9, 10, 9, 10]) == 9", "assert smallest_num([11, 10, 10, 8, 9]) == 8", "assert smallest_num([11, 11, 10, 10, 10, 9]) == 9", "assert smallest_num([11, 11, 10, 10, 9, 10]) == 9", "assert smallest_num([10, 10, 10, 11, 10, 10]) == 10", "assert smallest_num([11]) == 11", "assert smallest_num([12, 8, 11, 10]) == 8", "assert smallest_num([10, 9, 10, 8, 10]) == 8", "assert smallest_num([10, 10, 8, 10, 9, 10, 10]) == 8", "assert smallest_num([9, 10, 9, 9, 10, 9, 9]) == 9", "assert smallest_num([10, 9, 8, 9, 10]) == 8", "assert smallest_num([11, 11, 10, 10, 10, 10]) == 10", "assert smallest_num([9, 10, 10, 9, 8, 10]) == 8", "assert smallest_num([8, 10, 9]) == 8", "assert smallest_num([7, 8, 10]) == 7", "assert smallest_num([8]) == 8", "assert smallest_num([10, 10, 10, 8, 10, 9, 10, 10]) == 8", "assert smallest_num([11, 10, 10, 10, 8, 10, 9, 10, 10]) == 8", "assert smallest_num([11, 10, 10, 8]) == 8", "assert smallest_num([11, 11, 10, 10, 11, 10, 9]) == 9", "assert smallest_num([11, 11, 10, 10, 11, 10, 8]) == 8", "assert smallest_num([10, 9, 8, 10]) == 8", "assert smallest_num([10, 7, 9, 10]) == 7", "assert smallest_num([11, 10, 10, 11, 9]) == 9", "assert smallest_num([10, 10, 10, 11, 9, 10]) == 9", "assert smallest_num([9, 10, 9, 9, 9, 10, 8, 9]) == 8", "assert smallest_num([9, 10, 9, 9]) == 9", "assert smallest_num([9, 10, 10, 9]) == 9", "assert smallest_num([11, 8, 10, 10]) == 8", "assert smallest_num([9, 10, 9, 8, 9, 10, 9]) == 8", "assert smallest_num([11, 9, 10, 9, 10, 10, 9, 10]) == 9", "assert smallest_num([11, 10, 10, 10, 8, 10, 11, 9, 10, 10]) == 8", "assert smallest_num([11, 9, 9]) == 9", "assert smallest_num([9, 9, 9, 10, 10, 9]) == 9", "assert smallest_num([11, 9, 10, 10, 10, 9]) == 9", "assert smallest_num([11, 10, 10, 11, 9, 10]) == 9", "assert smallest_num([10, 10, 11, 10, 10]) == 10", "assert smallest_num([9, 12, 10]) == 9", "assert smallest_num([10, 9, 10, 10, 9]) == 9", "assert smallest_num([11, 8, 10, 11, 10]) == 8", "assert smallest_num([11, 10, 8, 9, 10]) == 8", "assert smallest_num([12, 12, 8, 11, 10]) == 8", "assert smallest_num([11, 10, 10, 10, 8, 10, 11, 8, 9, 10, 10, 10]) == 8", "assert smallest_num([10, 9, 10, 9, 10]) == 9", "assert smallest_num([11, 10, 7, 8]) == 7", "assert smallest_num([7, 9, 10, 9, 10, 9, 10]) == 7", "assert smallest_num([9, 10, 10, 10, 9, 10]) == 9", "assert smallest_num([10, 10, 10, 9, 10, 10, 10, 10]) == 9", "assert smallest_num([9, 10, 9, 9, 10, 9, 9, 10]) == 9", "assert smallest_num([11, 11, 10, 10, 9, 9]) == 9", "assert smallest_num([11, 9, 10]) == 9", "assert smallest_num([9, 11, 9, 9, 10, 9, 9]) == 9", "assert smallest_num([11, 11, 10, 10, 11, 10, 10]) == 10", "assert smallest_num([10, 9, 9, 8, 9]) == 8", "assert smallest_num([10, 9, 10, 10, 10, 10, 10]) == 9", "assert smallest_num([11, 10, 9]) == 9", "assert smallest_num([12, 12, 8, 11, 10, 12]) == 8", "assert smallest_num([10, 9, 8, 9, 11, 10]) == 8", "assert smallest_num([10, 7, 9]) == 7", "assert smallest_num([10, 12, 9, 10, 9]) == 9", "assert smallest_num([-115.40386094393058, 13.801990543244983, -90.4732800288427, -75.81228356592653]) == -115.40386094393058", "assert smallest_num([7, 7, 8, 10]) == 7" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the size of the largest subset of a list of numbers so that every pair is divisible.\nassert largest_subset([ 1, 3, 6, 13, 17, 18 ]) == 4\nYour code should pass the test:\nassert largest_subset([ 1, 3, 6, 13, 17, 18 ]) == 4", "test_list": [ "assert largest_subset([ 1, 3, 6, 13, 17, 18 ]) == 4", "assert largest_subset([10, 5, 3, 15, 20]) == 3", "assert largest_subset([18, 1, 3, 6, 13, 17]) == 4", "assert largest_subset([34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584]) == 2", "assert largest_subset([11, 22, 33, 44, 55, 66, 77, 88, 99, 110]) == 4", "assert largest_subset([9, 4, 12, 7, 16, 3, 11, 8, 5, 13]) == 3", "assert largest_subset([2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30]) == 4", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37]) == 1", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 79, 83, 89, 97]) == 1", "assert largest_subset([2, 99, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 79, 83, 89, 97]) == 2", "assert largest_subset([11, 22, 44, 33, 44, 55, 66, 77, 88, 99, 110, 22, 44]) == 7", "assert largest_subset([2, 31, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 30, 79, 83, 89, 97]) == 2", "assert largest_subset([2, 99, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 5, 79, 83, 89, 97]) == 2", "assert largest_subset([34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 987]) == 2", "assert largest_subset([2, 3, 4, 5, 6, 7, 8, 29, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30]) == 4", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30]) == 4", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 23]) == 2", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97]) == 2", "assert largest_subset([2, 31, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 30, 79, 83, 89, 16]) == 2", "assert largest_subset([2, 3, 5, 7, 11, 13, 18, 19, 16, 23, 29, 31, 22, 37, 23, 7]) == 2", "assert largest_subset([9, 4, 12, 9, 7, 16, 3, 10, 8, 5, 13]) == 3", "assert largest_subset([2, 5, 7, 11, 13, 17, 19, 29, 31, 37]) == 1", "assert largest_subset([34, 55, 89, 144, 233, 377, 610, 987, 1597, 2583]) == 1", "assert largest_subset([11, 22, 33, 44, 55, 66, 77, 15, 99, 110]) == 3", "assert largest_subset([34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 987, 2584]) == 3", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 7]) == 2", "assert largest_subset([9, 3, 12, 7, 16, 3, 11, 8, 4, 13, 13]) == 4", "assert largest_subset([2, 99, 19, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97]) == 2", "assert largest_subset([11, 21, 33, 44, 55, 66, 77, 88, 99, 110]) == 3", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 7, 43, 47, 53, 59, 61, 67, 71, 73, 79, 83, 89, 97, 2]) == 2", "assert largest_subset([47, 4, 12, 9, 7, 16, 3, 10, 8, 5, 13]) == 3", "assert largest_subset([34, 55, 35, 89, 144, 233, 377, 610, 987, 1597, 2584, 987, 987]) == 3", "assert largest_subset([34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 987, 2584, 2584]) == 4", "assert largest_subset([9, 3, 12, 3, 7, 16, 3, 11, 8, 8, 4, 13, 13]) == 5", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 21]) == 4", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 7, 43, 47, 53, 59, 61, 67, 71, 73, 83, 89, 97, 2]) == 2", "assert largest_subset([2583, 9, 4, 12, 9, 7, 16, 3, 10, 8, 5, 13]) == 4", "assert largest_subset([2, 5, 7, 11, 13, 17, 3, 19, 29, 31, 37]) == 1", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 61, 67, 71, 73, 79, 83, 89, 97]) == 1", "assert largest_subset([83, 34, 55, 89, 144, 377, 610, 987, 1597, 2584, 987]) == 2", "assert largest_subset([2, 5, 7, 11, 13, 17, 19, 18, 29, 31, 37]) == 2", "assert largest_subset([2, 3, 2, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 23]) == 2", "assert largest_subset([9, 3, 12, 7, 16, 3, 11, 8, 4, 13, 13, 7]) == 4", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 12, 19, 23, 29, 31, 37, 23]) == 2", "assert largest_subset([9, 4, 12, 9, 7, 16, 3, 10, 8, 8, 5, 13, 9, 16]) == 5", "assert largest_subset([11, 21, 44, 55, 66, 77, 88, 99, 110]) == 3", "assert largest_subset([2, 3, 5, 7, 11, 13, 18, 19, 16, 23, 29, 31, 22, 37, 23, 7, 7]) == 3", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 21]) == 4", "assert largest_subset([11, 21, 44, 55, 66, 77, 88, 99, 110, 66]) == 3", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 43, 47, 53, 47, 61, 67, 71, 73, 79, 83, 89, 97, 5]) == 2", "assert largest_subset([2, 5, 7, 11, 13, 18, 19, 18, 29, 31, 37]) == 3", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 79]) == 2", "assert largest_subset([9, 3, 12, 3, 7, 16, 3, 3, 11, 8, 8, 4, 13, 13]) == 6", "assert largest_subset([83, 34, 55, 89, 144, 377, 610, 987, 1597, 2584, 89, 34, 987]) == 3", "assert largest_subset([2583, 9, 4, 33, 12, 9, 7, 16, 3, 10, 8, 5, 13]) == 4", "assert largest_subset([2, 3, 5, 7, 11, 13, 18, 19, 16, 23, 29, 31, 22, 35, 37, 23, 7]) == 3", "assert largest_subset([47, 4, 6, 12, 9, 7, 16, 3, 10, 8, 5, 13]) == 3", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 20, 26, 27, 28, 29, 30, 21]) == 4", "assert largest_subset([9, 4, 12, 8, 7, 16, 3, 10, 8, 8, 5, 13, 9, 16]) == 6", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 79, 59]) == 2", "assert largest_subset([11, 21, 33, 44, 55, 66, 77, 99, 110]) == 3", "assert largest_subset([9, 4, 12, 7, 7, 16, 3, 11, 8, 5, 13, 3, 5, 9]) == 5", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 20, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 20, 26, 27, 28, 29, 30, 21]) == 6", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97]) == 2", "assert largest_subset([2, 99, 19, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 47]) == 2", "assert largest_subset([7, 21, 33, 44, 55, 66, 77, 99]) == 2", "assert largest_subset([2, 31, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 74, 30, 83, 89, 16]) == 2", "assert largest_subset([11, 21, 33, 28, 44, 55, 66, 77, 99, 110]) == 3", "assert largest_subset([9, 10, 8, 7, 16, 3, 10, 8, 8, 5, 13, 9, 16, 3]) == 5", "assert largest_subset([2, 99, 19, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 18, 67, 71, 5, 79, 83, 89, 97]) == 2", "assert largest_subset([2583, 9, 4, 9, 33, 12, 9, 7, 16, 3, 10, 8, 5, 13]) == 5", "assert largest_subset([2, 31, 3, 89, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 30, 79, 83, 89, 97]) == 2", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 7, 43, 47, 53, 59, 61, 67, 71, 73, 83, 89, 97, 2]) == 2", "assert largest_subset([2583, 9, 4, 33, 12, 9, 7, 66, 3, 10, 8, 5, 13]) == 4", "assert largest_subset([2, 3, 4, 5, 6, 7, 8, 29, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 19]) == 4", "assert largest_subset([3, 12, 3, 7, 16, 3, 3, 11, 8, 8, 4, 13, 13]) == 5", "assert largest_subset([2, 99, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 79, 83, 89, 97, 61]) == 2", "assert largest_subset([2, 31, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 30, 79, 83, 89, 16, 3]) == 3", "assert largest_subset([83, 34, 55, 89, 89, 144, 377, 610, 987, 1597, 2584, 89, 34, 987]) == 3", "assert largest_subset([13, 11, 21, 44, 55, 66, 77, 88, 99, 56, 110]) == 3", "assert largest_subset([2, 3, 5, 7, 11, 17, 19, 23, 29, 31, 37]) == 1", "assert largest_subset([9, 3, 12, 3, 7, 16, 3, 11, 8, 8, 4, 13, 13, 7, 3]) == 6", "assert largest_subset([34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 233]) == 2", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 9, 10, 11, 12, 13, 14, 15, 16, 17, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 21]) == 4", "assert largest_subset([2, 3, 4, 5, 6, 7, 8, 29, 9, 25, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 19, 20]) == 4", "assert largest_subset([2, 99, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 5, 79, 83, 89, 97, 53]) == 2", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 79, 6, 59]) == 2", "assert largest_subset([3, 12, 7, 16, 3, 3, 11, 8, 8, 4, 13, 13]) == 4", "assert largest_subset([2, 99, 5, 7, 11, 17, 19, 23, 42, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 5]) == 3", "assert largest_subset([2, 3, 5, 7, 13, 17, 19, 23, 29, 31, 37, 7, 43, 47, 53, 59, 61, 67, 71, 73, 83, 89, 97, 2]) == 2", "assert largest_subset([16, 11, 21, 33, 44, 13, 66, 77, 99, 110]) == 3", "assert largest_subset([11, 22, 44, 33, 44, 55, 66, 77, 88, 99, 110, 22, 44, 44]) == 8", "assert largest_subset([2, 3, 4, 5, 6, 8, 29, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 27, 27, 28, 29, 30, 21]) == 4", "assert largest_subset([2, 99, 19, 5, 7, 11, 17, 19, 23, 29, 31, 37, 43, 47, 53, 59, 67, 71, 5, 79, 83, 89, 97, 47, 31]) == 2", "assert largest_subset([2, 3, 5, 7, 11, 17, 34, 23, 29, 31, 37, 5, 5]) == 3", "assert largest_subset([11, 21, 33, 44, 55, 77, 88, 99, 110]) == 3", "assert largest_subset([11, 21, 44, 55, 66, 77, 42, 88, 99, 110, 66]) == 3", "assert largest_subset([2583, 9, 4, 33, 12, 9, 7, 66, 3, 10, 8, 5, 13, 9]) == 5", "assert largest_subset([2, 31, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 30, 79, 83, 89, 96]) == 2", "assert largest_subset([11, 22, 33, 44, 55, 66, 77, 88, 99, 110, 22, 44]) == 6", "assert largest_subset([2583, 9, 4, 33, 12, 9, 7, 16, 3, 8, 10, 8, 5, 13]) == 4", "assert largest_subset([11, 21, 33, 44, 55, 77, 88, 99, 110, 110]) == 4", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 22, 29, 31, 37, 7, 43, 47, 54, 59, 67, 71, 73, 79, 83, 89, 97, 2]) == 3", "assert largest_subset([2, 3, 5, 7, 11, 17, 19, 23, 29, 31, 37, 37]) == 2", "assert largest_subset([47, 4, 12, 9, 9, 16, 3, 10, 8, 5, 13]) == 3", "assert largest_subset([11, 21, 44, 55, 41, 66, 77, 88, 99, 66, 110, 66, 66]) == 5", "assert largest_subset([2, 99, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 79, 24, 83, 89, 97]) == 2", "assert largest_subset([7, 21, 33, 44, 66, 55, 66, 77, 99]) == 3", "assert largest_subset([2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 7, 43, 47, 53, 59, 61, 67, 13, 73, 83, 89, 97, 2]) == 2" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the median of two sorted lists of same size.\nassert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0\nYour code should pass the test:\nassert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0", "test_list": [ "assert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0", "assert get_median([2, 4, 8, 9], [7, 13, 19, 28], 4) == 8.5", "assert get_median([3, 6, 14, 23, 36, 42], [2, 18, 27, 39, 49, 55], 6) == 25.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 10) == 15.0", "assert get_median([1], [2], 1) == 1.5", "assert get_median([1, 2], [3, 4], 2) == 2.5", "assert get_median([1, 1, 2, 2, 3], [2, 3, 4, 4, 5], 5) == 2.5", "assert get_median([3, 6, 14, 23], [2, 18, 27, 39, 49, 55], 4) == 16.0", "assert get_median([3], [5], 1) == 4.0", "assert get_median([7], [2], 1) == 4.5", "assert get_median([2, 3], [4, 5], 2) == 3.5", "assert get_median([6, 7], [1, 8], 2) == 6.5", "assert get_median([1, 1, 2, 3], [3, 3, 4, 5], 4) == 3.0", "assert get_median([5, 6, 6, 7], [3, 4, 7, 7], 4) == 6.0", "assert get_median([4, 6, 6, 7], [3, 4, 7, 7], 4) == 6.0", "assert get_median([1], [2], 0) == 0.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 8) == 12.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 26, 29], 8) == 12.0", "assert get_median([1], [2, 2], 1) == 1.5", "assert get_median([2, 1], [2], 1) == 2.0", "assert get_median([1, 4, 7, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 8) == 13.5", "assert get_median([3, 3, 4, 5], [3, 3, 4, 5], 4) == 3.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 10) == 15.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 9) == 13.5", "assert get_median([6, 7], [0, 8], 2) == 6.5", "assert get_median([1, 1, 2, 3, 3], [3, 3, 4, 5], 4) == 3.0", "assert get_median([1, 4, 13, 16, 19, 22, 25, 28], [2, 8, 11, 14, 17, 20, 23, 26, 29], 8) == 16.5", "assert get_median([3, 3, 4, 5, 5], [3, 3, 4, 5, 5], 4) == 3.5", "assert get_median([1, 4, 7, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 5) == 7.5", "assert get_median([3, 3, 4, 4, 5], [3, 3, 4, 4, 5], 4) == 3.5", "assert get_median([6, 26, 7], [0, 8], 2) == 7.0", "assert get_median([3, 3, 4, 4, 5, 3], [3, 3, 4, 4, 5, 3], 4) == 3.5", "assert get_median([3, 3, 4, 4, 5, 4], [3, 3, 4, 4, 5, 4], 4) == 3.5", "assert get_median([3, 3, 4, 4, 5, 3, 3], [3, 3, 4, 4, 5, 3, 3], 4) == 3.5", "assert get_median([1, 1, 2, 3], [3, 3, 4, 5], 1) == 2.0", "assert get_median([8], [8], 1) == 8.0", "assert get_median([4, 6, 6, 7, 6], [3, 4, 7, 7], 3) == 5.0", "assert get_median([1, 1, 2, 3, 3], [3, 3, 4], 1) == 2.0", "assert get_median([1, 4, 13, 16, 19, 22, 25, 28], [2, 8, 11, 11, 14, 17, 20, 23, 29], 4) == 9.5", "assert get_median([3, 3, 4, 5, 5, 5, 3], [3, 3, 4, 5, 5, 5, 3], 4) == 3.5", "assert get_median([2, 5, 8, 11, 14, 17, 20, 29], [1, 4, 7, 10, 13, 16, 19, 22, 22, 25, 28], 8) == 12.0", "assert get_median([1, 4, 7, 13, 16, 3, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29, 5], 5) == 7.5", "assert get_median([1, 1], [2, 2], 1) == 1.5", "assert get_median([1, 4, 7, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 4) == 6.0", "assert get_median([1, 1, 2, 4], [3, 3, 4, 5], 1) == 2.0", "assert get_median([49, 7], [22, 2], 1) == 35.5", "assert get_median([3, 3, 4, 4, 5, 4, 3], [3, 3, 4, 4, 5, 4, 3], 4) == 3.5", "assert get_median([2, 5, 7, 11, 14, 17, 20, 23, 26, 29], [2, 5, 7, 11, 14, 17, 20, 23, 26, 29], 5) == 7.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1, 4], [1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1, 4], 10) == 14.5", "assert get_median([1, 4, 7, 10, 13, 17, 19, 22, 25, 28, 1, 16], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 10) == 15.5", "assert get_median([7, 26, 7], [0, 8], 2) == 7.5", "assert get_median([2, 5, 7, 11, 14, 10, 20, 23, 26, 29, 2], [2, 5, 7, 11, 14, 10, 20, 23, 26, 29, 2], 5) == 7.0", "assert get_median([1, 2, 2], [3, 4], 2) == 2.5", "assert get_median([2, 5, 7, 11, 14, 10, 20, 23, 26, 29, 2, 23], [2, 5, 7, 11, 14, 10, 20, 23, 26, 29, 2, 23], 5) == 7.0", "assert get_median([2, 18, 27, 39, 49, 55, 55], [3, 6, 14, 23], 4) == 16.0", "assert get_median([3, 3, 4, 3, 4, 5], [3, 3, 4, 3, 4, 5], 3) == 3.0", "assert get_median([2, 4, 7, 11, 14, 10, 20, 23, 26, 29, 2, 23], [2, 4, 7, 11, 14, 10, 20, 23, 26, 29, 2, 23], 5) == 7.0", "assert get_median([8, 8], [8, 8], 1) == 8.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 23, 1, 4, 4], [1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 23, 1, 4, 4], 10) == 14.5", "assert get_median([1], [3], 1) == 2.0", "assert get_median([1, 1, 2, 4], [3, 3, 4, 5], 2) == 2.0", "assert get_median([2, 4, 7, 11, 14, 17, 20, 23, 26, 29], [2, 4, 7, 11, 14, 17, 20, 23, 26, 29], 5) == 7.0", "assert get_median([1, 2, 2], [3, 9, 4], 2) == 2.5", "assert get_median([14, 7], [2], 1) == 8.0", "assert get_median([8, 8, 8, 8], [8, 8, 8, 8], 1) == 8.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1, 4, 19], [1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1, 4, 19], 10) == 14.5", "assert get_median([0, 7], [0, 7], 2) == 3.5", "assert get_median([0, 1, 2, 2, 1], [3, 9, 4], 2) == 2.0", "assert get_median([7, 26, 7], [0, 8, 8], 2) == 7.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 9) == 13.5", "assert get_median([5, 5], [3], 1) == 4.0", "assert get_median([1, 1, 2, 3, 3], [3, 3, 4, 5], 3) == 2.5", "assert get_median([5, 7], [1, 8], 2) == 6.0", "assert get_median([26, 1], [2], 1) == 14.0", "assert get_median([1, 2, 2], [3, 3, 9, 4], 2) == 2.5", "assert get_median([1, 4, 13, 16, 19, 22, 25, 28], [2, 8, 11, 11, 14, 20, 23, 29], 4) == 9.5", "assert get_median([3, 3, 4, 49, 4, 5, 3], [3, 3, 4, 49, 4, 5, 3], 4) == 3.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 4], [2, 5, 8, 11, 14, 17, 20, 23, 26, 14, 29, 29], 8) == 12.0", "assert get_median([2, 7], [2, 7], 2) == 4.5", "assert get_median([19, 0, 1, 2, 27, 4], [19, 0, 1, 2, 27, 4], 1) == 19.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 23, 1, 4, 4], [1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 23, 1, 4, 4], 9) == 13.0", "assert get_median([14, 17, 7], [14, 17, 7], 2) == 15.5", "assert get_median([3, 18, 27, 39, 49, 55, 55], [3, 6, 14, 23], 4) == 16.0", "assert get_median([4, 3], [4, 3], 1) == 4.0", "assert get_median([1, 4, 13, 16, 29, 19, 22, 25, 28], [2, 8, 11, 11, 14, 17, 20, 23, 29], 4) == 9.5", "assert get_median([13, 5, 5], [4, 3], 1) == 8.5", "assert get_median([3, 3, 4, 5, 3], [3, 3, 4, 5, 3], 4) == 3.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1, 4, 19], [1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 1, 4, 19], 9) == 13.0", "assert get_median([1, 2, 17, 1], [2], 1) == 1.5", "assert get_median([2, 1], [3, 2], 1) == 2.5", "assert get_median([3, 9, 4, 4], [3, 9, 4, 4], 2) == 6.0", "assert get_median([2, 2, 2], [3, 3, 9, 4], 2) == 2.5", "assert get_median([1, 9], [1, 9], 2) == 5.0", "assert get_median([7, 8], [7, 8], 1) == 7.0", "assert get_median([19, 0, 2, 27, 4], [19, 0, 2, 27, 4], 1) == 19.0", "assert get_median([1, 4, 7, 10, 13, 17, 19, 22, 25, 28, 1, 16], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 9) == 13.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29], 2) == 3.0", "assert get_median([6, 7], [-1, 0, 8], 2) == 3.0", "assert get_median([1, 1, 2, 3, 3], [3, 3, 4, 5, 3], 3) == 2.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28], [2, 5, 8, 11, 14, 17, 20, 23, 26, 29, 17], 10) == 15.0", "assert get_median([13, 5, 5, 13], [4, 3], 1) == 8.5", "assert get_median([2, 2], [2, 2], 1) == 2.0", "assert get_median([1, 4, 13, 16, 19, 22, 25, 28], [2, 8, 11, 14, 17, 25, 23, 29], 4) == 9.5", "assert get_median([13, 5], [4, 4, 3], 1) == 8.5", "assert get_median([2, 4, 7, 11, 14, 17, 20, 23, 29], [2, 4, 7, 11, 14, 17, 20, 23, 29], 5) == 7.0", "assert get_median([13, 5, 5], [4, 3, 4], 1) == 8.5", "assert get_median([1, 4, 7, 10, 13, 16, 19, 25, 28], [2, 5, 8, 11, 14, 16, 17, 20, 23, 26, 29], 9) == 13.5", "assert get_median([5, 5], [5, 5], 1) == 5.0", "assert get_median([1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 23, 1, 4, 3, 4], [1, 4, 7, 10, 13, 16, 19, 22, 25, 28, 23, 1, 4, 3, 4], 10) == 14.5", "assert get_median([2], [5, 5], 1) == 3.5", "assert get_median([3, 3, 4, 5, 3, 3], [3, 3, 4, 5, 3, 3], 4) == 3.5", "assert get_median([3, 3, 3, 5, 4, 3], [3, 3, 3, 5, 4, 3], 4) == 3.0", "assert get_median([1, 2], [3, 3, 9, 4], 2) == 2.5", "assert get_median([49, 49], [49, 49], 1) == 49.0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to compute the n-th power of each number in a list.\nassert nth_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],2)==[1, 4, 9, 16, 25, 36, 49, 64, 81, 100]\nYour code should pass the test:\nassert nth_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],2)==[1, 4, 9, 16, 25, 36, 49, 64, 81, 100]", "test_list": [ "assert nth_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],2)==[1, 4, 9, 16, 25, 36, 49, 64, 81, 100]", "assert nth_nums([10,20,30],3)==([1000, 8000, 27000])", "assert nth_nums([12,15],5)==([248832, 759375])", "assert nth_nums([], 3) == []", "assert nth_nums([-2, 0, 2, -4, 6], 4) == [16, 0, 16, 256, 1296]", "assert nth_nums([0.5, 1.5, 2.5, 3.5], 2) == [0.25, 2.25, 6.25, 12.25]", "assert nth_nums([-10, -5, 0, 5, 10], 1) == [-10, -5, 0, 5, 10]", "assert nth_nums([-3.14, 0, 3.14], 3) == [-30.959144000000002, 0, 30.959144000000002]", "assert nth_nums([-100, -50, 0, 50, 100], 0) == [1, 1, 1, 1, 1]", "assert nth_nums([], 2) == []", "assert nth_nums([-50, 0, 50, 100], 0) == [1, 1, 1, 1]", "assert nth_nums([-5, 1, 18, 85, 0, 18], 3) == [-125, 1, 5832, 614125, 0, 5832]", "assert nth_nums([-100, -50, 0, 50, 100], 1) == [-100, -50, 0, 50, 100]", "assert nth_nums([-100, -49, 0, 50, 100], 0) == [1, 1, 1, 1, 1]", "assert nth_nums([-100, -50, 0, 10, 50, 100], 0) == [1, 1, 1, 1, 1, 1]", "assert nth_nums([-10, -5, 0, 5, 10], 2) == [100, 25, 0, 25, 100]", "assert nth_nums([-10, -5, 0, 6, 10], 2) == [100, 25, 0, 36, 100]", "assert nth_nums([3, 77, -100, 50, 6, 5, 50, -98, 0, -13], 3) == [27, 456533, -1000000, 125000, 216, 125, 125000, -941192, 0, -2197]", "assert nth_nums([-3.14, 0, 3.14], 2) == [9.8596, 0, 9.8596]", "assert nth_nums([50, -100, -49, 0, 50, 100], 0) == [1, 1, 1, 1, 1, 1]", "assert nth_nums([-3.14, -3.14, 0, 3.14], 3) == [-30.959144000000002, -30.959144000000002, 0, 30.959144000000002]", "assert nth_nums([-50, 0, 50, 100, 0], 1) == [-50, 0, 50, 100, 0]", "assert nth_nums([0.5, 1.5, 2.5, 3.5], 1) == [0.5, 1.5, 2.5, 3.5]", "assert nth_nums([-10, -5, 0, 5, 10], 0) == [1, 1, 1, 1, 1]", "assert nth_nums([-50, 0, 50, 100, -4, 0], 1) == [-50, 0, 50, 100, -4, 0]", "assert nth_nums([-100, -50, 0, 10, 77, 50, 100, -100], 77) == [-10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000, -66174449004242213989712695365597028285264968872070312500000000000000000000000000000000000000000000000000000000000000000000000000000, 0, 100000000000000000000000000000000000000000000000000000000000000000000000000000, 18188037387806198379277339915556929647807403283187048631478337739929618787870634227045716719924575689062274471430368865388203540672666042530996797, 66174449004242213989712695365597028285264968872070312500000000000000000000000000000000000000000000000000000000000000000000000000000, 10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000, -10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000]", "assert nth_nums([0.5, 0.5718434373181378, 2.5, 3.5], 2) == [0.25, 0.327004916803823, 6.25, 12.25]", "assert nth_nums([0.5, 2.5, 3.5], 2) == [0.25, 6.25, 12.25]", "assert nth_nums([-100, -50, 0, 50, 1], 0) == [1, 1, 1, 1, 1]", "assert nth_nums([1.405118970978401, 3.5], 2) == [1.9743593226034009, 12.25]", "assert nth_nums([-100, -50, 0, 100, 100], 0) == [1, 1, 1, 1, 1]", "assert nth_nums([1.405118970978401], 2) == [1.9743593226034009]", "assert nth_nums([3, 77, -100, 50, 6, 5, 50, -98, 0, -13, -100], 9) == [19683, 95151694449171437, -1000000000000000000, 1953125000000000, 10077696, 1953125, 1953125000000000, -833747762130149888, 0, -10604499373, -1000000000000000000]", "assert nth_nums([-3.14, -3.14, 0], 4) == [97.21171216000002, 97.21171216000002, 0]", "assert nth_nums([-3.14, -3.14, 0, -3.14], 77) == [-1.8347753704300173e+38, -1.8347753704300173e+38, 0, -1.8347753704300173e+38]", "assert nth_nums([-3.14, -3.14, 0, 3.14], 5) == [-305.2447761824001, -305.2447761824001, 0, 305.2447761824001]", "assert nth_nums([-10, -5, 0, 5, 10], 85) == [-10000000000000000000000000000000000000000000000000000000000000000000000000000000000000, -258493941422821148397315216271863391739316284656524658203125, 0, 258493941422821148397315216271863391739316284656524658203125, 10000000000000000000000000000000000000000000000000000000000000000000000000000000000000]", "assert nth_nums([3, 77, -100, 50, 6, 5, 50, -98, 0, -13, -100, 77], 9) == [19683, 95151694449171437, -1000000000000000000, 1953125000000000, 10077696, 1953125, 1953125000000000, -833747762130149888, 0, -10604499373, -1000000000000000000, 95151694449171437]", "assert nth_nums([1.405118970978401, 1.405118970978401], 2) == [1.9743593226034009, 1.9743593226034009]", "assert nth_nums([-10, -5, 0, 5, 5, 10], 85) == [-10000000000000000000000000000000000000000000000000000000000000000000000000000000000000, -258493941422821148397315216271863391739316284656524658203125, 0, 258493941422821148397315216271863391739316284656524658203125, 258493941422821148397315216271863391739316284656524658203125, 10000000000000000000000000000000000000000000000000000000000000000000000000000000000000]", "assert nth_nums([-100, -49, 0, 50, 100], 1) == [-100, -49, 0, 50, 100]", "assert nth_nums([2.176651852460075, 1.405118970978401], 1) == [2.176651852460075, 1.405118970978401]", "assert nth_nums([1.405118970978401, 3.5], 18) == [455.8644784531237, 6211904899.255558]", "assert nth_nums([0.9876346699284253, 1.405118970978401], 2) == [0.9754222412446296, 1.9743593226034009]", "assert nth_nums([50, -5, -100, -49, 0, 50, 100], 0) == [1, 1, 1, 1, 1, 1, 1]", "assert nth_nums([-10, -5, 77, 0, 5, 10], 1) == [-10, -5, 77, 0, 5, 10]", "assert nth_nums([2.176651852460075, 0.9876346699284253, 1.405118970978401], 2) == [4.737813286817876, 0.9754222412446296, 1.9743593226034009]", "assert nth_nums([10, 77, -100, 50, 6, 5, 50, -98, 0, -13, -100, 77], 9) == [1000000000, 95151694449171437, -1000000000000000000, 1953125000000000, 10077696, 1953125, 1953125000000000, -833747762130149888, 0, -10604499373, -1000000000000000000, 95151694449171437]", "assert nth_nums([-5, 1, 18, 85, 0, 18], 4) == [625, 1, 104976, 52200625, 0, 104976]", "assert nth_nums([-10, -5, 0, 5, 10, 5], 0) == [1, 1, 1, 1, 1, 1]", "assert nth_nums([-10, -5, 0, 5, 10, 5], 1) == [-10, -5, 0, 5, 10, 5]", "assert nth_nums([-2, 0, 2, -4, 6], 5) == [-32, 0, 32, -1024, 7776]", "assert nth_nums([1.405118970978401, 3.5], 9) == [21.35098307931332, 78815.638671875]", "assert nth_nums([0.5718434373181378], 2) == [0.327004916803823]", "assert nth_nums([1.5, 2.5, 3.5], 1) == [1.5, 2.5, 3.5]", "assert nth_nums([-10, -5, 77, 0, 5, 10, -10], 1) == [-10, -5, 77, 0, 5, 10, -10]", "assert nth_nums([-100, -50, 0, -99, 10, 50, 100], 0) == [1, 1, 1, 1, 1, 1, 1]", "assert nth_nums([-3.14, -3.14, 0, 0], 4) == [97.21171216000002, 97.21171216000002, 0, 0]", "assert nth_nums([-49, 0, 50, 100], 1) == [-49, 0, 50, 100]", "assert nth_nums([50, -100, -49, 50, 100], 0) == [1, 1, 1, 1, 1]", "assert nth_nums([1.405118970978401, 1.405118970978401, 1.405118970978401], 2) == [1.9743593226034009, 1.9743593226034009, 1.9743593226034009]", "assert nth_nums([10, 77, -100, 50, 6, 5, 50, -98, 0, -13, -100, 77, 6, 50], 9) == [1000000000, 95151694449171437, -1000000000000000000, 1953125000000000, 10077696, 1953125, 1953125000000000, -833747762130149888, 0, -10604499373, -1000000000000000000, 95151694449171437, 10077696, 1953125000000000]", "assert nth_nums([-100, -50, 0, 50, 1, 49], 0) == [1, 1, 1, 1, 1, 1]", "assert nth_nums([1.405118970978401, 3.5, 1.405118970978401], 2) == [1.9743593226034009, 12.25, 1.9743593226034009]", "assert nth_nums([0.5718434373181378, 0.5718434373181378], 2) == [0.327004916803823, 0.327004916803823]", "assert nth_nums([0.5, 1.9139785942066323], 2) == [0.25, 3.6633140590811966]", "assert nth_nums([-10, -5, 0, 5, 10], 50) == [100000000000000000000000000000000000000000000000000, 88817841970012523233890533447265625, 0, 88817841970012523233890533447265625, 100000000000000000000000000000000000000000000000000]", "assert nth_nums([0.9876346699284253, 1.405118970978401], -50) == [1.8628747231984095, 4.114765892517103e-08]", "assert nth_nums([-10, -5, 0, 5, 5, 10, 5], 85) == [-10000000000000000000000000000000000000000000000000000000000000000000000000000000000000, -258493941422821148397315216271863391739316284656524658203125, 0, 258493941422821148397315216271863391739316284656524658203125, 258493941422821148397315216271863391739316284656524658203125, 10000000000000000000000000000000000000000000000000000000000000000000000000000000000000, 258493941422821148397315216271863391739316284656524658203125]", "assert nth_nums([5, 0, 50, 100], 1) == [5, 0, 50, 100]", "assert nth_nums([-100, -49, 0, 50, 100], 18) == [1000000000000000000000000000000000000, 2651730845859653471779023381601, 0, 3814697265625000000000000000000, 1000000000000000000000000000000000000]", "assert nth_nums([1.405118970978401, 1.405118970978401, 1.405118970978401], 77) == [236542127065.18347, 236542127065.18347, 236542127065.18347]", "assert nth_nums([-98, 88, 22, 71, 28, -10, 77], 3) == [-941192, 681472, 10648, 357911, 21952, -1000, 456533]", "assert nth_nums([-100, -50, 0, 50, 1, -100], 71) == [-10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000, -4235164736271501695341612503398209810256958007812500000000000000000000000000000000000000000000000000000000000000000000000, 0, 4235164736271501695341612503398209810256958007812500000000000000000000000000000000000000000000000000000000000000000000000, 1, -10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000]", "assert nth_nums([50, -100, 100, 0, 50, 100], 1) == [50, -100, 100, 0, 50, 100]", "assert nth_nums([3, 77, -100, 50, 6, 5, 50, -98, 0, -13, -100, 77], 6) == [729, 208422380089, 1000000000000, 15625000000, 46656, 15625, 15625000000, 885842380864, 0, 4826809, 1000000000000, 208422380089]", "assert nth_nums([0.5718434373181378], 0) == [1.0]", "assert nth_nums([2.176651852460075, 0.9876346699284253, 2.176651852460075], 2) == [4.737813286817876, 0.9754222412446296, 4.737813286817876]", "assert nth_nums([-3.14, 0, 3.244354968184857, 3.14], 3) == [-30.959144000000002, 0, 34.1495585717168, 30.959144000000002]", "assert nth_nums([0.5, 1.9139785942066323], 1) == [0.5, 1.9139785942066323]", "assert nth_nums([-5, 1, 18, 85, 0, 18], 5) == [-3125, 1, 1889568, 4437053125, 0, 1889568]", "assert nth_nums([5, 0, 50, 99, 100], 1) == [5, 0, 50, 99, 100]", "assert nth_nums([3, 77, -100, 50, 6, 5, 50, -98, 0, -13, -100, 77], 10) == [59049, 7326680472586200649, 100000000000000000000, 97656250000000000, 60466176, 9765625, 97656250000000000, 81707280688754689024, 0, 137858491849, 100000000000000000000, 7326680472586200649]", "assert nth_nums([10, 77, -100, 50, 6, 5, 50, -98, 0, 4, -100, 77], 0) == [1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1]", "assert nth_nums([-3.14, 1.1966863312771978, 0.5, 1.9139785942066323, 0], 4) == [97.21171216000002, 2.05079061791809, 0.0625, 13.419869895461952, 0]", "assert nth_nums([-50, 0, 50, 0], 1) == [-50, 0, 50, 0]", "assert nth_nums([0.5, 1.5, 3.2473110594071946, 3.5], 1) == [0.5, 1.5, 3.2473110594071946, 3.5]", "assert nth_nums([-3.14, -3.14, 0, 0, -3.14], 3) == [-30.959144000000002, -30.959144000000002, 0, 0, -30.959144000000002]", "assert nth_nums([0.9876346699284253], -51) == [1.8861981863530708]", "assert nth_nums([3, 77, -100, 50, 6, 5, 50, -98, 0, -13], 4) == [81, 35153041, 100000000, 6250000, 1296, 625, 6250000, 92236816, 0, 28561]", "assert nth_nums([-98, 88, 22, 78, 71, 28, -10, 77], 3) == [-941192, 681472, 10648, 474552, 357911, 21952, -1000, 456533]", "assert nth_nums([0.5, 2.5], 2) == [0.25, 6.25]", "assert nth_nums([-10, -5, 0, 6, 10], 3) == [-1000, -125, 0, 216, 1000]", "assert nth_nums([1.5, 2.5, 3.5], 2) == [2.25, 6.25, 12.25]", "assert nth_nums([1.5, 0.9876346699284253], -51) == [1.0455523636559724e-09, 1.8861981863530708]", "assert nth_nums([-3.14, -3.14, 0], 77) == [-1.8347753704300173e+38, -1.8347753704300173e+38, 0]", "assert nth_nums([1.405118970978401, 1.405118970978401], 9) == [21.35098307931332, 21.35098307931332]", "assert nth_nums([-10, -5, 0, 5, 5, 5, 10], 9) == [-1000000000, -1953125, 0, 1953125, 1953125, 1953125, 1000000000]", "assert nth_nums([-10, 88, -5, 77, 0, 5, 10], 1) == [-10, 88, -5, 77, 0, 5, 10]", "assert nth_nums([1.405118970978401, -3.14, 1.405118970978401, 1.405118970978401], 78) == [332369830174.8728, 5.761194663150255e+38, 332369830174.8728, 332369830174.8728]", "assert nth_nums([-3.14, -3.14, 0, 0, 0], 4) == [97.21171216000002, 97.21171216000002, 0, 0, 0]", "assert nth_nums([0.9876346699284253, 1.405118970978401], 3) == [0.9633608232724846, 2.7742097397181036]", "assert nth_nums([50, -100, 100, 0, 50, 100], 22) == [23841857910156250000000000000000000000, 100000000000000000000000000000000000000000000, 100000000000000000000000000000000000000000000, 0, 23841857910156250000000000000000000000, 100000000000000000000000000000000000000000000]", "assert nth_nums([3.5], 2) == [12.25]", "assert nth_nums([1.5, 2.5, 3.5], -2) == [0.4444444444444444, 0.16, 0.08163265306122448]", "assert nth_nums([-10, 0, 5, 9, 5], 1) == [-10, 0, 5, 9, 5]", "assert nth_nums([1.405118970978401, 1.405118970978401, 1.405118970978401], 78) == [332369830174.8728, 332369830174.8728, 332369830174.8728]", "assert nth_nums([0.5, 2.5], 99) == [1.5777218104420236e-30, 2.4892061111444566e+39]", "assert nth_nums([0.5718434373181378, -3.14, -3.14, 0], 2) == [0.327004916803823, 9.8596, 9.8596, 0]", "assert nth_nums([-3.14, -3.2570960136732894, 0, 0], 4) == [97.21171216000002, 112.54397342242135, 0, 0]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to convert a given string to uppercase.\nassert is_upper(\"person\") ==\"PERSON\"\nYour code should pass the test:\nassert is_upper(\"person\") ==\"PERSON\"", "test_list": [ "assert is_upper(\"person\") ==\"PERSON\"", "assert is_upper(\"final\") == \"FINAL\"", "assert is_upper(\"Valid\") == \"VALID\"", "assert is_upper('') == ''", "assert is_upper('abcdefghijklmnopqrstuvwxyz') == 'ABCDEFGHIJKLMNOPQRSTUVWXYZ'", "assert is_upper('He11o W0r1d!') == 'HE11O W0R1D!'", "assert is_upper('Thi5 is @ complex 1nput!') == 'THI5 IS @ COMPLEX 1NPUT!'", "assert is_upper('Test1ng fUtur3') == 'TEST1NG FUTUR3'", "assert is_upper('I l0v3 c0d1ng!!') == 'I L0V3 C0D1NG!!'", "assert is_upper('H@ppy New Year 2022') == 'H@PPY NEW YEAR 2022'", "assert is_upper('Th3 Qu1ck Br0wn F0x Jumps 0ver the L@zy D0g!') == 'TH3 QU1CK BR0WN F0X JUMPS 0VER THE L@ZY D0G!'", "assert is_upper('@!$') == '@!$'", "assert is_upper('Thi5 is lnput!') == 'THI5 IS LNPUT!'", "assert is_upper('D0g!') == 'D0G!'", "assert is_upper('W0r1d!') == 'W0R1D!'", "assert is_upper('Thi5 is lnput!!') == 'THI5 IS LNPUT!!'", "assert is_upper('l03') == 'L03'", "assert is_upper('l003') == 'L003'", "assert is_upper('Th3 Qu1ck Br0wn F0x Jumps 0veD0g!he L@zy D0g!') == 'TH3 QU1CK BR0WN F0X JUMPS 0VED0G!HE L@ZY D0G!'", "assert is_upper('YearHe1is1o We0r1d!') == 'YEARHE1IS1O WE0R1D!'", "assert is_upper('cBr0wn0d1ng!!') == 'CBR0WN0D1NG!!'", "assert is_upper('Thi5 @is @ complex 1nput!') == 'THI5 @IS @ COMPLEX 1NPUT!'", "assert is_upper('Thi5 @is @ comnplex 1nput!') == 'THI5 @IS @ COMNPLEX 1NPUT!'", "assert is_upper('H@ppy New Yea0verr 2022') == 'H@PPY NEW YEA0VERR 2022'", "assert is_upper('F0x') == 'F0X'", "assert is_upper('complelx') == 'COMPLELX'", "assert is_upper('lnput!F0x') == 'LNPUT!F0X'", "assert is_upper('Qu1ck') == 'QU1CK'", "assert is_upper('Thi5') == 'THI5'", "assert is_upper('l00@is3') == 'L00@IS3'", "assert is_upper('@isQu1ck') == '@ISQU1CK'", "assert is_upper('Th3 Qu1ck Br0wn F0xNew Jumps 0ver the L@zy D0g!') == 'TH3 QU1CK BR0WN F0XNEW JUMPS 0VER THE L@ZY D0G!'", "assert is_upper('c0d1ngg!!') == 'C0D1NGG!!'", "assert is_upper('Thi5 lnput!!is lnput!!') == 'THI5 LNPUT!!IS LNPUT!!'", "assert is_upper('@!$Th3 Qu1ck Br0wn F0xNew Jumps 0ver the L@zy D0g!') == '@!$TH3 QU1CK BR0WN F0XNEW JUMPS 0VER THE L@ZY D0G!'", "assert is_upper('YearHe1is1oa We0r1d!') == 'YEARHE1IS1OA WE0R1D!'", "assert is_upper('Thi5 @is @ lnput!comnplex 1nput!') == 'THI5 @IS @ LNPUT!COMNPLEX 1NPUT!'", "assert is_upper('D0g!cBr0wn0d1ng!!') == 'D0G!CBR0WN0D1NG!!'", "assert is_upper('YearHe1is1o') == 'YEARHE1IS1O'", "assert is_upper('Yea0verr') == 'YEA0VERR'", "assert is_upper('lnput!!') == 'LNPUT!!'", "assert is_upper('c0d1ngg!!@is') == 'C0D1NGG!!@IS'", "assert is_upper('l0v3') == 'L0V3'", "assert is_upper('0ver') == '0VER'", "assert is_upper('YearHe1is1oa') == 'YEARHE1IS1OA'", "assert is_upper('F0Thi5') == 'F0THI5'", "assert is_upper('1nput!') == '1NPUT!'", "assert is_upper('Th3 Qu1ck Br0wn F0xNew Jumps 0ver the L@zy D0g!Thi5') == 'TH3 QU1CK BR0WN F0XNEW JUMPS 0VER THE L@ZY D0G!THI5'", "assert is_upper('D0g!Thi5') == 'D0G!THI5'", "assert is_upper('c0d1Thi5Thi5 is lnput!! @is @ complex 1nput!ngg!!@is') == 'C0D1THI5THI5 IS LNPUT!! @IS @ COMPLEX 1NPUT!NGG!!@IS'", "assert is_upper('c0d1Thi5Tt!ngg!!@is') == 'C0D1THI5TT!NGG!!@IS'", "assert is_upper('compelx') == 'COMPELX'", "assert is_upper('rrr') == 'RRR'", "assert is_upper('I l0v3 c0Th3d1ng!!') == 'I L0V3 C0TH3D1NG!!'", "assert is_upper('1nnput!') == '1NNPUT!'", "assert is_upper('Year') == 'YEAR'", "assert is_upper('2022') == '2022'", "assert is_upper('abcdhijklmnopqrstuvwxyz') == 'ABCDHIJKLMNOPQRSTUVWXYZ'", "assert is_upper('YYea0verr') == 'YYEA0VERR'", "assert is_upper('New') == 'NEW'", "assert is_upper('0W0r1d!') == '0W0R1D!'", "assert is_upper('Thi5 @is @ comnplrrrex 1nput!') == 'THI5 @IS @ COMNPLRRREX 1NPUT!'", "assert is_upper('D0gTest1ng!cBr0wn0d1ng!!') == 'D0GTEST1NG!CBR0WN0D1NG!!'", "assert is_upper('Test1ng efUtur') == 'TEST1NG EFUTUR'", "assert is_upper('@isQH@ppyu1ck') == '@ISQH@PPYU1CK'", "assert is_upper('Thi5 @is @ F0Thi5comnplrrresx 1nput!') == 'THI5 @IS @ F0THI5COMNPLRRRESX 1NPUT!'", "assert is_upper('l0YearHe1is1oa We0r1d!0@is3') == 'L0YEARHE1IS1OA WE0R1D!0@IS3'", "assert is_upper('c0d1Thiput!ngg!!@is') == 'C0D1THIPUT!NGG!!@IS'", "assert is_upper('Dg!g!') == 'DG!G!'", "assert is_upper('Ye1nput!ngg!!@isarHYearHe1is1oae1is1o') == 'YE1NPUT!NGG!!@ISARHYEARHE1IS1OAE1IS1O'", "assert is_upper('YearH1e1is1o We0r1d!') == 'YEARH1E1IS1O WE0R1D!'", "assert is_upper('Th3 Qu1ck Br0wn F0xNew Jumps 0ver the L@zy 0g!') == 'TH3 QU1CK BR0WN F0XNEW JUMPS 0VER THE L@ZY 0G!'", "assert is_upper('0W0r1d!0complelx') == '0W0R1D!0COMPLELX'", "assert is_upper('Testur') == 'TESTUR'", "assert is_upper('I l0veD0g!hed1ng!!') == 'I L0VED0G!HED1NG!!'", "assert is_upper('Thi5 @is @ lnput!ccomnplrrrexomnplex 1nput!') == 'THI5 @IS @ LNPUT!CCOMNPLRRREXOMNPLEX 1NPUT!'", "assert is_upper('He11o') == 'HE11O'", "assert is_upper('YearHe1is1oa WeH0r1d!') == 'YEARHE1IS1OA WEH0R1D!'", "assert is_upper('lnput!Fn0x') == 'LNPUT!FN0X'", "assert is_upper('Dc0d1ngg!!g!!g!') == 'DC0D1NGG!!G!!G!'", "assert is_upper('1npu!') == '1NPU!'", "assert is_upper('He11o Wr0r1d!') == 'HE11O WR0R1D!'", "assert is_upper('c0d1!ngg!!@is') == 'C0D1!NGG!!@IS'", "assert is_upper('H@ppy New Year 2l0veD0g!hed1ng!!022') == 'H@PPY NEW YEAR 2L0VED0G!HED1NG!!022'", "assert is_upper('YearHe1ioa') == 'YEARHE1IOA'", "assert is_upper('abcdhijklmnopqrstuvwxyzYearHe1is1oa WeH0r1d!') == 'ABCDHIJKLMNOPQRSTUVWXYZYEARHE1IS1OA WEH0R1D!'", "assert is_upper('l0@is3') == 'L0@IS3'", "assert is_upper('YearHe1is1io') == 'YEARHE1IS1IO'", "assert is_upper('l0v03') == 'L0V03'", "assert is_upper('D0Tg!Thi5') == 'D0TG!THI5'", "assert is_upper('0g!') == '0G!'", "assert is_upper('@isQcH@ppyu1ck') == '@ISQCH@PPYU1CK'", "assert is_upper('Thi5 @is @ comt!') == 'THI5 @IS @ COMT!'", "assert is_upper('YearH1e1is1o!') == 'YEARH1E1IS1O!'", "assert is_upper('OOoPGHemh') == 'OOOPGHEMH'", "assert is_upper('lnp!!') == 'LNP!!'", "assert is_upper('D0WeH0r1d!gTest1ng!cBr0wn0d1ng!!') == 'D0WEH0R1D!GTEST1NG!CBR0WN0D1NG!!'", "assert is_upper('00veer') == '00VEER'", "assert is_upper('rrrr') == 'RRRR'", "assert is_upper('Th3 Qu1ck He11oBr0wn F0xNew Jumps 0ver the L@zy D0g!') == 'TH3 QU1CK HE11OBR0WN F0XNEW JUMPS 0VER THE L@ZY D0G!'", "assert is_upper('r0Qu1cklx') == 'R0QU1CKLX'", "assert is_upper('I') == 'I'", "assert is_upper('fUtur3') == 'FUTUR3'", "assert is_upper('abcstuxvwxxyz') == 'ABCSTUXVWXXYZ'", "assert is_upper('T h3 Qu1ck Br0wn F0xNew Jumps 0ver the L@zy D0g!Thi5') == 'T H3 QU1CK BR0WN F0XNEW JUMPS 0VER THE L@ZY D0G!THI5'", "assert is_upper('@!$Th3 Qu1ck Br0wn F0xNew Ju0g!') == '@!$TH3 QU1CK BR0WN F0XNEW JU0G!'", "assert is_upper('@isQH@Yea0verrppyu1ck') == '@ISQH@YEA0VERRPPYU1CK'", "assert is_upper('He11o Wr0r1Testur0W0r1d!d!') == 'HE11O WR0R1TESTUR0W0R1D!D!'", "assert is_upper('NoCsH') == 'NOCSH'", "assert is_upper('He1111o') == 'HE1111O'", "assert is_upper('D0WHD0g!cBr0wn0d1ng!!0r1d!gTest1ng!cBr0wn0d1ng!!') == 'D0WHD0G!CBR0WN0D1NG!!0R1D!GTEST1NG!CBR0WN0D1NG!!'", "assert is_upper('He11111o') == 'HE11111O'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the area of the largest triangle that can be inscribed in a semicircle with a given radius.\nassert triangle_area(-1) == None\nYour code should pass the test:\nassert triangle_area(-1) == None", "test_list": [ "assert triangle_area(-1) == None", "assert triangle_area(0) == 0", "assert triangle_area(2) == 4", "assert triangle_area(-0.5) == None", "assert triangle_area(0.5) == 0.25", "assert triangle_area(1) == 1", "assert triangle_area(1000000000) == 1000000000000000000", "assert triangle_area(-1000000000) == None", "assert triangle_area(0) == 0", "assert triangle_area(0.2072611874375927) == 0.042957199818040935", "assert triangle_area(False) == 0", "assert triangle_area(True) == 1", "assert triangle_area(0.16809162682757048) == 0.028254795009539212", "assert triangle_area(0.6844411299243851) == 0.468459660332169", "assert triangle_area(0.35683551430663585) == 0.12733158427048133", "assert triangle_area(0.33946897052245506) == 0.11523918194757546", "assert triangle_area(0.6521612813427807) == 0.4253143368826576", "assert triangle_area(999999999) == 999999998000000001", "assert triangle_area(0.17112184563336552) == 0.029282686052969378", "assert triangle_area(19) == 361", "assert triangle_area(2) == 4", "assert triangle_area(-65.63179010691987) == None", "assert triangle_area(-0.01895300889853002) == None", "assert triangle_area(-0.2255496597911223) == None", "assert triangle_area(0.25992055122366875) == 0.06755869294841581", "assert triangle_area(-1000000001) == None", "assert triangle_area(-0.2386542836217336) == None", "assert triangle_area(0.0886668365313565) == 0.007861807900478296", "assert triangle_area(-0.6124370845097739) == None", "assert triangle_area(1.554047854781877) == 2.415064734952154", "assert triangle_area(-65.03547673997947) == None", "assert triangle_area(2.3994387471541216) == 5.757306301344541", "assert triangle_area(-35.74281783110325) == None", "assert triangle_area(0.09528268647223326) == 0.009078790341365902", "assert triangle_area(0.3232568533333865) == 0.10449499322700255", "assert triangle_area(0.2242711558968573) == 0.050297551367312475", "assert triangle_area(-0.9709905734457034) == None", "assert triangle_area(-0.6546455374650706) == None", "assert triangle_area(-0.06234286415868906) == None", "assert triangle_area(1.3977482675936928) == 1.9537002195611692", "assert triangle_area(0.29784236090387306) == 0.08871007194879298", "assert triangle_area(0.33836539173549723) == 0.1144911383243165", "assert triangle_area(-31.610835992989255) == None", "assert triangle_area(-0.27669689852371004) == None", "assert triangle_area(84) == 7056", "assert triangle_area(-1000000002) == None", "assert triangle_area(0.6223298065417987) == 0.3872943881103526", "assert triangle_area(-999999999) == None", "assert triangle_area(8) == 64", "assert triangle_area(0.6754515039898535) == 0.45623473424215516", "assert triangle_area(1.071880421647353) == 1.1489276383109073", "assert triangle_area(0.7544257017505951) == 0.5691581394618779", "assert triangle_area(-26.27081423640981) == None", "assert triangle_area(-999999998) == None", "assert triangle_area(86) == 7396", "assert triangle_area(-13.889508087517811) == None", "assert triangle_area(2.600031963946284) == 6.760166213542371", "assert triangle_area(3.0652858255362965) == 9.395977192233735", "assert triangle_area(0.8998367814282604) == 0.8097062332111709", "assert triangle_area(0.8309457774079265) == 0.6904708849920633", "assert triangle_area(0.44818675801257646) == 0.20087137005782377", "assert triangle_area(-0.30367725300317) == None", "assert triangle_area(1.2411900876071214) == 1.5405528335741736", "assert triangle_area(18) == 324", "assert triangle_area(0.2729798323779066) == 0.07451798888506997", "assert triangle_area(0.3285339976213698) == 0.10793458759307822", "assert triangle_area(-36.146603050653454) == None", "assert triangle_area(-27) == None", "assert triangle_area(-26) == None", "assert triangle_area(-0.9874223750138421) == None", "assert triangle_area(1.5476233443397687) == 2.39513801594541", "assert triangle_area(-86.6551056172488) == None", "assert triangle_area(1.6060546715294721) == 2.5794116079416405", "assert triangle_area(2.1601728022044884) == 4.666346535383991", "assert triangle_area(2.285060680697282) == 5.221502314468727", "assert triangle_area(2.8260615578768196) == 7.9866239289091565", "assert triangle_area(0.14266165000955092) == 0.0203523463834476", "assert triangle_area(-0.017934287764720593) == None", "assert triangle_area(-84.95845096222169) == None", "assert triangle_area(1.0974614491570875) == 1.2044216323859747", "assert triangle_area(1.898333123797264) == 3.6036686489058787", "assert triangle_area(-0.23800544092412548) == None", "assert triangle_area(0.8789431902277999) == 0.7725411316478223", "assert triangle_area(0.4102883538841385) == 0.16833653333295606", "assert triangle_area(-0.2581929508402424) == None", "assert triangle_area(4.5143460754522735) == 20.379320488951343", "assert triangle_area(1.1277670988949333) == 1.2718586293498944", "assert triangle_area(-19.946636688004762) == None", "assert triangle_area(-999999997) == None", "assert triangle_area(-0.011164351123219007) == None", "assert triangle_area(-87.64997072807174) == None", "assert triangle_area(-0.6132302083082929) == None", "assert triangle_area(-0.23140740618272113) == None", "assert triangle_area(0.20870583419763342) == 0.04355812522813005", "assert triangle_area(0.21493934798744777) == 0.04619892331326916", "assert triangle_area(999999998) == 999999996000000004", "assert triangle_area(-0.15646745414267438) == None", "assert triangle_area(-0.37347281880381433) == None", "assert triangle_area(-0.17536906835796195) == None", "assert triangle_area(-0.12875962601096258) == None", "assert triangle_area(0.7562408647560114) == 0.5719002455269199", "assert triangle_area(-88.39828615224197) == None", "assert triangle_area(0.4785284183694467) == 0.2289894471871642", "assert triangle_area(0.29728651261782624) == 0.08837927058446896", "assert triangle_area(1.0367180826599893) == 1.0747843829142045", "assert triangle_area(-0.3475613031240767) == None", "assert triangle_area(-0.38928230557291527) == None", "assert triangle_area(1.3746888786897695) == 1.8897695131933359" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to replace all spaces in the given string with '%20'.\nassert replace_spaces(\"My Name is Dawood\") == 'My%20Name%20is%20Dawood'\nYour code should pass the test:\nassert replace_spaces(\"My Name is Dawood\") == 'My%20Name%20is%20Dawood'", "test_list": [ "assert replace_spaces(\"My Name is Dawood\") == 'My%20Name%20is%20Dawood'", "assert replace_spaces(\"I am a Programmer\") == 'I%20am%20a%20Programmer'", "assert replace_spaces(\"I love Coding\") == 'I%20love%20Coding'", "assert replace_spaces('') == ''", "assert replace_spaces('I love Coding ') == 'I%20love%20Coding%20%20%20%20%20'", "assert replace_spaces('My Name is Dawood ') == 'My%20Name%20is%20Dawood%20%20%20%20%20'", "assert replace_spaces('I am a Programmer ') == 'I%20am%20a%20Programmer%20%20%20%20%20'", "assert replace_spaces(' ') == '%20%20%20%20%20'", "assert replace_spaces('I love\\tCoding\\n ') == 'I%20love\\tCoding\\n%20'", "assert replace_spaces('Hello\\tWorld\\n') == 'Hello\\tWorld\\n'", "assert replace_spaces('This is a test\\tfor\\tmultiple\\nspaces.') == 'This%20is%20a%20test\\tfor\\tmultiple\\nspaces.'", "assert replace_spaces('One space\\tbetween each\\tword.') == 'One%20space\\tbetween%20each\\tword.'", "assert replace_spaces('Multiple spaces\\tat the\\tend.') == 'Multiple%20spaces\\tat%20the\\tend.'", "assert replace_spaces('Test\\tfor\\ttabs\\tand\\tspaces.') == 'Test\\tfor\\ttabs\\tand\\tspaces.'", "assert replace_spaces('No spaces\\tin\\tthis\\tinput.') == 'No%20spaces\\tin\\tthis\\tinput.'", "assert replace_spaces('A mix of\\tspaces,\\ttabs,\\nand\\nnewlines.') == 'A%20mix%20of\\tspaces,\\ttabs,\\nand\\nnewlines.'", "assert replace_spaces(' I love Coding ') == '%20%20%20I%20love%20Coding%20%20%20'", "assert replace_spaces('Hello World') == 'Hello%20%20%20%20World'", "assert replace_spaces(' H@llo W0r!d ') == '%20%20%20H@llo%20%20%20%20%20W0r!d%20%20%20'", "assert replace_spaces('Hello World') == 'Hello%20%20%20%20%20%20%20%20%20World'", "assert replace_spaces('word.') == 'word.'", "assert replace_spaces('I love\\tCAoding\\n ') == 'I%20love\\tCAoding\\n%20'", "assert replace_spaces('A mix of\\tspaces,\\ttabs,\\nand\\nnewlineWorld.') == 'A%20mix%20of\\tspaces,\\ttabs,\\nand\\nnewlineWorld.'", "assert replace_spaces('One') == 'One'", "assert replace_spaces('wordmultiple.') == 'wordmultiple.'", "assert replace_spaces('I love\\tCoOne space\\tbetween each\\tword.ding\\n ') == 'I%20love\\tCoOne%20space\\tbetween%20each\\tword.ding\\n%20'", "assert replace_spaces('Multiple') == 'Multiple'", "assert replace_spaces(' Multiple ') == '%20%20%20%20Multiple%20%20'", "assert replace_spaces('This') == 'This'", "assert replace_spaces('I love oCoding ') == 'I%20love%20oCoding%20%20%20%20%20'", "assert replace_spaces('I log\\nTest') == 'I%20log\\nTest'", "assert replace_spaces('No spaces\\tin\\tthis\\tinputis.') == 'No%20spaces\\tin\\tthis\\tinputis.'", "assert replace_spaces(' I log ') == '%20%20%20I%20log%20%20%20'", "assert replace_spaces('tehe') == 'tehe'", "assert replace_spaces('Name') == 'Name'", "assert replace_spaces('Hello WorlMy Name is Dawood d') == 'Hello%20%20%20%20WorlMy%20Name%20is%20Dawood%20%20%20%20%20d'", "assert replace_spaces('I love oCodi ') == 'I%20love%20oCodi%20%20'", "assert replace_spaces('word.ding') == 'word.ding'", "assert replace_spaces('am') == 'am'", "assert replace_spaces('I love oCodi s') == 'I%20love%20oCodi%20%20s'", "assert replace_spaces('teh e') == 'teh%20%20%20%20%20e'", "assert replace_spaces('Test') == 'Test'", "assert replace_spaces('tabs') == 'tabs'", "assert replace_spaces('A mix of\\tspaces,s\\ttabs,\\nand\\nnewlines.') == 'A%20mix%20of\\tspaces,s\\ttabs,\\nand\\nnewlines.'", "assert replace_spaces('Hello') == 'Hello'", "assert replace_spaces('Hello Wo') == 'Hello%20%20%20%20Wo'", "assert replace_spaces(' H H@llo W0r!d ') == '%20H%20%20H@llo%20%20%20%20%20W0r!d%20%20%20'", "assert replace_spaces('between') == 'between'", "assert replace_spaces('Wo') == 'Wo'", "assert replace_spaces('MultiNo spaces\\tin\\tthis\\tinputis.ple spaces\\tat the\\tend.') == 'MultiNo%20spaces\\tin\\tthis\\tinputis.ple%20spaces\\tat%20the\\tend.'", "assert replace_spaces('My Naawood ') == 'My%20Naawood%20%20%20%20%20'", "assert replace_spaces('MultiN\\to spaces\\tin\\tthis\\tinputis.ple spaces\\tat the\\tend.') == 'MultiN\\to%20spaces\\tin\\tthis\\tinputis.ple%20spaces\\tat%20the\\tend.'", "assert replace_spaces('spaces.') == 'spaces.'", "assert replace_spaces('woinputis.rd.') == 'woinputis.rd.'", "assert replace_spaces('HelOnelo World') == 'HelOnelo%20%20%20%20World'", "assert replace_spaces('No spaces\\t in\\tthis\\tinput.') == 'No%20spaces\\t%20in\\tthis\\tinput.'", "assert replace_spaces('Coding') == 'Coding'", "assert replace_spaces('My Nameinputis.wood ') == 'My%20Nameinputis.wood%20%20%20%20%20'", "assert replace_spaces('HelOnetabs World') == 'HelOnetabs%20%20%20World'", "assert replace_spaces('teforhe') == 'teforhe'", "assert replace_spaces('A mix of\\tspaces,\\ttabs,\\nand\\nnDawoodewlines.') == 'A%20mix%20of\\tspaces,\\ttabs,\\nand\\nnDawoodewlines.'", "assert replace_spaces(' H@llo W0r!dI love oCodi s ') == '%20%20%20H@llo%20%20%20%20%20W0r!dI%20love%20oCodi%20%20s%20%20%20%20'", "assert replace_spaces('tehhe') == 'tehhe'", "assert replace_spaces('A mix of\\tspaces,sd\\ttabs,\\nand\\nnewlines.') == 'A%20mix%20of\\tspaces,sd\\ttabs,\\nand\\nnewlines.'", "assert replace_spaces('Multiptle spaces\\tt the\\tend.') == 'Multiptle%20spaces\\tt%20the\\tend.'", "assert replace_spaces('MultiNN') == 'MultiNN'", "assert replace_spaces('MultiN') == 'MultiN'", "assert replace_spaces('A mix of\\tspaces,\\ttabs,\\nandam\\nnDawoodewlines.') == 'A%20mix%20of\\tspaces,\\ttabs,\\nandam\\nnDawoodewlines.'", "assert replace_spaces('Hello I love oCoding WorlMy Name is Dawood d') == 'Hello%20%20%20%20I%20love%20oCoding%20%20%20%20%20WorlMy%20Name%20is%20Dawood%20%20%20%20%20d'", "assert replace_spaces('aat') == 'aat'", "assert replace_spaces('tehheWorld') == 'tehheWorld'", "assert replace_spaces('A mix of\\tspaces,\\tbMultiptle spaces\\tt the\\tend.tabs,\\nand\\nnDawoodewlines.') == 'A%20mix%20of\\tspaces,\\tbMultiptle%20spaces\\tt%20the\\tend.tabs,\\nand\\nnDawoodewlines.'", "assert replace_spaces('A mix of\\tspaced\\nnewlineWorld.') == 'A%20mix%20of\\tspaced\\nnewlineWorld.'", "assert replace_spaces('teheTest\\tfor\\ttabs\\tand\\tspaces.he') == 'teheTest\\tfor\\ttabs\\tand\\tspaces.he'", "assert replace_spaces('spaces,s') == 'spaces,s'", "assert replace_spaces('in.putis.') == 'in.putis.'", "assert replace_spaces('newlineWorld.') == 'newlineWorld.'", "assert replace_spaces('A mix nes.') == 'A%20mix%20nes.'", "assert replace_spaces(' H@llo @ W0r!dI love oCodi s ') == '%20%20%20H@llo%20%20@%20%20%20W0r!dI%20love%20oCodi%20%20s%20%20%20%20'", "assert replace_spaces('I love C oding ') == 'I%20love%20C%20oding%20%20%20%20%20'", "assert replace_spaces('I lovding\\n ') == 'I%20lovding\\n%20'", "assert replace_spaces('tetehhhe') == 'tetehhhe'", "assert replace_spaces('end.') == 'end.'", "assert replace_spaces('My') == 'My'", "assert replace_spaces('sTest') == 'sTest'", "assert replace_spaces('ses') == 'ses'", "assert replace_spaces('teforhee') == 'teforhee'", "assert replace_spaces('HelOOnelo') == 'HelOOnelo'", "assert replace_spaces('A mix of\\tspaces,\\ttabs,\\nand\\nnDawoodewelinesnewlines..') == 'A%20mix%20of\\tspaces,\\ttabs,\\nand\\nnDawoodewelinesnewlines..'", "assert replace_spaces('A mix of\\tspaces,\\ttabs,\\nand\\nnDawoodewelinesnewolines..') == 'A%20mix%20of\\tspaces,\\ttabs,\\nand\\nnDawoodewelinesnewolines..'", "assert replace_spaces('oI love\\tCoding\\n ') == 'oI%20love\\tCoding\\n%20'", "assert replace_spaces('odig') == 'odig'", "assert replace_spaces('WHello Wo') == 'WHello%20%20%20%20Wo'", "assert replace_spaces('Codding') == 'Codding'", "assert replace_spaces('My Nameinputis.d ') == 'My%20Nameinputis.d%20%20%20%20%20'", "assert replace_spaces('love') == 'love'", "assert replace_spaces('I love MultiNo ') == 'I%20love%20MultiNo%20'", "assert replace_spaces('Hello\\tWo\\nrld\\n') == 'Hello\\tWo\\nrld\\n'", "assert replace_spaces('A s,s\\ttabs,\\nand\\nnewlines.') == 'A%20s,s\\ttabs,\\nand\\nnewlines.'", "assert replace_spaces('Nameinputis.wood') == 'Nameinputis.wood'", "assert replace_spaces('I love oCoding bMultiptle I love\\tCAoding\\n end.tabs, ') == 'I%20love%20oCoding%20bMultiptle%20I%20love\\tCAoding\\n%20%20end.tabs,%20'", "assert replace_spaces('teefrhe') == 'teefrhe'", "assert replace_spaces('No spaces\\tin\\tthis\\tispaces,nput.') == 'No%20spaces\\tin\\tthis\\tispaces,nput.'", "assert replace_spaces('tetethhhe') == 'tetethhhe'", "assert replace_spaces('word.diNong') == 'word.diNong'", "assert replace_spaces('W0r!dI') == 'W0r!dI'", "assert replace_spaces('A mix of\\tspaces,sd\\ttabs,\\nand\\ntetethhhenewlines.') == 'A%20mix%20of\\tspaces,sd\\ttabs,\\nand\\ntetethhhenewlines.'", "assert replace_spaces('MultiN\\to spaces\\tin\\tthis\\tinputis. Multiple ple spaces\\tat the\\tend.') == 'MultiN\\to%20spaces\\tin\\tthis\\tinputis.%20%20%20%20Multiple%20%20ple%20spaces\\tat%20the\\tend.'", "assert replace_spaces('A mix of\\tspaces,s\\ttabs,\\nands\\nnewlines.') == 'A%20mix%20of\\tspaces,s\\ttabs,\\nands\\nnewlines.'", "assert replace_spaces('eThis') == 'eThis'", "assert replace_spaces('I love MultiNoCodingo ') == 'I%20love%20MultiNoCodingo%20'", "assert replace_spaces('Hello\\tWold\\n') == 'Hello\\tWold\\n'", "assert replace_spaces('My Nameinputis.wood aat') == 'My%20Nameinputis.wood%20%20%20%20%20aat'", "assert replace_spaces('Hello A mix of\\tspaces,\\ttabs,\\nandam\\nnDawoodewlines.Wo') == 'Hello%20%20%20%20A%20mix%20of\\tspaces,\\ttabs,\\nandam\\nnDawoodewlines.Wo'", "assert replace_spaces('I lovMe MultiNo ') == 'I%20lovMe%20MultiNo%20'", "assert replace_spaces('A s,s\\ttabas,\\nand\\nnewlines.') == 'A%20s,s\\ttabas,\\nand\\nnewlines.'", "assert replace_spaces('A mix of\\tspaces,s\\ttaabs,\\nand\\nnewlines.') == 'A%20mix%20of\\tspaces,s\\ttaabs,\\nand\\nnewlines.'", "assert replace_spaces('tetethhhenewlines.') == 'tetethhhenewlines.'", "assert replace_spaces('this') == 'this'", "assert replace_spaces('No spaces\\tinh\\tthis\\tinput.') == 'No%20spaces\\tinh\\tthis\\tinput.'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find even numbers from a list of numbers.\nassert Split([1,2,3,4,5]) == [2,4]\nYour code should pass the test:\nassert Split([1,2,3,4,5]) == [2,4]", "test_list": [ "assert Split([1,2,3,4,5]) == [2,4]", "assert Split([4,5,6,7,8,0,1]) == [4,6,8,0]", "assert Split ([8,12,15,19]) == [8,12]", "assert Split([-3, -1, 0, 2, 4, -6, -8]) == [0, 2, 4, -6, -8]", "assert Split([]) == []", "assert Split([-10, -8, -6, -4, -2]) == [-10, -8, -6, -4, -2]", "assert Split([-3, -1, 0, 2, 4, -6, -8, -10, 2]) == [0, 2, 4, -6, -8, -10, 2]", "assert Split([-3, 0, 2, 4, -6, -8, 0, 0]) == [0, 2, 4, -6, -8, 0, 0]", "assert Split([-3, -1, 2, 4, -6, -8, 0, 0, 2]) == [2, 4, -6, -8, 0, 0, 2]", "assert Split([6]) == [6]", "assert Split([-10, -8, -2, -6, -4, -2]) == [-10, -8, -2, -6, -4, -2]", "assert Split([-3, -1, 3, 2, 4, -6, -8, 0, 0, 2]) == [2, 4, -6, -8, 0, 0, 2]", "assert Split([-3, -1, 3, 2, 4, -6, -8, 0, 0, 2, -8]) == [2, 4, -6, -8, 0, 0, 2, -8]", "assert Split([-10, -8, -6, -4, -2, -10]) == [-10, -8, -6, -4, -2, -10]", "assert Split([-3, 0, 2, 4, -6, -8, 0, 0, 4]) == [0, 2, 4, -6, -8, 0, 0, 4]", "assert Split([-10, -7, -6, -4, -2, -10]) == [-10, -6, -4, -2, -10]", "assert Split([-10, -8, -4, -2, -10]) == [-10, -8, -4, -2, -10]", "assert Split([-10, -6, -4, -2, -9]) == [-10, -6, -4, -2]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, 0, 2, -8]) == [-6, 4, -6, -8, 0, 0, 2, -8]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, 0, -7, 2, -8]) == [-6, 4, -6, -8, 0, 0, 2, -8]", "assert Split([-3, -1, 0, -7, 2, 4, -6, -8]) == [0, 2, 4, -6, -8]", "assert Split([-3, 0, 2, -4, -6, -5, -8, 0, 0, 2, -4]) == [0, 2, -4, -6, -8, 0, 0, 2, -4]", "assert Split([-10, -4, -2, -9]) == [-10, -4, -2]", "assert Split([-10, -7, -6, -4, -2, -10, -4]) == [-10, -6, -4, -2, -10, -4]", "assert Split([-10, -7, -6, -4, -2, -10, -4, -6]) == [-10, -6, -4, -2, -10, -4, -6]", "assert Split([-2, -3, -1, 0, -3, -7, 2, -6, -8]) == [-2, 0, 2, -6, -8]", "assert Split([-10, -6, -4, -3, -9]) == [-10, -6, -4]", "assert Split([-3, -1, 3, 2, 4, -6, -8, 0, 0, 2, -8, -3]) == [2, 4, -6, -8, 0, 0, 2, -8]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, 0, 2, -8, 0, 0]) == [-6, 4, -6, -8, 0, 0, 2, -8, 0, 0]", "assert Split([-10, -6, -4, -2, -10]) == [-10, -6, -4, -2, -10]", "assert Split([-3, 0, 1, 2, -4, -6, -5, -8, 0, 0, -4]) == [0, 2, -4, -6, -8, 0, 0, -4]", "assert Split([-3, -1, 0, 1, 2, 4, -6, -8, -10, 2, -1]) == [0, 2, 4, -6, -8, -10, 2]", "assert Split([-3, 2, -6, 4, -6, -8, 0, 0, 2, -8, 0, 0]) == [2, -6, 4, -6, -8, 0, 0, 2, -8, 0, 0]", "assert Split([-3, -1, 2, 4, -6, -8, -10, 2]) == [2, 4, -6, -8, -10, 2]", "assert Split([-10, -8, -8, -4, -2]) == [-10, -8, -8, -4, -2]", "assert Split([-10, -7, -6, -6, -4, -2, -10, -4]) == [-10, -6, -6, -4, -2, -10, -4]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, -7, 2, -8]) == [-6, 4, -6, -8, 0, 2, -8]", "assert Split([-3, 0, 2, 2, 4, -6, -8, 0, 0, 4]) == [0, 2, 2, 4, -6, -8, 0, 0, 4]", "assert Split([-3, 0, -4, -6, -5, -8, 0, 0, 2, -4]) == [0, -4, -6, -8, 0, 0, 2, -4]", "assert Split([-9, -7, -6, -4, -2, -10, -4]) == [-6, -4, -2, -10, -4]", "assert Split([-3, 0, 2, 2, 4, -6, -8, 0, 0, 4, 0]) == [0, 2, 2, 4, -6, -8, 0, 0, 4, 0]", "assert Split([-10, -8, -8, -4, -2, -8]) == [-10, -8, -8, -4, -2, -8]", "assert Split([-1, 2, 4, -6, -8, 0, 0, -1, -1]) == [2, 4, -6, -8, 0, 0]", "assert Split([-3, -2, 3, 2, 4, -6, -8, 0, 0, 2, -8, -3, 4]) == [-2, 2, 4, -6, -8, 0, 0, 2, -8, 4]", "assert Split([-2, -3, -1, 0, -3, -7, 2, -6, -8, 0]) == [-2, 0, 2, -6, -8, 0]", "assert Split([-3, 0, 2, 2, -6, -8, 0, 0, 0]) == [0, 2, 2, -6, -8, 0, 0, 0]", "assert Split([-10, -10, -8, -6, -2, -10, -2]) == [-10, -10, -8, -6, -2, -10, -2]", "assert Split([-3, 0, 2, 2, 4, -6, -8, 0, 4]) == [0, 2, 2, 4, -6, -8, 0, 4]", "assert Split([-10, -8, -4, -6, -4, -2]) == [-10, -8, -4, -6, -4, -2]", "assert Split([-4, -3, -9]) == [-4]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, 0, -7, 3, -8]) == [-6, 4, -6, -8, 0, 0, -8]", "assert Split([-3, 0, 2, -4, -6, -6, -8, 0, 0, 2, -4]) == [0, 2, -4, -6, -6, -8, 0, 0, 2, -4]", "assert Split([-3, 0, 2, 2, 4, -6, -8, 0]) == [0, 2, 2, 4, -6, -8, 0]", "assert Split([-3, 2, -6, 4, -1, -8, 0, 0, 2, -8, 0, 0]) == [2, -6, 4, -8, 0, 0, 2, -8, 0, 0]", "assert Split([-5, -8, -6, -4, -10]) == [-8, -6, -4, -10]", "assert Split([-3, 0, 2, 4, -6, -8, 0, 0, 4, -3]) == [0, 2, 4, -6, -8, 0, 0, 4]", "assert Split([-3, 0, 2, -4, -6, -5, -8, 0, 0, 0, 2, -4]) == [0, 2, -4, -6, -8, 0, 0, 0, 2, -4]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, -1, 0, -8]) == [-6, 4, -6, -8, 0, 0, -8]", "assert Split([-3, -1, 3, -6, 4, -6, -9, 0, -7, 2, -8]) == [-6, 4, -6, 0, 2, -8]", "assert Split([-3, -1, 3, -6, 2, 4, -6, -9, 0, -7, 2, -8]) == [-6, 2, 4, -6, 0, 2, -8]", "assert Split([-3, -1, 3, 2, 4, -4, -6, -8, 0, 0, 2, -8]) == [2, 4, -4, -6, -8, 0, 0, 2, -8]", "assert Split([-10, -8, -9, -4, -2, -10]) == [-10, -8, -4, -2, -10]", "assert Split([-10, -8, -4, 2, -1, -4, -2]) == [-10, -8, -4, 2, -4, -2]", "assert Split([-3, 0, 2, 2, 4, -7, -6, -8, 0, 0, 0]) == [0, 2, 2, 4, -6, -8, 0, 0, 0]", "assert Split([-3, 3, 2, 4, -6, -8, 0, 0, 2, -3]) == [2, 4, -6, -8, 0, 0, 2]", "assert Split([-3, -1, 3, 2, 4, -4, -2, -6, -8, 0, 0, 2, -8]) == [2, 4, -4, -2, -6, -8, 0, 0, 2, -8]", "assert Split([-3, 0, 2, 2, -6, -8, 0, 0, 0, 0, 0, 2]) == [0, 2, 2, -6, -8, 0, 0, 0, 0, 0, 2]", "assert Split([-10, -8, -9, -2, -10]) == [-10, -8, -2, -10]", "assert Split([-2, -3, -2, -1, 0, -3, -7, 2, -6, -8, 0]) == [-2, -2, 0, 2, -6, -8, 0]", "assert Split([-10, -8, -4, -10, 2, -1, -4, -2]) == [-10, -8, -4, -10, 2, -4, -2]", "assert Split([-10, -7, -6, -4, -2, -10, -4, -6, -10]) == [-10, -6, -4, -2, -10, -4, -6, -10]", "assert Split([-3, 0, 2, -4, -6, -6, -8, 0, 0, 2, -4, -3]) == [0, 2, -4, -6, -6, -8, 0, 0, 2, -4]", "assert Split([-10, -8, -8, -4, -6, -8]) == [-10, -8, -8, -4, -6, -8]", "assert Split([-3, 2, -6, 4, -8, 0, 0, 2, -8, 0, 0]) == [2, -6, 4, -8, 0, 0, 2, -8, 0, 0]", "assert Split([-3, 3, 2, 4, -7, -8, 0, 0, 2, -3]) == [2, 4, -8, 0, 0, 2]", "assert Split([-10, -6, -4, -2]) == [-10, -6, -4, -2]", "assert Split([-3, 0, 2, 4, -6, -8, 0]) == [0, 2, 4, -6, -8, 0]", "assert Split([-10, -7, -6, -4, -4, -2, -10, -4]) == [-10, -6, -4, -4, -2, -10, -4]", "assert Split([-3, -1, 3, 0, -7, -9, 2, -9, -6, -8]) == [0, 2, -6, -8]", "assert Split([-3, -1, 0, -7, 2, 3, -6, -8]) == [0, 2, -6, -8]", "assert Split([-10, -8, -6, -10, -4, -2, -8]) == [-10, -8, -6, -10, -4, -2, -8]", "assert Split([-3, 0, 2, -4, -6, -5, -8, 0, 0, -4, 2, -4]) == [0, 2, -4, -6, -8, 0, 0, -4, 2, -4]", "assert Split([-3, -1, 0, 2, 4, -7, -8]) == [0, 2, 4, -8]", "assert Split([-3, -1, 2, 4, -6, -8, -10, -3, 2]) == [2, 4, -6, -8, -10, 2]", "assert Split([-3, 0, 2, 2, 4, -7, -6, -8, 0, 0, 0, 0]) == [0, 2, 2, 4, -6, -8, 0, 0, 0, 0]", "assert Split([-10, -6, -3, -4, -2, -10]) == [-10, -6, -4, -2, -10]", "assert Split([-3, -1, 3, 2, 4, -4, -2, -6, -8, 0, 0, 2, -8, 2]) == [2, 4, -4, -2, -6, -8, 0, 0, 2, -8, 2]", "assert Split([-3, 0, 2, 2, 1, 4, -6, -8, 0, 0, 4, 0, 4, 4, 4]) == [0, 2, 2, 4, -6, -8, 0, 0, 4, 0, 4, 4, 4]", "assert Split([4, -1, 3, 2, 4, -6, -4, -8, 0, 0, 2, -8, -3]) == [4, 2, 4, -6, -4, -8, 0, 0, 2, -8]", "assert Split([-3, -1, 0, 2, -1, 4, -7, -8, -1]) == [0, 2, 4, -8]", "assert Split([-10, -8, -8, -4, -2, -8, -4]) == [-10, -8, -8, -4, -2, -8, -4]", "assert Split([-10, -10, -8, -8, -4, -6, -8]) == [-10, -10, -8, -8, -4, -6, -8]", "assert Split([-10, -6, -4, -2, -10, -4, -6, -10]) == [-10, -6, -4, -2, -10, -4, -6, -10]", "assert Split([-3, -1, 0, 1, 2, 4, -8, -10, 2, -1]) == [0, 2, 4, -8, -10, 2]", "assert Split([-2, -3, -1, 0, -3, 0, -3, -7, 2, -6, -8, 0]) == [-2, 0, 0, 2, -6, -8, 0]", "assert Split([-10, -8, -4, 2, -1, -4, -2, -1]) == [-10, -8, -4, 2, -4, -2]", "assert Split([-3, -1, 3, -6, 4, -6, -8, 0, 0, -7, 3, -8, 3]) == [-6, 4, -6, -8, 0, 0, -8]", "assert Split([-3, -1, -6, 4, -6, -9, 0, -7, 2, -8]) == [-6, 4, -6, 0, 2, -8]", "assert Split([-3, -1, 3, 2, 4, -4, -5, -6, -3, -8, 0, 0, 2, -8]) == [2, 4, -4, -6, -8, 0, 0, 2, -8]", "assert Split([-3, 0, 2, -4, -6, -6, -8, 0, 2, -4, -3]) == [0, 2, -4, -6, -6, -8, 0, 2, -4]", "assert Split([-3, 0, 2, 5, -6, -8, 0, 0, 4]) == [0, 2, -6, -8, 0, 0, 4]", "assert Split([-3, 2, -1, 4, -1, -8, 0, 0, 2, -8, 0, 0, -1]) == [2, 4, -8, 0, 0, 2, -8, 0, 0]", "assert Split([-10, -6, -3, -4, -5, -2, -10]) == [-10, -6, -4, -2, -10]", "assert Split([-10, -8, -6, -4, -2, 6, -10]) == [-10, -8, -6, -4, -2, 6, -10]", "assert Split([-3, 0, 2, 4, -6, -8, 0, 4]) == [0, 2, 4, -6, -8, 0, 4]", "assert Split([-10, -8, -6, -4, 2, -2, 2]) == [-10, -8, -6, -4, 2, -2, 2]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the maximum difference between available pairs in the given tuple list.\nassert max_difference([(3, 5), (1, 7), (10, 3), (1, 2)]) == 7\nYour code should pass the test:\nassert max_difference([(3, 5), (1, 7), (10, 3), (1, 2)]) == 7", "test_list": [ "assert max_difference([(3, 5), (1, 7), (10, 3), (1, 2)]) == 7", "assert max_difference([(4, 6), (2, 17), (9, 13), (11, 12)]) == 15", "assert max_difference([(12, 35), (21, 27), (13, 23), (41, 22)]) == 23", "assert max_difference([(1000000, 999999), (10000000, 9999999), (100000000, 99999999), (1000000000, 999999999)]) == 1", "assert max_difference([(1, 2), (4, 5), (7, 8), (10, 11)]) == 1", "assert max_difference([(100, -100), (0, 200), (-50, 50), (300, 100)]) == 200", "assert max_difference([(0, 1), (2, 4), (3, 6), (5, 7)]) == 3", "assert max_difference([(-10, -5), (-3, 0), (2, 6), (9, 15)]) == 6", "assert max_difference([(1, 1000), (500, 700), (300, 900), (200, 800)]) == 999", "assert max_difference([(-3, -2), (-8, -7), (-5, -1), (-10, -9)]) == 4", "assert max_difference([(50000000, 100000000), (60000000, 110000000), (70000000, 120000000), (80000000, 130000000)]) == 50000000", "assert max_difference([(-10, 10), (-100, 100), (0, 1000), (-1000, 500)]) == 1500", "assert max_difference([(100, -50), (-200, 200), (300, -300), (-400, 400)]) == 800", "assert max_difference([(1000000, -1000000), (999999, -999999), (-100000000, 100000000), (-5000000, 5000000)]) == 200000000", "assert max_difference([(1, -1), (100, -100), (1000, -1000), (10000, -10000)]) == 20000", "assert max_difference([(0, -100), (100, -200), (1000, -300), (10000, -400)]) == 10400", "assert max_difference([(1, 1), (2, 2), (3, 3), (4, 4)]) == 0", "assert max_difference([(5, 10), (15, 20), (25, 30), (35, 40)]) == 5", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400)]) == 0", "assert max_difference([(500, 600), (700, 800), (900, 1000), (1100, 1200)]) == 100", "assert max_difference([(1000, 900), (800, 700), (600, 500), (400, 300)]) == 100", "assert max_difference([(10, 20), (30, 40), (50, 60), (70, 80)]) == 10", "assert max_difference([(101, 105), (200, 210), (300, 320), (400, 420)]) == 20", "assert max_difference([(1000, 1001), (2000, 2004), (3000, 3010), (4000, 4005)]) == 10", "assert max_difference([(500, 600), (700, 800), (1100, 1200)]) == 100", "assert max_difference([(999999, -999999), (70, 100000000), (-5000000, 5000000)]) == 99999930", "assert max_difference([(-10, -5), (-3, 0), (9, 15)]) == 6", "assert max_difference([(1, -1), (100, -100), (10000, -10000)]) == 20000", "assert max_difference([(-10, -5), (-3, 70), (-3, 0), (-3, 0)]) == 73", "assert max_difference([(100, -100), (7, 200), (-50, 50), (300, 100)]) == 200", "assert max_difference([(100, -100), (0, 200), (-50, 50), (300, 100), (100, -100)]) == 200", "assert max_difference([(1, -1), (100, -100), (1000, -1000), (30, -1), (10000, -10000)]) == 20000", "assert max_difference([(1000, 15), (-10, -5), (-3, 0), (2, 6), (9, 15)]) == 985", "assert max_difference([(0, -100), (100, -200), (1000, -300), (10000, -400), (10000, -400)]) == 10400", "assert max_difference([(-200, 200), (100, -50), (-200, 200), (300, -300), (-400, 400), (100, -50)]) == 800", "assert max_difference([(-10, -5), (9, 15)]) == 6", "assert max_difference([(-10, -5), (2, 6), (9, 15)]) == 6", "assert max_difference([(-10, 5000000), (-3, 0), (2, 6), (9, 15)]) == 5000010", "assert max_difference([(999999, -999999), (999999, -999999), (70, 100000000), (-5000000, 5000000)]) == 99999930", "assert max_difference([(5, 10), (15, 20), (25, 30), (35, 40), (5, 10)]) == 5", "assert max_difference([(500, 600), (500, 80), (700, 800), (1100, 1200)]) == 420", "assert max_difference([(1, 2), (4, 5), (7, 8), (10, 11), (10, 11)]) == 1", "assert max_difference([(100, -50), (-200, 200), (300, -100000000), (-400, 400)]) == 100000300", "assert max_difference([(-300, -1), (100, -100), (10000, -10000)]) == 20000", "assert max_difference([(-10, -5), (-3, 70), (-3, 0), (-3, 0), (-3, 0)]) == 73", "assert max_difference([(101, 105), (300, 320), (400, 420)]) == 20", "assert max_difference([(10, 20), (30, 40), (50, 60), (70, 80), (30, 40)]) == 10", "assert max_difference([(100, 100), (200, 200), (300, 300), (300, 300), (400, 400)]) == 0", "assert max_difference([(100, -100), (7, 200), (-50, 50), (300, 100), (100, -100)]) == 200", "assert max_difference([(100, -50), (-200, 200), (300, -100000000), (-400, 400), (300, -100000000)]) == 100000300", "assert max_difference([(1, 2), (4, 5), (7, 9), (10, 11)]) == 2", "assert max_difference([(-10, -5), (2, 6), (3010, 15), (9, 15)]) == 2995", "assert max_difference([(300, 320), (400, 420)]) == 20", "assert max_difference([(-3, -2), (-8, -7), (-5, -1), (-8, -7), (-5, -1)]) == 4", "assert max_difference([(1, -1), (10000, 4), (100, -100), (30, -1), (10000, -10000)]) == 20000", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (400, 400)]) == 0", "assert max_difference([(2000, 2004), (2004, 2004), (3000, 3010), (4000, 4005)]) == 10", "assert max_difference([(100, 100), (200, 200), (400, 400)]) == 0", "assert max_difference([(50000000, 100000000), (70000000, 120000000), (80000000, 130000000)]) == 50000000", "assert max_difference([(1, 2), (4, 5), (10, 11), (4, 5)]) == 1", "assert max_difference([(1000, 900), (400, 100000000), (800, 700), (600, 500), (400, 300)]) == 99999600", "assert max_difference([(0, 1), (2, 4), (3, 6), (5, 7), (5, 7)]) == 3", "assert max_difference([(-10, 5000000), (-3, 0), (2, 6)]) == 5000010", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (400, 400), (200, 200)]) == 0", "assert max_difference([(4005, 100000000), (999999, -999999), (70, 100000000), (-5000000, 5000000)]) == 99999930", "assert max_difference([(1000, 15), (-10, -5), (2, 6), (9, 15)]) == 985", "assert max_difference([(999999, -999999), (69, 100000000), (-5000000, 5000000)]) == 99999931", "assert max_difference([(100, -100), (7, 200), (-50, 50), (300, 100), (100, -100), (100, -100)]) == 200", "assert max_difference([(4, 9), (1, 1), (2, 2), (3, 3), (4, 4)]) == 5", "assert max_difference([(999999, 1000), (70, 100000000), (-5000000, 5000000)]) == 99999930", "assert max_difference([(50000000, 100000000), (60000000, 110000000), (70000000, 120000000), (80000000, 130000000), (50000000, 100000000)]) == 50000000", "assert max_difference([(10, 20), (30, 40), (50, 60), (1, 80)]) == 79", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (400, 400), (-3, 100), (200, 200)]) == 103", "assert max_difference([(100, 100), (300, 300), (400, 400)]) == 0", "assert max_difference([(500, 600), (700, 800), (900, 1000), (1100, 1200), (500, 600)]) == 100", "assert max_difference([(0, -100), (100, -200), (1000, -300), (10000, -400), (0, -100)]) == 10400", "assert max_difference([(4, 5), (7, 8), (10, 11)]) == 1", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (400, 400), (100, 100)]) == 0", "assert max_difference([(100, -100), (7, 200), (-50, 50), (300, 100), (7, 200)]) == 200", "assert max_difference([(2000, 2004), (2004, 2004), (3000, 3010), (4000, 4005), (2004, 2004)]) == 10", "assert max_difference([(15, 20), (35, 40)]) == 5", "assert max_difference([(-10, 5000000), (-3, 0), (2, 6), (2, 6), (2, 6)]) == 5000010", "assert max_difference([(1000, 1001), (2000, 2004), (3000, 3010), (4000, 4005), (4000, 4005)]) == 10", "assert max_difference([(4, 9), (1, 1), (2, 2), (3, 3), (4, 4), (4, 4), (3, 3)]) == 5", "assert max_difference([(1, 1000), (500, 700), (300, 900), (200, 800), (300, 900)]) == 999", "assert max_difference([(500, 600), (500, 80), (700, 800), (1100, -8)]) == 1108", "assert max_difference([(-8, -7), (-8, -7), (-5, -1)]) == 4", "assert max_difference([(1, -1), (10000, 4), (100, -100), (30, -1), (10000, -10000), (10000, -10000)]) == 20000", "assert max_difference([(4, 9), (1, 1), (2, 2), (3, 3), (4, 4), (4, 4), (3, 3), (1, 1)]) == 5", "assert max_difference([(200, 200), (300, 300), (400, 400), (400, 400), (400, 400), (400, 400)]) == 0", "assert max_difference([(1000000, -1000000), (999999, -999999), (-100000000, 100000000)]) == 200000000", "assert max_difference([(1, 1), (3, 3), (4, 4), (3, 3)]) == 0", "assert max_difference([(500, 600), (700, 800), (900, 1000), (1100, 1200), (700, 800), (500, 600)]) == 100", "assert max_difference([(-10, 10), (-100, 100), (0, 1000), (-1000, 500), (-100, 100)]) == 1500", "assert max_difference([(100, 15), (100, -100), (-50, 50), (300, 100), (100, -100), (-50, 50)]) == 200", "assert max_difference([(4, 9), (1, 1), (2, 2), (3, 3), (4, 4), (4, 4), (3, 3), (1, 1), (1, 1), (4, 4)]) == 5", "assert max_difference([(7, 8), (10, 11)]) == 1", "assert max_difference([(10, 20), (30, 40), (50, 60), (70, 80), (50, 60)]) == 10", "assert max_difference([(1000, 900), (400, 100000000), (800, 700), (400, 300)]) == 99999600", "assert max_difference([(1000, 15), (-10, -5), (-3, 0), (9, 15)]) == 985", "assert max_difference([(500, 600), (700, 800), (900, 1000), (1100, 1200), (700, 800), (500, 600), (900, 1000)]) == 100", "assert max_difference([(1, 2), (4, 5), (7, 9), (10, 11), (10, 11)]) == 2", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (400, 400), (-3, 100), (200, 200), (200, 200)]) == 103", "assert max_difference([(-201, 200), (100, -50), (-200, 200), (300, -300), (-400, 400), (100, -50), (100, -50)]) == 800", "assert max_difference([(3, 6), (1000, 15), (-10, -5), (2, 6), (9, 15)]) == 985", "assert max_difference([(-10, -5), (2, 6), (3010, 15), (9, 15), (-10, -5)]) == 2995", "assert max_difference([(50000000, 100000000), (60000000, 110000000), (70000000, 120000000), (80000000, 130000000), (50000000, 100000000), (50000000, 100000000)]) == 50000000", "assert max_difference([(4, 9), (1, 1), (2, 2), (4, 4), (4, 4), (3, 3), (4, 4), (1, 1)]) == 5", "assert max_difference([(50000000, 100000000), (60000000, 110000000), (80000000, 130000000)]) == 50000000", "assert max_difference([(1, 1), (3, 3), (4, 4), (3, 3), (4, 4)]) == 0", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (100, 100), (300, 300), (400, 400)]) == 0", "assert max_difference([(4, 5), (7, 8), (10, 11), (4, 5)]) == 1", "assert max_difference([(1000000, -1000000), (999999, -999999), (-100000000, 100000000), (-300, 5000000)]) == 200000000", "assert max_difference([(1000000, -1000000), (999999, -999999), (-100000000, 100000000), (-5000000, 5000000), (-100000000, 100000000)]) == 200000000", "assert max_difference([(4, 9), (1, 1), (2, 2), (3, 3), (4, 4), (1, 1)]) == 5", "assert max_difference([(1000, -7), (-3, -2), (-8, -7), (-5, -1), (-8, -7), (-5, -1)]) == 1007", "assert max_difference([(200, 200), (300, 300), (400, 400), (100, 100), (300, 300), (400, 400)]) == 0", "assert max_difference([(1000000, 999999), (10000000, 9999999), (100000000, 99999999)]) == 1", "assert max_difference([(1, -1), (10000, 4), (10000, 3), (100, -100), (30, -1), (10000, -10000), (10000, -10000)]) == 20000", "assert max_difference([(1000000, -1000000), (999999, -999999), (-100000000, 100000000), (999999, -999999)]) == 200000000", "assert max_difference([(99, -50), (-200, 200), (300, -100000000), (-400, 400)]) == 100000300", "assert max_difference([(1, -1), (10000, 4), (100, -100), (10000, -10000), (10000, -10000)]) == 20000", "assert max_difference([(100, -100), (300, 100)]) == 200", "assert max_difference([(100, 100), (200, 200), (300, 300), (400, 400), (400, 400), (100, 100), (300, 300)]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract all the adjacent coordinates of the given coordinate tuple.\nassert get_coordinates((3, 4)) == [[2, 3], [2, 4], [2, 5], [3, 3], [3, 4], [3, 5], [4, 3], [4, 4], [4, 5]]\nYour code should pass the test:\nassert get_coordinates((3, 4)) == [[2, 3], [2, 4], [2, 5], [3, 3], [3, 4], [3, 5], [4, 3], [4, 4], [4, 5]]", "test_list": [ "assert get_coordinates((3, 4)) == [[2, 3], [2, 4], [2, 5], [3, 3], [3, 4], [3, 5], [4, 3], [4, 4], [4, 5]]", "assert get_coordinates((4, 5)) ==[[3, 4], [3, 5], [3, 6], [4, 4], [4, 5], [4, 6], [5, 4], [5, 5], [5, 6]]", "assert get_coordinates((5, 6)) == [[4, 5], [4, 6], [4, 7], [5, 5], [5, 6], [5, 7], [6, 5], [6, 6], [6, 7]]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to replace whitespaces with an underscore and vice versa in a given string.\nassert replace_spaces('Jumanji The Jungle') == 'Jumanji_The_Jungle'\nYour code should pass the test:\nassert replace_spaces('Jumanji The Jungle') == 'Jumanji_The_Jungle'", "test_list": [ "assert replace_spaces('Jumanji The Jungle') == 'Jumanji_The_Jungle'", "assert replace_spaces('The_Avengers') == 'The Avengers'", "assert replace_spaces('Fast and Furious') == 'Fast_and_Furious'", "assert replace_spaces('') == ''", "assert replace_spaces('abcdefg') == 'abcdefg'", "assert replace_spaces(' Jumanji The Jungle ') == '__Jumanji_The_Jungle__'", "assert replace_spaces(' ') == '________'", "assert replace_spaces('Hello, world!') == 'Hello,_world!'", "assert replace_spaces('12345') == '12345'", "assert replace_spaces('world!') == 'world!'", "assert replace_spaces('HelloThe, wolrld!') == 'HelloThe,_wolrld!'", "assert replace_spaces('BeWEijdkI') == 'BeWEijdkI'", "assert replace_spaces('BeWEidkI') == 'BeWEidkI'", "assert replace_spaces(' Jumanji The JungJunglele ') == '__Jumanji_The_JungJunglele__'", "assert replace_spaces('BeWEijkdkI') == 'BeWEijkdkI'", "assert replace_spaces('abcdecfg') == 'abcdecfg'", "assert replace_spaces('abcdecfgJungle') == 'abcdecfgJungle'", "assert replace_spaces(' Jumanji The JungJgunglele ') == '__Jumanji_The_JungJgunglele__'", "assert replace_spaces('BeWEijkdkIHeoThe,') == 'BeWEijkdkIHeoThe,'", "assert replace_spaces('HelloThe, ,wolrld!') == 'HelloThe,_,wolrld!'", "assert replace_spaces('HlelloThe, ,wolrld!') == 'HlelloThe,_,wolrld!'", "assert replace_spaces('HelloThe, Hwolrld!') == 'HelloThe,_Hwolrld!'", "assert replace_spaces('bRZaAd') == 'bRZaAd'", "assert replace_spaces('Hello,') == 'Hello,'", "assert replace_spaces('41234') == '41234'", "assert replace_spaces('BeTheWEijkdkIHeoThe,') == 'BeTheWEijkdkIHeoThe,'", "assert replace_spaces('JungJgunglele') == 'JungJgunglele'", "assert replace_spaces('BeWEijkdhe,') == 'BeWEijkdhe,'", "assert replace_spaces('JungJgwolrld!unglele') == 'JungJgwolrld!unglele'", "assert replace_spaces('kHi') == 'kHi'", "assert replace_spaces('BkeTheWEijkdkIHeoThe,') == 'BkeTheWEijkdkIHeoThe,'", "assert replace_spaces('BeWEijkdhBeTheWEijkdkIHeoThe,e,') == 'BeWEijkdhBeTheWEijkdkIHeoThe,e,'", "assert replace_spaces('HlTelloThe,') == 'HlTelloThe,'", "assert replace_spaces('B,wolrld!jkdhBeTheWEEijkdkIHeoThe,e,') == 'B,wolrld!jkdhBeTheWEEijkdkIHeoThe,e,'", "assert replace_spaces('jBeWEijkdhe,') == 'jBeWEijkdhe,'", "assert replace_spaces('BJungJgunglele Jumanji The JungJgunglele eWEijkdhe,') == 'BJungJgunglele__Jumanji_The_JungJgunglele__eWEijkdhe,'", "assert replace_spaces(' Jumanji The JungJgunglele abcdefg') == '__Jumanji_The_JungJgunglele__abcdefg'", "assert replace_spaces('worl!') == 'worl!'", "assert replace_spaces('BeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,') == 'BeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,'", "assert replace_spaces('world!bRZaAd') == 'world!bRZaAd'", "assert replace_spaces('BeTheWEijkdkIHeoThee,') == 'BeTheWEijkdkIHeoThee,'", "assert replace_spaces('BBeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,eWEijkdhe,') == 'BBeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,eWEijkdhe,'", "assert replace_spaces('BeTheWEijdkIHeoThee,kHi') == 'BeTheWEijdkIHeoThee,kHi'", "assert replace_spaces('d Jumanji The JungJgunglele abcdefg') == 'd__Jumanji_The_JungJgunglele__abcdefg'", "assert replace_spaces(' JuBeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,lelle ') == '__JuBeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,lelle__'", "assert replace_spaces('BeWE Jumanji The Jungle ijjkdhe,') == 'BeWE__Jumanji_The_Jungle__ijjkdhe,'", "assert replace_spaces('afg') == 'afg'", "assert replace_spaces(' Jumanji The JuJungJunglelengJunglele ') == '__Jumanji_The_JuJungJunglelengJunglele__'", "assert replace_spaces('eWEijkdhe,') == 'eWEijkdhe,'", "assert replace_spaces('wBeWEijkdkIHeoThe,orl!') == 'wBeWEijkdkIHeoThe,orl!'", "assert replace_spaces('Theijkdhe,') == 'Theijkdhe,'", "assert replace_spaces('JungJgBkeTheWEijkdkIHeoThe,wolrld!unglele') == 'JungJgBkeTheWEijkdkIHeoThe,wolrld!unglele'", "assert replace_spaces('wBeWEijkdkIwBeWEijHelloThe, ,wolrld!e,orl!HeoThe,orl!') == 'wBeWEijkdkIwBeWEijHelloThe,_,wolrld!e,orl!HeoThe,orl!'", "assert replace_spaces(' Jumanji The JungJung Jumanji The JungJunglele lele ') == '__Jumanji_The_JungJung__Jumanji_The_JungJunglele__lele__'", "assert replace_spaces('HlelloThe,') == 'HlelloThe,'", "assert replace_spaces('B,wolrld!jkdhBeTheWEEijkdkIHJungJgBkeTheWEijkdkIHeoThe,wolrld!ungleleThe,e,') == 'B,wolrld!jkdhBeTheWEEijkdkIHJungJgBkeTheWEijkdkIHeoThe,wolrld!ungleleThe,e,'", "assert replace_spaces(' Jumanji ') == '__Jumanji__'", "assert replace_spaces('BeBTheWEijkdkIHeoThe,') == 'BeBTheWEijkdkIHeoThe,'", "assert replace_spaces(' JuBeWEijkdhBeTheWEiijkdabce e ') == '__JuBeWEijkdhBeTheWEiijkdabce_e_'", "assert replace_spaces('JuBeWEijkdhBeTheWEiijkdabce') == 'JuBeWEijkdhBeTheWEiijkdabce'", "assert replace_spaces('BeWEijkdhBeTheWEij Jumanji The Jungle kdkIHeoThe,e,') == 'BeWEijkdhBeTheWEij__Jumanji_The_Jungle__kdkIHeoThe,e,'", "assert replace_spaces('HelloThe,') == 'HelloThe,'", "assert replace_spaces('BeWEihjkdhBeTheWEijkdkIHeoThe,e,') == 'BeWEihjkdhBeTheWEijkdkIHeoThe,e,'", "assert replace_spaces('JJungJgwolJumanjinglele') == 'JJungJgwolJumanjinglele'", "assert replace_spaces('JungBeWE Jumanji The Jungle ijjkdhe,Jgunglele') == 'JungBeWE__Jumanji_The_Jungle__ijjkdhe,Jgunglele'", "assert replace_spaces('dBeWEijdkI') == 'dBeWEijdkI'", "assert replace_spaces('ijjkdhe,') == 'ijjkdhe,'", "assert replace_spaces('4123afg4') == '4123afg4'", "assert replace_spaces('Hello,abcdecfg world!') == 'Hello,abcdecfg_world!'", "assert replace_spaces('JuJukHingJunglHello,elengJunglele') == 'JuJukHingJunglHello,elengJunglele'", "assert replace_spaces('w!BeWEijkdkIwBeWEijHelloThe, ,wolrld!e,orl!HeoThe,orl!') == 'w!BeWEijkdkIwBeWEijHelloThe,_,wolrld!e,orl!HeoThe,orl!'", "assert replace_spaces('ijjkdheJ,JgunglelJungJung') == 'ijjkdheJ,JgunglelJungJung'", "assert replace_spaces('HelloThe, ,wwolrld!') == 'HelloThe,_,wwolrld!'", "assert replace_spaces('JungJgHello, world!unglele') == 'JungJgHello,_world!unglele'", "assert replace_spaces('kkHi') == 'kkHi'", "assert replace_spaces('4123afg4BeWEijkdhe,') == '4123afg4BeWEijkdhe,'", "assert replace_spaces('JungJung') == 'JungJung'", "assert replace_spaces('wBeWEijkdkIwBeWEijHellooThe,') == 'wBeWEijkdkIwBeWEijHellooThe,'", "assert replace_spaces('JuJungJunglelengJunglele') == 'JuJungJunglelengJunglele'", "assert replace_spaces('JuJungJafgunglelengJunglele') == 'JuJungJafgunglelengJunglele'", "assert replace_spaces('JuBeWEabcdefgijkdhBeTheWEiijkdabce') == 'JuBeWEabcdefgijkdhBeTheWEiijkdabce'", "assert replace_spaces('kHHelloThe, Hwolrld!i') == 'kHHelloThe,_Hwolrld!i'", "assert replace_spaces('BeTheTheee,') == 'BeTheTheee,'", "assert replace_spaces('JuBeWEabcdefgijkdhBeTheWEiijkdabceBxSULfV') == 'JuBeWEabcdefgijkdhBeTheWEiijkdabceBxSULfV'", "assert replace_spaces('BeTheTheeekHHelloThe,') == 'BeTheTheeekHHelloThe,'", "assert replace_spaces('wBeWEijkdkIwBeWEijBHellooThe,') == 'wBeWEijkdkIwBeWEijBHellooThe,'", "assert replace_spaces('Bele') == 'Bele'", "assert replace_spaces('Ju Jumanji The JungJung Jumanji The JungJunglele lele JungJunglelengJunglele') == 'Ju__Jumanji_The_JungJung__Jumanji_The_JungJunglele__lele__JungJunglelengJunglele'", "assert replace_spaces('B,wolrld!jkdhBeTheWEEijkd,kIHeoThe,e,') == 'B,wolrld!jkdhBeTheWEEijkd,kIHeoThe,e,'", "assert replace_spaces('wworAd') == 'wworAd'", "assert replace_spaces('uYzKuQBHee') == 'uYzKuQBHee'", "assert replace_spaces('w!BeWEijkEijHeolloTjhe,') == 'w!BeWEijkEijHeolloTjhe,'", "assert replace_spaces('BeWEijkdhBeTheWEijkdabcdefgkIHeoworld!bRZaAdThe,e,') == 'BeWEijkdhBeTheWEijkdabcdefgkIHeoworld!bRZaAdThe,e,'", "assert replace_spaces(' Jumanji The JungJgunglele cdefg') == '__Jumanji_The_JungJgunglele_cdefg'", "assert replace_spaces(' Jumanji The JungJu Jumanji The JungJunglele lele ') == '__Jumanji_The_JungJu_Jumanji_The_JungJunglele__lele__'", "assert replace_spaces('BBeTheWEijkdkIHeoThe,eWEijkdhBeTheWEij') == 'BBeTheWEijkdkIHeoThe,eWEijkdhBeTheWEij'", "assert replace_spaces('lHlelleoThe,') == 'lHlelleoThe,'", "assert replace_spaces('BeTheWEijdkIHeoTheeJungJungllelengJunglele,kHi') == 'BeTheWEijdkIHeoTheeJungJungllelengJunglele,kHi'", "assert replace_spaces('BeWhEijikdhBeTheWEijkdabcdefgkIHeoworld!bRZaAdThe,de,') == 'BeWhEijikdhBeTheWEijkdabcdefgkIHeoworld!bRZaAdThe,de,'", "assert replace_spaces('wwBeTheWEijdkIHeoThee,kHiirAd') == 'wwBeTheWEijdkIHeoThee,kHiirAd'", "assert replace_spaces('kk') == 'kk'", "assert replace_spaces('HelloThe,JuJungJunglelengJunglele') == 'HelloThe,JuJungJunglelengJunglele'", "assert replace_spaces('HelloTBeWhEijikdhBeTheWEijkdabcdefgkIHeoworld!bRZaAdThe,de,,wolrld!') == 'HelloTBeWhEijikdhBeTheWEijkdabcdefgkIHeoworld!bRZaAdThe,de,,wolrld!'", "assert replace_spaces(' Jumanji The JungabcdecfgJung Jumanji The JungJunglele lele ') == '__Jumanji_The_JungabcdecfgJung__Jumanji_The_JungJunglele__lele__'", "assert replace_spaces('JuBeWEijkjdhBeTheWEiijkdabce') == 'JuBeWEijkjdhBeTheWEiijkdabce'", "assert replace_spaces('BeWEiijdkI') == 'BeWEiijdkI'", "assert replace_spaces(' Jumanji The JungJgunglele ') == '__Jumanji_The_JungJgunglele_'", "assert replace_spaces(' JuBeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,lell ') == '__JuBeWEijkdhBeTheWEijkdabcdefgkIHeoThe,e,lell_'", "assert replace_spaces('HelloThe,JuJungJunglelengJukkHiele') == 'HelloThe,JuJungJunglelengJukkHiele'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to move all zeroes to the end of the given list.\nassert move_zero([1,0,2,0,3,4]) == [1,2,3,4,0,0]\nYour code should pass the test:\nassert move_zero([1,0,2,0,3,4]) == [1,2,3,4,0,0]", "test_list": [ "assert move_zero([1,0,2,0,3,4]) == [1,2,3,4,0,0]", "assert move_zero([2,3,2,0,0,4,0,5,0]) == [2,3,2,4,5,0,0,0,0]", "assert move_zero([0,1,0,1,1]) == [1,1,1,0,0]", "assert move_zero([]) == []", "assert move_zero([2, 3, 4, 0, 0, 7, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0]) == [2, 3, 4, 7, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0]) == [5, 1, 9, 3, 2, 8, 6, 7, 0, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 0, 9, 0, 3, 7, 0, 0, 5, 1, 6, 0, 8, 0, 0, 0]) == [4, 2, 9, 3, 7, 5, 1, 6, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 0, 7, 0, 0]) == [5, 1, 9, 3, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 5, 6, 7, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 0]) == [5, 9, 3, 2, 8, 6, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 7]) == [5, 1, 9, 3, 2, 8, 6, 7, 7, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 0, 7, 0, 2, 0]) == [5, 1, 9, 3, 7, 2, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 3]) == [5, 9, 3, 2, 8, 6, 7, 3, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 7, 0]) == [5, 1, 9, 3, 2, 8, 6, 7, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [5, 1, 9, 3, 8, 6, 7, 0, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 0, 9, 0, 8, 3, 7, 0, 0, 5, 1, 6, 0, 8, 0, 0, 0]) == [4, 2, 9, 8, 3, 7, 5, 1, 6, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 9, 0, 3, 5, 2, 8, 6, 0, 7, 0, 0]) == [5, 9, 3, 5, 2, 8, 6, 7, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 5, 6, 7, 8, 0, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 3, 7]) == [5, 9, 3, 2, 8, 6, 7, 3, 7, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0, 0]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 9, 0, 3, 0, 2, 8, 8, 7, 0, 7, 0, 3, 7, 0]) == [5, 9, 3, 2, 8, 8, 7, 7, 3, 7, 0, 0, 0, 0, 0]", "assert move_zero([61, -7, 42, -5, 90, 97]) == [61, -7, 42, -5, 90, 97]", "assert move_zero([0, 9, 0, 3, 5, 8, 6, 0, 0, 0]) == [9, 3, 5, 8, 6, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 9, 0, 3, 0, 7, 0, 0]) == [5, 1, 9, 3, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 9, 0, 3, 0, 7, 0, 0, 0]) == [5, 1, 9, 3, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([3, 4, 0, 0, 9, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0, 0]) == [3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, -1, 0, 0, 0, 0, 0, 0, 1, 6, 3, 4, 5, 6, 7, 8, 9, 10]) == [-1, 1, 6, 3, 4, 5, 6, 7, 8, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 1, 2, 3, 4, 5, 6, 7, 9, 10]) == [1, 1, 2, 3, 4, 5, 6, 7, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([-5, 0, 9, 0, 3, 5, 2, 8, 6, 12, 7, 0, 0]) == [-5, 9, 3, 5, 2, 8, 6, 12, 7, 0, 0, 0, 0]", "assert move_zero([5, 1, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [5, 1, 9, 3, 8, 6, 7, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, -1, 0, 0, 0, 0, 0, 0, 1, 6, 3, 4, 5, 5, 7, 8, 9, 10]) == [-1, 1, 6, 3, 4, 5, 5, 7, 8, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 6, 0]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 6, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 9, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 6, 0, -1]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 6, -1, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 1, 7, 1]) == [5, 1, 9, 3, 2, 8, 6, 7, 1, 7, 1, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 0, 3, 0, 8, 6, 0, 7, 0, 0]) == [5, 1, 3, 8, 6, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 0]) == [5, 1, 9, 3, 2, 8, 6, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([3, 4, 0, 0, 9, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 0, 0]) == [3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 0, 9, 0, 8, 3, 7, 0, 0, 5, 1, 6, 0, 8, 0, 0, 3, 0]) == [4, 2, 9, 8, 3, 7, 5, 1, 6, 8, 3, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0]) == [2, 3, 4, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 9, 0, 3, 8, 6, 0, 0, 0]) == [9, 3, 8, 6, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 12, 0, 0]) == [5, 1, 9, 3, 2, 8, 6, 7, 12, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 0, 3, 0, 8, 6, 0, 7, 0, 0, 8]) == [5, 1, 3, 8, 6, 7, 8, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 11, 0, 0]) == [5, 1, 9, 3, 2, 8, 6, 7, 11, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 7, 0, 2, 0, 0]) == [5, 1, 9, 3, 7, 2, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, -1, 2, -5, 6, 0, 7, 11, 0, 0]) == [5, 1, 9, 3, -1, 2, -5, 6, 7, 11, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 0, 3, 0, 8, 6, 0, 6, 0, 0]) == [5, 1, 3, 8, 6, 6, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0, 9]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 14, 9, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [5, 1, 9, 9, 3, 8, 6, 7, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 11, 0, 0, 9]) == [5, 1, 9, 3, 2, 8, 6, 7, 11, 9, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, -1, 3, 0, 2, 8, 6, 0, 7, 11, 0, 0]) == [5, 1, 9, -1, 3, 2, 8, 6, 7, 11, 0, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 0, 9, 0, 8, 3, 7, 0, 0, 5, 1, 6, 0, 8, 0, 0, 0, 3]) == [4, 2, 9, 8, 3, 7, 5, 1, 6, 8, 3, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([90, 9, 0, 3, 8, 6, 0, 0, 0]) == [90, 9, 3, 8, 6, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 9, 0, 8, 3, 7, 0, 0, 5, 1, 6, 0, 8, 0, 0, 0, 3]) == [4, 2, 9, 8, 3, 7, 5, 1, 6, 8, 3, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 14, 0]) == [2, 3, 4, 5, 6, 9, 8, 10, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 1, 9, 0, 3, 0, 8, 6, 0, 7, 0, 5]) == [5, 1, 9, 3, 8, 6, 7, 5, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 0, 5, 3, 0, 8, 6, 0, 7, 0, 0]) == [5, 1, 5, 3, 8, 6, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 61, 3, 4, 5, 6, 7, 9, 7, 6]) == [1, 2, 61, 3, 4, 5, 6, 7, 9, 7, 6, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([False, False, True, True, True, True]) == [True, True, True, True, 0, 0]", "assert move_zero([5, 0, 5, 1, 0, 3, 0, 8, 6, 0, 7, 0, 0, 8]) == [5, 5, 1, 3, 8, 6, 7, 8, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 2, 5, 6, 0, 0, 9, 0, 8, 11, 0, 0, 12, 13, 14, 0]) == [2, 3, 4, 9, 2, 5, 6, 9, 8, 11, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([1, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [1, 9, 3, 8, 6, 7, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 9, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 0, 12, 13, 9, 14, 6, 0, -1, 0]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 9, 14, 6, -1, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 11, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 12, 0, 0, 1]) == [5, 11, 1, 9, 3, 2, 8, 6, 7, 12, 1, 0, 0, 0, 0, 0]", "assert move_zero([5, 1, 9, 0, 3, 0, 8, 6, -1, 7, 0, 5, 5]) == [5, 1, 9, 3, 8, 6, -1, 7, 5, 5, 0, 0, 0]", "assert move_zero([5, 0, 1, 0, 3, 0, 8, 6, 7, -1, 0, 8]) == [5, 1, 3, 8, 6, 7, -1, 8, 0, 0, 0, 0]", "assert move_zero([0, 1, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [1, 9, 3, 8, 6, 7, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 9, 0, 3, 0, 7, 0, 0, 0, 0]) == [5, 1, 9, 3, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, -5, 0, 0, 0, 5, 1, 0, 9, 0, 4, 0, 7, 0, 2, 0]) == [-5, 5, 1, 9, 4, 7, 2, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 5, 8, 6, 0, 7, 0, 7, 0, 6]) == [5, 1, 9, 3, 2, 5, 8, 6, 7, 7, 6, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 9, 9, 0, 0, 8, 6, 0, -1, 7, 0, 9]) == [5, 9, 9, 8, 6, -1, 7, 9, 0, 0, 0, 0, 0]", "assert move_zero([False, False, True, False, True, True]) == [True, True, True, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, -1, 2, 8, 6, 0, 7, 11, 0, 0]) == [5, 1, 9, 3, -1, 2, 8, 6, 7, 11, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 1, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 0, 7, 0, 0]) == [1, 5, 1, 9, 3, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 1, 9, 0, 3, 0, 8, 6, -1, 7, 0, 5, 5, 3]) == [5, 1, 9, 3, 8, 6, -1, 7, 5, 5, 3, 0, 0, 0]", "assert move_zero([5, 9, 0, 3, 3, 0, 2, 8, 6, 0, 7, 0, 3, 7]) == [5, 9, 3, 3, 2, 8, 6, 7, 3, 7, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 8, 6, 0, 7, 0, 0]) == [5, 1, 9, 3, 8, 6, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 0, 5, 6, 0, 0, 9, 0, 8, 10, 0, 12, 13, 15, 0]) == [2, 3, 4, 9, 5, 6, 9, 8, 10, 12, 13, 15, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([1, 8, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [1, 8, 9, 3, 8, 6, 7, 0, 0, 0, 0]", "assert move_zero([8, 9, 0, 3, 0, 8, 6, 0, 7, 0]) == [8, 9, 3, 8, 6, 7, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 9, 0, 8, 3, 7, 1, 9, 0, 0, 5, 1, 6, 0, 8, 0, 0, 0, 3]) == [4, 2, 9, 8, 3, 7, 1, 9, 5, 1, 6, 8, 3, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 1, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 0, 7, 0, 0, 0]) == [1, 5, 1, 9, 3, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 0, 0, 3, 7, 0, 0, 5, 1, 6, 0, 8, 0, 0, 0]) == [4, 2, 3, 7, 5, 1, 6, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 1, 9, 0, 3, 0, 9, 6, 0, 7, 5]) == [5, 1, 9, 3, 9, 6, 7, 5, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 7, 0, 1, 0, 1]) == [5, 1, 9, 3, 7, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 9, 0, 3, 0, 8, 8, 7, 0, 7, 0, 3, 7, 0]) == [5, 9, 3, 8, 8, 7, 7, 3, 7, 0, 0, 0, 0, 0]", "assert move_zero([61, -7, 42, -5, 97]) == [61, -7, 42, -5, 97]", "assert move_zero([5, 0, 1, 9, -1, 3, 0, 2, 8, 6, 0, 7, 11, 0, 0, -1]) == [5, 1, 9, -1, 3, 2, 8, 6, 7, 11, -1, 0, 0, 0, 0, 0]", "assert move_zero([27, 27]) == [27, 27]", "assert move_zero([5, 1, 9, 0, 3, 0, 8, 6, -2, 7, 0, 5, 5]) == [5, 1, 9, 3, 8, 6, -2, 7, 5, 5, 0, 0, 0]", "assert move_zero([0, 1, 0, 0, 0, 0, 5, 1, 0, 9, 0, 3, 0, 7, 7, 0, 0]) == [1, 5, 1, 9, 3, 7, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([90, 1, 9, 0, 3, 0, 8, 6, -2, 7, 0, 5, 5]) == [90, 1, 9, 3, 8, 6, -2, 7, 5, 5, 0, 0, 0]", "assert move_zero([2, 9, 4, 0, 0, 9, 2, 5, 5, 6, 0, 9, 0, 8, 11, 0, 0, 12, 13, 14, 0]) == [2, 9, 4, 9, 2, 5, 5, 6, 9, 8, 11, 12, 13, 14, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, -1, 0, 0, 0, 0, 0, 0, 1, 6, 4, 4, 5, 5, 7, 8, 9, 10]) == [-1, 1, 6, 4, 4, 5, 5, 7, 8, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 0, 0, 0, 0, 0, 15, 1, 2, 3, 4, 5, 27, 6, 7, 9, 10]) == [15, 1, 2, 3, 4, 5, 27, 6, 7, 9, 10, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 0, 2, 8, 6, 0, 7, 0, 0]) == [5, 1, 9, 2, 8, 6, 7, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 8, 6, 0, 6, 0, 0, 0]) == [5, 1, 9, 3, 8, 6, 6, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([0, 0, 0, 0, 5, 0, 9, 0, 3, 7, 0, 2, 0, 0]) == [5, 9, 3, 7, 2, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, -1, 3, 0, 2, 8, 6, 0, 7, 6, 11, 0, 0]) == [5, 1, 9, -1, 3, 2, 8, 6, 7, 6, 11, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, -1, 3, 0, 2, 8, 6, 0, 7, 6, 11, 0, 0, 2]) == [5, 1, 9, -1, 3, 2, 8, 6, 7, 6, 11, 2, 0, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, -1, 3, 0, 2, 8, 6, 0, 11, 0, 0, -1]) == [5, 1, 9, -1, 3, 2, 8, 6, 11, -1, 0, 0, 0, 0, 0]", "assert move_zero([2, 3, 4, 0, 0, 9, 0, 5, 6, 0, 0, 0, 8, 10, 0, 12, 13, 15, 0]) == [2, 3, 4, 9, 5, 6, 8, 10, 12, 13, 15, 0, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 9, 3, 0, 2, 8, 8, 7, 0, 7, 0, 3, 0]) == [5, 9, 3, 2, 8, 8, 7, 7, 3, 0, 0, 0, 0]", "assert move_zero([5, -1, 1, 9, -1, 3, 0, 2, 8, 6, 0, 6, 11, 0, 0, 6]) == [5, -1, 1, 9, -1, 3, 2, 8, 6, 6, 11, 6, 0, 0, 0, 0]", "assert move_zero([5, 0, 1, 9, 0, 3, 0, 2, 8, 6, 0, 7, 0, 0, 1, 0]) == [5, 1, 9, 3, 2, 8, 6, 7, 1, 0, 0, 0, 0, 0, 0, 0]", "assert move_zero([5, 1, 9, 0, 3, 0, 8, 6, 0, 0, 7, 0]) == [5, 1, 9, 3, 8, 6, 7, 0, 0, 0, 0, 0]", "assert move_zero([0, 4, 2, 0, 0, 3, 7, 0, 1, 0, 5, 1, 6, 0, 8, 0, 0, 0]) == [4, 2, 3, 7, 1, 5, 1, 6, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of xor of all pairs of numbers in the given list.\nassert pair_xor_Sum([5,9,7,6],4) == 47\nYour code should pass the test:\nassert pair_xor_Sum([5,9,7,6],4) == 47", "test_list": [ "assert pair_xor_Sum([5,9,7,6],4) == 47", "assert pair_xor_Sum([7,3,5],3) == 12", "assert pair_xor_Sum([7,3],2) == 4", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 10) == 339", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 20) == 2664", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 5], 11) == 202", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 5, 3], 11) == 202", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 20) == 2664", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 5], 10) == 159", "assert pair_xor_Sum([1, 2, 4, 3, 2, 1, 2, 3, 4, 5, 4, 5], 11) == 202", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 20) == 2651", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 4, 5], 10) == 159", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 5) == 42", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 10) == 339", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 2, 4, 5, 4, 5, 3], 11) == 186", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 6) == 63", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 5, 3], 7) == 32", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 7, 8, 9, 10], 11) == 402", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 16) == 1200", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 5, 19, 20, 15], 14) == 735", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 14], 16) == 1200", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 16, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 16) == 1200", "assert pair_xor_Sum([1, 2, 2, 1, 2, 3, 4, 5, 4, 4, 5], 11) == 206", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 18) == 1923", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 3) == 6", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 17, 4, 5, 4, 5], 1) == 0", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 2, 9, 10, 11, 12, 14, 14, 15, 16, 17, 18, 19, 20, 2], 20) == 2615", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 4, 5], 4) == 10", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 14, 19], 16) == 1200", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 15) == 1064", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6], 3) == 6", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 5, 19, 20, 15], 15) == 840", "assert pair_xor_Sum([1, 2, 4, 5, 6, 7, 8, 9, 10], 3) == 14", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2, 1], 20) == 2651", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 5) == 42", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 16, 20, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 16) == 1397", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 5, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2, 7, 2], 10) == 300", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 18, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2, 1], 20) == 2650", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 4) == 24", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 12) == 528", "assert pair_xor_Sum([1, 2, 3, 4, 5, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 15) == 1042", "assert pair_xor_Sum([1, 2, 4, 5, 6, 7, 8, 9, 10], 4) == 26", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 1) == 0", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 12, 13, 14, 15, 16, 17, 5, 19, 20, 15], 14) == 731", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 8, 9, 10, 6], 3) == 6", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 16, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 16], 16) == 1200", "assert pair_xor_Sum([2, 3, 2, 4, 2, 3, 2, 4, 5, 4, 5, 3], 11) == 208", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 19, 6], 6) == 63", "assert pair_xor_Sum([0, 2, 4, 3, 2, 1, 2, 3, 4, 5, 4, 5], 11) == 200", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10], 8) == 168", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 7, 4, 8, 9, 10], 11) == 350", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 13, 15, 16, 17, 18, 19, 20, 2], 20) == 2511", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 16, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 16], 17) == 1560", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 8], 8) == 168", "assert pair_xor_Sum([1, 2, 2, 1, 2, 3, 4, 5, 4, 3, 5], 8) == 96", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 15], 20) == 2651", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 7, 4, 8, 9, 10], 6) == 61", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 4) == 24", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 5, 19, 20, 15, 1], 14) == 735", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 20, 15, 16, 17, 18, 19, 20, 2], 20) == 2766", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 11) == 426", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 7) == 84", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 18, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 1, 1], 20) == 2650", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 2, 8, 9, 10, 19, 6], 6) == 63", "assert pair_xor_Sum([1, 2, 3, 4, 5, 5, 6, 7, 8, 17, 9, 10, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 6) == 60", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 21) == 2874", "assert pair_xor_Sum([1, 2, 3, 4, 4, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 20) == 2663", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 7, 8, 2, 9, 10], 11) == 354", "assert pair_xor_Sum([1, 10, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6], 3) == 22", "assert pair_xor_Sum([1, 10, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6, 6], 1) == 0", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 16, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 16], 8) == 224", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 9, 7, 8, 9, 2, 10], 4) == 24", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 13, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2, 8], 6) == 63", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 5, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2, 7, 2], 11) == 402", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 13, 14, 15, 16, 17, 5, 19, 20, 15], 14) == 935", "assert pair_xor_Sum([1, 2, 8, 4, 5, 6, 7, 8, 9, 10], 3) == 22", "assert pair_xor_Sum([1, 2, 5, 3, 9, 3, 1, 2, 4, 3, 17, 4, 5, 4, 5], 0) == 0", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 6, 10, 12, 13, 14, 15, 16, 17, 5, 19, 10, 20, 15], 2) == 3", "assert pair_xor_Sum([1, 2, 3, 5, 6, 7, 16, 20, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 1], 16) == 1408", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 16) == 1200", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 13, 14, 15, 16, 17, 5, 19, 20, 15, 1], 14) == 935", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 3) == 6", "assert pair_xor_Sum([2, 3, 2, 4, 2, 3, 2, 4, 5, 4, 5, 3, 5], 11) == 208", "assert pair_xor_Sum([17, 2, 3, 4, 5, 6, 7, 8, 9, 10, 12, 13, 14, 15, 16, 17, 5, 19, 20, 15], 14) == 939", "assert pair_xor_Sum([1, 4, 2, 4, 3, 4, 5, 6, 7, 8, 2, 9, 10, 5], 11) == 288", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 7, 4, 8, 9, 10], 7) == 84", "assert pair_xor_Sum([1, 2, 5, 3, 9, 3, 1, 2, 4, 3, 17, 4, 5, 4, 5, 9], 0) == 0", "assert pair_xor_Sum([14, 4, 2, 3, 4, 5, 6, 7, 4, 8, 9, 10], 6) == 98", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 16, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 16, 16], 15) == 1064", "assert pair_xor_Sum([1, 2, 2, 1, 2, 3, 4, 5, 4, 3, 5], 9) == 132", "assert pair_xor_Sum([1, 2, 3, 3, 1, 2, 3, 17, 4, 5, 4, 5], 1) == 0", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 4, 8, 9], 3) == 14", "assert pair_xor_Sum([21, 1, 4, 2, 3, 4, 5, 6, 7, 4, 8, 9, 10], 7) == 176", "assert pair_xor_Sum([1, 2, 4, 4, 5, 6, 7, 8, 9, 6, 10, 12, 13, 14, 15, 16, 17, 5, 19, 10, 20, 15], 2) == 3", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 17, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 2], 16) == 1199", "assert pair_xor_Sum([1, 2, 3, 3, 1, 2, 9, 3, 17, 4, 5, 4, 5], 1) == 0", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6, 8], 3) == 6", "assert pair_xor_Sum([1, 4, 2, 3, 4, 5, 6, 7, 8, 9, 10, 5], 10) == 301", "assert pair_xor_Sum([1, 2, 3, 2, 1, 2, 3, 4, 5, 4, 5, 2], 11) == 202", "assert pair_xor_Sum([2, 3, 2, 4, 2, 3, 2, 4, 5, 4, 5, 3, 5, 3], 11) == 208", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 5, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20], 4) == 24", "assert pair_xor_Sum([1, 2, 3, 3, 1, 2, 3, 17, 4, 5, 5], 9) == 218", "assert pair_xor_Sum([1, 2, 4, 3, 2, 1, 2, 3, 4, 5, 4, 5], 10) == 159", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 14, 19], 20) == 2664", "assert pair_xor_Sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6, 8], 4) == 24", "assert pair_xor_Sum([17, 2, 3, 4, 5, 7, 8, 9, 10, 12, 13, 14, 15, 16, 17, 5, 19, 20, 15], 14) == 1117" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort the given list.\nassert heap_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]\nYour code should pass the test:\nassert heap_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]", "test_list": [ "assert heap_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]", "assert heap_sort([25, 35, 22, 85, 14, 65, 75, 25, 58])==[14, 22, 25, 25, 35, 58, 65, 75, 85]", "assert heap_sort( [7, 1, 9, 5])==[1,5,7,9]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given amount has no profit and no loss\nassert noprofit_noloss(1500,1200)==False\nYour code should pass the test:\nassert noprofit_noloss(1500,1200)==False", "test_list": [ "assert noprofit_noloss(1500,1200)==False", "assert noprofit_noloss(100,100)==True", "assert noprofit_noloss(2000,5000)==False", "assert noprofit_noloss(-2000, -5000) == False", "assert noprofit_noloss(-1500, -1200) == False", "assert noprofit_noloss(-100, -100) == True", "assert noprofit_noloss(-5000, -1501) == False", "assert noprofit_noloss(-1501, -5000) == False", "assert noprofit_noloss(-5000, -5000) == True", "assert noprofit_noloss(-1501, -1501) == True", "assert noprofit_noloss(-2001, -2001) == True", "assert noprofit_noloss(-1501, -4999) == False", "assert noprofit_noloss(-2001, -4999) == False", "assert noprofit_noloss(-2000, -2001) == False", "assert noprofit_noloss(-2000, -4999) == False", "assert noprofit_noloss(-101, -100) == False", "assert noprofit_noloss(-1499, -1501) == False", "assert noprofit_noloss(-5000, -1500) == False", "assert noprofit_noloss(-2000, -2000) == True", "assert noprofit_noloss(-2001, -1501) == False", "assert noprofit_noloss(-1499, -100) == False", "assert noprofit_noloss(-100, -2000) == False", "assert noprofit_noloss(-5000, -4999) == False", "assert noprofit_noloss(-1501, -100) == False", "assert noprofit_noloss(-5000, -1499) == False", "assert noprofit_noloss(-1499, -1499) == True", "assert noprofit_noloss(-5000, -2001) == False", "assert noprofit_noloss(-100, -5000) == False", "assert noprofit_noloss(-1502, -1501) == False", "assert noprofit_noloss(-1500, -2002) == False", "assert noprofit_noloss(-2002, -1499) == False", "assert noprofit_noloss(-5000, -100) == False", "assert noprofit_noloss(-1200, -1200) == True", "assert noprofit_noloss(-2002, -2003) == False", "assert noprofit_noloss(-1500, -2000) == False", "assert noprofit_noloss(-5001, -5000) == False", "assert noprofit_noloss(-2002, -1500) == False", "assert noprofit_noloss(-2001, -2000) == False", "assert noprofit_noloss(-2000, -102) == False", "assert noprofit_noloss(-1502, -5001) == False", "assert noprofit_noloss(-1500, -1501) == False", "assert noprofit_noloss(-2001, -102) == False", "assert noprofit_noloss(-2002, -1501) == False", "assert noprofit_noloss(-100, -1499) == False", "assert noprofit_noloss(-1502, -2002) == False", "assert noprofit_noloss(-101, -101) == True", "assert noprofit_noloss(-1500, -4999) == False", "assert noprofit_noloss(-2000, -100) == False", "assert noprofit_noloss(-5001, -5001) == True", "assert noprofit_noloss(-99, -2003) == False", "assert noprofit_noloss(-101, -1200) == False", "assert noprofit_noloss(-1200, -1502) == False", "assert noprofit_noloss(-98, -2003) == False", "assert noprofit_noloss(-1500, -2001) == False", "assert noprofit_noloss(-2001, -2002) == False", "assert noprofit_noloss(-99, -2004) == False", "assert noprofit_noloss(-4999, -1501) == False", "assert noprofit_noloss(-100, -99) == False", "assert noprofit_noloss(-98, -100) == False", "assert noprofit_noloss(-99, -2000) == False", "assert noprofit_noloss(-5000, -1502) == False", "assert noprofit_noloss(-1199, -1199) == True", "assert noprofit_noloss(-1200, -5000) == False", "assert noprofit_noloss(-1501, -1499) == False", "assert noprofit_noloss(-1499, -99) == False", "assert noprofit_noloss(-101, -1501) == False", "assert noprofit_noloss(-2002, -4999) == False", "assert noprofit_noloss(66.25586492562002, 36.64907257918932) == False", "assert noprofit_noloss(-1502, -2001) == False", "assert noprofit_noloss(-102, -2003) == False", "assert noprofit_noloss(-1502, -1502) == True", "assert noprofit_noloss(-100, -103) == False", "assert noprofit_noloss(-98, -98) == True", "assert noprofit_noloss(-4999, -5000) == False", "assert noprofit_noloss(-101, -1502) == False", "assert noprofit_noloss(-1500, -101) == False", "assert noprofit_noloss(False, True) == False", "assert noprofit_noloss(-1200, -1199) == False", "assert noprofit_noloss(-101, -2000) == False", "assert noprofit_noloss(-2003, -2003) == True", "assert noprofit_noloss(-1500, False) == False", "assert noprofit_noloss(-2000, -101) == False", "assert noprofit_noloss(-101, -1499) == False", "assert noprofit_noloss(-99, -100) == False", "assert noprofit_noloss(-101, -1500) == False", "assert noprofit_noloss(-1500, -1500) == True", "assert noprofit_noloss(-99, -4999) == False", "assert noprofit_noloss(-100, -101) == False", "assert noprofit_noloss(-1201, -5000) == False", "assert noprofit_noloss(-2001, -4998) == False", "assert noprofit_noloss(-4999, -2000) == False", "assert noprofit_noloss(True, -2003) == False", "assert noprofit_noloss(-1999, -4999) == False", "assert noprofit_noloss(-1503, -1502) == False", "assert noprofit_noloss(-4999, -4998) == False", "assert noprofit_noloss(-4999, -4999) == True", "assert noprofit_noloss(-99, -99) == True", "assert noprofit_noloss(-5000, -5001) == False", "assert noprofit_noloss(-1498, -1498) == True", "assert noprofit_noloss(-98, -99) == False", "assert noprofit_noloss(-5000, -2000) == False", "assert noprofit_noloss(-99, -101) == False", "assert noprofit_noloss(-1201, False) == False", "assert noprofit_noloss(34, 34) == True", "assert noprofit_noloss(-1999, -1999) == True", "assert noprofit_noloss(-1502, -5000) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate the wind chill index rounded to the next integer given the wind velocity in km/h and a temperature in celsius.\nassert wind_chill(120,35)==40\nYour code should pass the test:\nassert wind_chill(120,35)==40", "test_list": [ "assert wind_chill(120,35)==40", "assert wind_chill(40,20)==19", "assert wind_chill(10,8)==6" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sum the length of the names of a given list of names after removing the names that start with a lowercase letter.\nassert sample_nam(['sally', 'Dylan', 'rebecca', 'Diana', 'Joanne', 'keith'])==16\nYour code should pass the test:\nassert sample_nam(['sally', 'Dylan', 'rebecca', 'Diana', 'Joanne', 'keith'])==16", "test_list": [ "assert sample_nam(['sally', 'Dylan', 'rebecca', 'Diana', 'Joanne', 'keith'])==16", "assert sample_nam([\"php\", \"res\", \"Python\", \"abcd\", \"Java\", \"aaa\"])==10", "assert sample_nam([\"abcd\", \"Python\", \"abba\", \"aba\"])==6", "assert sample_nam([]) == 0", "assert sample_nam(['AbCdE', 'fGH', 'IJKLMnOp', 'qrs', 'TUVW', 'xyz']) == 0", "assert sample_nam(['Python']) == 6", "assert sample_nam(['John', 'dylan', '!Rebecca', 'Diana!', '-', '_']) == 10", "assert sample_nam(['John', 'D@ve', 'MarY', 'Linda', 'Zach!', '@lex']) == 18", "assert sample_nam(['Elephant', 'l!ly', '&bbie', 'T@ger', 'D@lion', 'Rh!no']) == 24", "assert sample_nam(['%lice', '^ob', '&arl', '*andy', '$ugene', 'Oscar']) == 5", "assert sample_nam(['@my', 'B@ob', '$ara', 'Mike', 'S!mon', 'L!sa']) == 17", "assert sample_nam(['Oscar', '$ugene', 'D@ve!', '%lice', '^ob']) == 10", "assert sample_nam(['T@ger', 'Elephant', 'l!ly', '$ugene', 'Rh!no']) == 18", "assert sample_nam(['John', '!Rebecca', '@lex', 'Zach!', '&bbie']) == 9", "assert sample_nam(['John', 'dylan', 'L!sa', '!Rebecca', 'Diana!', '-', '_']) == 14", "assert sample_nam(['John', 'dylan', '*andy', '!Rebecca', 'Diana!', '-', '_']) == 10", "assert sample_nam(['John', 'dylan', '*andy', '!Rebecca', 'Diana!', '-', '__', 'Joh*andyn', '_']) == 19", "assert sample_nam(['John', 'dylan', 'L!sa', '!Rebecca', 'Diana!', '_', 'John']) == 18", "assert sample_nam(['&bbie', 'H', 'tTftc', 'IJKLMnOp', 'IJKLMnOp', 'HYAOjA']) == 0", "assert sample_nam(['!Rebecca', 'dylan', '!Rebecca', 'Diana!', '-', '_']) == 6", "assert sample_nam(['John', 'D@ve', 'Linda', 'Zach!', '@lex']) == 18", "assert sample_nam(['D@v@e!', 'Oscar', '$ug$ene', 'D@ve!', '%lice', '^ob', '%lice']) == 16", "assert sample_nam(['Oscar', '$ugene', 'D@ve!', '%lice', '^ob', 'Oscar']) == 15", "assert sample_nam(['John', 'D@ve', 'MarY', 'D@veZach!', 'Linda', 'Zach!', '@lex']) == 18", "assert sample_nam(['John', 'dylan', 'Diana!', '-', '_']) == 10", "assert sample_nam(['John', 'xyz', 'Diana!', '-', '_']) == 10", "assert sample_nam(['!Rebecca', 'dylan', 'Diana!', '-']) == 6", "assert sample_nam(['$ugene', 'D@ve!', '^ob']) == 5", "assert sample_nam(['John', 'dylan', '*andy', 'Joh*andJyn', '!Rebecca', 'Diana!', '-', '__', 'Joh*andyn', '_']) == 19", "assert sample_nam(['dylan', '!Rebecca', '&arl', 'DianaDiana!!', '-', '_']) == 0", "assert sample_nam(['John', 'dylan', '*anPythondy', 'Joh*andJyn', '!Rebecca', 'Diana!', '-', '__', 'DianaDiana!!', 'Joh*andyn', '_']) == 19", "assert sample_nam(['T@ger', 'Elephant', '$ugene', 'Rh!no', '_']) == 18", "assert sample_nam(['John', 'L!sa', '!Rebecca', 'Diana!', '__', 'John']) == 18", "assert sample_nam(['D@v@e!', 'Oscrar', '$ug$ene', 'D@ve!', '%lice', '^ob', '%lice']) == 17", "assert sample_nam(['D@veZach!', 'Python', 'jdps', 'Zach!']) == 11", "assert sample_nam(['John', 'dylan', '!RebeccJohna', 'L!sa', '!Rebecca', 'Diana!', '-', '_']) == 14", "assert sample_nam(['l!ly', '&bbie', 'T@ger', 'D@lion', 'Rh!no']) == 16", "assert sample_nam(['John', 'dylan', '!RebeccJohna', 'L!sa', '&arl', '!Rebecca', 'Diana!', '-', '_']) == 14", "assert sample_nam(['Oscar', '$ugene', 'D@ve!', '%lice', 'D@veZach!', '^ob', 'Oscar', 'D@veZach!']) == 15", "assert sample_nam(['!Rebecca', 'dylan', 'Diana!', '-', 'dylan']) == 6", "assert sample_nam(['fGH', 'IJKLMnOp', 'qrs', 'TUVW', 'xyz']) == 0", "assert sample_nam(['!Rebecca', 'dylan', 'Diana!', '$ugene', '-']) == 6", "assert sample_nam(['John', 'xyz', 'Diana!', '-', '_', 'Diana!']) == 16", "assert sample_nam(['&bbie', 'H', 'tTftc', 'IJKLMnOp', 'IJKLMnOp', 'HYAAOjA']) == 0", "assert sample_nam(['John', 'Johon', 'dylan', 'Diana!', '-', '_']) == 15", "assert sample_nam(['xyz', 'Diana!', '-', '_', 'Diana!', 'Diana!']) == 18", "assert sample_nam(['Elephant', 'l!ly', '&bbie', 'T@ger', 'D@lion', 'Oscrar', 'Rh!no']) == 30", "assert sample_nam(['dylan', 'L!sa', '!Rebecca', 'Diana!', '!!Rebecca', '-', '_', '-']) == 10", "assert sample_nam(['Oscar', 'D@ve!!', '$ugene', 'D@ve!', '%lice', '^ob']) == 16", "assert sample_nam(['!Rebecca', 'dylan', 'Diana!', '-', '-']) == 6", "assert sample_nam(['fGH', 'IJKLMnOp', 'qrs', 'TUVW', 'xyz', 'TUVW']) == 0", "assert sample_nam(['!!Rebe!cca', '!Rebecca', 'dylan', 'Diana!', '$ugene', '%lice']) == 6", "assert sample_nam(['S!mon', 'Diana!', '-', '_', 'Diana!', 'Diana!']) == 23", "assert sample_nam(['John', '@lex', 'Zach!', 'Linda']) == 14", "assert sample_nam(['Oscar', 'D@ve!', '%lice', 'D@veZach!', '^ob', '%liD@vevZach!ce', 'Oscar', '%liD@veZach!ce', 'D@veZach!']) == 15", "assert sample_nam(['%lice', '^ob', '&arl', 'OscD@veZach!ar', '*andy', '$ugene', 'Oscar']) == 5", "assert sample_nam(['John', 'L!sa', '!Rebecca', 'Zach!', '__', 'John']) == 17", "assert sample_nam(['%lice', '^ob', '&arl', 'OscD@veZach!ar', '*andy', '$ugHene', 'Oscar']) == 5", "assert sample_nam(['John', 'xyz', 'Diana!', '-', '_', 'xyz', 'John']) == 14", "assert sample_nam(['John', '@lex', 'MarY', 'Zach!', 'Linda']) == 14", "assert sample_nam(['John', 'D@ve', 'MarY', 'D@veZach!', '-', 'Linda', 'Zach!', '@lex']) == 18", "assert sample_nam(['dylan', '!Rebecca', '&arl', '-', '!!Rebecca', '_']) == 0", "assert sample_nam(['Oscar', 'D@ve!!', '$ugene', 'D@ve!', '%lice', '^ob', '$ugene']) == 16", "assert sample_nam(['^ob', '&arl', 'OscD@vtTftceZach!ar', '*andy', '$ugene', 'Oscar', 'Oscar']) == 10", "assert sample_nam(['$ugene', 'D@ve!', 'H^ob']) == 9", "assert sample_nam(['!Rebecca', 'Oscrar', 'dylan', 'Diana!', '-']) == 12", "assert sample_nam(['dylan', 'L!sa', '!Rebecca', 'S!mon', 'Diana!', '!!Rebecca', '-', '_', '-']) == 15", "assert sample_nam(['Oscar', 'D@ve!!', '$ugene', 'D@ve!', '%lice', '^ob', '^ob']) == 16", "assert sample_nam(['xyz', 'Diana!', '-', '_', 'Diana!', 'D@ve!', 'Diana!']) == 23", "assert sample_nam(['Elephant', 'l!ly', '&bbiMikee', 'T@ger', 'D@lion', 'Rh!no']) == 24", "assert sample_nam(['John', 'D@ve', 'MarY', 'Linda', 'Zach!', '@lex', 'D@ve']) == 22", "assert sample_nam(['John', 'D@ve', 'Linda', 'aZach!', '@lex', 'D@ve']) == 17", "assert sample_nam(['John', 'D@ve', 'MarY', 'Linda', 'Zach!', '@lex', 'D@ve', 'D@ve']) == 26", "assert sample_nam(['MarY', '!Rebecca', '&arl', '-', '!!Rebecca', '_', '&arl']) == 0", "assert sample_nam(['John', 'dylan', '*andy', 'Joh*andJyn', '!Rebecca', 'Diana!', '-', '__', 'Joh*andyn', 'Rh!no-', '_']) == 25", "assert sample_nam(['Oscar', '$ugene', '%lice', '^ob', 'Oscar']) == 10", "assert sample_nam(['John', 'L!sa', '!Rebecca', 'Diana!', '__', 'John', 'John']) == 22", "assert sample_nam(['dylan', '!Rebecca', '&arl', 'DianaDiana!!', 'TUVW-', '_']) == 0", "assert sample_nam(['D@v@e!', 'Oscar', '$ug$ene', 'D@ve!', '%lice', '^ob', '%lice', 'D@ve!']) == 21", "assert sample_nam(['D@v@e!', 'HYAAOjA', 'Oscar', '$ug$ene', 'D@ve!', '%lice', '^ob', '%lice', 'D@ve!']) == 21", "assert sample_nam(['!Rebecca', 'dylan', 'Diana!', 'dyla*andyn', '-', 'dylan']) == 6", "assert sample_nam(['T@ger', 'Elephant', '$ugene', 'Rh!no', '_', '$ugene']) == 18", "assert sample_nam(['$ugene', 'D@ve!', '%lice', '$$ugene', '^ob', '%lice']) == 5", "assert sample_nam(['John', 'D@ve', 'Linda', 'H', '@lex', 'D@ve']) == 17", "assert sample_nam(['AbCdE', 'fGH', 'IJKLMnOp', 'qrs', 'TUVW', 'xyz', 'qrs']) == 0", "assert sample_nam(['!Rebecca', '&arl', '-', '!!Rebecca', '_', '&arl']) == 0", "assert sample_nam(['OOscar', 'Oscar', '$uegene', 'D@ve!', '%lice', '^ob', 'Oscar']) == 15", "assert sample_nam(['John', 'D@ve', 'Linda', 'H', '@lex']) == 13", "assert sample_nam(['John', '!Rebecca', 'Zach!', '&bbie']) == 9", "assert sample_nam(['n$ugene', 'T@ger', 'Elephant', 'l!ly', '$ugene']) == 13", "assert sample_nam(['John', 'dylan', '!RebeccJohna', 'L!sa', '&arl', '!Rebecca', '-', '_']) == 8", "assert sample_nam(['xyz', 'Diana!', '-', '_', 'Diana!', 'H^ob', 'Diana!']) == 22", "assert sample_nam(['John', 'dylan', 'L!sa', '!Rebecca', 'Diana!', '__', 'John']) == 18", "assert sample_nam(['!Rebecca', 'dylan', 'Diana!', 'dylan']) == 6", "assert sample_nam(['$ara', 'Oscar', '$ugene', '%lice', '^ob', 'Oscar', '$ugene']) == 10", "assert sample_nam(['John', 'dylan', '*andy', '!Rebecca', 'Diana!', '-', '_', 'dylan']) == 10", "assert sample_nam(['John', 'Johon', 'dylan', 'Diana!', '-', '_', '_', '-']) == 15", "assert sample_nam(['^ob', '&arl', 'OscD@vtTftceZach!ar', '*andy', '$ugene', 'Oscar', 'D@lion']) == 11", "assert sample_nam(['John', 'dylan', '*andy', '!Rebecca', 'Diana!', '__', '-', '_', 'dylan']) == 10", "assert sample_nam(['John', 'dylan', '*andy', 'y*andy', '!Rebecca', 'Diana!', '-', '_', '__', 'dylan', '-']) == 10", "assert sample_nam(['fGH', 'IJKLMnOp', 'qrs', 'Pythonxyz', 'Mike', 'xyz', 'TUVW']) == 13", "assert sample_nam(['&bbie', '!Rebecca', '@lex', 'Zach!', '&bbie', '!Rebecca']) == 5", "assert sample_nam(['John', 'L!sa', '!Rebecca', 'L!s', 'Zach!', '__', 'John']) == 20", "assert sample_nam(['^ob', '&arl', 'OscD@veZach!ar', '*andy', '$ugene', 'Oscar']) == 5", "assert sample_nam(['John', 'dylan', '!RebeccJohna', 'LL!sa', '&arl', '!Rebecca', 'Diana!', '-', '_']) == 10", "assert sample_nam(['MarY', '!Rebecca', '&arl', '-', '!!Rebecca', '_', '&arl', '_']) == 0", "assert sample_nam(['AbCdE', 'fGH', 'IJKLMnOp', 'Zach!', 'qrs', 'TUVW', 'xyz']) == 5", "assert sample_nam(['John', 'Johon', 'dylan', 'Diana!', '-', '_', '_', '-', '_', 'Diana!']) == 21", "assert sample_nam(['John', 'dylan', '!Rebecca', '-', '_']) == 4", "assert sample_nam(['fGH', 'IJKLMnOp', 'Pythonxyz', 'Mike', 'dyla*andyn', 'TUVW']) == 13", "assert sample_nam(['Pythonxyz', 'John', 'D@ve', 'MarY', 'D@veZach!', 'Linda', 'Zach!', '@lex']) == 27", "assert sample_nam(['Elephant', 'l!ly', '&bbie', 'Elephalnt', 'T@ger', 'D@lion', 'D@Dlion', 'Rh!no']) == 33", "assert sample_nam(['fGH', 'IaZach!JKLMnOp', 'qrs', 'TUVW', 'xyz']) == 0", "assert sample_nam(['John', 'dylan', '!Rebecca', 'Diana!', '-', 'Pythonxyz', '!Rebecca']) == 19" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort a list of tuples using the second value of each tuple.\nassert subject_marks([('English', 88), ('Science', 90), ('Maths', 97), ('Social sciences', 82)])==[('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 97)]\nYour code should pass the test:\nassert subject_marks([('English', 88), ('Science', 90), ('Maths', 97), ('Social sciences', 82)])==[('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 97)]", "test_list": [ "assert subject_marks([('English', 88), ('Science', 90), ('Maths', 97), ('Social sciences', 82)])==[('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 97)]", "assert subject_marks([('Telugu',49),('Hindhi',54),('Social',33)])==([('Social',33),('Telugu',49),('Hindhi',54)])", "assert subject_marks([('Physics',96),('Chemistry',97),('Biology',45)])==([('Biology',45),('Physics',96),('Chemistry',97)])", "assert subject_marks([]) == []", "assert subject_marks([('English', 88)]) == [('English', 88)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91)]", "assert subject_marks([('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 90)]) == [('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 90)]", "assert subject_marks([('Maths', 82), ('Social sciences', 82), ('English', 88), ('Science', 90), ('Computer Science', 90)]) == [('Maths', 82), ('Social sciences', 82), ('English', 88), ('Science', 90), ('Computer Science', 90)]", "assert subject_marks([('Biology', 45), ('Maths', 85), ('Science', 88), ('Physics', 96), ('Physics', 96), ('Chemistry', 97)]) == [('Biology', 45), ('Maths', 85), ('Science', 88), ('Physics', 96), ('Physics', 96), ('Chemistry', 97)]", "assert subject_marks([('Physics', 90), ('Chemistry', 90), ('Biology', 90)]) == [('Physics', 90), ('Chemistry', 90), ('Biology', 90)]", "assert subject_marks([('Physics', -76), ('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('Chemistry', 92)]) == [('Physics', -76), ('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('Chemistry', 92)]", "assert subject_marks([('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Chemistry', 68), ('Biology', 72), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('English', 82), ('Maths', 84), ('Social sciences', 86), ('Computer Science', 88)]) == [('Chemistry', 68), ('Biology', 72), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('English', 82), ('Maths', 84), ('Social sciences', 86), ('Computer Science', 88)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94), ('Biology', 95)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96), ('Physics', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96), ('Physics', 96)]", "assert subject_marks([('Chemistry', -9), ('Physics', -3), ('Geography', 65), ('History', 73), ('Biology', 77), ('English', 81), ('Science', 82), ('Computer Science', 88), ('Maths', 94)]) == [('Chemistry', -9), ('Physics', -3), ('Geography', 65), ('History', 73), ('Biology', 77), ('English', 81), ('Science', 82), ('Computer Science', 88), ('Maths', 94)]", "assert subject_marks([('Computer Science', 75), ('English', 77), ('Physics', 78), ('Economics', 79), ('Chemistry', 80), ('Maths', 80), ('Science', 84), ('Geography', 85), ('Biology', 88), ('History', 92)]) == [('Computer Science', 75), ('English', 77), ('Physics', 78), ('Economics', 79), ('Chemistry', 80), ('Maths', 80), ('Science', 84), ('Geography', 85), ('Biology', 88), ('History', 92)]", "assert subject_marks([('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96), ('Maths', 98)]) == [('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96), ('Maths', 98)]", "assert subject_marks([('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Chemistry', 92)]) == [('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Chemistry', 92)]", "assert subject_marks([('Biology', 72), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('English', 82), ('Social sciences', 86), ('Computer Science', 88)]) == [('Biology', 72), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('English', 82), ('Social sciences', 86), ('Computer Science', 88)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('Computer Science', 90), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('Computer Science', 90), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94, 'Computer Science'), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94, 'Computer Science'), ('Biology', 95)]", "assert subject_marks([('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('Chemistry', 92)]) == [('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('Chemistry', 92)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91), ('English', 95)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91), ('English', 95)]", "assert subject_marks([('Geography', 70), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85, 85), ('Science', 88), ('Computer Science', 91)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85, 85), ('Science', 88), ('Computer Science', 91)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Maths', 96), ('Physics', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Maths', 96), ('Physics', 96)]", "assert subject_marks([('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Chemistry', 94), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Chemistry', 94), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('Computer Science', 90), ('Physics', 93), ('Physics', 93)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('Computer Science', 90), ('Physics', 93), ('Physics', 93)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97), ('Maths', 97)]", "assert subject_marks([('Geography', 78), ('Geography', 78, 'Geography'), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Geography', 78, 'Geography'), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Social sciences', 82), ('English', 88), ('Mathas', 90), ('Science', 90), ('Maths', 90)]) == [('Social sciences', 82), ('English', 88), ('Mathas', 90), ('Science', 90), ('Maths', 90)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Physics', 98)]", "assert subject_marks([('Social sciences', 82), ('English', 88), ('Mathas', 90), ('Science', 90), ('Maths', 90), ('Science', 92)]) == [('Social sciences', 82), ('English', 88), ('Mathas', 90), ('Science', 90), ('Maths', 90), ('Science', 92)]", "assert subject_marks([('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95), ('History', 96)]) == [('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 81), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 81), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94), ('Biology', 95)]", "assert subject_marks([('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95), ('History', 96)]) == [('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85, 85), ('Computer Science', 91)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82), ('Maths', 85, 85), ('Computer Science', 91)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Maths', 97), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Maths', 97), ('Maths', 97)]", "assert subject_marks([('Maths', 82), ('Social sciences', 82), ('Science', 90), ('Computer Science', 90)]) == [('Maths', 82), ('Social sciences', 82), ('Science', 90), ('Computer Science', 90)]", "assert subject_marks([('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('ChemistrMathasy', 92), ('Chemistry', 92)]) == [('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('ChemistrMathasy', 92), ('Chemistry', 92)]", "assert subject_marks([('Social sciences', 82), ('English', 88), ('English', 88), ('Mathas', 90), ('Science', 90), ('Maths', 90)]) == [('Social sciences', 82), ('English', 88), ('English', 88), ('Mathas', 90), ('Science', 90), ('Maths', 90)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Physics', -76), ('Computer Science', 82), ('Maths', 85), ('Chemistry', 92)]) == [('Physics', -76), ('Computer Science', 82), ('Maths', 85), ('Chemistry', 92)]", "assert subject_marks([('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Maths', 85), ('Science', 88), ('Physics', 96), ('Physics', 96), ('Chemistry', 97)]) == [('Maths', 85), ('Science', 88), ('Physics', 96), ('Physics', 96), ('Chemistry', 97)]", "assert subject_marks([('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Chemistry', 92), ('Chemistry', 92)]) == [('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Chemistry', 92), ('Chemistry', 92)]", "assert subject_marks([('Chemistry', -9), ('Physics', -3), ('Geography', 65), ('History', 73), ('Biology', 77), ('Biology', 77), ('English', 81), ('Computer Science', 88), ('Maths', 94)]) == [('Chemistry', -9), ('Physics', -3), ('Geography', 65), ('History', 73), ('Biology', 77), ('Biology', 77), ('English', 81), ('Computer Science', 88), ('Maths', 94)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Geography', 92), ('Computer Science', 94, 'Computer Science'), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Geography', 92), ('Computer Science', 94, 'Computer Science'), ('Biology', 95)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82, 'Chemistry'), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91), ('English', 95)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82, 'Chemistry'), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91), ('English', 95)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Maths', 92), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Maths', 92), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Geography', 78), ('Biology', 81, 'Biology'), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Maths', 92), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81, 'Biology'), ('Biology', 81), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Maths', 92), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Geography', 78), ('Geography', 78, 'Geography'), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Geography', 78, 'Geography'), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95)]) == [('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95)]", "assert subject_marks([('English', 87), ('English', 87, 'English'), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('English', 87), ('English', 87, 'English'), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Physics', 76), ('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('Physics', 76), ('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Geography', 78), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 96)]) == [('Geography', 78), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 96)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85, 'Biology'), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85, 'Biology'), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Social sciences', 82), ('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 90)]) == [('Social sciences', 82), ('Social sciences', 82), ('English', 88), ('Science', 90), ('Maths', 90)]", "assert subject_marks([('Social sciences', 82), ('Mathas', 90), ('Science', 90), ('Maths', 90)]) == [('Social sciences', 82), ('Mathas', 90), ('Science', 90), ('Maths', 90)]", "assert subject_marks([('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95)]) == [('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95)]", "assert subject_marks([('Geography', 78), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Chemistry', 85), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90, 90), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Biology', 95)]", "assert subject_marks([('Geography', 78), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96), ('Physics', 96)]) == [('Geography', 78), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96), ('Physics', 96)]", "assert subject_marks([('Physics', 76), ('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('Physics', 76), ('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('ChemistrMathasy', 92), ('Chemistry', 92), ('Chemistry', 92)]) == [('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('ChemistrMathasy', 92), ('Chemistry', 92), ('Chemistry', 92)]", "assert subject_marks([('Biology', 45), ('Maths', 85), ('Physics', 96), ('Physics', 96), ('Physics', 96), ('Chemistry', 97)]) == [('Biology', 45), ('Maths', 85), ('Physics', 96), ('Physics', 96), ('Physics', 96), ('Chemistry', 97)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Biology', 45), ('Maths', 85), ('Science', 88), ('Physics', 96), ('Physics', 96)]) == [('Biology', 45), ('Maths', 85), ('Science', 88), ('Physics', 96), ('Physics', 96)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Computer Science', 90), ('Physics', 93), ('Physics', 93), ('Physics', 93)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Computer Science', 90), ('Physics', 93), ('Physics', 93), ('Physics', 93)]", "assert subject_marks([('Science', 45), ('Science', 45), ('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]) == [('Science', 45), ('Science', 45), ('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('English', 88), ('Science', 90), ('Maths', 97)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('Maths', 97)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 81), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 89), ('Geography', 92), ('Computer Science', 94), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 81), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 89), ('Geography', 92), ('Computer Science', 94), ('Biology', 95)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('English', 88), ('Science', 90), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('English', 88), ('English', 88), ('Science', 90), ('Maths', 97)]", "assert subject_marks([('Art', 70), ('History', 75), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94, 'Computer Science'), ('Biology', 95)]) == [('Art', 70), ('History', 75), ('History', 78), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94, 'Computer Science'), ('Biology', 95)]", "assert subject_marks([('English', 87), ('English', 87, 'English'), ('Physics', 90), ('Geography', 91), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('English', 87), ('English', 87, 'English'), ('Physics', 90), ('Geography', 91), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98)]", "assert subject_marks([('Economics', 89), ('Physics', 90), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('History', 96)]) == [('Economics', 89), ('Physics', 90), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('History', 96)]", "assert subject_marks([('Geography', 70), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Biology', 72), ('Biology', 72, 'Biology'), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('English', 82), ('Social sciences', 86), ('Computer Science', 88)]) == [('Biology', 72), ('Biology', 72, 'Biology'), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('English', 82), ('Social sciences', 86), ('Computer Science', 88)]", "assert subject_marks([('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('Maths', 85), ('Chemistry', 92)]) == [('Biology', -45), ('Computer Science', 82), ('Maths', 85), ('MaMusicths', 85), ('Maths', 85), ('Maths', 85), ('Chemistry', 92)]", "assert subject_marks([('English', 87), ('English', 87, 'ChemistrMathasy'), ('Physics', 90), ('Geography', 91), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]) == [('English', 87), ('English', 87, 'ChemistrMathasy'), ('Physics', 90), ('Geography', 91), ('Geography', 91), ('Biology', 92), ('Biology', 92, 'Biology'), ('Science', 93), ('Computer Science', 94), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Geography', 70), ('English', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Chemistry', 94), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('English', 70), ('History', 77), ('Biology', 85), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Chemistry', 94), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Maths', 96), ('Physics', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Maths', 96), ('Physics', 96)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82, 'Chemistry'), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82, 'Chemistry'), ('Chemistry', 82), ('Maths', 85), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91)]", "assert subject_marks([('Maths', 82), ('Social sciences', 82), ('English', 88), ('English', 88), ('Science', 90), ('Computer Science', 90)]) == [('Maths', 82), ('Social sciences', 82), ('English', 88), ('English', 88), ('Science', 90), ('Computer Science', 90)]", "assert subject_marks([('Physics', 90), ('Biology', 90)]) == [('Physics', 90), ('Biology', 90)]", "assert subject_marks([('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('Social sciences', 82), ('English', 88), ('Maths', 97)]) == [('Social sciences', 82), ('Computer Science', 82), ('Computer Science', 82), ('Social sciences', 82), ('English', 88), ('Maths', 97)]", "assert subject_marks([('Physics', -76, 'Physics'), ('Computer Science', 82), ('Maths', 85)]) == [('Physics', -76, 'Physics'), ('Computer Science', 82), ('Maths', 85)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90), ('Physics', 93, 93), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Biology', 81), ('History', 88), ('History', 88), ('History', 88), ('Computer Science', 90), ('Physics', 93, 93), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Economics', 89), ('Physics', 90), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95)]) == [('Economics', 89), ('Physics', 90), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95)]", "assert subject_marks([('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Chemistry', 90), ('Computer Science', 92), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Chemistry', 90), ('Computer Science', 92), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98), ('Physics', 98)]", "assert subject_marks([('Maths', 82), ('Social sciences', 82), ('Science', 90)]) == [('Maths', 82), ('Social sciences', 82), ('Science', 90)]", "assert subject_marks([('Computer Science', 65), ('Biology', 72), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('nEnglish', 82), ('English', 82), ('Social sciences', 86)]) == [('Computer Science', 65), ('Biology', 72), ('History', 75), ('Physics', 78), ('Science', 79), ('Geography', 80), ('nEnglish', 82), ('English', 82), ('Social sciences', 86)]", "assert subject_marks([('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('English', 92, 92), ('Physics', 93), ('Physics', 93), ('Maths', 96), ('Physics', 96)]) == [('Geography', 78), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('English', 92, 92), ('Physics', 93), ('Physics', 93), ('Maths', 96), ('Physics', 96)]", "assert subject_marks([('Geography', 78), ('Geography', 78, 'Geography'), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Geography', 78, 'Geography'), ('Biology', 81), ('Chemistry', 85), ('Science', 87), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Art', 70), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90, 90), ('Geography', 92), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Biology', 95)]) == [('Art', 70), ('Chemistry', 80), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90, 90), ('Geography', 92), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Computer Science', 94, 'Computoer Science', 'Computer Science'), ('Biology', 95)]", "assert subject_marks([('Economics', 89, 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95), ('History', 96)]) == [('Economics', 89, 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Computer Science', 94, 'Computer Science'), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Social sciences', 72), ('Computer Science', 82), ('English', 88), ('Maths', 97)]) == [('Social sciences', 72), ('Computer Science', 82), ('English', 88), ('Maths', 97)]", "assert subject_marks([('Maths', 82), ('Social sciences', 82), ('English', 88), ('English', 88), ('English', 88), ('Science', 90), ('Computer Science', 90)]) == [('Maths', 82), ('Social sciences', 82), ('English', 88), ('English', 88), ('English', 88), ('Science', 90), ('Computer Science', 90)]", "assert subject_marks([('Physics', 76), ('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Science', 93), ('Computer Science', 94), ('History', 96)]) == [('Physics', 76), ('English', 87), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Science', 93), ('Computer Science', 94), ('History', 96)]", "assert subject_marks([('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Biology', 85, 'Biology'), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('English', 95), ('Physics', 98)]", "assert subject_marks([('Geography', 78), ('Science', 87), ('History', 88), ('English', 92), ('Physics', 93), ('Maths', 96), ('Physics', 96)]) == [('Geography', 78), ('Science', 87), ('History', 88), ('English', 92), ('Physics', 93), ('Maths', 96), ('Physics', 96)]", "assert subject_marks([('Physics', 76), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Science', 93, 'Science'), ('Computer Science', 94), ('Physics', 95), ('Chemistry', 95), ('History', 96)]) == [('Physics', 76), ('Economics', 89), ('Physics', 90), ('Geography', 91), ('Biology', 92), ('Science', 93), ('Science', 93, 'Science'), ('Computer Science', 94), ('Physics', 95), ('Chemistry', 95), ('History', 96)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('Geography', 70, 70), ('History', 77), ('Maths', 88), ('Chemistry', 90), ('Computer Science', 92), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98)]", "assert subject_marks([('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82, 'Chemistry'), ('Chemistry', 82), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91)]) == [('English', 72), ('Physics', 76), ('History', 78), ('Geography', 80), ('Chemistry', 82, 'Chemistry'), ('Chemistry', 82), ('Science', 88), ('Computer Science', 91, 91), ('Computer Science', 91)]", "assert subject_marks([('Geography', 78), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]) == [('Geography', 78), ('Chemistry', 85), ('Science', 87), ('History', 88), ('Computer Science', 90), ('English', 92), ('Physics', 93), ('Maths', 96)]", "assert subject_marks([('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 84, 'Biology'), ('Maths', 88), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98), ('Physics', 98)]) == [('Geography', 70), ('Geography', 70), ('History', 77), ('Biology', 84, 'Biology'), ('Maths', 88), ('Computer Science', 92), ('English', 95, 'English'), ('Physics', 98), ('Physics', 98)]", "assert subject_marks([('Social sciences', 82), ('Social sciences', 82, 82), ('Computer Science', 82), ('English', 88), ('Maths', 97), ('Maths', 97)]) == [('Social sciences', 82), ('Social sciences', 82, 82), ('Computer Science', 82), ('English', 88), ('Maths', 97), ('Maths', 97)]", "assert subject_marks([('Art', 70), ('History', 78), ('Chemistry', 81), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94), ('BiolComputoer Scienceogy', 95), ('Biology', 95)]) == [('Art', 70), ('History', 78), ('Chemistry', 81), ('Music', 82), ('Maths', 85), ('English', 87), ('Physics', 90), ('Geography', 92), ('Computer Science', 94), ('BiolComputoer Scienceogy', 95), ('Biology', 95)]", "assert subject_marks([('Maths', 82), ('Social sciences', 82), ('Maths', 82), ('Science', 90)]) == [('Maths', 82), ('Social sciences', 82), ('Maths', 82), ('Science', 90)]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth nonagonal number.\nassert is_nonagonal(10) == 325\nYour code should pass the test:\nassert is_nonagonal(10) == 325", "test_list": [ "assert is_nonagonal(10) == 325", "assert is_nonagonal(15) == 750", "assert is_nonagonal(18) == 1089", "assert is_nonagonal(1000000) == 3499997500000", "assert is_nonagonal(0) == 0", "assert is_nonagonal(999999) == 3499990500006", "assert is_nonagonal(1000001) == 3500004500001", "assert is_nonagonal(1) == 1", "assert is_nonagonal(999998) == 3499983500019", "assert is_nonagonal(999997) == 3499976500039", "assert is_nonagonal(2) == 9", "assert is_nonagonal(1000002) == 3500011500009", "assert is_nonagonal(False) == 0", "assert is_nonagonal(True) == 1", "assert is_nonagonal(80) == 22200", "assert is_nonagonal(3) == 24", "assert is_nonagonal(81) == 22761", "assert is_nonagonal(999996) == 3499969500066", "assert is_nonagonal(1000003) == 3500018500024", "assert is_nonagonal(1000004) == 3500025500046", "assert is_nonagonal(79) == 21646", "assert is_nonagonal(82) == 23329", "assert is_nonagonal(1000005) == 3500032500075", "assert is_nonagonal(78) == 21099", "assert is_nonagonal(999995) == 3499962500100", "assert is_nonagonal(68) == 16014", "assert is_nonagonal(1000006) == 3500039500111", "assert is_nonagonal(83) == 23904", "assert is_nonagonal(84) == 24486", "assert is_nonagonal(67) == 15544", "assert is_nonagonal(77) == 20559", "assert is_nonagonal(999994) == 3499955500141", "assert is_nonagonal(4) == 46", "assert is_nonagonal(999993) == 3499948500189", "assert is_nonagonal(1000007) == 3500046500154", "assert is_nonagonal(999992) == 3499941500244", "assert is_nonagonal(61) == 12871", "assert is_nonagonal(1000008) == 3500053500204", "assert is_nonagonal(99) == 34056", "assert is_nonagonal(69) == 16491", "assert is_nonagonal(98) == 33369", "assert is_nonagonal(60) == 12450", "assert is_nonagonal(999991) == 3499934500306", "assert is_nonagonal(85) == 25075", "assert is_nonagonal(66) == 15081", "assert is_nonagonal(100) == 34750", "assert is_nonagonal(1000009) == 3500060500261", "assert is_nonagonal(86) == 25671", "assert is_nonagonal(53) == 9699", "assert is_nonagonal(87) == 26274", "assert is_nonagonal(88) == 26884", "assert is_nonagonal(97) == 32689", "assert is_nonagonal(54) == 10071", "assert is_nonagonal(89) == 27501", "assert is_nonagonal(23) == 1794", "assert is_nonagonal(76) == 20026", "assert is_nonagonal(90) == 28125", "assert is_nonagonal(64) == 14176", "assert is_nonagonal(5) == 75", "assert is_nonagonal(62) == 13299", "assert is_nonagonal(999990) == 3499927500375", "assert is_nonagonal(22) == 1639", "assert is_nonagonal(51) == 8976", "assert is_nonagonal(999989) == 3499920500451", "assert is_nonagonal(65) == 14625", "assert is_nonagonal(12) == 474", "assert is_nonagonal(70) == 16975", "assert is_nonagonal(71) == 17466", "assert is_nonagonal(52) == 9334", "assert is_nonagonal(63) == 13734", "assert is_nonagonal(91) == 28756", "assert is_nonagonal(50) == 8625", "assert is_nonagonal(11) == 396", "assert is_nonagonal(55) == 10450", "assert is_nonagonal(74) == 18981", "assert is_nonagonal(56) == 10836", "assert is_nonagonal(101) == 35451", "assert is_nonagonal(57) == 11229", "assert is_nonagonal(20) == 1350", "assert is_nonagonal(27) == 2484", "assert is_nonagonal(73) == 18469", "assert is_nonagonal(26) == 2301", "assert is_nonagonal(28) == 2674", "assert is_nonagonal(25) == 2125", "assert is_nonagonal(21) == 1491", "assert is_nonagonal(13) == 559", "assert is_nonagonal(10) == 325", "assert is_nonagonal(29) == 2871", "assert is_nonagonal(58) == 11629", "assert is_nonagonal(30) == 3075", "assert is_nonagonal(1000010) == 3500067500325", "assert is_nonagonal(14) == 651", "assert is_nonagonal(19) == 1216", "assert is_nonagonal(9) == 261", "assert is_nonagonal(49) == 8281", "assert is_nonagonal(31) == 3286", "assert is_nonagonal(48) == 7944", "assert is_nonagonal(18) == 1089", "assert is_nonagonal(1000011) == 3500074500396", "assert is_nonagonal(6) == 111", "assert is_nonagonal(24) == 1956", "assert is_nonagonal(92) == 29394", "assert is_nonagonal(59) == 12036", "assert is_nonagonal(75) == 19500", "assert is_nonagonal(72) == 17964" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that checks if a strings contains 'z', except at the start and end of the word.\nassert text_match_wordz_middle(\"pythonzabc.\")==True\nYour code should pass the test:\nassert text_match_wordz_middle(\"pythonzabc.\")==True", "test_list": [ "assert text_match_wordz_middle(\"pythonzabc.\")==True", "assert text_match_wordz_middle(\"zxyabc.\")==False", "assert text_match_wordz_middle(\" lang .\")==False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to reverse an array upto a given position.\nassert reverse_Array_Upto_K([1, 2, 3, 4, 5, 6],4) == [4, 3, 2, 1, 5, 6]\nYour code should pass the test:\nassert reverse_Array_Upto_K([1, 2, 3, 4, 5, 6],4) == [4, 3, 2, 1, 5, 6]", "test_list": [ "assert reverse_Array_Upto_K([1, 2, 3, 4, 5, 6],4) == [4, 3, 2, 1, 5, 6]", "assert reverse_Array_Upto_K([4, 5, 6, 7], 2) == [5, 4, 6, 7]", "assert reverse_Array_Upto_K([9, 8, 7, 6, 5],3) == [7, 8, 9, 6, 5]", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3], 4) == [1, 2, 9, 6, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date'], 3) == ['cherry', 'banana', 'apple', 'date']", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3], 5) == [5, 1, 2, 9, 6, 3]", "assert reverse_Array_Upto_K(['apple', 'cherry', 'date'], 3) == ['date', 'cherry', 'apple']", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date'], 4) == ['date', 'cherry', 'banana', 'apple']", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'cherry', 'date'], 4) == ['cherry', 'cherry', 'banana', 'apple', 'date']", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3, 2], 4) == [1, 2, 9, 6, 5, 3, 2]", "assert reverse_Array_Upto_K([9, 2, 1, 5, 3], 4) == [5, 1, 2, 9, 3]", "assert reverse_Array_Upto_K([6, 9, 2, 5, 3], 5) == [3, 5, 2, 9, 6]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3], 4) == [1, 9, 2, 9, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date'], 1) == ['apple', 'banana', 'cherry', 'date']", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3], 1) == [9, 2, 9, 1, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'cherry', 'deate'], 3) == ['deate', 'cherry', 'apple']", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3], 3) == [2, 9, 6, 1, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'cherrry', 'banana', 'cherry', 'date'], 4) == ['cherry', 'banana', 'cherrry', 'apple', 'date']", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3], 2) == [9, 6, 2, 1, 5, 3]", "assert reverse_Array_Upto_K([6, 9, 2, 5, 1, 5, 3, 2], 4) == [5, 2, 9, 6, 1, 5, 3, 2]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3, 9], 1) == [9, 2, 9, 1, 5, 3, 9]", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3], 1) == [6, 9, 2, 1, 5, 3]", "assert reverse_Array_Upto_K([9, 2, 1, 5, 3], 1) == [9, 2, 1, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'cherry', 'deate'], 2) == ['cherry', 'apple', 'deate']", "assert reverse_Array_Upto_K(['apple', 'cherry', 'date'], 1) == ['apple', 'cherry', 'date']", "assert reverse_Array_Upto_K(['applpe', 'apple', 'cherrry', 'banana', 'cherry', 'date', 'applpe'], 4) == ['banana', 'cherrry', 'apple', 'applpe', 'cherry', 'date', 'applpe']", "assert reverse_Array_Upto_K(['apple', 'cherry', 'cherry'], 3) == ['cherry', 'cherry', 'apple']", "assert reverse_Array_Upto_K(['apple', 'cherry', 'cherry', 'cherry'], 3) == ['cherry', 'cherry', 'apple', 'cherry']", "assert reverse_Array_Upto_K(['apple', 'cherrry', 'banana', 'date'], 4) == ['date', 'banana', 'cherrry', 'apple']", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3, 9, 5], 1) == [9, 2, 9, 1, 5, 3, 9, 5]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 1, 3, 9, 5], 1) == [9, 2, 9, 1, 1, 3, 9, 5]", "assert reverse_Array_Upto_K(['apple', 'cherry', 'cherry', 'date'], 1) == ['apple', 'cherry', 'cherry', 'date']", "assert reverse_Array_Upto_K(['apple', 'cherry', 'cherry', 'cherry'], 4) == ['cherry', 'cherry', 'cherry', 'apple']", "assert reverse_Array_Upto_K([9, 2, 10, 3, 9, 1, 5, 3, 9], 1) == [9, 2, 10, 3, 9, 1, 5, 3, 9]", "assert reverse_Array_Upto_K(['cherry', 'cherry', 'cherry'], 3) == ['cherry', 'cherry', 'cherry']", "assert reverse_Array_Upto_K([6, 2, 1, 5, 3], 4) == [5, 1, 2, 6, 3]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherrry', 'cherry', 'date'], 4) == ['cherry', 'cherrry', 'banana', 'apple', 'date']", "assert reverse_Array_Upto_K([6, 9, 2, 5, 3], 2) == [9, 6, 2, 5, 3]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 1, 3, 9], 1) == [9, 2, 9, 1, 1, 3, 9]", "assert reverse_Array_Upto_K([9, 2, 1, 5, 3, 2], 1) == [9, 2, 1, 5, 3, 2]", "assert reverse_Array_Upto_K([6, 9, 2, 5, 4, 1, 5, 3, 2], 4) == [5, 2, 9, 6, 4, 1, 5, 3, 2]", "assert reverse_Array_Upto_K([6, 2, 1, 6, 5, 3], 4) == [6, 1, 2, 6, 5, 3]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3, 9, 5], 3) == [9, 2, 9, 1, 5, 3, 9, 5]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 1, 3, 9], 2) == [2, 9, 9, 1, 1, 3, 9]", "assert reverse_Array_Upto_K([9, 2, 10, 3, 9, 1, 5, 3, 9], 2) == [2, 9, 10, 3, 9, 1, 5, 3, 9]", "assert reverse_Array_Upto_K([6, 9, 2, 1, 3, 5, 3], 5) == [3, 1, 2, 9, 6, 5, 3]", "assert reverse_Array_Upto_K([4, 6, 9, 2, 1, 3, 5, 3], 5) == [1, 2, 9, 6, 4, 3, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date'], 2) == ['banana', 'apple', 'cherry', 'date']", "assert reverse_Array_Upto_K([5, 2, 1, 6, 5, 3], 5) == [5, 6, 1, 2, 5, 3]", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3, 2], 3) == [2, 9, 6, 1, 5, 3, 2]", "assert reverse_Array_Upto_K([9, 2, 10, 3, 9, 1, 5, 4, 9], 2) == [2, 9, 10, 3, 9, 1, 5, 4, 9]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date', 'date'], 3) == ['cherry', 'banana', 'apple', 'date', 'date']", "assert reverse_Array_Upto_K([9, 2, 9, 1, 1, 4, 9], 1) == [9, 2, 9, 1, 1, 4, 9]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3], 3) == [9, 2, 9, 1, 5, 3]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date', 'date'], 4) == ['date', 'cherry', 'banana', 'apple', 'date']", "assert reverse_Array_Upto_K([9, 2, 2, 9, 1, 5, 3], 1) == [9, 2, 2, 9, 1, 5, 3]", "assert reverse_Array_Upto_K([5, 2, 1, 5, 3], 5) == [3, 5, 1, 2, 5]", "assert reverse_Array_Upto_K([9, 2, 1, 5, 3], 3) == [1, 2, 9, 5, 3]", "assert reverse_Array_Upto_K([6, 2, 1, 5, 3, 2], 4) == [5, 1, 2, 6, 3, 2]", "assert reverse_Array_Upto_K([9, 2, 9, 1, 1, 1, 4, 9], 1) == [9, 2, 9, 1, 1, 1, 4, 9]", "assert reverse_Array_Upto_K([9, 3, 2, 9, 1, 1, 3, 9], 2) == [3, 9, 2, 9, 1, 1, 3, 9]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherrry', 'cherry', 'date'], 1) == ['apple', 'banana', 'cherrry', 'cherry', 'date']", "assert reverse_Array_Upto_K(['cdatey', 'apple', 'cherry', 'deate'], 3) == ['cherry', 'apple', 'cdatey', 'deate']", "assert reverse_Array_Upto_K(['apple', 'cherrry', 'banana', 'cherry', 'date'], 1) == ['apple', 'cherrry', 'banana', 'cherry', 'date']", "assert reverse_Array_Upto_K([9, 2, 10, 3, 9, 1, 5, 4, 9], 3) == [10, 2, 9, 3, 9, 1, 5, 4, 9]", "assert reverse_Array_Upto_K([9, 2, 2, 9, 3, 1, 5, 3], 1) == [9, 2, 2, 9, 3, 1, 5, 3]", "assert reverse_Array_Upto_K([6, 2, 1, 5, 9, 3], 5) == [9, 5, 1, 2, 6, 3]", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3, 2], 6) == [3, 5, 1, 2, 9, 6, 2]", "assert reverse_Array_Upto_K(['apple', 'cherrry', 'banana', 'ccdateyherry', 'date'], 4) == ['ccdateyherry', 'banana', 'cherrry', 'apple', 'date']", "assert reverse_Array_Upto_K(['applpe', 'apple', 'cherrry', 'banana', 'cherry', 'date', 'applpe', 'applpe'], 4) == ['banana', 'cherrry', 'apple', 'applpe', 'cherry', 'date', 'applpe', 'applpe']", "assert reverse_Array_Upto_K(['cdatey', 'banana', 'cherry', 'date'], 4) == ['date', 'cherry', 'banana', 'cdatey']", "assert reverse_Array_Upto_K([6, 2, 5, 3, 2], 4) == [3, 5, 2, 6, 2]", "assert reverse_Array_Upto_K([6, 9, 2, 5, 3], 1) == [6, 9, 2, 5, 3]", "assert reverse_Array_Upto_K([6, 9, 7, 2, 1, 5, 3, 7], 4) == [2, 7, 9, 6, 1, 5, 3, 7]", "assert reverse_Array_Upto_K(['apple', 'cherry', 'cherry', 'aepple', 'date'], 1) == ['apple', 'cherry', 'cherry', 'aepple', 'date']", "assert reverse_Array_Upto_K([6, 5, 3, 2], 4) == [2, 3, 5, 6]", "assert reverse_Array_Upto_K([9, 4, 2, 6, 1, 5, 3, 2], 3) == [2, 4, 9, 6, 1, 5, 3, 2]", "assert reverse_Array_Upto_K([9, 2, 1, 5, 3, 9], 4) == [5, 1, 2, 9, 3, 9]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date', 'banana'], 1) == ['apple', 'banana', 'cherry', 'date', 'banana']", "assert reverse_Array_Upto_K(['cdatey', 'apple', 'cherry', 'deate'], 4) == ['deate', 'cherry', 'apple', 'cdatey']", "assert reverse_Array_Upto_K([1, 2, 9, 1, 1, 4, 9], 1) == [1, 2, 9, 1, 1, 4, 9]", "assert reverse_Array_Upto_K([6, 9, 2, 1, 5, 3], 6) == [3, 5, 1, 2, 9, 6]", "assert reverse_Array_Upto_K([1, 2, 5, 9, 1, 1, 4, 9], 1) == [1, 2, 5, 9, 1, 1, 4, 9]", "assert reverse_Array_Upto_K(['aepple', 'apple', 'banana', 'cherrry', 'cherry', 'date'], 1) == ['aepple', 'apple', 'banana', 'cherrry', 'cherry', 'date']", "assert reverse_Array_Upto_K([9, 2, 9, 1, 5, 3], 5) == [5, 1, 9, 2, 9, 3]", "assert reverse_Array_Upto_K([10, 2, 9, 1, 5, 3, 9], 1) == [10, 2, 9, 1, 5, 3, 9]", "assert reverse_Array_Upto_K([9, 2, 5, 3], 3) == [5, 2, 9, 3]", "assert reverse_Array_Upto_K([1, 2, 5, 9, 1, 1, 4, 9, 9, 1], 1) == [1, 2, 5, 9, 1, 1, 4, 9, 9, 1]", "assert reverse_Array_Upto_K([3, 6, 9, 2, 1, 5, 3], 4) == [2, 9, 6, 3, 1, 5, 3]", "assert reverse_Array_Upto_K([2, 9, 1, 5, 3, 9, 5], 3) == [1, 9, 2, 5, 3, 9, 5]", "assert reverse_Array_Upto_K([3, 9, 2, 10, 3, 9, 1, 5, 3, 9], 2) == [9, 3, 2, 10, 3, 9, 1, 5, 3, 9]", "assert reverse_Array_Upto_K(['appple', 'cdatey', 'apple', 'cherry', 'deate'], 3) == ['apple', 'cdatey', 'appple', 'cherry', 'deate']", "assert reverse_Array_Upto_K([2, 1, 9, 1, 1, 4, 9], 1) == [2, 1, 9, 1, 1, 4, 9]", "assert reverse_Array_Upto_K([2, 9, 1, 5, 3, 9, 2], 3) == [1, 9, 2, 5, 3, 9, 2]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'ddate'], 1) == ['apple', 'banana', 'cherry', 'ddate']", "assert reverse_Array_Upto_K([9, 2, 10, 3, 9, 1, 5, 4, 9], 4) == [3, 10, 2, 9, 9, 1, 5, 4, 9]", "assert reverse_Array_Upto_K([2, 1, 9, 1, 1, 4, 9], 5) == [1, 1, 9, 1, 2, 4, 9]", "assert reverse_Array_Upto_K([4, 6, 9, 2, 1, 3, 5, 3, 2], 5) == [1, 2, 9, 6, 4, 3, 5, 3, 2]", "assert reverse_Array_Upto_K(['cherry', 'cherry', 'y', 'cherrry'], 3) == ['y', 'cherry', 'cherry', 'cherrry']", "assert reverse_Array_Upto_K([2, 1, 9, 10, 1, 1, 4, 9], 1) == [2, 1, 9, 10, 1, 1, 4, 9]", "assert reverse_Array_Upto_K([6, 9, 1, 5, 3, 2], 3) == [1, 9, 6, 5, 3, 2]", "assert reverse_Array_Upto_K(['apple', 'banana', 'cherry', 'date', 'date'], 1) == ['apple', 'banana', 'cherry', 'date', 'date']", "assert reverse_Array_Upto_K([6, 1, 6, 5, 3], 4) == [5, 6, 1, 6, 3]", "assert reverse_Array_Upto_K([6, 2, 1, 5, 9, 3, 3], 5) == [9, 5, 1, 2, 6, 3, 3]", "assert reverse_Array_Upto_K([9, 2, 1, 5, 3], 2) == [2, 9, 1, 5, 3]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to flatten a list and sum all of its elements.\nassert recursive_list_sum(([1, 2, [3,4],[5,6]]))==21\nYour code should pass the test:\nassert recursive_list_sum(([1, 2, [3,4],[5,6]]))==21", "test_list": [ "assert recursive_list_sum(([1, 2, [3,4],[5,6]]))==21", "assert recursive_list_sum(([7, 10, [15,14],[19,41]]))==106", "assert recursive_list_sum(([10, 20, [30,40],[50,60]]))==210", "assert recursive_list_sum([]) == 0", "assert recursive_list_sum([17, 17]) == 34", "assert recursive_list_sum([1]) == 1", "assert recursive_list_sum([12, 20, 16, 97, 4, 28, -13]) == 164", "assert recursive_list_sum([12, 20, 16, 97, 4, 28, -13, -13]) == 151", "assert recursive_list_sum([1, 1]) == 2", "assert recursive_list_sum([12, 20, 16, 97, 4, 28, -13, 12]) == 176", "assert recursive_list_sum([12, 20, 16, 97, 3, 28, -13, -13]) == 150", "assert recursive_list_sum([22]) == 22", "assert recursive_list_sum([12, 20, 16, 97, 4, 28, -13, 12, 12]) == 188", "assert recursive_list_sum([12, 20, 18, 16, 97, 4, 28, -13, 12]) == 194", "assert recursive_list_sum([1, 11, 1]) == 13" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of positive numbers in a list.\nassert pos_count([1,-2,3,-4]) == 2\nYour code should pass the test:\nassert pos_count([1,-2,3,-4]) == 2", "test_list": [ "assert pos_count([1,-2,3,-4]) == 2", "assert pos_count([3,4,5,-1]) == 3", "assert pos_count([1,2,3,4]) == 4", "assert pos_count([0, -1, 2, -3, 4, -5, 6, -7, 8, -9, 10]) == 5", "assert pos_count([]) == 0", "assert pos_count([1]) == 1", "assert pos_count([-1, -2, -3, 0, 1, 2, 3, 3, 2, 1, 0, -1]) == 6", "assert pos_count([-5, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5]) == 5", "assert pos_count([1, 2, 3, 4, 5]) == 5", "assert pos_count([10, 20, 30, 40]) == 4", "assert pos_count([0, 1]) == 1", "assert pos_count([-5, -3, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5]) == 5", "assert pos_count([-1, -2, -3, 0, 1, 2, 1, 3, 2, 1, 0, -1]) == 6", "assert pos_count([10, 20, 10, 30, 40]) == 5", "assert pos_count([-5, -4, -3, -2, -1, -1, 1, 2, 4, 5]) == 4", "assert pos_count([-2, -3, 0, 1, 2, 1, 3, 2, 1, 0, -1]) == 6", "assert pos_count([0, -1, 2, -3, 4, -5, 6, 8, -9, 10]) == 5", "assert pos_count([10, 20, -9, 40]) == 3", "assert pos_count([-5, -4, 3, -2, -1, 0, 1, 2, 3, 4, 5]) == 6", "assert pos_count([-1, -2, -3, 0, 1, 2, 1, 3, -1, 2, 1, 0, -1]) == 6", "assert pos_count([0, 1, 1]) == 2", "assert pos_count([0, -1, 2, -3, 4, -5, 6, 6, -7, 8, -9, 10]) == 6", "assert pos_count([2, 3, 4, 5]) == 4", "assert pos_count([-5, -3, -4, -3, -2, -1, 0, 1, 2, 3, 4, 4, 5]) == 6", "assert pos_count([-5, -3, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5, 0]) == 5", "assert pos_count([-2, -3, 0, 1, 2, 1, 3, 2, 1, -4, 0, -1]) == 6", "assert pos_count([10, -9, 40]) == 2", "assert pos_count([-5, -4, -3, -2, -1, 1, 2, 4, 5, 5]) == 5", "assert pos_count([10, 19, 30]) == 3", "assert pos_count([-1, -2, -3, 0, 1, 2, 1, 3, 1, 0, -1]) == 5", "assert pos_count([10, 30, 40, 10]) == 4", "assert pos_count([0, -1, 2, -3, 4, -5, 6, 8, -9, 10, 4]) == 6", "assert pos_count([0, -1, 2, -2, -3, 4, -5, 6, 8, -9, 10, 4]) == 6", "assert pos_count([0, -1, 2, 4, -5, 6, 8, -9, 10, 4]) == 6", "assert pos_count([10, -2, -9, 40]) == 2", "assert pos_count([0, -1, -1, 2, -3, 4, -5, 6, 8, -9, 10, 4, 4]) == 7", "assert pos_count([2, 3, 4, 2, 4]) == 5", "assert pos_count([3, 2, 3, 4, 2, 4, 2]) == 7", "assert pos_count([0, -1, 2, -3, 4, -5, 6, -7, 8, 10]) == 5", "assert pos_count([0, -1, 2, -3, 4, -5, 6, 8, -10, -9, 10, 4]) == 6", "assert pos_count([3, 2, 3, 4, 2, 5, 2]) == 7", "assert pos_count([-4, -2, -1, 1, 2, 4, 5, 5]) == 5", "assert pos_count([-1, -2, -3, 0, 1, 2, 10, 3, 3, 2, 1, 0, -1, 2]) == 8", "assert pos_count([-5, 3, -4, 3, -2, -1, 0, 1, 2, 3, -9, 4, 5]) == 7", "assert pos_count([-2, -2, 0, 1, 2, 1, 3, 1, -4, 0, -1, -1]) == 5", "assert pos_count([10, 20, -9]) == 2", "assert pos_count([0, -1, 2, -3, 4, -5, 6, 8, 2, 10]) == 6", "assert pos_count([30, 3, 4, 5, 3]) == 5", "assert pos_count([0, -1, -1, 2, -3, 4, -5, 6, 8, -9, 10, 4, 4, 6]) == 8", "assert pos_count([-9, -4, -2, -1, -1, 1, 2, 4, 5]) == 4", "assert pos_count([-1, -2, -3, 0, 1, 2, 1, 3, 2, 1, 0, -1, 2]) == 7", "assert pos_count([-5, 3, -4, 3, -2, -1, 0, 1, 3, -9, 4, 5]) == 6", "assert pos_count([0, -1, -1, 1, -3, 4, -5, 6, 8, -9, 10, 4, 4]) == 7", "assert pos_count([-97.00921686941055, -62.31826514441987, -47.8901822007769, 27.86472361019527, 59.008009822655055]) == 2", "assert pos_count([9, 10, 10, 30]) == 4", "assert pos_count([10, 21, 20, -9]) == 3", "assert pos_count([10, 20, -9, 39]) == 3", "assert pos_count([0, -1, 2, -3, 4, -5, 6, -7, 8, 10, -7]) == 5", "assert pos_count([-1, -2, -3, 0, 1, 2, 10, 3, 3, 2, 1, 0, -1, 2, 2]) == 9", "assert pos_count([10, -9, 40, 40]) == 3", "assert pos_count([0, -1, 2, 4, -5, 6, -7, 8, 10]) == 5", "assert pos_count([-5, 3, -4, 3, -2, -1, -3, 0, 1, 2, 3, -9, 4, 5, 0]) == 7", "assert pos_count([3, 3, 2, 4, 2, 4, 2]) == 7", "assert pos_count([-5, -4, -3, -2, -1, -1, 1, 2, 3, 4, 5]) == 5", "assert pos_count([0, -1, 2, 4, 1, -5, 6, -7, 8, 10]) == 6", "assert pos_count([-5, -4, 3, -2, -1, 0, 1, 2, 3, 4, 5, 5]) == 7", "assert pos_count([-1, -2, -3, 3, 0, 1, 2, 3, 3, 2, 1, 0, -1, -3]) == 7", "assert pos_count([0, -1, 2, 4, -5, 6, 8, -9, 10, 4, -1]) == 6", "assert pos_count([-5, -3, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5, -4]) == 5", "assert pos_count([0, -1, -1, 2, 4, -3, 4, -5, 8, -9, 10, 4, 4]) == 7", "assert pos_count([0, -1, 2, 4, -5, 6, -7, 8, 10, 2]) == 6", "assert pos_count([9, 10, 11, 30]) == 4", "assert pos_count([9, 30, 5, 40, 10]) == 5", "assert pos_count([0, -1, -1, 2, -3, 4, -5, 6, 8, -9, 10, 4, 4, 2]) == 8", "assert pos_count([0, -1, 2, 4, 6, 8, -9, 10, 4]) == 6", "assert pos_count([-1, -2, -3, 0, 1, 2, 1, 3, -2, 2, 1, 0, -1, 3]) == 7", "assert pos_count([-2, -5, -3, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5, -4]) == 5", "assert pos_count([-1, -2, -3, 0, 1, 10, 3, 3, 2, 1, 3, 0, -1, 2]) == 8", "assert pos_count([-5, -4, -3, -2, -1, -1, 1, 2, 39, 4, 5, 5]) == 6", "assert pos_count([-5, -3, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5, -4, -1]) == 5", "assert pos_count([-1, -2, -3, 0, 1, 3, 3, 2, 1, 3, 0, -1, 2]) == 7", "assert pos_count([10, 20, 10, 9, 30, 5]) == 6", "assert pos_count([0, -1, -2, -1, 2, -3, 4, -5, 6, 8, -9, 10, 4, 4, 2]) == 8", "assert pos_count([-2, -3, 0, 1, 2, 1, 3, 1, -4, -1, -1]) == 5", "assert pos_count([10, 20, 11, 39]) == 4", "assert pos_count([0, -1, 2, 4, 1, -5, 6, -7, 8, 10, 10]) == 7", "assert pos_count([10, 19, -9, 40, 40, 40]) == 5", "assert pos_count([-5, -3, -4, -3, -2, -1, 0, -2, 1, 2, 3, 4, 5, -4]) == 5", "assert pos_count([10, 20, -9, 39, 20]) == 4", "assert pos_count([0, -1, 20, -3, 4, -5, 6, 6, -7, 8, -9, 10]) == 6", "assert pos_count([-5, -3, -4, -3, -2, -1, 1, 2, 3, 4, 5]) == 5", "assert pos_count([0, -1, -1, 2, -3, 4, -5, 6, 8, -9, 10, 4, 4, -9]) == 7", "assert pos_count([-2, -3, 0, 1, 2, 1, 3, 2, 1, -4, 0, -1, 0]) == 6", "assert pos_count([10, -9, 40, 40, 40]) == 4", "assert pos_count([10, 0, -2, -9, 40, -2]) == 2", "assert pos_count([-5, -4, -3, -2, -1, -1, 3, 1, 2, 4, 5, 1]) == 6", "assert pos_count([-1, -3, -3, 0, 1, 2, 3, 11, 3, 2, 1, 0, -1, 3]) == 8", "assert pos_count([-9, -4, -2, -1, 1, 2, 4, 5]) == 4", "assert pos_count([0, -1, 2, 3, -3, 4, -5, 6, 8, -10, -9, 10, 4]) == 7", "assert pos_count([0, -1, 2, -3, -1, 4, -5, 6, 8, -10, -9, 10, 4]) == 6", "assert pos_count([10, 21, 20, -4, -9]) == 3", "assert pos_count([10, 20, -9, 40, -9]) == 3", "assert pos_count([-5, -3, -3, -3, -2, -1, 0, 1, 3, 4, 5, 0]) == 4", "assert pos_count([-11.074239280905289, 59.008009822655055, -62.31826514441987, 27.86472361019527, 59.008009822655055, -97.00921686941055]) == 3", "assert pos_count([10, 20, 19, -9, 40, -9]) == 4", "assert pos_count([-5, -3, -3, -2, -1, 0, 1, 2, 3, 4, 5, -4, -1]) == 5", "assert pos_count([0, -1, 2, -2, -3, 4, -5, 6, 8, -9, 10, 4, -3]) == 6", "assert pos_count([-9, -4, -2, -1, 1, 5, 2, 2, 4, 5, -1]) == 6", "assert pos_count([0, -1, 2, 4, -5, 6, -7, 8, 10, 2, 6]) == 7", "assert pos_count([10, 20, 10, 30, 5]) == 5" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the number of ways to partition a set of Bell numbers.\nassert bell_number(2)==2\nYour code should pass the test:\nassert bell_number(2)==2", "test_list": [ "assert bell_number(2)==2", "assert bell_number(10)==115975", "assert bell_number(56)==6775685320645824322581483068371419745979053216268760300", "assert bell_number(0) == 1", "assert bell_number(100) == 47585391276764833658790768841387207826363669686825611466616334637559114497892442622672724044217756306953557882560751", "assert bell_number(99) == 1618706027446068305855680628161135741330684513088812399898409470089128730792407044351108134019449028191480663320741", "assert bell_number(True) == 1", "assert bell_number(False) == 1", "assert bell_number(98) == 55494677927746340698788238667452126040563242441827634980157203368430358083090722409217101274455481270374885095618", "assert bell_number(1) == 1", "assert bell_number(2) == 2", "assert bell_number(3) == 5", "assert bell_number(97) == 1917593350464112616752757157565032460248311804906650215954187246738986739924580790084847891233423398173059771233", "assert bell_number(96) == 66790853422797408533421892496106177820862555650400879850993569405575404871887998514898872210341414631481213729", "assert bell_number(11) == 678570", "assert bell_number(12) == 4213597", "assert bell_number(92) == 106611797892739782364113678801520610524431974731789913132104301942153476208366519192812848588253648356364", "assert bell_number(95) == 2345129936856330144543337656630809098301482271000632150222900693128839447045930834163493232282141300734566042", "assert bell_number(94) == 83012043550967281787120476720274991081436431402381752242504514629481800064636673934392827445150961387102019", "assert bell_number(14) == 190899322", "assert bell_number(13) == 27644437", "assert bell_number(10) == 115975", "assert bell_number(55) == 359334085968622831041960188598043661065388726959079837", "assert bell_number(17) == 82864869804", "assert bell_number(15) == 1382958545", "assert bell_number(93) == 2962614388531218251190227244935749736828675583113926711461226180042633884248639975904464409686755210349399", "assert bell_number(16) == 10480142147", "assert bell_number(9) == 21147", "assert bell_number(91) == 3868731362280702160655673912482765098905555785458740412264329844745080937342264610781770223818259614025", "assert bell_number(54) == 19317287589145618265728950069285503257349832850302011", "assert bell_number(25) == 4638590332229999353", "assert bell_number(18) == 682076806159", "assert bell_number(4) == 15", "assert bell_number(5) == 52", "assert bell_number(6) == 203", "assert bell_number(8) == 4140", "assert bell_number(90) == 141580318123392930464192819123202606981284563291786545804370223525364095085412667328027643050802912567", "assert bell_number(53) == 1052928518014714166107781298021583534928402714242132", "assert bell_number(7) == 877", "assert bell_number(19) == 5832742205057", "assert bell_number(64) == 172134143357358850934369963665272571125557575184049758045339873395", "assert bell_number(20) == 51724158235372", "assert bell_number(21) == 474869816156751", "assert bell_number(56) == 6775685320645824322581483068371419745979053216268760300", "assert bell_number(63) == 8250771700405624889912456724304738028450190134337110943817172961", "assert bell_number(52) == 58205338024195872785464627063218599149503972126463", "assert bell_number(24) == 445958869294805289", "assert bell_number(57) == 129482661947506964462616580633806000917491602609372517195", "assert bell_number(22) == 4506715738447323", "assert bell_number(62) == 400237304821454786230522819234667544935526963060240082269259738", "assert bell_number(89) == 5225728505358477773256348249698509144957920836936865715700797250722975706153317517427783066539250012", "assert bell_number(51) == 3263983870004111524856951830191582524419255819477", "assert bell_number(50) == 185724268771078270438257767181908917499221852770", "assert bell_number(88) == 194553897403965647871786295024290690576513032341195649821051001205884166153194143340809062985041067", "assert bell_number(58) == 2507136358984296114560786627437574942253015623445622326263", "assert bell_number(49) == 10726137154573358400342215518590002633917247281", "assert bell_number(45) == 139258505266263669602347053993654079693415", "assert bell_number(65) == 3633778785457899322415257682767737441410036994560435982365219287372", "assert bell_number(23) == 44152005855084346", "assert bell_number(87) == 7306720755827530589639480511232846731775215754200303890190355852772713202556415109429779445622537", "assert bell_number(46) == 2265418219334494002928484444705392276158355", "assert bell_number(59) == 49176743336309621659000944152624896853591018248919168867818", "assert bell_number(26) == 49631246523618756274", "assert bell_number(44) == 8701963427387055089023600531855797148876", "assert bell_number(61) == 19652364471547941482114228389322789963345673460673370562378245", "assert bell_number(48) == 628919796303118415420210454071849537746015761", "assert bell_number(47) == 37450059502461511196505342096431510120174682", "assert bell_number(60) == 976939307467007552986994066961675455550246347757474482558637", "assert bell_number(30) == 846749014511809332450147", "assert bell_number(27) == 545717047936059989389", "assert bell_number(86) == 276844443054160876160126038812506987515878490163433019207947986484590126191194780416973565092618", "assert bell_number(28) == 6160539404599934652455", "assert bell_number(31) == 10293358946226376485095653", "assert bell_number(29) == 71339801938860275191172", "assert bell_number(66) == 77605907238843669482155930857960017792778059887519278038000759795263", "assert bell_number(67) == 1676501284301523453367212880854005182365748317589888660477021013719409", "assert bell_number(85) == 10583321873228234424552137744344434100391955309436425797852108559510434249855735357360593574749", "assert bell_number(70) == 18075003898340511237556784424498369141305841234468097908227993035088029195", "assert bell_number(71) == 408130093410464274259945600962134706689859323636922532443365594726056131962", "assert bell_number(43) == 552950118797165484321714693280737767385", "assert bell_number(69) == 809212768387947836336846277707066239391942323998649273771736744420003007", "assert bell_number(82) == 624387454429479848302014120414448006907125370284776661891529899343806658375826740689137423", "assert bell_number(83) == 15892292813296951899433594303207669496517041849871581501737510069308817348770226226653966474", "assert bell_number(72) == 9314528182092653288251451483527341806516792394674496725578935706029134658745", "assert bell_number(68) == 36628224206696135478834640618028539032699174847931909480671725803995436", "assert bell_number(81) == 24761288718465863816962119279306788401954401906692653427329808967315171931611751006838915", "assert bell_number(73) == 214834623568478894452765605511928333367140719361291003997161390043701285425833", "assert bell_number(32) == 128064670049908713818925644", "assert bell_number(33) == 1629595892846007606764728147", "assert bell_number(42) == 35742549198872617291353508656626642567", "assert bell_number(74) == 5006908024247925379707076470957722220463116781409659160159536981161298714301202", "assert bell_number(84) == 408248141291805738980141314733701533991578374164094348787738475995651988600158415299211778933", "assert bell_number(41) == 2351152507740617628200694077243788988", "assert bell_number(80) == 991267988808424794443839434655920239360814764000951599022939879419136287216681744888844", "assert bell_number(79) == 40064166844084356404509204005730815621427040237270563024820379702392240194729249115029", "assert bell_number(75) == 117896026920858300966730642538212084059025603061199813571998059942386637656568797", "assert bell_number(40) == 157450588391204931289324344702531067", "assert bell_number(76) == 2804379077740744643020190973126488180455295657360401565474468309847623573788115607", "assert bell_number(34) == 21195039388640360462388656799", "assert bell_number(35) == 281600203019560266563340426570", "assert bell_number(78) == 1635000770532737216633829256032779450518375544542935181844299348876855151241590189395", "assert bell_number(77) == 67379449595254843852699636792665969652321946648374400833740986348378276368807261348", "assert bell_number(39) == 10738823330774692832768857986425209", "assert bell_number(38) == 746289892095625330523099540639146", "assert bell_number(36) == 3819714729894818339975525681317" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the given array is monotonic or not.\nassert is_Monotonic([6, 5, 4, 4]) == True\nYour code should pass the test:\nassert is_Monotonic([6, 5, 4, 4]) == True", "test_list": [ "assert is_Monotonic([6, 5, 4, 4]) == True", "assert is_Monotonic([1, 2, 2, 3]) == True", "assert is_Monotonic([1, 3, 2]) == False", "assert is_Monotonic([]) == True", "assert is_Monotonic([9, 3, 7, 2, 5, 1, 6]) == False", "assert is_Monotonic([9, 7, 7, 2, 5, 5, 1, 6]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -10.481407073259263]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -9.527847657655224, -10.481407073259263, -34.902913681824856, -9.527847657655224]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -9.527847657655224, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([43.01465662466188, -69.73647736308538, -10.481407073259263]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -10.481407073259263, -69.73647736308538, 43.01465662466188]) == False", "assert is_Monotonic([43.01465662466188, -34.902913681824856, 42.59716035619264, -69.38224302373561, -9.527847657655224, -10.481407073259263, -64.57664800604005, 43.01465662466188]) == False", "assert is_Monotonic([-10.481407073259263, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, -69.38224302373561, -10.481407073259263]) == False", "assert is_Monotonic([43.01465662466188, -10.481407073259263]) == True", "assert is_Monotonic([9, 5, 3, 7, 2, 5, 1, 1, 2, 6]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263]) == False", "assert is_Monotonic([43.01465662466188, -98.52620778096008, -69.73647736308538, -10.481407073259263]) == False", "assert is_Monotonic([9, 7, 7, 2, 5, 5, 3, 6]) == False", "assert is_Monotonic([-47.55433018390211, -10.481407073259263, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.481407073259263, -64.57664800604005, -34.902913681824856]) == False", "assert is_Monotonic([-34.902913681824856, -69.38224302373561, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -47.55433018390211, -64.57664800604005]) == False", "assert is_Monotonic([43.01465662466188, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([41.82235199511542, -68.76772490153975, 43.01465662466188, -69.38224302373561, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -64.57664800604005, -69.38224302373561]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -69.88165026016243, -10.481407073259263, -69.73647736308538, 43.01465662466188, -69.88165026016243]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, -69.38224302373561, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([-10.481407073259263, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.481407073259263, -64.57664800604005, -10.481407073259263]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265, -47.55433018390211, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, -10.481407073259263, -69.38224302373561, -10.481407073259263]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265]) == False", "assert is_Monotonic([False, False, False]) == True", "assert is_Monotonic([-34.902913681824856, -69.38224302373561, -10.481407073259263, -94.97100584944054]) == False", "assert is_Monotonic([-34.902913681824856, -10.481407073259263, -94.97100584944054]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -10.481407073259263, 43.01465662466188]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([-94.97100584944054, -10.481407073259263, -10.481407073259263]) == True", "assert is_Monotonic([43.01465662466188, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.481407073259263, 27.4121976200018, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, -10.481407073259263, -69.88165026016243, -94.97100584944054]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, 43.01465662466188]) == False", "assert is_Monotonic([42.59716035619264, -68.76772490153975, 43.01465662466188, 41.82235199511542, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([-34.902913681824856, -34.902913681824856, -10.768528666126521, -35.65861283942265, -47.55433018390211, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, -9.527847657655224, -10.481407073259263, -94.97100584944054, -34.902913681824856]) == False", "assert is_Monotonic([7, 3, 7, 2, 5, 5, 3, 6]) == False", "assert is_Monotonic([42.59716035619264, -68.76772490153975, 43.01465662466188, 41.82235199511542, -10.481407073259263, -69.38224302373561, 43.01465662466188]) == False", "assert is_Monotonic([False, False, False, False]) == True", "assert is_Monotonic([9, 5, 7, 2, 5, 1, 1, 2, 6]) == False", "assert is_Monotonic([27.4121976200018, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265]) == False", "assert is_Monotonic([9, 7, 7, 2, 5, 5, 3, 6, 5]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -94.97100584944054, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263, -34.902913681824856]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, -69.38224302373561, -11.141086666406599, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([-9.527847657655224, -34.902913681824856, 43.01465662466188, -69.38224302373561, -10.493584737965575, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -9.527847657655224, -10.481407073259263, 27.4121976200018, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, -34.902913681824856, -10.768528666126521, -35.65861283942265, -47.55433018390211, -64.57664800604005, -10.768528666126521]) == False", "assert is_Monotonic([9, 3, 5, 1, 1]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -64.57664800604005, 43.01465662466188]) == False", "assert is_Monotonic([-34.902913681824856, 42.81869869284685, -69.38224302373561, -10.481407073259263, -64.57664800604005, 43.01465662466188]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -69.88165026016243, -64.57664800604005, -34.902913681824856]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -64.57664800604005, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([-34.902913681824856, 42.81869869284685, -69.38224302373561, -10.481407073259263, 43.01465662466188]) == False", "assert is_Monotonic([-96.47330712486206, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265]) == False", "assert is_Monotonic([7, 3, 5, -11, -4, 2, 54]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, 43.411858408450954, -10.768528666126521, -35.65861283942265]) == False", "assert is_Monotonic([-96.47330712486206, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265, -10.768528666126521]) == False", "assert is_Monotonic([-12.580228512164316, 42.59716035619264, 43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263, -10.481407073259263]) == False", "assert is_Monotonic([9, 4, 3, 7, 2, 5, 1, 1, 2, 6]) == False", "assert is_Monotonic([-34.902913681824856, -69.38224302373561, -10.481407073259263, -94.97100584944054, -34.902913681824856, -10.481407073259263, -94.97100584944054]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, -69.14764750208506, -69.38224302373561, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([43.01465662466188, -34.902913681824856, -49.529210259810306, 42.59716035619264, -69.38224302373561, -9.527847657655224, -10.481407073259263, -64.57664800604005, 43.01465662466188]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, 42.81869869284685, -69.88165026016243, -10.481407073259263, -69.73647736308538, 43.01465662466188, -69.88165026016243]) == False", "assert is_Monotonic([43.01465662466188, -34.902913681824856, -35.42913486984109, 43.01465662466188, -34.902913681824856, -10.481407073259263, -64.57664800604005]) == False", "assert is_Monotonic([True, False, False, False, False]) == True", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -64.57664800604005, 43.01465662466188, 43.01465662466188]) == False", "assert is_Monotonic([-96.47330712486206, 43.01465662466188, -96.47330712486206, -10.768528666126521, -35.65861283942265, -10.768528666126521]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, 43.411858408450954, -10.768528666126521, -35.65861283942265, 43.411858408450954]) == False", "assert is_Monotonic([42.87694882226923, -12.580228512164316, 42.59716035619264, 43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263, -10.481407073259263]) == False", "assert is_Monotonic([-34.967048506901335, -34.902913681824856, -10.768528666126521, -35.65861283942265, -47.55433018390211, -64.57664800604005]) == False", "assert is_Monotonic([43.01465662466188, -69.38224302373561, -69.88165026016243, -10.481407073259263, -69.73647736308538, -69.88165026016243]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265, -47.55433018390211, -64.57664800604005, -47.55433018390211]) == False", "assert is_Monotonic([-34.902913681824856, -9.527847657655224, -10.481407073259263, -94.97100584944054]) == False", "assert is_Monotonic([-10.902910189585176, -34.902913681824856, 43.01465662466188, -69.38224302373561, -10.481407073259263, -10.481407073259263, -34.902913681824856]) == False", "assert is_Monotonic([43.01465662466188, -10.481407073259263, 43.01465662466188]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, 41.82235199511542, -10.481407073259263, -69.38224302373561]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.38224302373561, -64.57664800604005, -69.38224302373561]) == False", "assert is_Monotonic([9, 3, 3, 7, 2, 5, 1, 1, 2, 6]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265, -69.14764750208506]) == False", "assert is_Monotonic([42.59716035619264, 43.01465662466188, 41.82235199511542, -10.481407073259263, -69.38224302373561, -10.481407073259263]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -34.902913681824856, 43.411858408450954, -10.768528666126521, -35.65861283942265, 43.411858408450954, -34.902913681824856]) == False", "assert is_Monotonic([-34.902913681824856, -34.902913681824856, -10.768528666126521, -35.65861283942265, -47.55433018390211, -64.57664800604005, -10.768528666126521, -10.768528666126521]) == False", "assert is_Monotonic([-34.902913681824856, -35.42913486984109, -34.967048506901335, 43.01465662466188, -34.902913681824856, -10.481407073259263, -64.57664800604005, -34.902913681824856]) == False", "assert is_Monotonic([9, 5, 4, 7, 2, 5, 1, 1, 2, 6]) == False", "assert is_Monotonic([42.81869869284685, 43.01465662466188, -96.47330712486206, -10.768528666126521, -35.65861283942265, -10.323022141346687]) == False", "assert is_Monotonic([-34.902913681824856, 43.01465662466188, -69.6514466229769, -10.481407073259263, 43.01465662466188]) == False", "assert is_Monotonic([-96.47330712486206, -34.902913681824856, 43.01465662466188, -34.902913681824856]) == False", "assert is_Monotonic([-9.527847657655224, -34.902913681824856, 43.01465662466188, -10.902910189585176, -10.493584737965575, -64.57664800604005]) == False", "assert is_Monotonic([43.01465662466188, -98.52620778096008, -69.73647736308538, -10.481407073259263, -10.481407073259263, 43.01465662466188]) == False", "assert is_Monotonic([-96.47330712486206, 42.87694882226923, 43.01465662466188, -34.902913681824856, -10.768528666126521, -35.65861283942265]) == False", "assert is_Monotonic([43.01465662466188, -34.902913681824856, 43.01465662466188, -34.902913681824856, -10.481407073259263, -9.527847657655224, -64.57664800604005, 43.01465662466188]) == False", "assert is_Monotonic([-10.768528666126521, -9.527847657655224, -10.481407073259263, -94.97100584944054, -34.902913681824856, -34.902913681824856]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether a list contains the given sublist or not.\nassert is_sublist([2,4,3,5,7],[3,7])==False\nYour code should pass the test:\nassert is_sublist([2,4,3,5,7],[3,7])==False", "test_list": [ "assert is_sublist([2,4,3,5,7],[3,7])==False", "assert is_sublist([2,4,3,5,7],[4,3])==True", "assert is_sublist([2,4,3,5,7],[1,6])==False", "assert is_sublist([], []) == True", "assert is_sublist([], [1]) == False", "assert is_sublist(['r'], []) == True", "assert is_sublist(['sfIngs', 'GYVu', 'r'], []) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu'], [False, 'klXTmRZyQ']) == False", "assert is_sublist([False, 99.97028427774339, 82, 'GYVu', False, 'Ok', None, [1, -71.80691717114227]], []) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu'], ['r', 'sfIngs', 'GYVu', 'GYVu']) == True", "assert is_sublist(['r', 'sgfIngs', 'GYVu', 'GYVu'], ['r', 'sgfIngs', 'GYVu', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYVu'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu'], ['r', 'sfIngs', 'GYVu']) == True", "assert is_sublist(['sfIngs', 'GYVu'], ['sfIngs', 'GYVu']) == True", "assert is_sublist(['sgfIngs', 'sfIngs', 'GYVu', 'r', 'r', 'sfIngs'], ['sgfIngs', 'sfIngs', 'GYVu', 'r', 'r', 'sfIngs']) == True", "assert is_sublist(['r', 'GYVu', 'r'], []) == True", "assert is_sublist(['r', 'GYVu', 'r'], ['r', 'GYVu', 'r']) == True", "assert is_sublist(['sgfIngs', 'sfIngs', 'GYVu', 'sfIngsr', 'GYV', 'r', 'sfIngs'], ['sgfIngs', 'sfIngs', 'GYVu', 'sfIngsr', 'GYV', 'r', 'sfIngs']) == True", "assert is_sublist([1], [1]) == True", "assert is_sublist([None, False, {'sfIngsr': 42.34905566158099, 'FHvMaMnTCg': -74.03921201241215, 'hKRFjm': -74.21853866002988, 'rKQ': 40.63712034844792}, {'24.822944608944297': 'pfIhkuLtSg', '-22.735241874996206': 's', '-13.009939375362165': 'sfIngsr', '-71.80691717114227': 'VtqKcYvzg', '99.97028427774339': 'DBzU', '68.8678541991217': 'GYVu', '-83.5332401941628': 'PctAoxwD'}, [66, 1, -51, 1, -59, 1, False, -71], True, 'sfIngs', 1], []) == True", "assert is_sublist(['GYVu', 'pfIhkuLtSg', 'O', 'Odpagl', 'Casb'], []) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'GYV'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'GYV']) == True", "assert is_sublist([-42, 8, -83.5332401941628, -82, 38.16772877208774, {'VtqKcYvzg': 47.40072133316414, 'sLmQQSONWn': -13.009939375362165, 'O': 36, 'rKQ': [48, -59]}, -40], []) == True", "assert is_sublist([8, None, False, {'sfIngsr': 42.34905566158099, 'FHvMaMnTCg': -74.03921201241215, 'hKRFjm': -74.21853866002988, 'rKQ': 40.63712034844792}, {'24.822944608944297': 'pfIhkuLtSg', '-22.735241874996206': 's', '-13.009939375362165': 'sfIngsr', '-71.80691717114227': 'VtqKcYvzg', '99.97028427774339': 'DBzU', '68.8678541991217': 'GYVu', '-83.5332401941628': 'PctAoxwD'}, [66, 1, -51, 1, -59, 1, False, -71], True, 'sfIngs', 1], []) == True", "assert is_sublist(['r', 'sfIngs', 's'], [False, 'klXTmRZyQ']) == False", "assert is_sublist(['r', 'sgfIngs', 'GYVu', 'pfIhkuLtSgr', 'GYVu'], ['r', 'sgfIngs', 'GYVu', 'pfIhkuLtSgr', 'GYVu']) == True", "assert is_sublist([[95.17158052544048, 'SFVVgWCfDj', -0.3414328935261324], 90.16807182684596, 'qyujtuO', 82, 75.22089802044161, 82], [[95.17158052544048, 'SFVVgWCfDj', -0.3414328935261324], 90.16807182684596, 'qyujtuO', 82, 75.22089802044161, 82]) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'r']) == True", "assert is_sublist(['GYVur', 'sgfIngs', 'GYVu', 'GYVu'], ['GYVur', 'sgfIngs', 'GYVu', 'GYVu']) == True", "assert is_sublist(['sfIngsGYVu', 'sfIngs', 'GYVu'], ['sfIngsGYVu', 'sfIngs', 'GYVu']) == True", "assert is_sublist(['r', 'GYVu', 'r', 'r'], ['r', 'GYVu', 'r', 'r']) == True", "assert is_sublist(['sfIngSFVGYVVgWCfDjsGYVu', 'sfIngSFVVgWCfDjsGYVu', 'sfIngs', 'GYVu'], ['sfIngSFVGYVVgWCfDjsGYVu', 'sfIngSFVVgWCfDjsGYVu', 'sfIngs', 'GYVu']) == True", "assert is_sublist(['r', 'GYVu', 'r'], [True, True, True, False, True, False, False, True]) == False", "assert is_sublist(['r'], ['r']) == True", "assert is_sublist(['r', 'GSFVVgWCfDju', 'GYVu', 'r'], ['r', 'GSFVVgWCfDju', 'GYVu', 'r']) == True", "assert is_sublist(['sgfIngs', 'sfIngs', 'GYVu', 'sfIngsr', 'GYV', 'r', 'GYV'], ['sgfIngs', 'sfIngs', 'GYVu', 'sfIngsr', 'GYV', 'r', 'GYV']) == True", "assert is_sublist([], [True, False, True]) == False", "assert is_sublist(['r', 'GYVu', 'r'], [-49.293443668830214, 11.89338685730192, 38.68012886425632, 64.91527494125927, -74.03921201241215, 0.3374408817541621]) == False", "assert is_sublist(['r', 'GYVu', 'GYVu', 'GYVu', 'GYVu', 'GYVu'], ['r', 'GYVu', 'GYVu', 'GYVu', 'GYVu', 'GYVu']) == True", "assert is_sublist([90.16807182684596, 'qyujtuO', 82, 75.22089802044161, 82], [90.16807182684596, 'qyujtuO', 82, 75.22089802044161, 82]) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'r', 'r'], ['r', 'sfIngs', 'GYVu', 'r', 'r']) == True", "assert is_sublist([90.16807182684596, 'qyujtuO', 75.22089802044161, 'sfIngSFVGYVVgWCfDjsGYVu', 82], [90.16807182684596, 'qyujtuO', 75.22089802044161, 'sfIngSFVGYVVgWCfDjsGYVu', 82]) == True", "assert is_sublist(['r', 'GYVu', 'r'], [-49.293443668830214, 11.89338685730192, 38.68012886425632, 64.91527494125927, -74.03921201241215, 0.3374408817541621, -74.03921201241215]) == False", "assert is_sublist(['GYVur', 'sgfIngs', 'GYVu', 'GYVu', 'GYVu'], ['GYVur', 'sgfIngs', 'GYVu', 'GYVu', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYYVu', 'GYV', 'GYVu', 'GYV'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYYVu', 'GYV', 'GYVu', 'GYV']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVu', 'r']) == True", "assert is_sublist([-42, 9, -83.5332401941628, -82, 38.16772877208774, {'VtqKcYvzg': 47.40072133316414, 'sLmQQSONWn': -13.009939375362165, 'O': 36, 'rKQ': [48, -59]}, -40], [-42, 9, -83.5332401941628, -82, 38.16772877208774, {'VtqKcYvzg': 47.40072133316414, 'sLmQQSONWn': -13.009939375362165, 'O': 36, 'rKQ': [48, -59]}, -40]) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu'], [False]) == False", "assert is_sublist(['GSFVVgWCfDju', 'r', 'sfIngs', 'GYVu', 'r', 'r', 'GSFVVgWCfDju', 'r'], ['GSFVVgWCfDju', 'r', 'sfIngs', 'GYVu', 'r', 'r', 'GSFVVgWCfDju', 'r']) == True", "assert is_sublist(['sfIngs', 'PctAoxwD', 'GYVu'], ['sfIngs', 'PctAoxwD', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVGu', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVGu', 'r']) == True", "assert is_sublist(['sfIngs', 'PctAoxwD', 'GVYVu', 'GYVu', 'PctAoxwD'], ['sfIngs', 'PctAoxwD', 'GVYVu', 'GYVu', 'PctAoxwD']) == True", "assert is_sublist(['r', 'sfIngs', 'u', 'GYV', 'GYVu'], ['r', 'sfIngs', 'u', 'GYV', 'GYVu']) == True", "assert is_sublist(['r', 'VtqKcYvzg', 'r'], []) == True", "assert is_sublist(['GYVur', 'GYYVur', 'sgfIngs', 'GYVu', 'GYVu'], ['GYVur', 'GYYVur', 'sgfIngs', 'GYVu', 'GYVu']) == True", "assert is_sublist([True, True, True, False, True, False, False, True, True], [True, True, True, False, True, False, False, True, True]) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'rGSFVVgWCfDju', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'rGSFVVgWCfDju', 'GYVu', 'r']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVu', 'r']) == True", "assert is_sublist([-74.03921201241215, 75.22089802044161, -38.48806518576453], []) == True", "assert is_sublist([False], [True, False, True]) == False", "assert is_sublist(['sfIngs', 'GYVu', 'r'], ['sfIngs', 'GYVu', 'r']) == True", "assert is_sublist(['r', 'GYVu', 'GYVu', 'GYVu', 'GYVu', 'GYVu', 'GYVu'], ['r', 'GYVu', 'GYVu', 'GYVu', 'GYVu', 'GYVu', 'GYVu']) == True", "assert is_sublist(['sfIngsGYVu', 'sfIngs', 'GYVu', 'sfIngs', 'sfIngsGYVu'], ['sfIngsGYVu', 'sfIngs', 'GYVu', 'sfIngs', 'sfIngsGYVu']) == True", "assert is_sublist(['r', 'GYVu', 'r'], [True, True, True, True, False, False, True]) == False", "assert is_sublist(['r', 'sfInVtqKcYvzggs', 'GYVu'], ['r', 'sfInVtqKcYvzggs', 'GYVu']) == True", "assert is_sublist(['r', 'GYVu', 'r', 'r'], [True, True, True, False, True, False, False, True]) == False", "assert is_sublist([[95.17158052544048, 'SFVVgWCfDj', -0.3414328935261324], 65.5370586539689, 'qyujtuO', 82, 75.22089802044161, 82, 82], [[95.17158052544048, 'SFVVgWCfDj', -0.3414328935261324], 65.5370586539689, 'qyujtuO', 82, 75.22089802044161, 82, 82]) == True", "assert is_sublist(['r', 'sfIngs', 'GYVVu', 'GYVu', 'r', 'r'], ['r', 'sfIngs', 'GYVVu', 'GYVu', 'r', 'r']) == True", "assert is_sublist(['r', 'sfIngs', 's'], ['klXTmRZyQ']) == False", "assert is_sublist(['r', 'GYYVu', 'GYVu'], ['r', 'GYYVu', 'GYVu']) == True", "assert is_sublist([[95.17158052544048, 'SFVVgWCfDj', -0.3414328935261324], 90.16807182684596, 'qyujtuO', 82, 82], [[95.17158052544048, 'SFVVgWCfDj', -0.3414328935261324], 90.16807182684596, 'qyujtuO', 82, 82]) == True", "assert is_sublist([[95.17158052544048, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 65.5370586539689, [95.17158052544048, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 'qyujtuO', 82, 75.22089802044161, 82], [[95.17158052544048, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 65.5370586539689, [95.17158052544048, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 'qyujtuO', 82, 75.22089802044161, 82]) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVusfIngSFVGYVVgWCfDjsGYVu', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVusfIngSFVGYVVgWCfDjsGYVu', 'GYVu', 'r']) == True", "assert is_sublist(['r', 'sfIngs', 's'], ['klXTmRZyQ', 'klXTmRZyQ']) == False", "assert is_sublist(['sfIngsGYVu', 'sfIngs', 'GYVu', 'ssfIngs', 'sfIngsGYVu'], ['sfIngsGYVu', 'sfIngs', 'GYVu', 'ssfIngs', 'sfIngsGYVu']) == True", "assert is_sublist([-49.293443668830214, -0.4410790823334596, 11.89338685730192, 38.68012886425632, 64.91527494125927, 47.40072133316414, -74.03921201241215, 0.3374408817541621], [-49.293443668830214, -0.4410790823334596, 11.89338685730192, 38.68012886425632, 64.91527494125927, 47.40072133316414, -74.03921201241215, 0.3374408817541621]) == True", "assert is_sublist(['r', 'GYVu', 'FHvMaMnTCg', 'rr'], ['r', 'GYVu', 'FHvMaMnTCg', 'rr']) == True", "assert is_sublist(['klXTmRZyQr', 'sfIngs', 'GYVu', 'GYVu', 'sfIsngs', 'GYVu'], ['klXTmRZyQr', 'sfIngs', 'GYVu', 'GYVu', 'sfIsngs', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVGu', 'r', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVGu', 'r', 'r']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'GYV', 'GYVu'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'GYV', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVVu', 'GYVu', 'r', 'r', 'GYVu'], ['r', 'sfIngs', 'GYVVu', 'GYVu', 'r', 'r', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYYVu', 'GYV', 'GYVVu', 'GYV'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYYVu', 'GYV', 'GYVVu', 'GYV']) == True", "assert is_sublist(['r', 'GYVu', 'r', 'r'], [True, True, True, True, False, False, True]) == False", "assert is_sublist([90.16807182684596, 'qyujtuO', 75.22089802044161, 'sfIngSFVGYVVgWCfDjsGYVu', 'GYYVur', 82], [90.16807182684596, 'qyujtuO', 75.22089802044161, 'sfIngSFVGYVVgWCfDjsGYVu', 'GYYVur', 82]) == True", "assert is_sublist(['r', 'snfInVtqKcYvzggs', 'sfInVtqKcYvzggs', 'GYVu'], ['r', 'snfInVtqKcYvzggs', 'sfInVtqKcYvzggs', 'GYVu']) == True", "assert is_sublist(['rGYV', 'GYVu'], ['rGYV', 'GYVu']) == True", "assert is_sublist(['r', 'rGYV', 'GYVu'], ['r', 'rGYV', 'GYVu']) == True", "assert is_sublist([False], [False]) == True", "assert is_sublist(['sfIngsGYVu', 'GSFVVgWCfDjusfIngs', 'sfIngs', 'GYVu', 'sfIngsGYVu'], ['sfIngsGYVu', 'GSFVVgWCfDjusfIngs', 'sfIngs', 'GYVu', 'sfIngsGYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVVu', 'GYVu', 'r', 'r', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVVu', 'GYVu', 'r', 'r', 'GYVu', 'r']) == True", "assert is_sublist(['r', 'GYVu'], ['r', 'GYVu']) == True", "assert is_sublist(['r', 'sgfIngs', 's', 'GYVu', 'pfIhkuLtSgr', 'GYVu'], ['r', 'sgfIngs', 's', 'GYVu', 'pfIhkuLtSgr', 'GYVu']) == True", "assert is_sublist(['GYVGu', 'r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVGu', 'r'], ['GYVGu', 'r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'GYVGu', 'r']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVusfIngSFVGYVVgWCfDjsGYVu', 's', 'Casb', 'GYVu', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVusfIngSFVGYVVgWCfDjsGYVu', 's', 'Casb', 'GYVu', 'r']) == True", "assert is_sublist(['sfIngs', 'GYVu', 'sfIngrrs', 'GYVu', 'GOkV', 'GYVGu', 'rr'], ['sfIngs', 'GYVu', 'sfIngrrs', 'GYVu', 'GOkV', 'GYVGu', 'rr']) == True", "assert is_sublist(['YrGYV', 'GYVu', 'GOku'], ['YrGYV', 'GYVu', 'GOku']) == True", "assert is_sublist(['GYVu', 'pfIhkuLtSg', 'O', 'Odpagl', 'Casb', 'GYVu'], [[87.8259025409381, 'GYVusfIngSFVGYVVgWCfDjsGYVu', [True, True], {'-51': -74.03921201241215, '60': 40.71791810053759, 'false': 5.735570485483905, '-10': 24.822944608944297, '8': 0.3374408817541621, '41': 64.91527494125927, '-82': -25.52239838327162, '-36': -41.74691632795968, '61': -74.21853866002988, '-83': 99.97028427774339}, False, [66, 68, -71, -71, -82, -65, -51], {'GSFVVgWCfDjusfIngs': 'ssfIngs', 'GYYVu': 'GOkV', 'uTw': 'GYVGu', 's': 'SFVVgWCfDj', 'klXTmRZyQr': 'FHvMaMnTCg', 'sfIngrrs': 'mXw', 'HGEtjdFe': 'sfIsngs', 'DBzU': 'EV', 'sfIngSFVGYVVgWCfDjsGYVu': 'WpVzXU', 'Xf': 'sfIngrrs'}], [], -10, -29, None]) == False", "assert is_sublist([True, True, True, False, True, False, False, True, True, False], [True, True, True, False, True, False, False, True, True, False]) == True", "assert is_sublist(['r', 'sfIngs', 'r', 'GYVVu', 'GYVu', 'r', 'r'], ['r', 'sfIngs', 'r', 'GYVVu', 'GYVu', 'r', 'r']) == True", "assert is_sublist(['r', 'sfInsfIngSFVGYVVgWCfDjsGYVugs', 'u', 'GYV', 'GYVu'], ['r', 'sfInsfIngSFVGYVVgWCfDjsGYVugs', 'u', 'GYV', 'GYVu']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'ssfIngs', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GYV', 'GYVu', 'ssfIngs', 'r']) == True", "assert is_sublist(['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'WpVzXU', 'r', 'r'], ['r', 'sfIngs', 'GYVu', 'GYVu', 'GOkV', 'WpVzXU', 'r', 'r']) == True", "assert is_sublist([[94.17409950967779, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 65.5370586539689, [94.17409950967779, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 'qyujtuO', 82, [94.17409950967779, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 75.22089802044161, 82], [[94.17409950967779, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 65.5370586539689, [94.17409950967779, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 'qyujtuO', 82, [94.17409950967779, 'SFVVgWCfDj', 'SFVVgWCfsgfIngsDj', -0.3414328935261324], 75.22089802044161, 82]) == True", "assert is_sublist(['sgfIngs', 's', 'GYVu', 'pfIhkuLtSgr'], ['sgfIngs', 's', 'GYVu', 'pfIhkuLtSgr']) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find all words which are at least 4 characters long in a string.\nassert set(find_char_long('Please move back to stream')) == set(['Please', 'move', 'back', 'stream'])\nYour code should pass the test:\nassert set(find_char_long('Please move back to stream')) == set(['Please', 'move', 'back', 'stream'])", "test_list": [ "assert set(find_char_long('Please move back to stream')) == set(['Please', 'move', 'back', 'stream'])", "assert set(find_char_long('Jing Eco and Tech')) == set(['Jing', 'Tech'])", "assert set(find_char_long('Jhingai wulu road Zone 3')) == set(['Jhingai', 'wulu', 'road', 'Zone'])" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find whether all the given tuples have equal length or not.\nassert get_equal([(11, 22, 33), (44, 55, 66)]) == True\nYour code should pass the test:\nassert get_equal([(11, 22, 33), (44, 55, 66)]) == True", "test_list": [ "assert get_equal([(11, 22, 33), (44, 55, 66)]) == True", "assert get_equal([(1, 2, 3), (4, 5, 6, 7)]) == False", "assert get_equal([(1, 2), (3, 4)]) == True", "assert get_equal([(1, 2, 3), (), (4, 5)]) == False", "assert get_equal([(1, 2, 3), (), (4, 5), (6, 7, 8)]) == False", "assert get_equal([(1,), (2, 3), (4, 5, 6), (7, 8, 9, 10), (11, 12, 13, 14, 15)]) == False", "assert get_equal([(1,), (2, 3), (4, 5, 6), (7,)]) == False", "assert get_equal([(1, 2, 3, 4), (5, 6), (7, 8, 9)]) == False", "assert get_equal([(), (1,), (2, 3), (4, 5, 6), (7, 8, 9, 10)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (), (6, 7, 8), (9, 10)]) == False", "assert get_equal([(1, 2, 3), (4,), (5, 6, 7), (8, 9, 10), (11, 12, 13)]) == False", "assert get_equal([(1, 2), (3, 4, 5), (6, 7, 8, 9), (10, 11, 12)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (6, 7), (8, 9), (10,)]) == False", "assert get_equal([(1,), (2, 3), (), (4, 5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(1, 2, 3, 4, 5), (6, 7, 8), (9, 10, 11, 12)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6), (7, 8)]) == True", "assert get_equal([(1, 2, 3), (4, 5, 6), (7, 8, 9), (10, 11, 12)]) == True", "assert get_equal([(1, 2, 3), (4, 5), (6, 7, 8), (9, 10, 11)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (8,)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7)]) == False", "assert get_equal([(1,), (2, 3), (4, 5), (6, 7, 8)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (3, 4)]) == False", "assert get_equal([(1, 1), (2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (2, 3)]) == False", "assert get_equal([(1, 2), (1, 2, 3), (), (4, 5), (6, 7, 8)]) == False", "assert get_equal([(1, 2, 3), (4,), (5, 6, 7), (8, 9, 10), (8, 10), (11, 12, 13)]) == False", "assert get_equal([(1, 2, 3, 4, 5), (6, 7, 8), (9, 10, 11, 12), (9, 10, 11, 12, 12)]) == False", "assert get_equal([(1,), (2, 3, 2), (), (4, 5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (6, 7, 8), (9, 10, 11), (4, 5)]) == False", "assert get_equal([(), (), (2, 3), (4, 5, 6), (7, 8, 9, 10), ()]) == False", "assert get_equal([(1, 2, 3), (), (4, 4, 5)]) == False", "assert get_equal([(2, 3, 2, 3), (1,), (2, 3, 2), (), (4, 5, 6, 7), (8, 11, 10), (8, 9, 10)]) == False", "assert get_equal([(1,), (8, 3), (4, 5), (6, 7, 8)]) == False", "assert get_equal([(1, 2, 3), (3, 4), (5, 6, 7), (8, 9, 10), (11, 12, 13)]) == False", "assert get_equal([(1, 2, 3), (4,), (5, 7), (8, 9, 10), (8, 10), (11, 12, 13), (1, 2, 3)]) == False", "assert get_equal([(1,), (2, 3, 2), (4, 5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (8,), (8,)]) == False", "assert get_equal([(1, 2), (3, 4, 4), (3, 4), (5, 6, 7), (11, 4), (3, 4)]) == False", "assert get_equal([(1, 2, 3), (), (4,), (6, 7, 8)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (3, 4), (1, 2)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (6, 7), (8, 9), (), (10,)]) == False", "assert get_equal([(1, 2), (3, 4, 3), (5, 6, 7), (8,)]) == False", "assert get_equal([(1,), (4, 5), (6, 7, 8)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (6, 7, 8), (9, 10, 5, 11)]) == False", "assert get_equal([(1, 2, 3, 3), (), (9, 10)]) == False", "assert get_equal([(1, 2), (1, 2, 3), (4, 5), (6, 7, 8), (9, 10, 5, 11), (1, 2)]) == False", "assert get_equal([(1, 2), (3,), (5, 6, 5, 7), (8,), (8,)]) == False", "assert get_equal([(2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (14, 2, 3)]) == False", "assert get_equal([(1, 2, 3, 4), (5, 6), (8, 9)]) == False", "assert get_equal([(1, 2, 3), (), ()]) == False", "assert get_equal([(1, 2, 3), (4, 5, 6), (4, 5, 5, 6), (7, 8, 9), (10, 11, 12)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (1, 2)]) == False", "assert get_equal([(1, 2, 3), (4,), (5, 7), (8, 10), (11, 12, 13), (1, 2, 3)]) == False", "assert get_equal([(3, 1, 2), (1, 2), (3, 4), (5, 6, 7), (8,)]) == False", "assert get_equal([(1, 2, 3), (4,), (7, 6, 7), (8, 9), (10,)]) == False", "assert get_equal([(4, 5)]) == True", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (3, 4), (5, 6, 7)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (5,), (6, 7, 8), (9, 10, 11), (4, 5)]) == False", "assert get_equal([(1, 2, 3), (4, 5, 6), (4, 5, 5, 6), (7, 8, 9), (10, 11, 12), (7, 8, 9)]) == False", "assert get_equal([(1, 2), (3, 4, 4), (3, 4), (5, 6, 7), (11, 4), (3, 4), (11, 11, 4)]) == False", "assert get_equal([(1, 2, 3), (), (4, 5), (7, 8), (7, 8)]) == False", "assert get_equal([(1, 2, 3), (4,), (5, 6, 7), (8, 9, 10), (8, 10), (11, 12, 13), (8, 10)]) == False", "assert get_equal([(1, 2, 3), (7, 2, 3), (4, 5), (6, 7, 8), (9, 10, 11), (4, 5)]) == False", "assert get_equal([(1,), (4, 5, 6), (2, 3, 2), (), (4, 5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (5, 6, 7)]) == False", "assert get_equal([(2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (14, 2, 3), (11, 12, 13, 14, 15)]) == False", "assert get_equal([(1,), (4, 5, 6), (), (4, 5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(2,), (3, 4), (5, 6, 7), (3, 4, 4), (3, 4, 4), (3, 4)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (3, 4), (5, 6, 7), (5, 6, 7)]) == False", "assert get_equal([(), (3,), (1,), (2, 3), (4, 5, 6), (7, 8, 9, 10), (2, 3), (1,)]) == False", "assert get_equal([(), (3,), (1,), (2, 3), (4, 5, 6), (7, 8, 9, 10), (1,)]) == False", "assert get_equal([(1,), (2, 2), (3,), (), (4, 5, 6, 7), (8, 9, 9, 10)]) == False", "assert get_equal([(1, 1), (2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (2, 3), (1, 1)]) == False", "assert get_equal([(1, 2), (3, 4, 4), (3, 4), (3, 4, 4), (5, 6, 7), (11, 4), (3, 4), (11, 11, 4)]) == False", "assert get_equal([(1,), (2, 2), (2,), (3,), (4, 5, 6, 7), (8, 9, 9, 10)]) == False", "assert get_equal([(1, 2), (3, 4, 5), (6, 7, 8, 9), (10, 11, 12), (1, 2), (1, 2), (3, 4, 5)]) == False", "assert get_equal([(1,), (8, 3), (4, 5), (4, 1, 5), (6, 7, 8)]) == False", "assert get_equal([(2,), (3, 4), (5, 6, 7), (2, 2), (3, 4, 4), (3, 4, 4), (3, 4)]) == False", "assert get_equal([(1, 1), (2, 3), (4, 5, 6), (11, 12, 13, 14, 15)]) == False", "assert get_equal([(2, 2), (1, 2), (3,)]) == False", "assert get_equal([(1,), (4, 5, 6), (4, 5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(9, 10, 11, 10), (1, 2, 3), (4, 5), (6,), (5,), (6, 7, 8), (9, 10, 11), (4, 5)]) == False", "assert get_equal([(1,), (4, 5, 6), (2, 3, 2), (), (4, 5, 6, 7), (8, 9, 10), (4, 5, 6, 7)]) == False", "assert get_equal([(), ('D', 'DgNw'), (), (2, 3), (4, 5, 6), (), ()]) == False", "assert get_equal([(1,), (4, 5), (6, 7, 8), (1,)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (3, 4), (8,), (8,)]) == False", "assert get_equal([(4, 5, 5), (1, 2, 3), (), (6, 7, 8), (4, 5)]) == False", "assert get_equal([(4, 5, 5), (1, 2, 3), (), (1, 14, 3), (6, 7, 8), (4, 5)]) == False", "assert get_equal([(1,), (4, 5, 6), (2, 3, 2), (), (8, 9, 10)]) == False", "assert get_equal([(4,), (4, 5)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (7,), (3, 4), (8,), (8,), (8,)]) == False", "assert get_equal([(1, 2, 3), (4, 5), (6, 7, 8), (6, 7, 8, 6), (9, 10, 11)]) == False", "assert get_equal([(1, 2, 3, 4), (5, 6), (6, 8, 9)]) == False", "assert get_equal([(1, 1), (2, 3), (2, 3, 3), (4, 5, 6), (11, 12, 13, 14, 15), (2, 3), (1, 1)]) == False", "assert get_equal([(1, 2, 3), (3, 4), (5, 6, 7), (8, 9, 10), (11, 12, 13), (1, 2, 3), (11, 12, 13), (3, 4)]) == False", "assert get_equal([(2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (14, 2, 3), (11, 12, 13, 14, 15), (11, 12, 13, 14, 15)]) == False", "assert get_equal([(1,), (4, 5, 6), (4, 5, 6, 7), (1,)]) == False", "assert get_equal([(9, 10, 11, 10), (1, 2, 3), (4, 5), (5,), (6, 7, 8), (9, 10, 11), (4, 5, 5), (5,)]) == False", "assert get_equal([(1, 1), (2,), (4, 5, 6, 4), (11, 12, 13, 14, 15), (2, 3)]) == False", "assert get_equal([(1, 2, 3), (7, 8, 9), (10, 11, 12)]) == True", "assert get_equal([(3, 3), (1, 1), (2, 3), (4, 5, 6), (5, 12, 13, 14, 15, 12), (2, 3)]) == False", "assert get_equal([(1,), (4, 6, 6), (4, 5, 6, 7), (4, 5, 6, 7, 7), (1,)]) == False", "assert get_equal([(1, 2, 2), (3, 4), (1, 2)]) == False", "assert get_equal([(), ('D', 'DgNw'), (True, True, True, False, True, True), (2, 3), (4, 5, 6), (), (), ()]) == False", "assert get_equal([(1, 2), (3, 4, 5), (6, 7, 8, 9), (10, 11, 12), (1, 2)]) == False", "assert get_equal([(1, 2, 3), (4, 5, 5), (4, 5), (6, 7, 8), (6, 7, 8, 6), (9, 10, 11)]) == False", "assert get_equal([(4, 5), (1, 2, 3), (), (4, 5), (7, 8), (7, 8)]) == False", "assert get_equal([(9, 10, 11, 10), (1, 2, 3), (4, 5), (6, 7, 8), (9, 10, 11), (4, 5, 5), (4, 14), (5,)]) == False", "assert get_equal([(1, 2, 3), (3, 4), (5, 6, 7), (8, 9, 10)]) == False", "assert get_equal([(2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (14, 2, 13, 3), (11, 12, 13, 12, 14, 15)]) == False", "assert get_equal([(2, 3, 2, 3), (1,), (2, 3, 2), ({'-50': -92, '-31': 10, '24': 8, '12': 5}, 'DgNw', True, -66, -77.47956663455827, None, None, False, 'DgNw'), (4, 5, 6, 7), (8, 11, 10), (8, 9, 10)]) == False", "assert get_equal([(6, 7), (6, 7), (1, 2), (3, 4), (5, 6, 7), (1, 2)]) == False", "assert get_equal([(2, 3), (4, 5, 6), (11, 12, 13, 14, 15), (2, 3), (1, 1)]) == False", "assert get_equal([(1, 2, 3, 4), (5, 6), (5, 6, 6), (5, 6)]) == False", "assert get_equal([(1, 2, 3), (1, 7, 2, 3), (3, 4), (5, 6, 7), (8, 9, 10), (11, 12, 13), (1, 2, 3), (11, 12, 13), (3, 4), (1, 2, 3), (8, 9, 10)]) == False", "assert get_equal([(1,), (4, 5), (6, 7, 8), (4, 5)]) == False", "assert get_equal([(1,), (6, 7, 8), (1,)]) == False", "assert get_equal([(2,), (3, 4), (5, 6, 7), (2, 2), (3, 4, 4), (3, 4, 4), (2, 3, 2), (3, 4)]) == False", "assert get_equal([(), (1,), (4, 5, 6), (4, 5, 6, 7, 5), (1,)]) == False", "assert get_equal([(1, 2), (3, 4), (5, 6, 7), (3, 4), (3, 4)]) == False", "assert get_equal([(1, 2, 3), ()]) == False", "assert get_equal([(9, 10, 11, 11), (1, 2, 3), (4, 5), (6, 8), (6, 7, 8, 6), (9, 10, 11)]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort a list of elements.\nassert comb_sort([5, 15, 37, 25, 79]) == [5, 15, 25, 37, 79]\nYour code should pass the test:\nassert comb_sort([5, 15, 37, 25, 79]) == [5, 15, 25, 37, 79]", "test_list": [ "assert comb_sort([5, 15, 37, 25, 79]) == [5, 15, 25, 37, 79]", "assert comb_sort([41, 32, 15, 19, 22]) == [15, 19, 22, 32, 41]", "assert comb_sort([99, 15, 13, 47]) == [13, 15, 47, 99]", "assert comb_sort([500, 1000, 1500, 2000, 3000]) == [500, 1000, 1500, 2000, 3000]", "assert comb_sort([444444444, 555555555, 777777777, 888888888, 999999999]) == [444444444, 555555555, 777777777, 888888888, 999999999]", "assert comb_sort([1000000000, 2000000000, 5000000000, 10000000000]) == [1000000000, 2000000000, 5000000000, 10000000000]", "assert comb_sort([1, 2, 2, 3, 4, 7, 8, 8]) == [1, 2, 2, 3, 4, 7, 8, 8]", "assert comb_sort([1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000, 10000]) == [1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000, 10000]", "assert comb_sort([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]", "assert comb_sort([11, 22, 33, 44, 55, 66, 77, 88, 99]) == [11, 22, 33, 44, 55, 66, 77, 88, 99]", "assert comb_sort([11, 22, 33, 44, 55, 66, 77, 88, 99]) == [11, 22, 33, 44, 55, 66, 77, 88, 99]", "assert comb_sort([99, 444444444, 777777777, 888888888, 999999999]) == [99, 444444444, 777777777, 888888888, 999999999]", "assert comb_sort([11, 22, 31, 32, 33, 55, 66, 77, 88]) == [11, 22, 31, 32, 33, 55, 66, 77, 88]", "assert comb_sort([500, 999, 1500, 3000]) == [500, 999, 1500, 3000]", "assert comb_sort([11, 22, 33, 55, 66, 77, 88, 99, 10000000000]) == [11, 22, 33, 55, 66, 77, 88, 99, 10000000000]", "assert comb_sort([11, 22, 31, 32, 33, 55, 66, 66, 77, 77]) == [11, 22, 31, 32, 33, 55, 66, 66, 77, 77]", "assert comb_sort([1, 2, 3, 4, 4, 5, 7, 8, 9, 10]) == [1, 2, 3, 4, 4, 5, 7, 8, 9, 10]", "assert comb_sort([11, 22, 33, 44, 44, 55, 66, 77, 88, 99]) == [11, 22, 33, 44, 44, 55, 66, 77, 88, 99]", "assert comb_sort([11, 22, 33, 33, 55, 66, 77, 88, 99, 9999999999]) == [11, 22, 33, 33, 55, 66, 77, 88, 99, 9999999999]", "assert comb_sort([11, 22, 32, 33, 33, 55, 66, 66, 77, 77]) == [11, 22, 32, 33, 33, 55, 66, 66, 77, 77]", "assert comb_sort([11, 22, 22, 31, 32, 32, 33, 55, 66, 77, 88]) == [11, 22, 22, 31, 32, 32, 33, 55, 66, 77, 88]", "assert comb_sort([1, 2, 3, 4, 5, 6, 6, 7, 9, 9, 10]) == [1, 2, 3, 4, 5, 6, 6, 7, 9, 9, 10]", "assert comb_sort([11, 11, 22, 33, 44, 55, 66, 66, 88, 99]) == [11, 11, 22, 33, 44, 55, 66, 66, 88, 99]", "assert comb_sort([11, 11, 22, 44, 55, 66, 66, 89, 99]) == [11, 11, 22, 44, 55, 66, 66, 89, 99]", "assert comb_sort([2, 3, 4, 5, 6, 6, 7, 9, 9, 10, 6999]) == [2, 3, 4, 5, 6, 6, 7, 9, 9, 10, 6999]", "assert comb_sort([11, 11, 44, 55, 66, 66, 89, 99]) == [11, 11, 44, 55, 66, 66, 89, 99]", "assert comb_sort([11, 11, 22, 22, 22, 33, 55, 66, 77, 99, 10000000000]) == [11, 11, 22, 22, 22, 33, 55, 66, 77, 99, 10000000000]", "assert comb_sort([1000000000, 2000000000, 2000000000, 10000000000]) == [1000000000, 2000000000, 2000000000, 10000000000]", "assert comb_sort([1, 2, 3, 4, 4, 7, 8, 8]) == [1, 2, 3, 4, 4, 7, 8, 8]", "assert comb_sort([1, 2, 3, 4, 7, 8, 8, 77]) == [1, 2, 3, 4, 7, 8, 8, 77]", "assert comb_sort([500, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 9000, 10000]) == [500, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 9000, 10000]", "assert comb_sort([11, 22, 33, 44, 55, 66, 66, 77, 88, 99]) == [11, 22, 33, 44, 55, 66, 66, 77, 88, 99]", "assert comb_sort([1, 2, 3, 4, 4, 5, 7, 8, 9, 9, 10]) == [1, 2, 3, 4, 4, 5, 7, 8, 9, 9, 10]", "assert comb_sort([1, 2, 2, 3, 4, 7, 8, 8, 1000000000]) == [1, 2, 2, 3, 4, 7, 8, 8, 1000000000]", "assert comb_sort([1999999999, 2000000000, 5000000000, 10000000000]) == [1999999999, 2000000000, 5000000000, 10000000000]", "assert comb_sort([1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 10]", "assert comb_sort([11, 33, 44, 44, 55, 66, 77, 88, 88, 99]) == [11, 33, 44, 44, 55, 66, 77, 88, 88, 99]", "assert comb_sort([11, 22, 31, 32, 33, 55, 66, 67, 77, 77]) == [11, 22, 31, 32, 33, 55, 66, 67, 77, 77]", "assert comb_sort([11, 22, 33, 33, 44, 55, 66, 66, 77, 88, 99]) == [11, 22, 33, 33, 44, 55, 66, 66, 77, 88, 99]", "assert comb_sort([8, 11, 22, 33, 44, 66, 77, 88, 99]) == [8, 11, 22, 33, 44, 66, 77, 88, 99]", "assert comb_sort([500, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 8000, 9000, 10000]) == [500, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 8000, 9000, 10000]", "assert comb_sort([1, 2, 3, 4, 4, 5, 7, 8, 9, 9, 10, 99]) == [1, 2, 3, 4, 4, 5, 7, 8, 9, 9, 10, 99]", "assert comb_sort([11, 33, 44, 44, 55, 66, 77, 88, 88, 99, 99]) == [11, 33, 44, 44, 55, 66, 77, 88, 88, 99, 99]", "assert comb_sort([99, 6999, 444444444, 777777777, 888888888, 888888889, 999999999]) == [99, 6999, 444444444, 777777777, 888888888, 888888889, 999999999]", "assert comb_sort([1999999999, 2000000000, 9999999999, 10000000000]) == [1999999999, 2000000000, 9999999999, 10000000000]", "assert comb_sort([1, 2, 3, 4, 4, 5, 6, 7, 8, 9, 10]) == [1, 2, 3, 4, 4, 5, 6, 7, 8, 9, 10]", "assert comb_sort([1, 2, 3, 4, 5, 6, 6, 8, 9, 9, 10]) == [1, 2, 3, 4, 5, 6, 6, 8, 9, 9, 10]", "assert comb_sort([11, 22, 33, 33, 44, 55, 65, 66, 77, 88, 99]) == [11, 22, 33, 33, 44, 55, 65, 66, 77, 88, 99]", "assert comb_sort([1, 2, 3, 5, 6, 7, 9, 9, 10, 888888888, 888888888]) == [1, 2, 3, 5, 6, 7, 9, 9, 10, 888888888, 888888888]", "assert comb_sort([1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 10]", "assert comb_sort([11, 22, 33, 33, 44, 55, 65, 66, 77, 88, 99, 4000]) == [11, 22, 33, 33, 44, 55, 65, 66, 77, 88, 99, 4000]", "assert comb_sort([11, 22, 33, 33, 44, 55, 65, 66, 77, 88, 99, 4000, 444444444]) == [11, 22, 33, 33, 44, 55, 65, 66, 77, 88, 99, 4000, 444444444]", "assert comb_sort([1999999999, 2000000000, 5000000000, 5000000000, 10000000000]) == [1999999999, 2000000000, 5000000000, 5000000000, 10000000000]", "assert comb_sort([11, 22, 31, 32, 33, 55, 66, 66, 66, 77, 77]) == [11, 22, 31, 32, 33, 55, 66, 66, 66, 77, 77]", "assert comb_sort([22, 33, 1999999999, 2000000000, 10000000000]) == [22, 33, 1999999999, 2000000000, 10000000000]", "assert comb_sort([11, 22, 33, 33, 44, 55, 65, 66, 77, 99]) == [11, 22, 33, 33, 44, 55, 65, 66, 77, 99]", "assert comb_sort([500, 500, 1000, 3000, 3001, 4000, 5000, 6000, 7000, 7001, 8000, 8000, 9000, 10000]) == [500, 500, 1000, 3000, 3001, 4000, 5000, 6000, 7000, 7001, 8000, 8000, 9000, 10000]", "assert comb_sort([1, 23, 33, 1999999999, 2000000000, 9999999999, 10000000000]) == [1, 23, 33, 1999999999, 2000000000, 9999999999, 10000000000]", "assert comb_sort([11, 33, 43, 44, 54, 55, 66, 77, 77, 88, 88, 99, 99]) == [11, 33, 43, 44, 54, 55, 66, 77, 77, 88, 88, 99, 99]", "assert comb_sort([10, 22, 33, 33, 44, 55, 65, 65, 66, 77, 99]) == [10, 22, 33, 33, 44, 55, 65, 65, 66, 77, 99]", "assert comb_sort([55, 1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000, 10000]) == [55, 1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000, 10000]", "assert comb_sort([1, 2, 3, 4, 4, 4, 7, 7, 8]) == [1, 2, 3, 4, 4, 4, 7, 7, 8]", "assert comb_sort([11, 22, 33, 44, 44, 55, 66, 66, 77, 88, 99]) == [11, 22, 33, 44, 44, 55, 66, 66, 77, 88, 99]", "assert comb_sort([11, 22, 32, 33, 34, 66, 66, 77, 77]) == [11, 22, 32, 33, 34, 66, 66, 77, 77]", "assert comb_sort([1, 2, 3, 4, 4, 7, 7, 8, 8]) == [1, 2, 3, 4, 4, 7, 7, 8, 8]", "assert comb_sort([1, 2, 3, 4, 4, 5, 7, 8, 9, 10, 100]) == [1, 2, 3, 4, 4, 5, 7, 8, 9, 10, 100]", "assert comb_sort([99, 6999, 444444444, 777777777, 888888888, 888888888, 888888889, 999999999]) == [99, 6999, 444444444, 777777777, 888888888, 888888888, 888888889, 999999999]", "assert comb_sort([11, 11, 44, 55, 66, 89, 99]) == [11, 11, 44, 55, 66, 89, 99]", "assert comb_sort([1, 2, 3, 4, 4, 5, 6, 7, 8, 9, 9, 10]) == [1, 2, 3, 4, 4, 5, 6, 7, 8, 9, 9, 10]", "assert comb_sort([11, 22, 33, 33, 65, 66, 77, 88, 99, 4000, 444444444]) == [11, 22, 33, 33, 65, 66, 77, 88, 99, 4000, 444444444]", "assert comb_sort([11, 22, 23, 31, 32, 32, 33, 55, 66, 77, 88]) == [11, 22, 23, 31, 32, 32, 33, 55, 66, 77, 88]", "assert comb_sort([99, 6999, 444444444, 888888888, 888888889, 999999999, 9999999999]) == [99, 6999, 444444444, 888888888, 888888889, 999999999, 9999999999]", "assert comb_sort([11, 11, 44, 44, 55, 66, 66, 89, 89, 99]) == [11, 11, 44, 44, 55, 66, 66, 89, 89, 99]", "assert comb_sort([1, 2, 3, 4, 4, 5, 6, 8, 9, 10, 888888889]) == [1, 2, 3, 4, 4, 5, 6, 8, 9, 10, 888888889]", "assert comb_sort([11, 22, 32, 33, 33, 55, 66, 77, 88, 9999999999]) == [11, 22, 32, 33, 33, 55, 66, 77, 88, 9999999999]", "assert comb_sort([11, 22, 32, 33, 33, 66, 66, 88, 9999999999]) == [11, 22, 32, 33, 33, 66, 66, 88, 9999999999]", "assert comb_sort([11, 22, 32, 33, 33, 55, 66, 77, 88, 9999999999]) == [11, 22, 32, 33, 33, 55, 66, 77, 88, 9999999999]", "assert comb_sort([4000, 444444444, 1000000000, 2000000000, 2000000000, 5000000000, 10000000000]) == [4000, 444444444, 1000000000, 2000000000, 2000000000, 5000000000, 10000000000]", "assert comb_sort([11, 22, 33, 44, 55, 66, 77, 88, 99, 10000000000]) == [11, 22, 33, 44, 55, 66, 77, 88, 99, 10000000000]", "assert comb_sort([11, 22, 32, 33, 33, 33, 55, 66, 77, 77]) == [11, 22, 32, 33, 33, 33, 55, 66, 77, 77]", "assert comb_sort([11, 22, 33, 33, 44, 55, 65, 77, 99]) == [11, 22, 33, 33, 44, 55, 65, 77, 99]", "assert comb_sort([11, 22, 33, 33, 65, 66, 77, 88, 99, 500, 501, 4000, 444444444]) == [11, 22, 33, 33, 65, 66, 77, 88, 99, 500, 501, 4000, 444444444]", "assert comb_sort([55, 777777777, 888888888, 999999999]) == [55, 777777777, 888888888, 999999999]", "assert comb_sort([11, 33, 33, 44, 55, 65, 66, 77, 77, 99, 4000, 444444444]) == [11, 33, 33, 44, 55, 65, 66, 77, 77, 99, 4000, 444444444]", "assert comb_sort([1, 2, 3, 4, 4, 4, 5, 7, 8, 9, 9, 9, 10, 99]) == [1, 2, 3, 4, 4, 4, 5, 7, 8, 9, 9, 9, 10, 99]", "assert comb_sort([11, 23, 33, 44, 55, 66, 77, 88, 99, 10000000000]) == [11, 23, 33, 44, 55, 66, 77, 88, 99, 10000000000]", "assert comb_sort([44, 500, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 9000, 10000]) == [44, 500, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 9000, 10000]", "assert comb_sort([11, 22, 31, 32, 33, 33, 55, 66, 66, 77, 77]) == [11, 22, 31, 32, 33, 33, 55, 66, 66, 77, 77]", "assert comb_sort([1, 2, 3, 4, 5, 5, 6, 6, 8, 9, 9, 10]) == [1, 2, 3, 4, 5, 5, 6, 6, 8, 9, 9, 10]", "assert comb_sort([11, 22, 31, 32, 32, 33, 55, 66, 77, 88]) == [11, 22, 31, 32, 32, 33, 55, 66, 77, 88]", "assert comb_sort([1999999999, 2000000000, 2000000000, 9999999999, 10000000000]) == [1999999999, 2000000000, 2000000000, 9999999999, 10000000000]", "assert comb_sort([444444444, 777777777, 888888888, 999999999, 1000000000]) == [444444444, 777777777, 888888888, 999999999, 1000000000]", "assert comb_sort([65, 4000, 444444444, 1000000000, 2000000000, 2000000000, 5000000000, 10000000000]) == [65, 4000, 444444444, 1000000000, 2000000000, 2000000000, 5000000000, 10000000000]", "assert comb_sort([33, 33, 44, 55, 65, 66, 77, 99, 4000, 444444444]) == [33, 33, 44, 55, 65, 66, 77, 99, 4000, 444444444]", "assert comb_sort([500, 500, 1000, 3000, 3001, 4000, 5000, 6000, 7000, 7001, 8000, 9000, 10000]) == [500, 500, 1000, 3000, 3001, 4000, 5000, 6000, 7000, 7001, 8000, 9000, 10000]", "assert comb_sort([500, 999, 1500, 1500, 3000]) == [500, 999, 1500, 1500, 3000]", "assert comb_sort([5, 11, 33, 33, 44, 55, 66, 77, 77, 99, 4000, 444444444]) == [5, 11, 33, 33, 44, 55, 66, 77, 77, 99, 4000, 444444444]", "assert comb_sort([44, 100, 500, 500, 1000, 3001, 5000, 6000, 7000, 8000, 9000, 10000]) == [44, 100, 500, 500, 1000, 3001, 5000, 6000, 7000, 8000, 9000, 10000]", "assert comb_sort([1, 2, 3, 4, 4, 4, 4, 5, 7, 8, 8, 9, 9, 9, 10, 99]) == [1, 2, 3, 4, 4, 4, 4, 5, 7, 8, 8, 9, 9, 9, 10, 99]", "assert comb_sort([3, 11, 22, 31, 32, 33, 55, 66, 66, 77, 77]) == [3, 11, 22, 31, 32, 33, 55, 66, 66, 77, 77]", "assert comb_sort([11, 11, 22, 33, 44, 66, 66, 88, 99]) == [11, 11, 22, 33, 44, 66, 66, 88, 99]", "assert comb_sort([1, 2, 3, 3, 4, 5, 6, 7, 8, 8, 9, 9, 10]) == [1, 2, 3, 3, 4, 5, 6, 7, 8, 8, 9, 9, 10]", "assert comb_sort([100, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 8000, 9000, 10000]) == [100, 500, 1000, 3001, 4000, 5000, 6000, 7000, 8000, 8000, 9000, 10000]", "assert comb_sort([8, 11, 22, 31, 32, 33, 33, 55, 66, 66, 77, 77, 77]) == [8, 11, 22, 31, 32, 33, 33, 55, 66, 66, 77, 77, 77]", "assert comb_sort([1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 9, 10]) == [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 9, 10]", "assert comb_sort([4, 99, 6999, 444444444, 777777777, 888888888, 888888888, 888888889, 999999999]) == [4, 99, 6999, 444444444, 777777777, 888888888, 888888888, 888888889, 999999999]", "assert comb_sort([11, 22, 30, 32, 32, 33, 55, 66, 77, 88, 5000000000]) == [11, 22, 30, 32, 32, 33, 55, 66, 77, 88, 5000000000]", "assert comb_sort([1, 2, 5, 6, 7, 8, 9, 9, 10, 888888888, 888888888]) == [1, 2, 5, 6, 7, 8, 9, 9, 10, 888888888, 888888888]", "assert comb_sort([11, 33, 44, 44, 55, 66, 77, 88, 88, 99, 100]) == [11, 33, 44, 44, 55, 66, 77, 88, 88, 99, 100]", "assert comb_sort([11, 32, 33, 33, 44, 55, 65, 66, 77, 77, 99, 4000, 444444444]) == [11, 32, 33, 33, 44, 55, 65, 66, 77, 77, 99, 4000, 444444444]", "assert comb_sort([64, 65, 4000, 444444444, 1000000000, 2000000000, 2000000000, 5000000000, 10000000000]) == [64, 65, 4000, 444444444, 1000000000, 2000000000, 2000000000, 5000000000, 10000000000]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the given number can be represented as the difference of two squares or not.\nassert dif_Square(5) == True\nYour code should pass the test:\nassert dif_Square(5) == True", "test_list": [ "assert dif_Square(5) == True", "assert dif_Square(10) == False", "assert dif_Square(15) == True", "assert dif_Square(991) == True", "assert dif_Square(567) == True", "assert dif_Square(13) == True", "assert dif_Square(24) == True", "assert dif_Square(568) == True", "assert dif_Square(992) == True", "assert dif_Square(569) == True", "assert dif_Square(990) == False", "assert dif_Square(566) == False", "assert dif_Square(True) == True", "assert dif_Square(989) == True", "assert dif_Square(25) == True", "assert dif_Square(14) == False", "assert dif_Square(565) == True", "assert dif_Square(23) == True", "assert dif_Square(15) == True", "assert dif_Square(988) == True", "assert dif_Square(12) == True", "assert dif_Square(11) == True", "assert dif_Square(16) == True", "assert dif_Square(17) == True", "assert dif_Square(993) == True", "assert dif_Square(564) == True", "assert dif_Square(563) == True", "assert dif_Square(22) == False", "assert dif_Square(10) == False", "assert dif_Square(994) == False", "assert dif_Square(9) == True", "assert dif_Square(21) == True", "assert dif_Square(995) == True", "assert dif_Square(996) == True", "assert dif_Square(20) == True", "assert dif_Square(18) == False", "assert dif_Square(997) == True", "assert dif_Square(8) == True", "assert dif_Square(987) == True", "assert dif_Square(45) == True", "assert dif_Square(562) == False", "assert dif_Square(570) == False", "assert dif_Square(26) == False", "assert dif_Square(561) == True", "assert dif_Square(998) == False", "assert dif_Square(19) == True", "assert dif_Square(77) == True", "assert dif_Square(7) == True", "assert dif_Square(76) == True", "assert dif_Square(560) == True", "assert dif_Square(986) == False", "assert dif_Square(27) == True", "assert dif_Square(44) == True", "assert dif_Square(571) == True", "assert dif_Square(28) == True", "assert dif_Square(75) == True", "assert dif_Square(46) == False", "assert dif_Square(78) == False", "assert dif_Square(74) == False", "assert dif_Square(985) == True", "assert dif_Square(29) == True", "assert dif_Square(572) == True", "assert dif_Square(984) == True", "assert dif_Square(73) == True", "assert dif_Square(983) == True", "assert dif_Square(79) == True", "assert dif_Square(573) == True", "assert dif_Square(47) == True", "assert dif_Square(50) == False", "assert dif_Square(982) == False", "assert dif_Square(981) == True", "assert dif_Square(5) == True", "assert dif_Square(71) == True", "assert dif_Square(49) == True", "assert dif_Square(80) == True", "assert dif_Square(51) == True", "assert dif_Square(999) == True", "assert dif_Square(30) == False", "assert dif_Square(81) == True", "assert dif_Square(6) == False", "assert dif_Square(1000) == True", "assert dif_Square(980) == True", "assert dif_Square(1001) == True", "assert dif_Square(1002) == False", "assert dif_Square(82) == False", "assert dif_Square(1003) == True", "assert dif_Square(52) == True", "assert dif_Square(574) == False", "assert dif_Square(53) == True", "assert dif_Square(1004) == True", "assert dif_Square(70) == False", "assert dif_Square(575) == True", "assert dif_Square(69) == True", "assert dif_Square(576) == True", "assert dif_Square(979) == True", "assert dif_Square(83) == True", "assert dif_Square(72) == True", "assert dif_Square(68) == True", "assert dif_Square(43) == True", "assert dif_Square(89) == True", "assert dif_Square(42) == False", "assert dif_Square(977) == True", "assert dif_Square(33) == True", "assert dif_Square(4) == True", "assert dif_Square(36) == True", "assert dif_Square(978) == False", "assert dif_Square(3) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to add a dictionary to the tuple. The output should be a tuple.\nassert add_dict_to_tuple((4, 5, 6), {\"MSAM\" : 1, \"is\" : 2, \"best\" : 3} ) == (4, 5, 6, {'MSAM': 1, 'is': 2, 'best': 3})\nYour code should pass the test:\nassert add_dict_to_tuple((4, 5, 6), {\"MSAM\" : 1, \"is\" : 2, \"best\" : 3} ) == (4, 5, 6, {'MSAM': 1, 'is': 2, 'best': 3})", "test_list": [ "assert add_dict_to_tuple((4, 5, 6), {\"MSAM\" : 1, \"is\" : 2, \"best\" : 3} ) == (4, 5, 6, {'MSAM': 1, 'is': 2, 'best': 3})", "assert add_dict_to_tuple((1, 2, 3), {\"UTS\" : 2, \"is\" : 3, \"Worst\" : 4} ) == (1, 2, 3, {'UTS': 2, 'is': 3, 'Worst': 4})", "assert add_dict_to_tuple((8, 9, 10), {\"POS\" : 3, \"is\" : 4, \"Okay\" : 5} ) == (8, 9, 10, {'POS': 3, 'is': 4, 'Okay': 5})", "assert add_dict_to_tuple((), {}) == ({},)", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3]), {'key': 'value'}) == (1, 'abc', [1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}}) == (1, 'abc', [1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}}) == (7, {'a': 1, 'b': 2}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}})", "assert add_dict_to_tuple((10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def']), {'key': 'value'}) == (10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def'], {'key': 'value'})", "assert add_dict_to_tuple((10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def']), {}) == (10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def'], {})", "assert add_dict_to_tuple((1, [1, 2, 3]), {'key': 'value'}) == (1, [1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple(('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd'), {}) == ('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd', {})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (7, {'a': 1, 'b': 2}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((10, {}), {'key': 'value'}) == (10, {}, {'key': 'value'})", "assert add_dict_to_tuple((10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}), {}) == (10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}, {})", "assert add_dict_to_tuple((1, 'abc', 'aabc', [1, 2, 3]), {'key': 'value'}) == (1, 'abc', 'aabc', [1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple((1, [1, 2, 3]), {}) == (1, [1, 2, 3], {})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3], [1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}, 'kekeyy': 'key'}) == (1, 'abc', [1, 2, 3], [1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}, 'kekeyy': 'key'})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3]), {}) == (1, 'abc', [1, 2, 3], {})", "assert add_dict_to_tuple((10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}), {'-62': -83, '0': 96}) == (10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}, {'-62': -83, '0': 96})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, 6, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (7, {'a': 1, 'b': 2}, 6, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((1, [1, 2, 3]), {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85}) == (1, [1, 2, 3], {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85})", "assert add_dict_to_tuple((10, {}, {}), {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa'}) == (10, {}, {}, {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa'})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3], [1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}, 'kekeyy': 'key', 'keyy': 'cAEX'}) == (1, 'abc', [1, 2, 3], [1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}, 'kekeyy': 'key', 'keyy': 'cAEX'})", "assert add_dict_to_tuple((10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}, 10), {'-51': -26.064919618292407, '5': -62.470824790640236, '82': -43.880983848693766, '3': -57.46866221421249, '8': -98.59549206630514, '4': -13.677001976012122, '-9': -56.87579256561883, '63': 22.6104424104727}) == (10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}, 10, {'-51': -26.064919618292407, '5': -62.470824790640236, '82': -43.880983848693766, '3': -57.46866221421249, '8': -98.59549206630514, '4': -13.677001976012122, '-9': -56.87579256561883, '63': 22.6104424104727})", "assert add_dict_to_tuple(('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd'), {'a': False, 'aa': False}) == ('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd', {'a': False, 'aa': False})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'}) == (7, {'a': 1, 'b': 2}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'})", "assert add_dict_to_tuple((82, [2, 1, 2, 3]), {}) == (82, [2, 1, 2, 3], {})", "assert add_dict_to_tuple((1, [1, 2, 3, 1], [1, 2, 3, 1]), {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85}) == (1, [1, 2, 3, 1], [1, 2, 3, 1], {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85})", "assert add_dict_to_tuple(('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd'), {'a': False, 'aa': False, 'adefa': False}) == ('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd', {'a': False, 'aa': False, 'adefa': False})", "assert add_dict_to_tuple((7, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'neseted_value'}, 'SQQ': {'nested_key': 'neseted_value'}}}) == (7, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'neseted_value'}, 'SQQ': {'nested_key': 'neseted_value'}}})", "assert add_dict_to_tuple((82, [2, 1, 2, 3]), {'-73': None, '-16': -48.93563897978312}) == (82, [2, 1, 2, 3], {'-73': None, '-16': -48.93563897978312})", "assert add_dict_to_tuple(('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd'), {}) == ('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd', {})", "assert add_dict_to_tuple((82, 82), {'-73': None, '-16': -48.93563897978312}) == (82, 82, {'-73': None, '-16': -48.93563897978312})", "assert add_dict_to_tuple((7, {'b': 2}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'}) == (7, {'b': 2}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'})", "assert add_dict_to_tuple((1, [1, 2, 3], [1, 2, 3]), {'-57.46866221421249': 'cAEX', '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85}) == (1, [1, 2, 3], [1, 2, 3], {'-57.46866221421249': 'cAEX', '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85})", "assert add_dict_to_tuple((1, 'abc', 'inner_key', 'aabc', [1, 2, 3]), {'key': 'value'}) == (1, 'abc', 'inner_key', 'aabc', [1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple((7, {'a': 1}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (7, {'a': 1}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, 6, [3, 'xyz']), {'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (7, {'a': 1, 'b': 2}, 6, [3, 'xyz'], {'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((82, [2, 1, 2, 3]), {'kaab': 'cAEX', 'kekeyy': 'b', 'aa': 'bnested_key'}) == (82, [2, 1, 2, 3], {'kaab': 'cAEX', 'kekeyy': 'b', 'aa': 'bnested_key'})", "assert add_dict_to_tuple((-76, 1, [1, 2, 3]), {'18.21087688747103': False, '-43.880983848693766': False, '-81.59221120935743': True, '-37.25422566711521': True, '-44.45585276563992': False}) == (-76, 1, [1, 2, 3], {'18.21087688747103': False, '-43.880983848693766': False, '-81.59221120935743': True, '-37.25422566711521': True, '-44.45585276563992': False})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2, 'nested_dict': 3}, [3, 'xyz'], [3, 'xyz']), {'key': 'value', 'nested_dict': {}, 'nesvalued_dict': {}, 'nesvalued_dic': {}}) == (7, {'a': 1, 'b': 2, 'nested_dict': 3}, [3, 'xyz'], [3, 'xyz'], {'key': 'value', 'nested_dict': {}, 'nesvalued_dict': {}, 'nesvalued_dic': {}})", "assert add_dict_to_tuple((10, {}), {}) == (10, {}, {})", "assert add_dict_to_tuple((10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}, 10), {'-51': -26.064919618292407, '82': -43.880983848693766, '3': -57.46866221421249, '8': -98.59549206630514, '4': -13.677001976012122, '-9': -56.87579256561883, '63': 22.6104424104727}) == (10, {'2': False, '31': True, '3': False, '-11': True, '10': True}, {'5': 'AFTEHcLG', '-13': 'ORUcTd', '4': 'EDVGrA', '-83': ''}, {}, 10, {'-51': -26.064919618292407, '82': -43.880983848693766, '3': -57.46866221421249, '8': -98.59549206630514, '4': -13.677001976012122, '-9': -56.87579256561883, '63': 22.6104424104727})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2, 'cYnnIa': 3}, 6, [3, 'xyz'], 6), {'nested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'nesvalued_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'enested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}}) == (7, {'a': 1, 'b': 2, 'cYnnIa': 3}, 6, [3, 'xyz'], 6, {'nested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'nesvalued_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'enested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2, 'nested_dict': 3}, [3, 'xyz'], [3, 'xyz'], {'a': 1, 'b': 2, 'nested_dict': 3}), {'key': 'value', 'nested_dict': {}, 'nesvalued_dic': {}}) == (7, {'a': 1, 'b': 2, 'nested_dict': 3}, [3, 'xyz'], [3, 'xyz'], {'a': 1, 'b': 2, 'nested_dict': 3}, {'key': 'value', 'nested_dict': {}, 'nesvalued_dic': {}})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2, 'nested_dict': 3}, [3, 'xyz'], [3, 'xyz']), {'key': 'value', 'nested_dict': {}, 'nesvalued_dic': {}}) == (7, {'a': 1, 'b': 2, 'nested_dict': 3}, [3, 'xyz'], [3, 'xyz'], {'key': 'value', 'nested_dict': {}, 'nesvalued_dic': {}})", "assert add_dict_to_tuple((10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def']), {'key': 'value', 'value': 'valuee'}) == (10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def'], {'key': 'value', 'value': 'valuee'})", "assert add_dict_to_tuple((2, [2, 1, 2, 3]), {}) == (2, [2, 1, 2, 3], {})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2, 'cYnnIa': 3}, 6, [3, 'xyz'], 6, 7), {'nested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'nesvalued_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'enested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}}) == (7, {'a': 1, 'b': 2, 'cYnnIa': 3}, 6, [3, 'xyz'], 6, 7, {'nested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'nesvalued_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}, 'enested_dict': {'inner_key': {}, 'inner_rkey': {'-77': -56.87579256561883, '10': 99.0567328929331, '-11': -83.31276966362807, '3': 40.50854089052089, '46': 3.776276522383597, '-62': 71.89522254668083, '-38': -43.880983848693766, '38': 99.0567328929331, '-52': -13.677001976012122, '91': -17.960081004247954}, 'inner_cYnnIakey': {'80': 2.239775811724769, '5': 91.49834284610671, '8': -31.270276764825923, '86': -91.79712960897837, '-62': 99.0567328929331, '11': -44.45585276563992, '19': -80.57371109397377}}})", "assert add_dict_to_tuple((10, {}, {}), {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa', 'kxyzey': 'vaelue'}) == (10, {}, {}, {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa', 'kxyzey': 'vaelue'})", "assert add_dict_to_tuple((1, [1, 1, 3, 1], [1, 1, 3, 1]), {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85}) == (1, [1, 1, 3, 1], [1, 1, 3, 1], {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85})", "assert add_dict_to_tuple(({'a': 1, 'b': 2},), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == ({'a': 1, 'b': 2}, {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((1, [1, 1, 2, 3], 'abc', [1, 1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}}) == (1, [1, 1, 2, 3], 'abc', [1, 1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}})", "assert add_dict_to_tuple((), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == ({'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}},)", "assert add_dict_to_tuple((32, {}), {'key': 'value'}) == (32, {}, {'key': 'value'})", "assert add_dict_to_tuple((10, {}), {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa', 'kxyzey': 'vaelue'}) == (10, {}, {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa', 'kxyzey': 'vaelue'})", "assert add_dict_to_tuple((7, 6, {'a': 1, 'b': 2}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (7, 6, {'a': 1, 'b': 2}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((1, 0, 'abc'), {}) == (1, 0, 'abc', {})", "assert add_dict_to_tuple((82, [2, 1, 2, 3]), {'inner_cYnnIakey': 'neseted_value', 'i': 'FYypOF'}) == (82, [2, 1, 2, 3], {'inner_cYnnIakey': 'neseted_value', 'i': 'FYypOF'})", "assert add_dict_to_tuple((10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def']), {'key': 'value', 'value': 'valuee', 'kaabcey': 'valvSQQueue'}) == (10, {'nested_dict': {'inner_key': [1, 2, 3]}}, [4, 'def'], {'key': 'value', 'value': 'valuee', 'kaabcey': 'valvSQQueue'})", "assert add_dict_to_tuple((10, {}, {}), {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kxyzey': 'vaelue'}) == (10, {}, {}, {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kxyzey': 'vaelue'})", "assert add_dict_to_tuple((-76, 1, [1, 2, 3]), {'18.21087688747103': False, '-43.880983848693766': False, '-81.59221120935743': True, '-37.25422566711521': False, '-44.45585276563992': False, '-48.93563897978312': False}) == (-76, 1, [1, 2, 3], {'18.21087688747103': False, '-43.880983848693766': False, '-81.59221120935743': True, '-37.25422566711521': False, '-44.45585276563992': False, '-48.93563897978312': False})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3]), {'key': 'valuae'}) == (1, 'abc', [1, 2, 3], {'key': 'valuae'})", "assert add_dict_to_tuple((2, [1, 2, 3]), {'key': 'value'}) == (2, [1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3]), {'key': 'inner_rkey', 'nested_dict': {'inner_key': [4, 5, 6]}}) == (1, 'abc', [1, 2, 3], {'key': 'inner_rkey', 'nested_dict': {'inner_key': [4, 5, 6]}})", "assert add_dict_to_tuple((10, {}, 10), {'key': 'value', 'kek': 'vauue'}) == (10, {}, 10, {'key': 'value', 'kek': 'vauue'})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, [3, 'xyz'], [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (7, {'a': 1, 'b': 2}, [3, 'xyz'], [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple(({'b': 2}, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'}) == ({'b': 2}, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'})", "assert add_dict_to_tuple(('WXeNtT', 'tJ', 'SQQ', 'MxSKJ', 'XK', 'abc', 'ja', 'gibJM', 'TRDUDpQp', 'FYypOF'), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == ('WXeNtT', 'tJ', 'SQQ', 'MxSKJ', 'XK', 'abc', 'ja', 'gibJM', 'TRDUDpQp', 'FYypOF', {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((10, [1, 2, 3]), {'key': 'value'}) == (10, [1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple((8, 7, {'a': 1, 'b': 2}, 6, [3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == (8, 7, {'a': 1, 'b': 2}, 6, [3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((1, [1, 1, 2, 3], 'abc', [1, 1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 6], 'innerkey': [4, 6]}, 'WXeNtT': {'inner_key': [4, 6], 'innerkey': [4, 6]}}) == (1, [1, 1, 2, 3], 'abc', [1, 1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 6], 'innerkey': [4, 6]}, 'WXeNtT': {'inner_key': [4, 6], 'innerkey': [4, 6]}})", "assert add_dict_to_tuple(('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'Ia', 'AFTEHcLG', 'ORUcTd'), {}) == ('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'Ia', 'AFTEHcLG', 'ORUcTd', {})", "assert add_dict_to_tuple((1, [1, 1, 2, 3], 'abc', [1, 1, 2, 3]), {'key': 'value'}) == (1, [1, 1, 2, 3], 'abc', [1, 1, 2, 3], {'key': 'value'})", "assert add_dict_to_tuple((-76, 1, [1, 2, 3]), {'-43.880983848693766': False, '-81.59221120935743': True, '-37.25422566711521': True, '-44.45585276563992': False}) == (-76, 1, [1, 2, 3], {'-43.880983848693766': False, '-81.59221120935743': True, '-37.25422566711521': True, '-44.45585276563992': False})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, [3, 'xyz']), {'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'}) == (7, {'a': 1, 'b': 2}, [3, 'xyz'], {'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'})", "assert add_dict_to_tuple((7, [2, 3, 'xyz'], {'b': 2}, [2, 3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'}) == (7, [2, 3, 'xyz'], {'b': 2}, [2, 3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, 6, [3, 'xyz']), {'key': 'value', 'nesvalued_dict': {'inner_key': {}, 'innner_key': {'82': 'MxSKJ', '79': 'valvSQQueue', '57': 'def', '85': '', '-51': 'ORUcTd'}}}) == (7, {'a': 1, 'b': 2}, 6, [3, 'xyz'], {'key': 'value', 'nesvalued_dict': {'inner_key': {}, 'innner_key': {'82': 'MxSKJ', '79': 'valvSQQueue', '57': 'def', '85': '', '-51': 'ORUcTd'}}})", "assert add_dict_to_tuple((32, {}), {}) == (32, {}, {})", "assert add_dict_to_tuple((10, {}, 31, 10), {'key': 'value', 'kek': 'vauue'}) == (10, {}, 31, 10, {'key': 'value', 'kek': 'vauue'})", "assert add_dict_to_tuple((1, 'abc', 'aabc', [1, 2, 3]), {'key': 'valuee', 'kkey': 'cYnnIa'}) == (1, 'abc', 'aabc', [1, 2, 3], {'key': 'valuee', 'kkey': 'cYnnIa'})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}}) == (7, {'a': 1, 'b': 2}, {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}})", "assert add_dict_to_tuple((1, 'abc', [1, 2, 3], [1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}}) == (1, 'abc', [1, 2, 3], [1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 5, 6]}})", "assert add_dict_to_tuple((1, 'abcaabc', 'abc', [1, 2, 3], 1), {'key': 'valuae'}) == (1, 'abcaabc', 'abc', [1, 2, 3], 1, {'key': 'valuae'})", "assert add_dict_to_tuple((10, [1, 2, 3]), {'key': 'valu'}) == (10, [1, 2, 3], {'key': 'valu'})", "assert add_dict_to_tuple((82, 82, 82), {'-73': None, '-16': -48.93563897978312}) == (82, 82, 82, {'-73': None, '-16': -48.93563897978312})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, 6, {'a': 1, 'b': 2}), {'key': 'value', 'nesvalued_dict': {'inner_key': {}, 'innner_key': {'82': 'MxSKJ', '79': 'valvSQQueue', '57': 'def', '85': '', '-51': 'ORUcTd'}}}) == (7, {'a': 1, 'b': 2}, 6, {'a': 1, 'b': 2}, {'key': 'value', 'nesvalued_dict': {'inner_key': {}, 'innner_key': {'82': 'MxSKJ', '79': 'valvSQQueue', '57': 'def', '85': '', '-51': 'ORUcTd'}}})", "assert add_dict_to_tuple((10, {}, {'86': 29.039224599071417, '-89': -20.1520619052111}), {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa', 'kxyzey': 'vaelue'}) == (10, {}, {'86': 29.039224599071417, '-89': -20.1520619052111}, {'key': 'value', 'kaabcey': 'vaabclue', 'kaab': 'cYnIa', 'kaabcenested_dicty': 'cYnnIa', 'kxyzey': 'vaelue'})", "assert add_dict_to_tuple((1, 'abc'), {'key': 'value', 'bkey': 'nesvalued_dic'}) == (1, 'abc', {'key': 'value', 'bkey': 'nesvalued_dic'})", "assert add_dict_to_tuple(([2, 1, -77, 2, 3], 82, [2, 1, -77, 2, 3]), {'-73': None, '-16': -71.40888357559548}) == ([2, 1, -77, 2, 3], 82, [2, 1, -77, 2, 3], {'-73': None, '-16': -71.40888357559548})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, 8, [3, 'xyz']), {'nested_dict': {'inner_key': {}}}) == (7, {'a': 1, 'b': 2}, 8, [3, 'xyz'], {'nested_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((1, [1, 1, 3, 79]), {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85}) == (1, [1, 1, 3, 79], {'-57.46866221421249': 'cAEX', '91.49834284610671': -48.93563897978312, '99.0567328929331': 'a', '-31.270276764825923': 'xyz', '-62.470824790640236': -98.59549206630514, '-99.78882063540917': {'-13': 31, '80': -76, '6': 8, '10': -23, '32': -13, '4': 96}, '33.71452942222891': [-13, 31, -11, 83, -47, 96, -73], '86.29685027502393': 3, '-56.87579256561883': 85})", "assert add_dict_to_tuple((10, 10, [4, 'def']), {}) == (10, 10, [4, 'def'], {})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nesteAFTEHcLGd_value'}}, 'ekey': {'inner_key': {'nested_key': 'nesteAFTEHcLGd_value'}}}) == (7, {'a': 1, 'b': 2}, {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nesteAFTEHcLGd_value'}}, 'ekey': {'inner_key': {'nested_key': 'nesteAFTEHcLGd_value'}}})", "assert add_dict_to_tuple((False, False, False, True, False, True, True, True, False), {}) == (False, False, False, True, False, True, True, True, False, {})", "assert add_dict_to_tuple((10, {}, {}, [4, 'def'], [4, 'def']), {}) == (10, {}, {}, [4, 'def'], [4, 'def'], {})", "assert add_dict_to_tuple(({'a': 1, 'b': 2},), {'key': 'Ia', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}}) == ({'a': 1, 'b': 2}, {'key': 'Ia', 'nested_dict': {'inner_key': {}}, 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((1, [1, 2, 3]), {'-93.62973836264239': False, '31.54678173057721': -38, '-86.95752493778267': 6, '64.02217731139194': 91, '-30.698433024748795': -31.270276764825923, '-21.702575364709958': -57, '-83.31276966362807': 'SMVJ', '22.6104424104727': -81.59221120935743, '-81.76849770684896': 11, '33.71452942222891': 'ukdNnNYvA'}) == (1, [1, 2, 3], {'-93.62973836264239': False, '31.54678173057721': -38, '-86.95752493778267': 6, '64.02217731139194': 91, '-30.698433024748795': -31.270276764825923, '-21.702575364709958': -57, '-83.31276966362807': 'SMVJ', '22.6104424104727': -81.59221120935743, '-81.76849770684896': 11, '33.71452942222891': 'ukdNnNYvA'})", "assert add_dict_to_tuple((7, {'a': 1, 'b': 2}, 6, [3, 'xyz']), {'key': 'value', 'nesvalued_dict': {'inner_key': {}}}) == (7, {'a': 1, 'b': 2}, 6, [3, 'xyz'], {'key': 'value', 'nesvalued_dict': {'inner_key': {}}})", "assert add_dict_to_tuple((32, {}), {'-34': 49.042429142726576, '82': 48.96701994798619}) == (32, {}, {'-34': 49.042429142726576, '82': 48.96701994798619})", "assert add_dict_to_tuple((7, [83, 3, 'xyz']), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'neseted_value'}, 'SQQ': {'nested_key': 'neseted_value'}}}) == (7, [83, 3, 'xyz'], {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'neseted_value'}, 'SQQ': {'nested_key': 'neseted_value'}}})", "assert add_dict_to_tuple(('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'cYIa', 'AFTEHcLG', 'ORUcTd'), {'a': False, 'aa': False, 'adefa': False}) == ('ceof', 'SQQ', 'quQcknOYU', 'inner_key', 'cYIa', 'AFTEHcLG', 'ORUcTd', {'a': False, 'aa': False, 'adefa': False})", "assert add_dict_to_tuple((7, [2, 3, 'xyz'], {'b': 2}, [2, 3, 'xyz'], 7), {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'}) == (7, [2, 3, 'xyz'], {'b': 2}, [2, 3, 'xyz'], 7, {'key': 'value', 'nested_dict': {'inner_key': {'nested_key': 'nested_value'}}, 'cYnIa': 'vSQQue'})", "assert add_dict_to_tuple(('ceof', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd'), {'a': False, 'aa': False, 'adefa': False}) == ('ceof', 'inner_key', 'cYnIa', 'AFTEHcLG', 'ORUcTd', {'a': False, 'aa': False, 'adefa': False})", "assert add_dict_to_tuple((82, [2, 1, 2, 3]), {'-73': None}) == (82, [2, 1, 2, 3], {'-73': None})", "assert add_dict_to_tuple(({'1': False, '70': True, '29': False}, 32, {}, 32), {'-34': 49.042429142726576, '82': 48.96701994798619}) == ({'1': False, '70': True, '29': False}, 32, {}, 32, {'-34': 49.042429142726576, '82': 48.96701994798619})", "assert add_dict_to_tuple((False, False, False, True, False, True, True, True, False), {'-17.960081004247954': False, '64.02217731139194': False, '66.59197329455': True, '-81.76849770684896': True, '49.042429142726576': False, '-71.40888357559548': True, '-91.79712960897837': True, '-58.77697193704181': False}) == (False, False, False, True, False, True, True, True, False, {'-17.960081004247954': False, '64.02217731139194': False, '66.59197329455': True, '-81.76849770684896': True, '49.042429142726576': False, '-71.40888357559548': True, '-91.79712960897837': True, '-58.77697193704181': False})", "assert add_dict_to_tuple(('ceof', 'cYnIa', 'AFTEHcLG', 'ORUcTd'), {'a': False, 'aa': False, 'adefa': False, 'fadefa': False}) == ('ceof', 'cYnIa', 'AFTEHcLG', 'ORUcTd', {'a': False, 'aa': False, 'adefa': False, 'fadefa': False})", "assert add_dict_to_tuple(([1, 1, 2, 3], [1, 1, 2, 3]), {'key': 'value', 'nested_dict': {'inner_key': [4, 6], 'innerkey': [4, 6]}, 'WXeNtT': {'inner_key': [4, 6], 'innerkey': [4, 6]}}) == ([1, 1, 2, 3], [1, 1, 2, 3], {'key': 'value', 'nested_dict': {'inner_key': [4, 6], 'innerkey': [4, 6]}, 'WXeNtT': {'inner_key': [4, 6], 'innerkey': [4, 6]}})" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Given a square matrix of size N*N given as a list of lists, where each cell is associated with a specific cost. A path is defined as a specific sequence of cells that starts from the top-left cell move only right or down and ends on bottom right cell. We want to find a path with the maximum average over all existing paths. Average is computed as total cost divided by the number of cells visited in the path.\nassert maxAverageOfPath([[1, 2, 3], [6, 5, 4], [7, 3, 9]]) == 5.2\nYour code should pass the test:\nassert maxAverageOfPath([[1, 2, 3], [6, 5, 4], [7, 3, 9]]) == 5.2", "test_list": [ "assert maxAverageOfPath([[1, 2, 3], [6, 5, 4], [7, 3, 9]]) == 5.2", "assert maxAverageOfPath([[2, 3, 4], [7, 6, 5], [8, 4, 10]]) == 6.2", "assert maxAverageOfPath([[3, 4, 5], [8, 7, 6], [9, 5, 11]]) == 7.2", "assert maxAverageOfPath([[1, 2, 3], [4, 5, 6], [7, 8, 9]]) == 5.8", "assert maxAverageOfPath([[0, 0, 0], [0, 0, 0], [0, 0, 0]]) == 0.0", "assert maxAverageOfPath([[0, 0, 0], [0, 0, 0], [0, 0, -1]]) == -0.2", "assert maxAverageOfPath([[0, 0, 0], [0, 0, 1], [0, 0, -1]]) == 0.0", "assert maxAverageOfPath([[0, 0, 0], [0, 0, -1], [0, 0, -1]]) == -0.2", "assert maxAverageOfPath([[0, 0, -1], [0, 0, -1], [0, 0, -1]]) == -0.2", "assert maxAverageOfPath([[0, 0], [0, 0]]) == 0.0", "assert maxAverageOfPath([[-1, 0, 0], [-1, 0, 0], [0, 0, -1]]) == -0.4", "assert maxAverageOfPath([[0, 1, 0], [0, 0, -1], [0, 0, -1]]) == 0.0", "assert maxAverageOfPath([[1, 0, 0], [1, 0, 0], [1, 0, 0]]) == 0.6", "assert maxAverageOfPath([[0, 0, 0], [-1, 0, 0], [0, 0, -1]]) == -0.2", "assert maxAverageOfPath([[1, 1, -1, 0], [1, 1, -1, 0], [1, 1, -1, 0], [1, 1, -1, 0]]) == 0.5714285714285714", "assert maxAverageOfPath([[1, 1, -1, 0, 1], [1, 1, -1, 0, 1], [1, 1, -1, 0, 1], [1, 1, -1, 0, 1], [1, 1, -1, 0, 1]]) == 0.6666666666666666", "assert maxAverageOfPath([[1, 0], [1, 0]]) == 0.6666666666666666", "assert maxAverageOfPath([[0, 0, 0], [-1, 0, 0], [0, 0, 0]]) == 0.0", "assert maxAverageOfPath([[0, -1, 0], [0, -1, 0], [0, 0, -1]]) == -0.2", "assert maxAverageOfPath([[-1, 1, 0], [-1, 1, 0], [-1, 1, 0]]) == 0.4", "assert maxAverageOfPath([[1, 1, -1, 0, -1], [1, 1, -1, 0, -1], [1, 1, -1, 0, -1], [1, 1, -1, 0, -1], [1, 1, -1, 0, -1]]) == 0.4444444444444444", "assert maxAverageOfPath([[0, 0, 0], [1, 0, -1], [1, 0, -1]]) == 0.2", "assert maxAverageOfPath([[-1, 0, -1], [-1, 0, -1], [0, 0, -1]]) == -0.4", "assert maxAverageOfPath([[0, 0, -1], [-1, 0, 0], [0, 0, -1]]) == -0.2", "assert maxAverageOfPath([[1, -1, -1], [1, -1, -1], [1, -1, -1]]) == 0.2", "assert maxAverageOfPath([[-1, 0, 0], [0, 0, -1], [-1, 0, 0]]) == -0.2", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 1], [1, 1, -1, -1, 0, 1], [1, 1, -1, -1, 0, 1], [1, 1, -1, -1, 0, 1], [1, 1, -1, -1, 0, 1], [1, 1, -1, -1, 0, 1]]) == 0.5454545454545454", "assert maxAverageOfPath([[0, -1, 0], [0, -1, 0], [0, -1, 0]]) == -0.2", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 0, 1], [1, 1, -1, -1, 0, 0, 1], [1, 1, -1, -1, 0, 0, 1], [1, 1, -1, -1, 0, 0, 1], [1, 1, -1, -1, 0, 0, 1], [1, 1, -1, -1, 0, 0, 1], [1, 1, -1, -1, 0, 0, 1]]) == 0.5384615384615384", "assert maxAverageOfPath([[1, 0, -1], [1, 0, -1], [1, 0, -1]]) == 0.4", "assert maxAverageOfPath([[0, -1, 0, 0], [0, -1, 0, 0], [0, -1, 0, -1], [0, -1, 0, 0]]) == -0.14285714285714285", "assert maxAverageOfPath([[0, 1, 0], [0, 1, 0], [0, 1, 0]]) == 0.6", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1], [1, 1, -1, -1, 0, 0, 1, -1]]) == 0.4666666666666667", "assert maxAverageOfPath([[0, 1, 0, 1], [0, 1, 0, 1], [0, 1, 0, 1], [0, 1, 0, 1]]) == 0.7142857142857143", "assert maxAverageOfPath([[1, 1, 0], [0, 0, -1], [0, 0, -1]]) == 0.2", "assert maxAverageOfPath([[1, 1, -1, 1, 0], [1, 1, -1, 1, 0], [1, 1, -1, 1, 0], [1, 1, -1, 1, 0], [1, 1, -1, 1, 0]]) == 0.6666666666666666", "assert maxAverageOfPath([[0, -1, 1, 0], [0, -1, 1, 0], [0, -1, 1, 0], [0, -1, 1, 0]]) == 0.42857142857142855", "assert maxAverageOfPath([[0, 1, 0], [0, 0, -1], [0, 1, 0]]) == 0.4", "assert maxAverageOfPath([[1, 1, -1, 0, 1, -1], [1, 1, -1, 0, 1, -1], [1, 1, -1, 0, 1, -1], [1, 1, -1, 0, 1, -1], [1, 1, -1, 0, 1, -1], [1, 1, -1, 0, 1, -1]]) == 0.5454545454545454", "assert maxAverageOfPath([[1, -1, 0, -1], [1, -1, 0, -1], [1, -1, 0, -1], [1, -1, 0, -1]]) == 0.2857142857142857", "assert maxAverageOfPath([[0, -1, 0, 0], [0, -1, 0, 0], [0, -1, 0, 0], [0, -1, 0, 0]]) == -0.14285714285714285", "assert maxAverageOfPath([[1, -1, -1, 1], [1, -1, -1, 1], [1, -1, -1, 1], [1, -1, -1, 1]]) == 0.42857142857142855", "assert maxAverageOfPath([[1, 0, -1, 1, 0], [1, 0, -1, 1, 0], [1, 0, -1, 1, 0], [1, 0, -1, 1, 0], [1, 0, -1, 1, 0]]) == 0.5555555555555556", "assert maxAverageOfPath([[0, 1, -1, 0], [0, 1, -1, 0], [0, 1, -1, 0], [0, 1, -1, 0]]) == 0.42857142857142855", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 1, -1], [1, 1, -1, -1, 0, 1, -1], [1, 1, -1, -1, 0, 1, -1], [1, 1, -1, -1, 0, 1, -1], [1, 1, -1, -1, 0, 1, -1], [1, 1, -1, -1, 0, 1, -1], [1, 1, -1, -1, 0, 1, -1]]) == 0.46153846153846156", "assert maxAverageOfPath([[1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1], [1, 1, -1, -1, 1, 0, 0, 1, -1]]) == 0.5294117647058824", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0], [1, 1, -1, -1, 0, 2, 1, 0]]) == 1.1333333333333333", "assert maxAverageOfPath([[1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0], [1, 1, -1, 0, 2, 2, 1, 0]]) == 1.3333333333333333", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1], [1, 1, -1, -1, 0, 2, 1, -1]]) == 1.0666666666666667", "assert maxAverageOfPath([[1, -1, -1, 1, 1], [1, -1, -1, 1, 1], [1, -1, -1, 1, 1], [1, -1, -1, 1, 1], [1, -1, -1, 1, 1]]) == 0.5555555555555556", "assert maxAverageOfPath([[0, 0, 0], [0, 0, 0], [0, 0, -2]]) == -0.4", "assert maxAverageOfPath([[0, -1, 0, -1], [0, -1, 0, -1], [0, -1, 0, -1], [0, -1, 0, -1]]) == -0.2857142857142857", "assert maxAverageOfPath([[1, 0, 1, 0], [1, 0, 1, 0], [1, 0, 1, 0], [1, 0, 1, 0]]) == 0.7142857142857143", "assert maxAverageOfPath([[1, 1, -1, 1, 0, 1], [1, 1, -1, 1, 0, 1], [1, 1, -1, 1, 0, 1], [1, 1, -1, 1, 0, 1], [1, 1, -1, 1, 0, 1], [1, 1, -1, 1, 0, 1]]) == 0.7272727272727273", "assert maxAverageOfPath([[0, -1, -2, 0], [0, -1, -2, 0], [0, -1, -2, 0], [0, -1, -2, 0]]) == -0.42857142857142855", "assert maxAverageOfPath([[0, -1, 0, -1, 0], [0, -1, 0, -1, 0], [0, -1, 0, -1, 0], [0, -1, 0, -1, 0], [0, -1, 0, -1, 0]]) == -0.2222222222222222", "assert maxAverageOfPath([[1, 1, -1, 0, 1, -1, 0], [1, 1, -1, 0, 1, -1, 0], [1, 1, -1, 0, 1, -1, 0], [1, 1, -1, 0, 1, -1, 0], [1, 1, -1, 0, 1, -1, 0], [1, 1, -1, 0, 1, -1, 0], [1, 1, -1, 0, 1, -1, 0]]) == 0.5384615384615384", "assert maxAverageOfPath([[1, 0, -1, 0, -1], [1, 0, -1, 0, -1], [1, 0, -1, 0, -1], [1, 0, -1, 0, -1], [1, 0, -1, 0, -1]]) == 0.3333333333333333", "assert maxAverageOfPath([[-1, 0, 0], [0, 0, -1], [0, 0, -1]]) == -0.4", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0], [1, 1, -1, -1, 0, 0, 2, 1, 0]]) == 1.1176470588235294", "assert maxAverageOfPath([[0, 0, 0], [0, 0, -2], [0, 0, 0]]) == 0.0", "assert maxAverageOfPath([[1, 0, -1, 1, 0, 1], [1, 0, -1, 1, 0, 1], [1, 0, -1, 1, 0, 1], [1, 0, -1, 1, 0, 1], [1, 0, -1, 1, 0, 1], [1, 0, -1, 1, 0, 1]]) == 0.6363636363636364", "assert maxAverageOfPath([[0, 1, -1, 1], [0, 1, -1, 1], [0, 1, -1, 1], [0, 1, -1, 1]]) == 0.5714285714285714", "assert maxAverageOfPath([[1, 1, 1, 0], [1, 1, 1, 0], [1, 1, 1, 0], [1, 1, 1, 0]]) == 0.8571428571428571", "assert maxAverageOfPath([[0, -1, -1, 0], [0, -1, -1, 0], [0, -1, -1, 0], [0, -1, -1, 0]]) == -0.2857142857142857", "assert maxAverageOfPath([[1, -1], [1, -1]]) == 0.3333333333333333", "assert maxAverageOfPath([[1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1], [1, 1, -1, -1, 0, 0, 2, 1, 0, -1]]) == 1.0526315789473684", "assert maxAverageOfPath([[1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0], [1, 1, -1, -1, 0, -1, 2, 1, 0]]) == 1.0588235294117647", "assert maxAverageOfPath([[0, -1, -1, 0, 0], [0, -1, -1, 0, 0], [0, -1, -1, 0, 0], [0, -1, -1, 0, 0], [0, -1, -1, 0, 0]]) == -0.2222222222222222", "assert maxAverageOfPath([[1, -1, -1, 0, 1, -1], [1, -1, -1, 0, 1, -1], [1, -1, -1, 0, 1, -1], [1, -1, -1, 0, 1, -1], [1, -1, -1, 0, 1, -1], [1, -1, -1, 0, 1, -1]]) == 0.36363636363636365", "assert maxAverageOfPath([[1, 1, -2, 0, -1, -1], [1, 1, -2, 0, -1, -1], [1, 1, -2, 0, -1, -1], [1, 1, -2, 0, -1, -1], [1, 1, -2, 0, -1, -1], [1, 1, -2, 0, -1, -1]]) == 0.2727272727272727", "assert maxAverageOfPath([[1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1], [1, -1, -1, -1, 0, 1, -1, 1]]) == 0.4", "assert maxAverageOfPath([[2, 1, -1, 0, -1], [2, 1, -1, 0, -1], [2, 1, -1, 0, -1], [2, 1, -1, 0, -1], [2, 1, -1, 0, -1]]) == 1.0", "assert maxAverageOfPath([[0, 0, 1, 0], [0, 0, 1, 0], [0, 0, 1, 0], [0, 0, 1, 0]]) == 0.5714285714285714", "assert maxAverageOfPath([[1, 1, 1, -2, -1, -1, -1], [1, 1, 1, -2, -1, -1, -1], [1, 1, 1, -2, -1, -1, -1], [1, 1, 1, -2, -1, -1, -1], [1, 1, 1, -2, -1, -1, -1], [1, 1, 1, -2, -1, -1, -1], [1, 1, 1, -2, -1, -1, -1]]) == 0.3076923076923077", "assert maxAverageOfPath([[0, -1, 0, 1], [0, -1, 0, 1], [0, -1, 0, 1], [0, -1, 0, 1]]) == 0.42857142857142855", "assert maxAverageOfPath([[1, 1, 2], [1, 1, 2], [1, 1, 2]]) == 1.6", "assert maxAverageOfPath([[1, -2, -2, -1, 0, 1], [1, -2, -2, -1, 0, 1], [1, -2, -2, -1, 0, 1], [1, -2, -2, -1, 0, 1], [1, -2, -2, -1, 0, 1], [1, -2, -2, -1, 0, 1]]) == 0.18181818181818182", "assert maxAverageOfPath([[1, 0, 0, 0], [1, 0, 0, 0], [1, 0, 0, 0], [1, 0, 0, 0]]) == 0.5714285714285714", "assert maxAverageOfPath([[0, 2, 0], [-1, 0, 0], [0, 0, -1]]) == 0.2", "assert maxAverageOfPath([[1, 1, 2, 1], [1, 1, 2, 1], [1, 1, 2, 1], [1, 1, 2, 1]]) == 1.5714285714285714", "assert maxAverageOfPath([[1, 0, 0, 1], [1, 0, 0, 1], [1, 0, 0, 1], [1, 0, 0, 1]]) == 0.7142857142857143", "assert maxAverageOfPath([[0, -1, 0, 0, 0], [0, -1, 0, 0, 0], [0, -1, 0, 0, 0], [0, -1, 0, 0, 0], [0, -1, 0, 0, 0]]) == -0.1111111111111111", "assert maxAverageOfPath([[2, 0, -1, -1, 0], [2, 0, -1, -1, 0], [2, 0, -1, -1, 0], [2, 0, -1, -1, 0], [2, 0, -1, -1, 0]]) == 0.8888888888888888", "assert maxAverageOfPath([[1, 0, 0, 0, 0], [1, 0, 0, 0, 0], [1, 0, 0, 0, 0], [1, 0, 0, 0, 0], [1, 0, 0, 0, 0]]) == 0.5555555555555556", "assert maxAverageOfPath([[0, 0, 0], [-1, 0, 0], [-1, 0, 0]]) == 0.0", "assert maxAverageOfPath([[1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1], [1, 2, 1, 1, -2, -1, -1, -1]]) == 0.9333333333333333", "assert maxAverageOfPath([[0, 1, -1, 1, 0], [0, 1, -1, 1, 0], [0, 1, -1, 1, 0], [0, 1, -1, 1, 0], [0, 1, -1, 1, 0]]) == 0.5555555555555556", "assert maxAverageOfPath([[0, -1, 0, 1], [0, -1, 0, 1], [0, -1, 0, -1], [0, -1, 0, 1]]) == 0.14285714285714285", "assert maxAverageOfPath([[-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1], [-1, 1, -2, -2, -1, 0, -1, 1]]) == 0.13333333333333333", "assert maxAverageOfPath([[0, -1, 0, -1, -1, 0], [0, -1, 0, -1, -1, 0], [0, -1, 0, -1, -1, 0], [0, -1, 0, -1, -1, 0], [0, -1, 0, -1, -1, 0], [0, -1, 0, -1, -1, 0]]) == -0.2727272727272727", "assert maxAverageOfPath([[2, -1, 0, 0], [2, -1, 0, 0], [0, -1, 0, -1], [2, -1, 0, 0]]) == 0.7142857142857143", "assert maxAverageOfPath([[-1, 0, 0], [-1, 0, 0], [2, 0, -1]]) == -0.2", "assert maxAverageOfPath([[0, -1, 0, 0, 0, 0], [0, -1, 0, 0, 0, 0], [0, -1, 0, 0, 0, 0], [0, -1, 0, 0, 0, 0], [0, -1, 0, 0, 0, 0], [0, -1, 0, 0, 0, 0]]) == -0.09090909090909091", "assert maxAverageOfPath([[1, 1, 1, -1, 1, 0], [1, 1, 1, -1, 1, 0], [1, 1, 1, -1, 1, 0], [1, 1, 1, -1, 1, 0], [1, 1, 1, -1, 1, 0], [1, 1, 1, -1, 1, 0]]) == 0.7272727272727273", "assert maxAverageOfPath([[1, 1, 1, -1, 0, 1], [1, 1, 1, -1, 0, 1], [1, 1, 1, -1, 0, 1], [1, 1, 1, -1, 0, 1], [1, 1, 1, -1, 0, 1], [1, 1, 1, -1, 0, 1]]) == 0.7272727272727273", "assert maxAverageOfPath([[0, -1, 1, -2, 0], [0, -1, 1, -2, 0], [0, -1, 1, -2, 0], [0, -1, 1, -2, 0], [0, -1, 1, -2, 0]]) == 0.2222222222222222", "assert maxAverageOfPath([[2, 0, 1, 0, 1, 1], [2, 0, 1, 0, 1, 1], [2, 0, 1, 0, 1, 1], [2, 0, 1, 0, 1, 1], [2, 0, 1, 0, 1, 1], [2, 0, 1, 0, 1, 1]]) == 1.3636363636363635", "assert maxAverageOfPath([[1, -1, -1, 1, 1, 1], [1, -1, -1, 1, 1, 1], [1, -1, -1, 1, 1, 1], [1, -1, -1, 1, 1, 1], [1, -1, -1, 1, 1, 1], [1, -1, -1, 1, 1, 1]]) == 0.6363636363636364", "assert maxAverageOfPath([[1, 1, -2, 0, 2, -1, -1], [1, 1, -2, 0, 2, -1, -1], [1, 1, -2, 0, 2, -1, -1], [1, 1, -2, 0, 2, -1, -1], [1, 1, -2, 0, 2, -1, -1], [1, 1, -2, 0, 2, -1, -1], [1, 1, -2, 0, 2, -1, -1]]) == 0.9230769230769231", "assert maxAverageOfPath([[0, -1, 0, -1, 0, 0], [0, -1, 0, -1, 0, 0], [0, -1, 0, -1, 0, 0], [0, -1, 0, -1, 0, 0], [0, -1, 0, -1, 0, 0], [0, -1, 0, -1, 0, 0]]) == -0.18181818181818182", "assert maxAverageOfPath([[0, 1, -1, 0, 0], [0, 1, -1, 0, 0], [0, 1, -1, 0, 0], [0, 1, -1, 0, 0], [0, 1, -1, 0, 0]]) == 0.4444444444444444", "assert maxAverageOfPath([[0, 2, 0], [-1, 0, 0], [0, 2, 0]]) == 0.8", "assert maxAverageOfPath([[0, -1, -1, 0, -1], [0, -1, -1, 0, -1], [0, -1, -1, 0, -1], [0, -1, -1, 0, -1], [0, -1, -1, 0, -1]]) == -0.3333333333333333", "assert maxAverageOfPath([[0, -1, 0], [0, 0, -1], [0, 0, -1]]) == -0.2" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "The input is given as - a dictionary with a student name as a key and a tuple of float (student_height, student_weight) as a value, - minimal height, - minimal weight. Write a function to filter students that have height and weight above the minimum.\nassert filter_data({'Cierra Vega': (6.2, 70), 'Alden Cantrell': (5.9, 65), 'Kierra Gentry': (6.0, 68), 'Pierre Cox': (5.8, 66)},6.0,70)=={'Cierra Vega': (6.2, 70)}\nYour code should pass the test:\nassert filter_data({'Cierra Vega': (6.2, 70), 'Alden Cantrell': (5.9, 65), 'Kierra Gentry': (6.0, 68), 'Pierre Cox': (5.8, 66)},6.0,70)=={'Cierra Vega': (6.2, 70)}", "test_list": [ "assert filter_data({'Cierra Vega': (6.2, 70), 'Alden Cantrell': (5.9, 65), 'Kierra Gentry': (6.0, 68), 'Pierre Cox': (5.8, 66)},6.0,70)=={'Cierra Vega': (6.2, 70)}", "assert filter_data({'Cierra Vega': (6.2, 70), 'Alden Cantrell': (5.9, 65), 'Kierra Gentry': (6.0, 68), 'Pierre Cox': (5.8, 66)},5.9,67)=={'Cierra Vega': (6.2, 70),'Kierra Gentry': (6.0, 68)}", "assert filter_data({'Cierra Vega': (6.2, 70), 'Alden Cantrell': (5.9, 65), 'Kierra Gentry': (6.0, 68), 'Pierre Cox': (5.8, 66)},5.7,64)=={'Cierra Vega': (6.2, 70),'Alden Cantrell': (5.9, 65),'Kierra Gentry': (6.0, 68),'Pierre Cox': (5.8, 66)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 5.8, 67) == {'Bob': (6.1, 70)}", "assert filter_data({}, 5.7, 64) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68)}", "assert filter_data({}, 9.9, 9999) == {}", "assert filter_data({}, 0, 0) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 5.5, 60) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 6.2, 75) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Harry': (6.2, 75)}", "assert filter_data({}, 5.0, 60) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.3352700555113355, 5.5) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 0, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 7.6771179872039275, 65) == {}", "assert filter_data({}, 60, 60) == {}", "assert filter_data({'Alice': (5.6, 60), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 3.775767325751101, 75) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 0, 67) == {'Bob': (6.1, 70), 'Dave': (5.11, 72)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.729862314625353, 6.3352700555113355) == {}", "assert filter_data({}, 59, 60) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 65, 7.6771179872039275) == {}", "assert filter_data({'Alice': (5.6, 60), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 4.258632338706851, 75) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 5.5, 59) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75)}", "assert filter_data({}, 64, 5.7) == {}", "assert filter_data({}, 5.0, 9999) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.729862314625353, 5.5) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.729862314625353, 8.190457327073037) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 68, 67) == {}", "assert filter_data({}, 64, 64) == {}", "assert filter_data({}, 72, 64) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 7.6771179872039275, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 65, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}, 5.8, 9999) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.702463419036826, 5.5) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}, 6.347801785816663, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75)}, 6.729862314625353, 8.190457327073037) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 1, 67) == {'Bob': (6.1, 70), 'Dave': (5.11, 72)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.729862314625353, 3.660457791550787) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (5.49128356349249, 68)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 5.5, 60) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75), 'HHarry': (6.627749952516089, 75)}", "assert filter_data({}, 55, 64) == {}", "assert filter_data({}, 5.0, 5.2) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 2, 67) == {'Bob': (6.1, 70), 'Dave': (5.11, 72)}", "assert filter_data({}, 58, 0) == {}", "assert filter_data({}, 59, 59) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 60, 60) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 67, 67) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.038735073603959, 6.3352700555113355) == {'Bob': (6.1, 70), 'Harry': (6.2, 75)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 67, 67) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 67, 68) == {}", "assert filter_data({}, 67, 65) == {}", "assert filter_data({}, 64, 4.5127014348401) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 64, 67) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 3.9132721275728577, 5.49128356349249) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}", "assert filter_data({}, 67, 55) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 66, 64) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 0, 66) == {'Bob': (6.1, 70), 'Dave': (5.11, 72)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 60, 59) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 59, 60) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 7.421813010934091, 6.3352700555113355) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 59, 59) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 3.775767325751101, 6.3352700555113355) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 5.824887060150681, 5.11) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Harry': (6.2, 75), 'HHarry': (6.627749952516089, 75)}", "assert filter_data({'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 60, 60) == {}", "assert filter_data({}, 5.7, 5.7) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 5.5, 61) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75), 'HHarry': (6.627749952516089, 75)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65)}, 0, 67) == {'Bob': (6.1, 70)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.729862314625353, 10.135570714344796) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 63)}, 6.3352700555113355, 6.3352700555113355) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 63, 63) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 10.135570714344796, 59) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 10.135570714344796, 6.679165466227062) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 7.599846835005838, 4.5127014348401) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 58, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 55, 55) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'EEve': (6.2, 65)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'EEve': (6.2, 65)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 5.8, 9999) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 0, 0) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 63, 61) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 68, 70) == {}", "assert filter_data({'Alice': (5.6, 60), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 65, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 67, 0) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 10.135570714344796, 10.135570714344796) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 9.297305401955562, 6.679165466227062) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Dave': (5.11, 72)}, 0, 67) == {'Bob': (6.1, 70), 'Dave': (5.11, 72)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.8967696393963465, 10.135570714344796) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Dave': (5.11, 72)}, 1, 67) == {'Bob': (6.1, 70), 'Dave': (5.11, 72)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 67, 67) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Irene': (5.6, 9999)}, 6.2, 75) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (5.49128356349249, 68)}, 65, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}, 6.347801785816663, 66) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 75, 59) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 5.8, 5.8) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Harry': (6.2, 75)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 5.8, 59) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65)}", "assert filter_data({'Alice': (5.6, 60), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 75, 75) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 57, 58) == {}", "assert filter_data({}, 4.5127014348401, 11.052854689507116) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58), 'HHarry': (6.627749952516089, 75)}, 72, 72) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 57, 57) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Frank': (5.11, 66)}, 5.8, 65) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}, 8.190457327073037, 9999) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 57, 6.1) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 55, 64) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 68, 71) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'EEve': (6.2, 65)}, 5.8, 59) == {'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Eve': (6.0, 68), 'EEve': (6.2, 65)}", "assert filter_data({'Alice': (5.6, 60), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63)}, 58, 65) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72)}, 5.8, 68) == {'Bob': (6.1, 70)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 6.8967696393963465, 10.135570714344796) == {}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68)}, 6.082623855502811, 67) == {'Bob': (6.1, 70)}", "assert filter_data({'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}, 4.5127014348401, 4.5127014348401) == {'Alice': (5.6, 60), 'Bob': (6.1, 70), 'Charlie': (5.9, 65), 'Dave': (5.11, 72), 'Eve': (6.0, 68), 'Frank': (5.7, 63), 'Grace': (5.2, 55), 'Harry': (6.2, 75), 'Irene': (5.4, 58)}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "The input is defined as two lists of the same length. Write a function to count indices where the lists have the same values.\nassert count_same_pair([1, 2, 3, 4, 5, 6, 7, 8],[2, 2, 3, 1, 2, 6, 7, 9])==4\nYour code should pass the test:\nassert count_same_pair([1, 2, 3, 4, 5, 6, 7, 8],[2, 2, 3, 1, 2, 6, 7, 9])==4", "test_list": [ "assert count_same_pair([1, 2, 3, 4, 5, 6, 7, 8],[2, 2, 3, 1, 2, 6, 7, 9])==4", "assert count_same_pair([0, 1, 2, -1, -5, 6, 0, -3, -2, 3, 4, 6, 8],[2, 1, 2, -1, -5, 6, 4, -3, -2, 3, 4, 6, 8])==11", "assert count_same_pair([2, 4, -6, -9, 11, -12, 14, -5, 17],[2, 1, 2, -1, -5, 6, 4, -3, -2])==1", "assert count_same_pair([0, 1, 1, 2],[0, 1, 2, 2])==3" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes base and power as arguments and calculate the sum of all digits of the base to the specified power.\nassert power_base_sum(2,100)==115\nYour code should pass the test:\nassert power_base_sum(2,100)==115", "test_list": [ "assert power_base_sum(2,100)==115", "assert power_base_sum(8,10)==37", "assert power_base_sum(8,15)==62", "assert power_base_sum(3,3)==9", "assert power_base_sum(1, 1000000) == 1", "assert power_base_sum(0, 500) == 0", "assert power_base_sum(11, 100) == 439", "assert power_base_sum(7, 200) == 697", "assert power_base_sum(5, 1000) == 3172", "assert power_base_sum(5, 1) == 5", "assert power_base_sum(201, 200) == 2106", "assert power_base_sum(5, 0) == 1", "assert power_base_sum(1, 500) == 1", "assert power_base_sum(5, 8) == 25", "assert power_base_sum(1, 11) == 1", "assert power_base_sum(1, 0) == 1", "assert power_base_sum(11, 1) == 2", "assert power_base_sum(10, 1) == 1", "assert power_base_sum(11, 8) == 40", "assert power_base_sum(0, 11) == 0", "assert power_base_sum(500, 200) == 556", "assert power_base_sum(999, 5) == 81", "assert power_base_sum(200, 0) == 1", "assert power_base_sum(99, 999) == 9081", "assert power_base_sum(201, 201) == 1980", "assert power_base_sum(8, 8) == 37", "assert power_base_sum(202, 201) == 2062", "assert power_base_sum(498, 200) == 2421", "assert power_base_sum(200, 999) == 1367", "assert power_base_sum(999, 999) == 13536", "assert power_base_sum(200, 200) == 256", "assert power_base_sum(1, 1) == 1", "assert power_base_sum(5, 202) == 616", "assert power_base_sum(1001, 1000) == 13417", "assert power_base_sum(0, 998) == 0", "assert power_base_sum(1000000, 1) == 1", "assert power_base_sum(201, 202) == 2016", "assert power_base_sum(11, 201) == 917", "assert power_base_sum(11, 202) == 898", "assert power_base_sum(0, 0) == 1", "assert power_base_sum(1002, 1) == 3", "assert power_base_sum(5, 1001) == 3107", "assert power_base_sum(7, 7) == 25", "assert power_base_sum(11, 200) == 913", "assert power_base_sum(7, 1) == 7", "assert power_base_sum(202, 498) == 4978", "assert power_base_sum(10, 10) == 1", "assert power_base_sum(1002, 498) == 6606", "assert power_base_sum(201, 999) == 10260", "assert power_base_sum(10, 202) == 1", "assert power_base_sum(202, 202) == 2155", "assert power_base_sum(11, 10) == 43", "assert power_base_sum(10, 99) == 1", "assert power_base_sum(0, 1) == 0", "assert power_base_sum(1002, 1001) == 13383", "assert power_base_sum(12, 100) == 459", "assert power_base_sum(202, 200) == 2005", "assert power_base_sum(11, 1000) == 4588", "assert power_base_sum(1000, 5) == 1", "assert power_base_sum(11, 11) == 41", "assert power_base_sum(1, 202) == 1", "assert power_base_sum(998, 998) == 13402", "assert power_base_sum(499, 499) == 5944", "assert power_base_sum(1003, 1002) == 13690", "assert power_base_sum(0, 498) == 0", "assert power_base_sum(12, 999) == 4815", "assert power_base_sum(8, 11) == 62", "assert power_base_sum(1000, 10) == 1", "assert power_base_sum(498, 499) == 5967", "assert power_base_sum(202, 1003) == 10174", "assert power_base_sum(1000, 100) == 1", "assert power_base_sum(203, 202) == 2101", "assert power_base_sum(1002, 1002) == 13752", "assert power_base_sum(1002, 5) == 27", "assert power_base_sum(200, 201) == 269", "assert power_base_sum(199, 201) == 2242", "assert power_base_sum(204, 203) == 2115", "assert power_base_sum(0, 999) == 0", "assert power_base_sum(500, 201) == 584", "assert power_base_sum(998, 999) == 13490", "assert power_base_sum(11, 999) == 4643", "assert power_base_sum(1000, 1000) == 1", "assert power_base_sum(99, 0) == 1", "assert power_base_sum(8, 12) == 64", "assert power_base_sum(499, 498) == 5968", "assert power_base_sum(1003, 5) == 43", "assert power_base_sum(501, 201) == 2412", "assert power_base_sum(501, 1002) == 12096", "assert power_base_sum(9, 8) == 27", "assert power_base_sum(5, 100) == 283", "assert power_base_sum(1001, 204) == 2656", "assert power_base_sum(501, 501) == 6048", "assert power_base_sum(1000, 200) == 1", "assert power_base_sum(199, 200) == 2044", "assert power_base_sum(1001, 12) == 127", "assert power_base_sum(1, 998) == 1", "assert power_base_sum(12, 12) == 54", "assert power_base_sum(100, 203) == 1", "assert power_base_sum(202, 1) == 4", "assert power_base_sum(204, 1001) == 10305", "assert power_base_sum(1001, 1001) == 13424", "assert power_base_sum(204, 204) == 2097", "assert power_base_sum(998, 8) == 109", "assert power_base_sum(1001, 200) == 2578", "assert power_base_sum(0, 202) == 0", "assert power_base_sum(199, 1) == 19", "assert power_base_sum(998, 12) == 172", "assert power_base_sum(9, 9) == 45", "assert power_base_sum(1003, 1003) == 13855" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to extract values between quotation marks \" \" of the given string.\nassert extract_quotation('Cortex \"A53\" Based \"multi\" tasking \"Processor\"') == ['A53', 'multi', 'Processor']\nYour code should pass the test:\nassert extract_quotation('Cortex \"A53\" Based \"multi\" tasking \"Processor\"') == ['A53', 'multi', 'Processor']", "test_list": [ "assert extract_quotation('Cortex \"A53\" Based \"multi\" tasking \"Processor\"') == ['A53', 'multi', 'Processor']", "assert extract_quotation('Cast your \"favorite\" entertainment \"apps\"') == ['favorite', 'apps']", "assert extract_quotation('Watch content \"4k Ultra HD\" resolution with \"HDR 10\" Support') == ['4k Ultra HD', 'HDR 10']", "assert extract_quotation(\"Watch content '4k Ultra HD' resolution with 'HDR 10' Support\") == []" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that takes as input a tuple of numbers (t_1,...,t_{N+1}) and returns a tuple of length N where the i-th element of the tuple is equal to t_i * t_{i+1}.\nassert multiply_elements((1, 5, 7, 8, 10)) == (5, 35, 56, 80)\nYour code should pass the test:\nassert multiply_elements((1, 5, 7, 8, 10)) == (5, 35, 56, 80)", "test_list": [ "assert multiply_elements((1, 5, 7, 8, 10)) == (5, 35, 56, 80)", "assert multiply_elements((2, 4, 5, 6, 7)) == (8, 20, 30, 42)", "assert multiply_elements((12, 13, 14, 9, 15)) == (156, 182, 126, 135)", "assert multiply_elements((12,)) == ()", "assert multiply_elements((1, 2, 3, 4, 5, 6)) == (2, 6, 12, 20, 30)", "assert multiply_elements((0.5, 0.25, 0.125, 0.0625)) == (0.125, 0.03125, 0.0078125)", "assert multiply_elements((10, 100, 1000, 10000)) == (1000, 100000, 10000000)", "assert multiply_elements((-1, -2, -3, -4, -5)) == (2, 6, 12, 20)", "assert multiply_elements((1, -2, 3, -4, 5)) == (-2, -6, -12, -20)", "assert multiply_elements(()) == ()", "assert multiply_elements((0.5, 0.25, 0.125, 0.5, 0.0625)) == (0.125, 0.03125, 0.0625, 0.03125)", "assert multiply_elements((10, 1, 1000, 10000)) == (10, 1000, 10000000)", "assert multiply_elements((2, 3, 4, 5, 6)) == (6, 12, 20, 30)", "assert multiply_elements((2, 3, 100, 5, 6)) == (6, 300, 500, 30)", "assert multiply_elements((-1, -2, -3, 6, -5)) == (2, 6, -18, -30)", "assert multiply_elements((1, -2, 1000, 5, -4, 5)) == (-2, -2000, 5000, -20, -20)", "assert multiply_elements((3, 3, 4, 5, 6)) == (9, 12, 20, 30)", "assert multiply_elements((0.25, 0.09658093675455971, 0.5, 0.0625)) == (0.024145234188639928, 0.048290468377279856, 0.03125)", "assert multiply_elements((10, 1, 1000)) == (10, 1000)", "assert multiply_elements((3, -4, 3, 4, 5, 6)) == (-12, -12, 12, 20, 30)", "assert multiply_elements((2, 3, 3, 5, 6)) == (6, 9, 15, 30)", "assert multiply_elements((0.25, 0.125, 0.5, 0.0625, 0.5)) == (0.03125, 0.0625, 0.03125, 0.03125)", "assert multiply_elements((0, 2, 3, 4, 5, 6, 3)) == (0, 6, 12, 20, 30, 18)", "assert multiply_elements((-1, -2, -3, 6)) == (2, 6, -18)", "assert multiply_elements((-2, 3, 5, 5)) == (-6, 15, 25)", "assert multiply_elements((1, -1, -2, -3, -4, -5)) == (-1, 2, 6, 12, 20)", "assert multiply_elements((-1, -2, -3, 6, -5, -2)) == (2, 6, -18, -30, 10)", "assert multiply_elements((9, 10, 1, 1000)) == (90, 10, 1000)", "assert multiply_elements((0.25, 0.09658093675455971, 0.5, 0.5, 0.0625)) == (0.024145234188639928, 0.048290468377279856, 0.25, 0.03125)", "assert multiply_elements((0, -2, -3)) == (0, 6)", "assert multiply_elements((1, -2, 3, -4)) == (-2, -6, -12)", "assert multiply_elements((0.25, 0.125, 0.5, 0.0625, 0.5, 0.5, 0.5)) == (0.03125, 0.0625, 0.03125, 0.03125, 0.25, 0.25)", "assert multiply_elements((-2, 3, 5)) == (-6, 15)", "assert multiply_elements((1, 10, 1, -5, 1000, -5)) == (10, 10, -5, -5000, -5000)", "assert multiply_elements((10, 1, 10000, 1000)) == (10, 10000, 10000000)", "assert multiply_elements((-2, 3, 5, 3, -2)) == (-6, 15, 15, -6)", "assert multiply_elements((-1, -2, -3, 6, -1, -5, -2)) == (2, 6, -18, -6, 5, 10)", "assert multiply_elements((22,)) == ()", "assert multiply_elements((0, 2, 3, 4, 5, 6, 3, 4)) == (0, 6, 12, 20, 30, 18, 12)", "assert multiply_elements((0, 2, 3, 4, 5, 7, 6, 3)) == (0, 6, 12, 20, 35, 42, 18)", "assert multiply_elements((0.09658093675455971, 0.5, 0.09658093675455971, 15.165237122536439, 79.3038013402577, 0.25, 69.10512450034832)) == (0.048290468377279856, 0.048290468377279856, 1.464672807399593, 1202.660952043531, 19.825950335064427, 17.27628112508708)", "assert multiply_elements((0.09658093675455971, 0.5, 0.125, 0.09658093675455971, 15.165237122536439, 79.3038013402577, 0.25, 69.10512450034832)) == (0.048290468377279856, 0.0625, 0.012072617094319964, 1.464672807399593, 1202.660952043531, 19.825950335064427, 17.27628112508708)", "assert multiply_elements((-1, -3, 6)) == (3, -18)", "assert multiply_elements((-1, -2, -3, 6, -2)) == (2, 6, -18, -12)", "assert multiply_elements((21, 22)) == (462,)", "assert multiply_elements((1, 3, 100, 5, 7, 6)) == (3, 300, 500, 35, 42)", "assert multiply_elements((0.25, 0.5, 0.0625, 0.5, 0.5, 0.8942957050187041, 0.5)) == (0.125, 0.03125, 0.03125, 0.25, 0.4471478525093521, 0.4471478525093521)", "assert multiply_elements((0, -4, -2, -3)) == (0, 8, 6)", "assert multiply_elements((0.25, 0.125, 0.5, 0.0625, 0.5, 0.0625)) == (0.03125, 0.0625, 0.03125, 0.03125, 0.03125)", "assert multiply_elements((0.5, 0.25, 0.125, 0.5, 0.0625, 0.25)) == (0.125, 0.03125, 0.0625, 0.03125, 0.015625)", "assert multiply_elements((21, 22, 22, 21)) == (462, 484, 462)", "assert multiply_elements((-1, 0, 7, 6, -1)) == (0, 0, 42, -6)", "assert multiply_elements((-2, 3, 4, 5)) == (-6, 12, 20)", "assert multiply_elements((-1, -2, -3, 6, -5, -3)) == (2, 6, -18, -30, 15)", "assert multiply_elements((1, 10, -6, 1, -5, 1000, -5)) == (10, -60, -6, -5, -5000, -5000)", "assert multiply_elements((1, -2, 3, 1, -4, 5, 5)) == (-2, -6, 3, -4, -20, 25)", "assert multiply_elements((0, 2, 3, 4, 5, 6, 4)) == (0, 6, 12, 20, 30, 24)", "assert multiply_elements((2, 3, 100, -2, 5, 6)) == (6, 300, -200, -10, 30)", "assert multiply_elements((2, 3, 3, 5, 6, 5)) == (6, 9, 15, 30, 30)", "assert multiply_elements((1, -5, 3, 4, 5, 6)) == (-5, -15, 12, 20, 30)", "assert multiply_elements((2, 3, 3, 5, 6, 5, 3)) == (6, 9, 15, 30, 30, 15)", "assert multiply_elements((-1, -3, 2, 6)) == (3, -6, 12)", "assert multiply_elements((0, -2, -3, -2)) == (0, 6, 6)", "assert multiply_elements((1, -2, 1000, 5, 6, -4, 5, 6)) == (-2, -2000, 5000, 30, -24, -20, 30)", "assert multiply_elements((-1, -2, -1, -3, 6)) == (2, 2, 3, -18)", "assert multiply_elements((0.09150698236271086, 0.5, 0.09658093675455971, 15.165237122536439, 79.3038013402577, 0.25, 0.0625)) == (0.04575349118135543, 0.048290468377279856, 1.464672807399593, 1202.660952043531, 19.825950335064427, 0.015625)", "assert multiply_elements((0.8109212936994514, 0.5, 0.25, 0.8490361128540658, 0.5, 0.0625)) == (0.4054606468497257, 0.125, 0.21225902821351644, 0.4245180564270329, 0.03125)", "assert multiply_elements((0, 2, 3, 4, 5, 7, 6, 3, 5)) == (0, 6, 12, 20, 35, 42, 18, 15)", "assert multiply_elements((0, 2, 3, 4, 5, 7, 6, 3, 3)) == (0, 6, 12, 20, 35, 42, 18, 9)", "assert multiply_elements((10, 100, 10000)) == (1000, 1000000)", "assert multiply_elements((-1, -2, 5, 7, 6, -2)) == (2, -10, 35, 42, -12)", "assert multiply_elements((1, -1, -2, -3, -4, -5, -1)) == (-1, 2, 6, 12, 20, 5)", "assert multiply_elements((1, 10, -6, 1000, -5)) == (10, -60, -6000, -5000)", "assert multiply_elements((0.09658093675455971, 0.5, 0.09658093675455971, 15.165237122536439, 79.3038013402577, 0.25, 69.10512450034832, 0.09658093675455971)) == (0.048290468377279856, 0.048290468377279856, 1.464672807399593, 1202.660952043531, 19.825950335064427, 17.27628112508708, 6.674237658784117)", "assert multiply_elements((1, 2, -2, 3, 4, 5, 6)) == (2, -4, -6, 12, 20, 30)", "assert multiply_elements((2, 3, 4, 5)) == (6, 12, 20)", "assert multiply_elements((2, -2, 1000, 5, 6, -4, 5, 6)) == (-4, -2000, 5000, 30, -24, -20, 30)", "assert multiply_elements((0, 2, 3, 4, 5, 6, 3, 4, 3)) == (0, 6, 12, 20, 30, 18, 12, 12)", "assert multiply_elements((1, -1, -2, -3, -5, -1)) == (-1, 2, 6, 15, 5)", "assert multiply_elements((0.25, 0.125, 0.125, 0.0625, 0.5, 0.25)) == (0.03125, 0.015625, 0.0078125, 0.03125, 0.125)", "assert multiply_elements((0, 7, -1, 0)) == (0, -7, 0)", "assert multiply_elements((1, 10, -6, 2, -5, 1000, -5)) == (10, -60, -12, -10, -5000, -5000)", "assert multiply_elements((3, 4, 5)) == (12, 20)", "assert multiply_elements((0.5, 0.125, 0.5, 0.0625)) == (0.0625, 0.0625, 0.03125)", "assert multiply_elements((-2, 2, 3, 3, 5, 6)) == (-4, 6, 9, 15, 30)", "assert multiply_elements((2, 3, 4, 5, 2)) == (6, 12, 20, 10)", "assert multiply_elements((2, 3, 4, 21, 6)) == (6, 12, 84, 126)", "assert multiply_elements((-1, -3, -6, -1)) == (3, 18, 6)", "assert multiply_elements((0, -2, -3, -2, 0)) == (0, 6, 6, 0)", "assert multiply_elements((1, -1, -2, -3, -4, -1)) == (-1, 2, 6, 12, 4)", "assert multiply_elements((0.25, 0.5, 0.0625, 0.5, 0.5, 0.8942957050187041, 0.5, 0.5)) == (0.125, 0.03125, 0.03125, 0.25, 0.4471478525093521, 0.4471478525093521, 0.25)", "assert multiply_elements((-1, 10, -2, -3, 6, -2)) == (-10, -20, 6, -18, -12)", "assert multiply_elements((10, 1, 10, 1000)) == (10, 10, 10000)", "assert multiply_elements((-4, 1, 1000, 10000)) == (-4, 1000, 10000000)", "assert multiply_elements((0.5, 0.25, 0.125, 0.5, 0.0625, 79.3038013402577, 0.25)) == (0.125, 0.03125, 0.0625, 0.03125, 4.956487583766107, 19.825950335064427)", "assert multiply_elements((False, False, True, True, False, True, False, False, True, False)) == (0, 0, 1, 0, 0, 0, 0, 0, 0)", "assert multiply_elements((10, -6, 2, -5, 1000, -5)) == (-60, -12, -10, -5000, -5000)", "assert multiply_elements((1, 1000, 7)) == (1000, 7000)", "assert multiply_elements((0.8109212936994514, 0.5, 0.25, 0.125, 0.8109212936994514, 0.5, 0.0625)) == (0.4054606468497257, 0.125, 0.03125, 0.10136516171243143, 0.4054606468497257, 0.03125)", "assert multiply_elements((0.09658093675455971, 79.3038013402577, 0.09658093675455971, 15.165237122536439, 79.3038013402577, 0.25, 69.10512450034832, 0.09658093675455971)) == (7.659235421639598, 7.659235421639598, 1.464672807399593, 1202.660952043531, 19.825950335064427, 17.27628112508708, 6.674237658784117)", "assert multiply_elements((10, -6, 2, -5, 5, -5)) == (-60, -12, -10, -25, -25)", "assert multiply_elements((1, 1000, 5, -4, 5)) == (1000, 5000, -20, -20)", "assert multiply_elements((-1, -2, -3, -6, 0)) == (2, 6, 18, 0)", "assert multiply_elements((-1, -3, 6, -5, -3)) == (3, -18, -30, 15)", "assert multiply_elements((10, 100, 9, 1000, 10000, 100)) == (1000, 900, 9000, 10000000, 1000000)", "assert multiply_elements((-1, -2, -2, 6, -2)) == (2, 4, -12, -12)", "assert multiply_elements((-2, -2, -3, 6)) == (4, 6, -18)", "assert multiply_elements((0.5, 0.25, 0.5, 0.0625)) == (0.125, 0.125, 0.03125)", "assert multiply_elements((-1, 0, 6, 7, 6, -1)) == (0, 0, 42, 42, -6)", "assert multiply_elements((1, -3, 1000, 5, 6, -4, 5, 6)) == (-3, -3000, 5000, 30, -24, -20, 30)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function takes as input two lists [a_1,...,a_n], [b_1,...,b_n] and returns [a_1+b_1,...,a_n+b_n].\nassert sum_list([10,20,30],[15,25,35])==[25,45,65]\nYour code should pass the test:\nassert sum_list([10,20,30],[15,25,35])==[25,45,65]", "test_list": [ "assert sum_list([10,20,30],[15,25,35])==[25,45,65]", "assert sum_list([1,2,3],[5,6,7])==[6,8,10]", "assert sum_list([15,20,30],[15,45,75])==[30,65,105]", "assert sum_list([], []) == []", "assert sum_list([1, 2, 3], [4, 5, 6]) == [5, 7, 9]", "assert sum_list([10, 20, 30, 40], [5, 3, 2, 1]) == [15, 23, 32, 41]", "assert sum_list([0.5, 0.8, 1.2], [1.2, 0.3, 1.8]) == [1.7, 1.1, 3.0]", "assert sum_list(['a', 'b', 'c'], ['d', 'e', 'f']) == ['ad', 'be', 'cf']", "assert sum_list([0.1, 0.2, 0.3, 0.4], [1, 2, 3, 4]) == [1.1, 2.2, 3.3, 4.4]", "assert sum_list([-1, -2, -3, -4], [1, 2, 3, 4]) == [0, 0, 0, 0]", "assert sum_list([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [0, 0, 0, 0, 0, 0, 0, 0, 0, 0]", "assert sum_list([1, 2, 3, 4, 5], [6, 7, 8, 9, 10]) == [7, 9, 11, 13, 15]", "assert sum_list([0.1, 0.2, 0.3, 0.4], [1, 2, 2, 4]) == [1.1, 2.2, 2.3, 4.4]", "assert sum_list([1, 30, 2, 4, 2], [1, 30, 2, 4, 2]) == [2, 60, 4, 8, 4]", "assert sum_list([1, 3, 4], [1, 3, 4]) == [2, 6, 8]", "assert sum_list([-1, -2, -3, -4, -3], [1, 2, 3, 4, 3]) == [0, 0, 0, 0, 0]", "assert sum_list([0.1, 0.2, 0.3, 0.4, 0.4], [0.1, 0.2, 0.3, 0.4, 0.4]) == [0.2, 0.4, 0.6, 0.8, 0.8]", "assert sum_list([3, 3, 4], [3, 3, 4]) == [6, 6, 8]", "assert sum_list([0.1, 0.2, 0.4, 0.4, 0.1], [0.1, 0.2, 0.4, 0.4, 0.1]) == [0.2, 0.4, 0.8, 0.8, 0.2]", "assert sum_list([10, 20, 30, 40], [6, 3, 2, 1]) == [16, 23, 32, 41]", "assert sum_list([5, 3, 2, 1], [5, 3, 2, 1]) == [10, 6, 4, 2]", "assert sum_list([10, 20, 30, 40], [20, 3, 2, 1]) == [30, 23, 32, 41]", "assert sum_list([0.1, 0.2, 0.4, 0.4, -5.070116511374234e-05, 0.1, 0.1], [0.1, 0.2, 0.4, 0.4, -5.070116511374234e-05, 0.1, 0.1]) == [0.2, 0.4, 0.8, 0.8, -0.00010140233022748468, 0.2, 0.2]", "assert sum_list([-1, -2, -3, -4, -5, -6, -7, -4, -9, -10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [0, 0, 0, 0, 0, 0, 0, 4, 0, 0]", "assert sum_list([1, 2, 3, 4], [1, 2, 3, 4]) == [2, 4, 6, 8]", "assert sum_list([10, 20, 30, 40], [10, 20, 30, 40]) == [20, 40, 60, 80]", "assert sum_list([0.1, -5.070116511374234e-05, 0.2, 0.4, 0.4, -5.070116511374234e-05, 0.1, 0.1], [0.1, -5.070116511374234e-05, 0.2, 0.4, 0.4, -5.070116511374234e-05, 0.1, 0.1]) == [0.2, -0.00010140233022748468, 0.4, 0.8, 0.8, -0.00010140233022748468, 0.2, 0.2]", "assert sum_list([-1, -2, -3, -4], [-1, -2, -3, -4]) == [-2, -4, -6, -8]", "assert sum_list([1, 3, 4, 5, 6, 7, 8, 9, 10, 7], [1, 3, 4, 5, 6, 7, 8, 9, 10, 7]) == [2, 6, 8, 10, 12, 14, 16, 18, 20, 14]", "assert sum_list([1, 40, 1, 4], [1, 40, 1, 4]) == [2, 80, 2, 8]", "assert sum_list([11, 20, 30, 40], [11, 20, 30, 40]) == [22, 40, 60, 80]", "assert sum_list([-1, -2, -3, -4, -5, -6, -7, -4, -9, -10], [-1, -2, -3, -4, -5, -6, -7, -4, -9, -10]) == [-2, -4, -6, -8, -10, -12, -14, -8, -18, -20]", "assert sum_list([-1, -2, -3, -4, 3, -6, -7, -4, -9, -10], [-1, -2, -3, -4, 3, -6, -7, -4, -9, -10]) == [-2, -4, -6, -8, 6, -12, -14, -8, -18, -20]", "assert sum_list([0.1, 0.2, 0.4, 0.2682347250149916, 0.4, -5.070116511374234e-05, 0.1], [0.1, 0.2, 0.4, 0.2682347250149916, 0.4, -5.070116511374234e-05, 0.1]) == [0.2, 0.4, 0.8, 0.5364694500299833, 0.8, -0.00010140233022748468, 0.2]", "assert sum_list([-1, -2, -3, -4, 3, -6, -7, 3, -4, -9, -10, -4], [-1, -2, -3, -4, 3, -6, -7, 3, -4, -9, -10, -4]) == [-2, -4, -6, -8, 6, -12, -14, 6, -8, -18, -20, -8]", "assert sum_list([0.1, 0.12680036984068382, 0.3, 0.4], [1, 2, 2, 4]) == [1.1, 2.1268003698406837, 2.3, 4.4]", "assert sum_list([-1, -3, -5, 3, -6, -7, 3, -4, -9, -10, -4], [-1, -3, -5, 3, -6, -7, 3, -4, -9, -10, -4]) == [-2, -6, -10, 6, -12, -14, 6, -8, -18, -20, -8]", "assert sum_list([-1, -2, -3, -4, 3, -6, -4, -9, -10], [-1, -2, -3, -4, 3, -6, -4, -9, -10]) == [-2, -4, -6, -8, 6, -12, -8, -18, -20]", "assert sum_list([-5, 11, 20, 20, 30, 40, 30, 11], [-5, 11, 20, 20, 30, 40, 30, 11]) == [-10, 22, 40, 40, 60, 80, 60, 22]", "assert sum_list(['a', 'a', 'b', 'c', 'b'], ['a', 'a', 'b', 'c', 'b']) == ['aa', 'aa', 'bb', 'cc', 'bb']", "assert sum_list([0.5, 0.8, 1.2, 0.8], [0.5, 0.8, 1.2, 0.8]) == [1.0, 1.6, 2.4, 1.6]", "assert sum_list([-1, -2, -3, -4, 3, -6, -4, -9, -10, -1], [-1, -2, -3, -4, 3, -6, -4, -9, -10, -1]) == [-2, -4, -6, -8, 6, -12, -8, -18, -20, -2]", "assert sum_list([-1, -2, -3, -4, -6, 11, -4, -9, -10, -1], [-1, -2, -3, -4, -6, 11, -4, -9, -10, -1]) == [-2, -4, -6, -8, -12, 22, -8, -18, -20, -2]", "assert sum_list([5, 3, 2, 2], [5, 3, 2, 2]) == [10, 6, 4, 4]", "assert sum_list([-5.070116511374234e-05, 0.5, 0.8, 1.4877489589365553, 0.8, 1.4877489589365553], [-5.070116511374234e-05, 0.5, 0.8, 1.4877489589365553, 0.8, 1.4877489589365553]) == [-0.00010140233022748468, 1.0, 1.6, 2.9754979178731107, 1.6, 2.9754979178731107]", "assert sum_list([-1, -6, -2, -3, -4, 3, -6, -7, -4, -3, -9], [-1, -6, -2, -3, -4, 3, -6, -7, -4, -3, -9]) == [-2, -12, -4, -6, -8, 6, -12, -14, -8, -6, -18]", "assert sum_list([1, -2, -3, -4, -2], [1, -2, -3, -4, -2]) == [2, -4, -6, -8, -4]", "assert sum_list([-1, -2, -3, -4, -6, 11, 40, -9, -10, -1], [-1, -2, -3, -4, -6, 11, 40, -9, -10, -1]) == [-2, -4, -6, -8, -12, 22, 80, -18, -20, -2]", "assert sum_list([-1, -2, -3, -4, -5, -6, -7, -8, -10], [1, 2, 4, 5, 6, 7, 8, 9, 10]) == [0, 0, 1, 1, 1, 1, 1, 1, 0]", "assert sum_list([-1, -6, -2, -3, -4, 3, -6, -7, -4, -3, -9, 3, -3], [-1, -6, -2, -3, -4, 3, -6, -7, -4, -3, -9, 3, -3]) == [-2, -12, -4, -6, -8, 6, -12, -14, -8, -6, -18, 6, -6]", "assert sum_list([1, -9, 3, 2, 4], [0.1, 0.5, 0.12680036984068382, 0.3, 0.4]) == [1.1, -8.5, 3.1268003698406837, 2.3, 4.4]", "assert sum_list([1, 3, 4, 1], [1, 3, 4, 1]) == [2, 6, 8, 2]", "assert sum_list([0.1, 0.2, 0.3, 1.020982984611004, 0.4], [0.1, 0.2, 0.3, 1.020982984611004, 0.4]) == [0.2, 0.4, 0.6, 2.041965969222008, 0.8]", "assert sum_list([-1, -2, -4, -5, -6, -7, -4, -9, -11], [-1, -2, -4, -5, -6, -7, -4, -9, -11]) == [-2, -4, -8, -10, -12, -14, -8, -18, -22]", "assert sum_list([-1, -3, -5, 3, -6, -7, -4, -9, -10, -4], [-1, -3, -5, 3, -6, -7, -4, -9, -10, -4]) == [-2, -6, -10, 6, -12, -14, -8, -18, -20, -8]", "assert sum_list([5, 3, 2, 2, 5], [5, 3, 2, 2, 5]) == [10, 6, 4, 4, 10]", "assert sum_list([1, 3, 4, 5, 7, 7, 8, 9, 10, 7], [1, 3, 4, 5, 7, 7, 8, 9, 10, 7]) == [2, 6, 8, 10, 14, 14, 16, 18, 20, 14]", "assert sum_list([20, 3, 2, 1, 2], [20, 3, 2, 1, 2]) == [40, 6, 4, 2, 4]", "assert sum_list([0.1, 0.2, 0.4, 0.2682347250149916, -5.070116511374234e-05, 0.1], [0.1, 0.2, 0.4, 0.2682347250149916, -5.070116511374234e-05, 0.1]) == [0.2, 0.4, 0.8, 0.5364694500299833, -0.00010140233022748468, 0.2]", "assert sum_list([2, 3, 3, 4], [2, 3, 3, 4]) == [4, 6, 6, 8]", "assert sum_list([0, 6, -7, -4, -5, -6, -7, -8, -9, -10], [0, 6, -7, -4, -5, -6, -7, -8, -9, -10]) == [0, 12, -14, -8, -10, -12, -14, -16, -18, -20]", "assert sum_list([0.2, 0.4, 0.4910844678602658, 0.1, 0.4], [0.2, 0.4, 0.4910844678602658, 0.1, 0.4]) == [0.4, 0.8, 0.9821689357205317, 0.2, 0.8]", "assert sum_list([-1, -6, -2, -4, 3, -6, -7, -4, -3, -9, 3, -3], [-1, -6, -2, -4, 3, -6, -7, -4, -3, -9, 3, -3]) == [-2, -12, -4, -8, 6, -12, -14, -8, -6, -18, 6, -6]", "assert sum_list([3, 2, 2, 5], [3, 2, 2, 5]) == [6, 4, 4, 10]", "assert sum_list([-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -7], [-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -7]) == [-2, 4, -12, -4, -6, 12, 6, -12, -14, -8, -6, -18, -14]", "assert sum_list([0.1, 0.3, 0.4], [0.1, 0.3, 0.4]) == [0.2, 0.6, 0.8]", "assert sum_list([-1, -2, -3, -4, -5, -6, -7, -4, -9, -10, -4], [1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 8]) == [0, 0, 0, 0, 0, 0, 0, 4, 0, 1, 4]", "assert sum_list([3, 2, 1], [3, 2, 1]) == [6, 4, 2]", "assert sum_list([0.1, 0.2, 0.3, 0.3394475696956425, 0.2], [0.1, 0.2, 0.3, 0.3394475696956425, 0.2]) == [0.2, 0.4, 0.6, 0.678895139391285, 0.4]", "assert sum_list([1, 5, 2, 3, 4, 3], [1, 5, 2, 3, 4, 3]) == [2, 10, 4, 6, 8, 6]", "assert sum_list([1, 5, -7, 2, -10, 3, 4, 3], [1, 5, -7, 2, -10, 3, 4, 3]) == [2, 10, -14, 4, -20, 6, 8, 6]", "assert sum_list([-2, -3, -4, 3, -6, -4, -9, -10, -1], [-2, -3, -4, 3, -6, -4, -9, -10, -1]) == [-4, -6, -8, 6, -12, -8, -18, -20, -2]", "assert sum_list([2, 3, 4], [2, 3, 4]) == [4, 6, 8]", "assert sum_list([1, 4, 40], [1, 4, 40]) == [2, 8, 80]", "assert sum_list([-1, -2, -3, -4, -6, -7, 3, -4, -9, -10, -4], [-1, -2, -3, -4, -6, -7, 3, -4, -9, -10, -4]) == [-2, -4, -6, -8, -12, -14, 6, -8, -18, -20, -8]", "assert sum_list([11, 20, -5, 30, 30, 40], [11, 20, -5, 30, 30, 40]) == [22, 40, -10, 60, 60, 80]", "assert sum_list([1, 2, 3, 4, 4], [1, 2, 3, 4, 4]) == [2, 4, 6, 8, 8]", "assert sum_list([1, 3, 2, 2], [1, 3, 2, 2]) == [2, 6, 4, 4]", "assert sum_list([-2, -3, -4, 3, -6, -4, -9, -10, -1, -6], [-2, -3, -4, 3, -6, -4, -9, -10, -1, -6]) == [-4, -6, -8, 6, -12, -8, -18, -20, -2, -12]", "assert sum_list([-1, -2, -4, -5, 0, -6, -7, -4, -11, -7], [-1, -2, -4, -5, 0, -6, -7, -4, -11, -7]) == [-2, -4, -8, -10, 0, -12, -14, -8, -22, -14]", "assert sum_list([2, 4, 4], [2, 4, 4]) == [4, 8, 8]", "assert sum_list(['a', 'a', 'b', 'aa', 'b', 'b'], ['a', 'a', 'b', 'aa', 'b', 'b']) == ['aa', 'aa', 'bb', 'aaaa', 'bb', 'bb']", "assert sum_list([2, 4], [2, 4]) == [4, 8]", "assert sum_list([11, 20, -5, 30, 30, 40, 30], [11, 20, -5, 30, 30, 40, 30]) == [22, 40, -10, 60, 60, 80, 60]", "assert sum_list([-1, -6, -4, -5, -6, -7, -4, -9, -11], [-1, -6, -4, -5, -6, -7, -4, -9, -11]) == [-2, -12, -8, -10, -12, -14, -8, -18, -22]", "assert sum_list([-1, -3, -5, 3, -6, -7, 3, -4, -8, -10, -4], [-1, -3, -5, 3, -6, -7, 3, -4, -8, -10, -4]) == [-2, -6, -10, 6, -12, -14, 6, -8, -16, -20, -8]", "assert sum_list([0.24244486712234534, 0.4, 0.4910844678602658, 0.1, 0.4, 0.1], [0.24244486712234534, 0.4, 0.4910844678602658, 0.1, 0.4, 0.1]) == [0.4848897342446907, 0.8, 0.9821689357205317, 0.2, 0.8, 0.2]", "assert sum_list([1, 2, 3], [5, 5, 6]) == [6, 7, 9]", "assert sum_list(['', 'aa', 'a', 'a', 'b', 'c', 'b'], ['', 'aa', 'a', 'a', 'b', 'c', 'b']) == ['', 'aaaa', 'aa', 'aa', 'bb', 'cc', 'bb']", "assert sum_list([-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -5, -7, -6, 2], [-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -5, -7, -6, 2]) == [-2, 4, -12, -4, -6, 12, 6, -12, -14, -8, -6, -18, -10, -14, -12, 4]", "assert sum_list([0.24244486712234534, 0.4, 0.4910844678602658, 0.1, 0.4, 0.1, 0.4910844678602658], [0.24244486712234534, 0.4, 0.4910844678602658, 0.1, 0.4, 0.1, 0.4910844678602658]) == [0.4848897342446907, 0.8, 0.9821689357205317, 0.2, 0.8, 0.2, 0.9821689357205317]", "assert sum_list([-1, -2, -3, 9, -6, 11, -4, -9, -5, -10, -1, -1], [-1, -2, -3, 9, -6, 11, -4, -9, -5, -10, -1, -1]) == [-2, -4, -6, 18, -12, 22, -8, -18, -10, -20, -2, -2]", "assert sum_list([0.1, 0.2, 0.3, 0.4], [1, 3, 4, 4]) == [1.1, 3.2, 4.3, 4.4]", "assert sum_list([-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -7, 1, -2], [-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -7, 1, -2]) == [-2, 4, -12, -4, -6, 12, 6, -12, -14, -8, -6, -18, -14, 2, -4]", "assert sum_list([0.1, 1.4877489589365553, 0.3, 0.2], [0.1, 1.4877489589365553, 0.3, 0.2]) == [0.2, 2.9754979178731107, 0.6, 0.4]", "assert sum_list([-5.070116511374234e-05, 0.5, 0.8, 1.4877489589365553, 0.8, 1.4877489589365553, 1.4877489589365553, 1.4877489589365553], [-5.070116511374234e-05, 0.5, 0.8, 1.4877489589365553, 0.8, 1.4877489589365553, 1.4877489589365553, 1.4877489589365553]) == [-0.00010140233022748468, 1.0, 1.6, 2.9754979178731107, 1.6, 2.9754979178731107, 2.9754979178731107, 2.9754979178731107]", "assert sum_list([2, 4, 3, 4], [2, 4, 3, 4]) == [4, 8, 6, 8]", "assert sum_list([3, 4], [3, 4]) == [6, 8]", "assert sum_list([-1, -3, -5, 3, -6, -7, 3, -3, -8, -10, -4, -4], [-1, -3, -5, 3, -6, -7, 3, -3, -8, -10, -4, -4]) == [-2, -6, -10, 6, -12, -14, 6, -6, -16, -20, -8, -8]", "assert sum_list([3], [3]) == [6]", "assert sum_list([1, -6, 3, 4, 4], [1, -6, 3, 4, 4]) == [2, -12, 6, 8, 8]", "assert sum_list([0.2, 0.4, 0.4910844678602658, 0.4], [0.2, 0.4, 0.4910844678602658, 0.4]) == [0.4, 0.8, 0.9821689357205317, 0.8]", "assert sum_list([-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -7, 1, -2, -3], [-1, 2, -6, -2, -3, 6, 3, -6, -7, -4, -3, -9, -7, 1, -2, -3]) == [-2, 4, -12, -4, -6, 12, 6, -12, -14, -8, -6, -18, -14, 2, -4, -6]", "assert sum_list([2, 5, 4], [2, 5, 4]) == [4, 10, 8]", "assert sum_list([2, -5, 11, 20, 20, 30, 40, 30, 11, 11], [2, -5, 11, 20, 20, 30, 40, 30, 11, 11]) == [4, -10, 22, 40, 40, 60, 80, 60, 22, 22]", "assert sum_list(['d', 'e', 'f', 'd', 'd'], ['d', 'e', 'f', 'd', 'd']) == ['dd', 'ee', 'ff', 'dd', 'dd']", "assert sum_list([-5, 11, 20, 20, 30, 40, 30, 21, 11], [-5, 11, 20, 20, 30, 40, 30, 21, 11]) == [-10, 22, 40, 40, 60, 80, 60, 42, 22]", "assert sum_list([-5, 11, 20, 30, 40, 30, 11, 30], [-5, 11, 20, 30, 40, 30, 11, 30]) == [-10, 22, 40, 60, 80, 60, 22, 60]", "assert sum_list([-9, -2, -3, -4, 3, -6, -4, -9, -10, -1, -6], [-9, -2, -3, -4, 3, -6, -4, -9, -10, -1, -6]) == [-18, -4, -6, -8, 6, -12, -8, -18, -20, -2, -12]", "assert sum_list([2, 3, 4, 4], [2, 3, 4, 4]) == [4, 6, 8, 8]", "assert sum_list([-1, -8, -6, -2, -3, -4, 3, -6, -7, -4, -3, -9, 3, -3], [-1, -8, -6, -2, -3, -4, 3, -6, -7, -4, -3, -9, 3, -3]) == [-2, -16, -12, -4, -6, -8, 6, -12, -14, -8, -6, -18, 6, -6]", "assert sum_list([-1, -2, -3, -4, 3, -6, -4, -9, -10, -9], [-1, -2, -3, -4, 3, -6, -4, -9, -10, -9]) == [-2, -4, -6, -8, 6, -12, -8, -18, -20, -18]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove consecutive duplicates of a given list.\nassert consecutive_duplicates([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4 ])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 4]\nYour code should pass the test:\nassert consecutive_duplicates([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4 ])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 4]", "test_list": [ "assert consecutive_duplicates([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4 ])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 4]", "assert consecutive_duplicates([10, 10, 15, 19, 18, 18, 17, 26, 26, 17, 18, 10])==[10, 15, 19, 18, 17, 26, 17, 18, 10]", "assert consecutive_duplicates(['a', 'a', 'b', 'c', 'd', 'd'])==['a', 'b', 'c', 'd']", "assert consecutive_duplicates(['a', 'a', 'b', 'c', 'd', 'd', 'a', 'a'])==['a', 'b', 'c', 'd', 'a']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the lateral surface area of a cone given radius r and the height h.\nassert lateralsurface_cone(5,12)==204.20352248333654\nYour code should pass the test:\nassert lateralsurface_cone(5,12)==204.20352248333654", "test_list": [ "assert lateralsurface_cone(5,12)==204.20352248333654", "assert lateralsurface_cone(10,15)==566.3586699569488", "assert lateralsurface_cone(19,17)==1521.8090132193388" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to replace all occurrences of spaces, commas, or dots with a colon.\nassert replace_specialchar('Python language, Programming language.')==('Python:language::Programming:language:')\nYour code should pass the test:\nassert replace_specialchar('Python language, Programming language.')==('Python:language::Programming:language:')", "test_list": [ "assert replace_specialchar('Python language, Programming language.')==('Python:language::Programming:language:')", "assert replace_specialchar('a b c,d e f')==('a:b:c:d:e:f')", "assert replace_specialchar('ram reshma,ram rahim')==('ram:reshma:ram:rahim')" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the index of the first occurrence of a given number in a sorted array.\nassert find_first_occurrence([2, 5, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 1\nYour code should pass the test:\nassert find_first_occurrence([2, 5, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 1", "test_list": [ "assert find_first_occurrence([2, 5, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 1", "assert find_first_occurrence([2, 3, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 2", "assert find_first_occurrence([1, 2, 4, 5, 6, 6, 8, 9, 9, 9], 6) == 4", "assert find_first_occurrence([5], 5) == 0", "assert find_first_occurrence([5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([5, 5], 5) == 0", "assert find_first_occurrence([5, 5, 5], 5) == 0", "assert find_first_occurrence([5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([5, 5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([5, 5, 5, 5, 6], 5) == 0", "assert find_first_occurrence([5, 5, 5, 6], 5) == 0", "assert find_first_occurrence([5, 5, 5, 6], 6) == 3", "assert find_first_occurrence([5, 5, 5, 5, 6], 6) == 4", "assert find_first_occurrence([5, 5, 5, 6, 6], 5) == 0", "assert find_first_occurrence([5, 5, 6], 6) == 2", "assert find_first_occurrence([5, 5, 6], 5) == 0", "assert find_first_occurrence([4, 5, 5, 5, 6], 6) == 4", "assert find_first_occurrence([4, 5], 5) == 1", "assert find_first_occurrence([5, 6], 5) == 0", "assert find_first_occurrence([5, 6], 6) == 1", "assert find_first_occurrence([5, 5, 5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([5, 5, 5, 6, 6, 6], 5) == 0", "assert find_first_occurrence([5, 6, 6], 5) == 0", "assert find_first_occurrence([4, 4, 5, 5], 5) == 2", "assert find_first_occurrence([4, 4, 5, 5], 4) == 0", "assert find_first_occurrence([5, 5, 5, 6, 6], 6) == 3", "assert find_first_occurrence([5, 5, 6, 6, 6], 5) == 0", "assert find_first_occurrence([4, 4, 5], 5) == 2", "assert find_first_occurrence([5, 5, 5, 5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([4, 5, 5, 5, 6], 5) == 1", "assert find_first_occurrence([4, 4, 4, 5], 5) == 3", "assert find_first_occurrence([4, 4, 5], 4) == 0", "assert find_first_occurrence([5, 5, 5, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([4, 5, 5, 6, 6, 6], 5) == 1", "assert find_first_occurrence([4], 4) == 0", "assert find_first_occurrence([4, 5], 4) == 0", "assert find_first_occurrence([5, 5, 5, 5, 5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([5, 6, 6, 6], 5) == 0", "assert find_first_occurrence([4, 5, 5, 5, 5, 5, 5, 5, 5], 4) == 0", "assert find_first_occurrence([4, 5, 5], 4) == 0", "assert find_first_occurrence([5, 5, 5, 5, 6, 6], 6) == 4", "assert find_first_occurrence([5, 5, 5, 6, 6, 6, 6], 6) == 3", "assert find_first_occurrence([5, 5, 5, 6, 6, 6], 6) == 3", "assert find_first_occurrence([4, 4, 4, 4, 5], 5) == 4", "assert find_first_occurrence([4, 5, 5, 6, 6, 6], 4) == 0", "assert find_first_occurrence([4, 4, 5, 5, 5], 4) == 0", "assert find_first_occurrence([5, 5, 5, 5, 6, 6, 6], 5) == 0", "assert find_first_occurrence([5, 5, 5, 5, 6, 6], 5) == 0", "assert find_first_occurrence([4, 4, 4], 4) == 0", "assert find_first_occurrence([4, 5, 6], 5) == 1", "assert find_first_occurrence([5, 6, 6, 6], 6) == 1", "assert find_first_occurrence([4, 5, 5, 5, 5, 6], 5) == 1", "assert find_first_occurrence([5, 5, 6, 6, 6], 6) == 2", "assert find_first_occurrence([4, 5, 6, 6, 6, 6], 5) == 1", "assert find_first_occurrence([4, 6, 6, 6], 6) == 1", "assert find_first_occurrence([4, 4, 5, 5, 5, 5], 4) == 0", "assert find_first_occurrence([5, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([5, 5, 6, 6, 6, 6], 6) == 2", "assert find_first_occurrence([4, 4], 4) == 0", "assert find_first_occurrence([4, 6, 6, 6], 4) == 0", "assert find_first_occurrence([4, 6, 6, 6, 6], 4) == 0", "assert find_first_occurrence([4, 5, 5, 6, 6, 6, 6], 5) == 1", "assert find_first_occurrence([5, 6, 6, 6, 6], 6) == 1", "assert find_first_occurrence([5, 5, 6, 6], 6) == 2", "assert find_first_occurrence([5, 5, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([5, 5, 5, 6, 6, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([5, 6, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([4, 5, 6, 6, 6], 5) == 1", "assert find_first_occurrence([4, 5, 5, 6, 6], 6) == 3", "assert find_first_occurrence([4, 5, 5, 5, 6, 6], 6) == 4", "assert find_first_occurrence([4, 5, 5, 6, 6, 6], 6) == 3", "assert find_first_occurrence([4, 6], 4) == 0", "assert find_first_occurrence([4, 4, 5, 5, 5, 5, 5], 4) == 0", "assert find_first_occurrence([4, 5, 6], 4) == 0", "assert find_first_occurrence([5, 6, 6, 6, 6, 6], 6) == 1", "assert find_first_occurrence([6], 6) == 0", "assert find_first_occurrence([4, 5, 5, 6, 6, 6, 6], 6) == 3", "assert find_first_occurrence([4, 4, 4, 4], 4) == 0", "assert find_first_occurrence([5, 5, 5, 5, 5, 5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([4, 5, 6, 6, 6], 4) == 0", "assert find_first_occurrence([4, 4, 4, 5, 5], 4) == 0", "assert find_first_occurrence([4, 5, 6], 6) == 2", "assert find_first_occurrence([4, 5, 5, 5, 5, 6], 6) == 5", "assert find_first_occurrence([4, 5, 5, 5, 5], 5) == 1", "assert find_first_occurrence([5, 5, 5, 5, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5], 5) == 0", "assert find_first_occurrence([4, 6], 6) == 1", "assert find_first_occurrence([4, 5, 5, 5, 5], 4) == 0", "assert find_first_occurrence([4, 5, 5, 5, 5, 5], 5) == 1", "assert find_first_occurrence([4, 5, 5, 5, 6, 6], 5) == 1", "assert find_first_occurrence([4, 4, 5, 5, 5, 6], 6) == 5", "assert find_first_occurrence([4, 4, 5, 5, 5, 5], 5) == 2", "assert find_first_occurrence([4, 5, 5, 5, 6, 6, 6], 5) == 1", "assert find_first_occurrence([4, 5, 5, 5, 5, 6], 4) == 0", "assert find_first_occurrence([4, 4, 4, 5], 4) == 0", "assert find_first_occurrence([5, 5, 5, 6, 6, 6, 6, 6, 6, 6], 5) == 0", "assert find_first_occurrence([4, 4, 4, 5, 5], 5) == 3", "assert find_first_occurrence([6, 6], 6) == 0", "assert find_first_occurrence([4, 5, 5, 5, 7], 5) == 1", "assert find_first_occurrence([4, 4, 5, 5, 5], 5) == 2", "assert find_first_occurrence([4, 5, 5, 5, 6], 4) == 0", "assert find_first_occurrence([4, 5, 6, 6, 6, 6], 4) == 0", "assert find_first_occurrence([5, 5, 5, 5, 5, 6, 6], 6) == 5", "assert find_first_occurrence([4, 5, 6, 6, 6, 6], 6) == 2", "assert find_first_occurrence([4, 5, 5, 6], 5) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find sum of products of all possible sublists of a given list. \nassert sum_Of_Subarray_Prod([1,2,3]) == 20\nYour code should pass the test:\nassert sum_Of_Subarray_Prod([1,2,3]) == 20", "test_list": [ "assert sum_Of_Subarray_Prod([1,2,3]) == 20", "assert sum_Of_Subarray_Prod([1,2]) == 5", "assert sum_Of_Subarray_Prod([1,2,3,4]) == 84", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0", "assert sum_Of_Subarray_Prod([]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to toggle bits of the number except the first and the last bit. \nassert toggle_middle_bits(9) == 15\nYour code should pass the test:\nassert toggle_middle_bits(9) == 15", "test_list": [ "assert toggle_middle_bits(9) == 15", "assert toggle_middle_bits(10) == 12", "assert toggle_middle_bits(11) == 13", "assert toggle_middle_bits(0b1000001) == 0b1111111", "assert toggle_middle_bits(0b1001101) == 0b1110011", "assert toggle_middle_bits(2147483647) == 1073741825", "assert toggle_middle_bits(123456) == 73150", "assert toggle_middle_bits(0) == 0", "assert toggle_middle_bits(9223372036854775807) == 4611686018427387905", "assert toggle_middle_bits(34211) == 64093", "assert toggle_middle_bits(2047) == 1025", "assert toggle_middle_bits(31580) == 17570", "assert toggle_middle_bits(123455) == 73153", "assert toggle_middle_bits(31579) == 17573", "assert toggle_middle_bits(34212) == 64090", "assert toggle_middle_bits(2147483646) == 1073741824", "assert toggle_middle_bits(False) == 0", "assert toggle_middle_bits(123453) == 73155", "assert toggle_middle_bits(31578) == 17572", "assert toggle_middle_bits(True) == 3", "assert toggle_middle_bits(2147483645) == 1073741827", "assert toggle_middle_bits(31581) == 17571", "assert toggle_middle_bits(1) == 3", "assert toggle_middle_bits(34213) == 64091", "assert toggle_middle_bits(123454) == 73152", "assert toggle_middle_bits(34210) == 64092", "assert toggle_middle_bits(2046) == 1024", "assert toggle_middle_bits(2) == 2", "assert toggle_middle_bits(2147483648) == 4294967294", "assert toggle_middle_bits(53) == 43", "assert toggle_middle_bits(31577) == 17575", "assert toggle_middle_bits(9223372036854775806) == 4611686018427387904", "assert toggle_middle_bits(34215) == 64089", "assert toggle_middle_bits(9223372036854775805) == 4611686018427387907", "assert toggle_middle_bits(34208) == 64094", "assert toggle_middle_bits(34214) == 64088", "assert toggle_middle_bits(123457) == 73151", "assert toggle_middle_bits(34209) == 64095", "assert toggle_middle_bits(78) == 112", "assert toggle_middle_bits(3) == 3", "assert toggle_middle_bits(31582) == 17568", "assert toggle_middle_bits(52) == 42", "assert toggle_middle_bits(9223372036854775804) == 4611686018427387906", "assert toggle_middle_bits(58) == 36", "assert toggle_middle_bits(9223372036854775803) == 4611686018427387909", "assert toggle_middle_bits(59) == 37", "assert toggle_middle_bits(60) == 34", "assert toggle_middle_bits(57) == 39", "assert toggle_middle_bits(34216) == 64086", "assert toggle_middle_bits(9223372036854775802) == 4611686018427387908", "assert toggle_middle_bits(51) == 45", "assert toggle_middle_bits(2045) == 1027", "assert toggle_middle_bits(9223372036854775808) == 18446744073709551614", "assert toggle_middle_bits(31576) == 17574", "assert toggle_middle_bits(2044) == 1026", "assert toggle_middle_bits(79) == 113", "assert toggle_middle_bits(123452) == 73154", "assert toggle_middle_bits(2147483644) == 1073741826", "assert toggle_middle_bits(123458) == 73148", "assert toggle_middle_bits(123451) == 73157", "assert toggle_middle_bits(31583) == 17569", "assert toggle_middle_bits(54) == 40", "assert toggle_middle_bits(123459) == 73149", "assert toggle_middle_bits(2147483649) == 4294967295", "assert toggle_middle_bits(31575) == 17577", "assert toggle_middle_bits(123460) == 73146", "assert toggle_middle_bits(56) == 38", "assert toggle_middle_bits(95) == 97", "assert toggle_middle_bits(94) == 96", "assert toggle_middle_bits(123450) == 73156", "assert toggle_middle_bits(123449) == 73159", "assert toggle_middle_bits(55) == 41", "assert toggle_middle_bits(9223372036854775809) == 18446744073709551615", "assert toggle_middle_bits(9223372036854775801) == 4611686018427387911", "assert toggle_middle_bits(34217) == 64087", "assert toggle_middle_bits(34207) == 64097", "assert toggle_middle_bits(31584) == 17566", "assert toggle_middle_bits(123448) == 73158", "assert toggle_middle_bits(4) == 6", "assert toggle_middle_bits(123461) == 73147", "assert toggle_middle_bits(2043) == 1029", "assert toggle_middle_bits(93) == 99", "assert toggle_middle_bits(16) == 30", "assert toggle_middle_bits(80) == 110", "assert toggle_middle_bits(31574) == 17576", "assert toggle_middle_bits(2147483643) == 1073741829", "assert toggle_middle_bits(81) == 111", "assert toggle_middle_bits(50) == 44", "assert toggle_middle_bits(91) == 101", "assert toggle_middle_bits(47) == 49", "assert toggle_middle_bits(123464) == 73142", "assert toggle_middle_bits(123465) == 73143", "assert toggle_middle_bits(2147483650) == 4294967292", "assert toggle_middle_bits(9223372036854775810) == 18446744073709551612", "assert toggle_middle_bits(123466) == 73140", "assert toggle_middle_bits(9223372036854775800) == 4611686018427387910", "assert toggle_middle_bits(49) == 47", "assert toggle_middle_bits(34218) == 64084", "assert toggle_middle_bits(92) == 98", "assert toggle_middle_bits(46) == 48", "assert toggle_middle_bits(34219) == 64085", "assert toggle_middle_bits(83) == 109", "assert toggle_middle_bits(2048) == 4094", "assert toggle_middle_bits(48) == 46", "assert toggle_middle_bits(15) == 9", "assert toggle_middle_bits(65) == 127", "assert toggle_middle_bits(31585) == 17567", "assert toggle_middle_bits(31586) == 17564", "assert toggle_middle_bits(2147483651) == 4294967293", "assert toggle_middle_bits(2147483642) == 1073741828", "assert toggle_middle_bits(96) == 94", "assert toggle_middle_bits(17) == 31" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to locate the left insertion point for a specified value in sorted order. \nassert left_insertion([1,2,4,5],6)==4\nYour code should pass the test:\nassert left_insertion([1,2,4,5],6)==4", "test_list": [ "assert left_insertion([1,2,4,5],6)==4", "assert left_insertion([1,2,4,5],3)==2", "assert left_insertion([1,2,4,5],7)==4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given string is starting with a vowel or not using regex.\nassert check_str(\"annie\")\nYour code should pass the test:\nassert check_str(\"annie\")", "test_list": [ "assert check_str(\"annie\")", "assert not check_str(\"dawood\")", "assert check_str(\"Else\")" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the index of smallest triangular number with n digits. \nassert find_Index(2) == 4\nYour code should pass the test:\nassert find_Index(2) == 4", "test_list": [ "assert find_Index(2) == 4", "assert find_Index(3) == 14", "assert find_Index(4) == 45" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether it follows the sequence given in the patterns array.\nassert is_samepatterns([\"red\",\"green\",\"green\"], [\"a\", \"b\", \"b\"])==True\nYour code should pass the test:\nassert is_samepatterns([\"red\",\"green\",\"green\"], [\"a\", \"b\", \"b\"])==True", "test_list": [ "assert is_samepatterns([\"red\",\"green\",\"green\"], [\"a\", \"b\", \"b\"])==True", "assert is_samepatterns([\"red\",\"green\",\"greenn\"], [\"a\",\"b\",\"b\"])==False", "assert is_samepatterns([\"red\",\"green\",\"greenn\"], [\"a\",\"b\"])==False", "assert is_samepatterns(['red', 'green', 'blue'], ['a', 'b', 'c']) == True", "assert is_samepatterns(['red', 'red', 'red'], ['a', 'a', 'a']) == True", "assert is_samepatterns(['red', 'blue', 'green'], ['a', 'b', 'c']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'red'], ['a', 'b', 'c', 'a']) == True", "assert is_samepatterns(['red', 'red', 'blue', 'blue'], ['a', 'a', 'b', 'b']) == True", "assert is_samepatterns(['red', 'green', 'green', 'blue'], ['a', 'b', 'b', 'c']) == True", "assert is_samepatterns(['red', 'red', 'red', 'red'], ['a', 'a', 'a', 'a']) == True", "assert is_samepatterns(['red', 'red', 'green', 'blue'], ['a', 'a', 'b', 'c']) == True", "assert is_samepatterns(['red', 'green', 'green', 'green'], ['a', 'b', 'b', 'b']) == True", "assert is_samepatterns([], ['a', 'b', 'c']) == False", "assert is_samepatterns([], []) == True", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['a', 'b', 'b', 'c']) == False", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['a', 'b', 'c', 'a']) == False", "assert is_samepatterns(['red', 'red', 'red', 'red', 'red', 'red'], ['a', 'b', 'c', 'a', 'b', 'c']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'green', 'blue'], ['a', 'b', 'c', 'a', 'b', 'c']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'red', 'red'], ['a', 'b', 'c', 'a', 'b', 'c']) == False", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'blue', 'green'], ['a', 'b', 'c', 'a', 'b', 'c']) == False", "assert is_samepatterns(['a', 'b', 'cc', 'c', 'a'], ['a', 'b', 'cc', 'c', 'a']) == True", "assert is_samepatterns(['red', 'green', 'yellow'], ['a', 'b', 'c', 'a']) == False", "assert is_samepatterns(['b', 'c', 'a', 'b', 'c'], ['red', 'red', 'red', 'red', 'bluered', 'red']) == False", "assert is_samepatterns(['blue', 'red', 'red', 'red', 'red'], ['a', 'a', 'a', 'a']) == False", "assert is_samepatterns(['a', 'a', 'b', 'b', 'b'], ['a', 'a', 'b', 'b', 'b']) == True", "assert is_samepatterns(['blue', 'red', 'red', 'red', 'red'], ['ared', 'a']) == False", "assert is_samepatterns(['red', 'red', 'red', 'red', 'red', 'red'], ['a', 'b', 'ared', 'c', 'a', 'b', 'c']) == False", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'red', 'red', 'red'], ['a', 'b', 'ccc', 'a', 'b']) == False", "assert is_samepatterns(['red', 'green', 'bluue', 'red', 'red', 'red'], ['red', 'green', 'bluue', 'red', 'red', 'red']) == True", "assert is_samepatterns(['red', 'red', 'red'], ['red', 'red', 'red']) == True", "assert is_samepatterns([False, True, False], [False, True, False]) == True", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['red', 'green', 'blue', 'yellow']) == True", "assert is_samepatterns(['a', 'b', '', 'c'], ['a', 'b', '', 'c']) == True", "assert is_samepatterns(['ared', 'a'], ['blue', 'red', 'red', 'red', 'red']) == False", "assert is_samepatterns(['blue', 'red', 'red', 'red', 'red'], ['blue', 'red', 'red', 'red', 'red']) == True", "assert is_samepatterns(['bluered', 'red', 'yellow', 'red', 'reyellow', 'cc', 'red'], ['bluered', 'red', 'yellow', 'red', 'reyellow', 'cc', 'red']) == True", "assert is_samepatterns(['ared', 'rred', 'green'], ['ared', 'rred', 'green']) == True", "assert is_samepatterns([False], [False]) == True", "assert is_samepatterns(['red', 'green', 'green', 'green'], ['ccc', 'b', 'b', 'b']) == True", "assert is_samepatterns(['blueccc', 'blue', 'red', 'red', 'red', 'cc'], ['bluue', 'a', 'a', 'a', 'a']) == False", "assert is_samepatterns(['red', 'green', 'bluue', 'red', 'red'], ['red', 'green', 'bluue', 'red', 'red']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'eblue', 'yellow', 'blue'], ['red', 'green', 'blue', 'eblue', 'yellow', 'blue']) == True", "assert is_samepatterns(['blueccc', 'blue', 'red', 'red', 'red', 'cc'], ['bluue', 'a', 'a', 'a']) == False", "assert is_samepatterns(['a', 'a', 'b', 'bblueccc', 'b', 'b'], ['a', 'a', 'b', 'bblueccc', 'b', 'b']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['a', 'b', 'c', 'a', 'a']) == False", "assert is_samepatterns(['blue', 'red', 'red', 'red', 'red'], ['a', 'a', 'cc', 'a']) == False", "assert is_samepatterns(['blueccc', 'ared', 'a'], ['blue', 'red', 'red', 'red', 'red']) == False", "assert is_samepatterns([False, True, False, False], [False, True, False, False]) == True", "assert is_samepatterns(['belue', 'red', 'red', 'green', 'blue', 'red'], ['belue', 'red', 'red', 'green', 'blue', 'red']) == True", "assert is_samepatterns(['red', 'greeen', 'blue', 'red', 'red', 'red', 'red', 'red'], ['red', 'greeen', 'blue', 'red', 'red', 'red', 'red', 'red']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['a', 'b', 'c', 'a', 'a', 'aa']) == False", "assert is_samepatterns(['red', 'blue', 'green'], ['a', 'byellow', 'c']) == True", "assert is_samepatterns(['red', 'green', 'green'], ['ccc', 'b', 'b', 'b']) == False", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'blue', 'green'], ['b', 'c', 'a', 'b', 'c']) == False", "assert is_samepatterns(['blueccc', 'blue', 'red', 'red', 'blcccueccc', 'red', 'cc'], ['blueccc', 'blue', 'red', 'red', 'blcccueccc', 'red', 'cc']) == True", "assert is_samepatterns(['red', 'rred', 'green', 'blue', 'yellw', 'eblue', 'yellow', 'blue'], ['red', 'rred', 'green', 'blue', 'yellw', 'eblue', 'yellow', 'blue']) == True", "assert is_samepatterns(['gbluered', 'yellow', 'red', 'blue', 'green'], ['gbluered', 'yellow', 'red', 'blue', 'green']) == True", "assert is_samepatterns([True, False], [True, False]) == True", "assert is_samepatterns(['red', 'green', 'red'], ['a', 'b', 'c', 'a']) == False", "assert is_samepatterns(['belue', 'a'], ['belue', 'a']) == True", "assert is_samepatterns(['green', 'rred', 'yellw', 'green'], ['green', 'rred', 'yellw', 'green']) == True", "assert is_samepatterns(['bluaredue', 'red', 'green', 'bluue', 'red', 'red', 'red'], ['bluaredue', 'red', 'green', 'bluue', 'red', 'red', 'red']) == True", "assert is_samepatterns(['bluue', 'a', 'a', 'a'], ['bluue', 'a', 'a', 'a']) == True", "assert is_samepatterns(['a', 'bb', 'c', 'a'], ['a', 'bb', 'c', 'a']) == True", "assert is_samepatterns(['a', 'b', 'c', 'a', 'b', 'c'], ['a', 'b', 'c', 'a', 'b', 'c']) == True", "assert is_samepatterns(['red', 'greeen', 'blue', 'red', 'red', 'red', 'red', 'red', 'greeen'], ['red', 'greeen', 'blue', 'red', 'red', 'red', 'red', 'red', 'greeen']) == True", "assert is_samepatterns(['blueccc', 'blue', 'red', 'red', 'blueccc', 'red', 'cc', 'red', 'red', 'blueccc'], ['blueccc', 'blue', 'red', 'red', 'blueccc', 'red', 'cc', 'red', 'red', 'blueccc']) == True", "assert is_samepatterns(['a', 'red', 'b', 'rred', 'c'], ['a', 'red', 'b', 'rred', 'c']) == True", "assert is_samepatterns(['a', 'b', 'c', 'a', 'a', 'aa'], ['red', 'green', 'blue', 'yellow']) == False", "assert is_samepatterns(['red', 'green', 'red'], ['a', 'b', 'c', 'a', 'a']) == False", "assert is_samepatterns(['ared', 'rred', 'green', 'green'], ['ared', 'rred', 'green', 'green']) == True", "assert is_samepatterns(['red', 'blue', 'yellow', 'red'], ['red', 'blue', 'yellow', 'red']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'bluue', 'red', 'red', 'red'], ['red', 'green', 'blue', 'bluue', 'red', 'red', 'red']) == True", "assert is_samepatterns(['red', 'red', 'gbegen', 'gbeen', 'blue'], ['a', 'a', 'b', 'c']) == False", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'red', 'red', 'green', 'green'], ['red', 'green', 'blue', 'red', 'red', 'red', 'green', 'green']) == True", "assert is_samepatterns(['green', 'c', 'yellw', 'green', 'green'], ['green', 'c', 'yellw', 'green', 'green']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'bluue', 'red', 'red'], ['red', 'green', 'blue', 'bluue', 'red', 'red']) == True", "assert is_samepatterns(['a', 'b', 'aa', 'c', 'a'], ['a', 'b', 'aa', 'c', 'a']) == True", "assert is_samepatterns(['red', 'greeen', 'red', 'red', 'red', 'red', 'red'], ['red', 'greeen', 'red', 'red', 'red', 'red', 'red']) == True", "assert is_samepatterns(['red', 'red', 'red', 'red', 'red', 'yellow', 'red'], ['red', 'red', 'red', 'red', 'red', 'yellow', 'red']) == True", "assert is_samepatterns(['green', 'rred', 'yellw'], ['green', 'rred', 'yellw']) == True", "assert is_samepatterns(['gbluered', 'yellow', 'belue', 'blue', 'green'], ['gbluered', 'yellow', 'belue', 'blue', 'green']) == True", "assert is_samepatterns(['gbluered', 'yellow', 'red', 'blue', 'green', 'red'], ['gbluered', 'yellow', 'red', 'blue', 'green', 'red']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'red', 'dred', 'red'], ['red', 'green', 'blue', 'red', 'red', 'dred', 'red']) == True", "assert is_samepatterns(['gbluered', 'yellow', 'byellow', 'breyellowyellow', 'blue', 'green', 'red'], ['gbluered', 'yellow', 'byellow', 'breyellowyellow', 'blue', 'green', 'red']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'red', 'red'], ['red', 'green', 'blue', 'red', 'red', 'red']) == True", "assert is_samepatterns(['red', 'green', 'yellow'], ['red', 'green', 'yellow']) == True", "assert is_samepatterns(['gbegen', 'a', 'b', '', 'c'], ['gbegen', 'a', 'b', '', 'c']) == True", "assert is_samepatterns(['blue', 'red', 'red', 'blueccc', 'cc', 'red', 'red', 'blueccc'], ['blue', 'red', 'red', 'blueccc', 'cc', 'red', 'red', 'blueccc']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['a', 'b', 'b', 'c', 'b', 'a']) == False", "assert is_samepatterns(['red', 'green', 'blue', 'red', 'blue', 'green'], ['b', 'c', 'bb', 'a', 'b', 'c']) == False", "assert is_samepatterns(['green', 'blue', 'yellow', 'green'], ['a', 'b', 'c', 'a', 'a']) == False", "assert is_samepatterns(['green', 'blue', 'bluue', 'red', 'red', 'red'], ['green', 'blue', 'bluue', 'red', 'red', 'red']) == True", "assert is_samepatterns(['red', 'red', 'red', 'gbegen'], ['a', 'a', 'a', 'a']) == False", "assert is_samepatterns(['red', 'red', 'rebd', 'red', 'bluered', 'red', 'red'], ['red', 'red', 'rebd', 'red', 'bluered', 'red', 'red']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'eblue', 'yellw', 'yellow', 'blue', 'blue'], ['red', 'green', 'blue', 'eblue', 'yellw', 'yellow', 'blue', 'blue']) == True", "assert is_samepatterns(['aa', 'bluue', 'a', 'a', 'a'], ['aa', 'bluue', 'a', 'a', 'a']) == True", "assert is_samepatterns(['red', 'rred', 'green', 'blue', 'yellw', 'eblue', 'yelolow', 'blue'], ['red', 'rred', 'green', 'blue', 'yellw', 'eblue', 'yelolow', 'blue']) == True", "assert is_samepatterns(['a', 'b', '', 'c', 'a', 'a', 'aa'], ['red', 'green', 'blue', 'yellow']) == False", "assert is_samepatterns(['red', 'green', 'red', 'green', 'blue'], ['red', 'green', 'red', 'green', 'blue']) == True", "assert is_samepatterns(['red', 'green', 'blue', 'yellow'], ['a', 'b', 'c', 'green', 'a', 'a']) == False", "assert is_samepatterns(['red', 'yellow', 'red'], ['red', 'yellow', 'red']) == True", "assert is_samepatterns(['red', 'green', 'green', 'green', 'green'], ['red', 'green', 'green', 'green', 'green']) == True", "assert is_samepatterns(['green', 'rred', 'yellw', 'breyellowyellow', 'green'], ['green', 'rred', 'yellw', 'breyellowyellow', 'green']) == True", "assert is_samepatterns(['green', 'blue', 'yellow', 'green'], ['a', 'b', 'c', 'a']) == True", "assert is_samepatterns(['reed', 'blue', 'red', 'red', 'red'], ['reed', 'blue', 'red', 'red', 'red']) == True", "assert is_samepatterns(['blueccc', 'blue', 'red', 'red', 'blueccc', 'red', 'cc', 'red', 'blueccc', 'red'], ['blueccc', 'blue', 'red', 'red', 'blueccc', 'red', 'cc', 'red', 'blueccc', 'red']) == True", "assert is_samepatterns(['red', 'green', 'green', 'green', 'bb'], ['ccc', 'b', 'b', 'b', 'ccc']) == False", "assert is_samepatterns(['b', 'green', 'rred', 'yellw', 'breyellowyellow', 'breyellowyellow', 'green'], ['b', 'green', 'rred', 'yellw', 'breyellowyellow', 'breyellowyellow', 'green']) == True", "assert is_samepatterns(['gbluered', 'yellow', 'bb', 'belue', 'rebd', 'blue', 'green', 'yellow'], ['gbluered', 'yellow', 'bb', 'belue', 'rebd', 'blue', 'green', 'yellow']) == True", "assert is_samepatterns(['red', 'greeen', 'blue', 'red', 'red', 'reyellowd', 'red'], ['red', 'greeen', 'blue', 'red', 'red', 'reyellowd', 'red']) == True", "assert is_samepatterns(['red', 'blue', 'yellow', 'yellow'], ['red', 'blue', 'yellow', 'yellow']) == True", "assert is_samepatterns(['red', 'green', 'eblue', 'blue'], ['a', 'b', 'b', 'c']) == False", "assert is_samepatterns(['red', 'green', 'gbluered', 'blue', 'bluue', 'gbluered', 'red', 'red'], ['red', 'green', 'gbluered', 'blue', 'bluue', 'gbluered', 'red', 'red']) == True", "assert is_samepatterns(['ared'], ['blue', 'red', 'red', 'red', 'red']) == False", "assert is_samepatterns(['red', 'red', 'red', 'red', 'red', 'red', 'red', 'red'], ['a', 'b', 'ared', 'c', 'a', 'b', 'c', 'a']) == True", "assert is_samepatterns(['red', 'red', 'red', 'red', 'red', 'red', 'red', 'rrebded'], ['a', 'b', 'ared', 'c', 'a', 'b', 'c', 'a']) == False", "assert is_samepatterns(['a', 'b', 'abluered', 'aa', 'c', 'aa', 'aa'], ['a', 'b', 'abluered', 'aa', 'c', 'aa', 'aa']) == True", "assert is_samepatterns(['a', '', 'a', 'b', 'b'], ['a', '', 'a', 'b', 'b']) == True", "assert is_samepatterns(['gbegen', 'a', 'b', 'c', 'c'], ['gbegen', 'a', 'b', 'c', 'c']) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert the given tuple to a key-value dictionary using adjacent elements. \nassert tuple_to_dict((1, 5, 7, 10, 13, 5)) == {1: 5, 7: 10, 13: 5}\nYour code should pass the test:\nassert tuple_to_dict((1, 5, 7, 10, 13, 5)) == {1: 5, 7: 10, 13: 5}", "test_list": [ "assert tuple_to_dict((1, 5, 7, 10, 13, 5)) == {1: 5, 7: 10, 13: 5}", "assert tuple_to_dict((1, 2, 3, 4, 5, 6)) == {1: 2, 3: 4, 5: 6}", "assert tuple_to_dict((7, 8, 9, 10, 11, 12)) == {7: 8, 9: 10, 11: 12}", "assert tuple_to_dict(()) == {}", "assert tuple_to_dict((10, 20, 30, 40, 50, 60, 70, 80)) == {10: 20, 30: 40, 50: 60, 70: 80}", "assert tuple_to_dict((5, 'a', 10, 'b', 15, 'c', 20, 'd')) == {5: 'a', 10: 'b', 15: 'c', 20: 'd'}", "assert tuple_to_dict(('apple', 'red', 'banana', 'yellow', 'grape', 'purple')) == {'apple': 'red', 'banana': 'yellow', 'grape': 'purple'}", "assert tuple_to_dict((1, 'a', 2, 'b', 3, 'c', 4, 'd')) == {1: 'a', 2: 'b', 3: 'c', 4: 'd'}", "assert tuple_to_dict((1.5, 'a', 2.7, 'b', 3.2, 'c', 4.9, 'd')) == {1.5: 'a', 2.7: 'b', 3.2: 'c', 4.9: 'd'}", "assert tuple_to_dict((1, 'a', 40, 'b', 3, 'c', 4, 'd')) == {1: 'a', 40: 'b', 3: 'c', 4: 'd'}", "assert tuple_to_dict((3.2, 'a', 2.7, 'b', 3.2, 'c', 4.9, 'd')) == {3.2: 'c', 2.7: 'b', 4.9: 'd'}", "assert tuple_to_dict((10, 20, 30, 40, 60, 11, 70, 80)) == {10: 20, 30: 40, 60: 11, 70: 80}", "assert tuple_to_dict(('apple', 'red', 'banapurplena', 'yellow', 'purple', 'grape')) == {'apple': 'red', 'banapurplena': 'yellow', 'purple': 'grape'}", "assert tuple_to_dict((1.5, 'a', 5.2, 'b', 3.2, 'c', 4.9, 'd')) == {1.5: 'a', 5.2: 'b', 3.2: 'c', 4.9: 'd'}", "assert tuple_to_dict((10, 20, 30, 40, 50, 1, 70, 80)) == {10: 20, 30: 40, 50: 1, 70: 80}", "assert tuple_to_dict((1, 'a', 4, 'b', 3, 'c', 4, 'd')) == {1: 'a', 4: 'd', 3: 'c'}", "assert tuple_to_dict((1, 'a', 2, 'b', 3, 'c', 4, 'ec', 'd', 4)) == {1: 'a', 2: 'b', 3: 'c', 4: 'ec', 'd': 4}", "assert tuple_to_dict((1, 'a', 40, 'b', 'apple', 'dd', 3, 'c', 4, 'd')) == {1: 'a', 40: 'b', 'apple': 'dd', 3: 'c', 4: 'd'}", "assert tuple_to_dict((10, 20, 1, 30, 40, 60, 11, 70, 80, 20)) == {10: 20, 1: 30, 40: 60, 11: 70, 80: 20}", "assert tuple_to_dict((1, 'a', 1, 'b', 3, 'c', 4, 'd')) == {1: 'b', 3: 'c', 4: 'd'}", "assert tuple_to_dict((1, 'a', 2, 'b', 'c', 4, 'ec', 4)) == {1: 'a', 2: 'b', 'c': 4, 'ec': 4}", "assert tuple_to_dict((10, 20, 30, 40, 50, 1, 5, 80)) == {10: 20, 30: 40, 50: 1, 5: 80}", "assert tuple_to_dict((1, 'aa', 4, 'b', 3, 'c', 4, 'd')) == {1: 'aa', 4: 'd', 3: 'c'}", "assert tuple_to_dict((1, 'a', 2, 3, 0, 'c', 4, 'd')) == {1: 'a', 2: 3, 0: 'c', 4: 'd'}", "assert tuple_to_dict((1.5, 'a', 2.7, 'bb', 3.2, 'c', 4.9, 'd')) == {1.5: 'a', 2.7: 'bb', 3.2: 'c', 4.9: 'd'}", "assert tuple_to_dict((1.5, 'a', 2.7, 'bb', 3.2, 'c', 4.9, 'dd')) == {1.5: 'a', 2.7: 'bb', 3.2: 'c', 4.9: 'dd'}", "assert tuple_to_dict((1, 'a', 2, 3, 0, 'c', 4, 'd', 'c', 1)) == {1: 'a', 2: 3, 0: 'c', 4: 'd', 'c': 1}", "assert tuple_to_dict((1, 4, 3, 'c', 4, 'd')) == {1: 4, 3: 'c', 4: 'd'}", "assert tuple_to_dict((1, 'a', 1, 'apple', 3, 'c', 4, 'd')) == {1: 'apple', 3: 'c', 4: 'd'}", "assert tuple_to_dict((10, 20, 30, 11, 40, 1, 70, 80)) == {10: 20, 30: 11, 40: 1, 70: 80}", "assert tuple_to_dict((1, 'a', 2, 3, 5, 'c', 4, 'd')) == {1: 'a', 2: 3, 5: 'c', 4: 'd'}", "assert tuple_to_dict(('apple', 'red', 'banapurplena', 'yellow', 'purple', 'graape')) == {'apple': 'red', 'banapurplena': 'yellow', 'purple': 'graape'}", "assert tuple_to_dict((4, 'e', 2, 3, 0, 'c', 4, 'd')) == {4: 'd', 2: 3, 0: 'c'}", "assert tuple_to_dict((1.5, 'a', 5.2, 'b', 3.2, 'c', 'd', 'b')) == {1.5: 'a', 5.2: 'b', 3.2: 'c', 'd': 'b'}", "assert tuple_to_dict((1, 'purple', 40, 'b', 'apple', 'dd', 3, 'c', 4, 'd')) == {1: 'purple', 40: 'b', 'apple': 'dd', 3: 'c', 4: 'd'}", "assert tuple_to_dict((1, 'a', 2, 'b', 3, 'c', 4, 'ec', 'grape', 4)) == {1: 'a', 2: 'b', 3: 'c', 4: 'ec', 'grape': 4}", "assert tuple_to_dict((1.5, '', 2.7, 'bb', 3.2, 'c', 4.9, 'd')) == {1.5: '', 2.7: 'bb', 3.2: 'c', 4.9: 'd'}", "assert tuple_to_dict((5, 'a', 10, 'b', 15, 'c', 20, 'd', 'a', 20)) == {5: 'a', 10: 'b', 15: 'c', 20: 'd', 'a': 20}", "assert tuple_to_dict((1.5, 'a', 2.7, 'b', 'c', 4.9, 'd', 'd')) == {1.5: 'a', 2.7: 'b', 'c': 4.9, 'd': 'd'}", "assert tuple_to_dict((1.5, 'a', 'bb', 3.2, 'c', 5.618850405922002, 'd', 4.9)) == {1.5: 'a', 'bb': 3.2, 'c': 5.618850405922002, 'd': 4.9}", "assert tuple_to_dict((1, 4, 50, 'c', 4, 'd')) == {1: 4, 50: 'c', 4: 'd'}", "assert tuple_to_dict((1, 'grape', 2, 'b', 3, 'c', 4, 'd')) == {1: 'grape', 2: 'b', 3: 'c', 4: 'd'}", "assert tuple_to_dict((10, 20, 1, 30, 40, 60, 11, 70, 80, 20, 60, 20)) == {10: 20, 1: 30, 40: 60, 11: 70, 80: 20, 60: 20}", "assert tuple_to_dict((1.5, 'a', 2.7, 'bb', 3.2, 4.9, 'd', 'bb')) == {1.5: 'a', 2.7: 'bb', 3.2: 4.9, 'd': 'bb'}", "assert tuple_to_dict((10, 20, 30, 50, 1, 5, 80, 20)) == {10: 20, 30: 50, 1: 5, 80: 20}", "assert tuple_to_dict(('apple', 'red', 'banana', 'yellow', 'gprape', 'purple')) == {'apple': 'red', 'banana': 'yellow', 'gprape': 'purple'}", "assert tuple_to_dict(('apple', 'red', 'banapurplena', 'yellow', 'purple', 'yellow', 'graape', 'yellow')) == {'apple': 'red', 'banapurplena': 'yellow', 'purple': 'yellow', 'graape': 'yellow'}", "assert tuple_to_dict((5, 'a', 10, 'b', 15, 'c', 20, 'd', 10, 'd')) == {5: 'a', 10: 'd', 15: 'c', 20: 'd'}", "assert tuple_to_dict((0, 1, 'a', 2, 3, 0, 'c', 'd')) == {0: 1, 'a': 2, 3: 0, 'c': 'd'}", "assert tuple_to_dict((1, 'a', 40, 'b', 'dd', 'dd', 3, 'c', 4, 'd')) == {1: 'a', 40: 'b', 'dd': 'dd', 3: 'c', 4: 'd'}", "assert tuple_to_dict((29, 10, 20, 30, 11, 1, 70, 80)) == {29: 10, 20: 30, 11: 1, 70: 80}", "assert tuple_to_dict((10, 20, 30, 40, 60, 11, 70, 80, 20, 70)) == {10: 20, 30: 40, 60: 11, 70: 80, 20: 70}", "assert tuple_to_dict((10, 30, 40, 11, 70, 80, 20, 70)) == {10: 30, 40: 11, 70: 80, 20: 70}", "assert tuple_to_dict((1.5, 'a', 2.7, 'bb', 3.2, 5.618850405922002, 'c', 4.9, 'dd', 3.2)) == {1.5: 'a', 2.7: 'bb', 3.2: 5.618850405922002, 'c': 4.9, 'dd': 3.2}", "assert tuple_to_dict((10, 20, 30, 40, 50, 1, 71, 79)) == {10: 20, 30: 40, 50: 1, 71: 79}", "assert tuple_to_dict((0, 'a', 1, 'apple', 3, 'c', 4, 'd')) == {0: 'a', 1: 'apple', 3: 'c', 4: 'd'}", "assert tuple_to_dict((10, 20, 30, 40, 50, 0, 71, 79)) == {10: 20, 30: 40, 50: 0, 71: 79}", "assert tuple_to_dict((10, 20, 30, 10, 50, 1, 4, 80)) == {10: 20, 30: 10, 50: 1, 4: 80}", "assert tuple_to_dict((1.5, 'a', 'bb', 3.2, 'c', 1.5, 5.618850405922002, 'd', 4.9, 4.9)) == {1.5: 'a', 'bb': 3.2, 'c': 1.5, 5.618850405922002: 'd', 4.9: 4.9}", "assert tuple_to_dict((1, 'dgrape', 'a', 40, 'b', 'dd', 'dd', 3, 'c', 'dd', 4, 'd')) == {1: 'dgrape', 'a': 40, 'b': 'dd', 'dd': 3, 'c': 'dd', 4: 'd'}", "assert tuple_to_dict((4, 3, 'c', 'd')) == {4: 3, 'c': 'd'}", "assert tuple_to_dict((10, 20, 30, 50, 1, 5, 79, 20)) == {10: 20, 30: 50, 1: 5, 79: 20}", "assert tuple_to_dict((1, 29, 'a', 2, 'gprape', 'c', '', 4, 'ec', 4)) == {1: 29, 'a': 2, 'gprape': 'c', '': 4, 'ec': 4}", "assert tuple_to_dict((10, 0, 1, 30, 40, 60, 11, 70, 80, 20, 5, 10)) == {10: 0, 1: 30, 40: 60, 11: 70, 80: 20, 5: 10}", "assert tuple_to_dict((10, 70, 20, 30, 40, 50, 60, 70, 80, 80)) == {10: 70, 20: 30, 40: 50, 60: 70, 80: 80}", "assert tuple_to_dict((0, 'aa', 1, 'apple', 3, 'c', 4, 'd')) == {0: 'aa', 1: 'apple', 3: 'c', 4: 'd'}", "assert tuple_to_dict((1.5, 'a', 2.7, 'bb', 3.2, 'a', 'd', 'a')) == {1.5: 'a', 2.7: 'bb', 3.2: 'a', 'd': 'a'}", "assert tuple_to_dict((29, 10, 20, 30, 11, 20, 70, 80)) == {29: 10, 20: 30, 11: 20, 70: 80}", "assert tuple_to_dict((2.7, 1.5, 'a', 'bb', 3.2, 'c', 5.618850405922002, 'd', 4.9, 3.2)) == {2.7: 1.5, 'a': 'bb', 3.2: 'c', 5.618850405922002: 'd', 4.9: 3.2}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether all the characters are same or not.\nassert all_Characters_Same(\"python\") == False\nYour code should pass the test:\nassert all_Characters_Same(\"python\") == False", "test_list": [ "assert all_Characters_Same(\"python\") == False", "assert all_Characters_Same(\"aaa\") == True", "assert all_Characters_Same(\"data\") == False", "assert all_Characters_Same('') == True", "assert all_Characters_Same('ms') == False", "assert all_Characters_Same('mms') == False", "assert all_Characters_Same('msms') == False", "assert all_Characters_Same('mmms') == False", "assert all_Characters_Same('yQNKBeQ') == False", "assert all_Characters_Same('msmyQNKBeQs') == False", "assert all_Characters_Same('mmss') == False", "assert all_Characters_Same('m') == True", "assert all_Characters_Same('msmss') == False", "assert all_Characters_Same('msmyQNyQNKBeQKBeQs') == False", "assert all_Characters_Same('mmsss') == False", "assert all_Characters_Same('mmsmyQNKBeQsmsss') == False", "assert all_Characters_Same('smssms') == False", "assert all_Characters_Same('mmsmss') == False", "assert all_Characters_Same('yKQNKBeQ') == False", "assert all_Characters_Same('mmmmmsmsssmmsss') == False", "assert all_Characters_Same('msmms') == False", "assert all_Characters_Same('msmyQNyQNKBeQKBeQsmmsmss') == False", "assert all_Characters_Same('msmyQNyQNBKBeQKBeQsmmsmss') == False", "assert all_Characters_Same('mmmsms') == False", "assert all_Characters_Same('mmsms') == False", "assert all_Characters_Same('msmmsms') == False", "assert all_Characters_Same('mmmss') == False", "assert all_Characters_Same('smssm') == False", "assert all_Characters_Same('mss') == False", "assert all_Characters_Same('msmmmss') == False", "assert all_Characters_Same('mmmms') == False", "assert all_Characters_Same('mssmsmyQNKBeQs') == False", "assert all_Characters_Same('mmsmyQNKBeQsmmsss') == False", "assert all_Characters_Same('msmyQNKBeQNs') == False", "assert all_Characters_Same('zWgdk') == False", "assert all_Characters_Same('mmsmsmmssss') == False", "assert all_Characters_Same('mQsmyQNKBeQs') == False", "assert all_Characters_Same('smssmsmyQNKBeQsmssms') == False", "assert all_Characters_Same('mmmmsms') == False", "assert all_Characters_Same('RfuIu') == False", "assert all_Characters_Same('mmssms') == False", "assert all_Characters_Same('RufuIu') == False", "assert all_Characters_Same('mmsmyQNyQNKBeQKBeQsmmmsms') == False", "assert all_Characters_Same('mssmsmysQNKBeQs') == False", "assert all_Characters_Same('mssmsNKBeQs') == False", "assert all_Characters_Same('mmmsmsmss') == False", "assert all_Characters_Same('mmmmsmyQNKBeQsmmsssssms') == False", "assert all_Characters_Same('msmmss') == False", "assert all_Characters_Same('smss') == False", "assert all_Characters_Same('smszWgdksm') == False", "assert all_Characters_Same('smssmms') == False", "assert all_Characters_Same('msmyQNyQNKBeQKBseQsmmsmss') == False", "assert all_Characters_Same('mmsmyQNyQNKBmmmsmseQKBeQsmmmsms') == False", "assert all_Characters_Same('msmmmmsmyQNKBeQNsss') == False", "assert all_Characters_Same('mmmsmss') == False", "assert all_Characters_Same('mmmmmmsmsssmmsss') == False", "assert all_Characters_Same('mmmsmyQNKBeQNsssms') == False", "assert all_Characters_Same('smssmsmymmsmsmmssssQNKBeQsmssms') == False", "assert all_Characters_Same('mmsmyQNKBmeQs') == False", "assert all_Characters_Same('mmmsmyQNyQNKBmmmsmseQKBeQsmmmsmsmsms') == False", "assert all_Characters_Same('mmmmsmsmsmmmmmmsmsssmmsss') == False", "assert all_Characters_Same('mmmssyQNKBeQmss') == False", "assert all_Characters_Same('msmyQNyQKNKBeQKBeQsmmsmss') == False", "assert all_Characters_Same('msmyQNyQKNKBmsmyQNKBeQNseQKBeQsmmsmss') == False", "assert all_Characters_Same('msmyQNyQNKBeQKBseQsmmQsmss') == False", "assert all_Characters_Same('msmyQNKBesQNs') == False", "assert all_Characters_Same('yKQNKBemssmsmysQNKBeQsQ') == False", "assert all_Characters_Same('mmsmyQNKBeQssmmsss') == False", "assert all_Characters_Same('msmmsmmsms') == False", "assert all_Characters_Same('mmyKQNKBeQmssyQNKBeQmss') == False", "assert all_Characters_Same('mmmmsmssmsNKBeQsmsmmms') == False", "assert all_Characters_Same('mmmsmmmsmsssmmsss') == False", "assert all_Characters_Same('smssmmmmmsmsssmmsssm') == False", "assert all_Characters_Same('mmmsmyQNKBeQsmssss') == False", "assert all_Characters_Same('msmyQNyQNBKyBeQKBeQsmmsmss') == False", "assert all_Characters_Same('msmmsmmmsms') == False", "assert all_Characters_Same('mmmsmsmyQNyQNKBeQKBseQsmmsmssms') == False", "assert all_Characters_Same('mmmmmsmyQNKBeQNsssmsmms') == False", "assert all_Characters_Same('mmmmsmsmsmmmmmmsmsssmmmmsmyQNKBeQsmmssssss') == False", "assert all_Characters_Same('mmmmsmyQNKBeQNsssmsmsmmsmmssss') == False", "assert all_Characters_Same('mmmmmmmsmyQNKBeQNsssmsmsmmsmmssssmmsmyQNKBeQNsssmsmms') == False", "assert all_Characters_Same('mssmQsmyQNKBeQs') == False", "assert all_Characters_Same('smmsssmsmymmsmsmmssssQNKBeQsmssms') == False", "assert all_Characters_Same('yKQN') == False", "assert all_Characters_Same('smssmmmmmmmmmsmyQNKBeQNsssmsmsmmsmmssssmmsmyQNKBeQNsssmsmmss') == False", "assert all_Characters_Same('smssmsmyQNKBmmsmyQNKBeQssmmssseQsmssms') == False", "assert all_Characters_Same('Rf') == False", "assert all_Characters_Same('mmRufuIus') == False", "assert all_Characters_Same('smssmBmmsmyQNKBeQssmmssseQsmssms') == False", "assert all_Characters_Same('BmmmsmyQNyQNKBmmmsmseQKBeQsmmmsmsmsmsRfuIu') == False", "assert all_Characters_Same('smsmsmssmsmyQNKBmmsmyssseQsmssms') == False", "assert all_Characters_Same('yKQNKmssmQsmyQNKBeQsBeQ') == False", "assert all_Characters_Same('mssmmmmsmyQNKBeQsmmsssssms') == False", "assert all_Characters_Same('zWgdWk') == False", "assert all_Characters_Same('mssmmms') == False", "assert all_Characters_Same('zWgdW') == False", "assert all_Characters_Same('smmsmyQNKBeQssmmsssmssm') == False", "assert all_Characters_Same('mssmsmysQNKBeQss') == False", "assert all_Characters_Same('mszWgWdWkms') == False", "assert all_Characters_Same('msmssmsmysQNKBeQss') == False", "assert all_Characters_Same('mmsmyQNyQNKBmmmsmseQKBmeQsmmmsms') == False", "assert all_Characters_Same('smszkWgdksm') == False", "assert all_Characters_Same('msmyQNyQNKBeQKBesQsmmsmss') == False", "assert all_Characters_Same('smssmBmmsmyQNKBeQsssmmssseQssmssms') == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to caluclate the area of a tetrahedron.\nassert area_tetrahedron(3)==15.588457268119894\nYour code should pass the test:\nassert math.isclose(area_tetrahedron(3), 15.588457268119894, rel_tol=0.001)", "test_list": [ "assert math.isclose(area_tetrahedron(3), 15.588457268119894, rel_tol=0.001)", "assert math.isclose(area_tetrahedron(20), 692.8203230275509, rel_tol=0.001)", "assert math.isclose(area_tetrahedron(10), 173.20508075688772, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to rotate a given list by specified number of items to the right direction. \nassert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],3)==[8, 9, 10, 1, 2, 3, 4, 5, 6, 7]\nYour code should pass the test:\nassert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],3)==[8, 9, 10, 1, 2, 3, 4, 5, 6, 7]", "test_list": [ "assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],3)==[8, 9, 10, 1, 2, 3, 4, 5, 6, 7]", "assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],2)==[9, 10, 1, 2, 3, 4, 5, 6, 7, 8]", "assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],5)==[6, 7, 8, 9, 10, 1, 2, 3, 4, 5]", "assert rotate_right([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 4) == [70, 80, 90, 100, 10, 20, 30, 40, 50, 60]", "assert rotate_right([5, 15, 25, 35, 45, 55, 65, 75, 85, 95], 5) == [55, 65, 75, 85, 95, 5, 15, 25, 35, 45]", "assert rotate_right([11, 22, 33, 44, 55, 66, 77, 88, 99, 110], 7) == [44, 55, 66, 77, 88, 99, 110, 11, 22, 33]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 16, 18, 20], 3) == [16, 18, 20, 2, 4, 6, 8, 10, 12, 14]", "assert rotate_right([1, 3, 5, 7, 9, 11, 13, 15, 17, 19], 2) == [17, 19, 1, 3, 5, 7, 9, 11, 13, 15]", "assert rotate_right(['apple', 'banana', 'cherry', 'date', 'elderberry'], 3) == ['cherry', 'date', 'elderberry', 'apple', 'banana']", "assert rotate_right(['cat', 'dog', 'elephant', 'fish', 'giraffe'], 4) == ['dog', 'elephant', 'fish', 'giraffe', 'cat']", "assert rotate_right([100], 1) == [100]", "assert rotate_right([1000000000, 2000000000, 3000000000, 4000000000], 2) == [3000000000, 4000000000, 1000000000, 2000000000]", "assert rotate_right([1, 'two', 3.0, [4, 5], {'six': 7}, [8, 9]], 1) == [[8, 9], 1, 'two', 3.0, [4, 5], {'six': 7}]", "assert rotate_right([[1, 2], [3, 4], [5, 6], [7, 8], [9, 10]], 3) == [[5, 6], [7, 8], [9, 10], [1, 2], [3, 4]]", "assert rotate_right([True, 2.5, 'hello', [1, 2, 3], {'a': 1, 'b': 2}], 2) == [[1, 2, 3], {'a': 1, 'b': 2}, True, 2.5, 'hello']", "assert rotate_right([[1, 2, 3], [4, 5, 6], [7, 8, 9]], 1) == [[7, 8, 9], [1, 2, 3], [4, 5, 6]]", "assert rotate_right(['apple', 2, True, [1, 2, 3]], 2) == [True, [1, 2, 3], 'apple', 2]", "assert rotate_right([], 0) == []", "assert rotate_right([1000000000, 3000000000, 4000000000], 2) == [3000000000, 4000000000, 1000000000]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 6], 3) == [18, 20, 6, 2, 4, 6, 8, 10, 12, 14, 16]", "assert rotate_right([9, 2, 4, 6, 8, 10, 12, 14, 16, 2000000000, 20], 3) == [16, 2000000000, 20, 9, 2, 4, 6, 8, 10, 12, 14]", "assert rotate_right([5, 15, 25, 45, 55, 65, 75, 85, 95], 5) == [55, 65, 75, 85, 95, 5, 15, 25, 45]", "assert rotate_right([8, 15, 25, 45, 55, 65, 75, 85, 95], 6) == [45, 55, 65, 75, 85, 95, 8, 15, 25]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 16], 3) == [18, 20, 16, 2, 4, 6, 8, 10, 12, 14, 16]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 6, 16, 18, 20, 6], 3) == [18, 20, 6, 2, 4, 6, 8, 10, 12, 14, 6, 16]", "assert rotate_right([1, 'two', [4, 5], {'six': 7}, [8, 9]], 1) == [[8, 9], 1, 'two', [4, 5], {'six': 7}]", "assert rotate_right([[1, 2, 3], [4, 5, 6, 6], [7, 8, 9]], 1) == [[7, 8, 9], [1, 2, 3], [4, 5, 6, 6]]", "assert rotate_right([2, 4, 13, 6, 8, 10, 12, 14, 16, 30, 18, 20], 3) == [30, 18, 20, 2, 4, 13, 6, 8, 10, 12, 14, 16]", "assert rotate_right(['cat', 'dog', 'two', 'elephant', 'fish', 'giraffe'], 5) == ['dog', 'two', 'elephant', 'fish', 'giraffe', 'cat']", "assert rotate_right([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 19], 2) == [19, 19, 1, 3, 5, 7, 9, 11, 13, 15, 17]", "assert rotate_right([2, 4, 6, 8, 10, 12, 16, 18, 1, 20, 6], 3) == [1, 20, 6, 2, 4, 6, 8, 10, 12, 16, 18]", "assert rotate_right([5, 15, 25, 35, 45, 55, 65, 75, 85, 4000000000], 5) == [55, 65, 75, 85, 4000000000, 5, 15, 25, 35, 45]", "assert rotate_right([2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16], 11) == [2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16]", "assert rotate_right([[1, 2, 3], [4, 5, 6, 6], [7, 8, 100, 9], [7, 8, 100, 9]], 1) == [[7, 8, 100, 9], [1, 2, 3], [4, 5, 6, 6], [7, 8, 100, 9]]", "assert rotate_right(['cat', 'dog', 'elephant', 'fish', 'giraffe'], 3) == ['elephant', 'fish', 'giraffe', 'cat', 'dog']", "assert rotate_right([5, 15, 25, 45, 55, 65, 75, 95], 5) == [45, 55, 65, 75, 95, 5, 15, 25]", "assert rotate_right(['cat', 'dog', 'two', 'elephant', 'fish', 'giraffe', 'two'], 5) == ['two', 'elephant', 'fish', 'giraffe', 'two', 'cat', 'dog']", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 6], 4) == [16, 18, 20, 6, 2, 4, 6, 8, 10, 12, 14]", "assert rotate_right(['giraffe', 'RGSFieqfEz', 'date', 'aPof', 'elderberry', '', 'JGvUdQh'], 0) == ['giraffe', 'RGSFieqfEz', 'date', 'aPof', 'elderberry', '', 'JGvUdQh']", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 6, 16, 18, 20, 6], 5) == [6, 16, 18, 20, 6, 2, 4, 6, 8, 10, 12, 14]", "assert rotate_right([2, 45, 19, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16], 11) == [19, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2, 45]", "assert rotate_right([[1, 2, 3], [7, 8, 9]], 1) == [[7, 8, 9], [1, 2, 3]]", "assert rotate_right([3.0], 0) == [3.0]", "assert rotate_right([0, 3, 5, 7, 9, 11, 15, 17, 19, 19, 15], 2) == [19, 15, 0, 3, 5, 7, 9, 11, 15, 17, 19]", "assert rotate_right(['cat', 'dog', 'two', 'fish', 'giraffe'], 5) == ['cat', 'dog', 'two', 'fish', 'giraffe']", "assert rotate_right([5, 15, 45, 55, 65, 75, 85, 95], 5) == [55, 65, 75, 85, 95, 5, 15, 45]", "assert rotate_right([9, 2, 1999999999, 4, 6, 8, 10, 12, 14, 16, 2000000000, 20], 3) == [16, 2000000000, 20, 9, 2, 1999999999, 4, 6, 8, 10, 12, 14]", "assert rotate_right([5, 15, 25, 45, 66, 65, 75, 95], 5) == [45, 66, 65, 75, 95, 5, 15, 25]", "assert rotate_right([2, 4, 6, 8, 10, 12, 16, 18, 1, 20, 6], 4) == [18, 1, 20, 6, 2, 4, 6, 8, 10, 12, 16]", "assert rotate_right([4, 6, 8, 10, 12, 16, 18, 1, 20, 6], 4) == [18, 1, 20, 6, 4, 6, 8, 10, 12, 16]", "assert rotate_right([17, 2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16], 11) == [2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 17]", "assert rotate_right([11, 22, 12, 33, 44, 55, 66, 77, 88, 99, 110], 7) == [44, 55, 66, 77, 88, 99, 110, 11, 22, 12, 33]", "assert rotate_right([True, 2.5, 'hello', [1, 2, 3], {'a': 1, 'b': 2}, [1, 2, 3]], 2) == [{'a': 1, 'b': 2}, [1, 2, 3], True, 2.5, 'hello', [1, 2, 3]]", "assert rotate_right([2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2], 11) == [4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2, 2]", "assert rotate_right([[1, 2, 3], [7, 8, 9], [7, 8, 9], [1, 2, 3]], 1) == [[1, 2, 3], [1, 2, 3], [7, 8, 9], [7, 8, 9]]", "assert rotate_right([2000000000, 3000000000, 4000000000], 2) == [3000000000, 4000000000, 2000000000]", "assert rotate_right(['apple', 'banana', 'chery', 'date', 'elderberry'], 3) == ['chery', 'date', 'elderberry', 'apple', 'banana']", "assert rotate_right([[1, 2, 3, 1], [7, 8, 9], [7, 8, 9], [1, 2, 3, 1]], 1) == [[1, 2, 3, 1], [1, 2, 3, 1], [7, 8, 9], [7, 8, 9]]", "assert rotate_right([2, 45, 19, 6, 8, 11, 12, 14, 16, 18, 20, 16], 11) == [45, 19, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2]", "assert rotate_right([100], 0) == [100]", "assert rotate_right([2, [1, 2, 99, 3, 1], True, [1, 2, 99, 3, 1]], 2) == [True, [1, 2, 99, 3, 1], 2, [1, 2, 99, 3, 1]]", "assert rotate_right(['cat', 'dog', 'elephant', 'fish', 'giraffe'], 2) == ['fish', 'giraffe', 'cat', 'dog', 'elephant']", "assert rotate_right([5, 45, 55, 75, 85, 95], 5) == [45, 55, 75, 85, 95, 5]", "assert rotate_right([2, 4, 6, 8, 10, 14, 16, 18, 20, 6], 4) == [16, 18, 20, 6, 2, 4, 6, 8, 10, 14]", "assert rotate_right([1, 3, 12, 5, 7, 9, 11, 13, 15, 17, 19, 19], 2) == [19, 19, 1, 3, 12, 5, 7, 9, 11, 13, 15, 17]", "assert rotate_right([2, 4, 6, 8, 12, 16, 18, 1, 20], 4) == [16, 18, 1, 20, 2, 4, 6, 8, 12]", "assert rotate_right([5, 15, 45, 66, 65, 75, 95], 5) == [45, 66, 65, 75, 95, 5, 15]", "assert rotate_right([5, 15, 45, 55, 65, 110, 75, 85, 95], 5) == [65, 110, 75, 85, 95, 5, 15, 45, 55]", "assert rotate_right([[3, 1, 2, 3], [7, 8, 9], [7, 8, 9], [3, 1, 2, 3]], 1) == [[3, 1, 2, 3], [3, 1, 2, 3], [7, 8, 9], [7, 8, 9]]", "assert rotate_right([17, 2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2], 11) == [4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2, 17, 2]", "assert rotate_right([2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 2, 4], 11) == [6, 8, 11, 12, 14, 16, 18, 20, 16, 2, 4, 2, 4]", "assert rotate_right([1, 3, 12, 5, 7, 9, 11, 13, 17, 19, 19], 2) == [19, 19, 1, 3, 12, 5, 7, 9, 11, 13, 17]", "assert rotate_right([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 13], 2) == [19, 13, 1, 3, 5, 7, 9, 11, 13, 15, 17]", "assert rotate_right([[1, 2, 3, 1], [7, 8, 9], [7, 8, 9]], 1) == [[7, 8, 9], [1, 2, 3, 1], [7, 8, 9]]", "assert rotate_right([True, 2.5, 'hello', [1, 2, 3], {'a': 1, 'b': 2}], 4) == [2.5, 'hello', [1, 2, 3], {'a': 1, 'b': 2}, True]", "assert rotate_right([1, 'two', 3.0, [4, 5], {'six': 7}, [8, 9], 3.0], 1) == [3.0, 1, 'two', 3.0, [4, 5], {'six': 7}, [8, 9]]", "assert rotate_right(['giraffe', 'echerylderberry', 'RGSFieqfEz', 'date', 'aPof', 'elderberry', '', 'JGvUdQh'], 0) == ['giraffe', 'echerylderberry', 'RGSFieqfEz', 'date', 'aPof', 'elderberry', '', 'JGvUdQh']", "assert rotate_right(['cat', 'elephant', 'fish', 'girafffe'], 2) == ['fish', 'girafffe', 'cat', 'elephant']", "assert rotate_right([8, 15, 25, 45, 55, 65, 75, 85, 20, 95], 6) == [55, 65, 75, 85, 20, 95, 8, 15, 25, 45]", "assert rotate_right([1, 3, 12, 7, 11, 13, 17, 19, 19], 2) == [19, 19, 1, 3, 12, 7, 11, 13, 17]", "assert rotate_right([[1, 2, 3], [7, 8, 9], [7, 8, 9], [1, 2, 3]], 2) == [[7, 8, 9], [1, 2, 3], [1, 2, 3], [7, 8, 9]]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 10], 3) == [18, 20, 10, 2, 4, 6, 8, 10, 12, 14, 16]", "assert rotate_right([2, 4, 13, 6, 8, 10, 12, 14, 16, 3, 30, 18, 20], 3) == [30, 18, 20, 2, 4, 13, 6, 8, 10, 12, 14, 16, 3]", "assert rotate_right([2, 4, 6, 8, 10, 12, 25, 16, 18, 20, 6], 3) == [18, 20, 6, 2, 4, 6, 8, 10, 12, 25, 16]", "assert rotate_right([10, 20, 30, 40, 50, 70, 80, 90, 100], 4) == [70, 80, 90, 100, 10, 20, 30, 40, 50]", "assert rotate_right(['giraffe', 'RGSFieqfEz', 'date', 'elderberry', '', 'JGvUdQh'], 1) == ['JGvUdQh', 'giraffe', 'RGSFieqfEz', 'date', 'elderberry', '']", "assert rotate_right([2, [1, 2, 99, 3, 1], True, [1, 2, 99, 3, 1]], 3) == [[1, 2, 99, 3, 1], True, [1, 2, 99, 3, 1], 2]", "assert rotate_right([11, 22, 33, 44, 55, 66, 77, 88, 99, 110, 11], 7) == [55, 66, 77, 88, 99, 110, 11, 11, 22, 33, 44]", "assert rotate_right([5, 15, 25, 45, 66, 65, 75, 99], 5) == [45, 66, 65, 75, 99, 5, 15, 25]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 6, 16, 18, 20, 6], 11) == [4, 6, 8, 10, 12, 14, 6, 16, 18, 20, 6, 2]", "assert rotate_right([[1, 2, 3], [7, 8, 9], [7, 8, 9], [1, 2, 3]], 0) == [[1, 2, 3], [7, 8, 9], [7, 8, 9], [1, 2, 3]]", "assert rotate_right([2, 4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 12], 11) == [4, 6, 8, 11, 12, 14, 16, 18, 20, 16, 12, 2]", "assert rotate_right(['a', 'dog', 'two', 'elephant', 'fish', 'giraffe', 'two'], 5) == ['two', 'elephant', 'fish', 'giraffe', 'two', 'a', 'dog']", "assert rotate_right([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 11], 3) == [17, 19, 11, 1, 3, 5, 7, 9, 11, 13, 15]", "assert rotate_right([[7, 8, 9], [7, 8, 9], [1, 2, 3, 1]], 0) == [[7, 8, 9], [7, 8, 9], [1, 2, 3, 1]]", "assert rotate_right([2, 4, 6, 8, 10, 12, 16, 18, 1, 6], 4) == [16, 18, 1, 6, 2, 4, 6, 8, 10, 12]", "assert rotate_right([10, 20, 30, 40, 50, 60, 70, 80, 90, 100], 9) == [20, 30, 40, 50, 60, 70, 80, 90, 100, 10]", "assert rotate_right(['cat', 'dog', 'two', 'eelephant', 'fish', 'giraffe'], 5) == ['dog', 'two', 'eelephant', 'fish', 'giraffe', 'cat']", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 6, 16, 18, 20, 6], 7) == [12, 14, 6, 16, 18, 20, 6, 2, 4, 6, 8, 10]", "assert rotate_right([1, 'two', [4, 5], {'six': 7}, [8, 9]], 5) == [1, 'two', [4, 5], {'six': 7}, [8, 9]]", "assert rotate_right([5, 15, 25, 45, 55, 65, 75, 95], 6) == [25, 45, 55, 65, 75, 95, 5, 15]", "assert rotate_right([5, 15, 25, 45, 55, 65, 75, 85, 95], 4) == [65, 75, 85, 95, 5, 15, 25, 45, 55]", "assert rotate_right([True, 2.5, {'a': 1, 'b': 2, 'six': 2}, [1, 2, 3, 1], 'hello', [1, 2, 3, 1], {'a': 1, 'b': 2, 'six': 2}], 2) == [[1, 2, 3, 1], {'a': 1, 'b': 2, 'six': 2}, True, 2.5, {'a': 1, 'b': 2, 'six': 2}, [1, 2, 3, 1], 'hello']", "assert rotate_right([1, 'two', 3.0, [4, 5], {'six': 7}, [8, 9], [4, 5], [4, 5]], 1) == [[4, 5], 1, 'two', 3.0, [4, 5], {'six': 7}, [8, 9], [4, 5]]", "assert rotate_right([[7, 8, 9]], 0) == [[7, 8, 9]]", "assert rotate_right([5, 15, 25, 45, 66, 65, 99, 75, 25], 5) == [66, 65, 99, 75, 25, 5, 15, 25, 45]", "assert rotate_right([2, 4, 6, 8, 10, 12, 14, 6, 16, 18, 20, 6], 2) == [20, 6, 2, 4, 6, 8, 10, 12, 14, 6, 16, 18]", "assert rotate_right([2, 4, 6, 8, 10, 12, 25, 16, 18, 20, 6], 2) == [20, 6, 2, 4, 6, 8, 10, 12, 25, 16, 18]", "assert rotate_right([5, 15, 45, 55, 65, 75, 85, 95, 55], 5) == [65, 75, 85, 95, 55, 5, 15, 45, 55]", "assert rotate_right([1, 3, 12, 5, 7, 9, 11, 13, 17, 19, 19], 1) == [19, 1, 3, 12, 5, 7, 9, 11, 13, 17, 19]", "assert rotate_right([[1, 2, 3, 1], [7, 8, 9, 9], [7, 8, 9, 9], [7, 8, 9, 9]], 2) == [[7, 8, 9, 9], [7, 8, 9, 9], [1, 2, 3, 1], [7, 8, 9, 9]]", "assert rotate_right([2, 4, 8, 10, 12, 16, 18, 1, 20, 6], 4) == [18, 1, 20, 6, 2, 4, 8, 10, 12, 16]", "assert rotate_right([[1, 3], [1, 3], [3, 4], [5, 6], [7, 8], [9, 10]], 3) == [[5, 6], [7, 8], [9, 10], [1, 3], [1, 3], [3, 4]]", "assert rotate_right(['apple', 2, True, [1, 2, 3]], 3) == [2, True, [1, 2, 3], 'apple']", "assert rotate_right([1, 3, 5, 7, 9, 11, 15, 17, 19, 11], 3) == [17, 19, 11, 1, 3, 5, 7, 9, 11, 15]", "assert rotate_right([[1, 2, 3, 3], [4, 5, 6, 6], [1, 2, 3, 3], [7, 8, 9]], 1) == [[7, 8, 9], [1, 2, 3, 3], [4, 5, 6, 6], [1, 2, 3, 3]]", "assert rotate_right(['cat', 'dog', 'two', 'fish', 'giraffe', 'dog'], 5) == ['dog', 'two', 'fish', 'giraffe', 'dog', 'cat']", "assert rotate_right([True, 2.5, [1, 2, 3], {'a': 1, 'b': 2}, {'a': 1, 'b': 2}], 4) == [2.5, [1, 2, 3], {'a': 1, 'b': 2}, {'a': 1, 'b': 2}, True]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if the given tuple has any none value or not.\nassert check_none((10, 4, 5, 6, None)) == True\nYour code should pass the test:\nassert check_none((10, 4, 5, 6, None)) == True", "test_list": [ "assert check_none((10, 4, 5, 6, None)) == True", "assert check_none((7, 8, 9, 11, 14)) == False", "assert check_none((1, 2, 3, 4, None)) == True", "assert check_none((2,)) == False", "assert check_none(([1, 2], [3, 4], [5, None])) == False", "assert check_none(([None, None, None], [None, None, None], [None, None, None])) == False", "assert check_none(([1, 2, 3], [4, 5, 6], [7, 8, 9, None])) == False", "assert check_none(([[None], [None]], [[None], [None]])) == False", "assert check_none(([], [])) == False", "assert check_none(([1, [2, 3]], [4, [None, 5]])) == False", "assert check_none(([[1, [2, [3, [4, [5, [6, [7, [8, [9, None]]]]]]]]]],)) == False", "assert check_none(([None, [None, [None, [None, [None, [None, [None, [None, [None, None]]]]]]]]],)) == False", "assert check_none((None, [None, [None, [None, [None, [None]]]]])) == True", "assert check_none(([[None], [1, 2], [3, None]], [None, [4, 5]], [[6, None], [None, 7]])) == False", "assert check_none(([[None, 1, 2, 3], [4, None, 5, 6]], [[None, 7, 8, None], [None, 9, None, 10]])) == False", "assert check_none(([[None, None, None], [1, 2, 3], [None, None, None]], [[4, None, 5], [None, None, None], [None, 6, None]])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [[6, None], [None, 7]])) == False", "assert check_none((10, 4, 5, 6, None, [])) == True", "assert check_none((1, 2, 3, 4, None, [None])) == True", "assert check_none(([1, 2], [3, 4], [5, None], [])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [[6, None], [None, 7]], [])) == False", "assert check_none(([1, [2, 3]], [4, [None, 5]], [None, [None, 6]])) == False", "assert check_none(()) == False", "assert check_none(([1, 2], [3, None], [4, None, 5], [None, None], [6, 7, None, None])) == False", "assert check_none(([None, None, 1], [2, None, None], [None, 3, None], [4, None, 5, 6])) == False", "assert check_none(([None, None, None, None], [1, 2, 3], [None, None, None], [4, 5, 6])) == False", "assert check_none(([[None, None, None], [1, 2, 3], [None, None, None]], [[4, None, 5], [None, None, None], [None, 6, None]], [[7, None, None], [None, None, None], [None, None, None]])) == False", "assert check_none(([1, 2], [3, None], [4, 5], [None, 6], [7, 8], [None, None])) == False", "assert check_none(([[None], [1, 2], [3, None]], [None, [4, 5]], [[6, None], [None, 7]], [[None], [8, 9], [None, None]])) == False", "assert check_none(([[None, None], [[None, None], [None, None]]], [[None, None], [[None, None], [None, None]]])) == False", "assert check_none(([[None, None, [None, [None, None]]], None], [[None, None, [None, None]], None])) == False", "assert check_none(([1, 2], [3, None], [4, 5], [None, 6], [7, 8], [None, None, 6], [None, None])) == False", "assert check_none(([4, 5, 6], [7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([5, 6], [1, 2, 3], [4, 5, 6], [7, 8, 9, None, 8])) == False", "assert check_none(([1, [2, 3]], [4, [None, 5]], [1, [2, 3]])) == False", "assert check_none(([4, 5, 6], [7, 8, 9, None])) == False", "assert check_none(([4, 4, 6], [7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([], [9, ['EmZMRTPX', 'ntSnaH', 'mtiRiOL', 'quzN', 'YeCzezCHd']], [])) == False", "assert check_none(([1, 2, 2], [3, 4], [5, None])) == False", "assert check_none(([[4, None, 5], [None, None, None], [None, 6, None], [4, None, 5]], [[4, None, 5], [None, None, None], [None, 6, None]])) == False", "assert check_none(([1, [2, 3]], [1, 1, [2, 3]], [4, [None, 5]], [1, [2, 3]])) == False", "assert check_none(([1, [2, 3]], [1, [2, 3]])) == False", "assert check_none(([1, 2], [3, None], [None, None], [7, 7, None, None])) == False", "assert check_none(([1, 2], [3, 4], [5, None], [3, 4])) == False", "assert check_none(([1, 2, 2], [3, 4], [5, None], [5, None])) == False", "assert check_none(([7, 8, 9, None, 8], [4, 4, 6], [7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([1, [2, 3]], [4, [None, 5]], [1, [2, 3]], [4, [None, 5]])) == False", "assert check_none(([[1, [2, [3, [4, [5, [6, [7, [8, [9, None]]]]]]]]]], [[1, [2, [3, [4, [5, [6, [7, [8, [9, None]]]]]]]]]])) == False", "assert check_none(([1, 2], [3, 4], [6, None], [3, 4], [1, 2])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [[6, 7, None], [6, None], [None, 7]])) == False", "assert check_none(([1, 2, 2], [1, 2, 2, 2], [3, 4], [5, None], [5, None])) == False", "assert check_none(([None, None, 1], [2, None, None], [None, 3, None], [None, 3, None], [1, 4, None, 5, 6])) == False", "assert check_none(([1, [2, 3]], [1, [6, 3]], [1, 1, [2, 3]], [4, [None, 5]], [1, [2, 3]], [1, 1, [2, 3]])) == False", "assert check_none(([[None, None, None], [1, 2, 3], [None, None, None]], [[4, None, 5], [6, None], [None, None, None], [None, 6, None]], [[7, None, None], [None, None, None], [None, None, None]])) == False", "assert check_none(([1, 2], [3, 4], [5, None], [5, 10, None], ['gvL', 'EmZMRTPX', 'DpLWe', 'quzN', 'ZoPZGHEV', 'YeCzezCHd', 'mtiRiOL'])) == False", "assert check_none((10, 5, 6, None, [])) == True", "assert check_none(([None, [4, 5]], [[6, None], [None, 7]], [[None], [8, 9], [None, None]])) == False", "assert check_none(([4, 4, 6], [9, 7, 8, 9, None])) == False", "assert check_none(([2, None, None], [None, 3, None], [4, None, 5, 6])) == False", "assert check_none((6, 5, 6, None, [])) == True", "assert check_none(([1, 2], [3, 4], [5, None, None], [])) == False", "assert check_none((False, False, False, True, True)) == False", "assert check_none((None, [None, [None, [None, [None, [None]]]]], None)) == True", "assert check_none(([None, None, 1], [2, None, None], [4, None, 5, 6], [4, None, 5, 6])) == False", "assert check_none(([4, None, 1, 6], [2, None, None], [None, None, 1], [2, None, None], [4, None, 5, 6], [4, None, 5, 6], [4, None, 5, 6])) == False", "assert check_none(([None, None, 1], [2, None, None, None], [4, None, 5, 6], [4, None, 5, 6])) == False", "assert check_none(([4, 4, [None, 5]], [1, [2, 3]], [4, [None, 5]])) == False", "assert check_none(([7, 8, 9, None, 8], [4, 4, 6], [7, 8, 9, None], [7, None, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([7, 8, 9, None, 8], [4, 4, 6], [7, 8, 9, None], [7, None, 8, 9, None], [7, 8, 9, None, 9], [7, 8, 9, None])) == False", "assert check_none(([[None, None, None], [1, 2, 3], [None, None, None]], [[4, None, 5], [None, None, None], [None, None, 6, None]])) == False", "assert check_none((10, 5, 6, None, [], 10)) == True", "assert check_none(([2, None, None], [2, None, None], [None, 3, None], [3, None, None], [4, None, 5, 6])) == False", "assert check_none(([1, [2, 3], 1], [4, [None, 5]])) == False", "assert check_none(([1], [4, [None, 5]], [1, [2, 3]], [1, [2, 3]])) == False", "assert check_none(([None, None, None, None, None], [1, 2, 3], [None, None, None], [4, 5, 6])) == False", "assert check_none(([None, [[None, [None, [None]]]]], None, [None, [None, [None, [None, [None]]]]], None)) == True", "assert check_none(([2, None, None], [None, 3, None], [None, 3, None], [1, 4, None, 5, 6])) == False", "assert check_none(([4, [None, 5], 4], [1, [2, 3]], [4, [None, 5]], [1, [2, 3]])) == False", "assert check_none((10, 5, 6, None, [], None)) == True", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [[6, None], [None, 7]], [], [])) == False", "assert check_none(([1, 2, 2], [1, 2, 2, 2], [3, 4], [5, None], [5, None], [1, 2, 2, 2])) == False", "assert check_none(([[None, None, None], [1, 2, 3], [None, None, None], [None, None, None]], [[4, None, 5], [None, None, None], [None, 6, None]], [[7, None, None], [None, None, None], [None, None, None]], [[None, None, None], [1, 2, 3], [None, None, None], [None, None, None]], [[7, None, None], [None, None, None], [None, None, None]])) == False", "assert check_none((None, [None, [None, [None, [None, [None]]]]], None, [None, [None, [None, [None, [None]]]]])) == True", "assert check_none((5, 6, None, [])) == True", "assert check_none(([1, 2], [3, 4], [5, None], [1, 1, 2], [1, 2])) == False", "assert check_none(([1, [2, 3], 1], [4, [None, 5, 5], [None, 5]])) == False", "assert check_none(([1, 2], [3, 6, 4], [5, None], [1, 1, 2], [1, 2])) == False", "assert check_none(([1, [2, 3]], [4, [None, 5]], [1, [2]])) == False", "assert check_none(([4, 4, [None, 5]], [1, [2, 3]], [4, [None, 5]], [1, [2, 3]])) == False", "assert check_none(([3, None], [4, 5], [7, 8], [None, None])) == False", "assert check_none(([[4, 5], [None, None]], [[6, None], [None, 7]], ['gvL', 'gvL', 'YeCzezCHd', 'YeCzezCHd'], [])) == False", "assert check_none((10, 5, 6, None, [], None, None)) == True", "assert check_none(([[2, 3], 1, [2, 3]], [4, 4, [None, 5]], [1, [2, 3]], [4, [None, 5]])) == False", "assert check_none(([1, [2, 3]], [1, [2, 3]], [4, [None, 5]])) == False", "assert check_none(([3, 4, 3], [5, None], [])) == False", "assert check_none(([3, 6, 4], [5], [1, 1, 2], [1, 2])) == False", "assert check_none(([2, None, None], [None, 3, None], [None, 3, None, 3], [1, 4, None, 5, 6])) == False", "assert check_none(([[None], [1, 2], [3, None]], [None, [4, 5]], [[6, None], [None, 7]], [None, [4, 5]], [[None], [1, 2], [3, None]])) == False", "assert check_none(([1, [2, 3], 1], [2, [None, 5, 5], [None, 5]], [4, [None, 5, 5], [5]], [4, [None, 5, 5], [None, 5]])) == False", "assert check_none(([7, 8, 9, None, 8], [7, 8, 9, None], [4, 4, 6], [7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [78.89143771814926, -52.4240616339394, -72.56566507053195, -0.2817304158930085, -93.71004156385187, -15.10076750277966, 80.74945111800932, -63.35966765379977], [[6, None], [None, 7]], [], [])) == False", "assert check_none(([4, None, 1, 6], [2, None, None], [None, None, 1], [2, None, None], [4, None, 5, 6], [4, None, 5, 6], [4, None, 5, 6, 6])) == False", "assert check_none((6, 5, 6, None, [], 6)) == True", "assert check_none(([[None], [1, 2], [3, None]], [[6, None], [None, 7]])) == False", "assert check_none(([1, 2], [3, None], [4, 5], [None, 6], [7, 8], [None, None], [None, 6])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[5, 4, 5], [None, None]], [[6, None], [None, 7]], [])) == False", "assert check_none(([1, [2, 3]], [1, [2, 3]], [4, [None, 5]], [1, [2, 3]])) == False", "assert check_none((-15.10076750277966, [True, False, False, True], 'p', 'quzN', -85, 'ZoPZGHEV')) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [[6, None], [None, 7]], [[None], [1, 2], [3, None]])) == False", "assert check_none(([None, [[None, [None, [None]]]]], None, [None, [None, [None, [None, [None]]]], None], None)) == True", "assert check_none(([None, None, 1], [2, None, None], [4, None, 5, 6, 4], [4, None, 5, 6])) == False", "assert check_none(([[None]], [[None], [None]])) == False", "assert check_none(([3, 4], [None], [5, None], [5, None])) == False", "assert check_none(([[2, 3], 1, [2, 3]], [4, 4, [None, 5]], [1, [2, 3], [2, 3]], [4, [None, 5]])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [])) == False", "assert check_none(([1, 2, 2], [5, None], [5, None])) == False", "assert check_none(([7, 8, 9, None, 8], [7, 8, 9, None, None], [7, 8, 9, None], [4, 4, 6], [7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([3, 6, 4], [5, None, None], [])) == False", "assert check_none(([[4, 5], [None, None]], [[6, None], [None, 7]], ['gvL', 'gvL', 'YeCzezCHd', 'YeCzezCHd'], [], [])) == False", "assert check_none(([1, [2, 3], 1], [2, [None, 5, 5], [None, 5]], [4, [None, 5, 5], [5]])) == False", "assert check_none(([[None], [1, 2], [3, None]], [[4, 5], [None, None]], [78.89143771814926, -52.4240616339394, -72.56566507053195, -0.2817304158930085, -82.47988549016725, -93.71004156385187, -15.10076750277966, 80.74945111800932, -63.35966765379977], [[6, None], [None, 7]], [], [])) == False", "assert check_none(([5, 6], [1, 2, 3], [4, 5, 6], [7, 4, 5, 6], [7, 8, 9, None, 8, 8], [7, 8, 9, None, 8, 8])) == False", "assert check_none(([], [9, ['EmZMRTPX', 'ntSnaH', 'mtiRiOL', 'quzN', 'YeCzezCHd']], [], [9, ['EmZMRTPX', 'ntSnaH', 'mtiRiOL', 'quzN', 'YeCzezCHd']])) == False", "assert check_none(([1], [False, [2, 3]], [4, [None, 5]], [1, [2, 3]], [1, [2, 3]])) == False", "assert check_none(([1, [2, 3], 1], [5, 4, [None, 5]])) == False", "assert check_none((6, 5, 6, None, [], 4, 6)) == True", "assert check_none(([4, 5], [4, 6], [8, 7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([4, [None, 5], 4], [1, [2, 3]], [4, [None, 5]], [1, [2, 3]], [1, [2, 3]])) == False", "assert check_none(([2, None, None], [None, 3, None], [3, None], [1, 4, None, 5, 6])) == False", "assert check_none(([7, 5, 9, None, 8], [7, 8, 9, None], [4, 4, 6], [7, 8, 9, None], [7, 8, 9, None])) == False", "assert check_none(([None, [4, 5]], [[6, None], [None, 7]], [[None], [8, 9], [None, None]], [[None], [8, 9], [None, None]])) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find numbers within a given range from startnum ti endnum where every number is divisible by every digit it contains. \nassert divisible_by_digits(1,22)==[1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22]\nYour code should pass the test:\nassert divisible_by_digits(1,22)==[1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22]", "test_list": [ "assert divisible_by_digits(1,22)==[1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22]", "assert divisible_by_digits(1,15)==[1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15]", "assert divisible_by_digits(20,25)==[22, 24]", "assert divisible_by_digits(100, 200) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(500, 600) == [515, 555]", "assert divisible_by_digits(1000, 1100) == []", "assert divisible_by_digits(10000, 10100) == []", "assert divisible_by_digits(10100, 10100) == []", "assert divisible_by_digits(500, 10100) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(500, 599) == [515, 555]", "assert divisible_by_digits(501, 10100) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(100, 10100) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(500, 500) == []", "assert divisible_by_digits(999, 999) == [999]", "assert divisible_by_digits(599, 10100) == [612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(998, 999) == [999]", "assert divisible_by_digits(598, 1100) == [612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(1100, 1102) == []", "assert divisible_by_digits(200, 200) == []", "assert divisible_by_digits(599, 998) == [612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936]", "assert divisible_by_digits(599, 599) == []", "assert divisible_by_digits(598, 598) == []", "assert divisible_by_digits(10101, 10101) == []", "assert divisible_by_digits(10099, 10099) == []", "assert divisible_by_digits(501, 999) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(200, 201) == []", "assert divisible_by_digits(1099, 1099) == []", "assert divisible_by_digits(1103, 1103) == []", "assert divisible_by_digits(499, 599) == [515, 555]", "assert divisible_by_digits(499, 999) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(1099, 10101) == [1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(101, 200) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(997, 999) == [999]", "assert divisible_by_digits(997, 998) == []", "assert divisible_by_digits(10100, 10101) == []", "assert divisible_by_digits(600, 600) == []", "assert divisible_by_digits(200, 10101) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(501, 501) == []", "assert divisible_by_digits(499, 10100) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(101, 199) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(998, 998) == []", "assert divisible_by_digits(499, 997) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936]", "assert divisible_by_digits(598, 599) == []", "assert divisible_by_digits(597, 598) == []", "assert divisible_by_digits(598, 1102) == [612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(101, 997) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936]", "assert divisible_by_digits(501, 601) == [515, 555]", "assert divisible_by_digits(200, 999) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(True, True) == [1]", "assert divisible_by_digits(498, 499) == []", "assert divisible_by_digits(False, True) == [1]", "assert divisible_by_digits(498, 10100) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(600, 601) == []", "assert divisible_by_digits(1102, 10101) == [1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(500, 10101) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(False, 1102) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22, 24, 33, 36, 44, 48, 55, 66, 77, 88, 99, 111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(201, 10100) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(False, 998) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22, 24, 33, 36, 44, 48, 55, 66, 77, 88, 99, 111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936]", "assert divisible_by_digits(600, 1103) == [612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(101, 198) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(499, 500) == []", "assert divisible_by_digits(100, 199) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(997, 997) == []", "assert divisible_by_digits(199, 200) == []", "assert divisible_by_digits(102, 199) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(200, 498) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488]", "assert divisible_by_digits(102, 10000) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(False, False) == []", "assert divisible_by_digits(498, 10099) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(10098, 10099) == []", "assert divisible_by_digits(501, 10101) == [515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(200, 10100) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(200, 1000) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(499, 499) == []", "assert divisible_by_digits(100, 101) == []", "assert divisible_by_digits(200, 1099) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(101, 10101) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(498, 498) == []", "assert divisible_by_digits(101, 999) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(1098, 10100) == [1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(199, 997) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936]", "assert divisible_by_digits(599, 1099) == [612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(1102, 1103) == []", "assert divisible_by_digits(False, 1101) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22, 24, 33, 36, 44, 48, 55, 66, 77, 88, 99, 111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(200, 1102) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(10099, 10100) == []", "assert divisible_by_digits(597, 599) == []", "assert divisible_by_digits(201, 202) == []", "assert divisible_by_digits(100, 100) == []", "assert divisible_by_digits(200, 202) == []", "assert divisible_by_digits(1099, 10100) == [1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(199, 10101) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(599, 601) == []", "assert divisible_by_digits(201, 201) == []", "assert divisible_by_digits(199, 1099) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999]", "assert divisible_by_digits(13, 10101) == [15, 22, 24, 33, 36, 44, 48, 55, 66, 77, 88, 99, 111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(203, 10098) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(198, 200) == []", "assert divisible_by_digits(200, 600) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555]", "assert divisible_by_digits(False, 997) == [1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 12, 15, 22, 24, 33, 36, 44, 48, 55, 66, 77, 88, 99, 111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936]", "assert divisible_by_digits(199, 199) == []", "assert divisible_by_digits(102, 501) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184, 212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488]", "assert divisible_by_digits(999, 10100) == [999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(102, 198) == [111, 112, 115, 122, 124, 126, 128, 132, 135, 144, 155, 162, 168, 175, 184]", "assert divisible_by_digits(199, 10099) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555, 612, 624, 636, 648, 666, 672, 728, 735, 777, 784, 816, 824, 848, 864, 888, 936, 999, 1111, 1112, 1113, 1115, 1116, 1122, 1124, 1128, 1131, 1144, 1155, 1164, 1176, 1184, 1197, 1212, 1222, 1224, 1236, 1244, 1248, 1266, 1288, 1296, 1311, 1326, 1332, 1335, 1344, 1362, 1368, 1395, 1412, 1416, 1424, 1444, 1448, 1464, 1488, 1515, 1555, 1575, 1626, 1632, 1644, 1662, 1692, 1715, 1722, 1764, 1771, 1824, 1848, 1888, 1926, 1935, 1944, 1962, 2112, 2122, 2124, 2128, 2136, 2144, 2166, 2184, 2196, 2212, 2222, 2224, 2226, 2232, 2244, 2248, 2262, 2288, 2316, 2322, 2328, 2364, 2412, 2424, 2436, 2444, 2448, 2488, 2616, 2622, 2664, 2688, 2744, 2772, 2824, 2832, 2848, 2888, 2916, 3111, 3126, 3132, 3135, 3144, 3162, 3168, 3171, 3195, 3216, 3222, 3264, 3276, 3288, 3312, 3315, 3324, 3333, 3336, 3339, 3366, 3384, 3393, 3432, 3444, 3492, 3555, 3612, 3624, 3636, 3648, 3666, 3717, 3816, 3864, 3888, 3915, 3924, 3933, 3996, 4112, 4116, 4124, 4128, 4144, 4164, 4172, 4184, 4212, 4224, 4236, 4244, 4248, 4288, 4332, 4344, 4368, 4392, 4412, 4416, 4424, 4444, 4448, 4464, 4488, 4632, 4644, 4824, 4848, 4872, 4888, 4896, 4932, 4968, 5115, 5155, 5355, 5515, 5535, 5555, 5775, 6126, 6132, 6144, 6162, 6168, 6192, 6216, 6222, 6264, 6288, 6312, 6324, 6336, 6366, 6384, 6432, 6444, 6612, 6624, 6636, 6648, 6666, 6696, 6762, 6816, 6864, 6888, 6912, 6966, 6984, 7112, 7119, 7175, 7224, 7266, 7371, 7448, 7476, 7644, 7728, 7777, 7784, 8112, 8128, 8136, 8144, 8184, 8224, 8232, 8248, 8288, 8328, 8424, 8448, 8488, 8496, 8616, 8664, 8688, 8736, 8824, 8832, 8848, 8888, 8928, 9126, 9135, 9144, 9162, 9216, 9288, 9315, 9324, 9333, 9396, 9432, 9612, 9648, 9666, 9864, 9936, 9999]", "assert divisible_by_digits(1102, 1102) == []", "assert divisible_by_digits(201, 600) == [212, 216, 222, 224, 244, 248, 264, 288, 312, 315, 324, 333, 336, 366, 384, 396, 412, 424, 432, 444, 448, 488, 515, 555]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to put spaces between words starting with capital letters in a given string.\nassert capital_words_spaces(\"Python\") == 'Python'\nYour code should pass the test:\nassert capital_words_spaces(\"Python\") == 'Python'", "test_list": [ "assert capital_words_spaces(\"Python\") == 'Python'", "assert capital_words_spaces(\"PythonProgrammingExamples\") == 'Python Programming Examples'", "assert capital_words_spaces(\"GetReadyToBeCodingFreak\") == 'Get Ready To Be Coding Freak'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to sort a given list of strings of numbers numerically. \nassert sort_numeric_strings( ['4','12','45','7','0','100','200','-12','-500'])==[-500, -12, 0, 4, 7, 12, 45, 100, 200]\nYour code should pass the test:\nassert sort_numeric_strings( ['4','12','45','7','0','100','200','-12','-500'])==[-500, -12, 0, 4, 7, 12, 45, 100, 200]", "test_list": [ "assert sort_numeric_strings( ['4','12','45','7','0','100','200','-12','-500'])==[-500, -12, 0, 4, 7, 12, 45, 100, 200]", "assert sort_numeric_strings(['2','3','8','4','7','9','8','2','6','5','1','6','1','2','3','4','6','9','1','2'])==[1, 1, 1, 2, 2, 2, 2, 3, 3, 4, 4, 5, 6, 6, 6, 7, 8, 8, 9, 9]", "assert sort_numeric_strings(['1','3','5','7','1', '3','13', '15', '17','5', '7 ','9','1', '11'])==[1, 1, 1, 3, 3, 5, 5, 7, 7, 9, 11, 13, 15, 17]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111', '10', '9', '8', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 111, 222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['5', '-3', '7', '2', '-5', '5', '2', '-3', '1', '-7', '4', '1', '-2', '4']) == [-7, -5, -3, -3, -2, 1, 1, 2, 2, 4, 4, 5, 5, 7]", "assert sort_numeric_strings([]) == []", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30']) == [1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 7, 8, 10, 15, 222, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['5', '-3', '7', '2', '2', '5', '2', '-3', '1', '-7', '4', '1', '-2', '28', '4']) == [-7, -3, -3, -2, 1, 1, 2, 2, 2, 4, 4, 5, 5, 7, 28]", "assert sort_numeric_strings(['5', '-3', '7', '2', '-5', '5', '2', '-3', '1', '-7', '4', '1', '4', '1']) == [-7, -5, -3, -3, 1, 1, 1, 2, 2, 4, 4, 5, 5, 7]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [1, 1, 1, 1, 2, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111', '10', '9', '8', '7', '6', '66266666', '5', '4', '3', '2', '1', '-4444']) == [-55555, -4444, -4444, -333, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 111, 222, 666666, 7777777, 66266666, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30']) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30']) == [1, 1, 2, 3, 4, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '5']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '6']) == [1, 1, 1, 1, 2, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [-7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['5', '-3', '7', '2', '-5', '5', '2', '-4444', '1', '-7', '4', '1', '4', '1', '-3']) == [-4444, -7, -5, -3, -3, 1, 1, 1, 2, 2, 4, 4, 5, 5, 7]", "assert sort_numeric_strings(['5', '-3', '7', '2', '2', '5', '2', '-3', '1', '-7', '4', '1', '-2', '28', '2', '4']) == [-7, -3, -3, -2, 1, 1, 2, 2, 2, 2, 4, 4, 5, 5, 7, 28]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '22', '18', '20', '22', '24', '26', '28', '30']) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '777777724', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [-7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 777777724]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '6', '14']) == [1, 1, 1, 1, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['5', '-3', '7', '2', '5', '2', '-3', '1', '-7', '4', '1', '28', '4']) == [-7, -3, -3, 1, 1, 2, 2, 4, 4, 5, 5, 7, 28]", "assert sort_numeric_strings(['155', '-3', '7', '2', '2', '5', '2', '-3', '1', '-7', '4', '1', '-2', '28', '1']) == [-7, -3, -3, -2, 1, 1, 1, 2, 2, 2, 4, 5, 7, 28, 155]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111', '10', '9', '8', '7', '6', '66266666', '5', '4', '3', '2', '1', '-4444', '66266666']) == [-55555, -4444, -4444, -333, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 111, 222, 666666, 7777777, 66266666, 66266666, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '13']) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 9, 10, 11, 12, 13, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '917', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 917]", "assert sort_numeric_strings(['5', '-3', '7', '2', '-5', '5', '2', '15', '1', '-7', '666666', '1', '-2', '4']) == [-7, -5, -3, -2, 1, 1, 2, 2, 4, 5, 5, 7, 15, 666666]", "assert sort_numeric_strings(['1', '3', '5', '7', '18', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '124', '6', '14']) == [1, 1, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 14, 15, 16, 17, 18, 18, 20, 22, 24, 26, 28, 30, 124]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '5']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '22213', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [-7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 22213]", "assert sort_numeric_strings(['5', '-3', '7', '2', '2', '5', '2', '-43', '1', '4', '1', '-2', '28', '4']) == [-43, -3, -2, 1, 1, 2, 2, 2, 4, 4, 5, 5, 7, 28]", "assert sort_numeric_strings(['1', '3', '514', '7', '1', '3', '13', '15', '17', '5', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '5']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 514]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -333, 1, 2, 3, 4, 5, 6, 7, 8, 10, 15, 222, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '9', '1', '11', '6', '8', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '6', '14', '17']) == [1, 1, 1, 1, 3, 4, 5, 5, 6, 6, 7, 8, 9, 10, 11, 12, 13, 14, 14, 15, 16, 17, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11', '13', '20']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 11, 12, 13, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11', '5']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 5, 7, 7, 8, 9, 10, 11, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['5', '-3', '7', '5', '2', '-3', '1', '-7', '4', '1', '28', '4']) == [-7, -3, -3, 1, 1, 2, 4, 4, 5, 5, 7, 28]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '22', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11', '13', '20', '1']) == [1, 1, 1, 1, 1, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 11, 12, 13, 13, 14, 15, 16, 17, 18, 20, 20, 22, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '-5', '18', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '12', '4', '10', '14', '16', '18', '20', '22', '26', '28', '30', '124', '6']) == [-5, 1, 1, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 18, 20, 22, 26, 28, 30, 124]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111222', '10', '124', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 7, 10, 124, 222, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30']) == [1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30', '20', '12']) == [1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 12, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '4', '1015', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [-7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 1015]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '15', '7 ', '9', '1', '11', '6', '8', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '155', '30', '1', '6', '14']) == [1, 1, 1, 1, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 14, 15, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 155]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '1', '6']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 6, 7, 8, 10, 15, 222, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['5', '-3', '7', '5', '2', '-3', '1', '-7', '4', '1', '28', '4', '28']) == [-7, -3, -3, 1, 1, 2, 4, 4, 5, 5, 7, 28, 28]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '2218', '7777777', '666666', '-55555', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -333, 1, 2, 3, 4, 5, 6, 7, 8, 10, 15, 222, 2218, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '1710', '5', '7 ', '917', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 11, 12, 13, 14, 15, 16, 18, 20, 22, 24, 26, 28, 30, 917, 1710]", "assert sort_numeric_strings(['5', '-3', '7', '2', '2', '5', '2', '-43', '-2', '4', '1', '-2', '28', '4']) == [-43, -3, -2, -2, 1, 2, 2, 2, 4, 4, 5, 5, 7, 28]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30']) == [1, 1, 2, 3, 4, 5, 5, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '5']) == [1, 1, 1, 1, 2, 3, 4, 5, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-333', '222', '66', '111', '10', '9', '8', '7', '6', '5', '4', '3', '2', '1', '88888888']) == [-55555, -333, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 66, 111, 222, 666666, 7777777, 88888888, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['5', '-3', '7', '2', '2', '5', '2', '-43', '124', '1', '4', '1', '-2', '28', '4']) == [-43, -3, -2, 1, 1, 2, 2, 2, 4, 4, 5, 5, 7, 28, 124]", "assert sort_numeric_strings(['5', '-3', '7', '5', '2', '-3', '1', '-7', '4', '100000000001', '28', '4', '28']) == [-7, -3, -3, 1, 2, 4, 4, 5, 5, 7, 28, 28, 100000000001]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '1', '6', '7777777']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 6, 7, 8, 10, 15, 222, 111222, 666666, 7777777, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [1, 1, 1, 2, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '666666', '30', '1', '5']) == [1, 1, 1, 1, 2, 3, 4, 5, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 30, 666666]", "assert sort_numeric_strings(['1', '3', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30', '20', '12']) == [1, 1, 1, 2, 3, 3, 4, 5, 6, 7, 7, 8, 9, 10, 11, 12, 12, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '28', '30', '1', '11']) == [1, 1, 1, 1, 2, 3, 3, 4, 5, 6, 7, 7, 8, 9, 10, 11, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 28, 30]", "assert sort_numeric_strings(['5', '-3', '7', '2', '2', '5', '2', '-43', '124', '1', '4', '1', '-2', '28', '4', '28']) == [-43, -3, -2, 1, 1, 2, 2, 2, 4, 4, 5, 5, 7, 28, 28, 124]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '15', '17', '5', '7 ', '9', '1', '11', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '11', '5', '1']) == [1, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 5, 7, 7, 8, 9, 10, 11, 11, 12, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['5', '-3', '7', '2', '-5', '5', '2', '15', '1', '-7', '666666', '1', '111222', '4']) == [-7, -5, -3, 1, 1, 2, 2, 4, 5, 5, 7, 15, 111222, 666666]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '4', '17', '5', '7 ', '-5', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '5']) == [-5, 1, 1, 2, 3, 3, 4, 4, 5, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '22', '12', '4', '10', '14', '16', '18', '22', '24', '26', '28', '30', '11', '13', '20', '1']) == [1, 1, 1, 1, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 11, 12, 13, 13, 14, 15, 16, 17, 18, 20, 22, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30', '20', '12', '7']) == [1, 1, 1, 2, 3, 3, 4, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 12, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['5', '-3', '7', '44', '2', '99999999', '2', '5', '2', '-43', '-2', '4', '1', '-2', '28', '4', '-2']) == [-43, -3, -2, -2, -2, 1, 2, 2, 2, 4, 4, 5, 5, 7, 28, 44, 99999999]", "assert sort_numeric_strings(['1', '-5', '5', '7', '1', '3', '22213', '15', '17', '17', '7 ', '-7', '1', '11', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [-7, -5, 1, 1, 1, 1, 2, 3, 4, 5, 7, 7, 8, 10, 11, 12, 14, 15, 16, 17, 17, 18, 20, 22, 24, 26, 28, 30, 22213]", "assert sort_numeric_strings(['5', '-3', '7', '44', '2', '99999999', '2', '5', '2', '-43', '-2', '4', '1', '-2', '28', '4', '-2', '-3', '2', '-43']) == [-43, -43, -3, -3, -2, -2, -2, 1, 2, 2, 2, 2, 4, 4, 5, 5, 7, 28, 44, 99999999]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '2', '12', '4', '10', '16', '18', '20', '22', '24', '26', '28', '30', '13']) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 9, 10, 11, 12, 13, 13, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '777777724', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '2']) == [-7, 1, 1, 1, 1, 2, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 777777724]", "assert sort_numeric_strings(['1', '3', '5', '7', '18', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '124', '6', '14', '3']) == [1, 1, 3, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 13, 14, 14, 15, 16, 17, 18, 18, 20, 22, 24, 26, 28, 30, 124]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '27777777246', '30']) == [1, 1, 2, 3, 4, 5, 5, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 27777777246]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '115', '1']) == [-55555, -333, 1, 2, 3, 4, 5, 6, 7, 8, 10, 15, 115, 222, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '22']) == [1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['55', '-3', '7', '2', '-5', '5', '2', '-3', '1', '-7', '4', '1', '-2', '4']) == [-7, -5, -3, -3, -2, 1, 1, 2, 2, 4, 4, 5, 7, 55]", "assert sort_numeric_strings(['1', '3', '5', '7', '13', '15', '17', '5', '7 ', '9', '1', '11', '110', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1']) == [1, 1, 1, 2, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 110]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '88', '666666', '-55555', '-4444', '-333', '222', '111', '10', '9', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 7, 9, 10, 88, 111, 222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['5', '7', '5', '2', '-3', '1', '-7', '4', '1', '28', '4', '28']) == [-7, -3, 1, 1, 2, 4, 4, 5, 5, 7, 28, 28]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '777777724', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '2', '30']) == [-7, 1, 1, 1, 1, 2, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 30, 777777724]", "assert sort_numeric_strings(['1', '3', '5', '7', '18', '99999999', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '124', '6', '14', '3']) == [1, 1, 3, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 13, 14, 14, 15, 16, 17, 18, 18, 20, 22, 24, 26, 28, 30, 124, 99999999]", "assert sort_numeric_strings(['1', '3', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30', '20', '12', '12']) == [1, 1, 1, 2, 3, 3, 4, 5, 6, 7, 7, 8, 9, 10, 11, 12, 12, 12, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111', '10', '9', '8', '-444', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -4444, -444, -333, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 111, 222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '5', '7', '1', '3', '13', '4', '17', '5', '7 ', '-5', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '-444', '24', '26', '28', '30', '5']) == [-444, -5, 1, 1, 2, 3, 4, 4, 5, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 16, 17, 18, 20, 24, 26, 28, 30]", "assert sort_numeric_strings(['10000000000', '22213', '7777777', '666666', '-55555', '-4444', '-333', '222', '111222', '10', '15', '8', '7', '6', '5', '4', '3', '2', '1', '6', '7777777']) == [-55555, -4444, -333, 1, 2, 3, 4, 5, 6, 6, 7, 8, 10, 15, 222, 22213, 111222, 666666, 7777777, 7777777, 10000000000]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '7777777', '666666', '-55555', '-4444', '-333', '222', '111', '010', '9', '8', '-444', '7', '6', '5', '4', '3', '2', '1']) == [-55555, -4444, -444, -333, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 111, 222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '17']) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['155', '-3', '7', '2', '2', '2', '-3', '1', '-7', '4', '1', '-2', '28', '1']) == [-7, -3, -3, -2, 1, 1, 1, 2, 2, 2, 4, 7, 28, 155]", "assert sort_numeric_strings(['10000000000', '99999999', '88888888', '2218', '7777777', '666666', '-55555', '-333', '222', '111222', '10', '15', '8', '267', '6', '5', '4', '3', '2', '1', '7']) == [-55555, -333, 1, 2, 3, 4, 5, 6, 7, 8, 10, 15, 222, 267, 2218, 111222, 666666, 7777777, 88888888, 99999999, 10000000000]", "assert sort_numeric_strings(['55', '-3', '7', '2', '-5', '5', '-3', '1', '-7', '4', '1', '-2', '4']) == [-7, -5, -3, -3, -2, 1, 1, 2, 4, 4, 5, 7, 55]", "assert sort_numeric_strings(['1', '3', '7', '1', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '27777777246', '30']) == [1, 1, 2, 3, 4, 5, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 30, 27777777246]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30', '6']) == [1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['1', '3', '7', '1', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '8', '2', '12', '4', '10', '-3', '16', '18', '20', '22', '24', '26', '27777777246', '30', '666666']) == [-3, 1, 1, 2, 3, 4, 5, 7, 7, 7, 8, 9, 10, 11, 12, 13, 15, 16, 17, 18, 20, 22, 24, 26, 30, 666666, 27777777246]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '8', '2', '12', '4', '14', '16', '18', '20', '22', '24', '26', '28', '30']) == [1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 8, 9, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '30', '20', '12']) == [1, 1, 1, 2, 3, 3, 4, 5, 6, 7, 7, 8, 9, 10, 11, 12, 12, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30, 30]", "assert sort_numeric_strings(['1', '3', '99999999', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '10', '14', '16', '15155', '18', '20', '22', '24', '26', '28', '30', '30', '20', '12']) == [1, 1, 1, 2, 3, 3, 5, 6, 7, 7, 8, 9, 10, 11, 12, 12, 13, 14, 15, 16, 17, 18, 20, 20, 22, 24, 26, 28, 30, 30, 15155, 99999999]", "assert sort_numeric_strings(['1', '3', '7', '1', '3', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '24', '01014', '26', '28', '30', '30', '20', '12', '12']) == [1, 1, 1, 2, 3, 3, 4, 5, 6, 7, 7, 8, 9, 10, 11, 12, 12, 12, 14, 15, 16, 17, 18, 20, 20, 24, 26, 28, 30, 30, 1014]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '1']) == [-7, 1, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '13', '15', '17', '5', '7 ', '9', '1', '11', '6', '8', '12', '4', '10', '777777724', '16', '18', '20', '22', '24', '26', '28', '30', '1', '6', '14']) == [1, 1, 1, 1, 3, 4, 5, 5, 6, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 777777724]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '-4444', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '13']) == [-4444, -7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '516', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '9', '7 ', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '17', '5']) == [1, 1, 2, 3, 3, 4, 5, 5, 5, 6, 7, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 17, 18, 20, 22, 24, 26, 28, 30, 516]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '18', '16']) == [-7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 16, 17, 18, 18, 20, 22, 24, 26, 28, 30]", "assert sort_numeric_strings(['1', '3', '5', '7', '13', '15', '17', '5', '7 ', '9', '1', '11', '110', '6', '8', '2', '12', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '30']) == [1, 1, 1, 2, 3, 4, 5, 5, 6, 7, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 30, 110]", "assert sort_numeric_strings(['5', '-3', '7', '2', '-5', '5', '2', '-4444', '1', '-7', '44', '1', '4', '1', '-3']) == [-4444, -7, -5, -3, -3, 1, 1, 1, 2, 2, 4, 5, 5, 7, 44]", "assert sort_numeric_strings(['1', '3', '5', '7', '1', '3', '13', '15', '17', '5', '7 ', '-7', '1', '11', '6', '8', '2', '12', '777777724', '4', '10', '14', '16', '18', '20', '22', '24', '26', '28', '30', '1', '7 ']) == [-7, 1, 1, 1, 1, 2, 3, 3, 4, 5, 5, 6, 7, 7, 7, 8, 10, 11, 12, 13, 14, 15, 16, 17, 18, 20, 22, 24, 26, 28, 30, 777777724]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find tuples which have all elements divisible by k from the given list of tuples.\nassert find_tuples([(6, 24, 12), (7, 9, 6), (12, 18, 21)], 6) == [(6, 24, 12)]\nYour code should pass the test:\nassert find_tuples([(6, 24, 12), (7, 9, 6), (12, 18, 21)], 6) == [(6, 24, 12)]", "test_list": [ "assert find_tuples([(6, 24, 12), (7, 9, 6), (12, 18, 21)], 6) == [(6, 24, 12)]", "assert find_tuples([(5, 25, 30), (4, 2, 3), (7, 8, 9)], 5) == [(5, 25, 30)]", "assert find_tuples([(7, 9, 16), (8, 16, 4), (19, 17, 18)], 4) == [(8, 16, 4)]", "assert find_tuples([(12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 3) == [(12, 24, 36), (18, 9, 27), (6, 12, 18)]", "assert find_tuples([], 4) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 11) == [(22, 33, 44, 55, 66)]", "assert find_tuples([(11, 22, 33, 44, 55), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 11) == [(11, 22, 33, 44, 55)]", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 3) == [(6, 12, 18, 24, 30), (9, 18, 27, 36, 45)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 4) == [(12, 24, 36, 48, 60), (8, 16, 24, 32, 40)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 33) == []", "assert find_tuples([], 5) == []", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 13, 60, 75), (22, 33, 44, 55, 66), (15, 30, 45, 60, 75, 75), (8, 16, 24, 32, 40)], 4) == [(12, 24, 36, 48, 60), (8, 16, 24, 32, 40)]", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55), (4, 8, 12, 16, 20)], 55) == []", "assert find_tuples([(12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 16) == [(32, 48, 64)]", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 8) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 3) == [(6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45)]", "assert find_tuples([], 6) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55), (9, 18, 27, 36, 45)], 3) == [(6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (9, 18, 27, 36, 45)]", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 45) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 45) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (15, 30, 45, 60, 75)], 65) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 20) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 27) == []", "assert find_tuples([(22, 33, 65, 44, 55, 66), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (15, 30, 45, 60, 75)], 65) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (65, 32, 48, 64), (6, 12, 18)], 27) == []", "assert find_tuples([(13, 39, 66, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 11) == [(22, 33, 44, 55, 66)]", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 10, 32, 40), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 44) == []", "assert find_tuples([(12, 24, 36, 59, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 4) == [(8, 16, 24, 32, 40)]", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 32) == []", "assert find_tuples([(13, 26, 39, 52, 65), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 33) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 12) == [(12, 24, 36)]", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18), (11, 12, 24, 36)], 20) == []", "assert find_tuples([(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 3) == [(6, 12, 18, 24, 30), (9, 18, 27, 36, 45)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 40) == []", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66, 66), (8, 16, 24, 32, 40)], 40) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 18)], 27) == []", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75, 15), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(12, 24, 36), (5, 15, 20), (18, 9, 27, 27), (32, 48, 64), (6, 12, 18)], 16) == [(32, 48, 64)]", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (48, 64), (6, 18, 6)], 13) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (48, 64), (18, 9, 27), (6, 18, 6)], 13) == []", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (22, 33, 44, 55, 66)], 40) == []", "assert find_tuples([(15, 30, 45, 60, 75), (8, 16, 24, 32, 40, 16), (22, 33, 44, 55, 66), (8, 16, 10, 32, 40), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 44) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45), (6, 12, 18, 24, 30)], 32) == []", "assert find_tuples([(11, 22, 33, 44, 55), (17, 34, 51, 68, 85, 85), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 11) == [(11, 22, 33, 44, 55)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 25, 32, 40), (22, 33, 44, 55, 66)], 40) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (27, 26, 39, 52, 65), (9, 18, 27, 36, 45)], 48) == []", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75, 15), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 8) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55, 44), (11, 22, 33, 44, 55)], 3) == [(6, 12, 18, 24, 30), (9, 18, 27, 36, 45)]", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55), (4, 8, 12, 16, 20), (9, 18, 27, 36, 45)], 55) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 9) == [(9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45)]", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45), (6, 44, 18, 24, 30), (6, 12, 18, 24, 30)], 32) == []", "assert find_tuples([(5, 15, 20, 20), (11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (48, 64), (6, 18, 6)], 8) == [(48, 64)]", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 85) == []", "assert find_tuples([(12, 24, 36, 48, 60, 48), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40), (15, 30, 45, 60, 75)], 4) == [(12, 24, 36, 48, 60, 48), (8, 16, 24, 32, 40)]", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 27), (48, 64), (18, 9, 27), (6, 18, 6)], 13) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 24) == []", "assert find_tuples([], 3) == []", "assert find_tuples([(5, 15, 20, 20), (11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (11, 12, 24, 33), (18, 9, 27), (48, 64), (6, 18, 6)], 8) == [(48, 64)]", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45), (6, 44, 18, 24, 30), (6, 12, 18, 24, 30)], 55) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 66) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55), (9, 18, 27, 36, 45)], 85) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 34) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 48) == []", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 41) == []", "assert find_tuples([(11, 22, 33, 44, 55), (17, 34, 51, 68, 6, 85, 85), (17, 34, 51, 68, 85, 85), (11, 54, 22, 33, 44, 55), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 52) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (18, 9, 27), (48, 64), (18, 9, 27), (6, 18, 6)], 40) == []", "assert find_tuples([(13, 26, 39, 53, 52, 65), (11, 22, 33, 44, 55), (17, 34, 51, 68, 85, 85), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 11) == [(11, 22, 33, 44, 55)]", "assert find_tuples([(13, 26, 39, 53, 52, 65), (11, 22, 33, 44, 55), (17, 34, 51, 68, 85, 85), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 9) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 10, 32, 40), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 45) == []", "assert find_tuples([(6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (27, 26, 39, 52, 65), (9, 18, 27, 36, 45)], 48) == []", "assert find_tuples([], 51) == []", "assert find_tuples([(13, 26, 39, 51, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 32) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45), (9, 18, 27, 36, 45)], 11) == [(22, 33, 44, 55, 66)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 16, 24, 32, 40)], 8) == [(8, 16, 24, 32, 40)]", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 28) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (65, 32, 48, 64), (6, 12, 18)], 3) == [(12, 24, 36), (18, 9, 27), (6, 12, 18)]", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55), (6, 12, 18, 24, 30)], 8) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (8, 18, 24, 32, 40), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (48, 64), (6, 18, 6)], 12) == [(12, 24, 36)]", "assert find_tuples([], 34) == []", "assert find_tuples([(12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 20) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 22, 44, 55, 66), (8, 16, 24, 32, 40), (15, 30, 45, 60, 75)], 65) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55), (9, 18, 27, 36, 45)], 64) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 48) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45), (9, 18, 27, 36, 45), (9, 18, 27, 36, 45)], 24) == []", "assert find_tuples([(13, 26, 39, 52, 65), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (22, 33, 44, 55, 66), (9, 18, 27, 36, 45)], 41) == []", "assert find_tuples([(5, 15, 20, 20), (11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (11, 12, 24, 33), (18, 9, 27), (48, 64), (6, 18, 6)], 64) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (20, 5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 28) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45, 45), (9, 18, 27, 36), (11, 22, 33, 44, 55)], 18) == []", "assert find_tuples([(12, 24, 36), (6, 12, 18), (5, 15, 20), (18, 9, 27, 27), (32, 48, 64), (6, 12, 18)], 10) == []", "assert find_tuples([(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55)], 3) == [(9, 18, 27, 36, 45)]", "assert find_tuples([(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (6, 12, 18, 24, 30), (9, 18, 15, 27, 36, 45), (11, 22, 33, 44, 55)], 3) == [(6, 12, 18, 24, 30), (9, 18, 15, 27, 36, 45)]", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (32, 48, 64), (6, 12, 18)], 9) == [(18, 9, 27)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75, 15), (45, 33, 44, 55, 66), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 65) == []", "assert find_tuples([(15, 30, 45, 60, 75), (22, 33, 44, 55, 66), (44, 8, 16, 10, 32, 40), (8, 16, 10, 32, 40), (8, 16, 24, 32, 40), (8, 16, 24, 32, 40)], 45) == []", "assert find_tuples([(5, 15, 20, 20), (11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (48,), (18, 9, 27), (48, 64), (6, 18, 6)], 8) == [(48,), (48, 64)]", "assert find_tuples([(12, 24, 36, 48, 60), (15, 30, 45, 60, 75, 15), (22, 33, 44, 55, 66), (8, 16, 24, 32), (8, 16, 24, 32, 40), (15, 30, 45, 60, 75, 15), (22, 33, 44, 55, 66)], 65) == []", "assert find_tuples([(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (6, 12, 18, 24, 30), (9, 18, 15, 27, 36, 45), (11, 22, 33, 44, 55)], 2) == [(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (6, 12, 18, 24, 30)]", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (64,), (5, 15, 20), (18, 9, 27), (48, 64), (6, 18, 6)], 13) == []", "assert find_tuples([(11, 12, 24, 36), (12, 24, 36), (5, 15, 20), (18, 9, 27), (65, 32, 48, 64, 64), (6, 12, 18)], 3) == [(12, 24, 36), (18, 9, 27), (6, 12, 18)]", "assert find_tuples([(11, 22, 33, 44, 55), (17, 34, 51, 68, 85, 85), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 68) == []", "assert find_tuples([(4, 8, 12, 16, 20), (6, 12, 18, 24, 30), (9, 18, 27, 36, 45), (11, 22, 33, 44, 55, 44), (11, 22, 33, 44, 55)], 2) == [(4, 8, 12, 16, 20), (6, 12, 18, 24, 30)]", "assert find_tuples([(17, 34, 51, 68, 85, 85), (13, 26, 39, 52, 65), (17, 34, 51, 68, 85), (5, 10, 15, 20, 25)], 16) == []", "assert find_tuples([(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (6, 12, 18, 24, 30), (9, 18, 15, 27, 36, 45)], 2) == [(4, 8, 12, 16, 20), (4, 8, 12, 16, 20, 16), (6, 12, 18, 24, 30)]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to add the given tuple to the given list.\nassert add_tuple([5, 6, 7], (9, 10)) == [5, 6, 7, 9, 10]\nYour code should pass the test:\nassert add_tuple([5, 6, 7], (9, 10)) == [5, 6, 7, 9, 10]", "test_list": [ "assert add_tuple([5, 6, 7], (9, 10)) == [5, 6, 7, 9, 10]", "assert add_tuple([6, 7, 8], (10, 11)) == [6, 7, 8, 10, 11]", "assert add_tuple([7, 8, 9], (11, 12)) == [7, 8, 9, 11, 12]", "assert add_tuple([], (1, 2)) == [1, 2]", "assert add_tuple([], ()) == []", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695], (1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1, 2]", "assert add_tuple([], ('gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == ['gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202], (True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202, True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 56.561546955182706], (2, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 56.561546955182706, 2, 1, 1, 2]", "assert add_tuple([85.91907394610695, 'gLrST'], ('gLkArST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [85.91907394610695, 'gLrST', 'gLkArST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1, 2, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1, 2, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, -49.52689816727833], (1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, -49.52689816727833, 1, 2]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -59.633415719094835, 65.48591501629136, -31.08718493477471, 65.17669523907202], (True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -59.633415719094835, 65.48591501629136, -31.08718493477471, 65.17669523907202, True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695], (1, 2, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 1, 2, 2]", "assert add_tuple([-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, -49.52689816727833], (1, 2, 1)) == [-95.93549064962474, -10.26715024967983, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, -49.52689816727833, 1, 2, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 65.17669523907202, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 65.17669523907202, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, 85.91907394610695, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, 85.91907394610695, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 82.37922713480094, 56.561546955182706, -59.633415719094835, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 82.37922713480094, 56.561546955182706, -59.633415719094835, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 56.561546955182706], (2, 1, 3, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 56.561546955182706, 2, 1, 3, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (1, 0, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 1, 0, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 3, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 3, 2, 1]", "assert add_tuple([85.91907394610695, 'gLrST', 85.91907394610695], ('gLkArST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [85.91907394610695, 'gLrST', 85.91907394610695, 'gLkArST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202], (True, 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202, True, 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 82.37922713480094, -43.46143646200369, -31.08718493477471, 65.17669523907202], (True, 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 82.37922713480094, -43.46143646200369, -31.08718493477471, 65.17669523907202, True, 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695], (1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 56.561546955182706, -87.65973057260044, -28.65485586376057, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 56.561546955182706, -87.65973057260044, -28.65485586376057, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2, 1]", "assert add_tuple([2, 2], ('gLkArST', 'fQWlqEa', 'GZGE', 'ZUpJfqNP', 'zG', 'KiEslH', 'iGvRkInoya', 'hsvhNF')) == [2, 2, 'gLkArST', 'fQWlqEa', 'GZGE', 'ZUpJfqNP', 'zG', 'KiEslH', 'iGvRkInoya', 'hsvhNF']", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, 51.55337458326554, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, 51.55337458326554, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695], (2, 2, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 2, 2, 2]", "assert add_tuple([50.74160029251425, -31.08718493477471, 45.573615319483054, 32.91228520753927, 80.27721048870663, -23.825573761509688, -52.44291906450442, 32.91228520753927], ('gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [50.74160029251425, -31.08718493477471, 45.573615319483054, 32.91228520753927, 80.27721048870663, -23.825573761509688, -52.44291906450442, 32.91228520753927, 'gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([1, 3, 65.17669523907202, False, True, True, -52.44291906450442], ('gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [1, 3, 65.17669523907202, False, True, True, -52.44291906450442, 'gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'zG', True)) == [-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'zG', True]", "assert add_tuple([-12.919016524402082, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202], (True, False, 0, 'kA', -95.07998304699902, 'zG', True)) == [-12.919016524402082, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202, True, False, 0, 'kA', -95.07998304699902, 'zG', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -12.919016524402082], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -12.919016524402082, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 38.24361019954367, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 38.24361019954367, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -12.919016524402082], (False, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -12.919016524402082, False, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202, -31.08718493477471, -10.26715024967983], (True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202, -31.08718493477471, -10.26715024967983, True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2, 2, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -31.08718493477471, 65.17669523907202], (True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -31.08718493477471, 65.17669523907202, True, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -31.17870476469473, 65.17669523907202, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -31.17870476469473, 65.17669523907202, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True]", "assert add_tuple([55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202], (True, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, True, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([0, 2], ('gLkArST', 'fQWlqEa', 'GZGE', 'ZUpJfqNP', 'zG', 'KiEslH', 'iGvRkInoya')) == [0, 2, 'gLkArST', 'fQWlqEa', 'GZGE', 'ZUpJfqNP', 'zG', 'KiEslH', 'iGvRkInoya']", "assert add_tuple([51.71717469521855, -95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 38.24361019954367], (2, 1, 0, 1)) == [51.71717469521855, -95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 38.24361019954367, 2, 1, 0, 1]", "assert add_tuple([55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202], (True, False, 'zG', 0, 'kA', -49.52689816727833, 'iGvRkInoya', True)) == [55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, True, False, 'zG', 0, 'kA', -49.52689816727833, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 82.37922713480094, -43.46143646200369, -31.08718493477471], (True, 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 82.37922713480094, -43.46143646200369, -31.08718493477471, True, 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 50.74160029251425, 47.797080090629805, 39.54647476925683, 47.797080090629805], (2, 1, 3, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 50.74160029251425, 47.797080090629805, 39.54647476925683, 47.797080090629805, 2, 1, 3, 2, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, -31.17870476469473, 65.17669523907202, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, -31.17870476469473, 65.17669523907202, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 3, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 3, 2, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 47.797080090629805, 38.24361019954367, 47.797080090629805], (1, 2, 1, 3, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 47.797080090629805, 38.24361019954367, 47.797080090629805, 1, 2, 1, 3, 2, 1]", "assert add_tuple([55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True, -95.07998304699902)) == [55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True, -95.07998304699902]", "assert add_tuple([-10.26715024967983, 55.543216964956486, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202], (True, False, 'zG', 'kA', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202, True, False, 'zG', 'kA', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 50.74160029251425, 47.797080090629805, 39.54647476925683, 47.797080090629805], (2, 1, 3, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 50.74160029251425, 47.797080090629805, 39.54647476925683, 47.797080090629805, 2, 1, 3, 2, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, -31.08718493477471], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 86.53121788549056, 65.17669523907202, -31.08718493477471, True, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.70193517973803, -31.08718493477471, 65.17669523907202, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.70193517973803, -31.08718493477471, 65.17669523907202, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 0, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 0, 1, 1]", "assert add_tuple([50.74160029251425, -31.08718493477471, 45.573615319483054, 32.91228520753927, 81.03417583063762, -23.825573761509688, -52.44291906450442, 32.91228520753927], ('gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [50.74160029251425, -31.08718493477471, 45.573615319483054, 32.91228520753927, 81.03417583063762, -23.825573761509688, -52.44291906450442, 32.91228520753927, 'gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([-95.93549064962474, -10.26715024967983, 82.37922713480094, 56.561546955182706, -59.633415719094835, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 82.37922713480094, 56.561546955182706, -59.633415719094835, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (1, 0, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 1, 0, 1, 1]", "assert add_tuple([False, False, True, False, True, False, False, False, False], (1, 2)) == [False, False, True, False, True, False, False, False, False, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, -49.52689816727833, -49.52689816727833], (1, 2, 1)) == [-95.93549064962474, -10.26715024967983, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, -49.52689816727833, -49.52689816727833, 1, 2, 1]", "assert add_tuple([50.74160029251425, 55.543216964956486, 65.17669523907202], (True, False, 'zG', 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [50.74160029251425, 55.543216964956486, 65.17669523907202, True, False, 'zG', 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-15, 3, 41, 52], ('gLT', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [-15, 3, 41, 52, 'gLT', 'cgbZL', 'gakjwn', 'GZGE', 'zG']", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 41, 3, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 41, 3, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 82.37922713480094, 39.54647476925683, 56.561546955182706, -59.633415719094835, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 82.37922713480094, 39.54647476925683, 56.561546955182706, -59.633415719094835, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 0, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 0, 1, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, -49.52689816727833], (2, 1, 0, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, -49.52689816727833, 2, 1, 0, 1]", "assert add_tuple([-36.89586249488907, -95.93549064962474, -87, [-27, 1, 88, 61, 52, -79], {'-68': 'loXRYiwIF', '2': 'jns', '87': 'Xc', '1': 'CN', '-15': 'GZGE', '-19': 'gLT', '16': 'GZGE'}, False, 'DJEiGvRkInoyad', 'DJEd', -55, 'fQWlqEa'], ('gLrST', 'cgbZL', 'gakjwn', 'GZGE')) == [-36.89586249488907, -95.93549064962474, -87, [-27, 1, 88, 61, 52, -79], {'-68': 'loXRYiwIF', '2': 'jns', '87': 'Xc', '1': 'CN', '-15': 'GZGE', '-19': 'gLT', '16': 'GZGE'}, False, 'DJEiGvRkInoyad', 'DJEd', -55, 'fQWlqEa', 'gLrST', 'cgbZL', 'gakjwn', 'GZGE']", "assert add_tuple([-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, 'zG', True, True)) == [-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, 'zG', True, True]", "assert add_tuple([-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 54.71081150035622], (True, False, 'zG', 0, 'cgbZL', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, 85.91907394610695, -31.08718493477471, 54.71081150035622, True, False, 'zG', 0, 'cgbZL', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, -42.66921859581447, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 52, 3, 88, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, -42.66921859581447, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 52, 3, 88, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 56.561546955182706, -87.65973057260044, -28.65485586376057, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 56.561546955182706, -87.65973057260044, -28.65485586376057, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (1, 1, 1, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 1, 1, 1, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 82.37922713480094, 56.561546955182706, -59.633415719094835, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 2)) == [-95.93549064962474, -10.26715024967983, 82.37922713480094, 56.561546955182706, -59.633415719094835, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 2]", "assert add_tuple([1, 3, 65.17669523907202, False, -42.66921859581447, True, True, -52.44291906450442], ('gLrST', 'cgbZL', 'gakjwn', 'GZhsvhNFGE', 'GZGE', 'zG')) == [1, 3, 65.17669523907202, False, -42.66921859581447, True, True, -52.44291906450442, 'gLrST', 'cgbZL', 'gakjwn', 'GZhsvhNFGE', 'GZGE', 'zG']", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, -48.85929221953715, 38.24361019954367, 85.91907394610695, 47.797080090629805], (2, 1, 1, 0, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, -48.85929221953715, 38.24361019954367, 85.91907394610695, 47.797080090629805, 2, 1, 1, 0, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, -42.66921859581447, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 52, 3, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, -42.66921859581447, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 52, 3, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, -49.52689816727833], (2, 1, 0, 1, 2, 2, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, -49.52689816727833, 2, 1, 0, 1, 2, 2, 2]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -48.58837901592278, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (1, 1, 1, 2, 2)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -48.58837901592278, 45.573615319483054, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 1, 1, 1, 2, 2]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, -31.17870476469473, 65.17669523907202, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True, 'iGvRkInoya')) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, -31.17870476469473, 65.17669523907202, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True, 'iGvRkInoya']", "assert add_tuple([-10.26715024967983, 55.543216964956486, -31.08718493477471, 65.17669523907202, -31.08718493477471], (True, 'zG', -1, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -31.08718493477471, 65.17669523907202, -31.08718493477471, True, 'zG', -1, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 2, 1, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 2, 1, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805], (1, 0, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, -87.65973057260044, -49.52689816727833, 47.797080090629805, 38.24361019954367, 85.91907394610695, 47.797080090629805, 1, 0, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 65.77590529408057, 65.17669523907202], (True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True, 'iGvRkInoya')) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, 65.77590529408057, 65.17669523907202, True, False, 'zG', 0, 'kA', -95.07998304699902, False, 'iGvRkInoya', True, 'iGvRkInoya']", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202], (False, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, -31.08718493477471, 65.17669523907202, False, 'zG', 0, 'kA', -95.93549064962474, 'iGvRkInoya', True]", "assert add_tuple([0, 3, 65.17669523907202, False, -42.66921859581447, True, True, -52.44291906450442], ('gLrST', 'cgbZL', 'gakjwn', 'GZhsvhNFGE', 'GZGE', 'zG')) == [0, 3, 65.17669523907202, False, -42.66921859581447, True, True, -52.44291906450442, 'gLrST', 'cgbZL', 'gakjwn', 'GZhsvhNFGE', 'GZGE', 'zG']", "assert add_tuple([-10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 3, 2, 1)) == [-10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 3, 2, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 38.24361019954367, -87.65973057260044, -49.52689816727833, 44.838951065833115, 47.797080090629805, 38.24361019954367, 47.797080090629805], (2, 1, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, 65.48591501629136, 38.24361019954367, -87.65973057260044, -49.52689816727833, 44.838951065833115, 47.797080090629805, 38.24361019954367, 47.797080090629805, 2, 1, 2, 1]", "assert add_tuple([-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 56.561546955182706], (2, 1, 2, 2, 1)) == [-95.93549064962474, -10.26715024967983, 56.561546955182706, -43.46143646200369, 56.561546955182706, -87.65973057260044, -49.52689816727833, 45.573615319483054, 47.797080090629805, 38.24361019954367, 47.797080090629805, 56.561546955182706, 2, 1, 2, 2, 1]", "assert add_tuple([-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -12.919016524402082, -12.919016524402082], (False, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True)) == [-10.26715024967983, 55.543216964956486, -43.46143646200369, 85.91907394610695, -31.08718493477471, -12.919016524402082, -12.919016524402082, False, False, 'zG', 0, 'kA', -95.07998304699902, 'iGvRkInoya', True]", "assert add_tuple([-93.61964802108062, 'dsgpZflr'], ('gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG')) == [-93.61964802108062, 'dsgpZflr', 'gLrST', 'cgbZL', 'gakjwn', 'GZGE', 'zG']" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if the given array represents min heap or not. \nassert check_min_heap([1, 2, 3, 4, 5, 6]) == True\nYour code should pass the test:\nassert check_min_heap([1, 2, 3, 4, 5, 6]) == True", "test_list": [ "assert check_min_heap([1, 2, 3, 4, 5, 6]) == True", "assert check_min_heap([2, 3, 4, 5, 10, 15]) == True", "assert check_min_heap([2, 10, 4, 5, 3, 15]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth jacobsthal number. 0, 1, 1, 3, 5, 11, 21, 43, 85, 171, 341, 683, 1365, 2731, ...\nassert jacobsthal_num(5) == 11\nYour code should pass the test:\nassert jacobsthal_num(5) == 11", "test_list": [ "assert jacobsthal_num(5) == 11", "assert jacobsthal_num(2) == 1", "assert jacobsthal_num(4) == 5", "assert jacobsthal_num(13) == 2731", "assert jacobsthal_num(100) == 422550200076076467165567735125", "assert jacobsthal_num(1000) == 3571695357287557736494750163533339368538016039018445358145834627901170170416453741643994596052319527091982243058510489417290484285641046811994859191566191601311522591608076995140358201687457047292651394051015491661193980422466255853055181315359020971523732159228847389220143277217541462279068556023125", "assert jacobsthal_num(True) == 1", "assert jacobsthal_num(1001) == 7143390714575115472989500327066678737076032078036890716291669255802340340832907483287989192104639054183964486117020978834580968571282093623989718383132383202623045183216153990280716403374914094585302788102030983322387960844932511706110362630718041943047464318457694778440286554435082924558137112046251", "assert jacobsthal_num(99) == 211275100038038233582783867563", "assert jacobsthal_num(98) == 105637550019019116791391933781", "assert jacobsthal_num(101) == 845100400152152934331135470251", "assert jacobsthal_num(97) == 52818775009509558395695966891", "assert jacobsthal_num(999) == 1785847678643778868247375081766669684269008019509222679072917313950585085208226870821997298026159763545991121529255244708645242142820523405997429595783095800655761295804038497570179100843728523646325697025507745830596990211233127926527590657679510485761866079614423694610071638608770731139534278011563", "assert jacobsthal_num(96) == 26409387504754779197847983445", "assert jacobsthal_num(84) == 6447604371278022265099605", "assert jacobsthal_num(998) == 892923839321889434123687540883334842134504009754611339536458656975292542604113435410998649013079881772995560764627622354322621071410261702998714797891547900327880647902019248785089550421864261823162848512753872915298495105616563963263795328839755242880933039807211847305035819304385365569767139005781", "assert jacobsthal_num(85) == 12895208742556044530199211", "assert jacobsthal_num(1002) == 14286781429150230945979000654133357474152064156073781432583338511604680681665814966575978384209278108367928972234041957669161937142564187247979436766264766405246090366432307980561432806749828189170605576204061966644775921689865023412220725261436083886094928636915389556880573108870165849116274224092501", "assert jacobsthal_num(83) == 3223802185639011132549803", "assert jacobsthal_num(76) == 25185954575304774473045", "assert jacobsthal_num(77) == 50371909150609548946091", "assert jacobsthal_num(102) == 1690200800304305868662270940501", "assert jacobsthal_num(1003) == 28573562858300461891958001308266714948304128312147562865166677023209361363331629933151956768418556216735857944468083915338323874285128374495958873532529532810492180732864615961122865613499656378341211152408123933289551843379730046824441450522872167772189857273830779113761146217740331698232548448185003", "assert jacobsthal_num(78) == 100743818301219097892181", "assert jacobsthal_num(1004) == 57147125716600923783916002616533429896608256624295125730333354046418722726663259866303913536837112433471715888936167830676647748570256748991917747065059065620984361465729231922245731226999312756682422304816247866579103686759460093648882901045744335544379714547661558227522292435480663396465096896370005", "assert jacobsthal_num(103) == 3380401600608611737324541881003", "assert jacobsthal_num(95) == 13204693752377389598923991723", "assert jacobsthal_num(1005) == 114294251433201847567832005233066859793216513248590251460666708092837445453326519732607827073674224866943431777872335661353295497140513497983835494130118131241968722931458463844491462453998625513364844609632495733158207373518920187297765802091488671088759429095323116455044584870961326792930193792740011", "assert jacobsthal_num(79) == 201487636602438195784363", "assert jacobsthal_num(82) == 1611901092819505566274901", "assert jacobsthal_num(997) == 446461919660944717061843770441667421067252004877305669768229328487646271302056717705499324506539940886497780382313811177161310535705130851499357398945773950163940323951009624392544775210932130911581424256376936457649247552808281981631897664419877621440466519903605923652517909652192682784883569502891", "assert jacobsthal_num(48) == 93824992236885", "assert jacobsthal_num(49) == 187649984473771", "assert jacobsthal_num(996) == 223230959830472358530921885220833710533626002438652834884114664243823135651028358852749662253269970443248890191156905588580655267852565425749678699472886975081970161975504812196272387605466065455790712128188468228824623776404140990815948832209938810720233259951802961826258954826096341392441784751445", "assert jacobsthal_num(75) == 12592977287652387236523", "assert jacobsthal_num(35) == 11453246123", "assert jacobsthal_num(86) == 25790417485112089060398421", "assert jacobsthal_num(81) == 805950546409752783137451", "assert jacobsthal_num(87) == 51580834970224178120796843", "assert jacobsthal_num(36) == 22906492245", "assert jacobsthal_num(37) == 45812984491", "assert jacobsthal_num(80) == 402975273204876391568725", "assert jacobsthal_num(50) == 375299968947541", "assert jacobsthal_num(88) == 103161669940448356241593685", "assert jacobsthal_num(89) == 206323339880896712483187371", "assert jacobsthal_num(34) == 5726623061", "assert jacobsthal_num(1006) == 228588502866403695135664010466133719586433026497180502921333416185674890906653039465215654147348449733886863555744671322706590994281026995967670988260236262483937445862916927688982924907997251026729689219264991466316414747037840374595531604182977342177518858190646232910089169741922653585860387585480021", "assert jacobsthal_num(995) == 111615479915236179265460942610416855266813001219326417442057332121911567825514179426374831126634985221624445095578452794290327633926282712874839349736443487540985080987752406098136193802733032727895356064094234114412311888202070495407974416104969405360116629975901480913129477413048170696220892375723", "assert jacobsthal_num(104) == 6760803201217223474649083762005", "assert jacobsthal_num(52) == 1501199875790165", "assert jacobsthal_num(53) == 3002399751580331", "assert jacobsthal_num(65) == 12297829382473034411", "assert jacobsthal_num(94) == 6602346876188694799461995861", "assert jacobsthal_num(47) == 46912496118443", "assert jacobsthal_num(33) == 2863311531", "assert jacobsthal_num(66) == 24595658764946068821", "assert jacobsthal_num(74) == 6296488643826193618261", "assert jacobsthal_num(93) == 3301173438094347399730997931", "assert jacobsthal_num(105) == 13521606402434446949298167524011", "assert jacobsthal_num(51) == 750599937895083", "assert jacobsthal_num(91) == 825293359523586849932749483", "assert jacobsthal_num(90) == 412646679761793424966374741", "assert jacobsthal_num(46) == 23456248059221", "assert jacobsthal_num(32) == 1431655765", "assert jacobsthal_num(92) == 1650586719047173699865498965", "assert jacobsthal_num(106) == 27043212804868893898596335048021", "assert jacobsthal_num(18) == 87381", "assert jacobsthal_num(54) == 6004799503160661", "assert jacobsthal_num(994) == 55807739957618089632730471305208427633406500609663208721028666060955783912757089713187415563317492610812222547789226397145163816963141356437419674868221743770492540493876203049068096901366516363947678032047117057206155944101035247703987208052484702680058314987950740456564738706524085348110446187861", "assert jacobsthal_num(15) == 10923", "assert jacobsthal_num(1007) == 457177005732807390271328020932267439172866052994361005842666832371349781813306078930431308294696899467773727111489342645413181988562053991935341976520472524967874891725833855377965849815994502053459378438529982932632829494075680749191063208365954684355037716381292465820178339483845307171720775170960043", "assert jacobsthal_num(21) == 699051", "assert jacobsthal_num(17) == 43691", "assert jacobsthal_num(107) == 54086425609737787797192670096043", "assert jacobsthal_num(108) == 108172851219475575594385340192085", "assert jacobsthal_num(19) == 174763", "assert jacobsthal_num(20) == 349525", "assert jacobsthal_num(44) == 5864062014805", "assert jacobsthal_num(73) == 3148244321913096809131", "assert jacobsthal_num(22) == 1398101", "assert jacobsthal_num(64) == 6148914691236517205", "assert jacobsthal_num(38) == 91625968981", "assert jacobsthal_num(14) == 5461", "assert jacobsthal_num(45) == 11728124029611", "assert jacobsthal_num(1008) == 914354011465614780542656041864534878345732105988722011685333664742699563626612157860862616589393798935547454222978685290826363977124107983870683953040945049935749783451667710755931699631989004106918756877059965865265658988151361498382126416731909368710075432762584931640356678967690614343441550341920085", "assert jacobsthal_num(993) == 27903869978809044816365235652604213816703250304831604360514333030477891956378544856593707781658746305406111273894613198572581908481570678218709837434110871885246270246938101524534048450683258181973839016023558528603077972050517623851993604026242351340029157493975370228282369353262042674055223093931", "assert jacobsthal_num(23) == 2796203", "assert jacobsthal_num(11) == 683", "assert jacobsthal_num(24) == 5592405", "assert jacobsthal_num(67) == 49191317529892137643", "assert jacobsthal_num(12) == 1365", "assert jacobsthal_num(25) == 11184811", "assert jacobsthal_num(68) == 98382635059784275285", "assert jacobsthal_num(13) == 2731", "assert jacobsthal_num(16) == 21845", "assert jacobsthal_num(72) == 1574122160956548404565", "assert jacobsthal_num(7) == 43", "assert jacobsthal_num(39) == 183251937963", "assert jacobsthal_num(10) == 341", "assert jacobsthal_num(43) == 2932031007403", "assert jacobsthal_num(31) == 715827883", "assert jacobsthal_num(40) == 366503875925", "assert jacobsthal_num(55) == 12009599006321323", "assert jacobsthal_num(56) == 24019198012642645", "assert jacobsthal_num(30) == 357913941", "assert jacobsthal_num(69) == 196765270119568550571" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find minimum k records from tuple list. - in this case a verbatim copy of test cases\nassert min_k([('Manjeet', 10), ('Akshat', 4), ('Akash', 2), ('Nikhil', 8)], 2) == [('Akash', 2), ('Akshat', 4)]\nYour code should pass the test:\nassert min_k([('Manjeet', 10), ('Akshat', 4), ('Akash', 2), ('Nikhil', 8)], 2) == [('Akash', 2), ('Akshat', 4)]", "test_list": [ "assert min_k([('Manjeet', 10), ('Akshat', 4), ('Akash', 2), ('Nikhil', 8)], 2) == [('Akash', 2), ('Akshat', 4)]", "assert min_k([('Sanjeev', 11), ('Angat', 5), ('Akash', 3), ('Nepin', 9)], 3) == [('Akash', 3), ('Angat', 5), ('Nepin', 9)]", "assert min_k([('tanmay', 14), ('Amer', 11), ('Ayesha', 9), ('SKD', 16)], 1) == [('Ayesha', 9)]", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10)], 2) == [('Manjeet', 10), ('Akshat', 10)]", "assert min_k([], 0) == []", "assert min_k([('John', 20)], 1) == [('John', 20)]", "assert min_k([('John', 20)], 0) == []", "assert min_k([('John', 20), ('John', 20)], 0) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10)], 0) == []", "assert min_k([], -1) == []", "assert min_k([('John', 20)], -1) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20)], 1) == [('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], 0) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20)], 1) == [('John', 20)]", "assert min_k([('John', 20), ('John', 20)], -2) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], -1) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10)]", "assert min_k([('John', 20), ('John', 20)], 1) == [('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -2) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Nikhil', 10)], -1) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -4) == [('Manjeet', 10), ('Akshat', 10, 'Akshat')]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -5) == [('Manjeet', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20)], -5) == []", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], -5) == []", "assert min_k([('John', 20), ('John', 20), ('John', 20)], -2) == [('John', 20)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], -1) == [('John', 20), ('John', 20), ('John', 20), ('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Manjeet', 10)], -4) == [('Manjeet', 10), ('Akshat', 10, 'Akshat')]", "assert min_k([('John', 20), ('John', 20)], -1) == [('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Manjeet', 10)], -4) == [('Manjeet', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], -1) == [('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)], -1) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('John', 20), ('John', 20)], -3) == []", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], -2) == [('John', 20), ('John', 20), ('John', 20)]", "assert min_k([('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], 1) == [('Akshat', 10, 'Akshat')]", "assert min_k([('Nikhil', 10, 'Nikhil'), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], 1) == [('Nikhil', 10, 'Nikhil')]", "assert min_k([('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)], 1) == [('Akshat', 10, 'Akshat')]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20)], -1) == [('John', 20), ('John', 20), ('John', 20)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], -1) == [('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20)], -2) == [('John', 20), ('John', 20)]", "assert min_k([('Nikhil', -5), ('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10)], 0) == []", "assert min_k([('John', -4), ('John', 20)], -1) == [('John', -4)]", "assert min_k([('John', 20, 20), ('John', 20)], -1) == [('John', 20, 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Manjeet', 10)], -2) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10)]", "assert min_k([('John', 20, 20), ('John', 20), ('John', 20, 20), ('John', 20)], -1) == [('John', 20, 20), ('John', 20), ('John', 20, 20)]", "assert min_k([('John', 20), ('John', 20), ('John', 20, 20), ('John', 20)], 2) == [('John', 20), ('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Manjeet', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20)], 2) == [('John', 20), ('John', 20)]", "assert min_k([('John', 20), ('John', 20), ('John', 20)], -1) == [('John', 20), ('John', 20)]", "assert min_k([], -5) == []", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], 0) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -3) == [('Manjeet', 10), ('Akshat', 10), ('Akash', 10)]", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Manjeet', 10)], 1) == [('Akshat', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20)], 2) == [('John', 20), ('John', 20)]", "assert min_k([('John', 20, 'John'), ('John', 20), ('John', 20)], -1) == [('John', 20, 'John'), ('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akshat', 10, 'Akshat')], -1) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('John', 20, 20), ('John', 20), ('John', 20, 20), ('John', 20), ('John', 20)], -1) == [('John', 20, 20), ('John', 20), ('John', 20, 20), ('John', 20)]", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Nikhil', 10)], -1) == [('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], -2) == [('John', 20), ('John', 20), ('John', 20), ('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], -5) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], 0) == []", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akshat', 0), ('Nikhil', 10)], -1) == [('Akshat', 0), ('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Manjeet', 10, 10)], -4) == [('Manjeet', 10), ('Akshat', 10, 'Akshat')]", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Nikhil', 10), ('Akash', 10)], -3) == [('Manjeet', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Manjeet', 10, 10)], -4) == [('Manjeet', 10), ('Akshat', 10, 'Akshat', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], 0) == []", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10)], 0) == []", "assert min_k([('John', 20), ('John', 20)], 2) == [('John', 20), ('John', 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], -4) == []", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Nikhil', 10), ('Akshat', 10, 'Akshat')], -1) == [('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Nikhil', 10)]", "assert min_k([('John', -4), ('John', 20)], -5) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Manjaeet', 10), ('Akash', 10), ('Nikhil', 10)], 0) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('Nikhil', 10, 'Nikhil'), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Nikhil', 10)], 0) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Manjaeet', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)], 0) == []", "assert min_k([('John', -3), ('John', 20), ('John', 20), ('John', 20), ('John', 20), ('John', 20)], 0) == []", "assert min_k([('Manjeet', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -3) == [('Manjeet', 10), ('Akash', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10)], -4) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Manjaeet', 10), ('Akash', 10), ('Nikhil', 10)], -1) == [('Manjeet', 10), ('Akshat', 10), ('Manjaeet', 10), ('Akash', 10)]", "assert min_k([('Manjeet', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -1) == [('Manjeet', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'kshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)], -5) == [('Manjeet', 10)]", "assert min_k([('Akshat', 10, 'Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Manjeet', 10, 10)], -2) == [('Akshat', 10, 'Akshat', 10), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10)], -2) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10)]", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)], -1) == [('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10)]", "assert min_k([('John', 20, 20), ('John', 20, 20), ('John', 20), ('John', 20, 'John')], -2) == [('John', 20, 20), ('John', 20, 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Nikhil', 10), ('Manjeet', 10)], -2) == [('Manjeet', 10), ('Akshat', 10, 'Akshat')]", "assert min_k([('Nikhil', -5), ('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Nikhil', -5)], 0) == []", "assert min_k([('John', 10, 20, 20), ('John', 20)], -1) == [('John', 10, 20, 20)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Akash', 10, 'Akash'), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('John', 10, 20, 20)], -1) == []", "assert min_k([('John', 20, 20), ('John', 20)], 1) == [('John', 20, 20)]", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akshat', 0), ('Nikhil', 10), ('Akash', 10)], -1) == [('Akshat', 0), ('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Nikhil', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Akash', 10, 'Akash'), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10), ('Manjeet', 10)], 1) == [('Manjeet', 10)]", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Nikhil', 10)], -2) == [('Akshat', 10), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10)], -1) == [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 10)]", "assert min_k([('John', -2), ('John', 20)], 1) == [('John', -2)]", "assert min_k([('Manjeet', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)], -3) == [('Manjeet', 10)]", "assert min_k([('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Akash', 10), ('Akash', 11), ('Akash', -4), ('Akash', 10)], -4) == [('Akash', -4), ('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10), ('Nikhil', 10)]", "assert min_k([('Akshat', 10, 'Akshat'), ('Nikhil', 10)], 1) == [('Akshat', 10, 'Akshat')]", "assert min_k([('John', -4), ('John', 20), ('John', 20)], -5) == []", "assert min_k([('Akshat', 10, 'Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10), ('Manjeet', 10, 10), ('Manjeet', 10, 10)], -2) == [('Akshat', 10, 'Akshat', 10), ('Akash', 10), ('Nikhil', 10), ('Akash', 10)]", "assert min_k([('Akshat', 10), ('Manjeet', 10), ('Akash', 10), ('Nikhil', 10), ('Manjeet', 10)], 1) == [('Akshat', 10)]", "assert min_k([('John', 20), ('John', 20), ('John', 20), ('John', -1), ('John', 20)], 0) == []", "assert min_k([('Manjeet', 10), ('Akshat', 10), ('Akash', 10), ('Manjeet', 10)], 1) == [('Manjeet', 10)]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "We say that an element is common for lists l1, l2, l3 if it appears in all three lists under the same index. Write a function to find common elements from three lists. The function should return a list.\nassert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 7]\nYour code should pass the test:\nassert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 7]", "test_list": [ "assert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 7]", "assert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 6, 5],[0, 1, 2, 3, 4, 6, 7])==[1, 6]", "assert extract_index_list([1, 1, 3, 4, 6, 5, 6],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 5]", "assert extract_index_list([1, 2, 3, 4, 6, 6, 6],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[]", "assert extract_index_list([], [], []) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [0, 2, 4, 6, 8, 10, 12]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [0, 1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 1, 2, 3, 4, 5, 6, 7, 8, 9]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9]) == []", "assert extract_index_list([1, 2, 3], [1, 2, 3], [1, 2, 3]) == [1, 2, 3]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5, 6, 7]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [7, 6, 5, 4, 3, 2, 1], [1, 2, 3, 4, 5, 6, 7]) == [4]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [2, 4, 6, 8, 10, 12, 14], [1, 2, 3, 4, 5, 6, 7]) == []", "assert extract_index_list([1, 1, 2, 2, 3, 3, 4, 4, 5, 5], [2, 2, 2, 2, 2, 2, 2, 2, 2, 2], [3, 3, 3, 3, 3, 3, 3, 3, 3, 3]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [6, 5, 4, 3, 2, 1], [1, 2, 3, 4, 5, 6]) == []", "assert extract_index_list([10, 20, 30], [0, 5, 10], [10, 15, 20]) == []", "assert extract_index_list([1, 2, 3, 4, 5], [9, 8, 7, 6, 5], [6, 7, 8, 9, 10]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [1, 3, 5, 7, 9, 2, 4, 6, 8, 10]) == []", "assert extract_index_list([11, 22, 33, 44, 55], [10, 20, 30, 40, 50], [20, 40, 60, 80, 100]) == []", "assert extract_index_list([0.5, 1, 1.5, 2, 2.5], [0.2, 0.4, 0.6, 0.8, 1], [0.2, 0.4, 0.6, 0.8, 1]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 3, 3, 4, 5, 6], [0, 2, 4, 6, 8, 10, 12]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9], [0, 8, 1, 2, 3, 3, 7, 6, 5, 8, 9]) == []", "assert extract_index_list([5, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5, 6, 7]) == []", "assert extract_index_list([2, 4, 6, 8, 10, 12, 14], [1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5, 6]) == []", "assert extract_index_list([1, 3, 5, 7, 9, 2, 20, 4, 6, 8, 10], [10, 9, 8, 7, 6, 5, 4, 3, 2, 1], [10, 9, 8, 7, 6, 5, 4, 3, 2, 1]) == [7]", "assert extract_index_list([6, 11, 8, 9, 10], [9, 8, 7, 6, 5], [6, 11, 8, 9, 10]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [6, 5, 4, 3, 2, 1], [3, 1, 2, 3, 4, 5, 6]) == []", "assert extract_index_list([2, 4, 6, 8, 8, 10, 12, 14], [1, 2, 3, 5, 5, 6], [2, 4, 6, 8, 8, 10, 12, 14]) == []", "assert extract_index_list([5, 3, 4, 5, 6, 7], [0, 1, 2, 3, 1, 4, 5, 6], [0, 1, 2, 3, 1, 4, 5, 6]) == []", "assert extract_index_list([5, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [1, 60, 2, 3, 4, 5, 6, 7]) == []", "assert extract_index_list([10, 20, 30], [0, 5, 10], [10, 20, 30]) == []", "assert extract_index_list([0.5, 1, 1.5, 2, 2.5], [0.2, 0.4, 0.6, 0.8, 1], [0.2, 1.5, 0.4, 0.6, 0.8, 1]) == []", "assert extract_index_list([4, 'Qmha', False], [], [35, 96, 80, 59, 44, -20, 30, 8, -30]) == []", "assert extract_index_list([33, 1, 2, 3, 4, 5, 6, -20, 7, 8, 9, 10], [0, 1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 1, 2, 3, 4, 5, 6, 7, 8, 9]) == [1, 2, 3, 4, 5, 6]", "assert extract_index_list([1, 3, 5, 7, 30, 2, 4, 6, 8, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 3, 5, 7, 30, 2, 4, 6, 8, 10]) == [1, 10]", "assert extract_index_list([10, 20, 30], [10, 20, 30], [10, 20, 30]) == [10, 20, 30]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [0, 4, 6, 8, 10, 8]) == []", "assert extract_index_list([1, 2, 22, 3, 4, 5, 6], [3, 1, 9, 3, 4, 6, 6], [3, 1, 9, 3, 4, 6, 6]) == [3, 4, 6]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 8], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9]) == []", "assert extract_index_list([10, 20, 30], [0, 10], [10, 15, 20]) == []", "assert extract_index_list([], [False, False, True], []) == []", "assert extract_index_list([0, 1, 2, 3, 1, 1, 4, 5, 6], [0, 1, 2, 3, 1, 1, 4, 5, 6], [0, 1, 2, 3, 1, 1, 4, 5, 6]) == [0, 1, 2, 3, 1, 1, 4, 5, 6]", "assert extract_index_list([1, 3, 5, 7, 30, 2, 4, 8, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 3, 5, 7, 30, 2, 4, 8, 10]) == [1, 8]", "assert extract_index_list([2, 4, 6, 8, 10, 12, 14], [1, 2, 3, 4, 5, 6, 7], [2, 4, 6, 8, 10, 12, 14]) == []", "assert extract_index_list([10, 20, 31], [0, 5, 10], [10, 15, 15, 20, 20]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 40], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 8], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9]) == []", "assert extract_index_list([2, 3, 4, 5], [9, 8, 7, 6, 5], [6, 7, 8]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 60, 9], [1, 2, 3, 4, 5, 6, 7, 8, 60, 9], [0, 8, 1, 2, 3, 3, 7, 6, 5, 8, 9]) == [7]", "assert extract_index_list([1, 2, 4, 5], [1, 2, 4, 5], [9, 8, 7, 6, 5, 9]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6, 5], [1, 2, 3, 4, 5, 6, 7]) == []", "assert extract_index_list([1, 2, 3], [3, 2, 3], [3, 2, 3]) == [2, 3]", "assert extract_index_list([3, 4, 6, 8, 10, 12, 14], [3, 4, 6, 8, 10, 12, 14], [3, 4, 6, 8, 10, 12, 14]) == [3, 4, 6, 8, 10, 12, 14]", "assert extract_index_list([5, 2, 3, 4, 5, 6, 7], [0, 60, 1, 2, 3, 4, 5], [1, 2, 3, 4, 5, 6, 7, 1]) == []", "assert extract_index_list([0, 1, 2, 3, 4, 7, 60, 6, 5, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 4]) == []", "assert extract_index_list([10, 20, 30], [0, 5, 10, 10], [10, 19, 15, 20]) == []", "assert extract_index_list([10, 10, 20, 30], [10, 15, 20, 15], [10, 15, 20, 15]) == [10, 20]", "assert extract_index_list([33, 1, 2, 3, 4, 5, 6, -20, 7, 8, 9, 10], [0, 1, 2, 3, 4, 6, 7, 8, 9], [0, 1, 2, 3, 4, 6, 7, 8, 9]) == [1, 2, 3, 4]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 40], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 8], [0, 1, 2, 4, 7, 6, 5, 8, 9]) == []", "assert extract_index_list([2, 4, 6, 8, 10, 12, 14], [1, 2, 3, 4, 33, 5, 6, 7], [2, 4, 6, 8, 10, 12, 14]) == []", "assert extract_index_list([1, 1, 3, 4, 5, 6, 5, 7], [0, 1, 10, 2, 3, 4, 5, 6, 20], [1, 1, 3, 4, 5, 6, 5, 7]) == [1, 5]", "assert extract_index_list([4, 3, 3, 3, 3, 3, 3, 4, 3, 3], [4, 3, 3, 3, 3, 3, 3, 4, 3, 3], [2, 2, 2, 2, 2, 2, 2, 2, 2, 2]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [3, 1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5, 6]) == []", "assert extract_index_list([10, 30, 10], [10, 30, 10], [10, 30, 10]) == [10, 30, 10]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [4, 6, 8, 10, 8, 8]) == []", "assert extract_index_list([1, 3, 5, 9, 7, 30, 2, 4, 6, 8, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 3, 5, 9, 7, 30, 2, 4, 6, 8, 10]) == [1]", "assert extract_index_list([False, False, False, False, False], [], [-19.126915383548493, False, 2.5, [[], 'Qmha'], -36, None, 8]) == []", "assert extract_index_list([2, 3, 4, 5], [2, 3, 4, 5], [9, 8, 7, 6, 5, 6]) == []", "assert extract_index_list([2, 3, 4, 5, 3], [9, 8, 7, 6, 5, 6], [2, 3, 4, 5, 3]) == []", "assert extract_index_list([0.2, 0.6, 0.8, 2, 1], [0.2, 0.6, 0.8, 2, 1], [0.2, 0.4, 0.8, 1]) == [0.2, 0.8]", "assert extract_index_list([10, 30], [0, 10], [0, 10]) == []", "assert extract_index_list([0.2, 0.6, 0.8, 2, 1], [1.5, 0.2, 0.4, 0.8, 1], [1.5, 0.2, 0.4, 0.8, 1]) == [1]", "assert extract_index_list([10, 20], [10, 20], [10, 20]) == [10, 20]", "assert extract_index_list([1, 2, 3], [1, 3, 3], [1, 2, 3]) == [1, 3]", "assert extract_index_list([2, 3, 4, 5], [9, 8, 7, 6, 5, 6], [2, 3, 4, 5]) == []", "assert extract_index_list([-54], [4, 'Qmha', False], []) == []", "assert extract_index_list([2, 3, 5, 7, 30, 2, 4, 6, 8, 10, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [2, 3, 5, 7, 30, 2, 4, 6, 8, 10, 3]) == [10]", "assert extract_index_list([2, 3, 5, 7, 30, 2, 20, 6, 8, 10, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [2, 3, 5, 7, 30, 2, 20, 6, 8, 10, 3]) == [10]", "assert extract_index_list([55, 2, 3, 4, 5, 6, 7, 8, 40, 8], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 8], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9]) == []", "assert extract_index_list([33, 1, 2, 3, 5, 6, -20, 7, 8, 9, 10], [0, 1, 2, 3, 6, 5, 6, 7, 8, 9], [0, 1, 2, 3, 6, 5, 6, 7, 8, 9]) == [1, 2, 3, 7, 8, 9]", "assert extract_index_list([0.2, 0.4, 0.6, 0.8, 1], [0.2, 0.4, 0.6, 0.8, 1], [0.2, 0.4, 0.6, 0.8, 1]) == [0.2, 0.4, 0.6, 0.8, 1]", "assert extract_index_list([5, 2, 3, 4, 5, 6, 7], [0, 1, 2, 3, 4, 5, 6], [1, 60, 2, 3, 4, 3, 5, 6, 7]) == []", "assert extract_index_list([5, 2, 3, 4, 6, 7, 7], [5, 2, 3, 4, 6, 7, 7], [1, 60, 2, 3, 4, 3, 5, 5, 7]) == []", "assert extract_index_list([0.5, 1, 1.5, 2, 2.5, 1, 1.5], [0.5, 1, 1.5, 2, 2.5, 1, 1.5], [0.2, 0.4, 0.6, 1]) == []", "assert extract_index_list([0, 1, 2, 3, 1, 1, 5, 6, 0], [0, 1, 2, 3, 1, 1, 5, 6, 0], [0, 1, 2, 3, 1, 1, 5, 6, 0]) == [0, 1, 2, 3, 1, 1, 5, 6, 0]", "assert extract_index_list([2, 4, 6, 8, 8, 10, 0, 14], [1, 2, 3, 5, 5, 6], [2, 4, 6, 8, 8, 10, 0, 14]) == []", "assert extract_index_list([9, 8, 7, 6, -54], [2, 6, 7, 8], [9, 8, 7, 6, -54]) == [7]", "assert extract_index_list([5, 3, 4, 5, 6, 7, 3], [0, 1, 2, 3, 3, 1, 4, 5, 6], [0, 1, 2, 3, 3, 1, 4, 5, 6]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [0, 1, 2, 19, 3, 4, 5, 6], [0, 1, 2, 19, 3, 4, 5, 6]) == []", "assert extract_index_list([2, 4, 6, 8, 10, 12, 14, 4], [1, 2, 3, 4, 5, 7, 3], [1, 2, 3, 4, 5, 7, 3]) == []", "assert extract_index_list([1, 2, 3, 4, 33, 5, 6, 7], [2, 4, 6, 10, 12, 14], [2, 4, 6, 10, 12, 14]) == []", "assert extract_index_list([1, 2, 4, 5], [1, 2, 4, 5], [9, 8, 7, 6, 5, 9, 9]) == []", "assert extract_index_list([0, 8, 1, 2, 3, 3, 7, 6, 5, 9, 9], [1, 2, 3, 4, 5, 6, 7, 8, 60, 9], [0, 8, 1, 2, 3, 3, 7, 6, 5, 9, 9]) == [7, 9]", "assert extract_index_list([1, 2, 3, 4, 5], [8, 7, 6, 5], [6, 7, 8, 9, 10]) == []", "assert extract_index_list([2, 4, 6, 10, 12, 14, 14], [2, 4, 6, 10, 12, 14, 14], [2, 4, 6, 10, 12, 14, 14]) == [2, 4, 6, 10, 12, 14, 14]", "assert extract_index_list([2, 6, 8, 7, 8], [2, 6, 8, 7, 8], [9, 8, 7, 6, -54]) == []", "assert extract_index_list([0, 1, 2, 3, 4, 7, 5, 5, 8, 9, 8], [0, 1, 2, 3, 4, 7, 5, 5, 8, 9, 8], [0, 1, 2, 3, 4, 7, 5, 5, 8, 9, 8]) == [0, 1, 2, 3, 4, 7, 5, 5, 8, 9, 8]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7, 8, 9], [0, 8, 1, 2, 3, 3, 7, 6, 5, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]) == [7]", "assert extract_index_list([100, 20, 30], [100, 20, 30], [100, 20, 30]) == [100, 20, 30]", "assert extract_index_list([-54], [4, 'Qmha', False], [1.5, 5.545422274822442, 48.537942334058584, 66.85132571363468, 0.4, 0.2, 48.92270766385428, 0.2, 82.31395095377587]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5, 6], [1, 2, 3, 4, 5, 6]) == [1, 2, 3, 4, 5, 6]", "assert extract_index_list([None], [False, False, True], []) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [1, 2, 7, 3, 4, 5, 6, 7], [1, 2, 7, 3, 4, 5, 6, 7]) == [1, 2]", "assert extract_index_list([10, 80, 10], [10, 80, 10], [10, 80, 10]) == [10, 80, 10]", "assert extract_index_list([1, 2, 3, 4, 5, -30, 3], [1, 2, 3, 4, 5, -30, 3], [1, 2, 3, 4, 5, -30, 3]) == [1, 2, 3, 4, 5, -30, 3]", "assert extract_index_list([1, 2, 3, 4, 5, 6, 7], [4, 6, 8, 10, 8, 8], [1, 2, 3, 4, 5, 6, 7]) == []", "assert extract_index_list([-54, 3, 5, 7, 9, 2, 20, 4, 6, 8, 10], [10, 9, 8, 7, 6, 5, 4, 2, 2, 1, 10], [10, 9, 8, 7, 6, 5, 4, 2, 2, 1, 10]) == [7, 10]", "assert extract_index_list([1, 2, 3, 4, 5], [6, 7, 8, 9, 10], [9, 8, 7, 6, 5]) == []", "assert extract_index_list([0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 2, 5], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 2, 5], [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 2, 5]) == [0, 1, 2, 3, 4, 7, 6, 5, 8, 9, 2, 5]", "assert extract_index_list([1, 3, 5, 7, 30, 2, 4, 8, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10], [1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == [1, 8]", "assert extract_index_list([-20, 20, 30], [5, 10, 10], [-20, 20, 30]) == []", "assert extract_index_list([0, 1, 2, 3, 3, 1, 4, 5, 6], [0, 1, 2, 3, 3, 1, 4, 5, 6], [0, 1, 2, 3, 3, 1, 4, 5, 6]) == [0, 1, 2, 3, 3, 1, 4, 5, 6]", "assert extract_index_list([1, 2, 7, 3, 4, 5, 6, 7], [1, 2, 7, 3, 4, 5, 6, 7], [1, 2, 3, 4, 5, 6]) == [1, 2]", "assert extract_index_list([10, 20, 30], [0, 5, 10, 6, 10], [10, 19, 15, 20]) == []", "assert extract_index_list([4, 'Qmha', False], [95, 4, 95], [35, 96, 80, 59, 44, -20, 30, 50, -30]) == []", "assert extract_index_list([0, 5, 10, 6, 10, 10], [0, 5, 10, 6, 10, 10], [10, 19, 15, 20]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [6, 5, 4, 3, 2, 30, 1], [6, 5, 4, 3, 2, 30, 1]) == []", "assert extract_index_list([1, 2, 3, 4, 5, 6], [6, 5, 4, 3, 2, 4, 1], [3, 1, 2, 3, 4, 5, 6]) == []", "assert extract_index_list([2, 4, 6, 8, 10, 12, 14], [1, 2, 3, 4, 33, 5, 6, 8, 7], [2, 4, 6, 8, 10, 12, 14]) == []", "assert extract_index_list([10, 20, 30], [0, 5, 10, 10], [0, 5, 10, 10]) == []", "assert extract_index_list([10, 10, 20, 30], [10, 15, 15], [10, 15, 15]) == [10]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the second smallest number in a list.\nassert second_smallest([1, 2, -8, -2, 0, -2])==-2\nYour code should pass the test:\nassert second_smallest([1, 2, -8, -2, 0, -2])==-2", "test_list": [ "assert second_smallest([1, 2, -8, -2, 0, -2])==-2", "assert second_smallest([1, 1, -0.5, 0, 2, -2, -2])==-0.5", "assert second_smallest([2,2])==None", "assert second_smallest([2,2,2])==None", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 6, 5, 3, 5, 8, 9, 7, 9]) == 2", "assert second_smallest([]) == None", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 2", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 7, 6, 5, 3, 5, 8, 9, 7, 9]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1]) == 2", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 6, 5, 3, 5, 4, 8, 9, 7, 9]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 3, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == None", "assert second_smallest([2, 1, 2, 1, 1, 7, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 2", "assert second_smallest([3, 4, 1, 5, 9, 2, 6, 5, 3, 5, 8, 9, 7, 9]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 7, 6, 5, 3, 7, 5, 8, 9, 7, 9]) == 2", "assert second_smallest([2, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 4, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 7, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 1, 1]) == 2", "assert second_smallest([2, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 6, 5, 3, 5, 4, 8, 9, 7, 9, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 2, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([3, 1, 1, 5, 9, 9, 2, 7, 6, 5, 3, 5, 8, 4, 7, 9]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 4, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 7, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 0, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 4, 0, 5, 9, 2, 6, 5, 3, 5, 8, 9, 7, 9]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 0, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 3, 1, 2, 1, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1]) == 1", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 6, 5, 3, 5, 4, 2, 8, 9, 7, 9, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 7, 2, 1]) == 1", "assert second_smallest([3, 1, 1, 5, 9, 9, 2, 6, 5, 3, 5, 8, 4, 7, 9]) == 2", "assert second_smallest([1, 7, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 2, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 0, 1, 1]) == 1", "assert second_smallest([1, 4, 0, 5, 9, 2, 5, 3, 5, 8, 9, 7, 9]) == 1", "assert second_smallest([3, 4, 1, 5, 9, 2, 6, 5, 3, 5, 5, 8, 9, 7, 9]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 2, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([3, 4, 1, 5, 9, 2, 6, 5, 3, 5, 8, 9, 7, 5, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 5, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1]) == 1", "assert second_smallest([1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 4, 1, 1, 1, 1, 1, 7, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1]) == 1", "assert second_smallest([6, 2, 1, 1, 2, 1, 2, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 0, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 3, 1, 2, 1, 1]) == 1", "assert second_smallest([2, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([2, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 0]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 3, 1, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 4, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 7, 2, 1]) == 1", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 7, 6, 5, 3, 5, 6, 8, 9, 7, 9]) == 2", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 6, 5, 7, 3, 5, 8, 9, 7, 9]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 9, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 2", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 1", "assert second_smallest([1, 1, 1, 1, 1, 1, 1, 1, 8, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 2, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 1, 1]) == 1", "assert second_smallest([3, 1, 4, 1, 5, 9, 2, 6, 5, 5, 4, 2, 8, 9, 7, 9, 1, 5]) == 2", "assert second_smallest([3, 1, 1, 5, 9, 9, 2, 7, 3, 5, 3, 5, 8, 4, 7, 9]) == 2", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1]) == 1", "assert second_smallest([-83.2558960666197]) == None", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 7, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 2, 2, 1]) == 1", "assert second_smallest([1, 1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, 1, 1, 1, 0, 1, 1, 2]) == 1", "assert second_smallest([1, 2, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 1, 1, 1]) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count the pairs of reverse strings in the given string list. \nassert count_reverse_pairs([\"julia\", \"best\", \"tseb\", \"for\", \"ailuj\"])== 2\nYour code should pass the test:\nassert count_reverse_pairs([\"julia\", \"best\", \"tseb\", \"for\", \"ailuj\"])== 2", "test_list": [ "assert count_reverse_pairs([\"julia\", \"best\", \"tseb\", \"for\", \"ailuj\"])== 2", "assert count_reverse_pairs([\"geeks\", \"best\", \"for\", \"skeeg\"]) == 1", "assert count_reverse_pairs([\"makes\", \"best\", \"sekam\", \"for\", \"rof\"]) == 2", "assert count_reverse_pairs([]) == 0", "assert count_reverse_pairs(['abc', 'defg', 'hijk', 'uvwxyz', 'ijklmnop', 'qrstuv']) == 0", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['geeks']) == 0", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk']) == 4", "assert count_reverse_pairs(['ab', 'ba', 'cd', 'dc', 'ef', 'fe', 'gh', 'hg', 'ij', 'ji']) == 5", "assert count_reverse_pairs(['aba', 'cdc', 'efe', 'ghg', 'ijij', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'mnoponm', 'aaa', 'bbb', 'ccc']) == 0", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'www', 'xxx', 'yyy', 'zzz']) == 0", "assert count_reverse_pairs(['']) == 0", "assert count_reverse_pairs(['ab', 'ba', 'cd', 'dc', 'ef', 'fe', 'gh', 'hg', 'ji']) == 4", "assert count_reverse_pairs(['abc', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk']) == 3", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['ef', 'defg', 'hijk', 'uvwxyz', 'ijklmnop', 'qrstuv']) == 0", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk', 'def']) == 5", "assert count_reverse_pairs(['aba', 'cdc', 'efe', 'ij', 'kmlk', 'qrstuv', 'ghg', 'mmlk', 'ijij', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['app', '123', 'adef3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'xxx', 'yyy', 'zzz']) == 0", "assert count_reverse_pairs(['aba', 'cdc', 'effe', 'ij', 'kmlk', 'qrstuv', 'ghg', 'mmlk', 'ijij', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['aba', 'cdc', 'vvvefe', 'ghg', 'cd', 'ijij', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['app', '123', 'adef3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed', 'apple']) == 4", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'mnoponm', 'aaa', 'bbb', 'ccc', 'defed']) == 1", "assert count_reverse_pairs(['', '']) == 1", "assert count_reverse_pairs(['abc', 'defg', 'hijk', 'uvwxyz']) == 0", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'ijjiklkji', 'mnoponm', 'aaa', 'bbb', 'ccc', 'defed']) == 1", "assert count_reverse_pairs(['app', '123', 'adef3', 'apple', 'elppa', 'xyx', 'hhh', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed', 'apple']) == 4", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'www', 'xxx', 'yyy', 'zzz']) == 0", "assert count_reverse_pairs(['ab', 'ba', 'cd', 'dc', 'ef', 'fe', 'gh', 'hg', 'ij', 'ji', 'fe']) == 6", "assert count_reverse_pairs(['cdc', 'efe', 'ij', 'kmlk', 'qrstuv', 'mmlk', 'ijij', 'mmelppak', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['lll']) == 0", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'rrr', 'ssslll', 'ttt', 'uuu', 'vvv', 'www', 'xxx', 'yyy', 'zzz']) == 0", "assert count_reverse_pairs(['abc', 'ijklmnfedop', 'defg', 'hijk', 'uvwxyz', 'ijklmnop', 'qrstuv']) == 0", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecr', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['geeji', 'geeks']) == 0", "assert count_reverse_pairs(['ab', 'ba', 'dc', 'ef', 'fe', 'gh', 'hg', 'ji', 'fe']) == 4", "assert count_reverse_pairs(['ab', 'ba', 'dc', 'ef', 'fe', 'gh', 'hg', 'ji', 'fe', 'ef']) == 6", "assert count_reverse_pairs(['abc']) == 0", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'www', 'yyy', 'zzz']) == 0", "assert count_reverse_pairs(['jjj', 'ba', 'cd', 'dc', 'ef', 'fe', 'gh', 'hg', 'ij', 'ji', 'fe']) == 5", "assert count_reverse_pairs(['cdc', 'efe', 'ij', 'kmlk', 'qrstuv', 'mmlk', 'ijij', 'mmelppak', 'mlk']) == 0", "assert count_reverse_pairs(['abac']) == 0", "assert count_reverse_pairs(['aba', 'cdc', 'effe', 'ij', 'kmlk', 'qrstuv', 'ghg', 'mmlk', 'ijij', 'klm', 'ghg', 'mlk']) == 2", "assert count_reverse_pairs(['geeji', 'gedddeji', 'geeks']) == 0", "assert count_reverse_pairs(['geeks', 'geeks', 'geeks']) == 0", "assert count_reverse_pairs(['app', '123', 'adef3', 'apple', 'xyx', 'ssslll', 'hhh', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'def', 'fed', 'apple']) == 2", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk', 'def', 'def', 'ijklmnop', 'gedddeji']) == 6", "assert count_reverse_pairs(['ji', 'adef3', 'geeks', 'geeji']) == 0", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'mnoponm', 'aaa', 'bbb', 'ccc']) == 0", "assert count_reverse_pairs(['ad3', 'ppp']) == 0", "assert count_reverse_pairs(['ab', 'ba', 'dc', 'mlk', 'ef', 'fe', 'gh', 'hg', 'ji', 'fe']) == 4", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk', 'def', 'def', 'ijklmnop', 'gedddeji', 'ijklmnop']) == 6", "assert count_reverse_pairs(['abc', 'defg', 'uvwxyz']) == 0", "assert count_reverse_pairs(['aba', 'cdc', 'vvvefe', 'ghg', 'cd', 'ijij', 'klm', 'mlk', 'klm']) == 2", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed', 'ddd']) == 4", "assert count_reverse_pairs(['hijbak', 'abc', 'ijklmnfedop', 'defg', 'hijk', 'uvwxyz', 'ijklmnop', 'qrstuv']) == 0", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk', 'def', 'def', 'klm']) == 7", "assert count_reverse_pairs(['ijjiklkji']) == 0", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'tab', 'racecar', 'abc', 'zyx', 'def']) == 2", "assert count_reverse_pairs(['geeks', 'geeks', 'geeks', 'geeks']) == 0", "assert count_reverse_pairs(['abcba', 'defezyxd', 'cccc', 'ghighg', 'mnoponm', 'aaa', 'bbb', 'ccc']) == 0", "assert count_reverse_pairs(['ad3']) == 0", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'mnoponm', 'aa', 'bbb', 'ccc', 'defed']) == 1", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'mnoponm', 'aaa', 'lll', 'ccc', 'defed']) == 1", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'ijjiklkji', 'rrr', 'ssslll', 'ttt', 'uuu', 'vvv', 'www', 'xxx', 'yyy', 'zzz', 'ssslll']) == 0", "assert count_reverse_pairs(['ab', 'ba', 'dc', 'mlk', 'ef', 'fe', 'gh', 'hg', 'ji']) == 3", "assert count_reverse_pairs(['aaa', 'pppp', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'www', 'xxx', 'yyy', 'zzz']) == 0", "assert count_reverse_pairs(['hijbak', 'abc', 'ijklmnfedop', 'defg', 'hijk', 'uvwxyz', 'ijkklmnop', 'qrstuv']) == 0", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'ttacocat', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'tab', 'tacocat', 'racecar', 'abc', 'ssslll', 'zyx', 'def', 'ji', 'fed']) == 3", "assert count_reverse_pairs(['ab', 'ba', 'dc', 'ef', 'fe', 'gh', 'hg', 'ji', 'fe', 'fe']) == 5", "assert count_reverse_pairs(['abcba', 'cccc', 'ghighg', 'aaa', 'bbb', 'ccc', 'aaa']) == 1", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'yyy', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['mnoponm']) == 0", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'tab', 'racecar', 'abc', 'zyx', 'def', 'racecar']) == 3", "assert count_reverse_pairs(['abc', 'ijklmnfedop', 'hijk', 'uvwxyz', 'ijklmnop', 'qrstuv']) == 0", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'mlk', 'def', 'def', 'ijklmnop', 'gedddeji', 'def']) == 7", "assert count_reverse_pairs(['aba', 'cdc', 'vvvefe', 'ijijj', 'ghg', 'cd', 'ijij', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['abcba', 'defed', 'ijklkji', 'mnoponm', 'aaa', 'ijkli', 'lll', 'ccc', 'defed']) == 1", "assert count_reverse_pairs(['ab', 'ba', 'cd', 'dc', 'ef', 'fe', 'gh', 'hg', 'ij', 'ji', 'ij']) == 6", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'mnoponm', 'aaa', 'bbb', 'zzz', 'ccc']) == 0", "assert count_reverse_pairs(['abc', 'cba', 'def', 'batfed', 'hij', 'jih', 'klm', 'mlk', 'def', 'def', 'klm']) == 4", "assert count_reverse_pairs(['ab', 'ba', 'cd', 'dc', 'ef', 'fe', 'gh', 'hg', 'ij', 'ji', 'fe', 'gh']) == 7", "assert count_reverse_pairs(['eji', 'ji', 'adef3', 'geeks', 'klm', 'geeji']) == 0", "assert count_reverse_pairs(['aba', 'cdc', 'efe', 'ij', 'kmlk', 'qrstuv', 'ghg', 'mmlk', 'iracecrjij', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'xxx', 'yyy', 'zzz', 'ttt']) == 1", "assert count_reverse_pairs(['abcba', 'defed', 'ijklkji', 'mnoponm', 'aaa', 'ijkli', 'lll', 'ccc', 'defed', 'aaa']) == 2", "assert count_reverse_pairs(['aiiib', 'ba', 'dc', 'mlk', 'ef', 'fe', 'gh', 'hg', 'ji']) == 2", "assert count_reverse_pairs(['abcba', 'cccc', 'ghighg', 'aaa', 'bbb', 'ccc', 'aaa', 'aaa']) == 3", "assert count_reverse_pairs(['aba', 'cdc', 'efe', 'ij', 'kmlk', 'qrstuv', 'ghg', 'mmlk', 'ijij', 'mlk']) == 0", "assert count_reverse_pairs(['abcba', 'defezyxd', 'cccc', 'ghighg', 'mnoponm', 'aaa', 'bbb', 'cccfe']) == 0", "assert count_reverse_pairs(['app', '123', 'apple', 'elppa', 'xyx', 'bat', 'tab', 'racecar', 'abc', 'zyx', 'def', 'racecar']) == 3", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'klm', 'ddd', 'tab', 'tacocat', 'racecar', 'yyy', 'abc', 'zyx', 'def', 'fed', 'ddd']) == 3", "assert count_reverse_pairs(['eji', 'ji', 'adef3', 'geeks', 'klm', 'geeji', 'klm']) == 0", "assert count_reverse_pairs(['ij', 'aiiibj', '']) == 0", "assert count_reverse_pairs(['geeji', 'gedddeji', 'geeks', 'geeks']) == 0", "assert count_reverse_pairs(['aaa', 'bbb', 'ccc', 'ddd', 'eee', 'fff', 'ggg', 'hhh', 'iii', 'jjj', 'kkk', 'lll', 'mmm', 'nnn', 'ooo', 'ppp', 'qqq', 'rrr', 'sss', 'ttt', 'uuu', 'vvv', 'www', 'yyy', 'zzz', 'iii']) == 1", "assert count_reverse_pairs(['tab']) == 0", "assert count_reverse_pairs(['abc', 'defg']) == 0", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'ml', 'def']) == 4", "assert count_reverse_pairs(['aba', 'cdc', 'vvvefe', 'ghg', 'cd', 'klm', 'mlk']) == 1", "assert count_reverse_pairs(['abcba', 'cccc', 'ghighg', 'mnoponm', 'aaa', 'bbb', 'cccfe']) == 0", "assert count_reverse_pairs(['abc', 'defg', 'hjk']) == 0", "assert count_reverse_pairs(['abcba', 'defezyxd', 'cccc', 'ghighg', 'mnoponm', 'aaa', 'bbb', 'ccc', 'bbb']) == 1", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'ml', 'hij']) == 4", "assert count_reverse_pairs(['abc', 'cba', 'def', 'fed', 'hij', 'jih', 'klm', 'ml', 'hij', 'hij']) == 5", "assert count_reverse_pairs(['app', '123', 'ad3abac', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecr', 'abc', 'zyx', 'def', 'fed']) == 3", "assert count_reverse_pairs(['app', '123', 'apple', 'elppa', 'xyx', 'klm', 'ddd', 'tacocat', 'racecar', 'yyy', 'abc', 'zyx', 'def', 'fed', 'ddd', 'app']) == 3", "assert count_reverse_pairs(['abc', 'def', 'fed', 'hij', 'jih', 'klm', 'ml', 'def', 'cba']) == 4", "assert count_reverse_pairs(['abcba', 'defed', 'ghighg', 'ijklkji', 'mnoponm', 'aa', 'bbb', 'defed']) == 1", "assert count_reverse_pairs(['app', '123', 'ad3', 'apple', 'elppa', 'xyx', 'bat', 'ddd', 'tab', 'tacocat', 'racecar', 'abc', 'zyx', 'def', 'fed', 'elppa']) == 4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to count lists within a list. The function should return a dictionary where every list is converted to a tuple and the value of such tuple is the number of its occurencies in the original list.\nassert unique_sublists([[1, 3], [5, 7], [1, 3], [13, 15, 17], [5, 7], [9, 11]] )=={(1, 3): 2, (5, 7): 2, (13, 15, 17): 1, (9, 11): 1}\nYour code should pass the test:\nassert unique_sublists([[1, 3], [5, 7], [1, 3], [13, 15, 17], [5, 7], [9, 11]] )=={(1, 3): 2, (5, 7): 2, (13, 15, 17): 1, (9, 11): 1}", "test_list": [ "assert unique_sublists([[1, 3], [5, 7], [1, 3], [13, 15, 17], [5, 7], [9, 11]] )=={(1, 3): 2, (5, 7): 2, (13, 15, 17): 1, (9, 11): 1}", "assert unique_sublists([['green', 'orange'], ['black'], ['green', 'orange'], ['white']])=={('green', 'orange'): 2, ('black',): 1, ('white',): 1}", "assert unique_sublists([[10, 20, 30, 40], [60, 70, 50, 50], [90, 100, 200]])=={(10, 20, 30, 40): 1, (60, 70, 50, 50): 1, (90, 100, 200): 1}", "assert unique_sublists([['john']])=={('john',): 1}", "assert unique_sublists([]) == {}", "assert unique_sublists([[]]) == {(): 1}", "assert unique_sublists([[1, 2], [2, 3], [1, 2], [1, 2, 3], [2, 3], [1, 2]]) == {(1, 2): 3, (2, 3): 2, (1, 2, 3): 1}", "assert unique_sublists([['green', 'orange'], [1, 2], ['green', 'orange'], [1, 2, 3]]) == {('green', 'orange'): 2, (1, 2): 1, (1, 2, 3): 1}", "assert unique_sublists([['cat', 'dog'], ['cat'], ['cat', 'dog'], ['cat', 'dog'], ['cat', 'dog', 'rabbit'], ['rabbit']]) == {('cat', 'dog'): 3, ('cat',): 1, ('cat', 'dog', 'rabbit'): 1, ('rabbit',): 1}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3, ('h', 'i', 'j', 'k'): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear']]) == {('apple', 'banana', 'cherry'): 4, ('apple', 'pear'): 3, ('apple', 'banana'): 1}", "assert unique_sublists([[1, 2], [2, 1, 3], [1, 2], [2, 3], [1, 2, 3]]) == {(1, 2): 2, (2, 1, 3): 1, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([[1, 2], [3, 4, 5], [6, 7], [8, 9, 10], [6, 7], [1, 2]]) == {(1, 2): 2, (3, 4, 5): 1, (6, 7): 2, (8, 9, 10): 1}", "assert unique_sublists([['a', 'b'], ['c'], ['d'], ['e'], ['c'], ['a', 'b']]) == {('a', 'b'): 2, ('c',): 2, ('d',): 1, ('e',): 1}", "assert unique_sublists([[1, 2, 3, 4], [5, 6, 7], [1, 2, 3, 4], [8, 9, 10], [1, 2, 3, 4], [5, 6, 7]]) == {(1, 2, 3, 4): 3, (5, 6, 7): 2, (8, 9, 10): 1}", "assert unique_sublists([['x', 'y'], ['z', 'w'], ['x', 'y'], ['z', 'w'], ['x', 'y']]) == {('x', 'y'): 3, ('z', 'w'): 2}", "assert unique_sublists([[], []]) == {(): 2}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'pear'): 3, ('apple', 'banana'): 1, ('apae', 'bganana', 'cherry'): 3}", "assert unique_sublists([['x', 'y'], ['z', 'w'], ['x', 'y'], ['z', 'w'], ['x', 'y'], ['z', 'w']]) == {('x', 'y'): 3, ('z', 'w'): 3}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'j', 'k']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3, ('h', 'i', 'j', 'k'): 2}", "assert unique_sublists([[1, 2, 4], [5, 6, 7], [1, 2, 3, 4], [8, 9, 10], [1, 2, 3, 4], [5, 6, 7]]) == {(1, 2, 4): 1, (5, 6, 7): 2, (1, 2, 3, 4): 2, (8, 9, 10): 1}", "assert unique_sublists([[True, True, True, False]]) == {(True, True, True, False): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'banana'): 1, ('apple', 'pear'): 2, ('apae', 'bganana', 'cherry'): 2}", "assert unique_sublists([['a', 'bapae', 'b'], ['c'], ['d'], ['e'], ['c'], ['a', 'b']]) == {('a', 'bapae', 'b'): 1, ('c',): 2, ('d',): 1, ('e',): 1, ('a', 'b'): 1}", "assert unique_sublists([['a', 'b'], ['c'], ['d'], ['e'], ['c'], ['a', 'b'], ['c']]) == {('a', 'b'): 2, ('c',): 3, ('d',): 1, ('e',): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae'], ['apae', 'bganana', 'cherry', 'apae'], ['apae', 'bganana', 'cherry', 'apae'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae'], ['apple', 'banana', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'pear'): 3, ('apple', 'banana'): 1, ('apae', 'bganana', 'cherry', 'apae'): 4}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apple', 'banana', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'pear'): 3, ('apple', 'banana'): 1, ('apae', 'bganana', 'cherry', 'apae', 'apae'): 5}", "assert unique_sublists([[1, 2], ['green', 'orange'], [1, 2, 3]]) == {(1, 2): 1, ('green', 'orange'): 1, (1, 2, 3): 1}", "assert unique_sublists([[3, 3], [1, 2], [2, 3], [1, 2], [1, 2, 3], [3, 3], [1, 2]]) == {(3, 3): 2, (1, 2): 3, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([[22.633521147116923, 41.08183937180155, -95.716703243959], [22.633521147116923, 41.08183937180155, -95.716703243959]]) == {(22.633521147116923, 41.08183937180155, -95.716703243959): 2}", "assert unique_sublists([['b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['h', 'i', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a']]) == {('b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('h', 'i', 'k'): 2, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3}", "assert unique_sublists([['a', 'b'], ['c'], ['d'], ['e'], ['c'], ['a', 'b'], ['d']]) == {('a', 'b'): 2, ('c',): 2, ('d',): 2, ('e',): 1}", "assert unique_sublists([[1, 2], [2, 1, 3], [2, 3], [1, 2, 3]]) == {(1, 2): 1, (2, 1, 3): 1, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['x', 'y'], ['z', 'wf'], ['x', 'y'], ['z', 'w'], ['x', 'y']]) == {('x', 'y'): 3, ('z', 'wf'): 1, ('z', 'w'): 1}", "assert unique_sublists([[], ['x', 'y'], ['z', 'w'], ['x', 'y'], ['z', 'w']]) == {(): 1, ('x', 'y'): 2, ('z', 'w'): 2}", "assert unique_sublists([[5, 1, 2], [2, 1, 3], [5, 1, 2], [2, 3], [1, 2, 3]]) == {(5, 1, 2): 2, (2, 1, 3): 1, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'], ['a', 'b'], ['a', 'b'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'g']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 1, ('g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'): 3, ('h', 'i', 'j', 'k'): 2}", "assert unique_sublists([[10, 60, 50.03460044856237], [], []]) == {(10, 60, 50.03460044856237): 1, (): 2}", "assert unique_sublists([[5, 1], [2, 1, 3], [5, 1], [2, 3], [1, 2, 3]]) == {(5, 1): 2, (2, 1, 3): 1, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banadna', 'cherry'], ['apple', 'pear']]) == {('apple', 'pear'): 3, ('apple', 'banana', 'cherry'): 2, ('apple', 'banana'): 1, ('apple', 'banadna', 'cherry'): 1}", "assert unique_sublists([[1, 2], [3], [3], [1, 2], [1, 2, 3], [2, 3], [1, 2]]) == {(1, 2): 3, (3,): 2, (1, 2, 3): 1, (2, 3): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae'], ['apae', 'bganana', 'cherry', 'apae'], ['apae', 'bganana', 'cherry', 'apae'], ['apple', 'pear'], ['apple', 'banana', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'pear'): 3, ('apple', 'banana'): 1, ('apae', 'bganana', 'cherry', 'apae'): 3}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'], ['a', 'b'], ['a', 'b'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'], ['g', 'f', 'e', 'd', 'c', 'b', 'a']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 2, ('g', 'f', 'e', 'd', 'c', 'b', 'a', 'g'): 3, ('h', 'i', 'j', 'k'): 2}", "assert unique_sublists([['x', 'y'], ['z', 'w'], ['x', 'y'], ['z', 'w'], ['a', 'y'], ['a', 'y'], ['z', 'w'], ['z', 'w']]) == {('x', 'y'): 2, ('z', 'w'): 4, ('a', 'y'): 2}", "assert unique_sublists([['a', 'bapae', 'b'], ['c'], ['d'], ['e'], ['c'], ['a', 'b'], ['c']]) == {('a', 'bapae', 'b'): 1, ('c',): 3, ('d',): 1, ('e',): 1, ('a', 'b'): 1}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'wf', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'wf', 'j', 'k']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3, ('h', 'i', 'wf', 'j', 'k'): 2}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'apple'], ['apple', 'pear'], ['apple', 'banana', 'apple'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'pear']]) == {('apple', 'banana', 'cherry'): 4, ('apple', 'pear'): 4, ('apple', 'banana', 'apple'): 2}", "assert unique_sublists([[1, 2, 3, 4], [5, 10, 6, 7], [1, 2, 3, 4], [8, 9, 10], [1, 2, 3, 4], [5, 10, 6, 7], [5, 6, 7]]) == {(1, 2, 3, 4): 3, (5, 10, 6, 7): 2, (8, 9, 10): 1, (5, 6, 7): 1}", "assert unique_sublists([[], ['x', 'y'], ['z', 'w'], ['z', 'w']]) == {(): 1, ('x', 'y'): 1, ('z', 'w'): 2}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apple', 'pear'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apae', 'bganana', 'cherry', 'apae', 'apae'], ['apple', 'banana', 'cherry'], ['apple', 'pear']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'pear'): 4, ('apple', 'banana'): 1, ('apae', 'bganana', 'cherry', 'apae', 'apae'): 5}", "assert unique_sublists([[5, 1, 6, 2], [5, 1, 6, 2], [5, 1, 6, 2], [2, 3], [1, 2, 3]]) == {(5, 1, 6, 2): 3, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['a', 'b'], ['c'], ['wf'], ['d'], ['e'], ['wf'], ['a', 'b'], ['wf']]) == {('a', 'b'): 2, ('c',): 1, ('wf',): 3, ('d',): 1, ('e',): 1}", "assert unique_sublists([[True, True, True, True, False], [True, True, True, True, False], [True, True, True, True, False]]) == {(True, True, True, True, False): 3}", "assert unique_sublists([['x', 'xx', 'y'], ['z', 'wf'], ['x'], ['z', 'w'], ['x', 'xx', 'y'], ['x', 'y']]) == {('x', 'xx', 'y'): 2, ('z', 'wf'): 1, ('x',): 1, ('z', 'w'): 1, ('x', 'y'): 1}", "assert unique_sublists([[2, 4], [5, 1], [2, 1, 3], [5, 1], [2, 4], [1, 2, 3]]) == {(2, 4): 2, (5, 1): 2, (2, 1, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['a', 'b'], ['c'], ['wf', 'wf'], ['d'], ['e'], ['wf', 'wf'], ['a', 'b'], ['wf', 'wf']]) == {('a', 'b'): 2, ('c',): 1, ('wf', 'wf'): 3, ('d',): 1, ('e',): 1}", "assert unique_sublists([[1, 2], [], [], [1, 2], [1, 2, 3], [2, 3], [1, 2]]) == {(1, 2): 3, (): 2, (1, 2, 3): 1, (2, 3): 1}", "assert unique_sublists([['x', 'w', 'xx', 'y'], ['z', 'wf'], ['g', 'x'], ['k', 'z', 'w'], ['x', 'w', 'xx', 'y'], ['x', 'w', 'xx', 'y'], ['x', 'y']]) == {('x', 'w', 'xx', 'y'): 3, ('z', 'wf'): 1, ('g', 'x'): 1, ('k', 'z', 'w'): 1, ('x', 'y'): 1}", "assert unique_sublists([[10, 60, 50.03460044856237], []]) == {(10, 60, 50.03460044856237): 1, (): 1}", "assert unique_sublists([['x', 'xx', 'y'], ['z', 'wf'], ['x'], ['z', 'w'], ['x', 'xx', 'y'], ['x', 'y'], ['x', 'y']]) == {('x', 'xx', 'y'): 2, ('z', 'wf'): 1, ('x',): 1, ('z', 'w'): 1, ('x', 'y'): 2}", "assert unique_sublists([[5, 1], [2, 1, 3], [5, 1], [5, 2, 3], [1, 2, 3]]) == {(5, 1): 2, (2, 1, 3): 1, (5, 2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['z', 'wf'], ['x'], ['z', 'w'], ['x', 'xx', 'y'], ['x', 'y'], ['x', 'y']]) == {('z', 'wf'): 1, ('x',): 1, ('z', 'w'): 1, ('x', 'xx', 'y'): 1, ('x', 'y'): 2}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['bananaa', 'apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'pear']]) == {('apple', 'banana', 'cherry'): 3, ('bananaa', 'apple', 'banana'): 1, ('apple', 'pear'): 3, ('apae', 'bganana', 'cherry'): 2}", "assert unique_sublists([['a', 'b'], ['c'], ['dd', 'd'], ['e'], ['c'], ['ak', 'b'], ['dd', 'd']]) == {('a', 'b'): 1, ('c',): 2, ('dd', 'd'): 2, ('e',): 1, ('ak', 'b'): 1}", "assert unique_sublists([[], ['x', 'y'], ['z', 'w'], ['z', 'w'], []]) == {(): 2, ('x', 'y'): 1, ('z', 'w'): 2}", "assert unique_sublists([[10, 60, 50.03460044856237], [], [8, 8, 3, -40, 48], [], []]) == {(10, 60, 50.03460044856237): 1, (): 3, (8, 8, 3, -40, 48): 1}", "assert unique_sublists([['z', 'wf', 'z'], ['x', 'w', 'xx', 'y'], ['z', 'wf', 'z'], ['g', 'x'], ['k', 'z', 'w'], ['x', 'w', 'xx', 'y'], ['x', 'w', 'xx', 'y'], ['x', 'y']]) == {('z', 'wf', 'z'): 2, ('x', 'w', 'xx', 'y'): 3, ('g', 'x'): 1, ('k', 'z', 'w'): 1, ('x', 'y'): 1}", "assert unique_sublists([['a', 'b'], ['wf', 'a', 'a'], ['c'], ['wf', 'a', 'a'], ['d'], ['e'], ['wf', 'a', 'a'], ['a', 'b'], ['wf', 'a', 'a'], ['wf', 'a', 'a'], ['e']]) == {('a', 'b'): 2, ('wf', 'a', 'a'): 5, ('c',): 1, ('d',): 1, ('e',): 2}", "assert unique_sublists([['a', 'b'], ['c'], ['wf', 'wf'], ['d'], ['e'], ['wf', 'wf'], ['a', 'b'], ['wf', 'wf'], ['wf', 'wf']]) == {('a', 'b'): 2, ('c',): 1, ('wf', 'wf'): 4, ('d',): 1, ('e',): 1}", "assert unique_sublists([[True, True, True, False, True, False], [True, True, True, False, True, False], [True, True, True, False, True, False], [True, True, True, False, True, False]]) == {(True, True, True, False, True, False): 4}", "assert unique_sublists([['x', 'ww', 'xx', 'y'], ['z', 'wf'], ['g', 'x'], ['k', 'z', 'w'], ['x', 'ww', 'xx', 'y'], ['x', 'ww', 'xx', 'y'], ['x', 'y'], ['x', 'y']]) == {('x', 'ww', 'xx', 'y'): 3, ('z', 'wf'): 1, ('g', 'x'): 1, ('k', 'z', 'w'): 1, ('x', 'y'): 2}", "assert unique_sublists([['a', 'b'], ['c'], ['wf', 'wf'], ['d'], ['e'], ['wf', 'wf'], ['a', 'b'], ['wf', 'wf'], ['wf', 'wf'], ['wf', 'wf']]) == {('a', 'b'): 2, ('c',): 1, ('wf', 'wf'): 5, ('d',): 1, ('e',): 1}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['g', 'f', 'e', 'd', 'c', 'b', 'a']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'apple'], ['apple', 'pear'], ['apple', 'banana', 'apple'], ['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'pear'], ['apple', 'pear']]) == {('apple', 'banana', 'cherry'): 4, ('apple', 'pear'): 5, ('apple', 'banana', 'apple'): 2}", "assert unique_sublists([[22.633521147116923, 41.08183937180155, -95.716703243959, -95.716703243959, -95.716703243959], [22.633521147116923, 41.08183937180155, -95.716703243959, -95.716703243959, -95.716703243959], [22.633521147116923, 41.08183937180155, -95.716703243959, -95.716703243959, -95.716703243959], [22.633521147116923, 41.08183937180155, -95.716703243959, -95.716703243959, -95.716703243959], [22.633521147116923, 41.08183937180155, -95.716703243959, -95.716703243959, -95.716703243959]]) == {(22.633521147116923, 41.08183937180155, -95.716703243959, -95.716703243959, -95.716703243959): 5}", "assert unique_sublists([['a', 'b'], ['c'], ['d'], ['e'], ['f', 'c'], ['a', 'b']]) == {('a', 'b'): 2, ('c',): 1, ('d',): 1, ('e',): 1, ('f', 'c'): 1}", "assert unique_sublists([[5, 1, 2], [2, 1, 3], [5, 1, 2], [2, 3], [1, 2, 3], [2, 3]]) == {(5, 1, 2): 2, (2, 1, 3): 1, (2, 3): 2, (1, 2, 3): 1}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'e'], ['a', 'b'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('g', 'f', 'e', 'd', 'c', 'b', 'a', 'e'): 1, ('a', 'b'): 4, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 2, ('h', 'i', 'j', 'k'): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'cherry', 'apple'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'cherry', 'apple']]) == {('apple', 'banana', 'cherry'): 1, ('apple', 'pear'): 3, ('apae', 'bganana', 'cherry'): 3, ('apple', 'banana', 'cherry', 'apple'): 2}", "assert unique_sublists([[5, 1, 2], [2, 1, 3], [5, 1, 2], [2, 3], [1, 2, 3], [2, 1, 3]]) == {(5, 1, 2): 2, (2, 1, 3): 2, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([[1, 2, 1], [3], [3], [1, 2], [1, 2, 3], [2, 3], [1, 2]]) == {(1, 2, 1): 1, (3,): 2, (1, 2): 2, (1, 2, 3): 1, (2, 3): 1}", "assert unique_sublists([[5, 1], [2, 1, 3], [5, 1], [1, 2, 3]]) == {(5, 1): 2, (2, 1, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([['c'], ['wf', 'wf'], ['d'], ['e'], ['wf', 'wf'], ['a', 'j', 'b'], ['wf', 'wf'], ['wf', 'wf']]) == {('c',): 1, ('wf', 'wf'): 4, ('d',): 1, ('e',): 1, ('a', 'j', 'b'): 1}", "assert unique_sublists([[1, 2], [2, 1, 3], [2], [1, 2, 3]]) == {(1, 2): 1, (2, 1, 3): 1, (2,): 1, (1, 2, 3): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'adpple', 'pear'], ['apple', 'adpple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'ae', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry']]) == {('apple', 'banana', 'cherry'): 2, ('apple', 'adpple', 'pear'): 2, ('apple', 'banana'): 1, ('apple', 'pear'): 2, ('apae', 'bganana', 'cherry'): 3, ('apple', 'banana', 'ae', 'cherry'): 1}", "assert unique_sublists([['z', 'wf'], ['x'], ['z', 'w'], ['x', 'xx', 'y'], ['ww', 'x', 'y']]) == {('z', 'wf'): 1, ('x',): 1, ('z', 'w'): 1, ('x', 'xx', 'y'): 1, ('ww', 'x', 'y'): 1}", "assert unique_sublists([['a', 'b'], ['c'], ['x', 'wf', 'wf'], ['d'], ['e'], ['x', 'wf', 'wf'], ['a', 'b'], ['x', 'wf', 'wf'], ['x', 'wf', 'wf'], ['x', 'wf', 'wf'], ['x', 'wf', 'wf']]) == {('a', 'b'): 2, ('c',): 1, ('x', 'wf', 'wf'): 6, ('d',): 1, ('e',): 1}", "assert unique_sublists([['x', 'y'], ['z', 'wf'], ['z', 'w']]) == {('x', 'y'): 1, ('z', 'wf'): 1, ('z', 'w'): 1}", "assert unique_sublists([['b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['i', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['i', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a']]) == {('b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('i', 'k'): 2, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3}", "assert unique_sublists([['z', 'i', 'w'], ['x', 'xx', 'y'], ['z', 'wf'], ['x'], ['z', 'i', 'w'], ['x', 'xx', 'y'], ['x', 'y']]) == {('z', 'i', 'w'): 2, ('x', 'xx', 'y'): 2, ('z', 'wf'): 1, ('x',): 1, ('x', 'y'): 1}", "assert unique_sublists([['x', 'xx', 'y'], ['z', 'wf'], ['x'], ['w'], ['x', 'xx', 'y'], ['x', 'y'], ['x', 'y'], ['x'], ['x']]) == {('x', 'xx', 'y'): 2, ('z', 'wf'): 1, ('x',): 3, ('w',): 1, ('x', 'y'): 2}", "assert unique_sublists([['a', 'b'], ['c'], [], ['d'], [], ['c'], ['a', 'b']]) == {('a', 'b'): 2, ('c',): 2, (): 2, ('d',): 1}", "assert unique_sublists([[3, 60], [1, 2], [3, 60], [2, 3], [1, 2], [1, 2, 3], [3, 60], [1, 2]]) == {(3, 60): 3, (1, 2): 3, (2, 3): 1, (1, 2, 3): 1}", "assert unique_sublists([[], ['x', 'y'], ['zz', 'z', 'w'], ['x', 'y'], ['zz', 'z', 'w']]) == {(): 1, ('x', 'y'): 2, ('zz', 'z', 'w'): 2}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'banana', 'cherry'], ['bananaa', 'apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('bananaa', 'apple', 'banana'): 1, ('apple', 'pear'): 3, ('apae', 'bganana', 'cherry'): 3}", "assert unique_sublists([['a', 'b'], ['c'], ['d'], ['e'], ['c'], ['a', 'b'], ['a', 'b']]) == {('a', 'b'): 3, ('c',): 2, ('d',): 1, ('e',): 1}", "assert unique_sublists([[1, 6, 2], [1, 6, 2], [1, 6, 2], [2, 3], [1, 2, 3], [1, 6, 2], [2, 3]]) == {(1, 6, 2): 4, (2, 3): 2, (1, 2, 3): 1}", "assert unique_sublists([['x', 'y'], ['z', 'w'], ['', 'y'], ['', 'y'], ['z', 'w'], ['y'], ['y'], ['y'], ['z', 'w'], ['z', 'w'], ['y']]) == {('x', 'y'): 1, ('z', 'w'): 4, ('', 'y'): 2, ('y',): 4}", "assert unique_sublists([[1, 10, 3, 4], [5, 10, 6, 7, 5], [1, 2, 3, 4], [8, 9, 10], [1, 2, 3, 4], [5, 10, 6, 7, 5], [5, 6, 7], [5, 10, 6, 7, 5]]) == {(1, 10, 3, 4): 1, (5, 10, 6, 7, 5): 3, (1, 2, 3, 4): 2, (8, 9, 10): 1, (5, 6, 7): 1}", "assert unique_sublists([['x', 'y', 'y'], ['z', 'wf'], ['z', 'w'], ['x', 'y']]) == {('x', 'y', 'y'): 1, ('z', 'wf'): 1, ('z', 'w'): 1, ('x', 'y'): 1}", "assert unique_sublists([['b', 'c', 'd', 'e', 'f', 'y'], ['b', 'c', 'd', 'e', 'f', 'y'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['i', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b']]) == {('b', 'c', 'd', 'e', 'f', 'y'): 2, ('a', 'b'): 4, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3, ('i', 'k'): 1}", "assert unique_sublists([['x', 'xx', 'y'], ['z', 'wf'], ['w'], ['x', 'xx', 'y'], ['x', 'y'], ['x', 'y'], [], [], []]) == {('x', 'xx', 'y'): 2, ('z', 'wf'): 1, ('w',): 1, ('x', 'y'): 2, (): 3}", "assert unique_sublists([['b', 'c', 'd', 'e', 'f', 'g'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a']]) == {('b', 'c', 'd', 'e', 'f', 'g'): 1, ('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 3, ('h', 'i', 'j', 'k'): 1}", "assert unique_sublists([['j', 'z', 'wf'], ['x'], ['z', 'w'], ['x', 'xx', 'y'], ['x', 'y'], ['x', 'y']]) == {('j', 'z', 'wf'): 1, ('x',): 1, ('z', 'w'): 1, ('x', 'xx', 'y'): 1, ('x', 'y'): 2}", "assert unique_sublists([['dd', 'd', 'dd'], ['a', 'b'], ['c'], ['dd', 'd', 'dd'], ['e'], ['c'], ['ak', 'b'], ['dd', 'd', 'dd']]) == {('dd', 'd', 'dd'): 3, ('a', 'b'): 1, ('c',): 2, ('e',): 1, ('ak', 'b'): 1}", "assert unique_sublists([['a', 'b', 'c', 'd', 'e', 'f', 'g'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'e'], ['a', 'b'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b']]) == {('a', 'b', 'c', 'd', 'e', 'f', 'g'): 1, ('g', 'f', 'e', 'd', 'c', 'b', 'a', 'e'): 1, ('a', 'b'): 4, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 2}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'pear', 'cherry'], ['apae', 'bganana', 'pear', 'cherry'], ['apple', 'banana', 'cherry'], ['apae', 'bganana', 'pear', 'cherry']]) == {('apple', 'banana', 'cherry'): 3, ('apple', 'pear'): 2, ('apple', 'banana'): 1, ('apae', 'bganana', 'pear', 'cherry'): 3}", "assert unique_sublists([[6, 2], [6, 2], [6, 2], [2, 3], [1, 2, 3], [6, 2], [2, 3]]) == {(6, 2): 4, (2, 3): 2, (1, 2, 3): 1}", "assert unique_sublists([['a', 'b'], ['c'], ['d'], ['e'], ['f', 'c'], ['a', 'b'], ['e']]) == {('a', 'b'): 2, ('c',): 1, ('d',): 1, ('e',): 2, ('f', 'c'): 1}", "assert unique_sublists([['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['a', 'b'], ['a', 'b'], ['g', 'f', 'e', 'd', 'c', 'b', 'a', 'c'], ['h', 'i', 'wf', 'j', 'k'], ['g', 'f', 'e', 'd', 'c', 'b', 'a'], ['h', 'i', 'wf', 'j', 'k']]) == {('a', 'b'): 3, ('g', 'f', 'e', 'd', 'c', 'b', 'a'): 2, ('g', 'f', 'e', 'd', 'c', 'b', 'a', 'c'): 1, ('h', 'i', 'wf', 'j', 'k'): 2}", "assert unique_sublists([['x', 'w', 'xx', 'y'], ['z', 'wf'], ['g', 'x'], ['k', 'z', 'w'], ['x', 'w', 'xx', 'y'], ['x', 'w', 'xx', 'y'], ['x', 'y'], ['x', 'w', 'xx', 'y']]) == {('x', 'w', 'xx', 'y'): 4, ('z', 'wf'): 1, ('g', 'x'): 1, ('k', 'z', 'w'): 1, ('x', 'y'): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'pear'], ['apple', 'banana'], ['apple', 'banana'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'pear', 'cherry'], ['apae', 'bganana', 'pear', 'cherry'], ['apple', 'banana', 'cherry'], ['apae', 'bganana', 'pear', 'cherry']]) == {('apple', 'banana', 'cherry'): 2, ('apple', 'pear'): 2, ('apple', 'banana'): 3, ('apae', 'bganana', 'pear', 'cherry'): 3}", "assert unique_sublists([[5, 1, 2], [2, 1, 3], [5, 1, 2], [2, 10], [1, 3], [1, 3], [2, 10], [2, 10]]) == {(5, 1, 2): 2, (2, 1, 3): 1, (2, 10): 3, (1, 3): 2}", "assert unique_sublists([['x', 'y', 'y'], ['z', 'w'], ['x', 'y']]) == {('x', 'y', 'y'): 1, ('z', 'w'): 1, ('x', 'y'): 1}", "assert unique_sublists([['apple', 'banana', 'cherry'], ['apple', 'adpple', 'pear'], ['apple', 'adpple', 'pear'], ['apple', 'banana', 'cherry'], ['apple', 'banana'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apae', 'bganana', 'cherry'], ['apple', 'banana', 'ae', 'cherry'], ['apple', 'pear'], ['apae', 'bganana', 'cherry'], ['apple', 'pear']]) == {('apple', 'banana', 'cherry'): 2, ('apple', 'adpple', 'pear'): 2, ('apple', 'banana'): 1, ('apple', 'pear'): 3, ('apae', 'bganana', 'cherry'): 3, ('apple', 'banana', 'ae', 'cherry'): 1}", "assert unique_sublists([['x', 'y'], ['z', 'w'], ['x', 'y'], ['z', 'w'], ['a', 'y'], ['a', 'y'], ['z', 'w'], ['z', 'w'], ['x', 'y']]) == {('x', 'y'): 3, ('z', 'w'): 4, ('a', 'y'): 2}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether a given string is a decimal number with a precision of 2.\nassert is_decimal('123.11')==True\nYour code should pass the test:\nassert is_decimal('123.11')==True", "test_list": [ "assert is_decimal('123.11')==True", "assert is_decimal('e666.86')==False", "assert is_decimal('3.124587')==False", "assert is_decimal('1.11')==True", "assert is_decimal('1.1.11')==False", "assert is_decimal('1..2') == False", "assert is_decimal('1.1$') == False", "assert is_decimal('123.1111') == False", "assert is_decimal('-123.11') == False", "assert is_decimal(' 123.11 ') == False", "assert is_decimal('') == False", "assert is_decimal('123') == True", "assert is_decimal('.') == False", "assert is_decimal('$123.11') == False", "assert is_decimal('1.1.1') == False", "assert is_decimal('123.11') == True", "assert is_decimal('1231.1111') == False", "assert is_decimal('1..21..2') == False", "assert is_decimal('13.1123$') == False", "assert is_decimal('-1123.11') == False", "assert is_decimal('TDH') == False", "assert is_decimal('-1123.11123.11') == False", "assert is_decimal('1..21.1.1') == False", "assert is_decimal('123. 123.11 1') == False", "assert is_decimal('11') == True", "assert is_decimal('13.11$23$') == False", "assert is_decimal('TD') == False", "assert is_decimal('$12.11') == False", "assert is_decimal('..') == False", "assert is_decimal('$123.1..21.1.111') == False", "assert is_decimal('$1123. 123.11 123.11') == False", "assert is_decimal('123.') == False", "assert is_decimal('1323.1.1.1') == False", "assert is_decimal('KehoROOXec') == False", "assert is_decimal('-123.113.11$23$1') == False", "assert is_decimal('13.123$') == False", "assert is_decimal('$.12.11') == False", "assert is_decimal('-3.11') == False", "assert is_decimal('$123.111..21.1.111') == False", "assert is_decimal('123.1.1$11') == False", "assert is_decimal('TTDH') == False", "assert is_decimal('...') == False", "assert is_decimal('13.11$1123. 123.11 123.113$') == False", "assert is_decimal('-123.113.11$1') == False", "assert is_decimal('$1123.') == False", "assert is_decimal('1123.1123.1111') == False", "assert is_decimal('1123.1123.11111231.1111') == False", "assert is_decimal('1.11$') == False", "assert is_decimal('1233.') == False", "assert is_decimal('1231') == True", "assert is_decimal('T..D') == False", "assert is_decimal('1.. 11 123.11 2') == False", "assert is_decimal('1..') == False", "assert is_decimal('1323.1TD.1.1') == False", "assert is_decimal('$-123.113.11$11123.') == False", "assert is_decimal('KehoROOXec1h.1.1') == False", "assert is_decimal('-1123.11123.121') == False", "assert is_decimal('TD$123.11') == False", "assert is_decimal('-123. 123.11 1123.111') == False", "assert is_decimal('1.1..') == False", "assert is_decimal('KehoROOXe.c1h.1.1') == False", "assert is_decimal('TD1231') == False", "assert is_decimal('13123.1.1.1') == False", "assert is_decimal('1123.1123.11111231.13.11$1123. 123.11 123.113$1111') == False", "assert is_decimal('13.123-3.11$') == False", "assert is_decimal('$1123. . 123.11 123.11') == False", "assert is_decimal('123. 123.11 TD$123.11 2 1') == False", "assert is_decimal('13123.13.1.1') == False", "assert is_decimal('.....') == False", "assert is_decimal(' 123.-123.1111 ') == False", "assert is_decimal('123. 123.11 TD $123.11 2 1') == False", "assert is_decimal('13.1123-3.11$') == False", "assert is_decimal('131..3-3.11$') == False", "assert is_decimal('131..3-3.113.123-3.11$1$') == False", "assert is_decimal('o') == False", "assert is_decimal('123. 123.11 1.') == False", "assert is_decimal('1.') == False", "assert is_decimal('12123. 123.11 13.1.1$11') == False", "assert is_decimal('1231.1.. 11 123.11 21111') == False", "assert is_decimal('TD-1123.1112...3.11') == False", "assert is_decimal('123-123. 123.11 1123.111') == False", "assert is_decimal('1.111$') == False", "assert is_decimal('1123.11123.11111231.13.11$1123. 123.11 123.113$1111') == False", "assert is_decimal('13.1.1$11') == False", "assert is_decimal('12311') == True", "assert is_decimal('12123. 13123.1.1.1 123.11 13.1.1$11') == False", "assert is_decimal('1231.1.. 11 123.11 -123.113.11$23$1 21111') == False", "assert is_decimal('$11233.121') == False", "assert is_decimal('T') == False", "assert is_decimal('1123.11123.11111231.13.113.') == False", "assert is_decimal('1.1') == True", "assert is_decimal('1') == True", "assert is_decimal('VJ') == False", "assert is_decimal('21111') == True", "assert is_decimal('13.11$1123. 121123.11123.11111231.13.11$1123.3.11 123.113$') == False", "assert is_decimal('-1123.111') == False", "assert is_decimal('1123.111231.1111') == False", "assert is_decimal('12-1123.11123.') == False", "assert is_decimal('-123. 1123.111') == False", "assert is_decimal('13.11$1123. 121123.11123.11111231.13.11$1123.3.11 123.1112313$') == False", "assert is_decimal('T3D-1123.1112...3.11') == False", "assert is_decimal('123.11123313$') == False", "assert is_decimal('13.1.131..3-3.113.123-3.11$1$1$11') == False", "assert is_decimal('1$123.11323.1.1.1') == False", "assert is_decimal('1231.1.. 11 123. 11 21111') == False", "assert is_decimal('1123-123. ') == False", "assert is_decimal('123.13111') == False", "assert is_decimal('131..3-3.1TD$123.11$') == False", "assert is_decimal('-1123.11123.11111231.13.11$1123. 123.11 123.113$1111.11') == False", "assert is_decimal('1KehoROOXec') == False", "assert is_decimal('12123. 1231.1.. 11 123. 11 21111') == False", "assert is_decimal('TD-1123.1131..3-3.1TD$123.11$112...3.11') == False", "assert is_decimal('1231.11111') == False", "assert is_decimal('1$123.113223.1.1.$12.11') == False", "assert is_decimal(' 1-123.113.11$23$123.11 ') == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether a list of numbers contains only one distinct element or not.\nassert unique_Element([1,1,1]) == True\nYour code should pass the test:\nassert unique_Element([1,1,1]) == True", "test_list": [ "assert unique_Element([1,1,1]) == True", "assert unique_Element([1,2,1,2]) == False", "assert unique_Element([1,2,3,4,5]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 1, 2, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == False", "assert unique_Element([1, 1, 1, 1, 1, 2, 2, 2, 2, 2]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 2, 3, 4, 5]) == False", "assert unique_Element([1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3]) == False", "assert unique_Element([1, 3, 1, 1, 1, 2, 2, 2, 2]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 1, 2, 10, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 1, 3, 4, 5, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 2, 5, 3, 4, 5]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 2, 3, 4, 5, 4]) == False", "assert unique_Element([1, 2, 3, 4, 5, 7, 2, 3, 4, 5, 4]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 1, 1, 2, 10, 5]) == False", "assert unique_Element([1, 1, 1, 5, 1, 1, 1, 1, 2, 10, 1]) == False", "assert unique_Element([4, 1, 2, 3, 4, 7, 2, 3, 4, 5, 4]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 1, 1, 3, 4, 5, 1]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 1, 2, 10, 1]) == False", "assert unique_Element([1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3]) == False", "assert unique_Element([1, 2, 3, 4, 5, 3, 4, 5, 4, 4]) == False", "assert unique_Element([1, 2, 3, 4, 1, 2, 3, 4]) == False", "assert unique_Element([1, 2, 3, 4, 1, 3, 4]) == False", "assert unique_Element([1, 2, 3, 5, 1, 1, 1, 3, 4, 5, 1]) == False", "assert unique_Element([1, 2, 3, 5, 1, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 0, 1, 2, 1]) == False", "assert unique_Element([1, 1, 2, 3, 5, 1, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([9, 2, 3, 5, 1, 0, 1, 1, 3, 4, 5, 1]) == False", "assert unique_Element([1, 3, 1, 1, 1, 2, 2, 2]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 1, 3, 5, 1]) == False", "assert unique_Element([1, 1, 1, 1, 2, 2, 2, 2, 2]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 2, 10, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 4, 1, 3, 1, 5, 1, 1]) == False", "assert unique_Element([1, 2, 3, 0, 5, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 6, 7, 9, 10]) == False", "assert unique_Element([1, 2, 3, 4, 1, 2, 3, 4, 1]) == False", "assert unique_Element([1, 1, 1, 1, 3, 1, 1, 1, 1, 2, 5]) == False", "assert unique_Element([1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 2]) == False", "assert unique_Element([1, 1, 2, 3, 4, 5, 3, 4, 5, 4, 4, 4]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 2, 3, 1, 0, 5, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 7, 2, 3, 0, 5, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 1, 2, 3, 5, 1, 1, 1, 3, 4, 5, 1, 1, 5]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 2, 10, 1, 4]) == False", "assert unique_Element([1, 2, 3, 5, 1, 1, 1, 3, 4, 2, 5, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 4, 1, 3, 1, 1, 1, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 2, 3, 4, 3, 5]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 1, 3, 4, 5, 1, 1, 3]) == False", "assert unique_Element([1, 2, 4, 5, 6, 7, 9, 10]) == False", "assert unique_Element([1, 5, 1, 4, 2, 5, 1, 1, 1, 0, 2, 10, 1, 4]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 2, 3, 5, 4]) == False", "assert unique_Element([1, 1, 1, 0, 1, 1, 1, 1, 2, 10, 1]) == False", "assert unique_Element([1, 1, 1, 0, 1, 1, 1, 1, 2, 10, 1, 1]) == False", "assert unique_Element([1, 2, 3, 1, 3, 4]) == False", "assert unique_Element([1, 2, 3, 5, 1, 1, 1, 4, 2, 5, 1, 5]) == False", "assert unique_Element([1, 2, 3, 4, 5, 7, 2, 3, 4, 5, 4, 4]) == False", "assert unique_Element([1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 2, 1]) == False", "assert unique_Element([1, 2, 3, 5, 1, 1, 1, 3, 4, 2, 5, 1, 1]) == False", "assert unique_Element([3, 2, 3, 4, 5, 7, 2, 3, 4, 5, 5, 4]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 0, 1, 1]) == False", "assert unique_Element([1, 2, 3, 2, 5, 1, 2, 3, 5, 4]) == False", "assert unique_Element([2, 3, 4, 5, 1, 2, 5, 3, 4, 5]) == False", "assert unique_Element([1, 1, 2, 3, 4, 5, 4, 5, 4, 4, 4]) == False", "assert unique_Element([1, 1, 2, 3, 4, 4, 5, 4, 4, 4, 4, 4]) == False", "assert unique_Element([1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 2, 2]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 2, 10, 1, 5]) == False", "assert unique_Element([1, 1, 2, 3, 4, 5, 5, 4, 4, 4, 1]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 2, 2, 2, 2]) == False", "assert unique_Element([1, 2, 4, 3, 4, 5, 1, 2, 3, 4, 5]) == False", "assert unique_Element([1, 3, 2, 3, 5, 1, 1, 1, 2, 5, 1, 2]) == False", "assert unique_Element([1, 2, 3, 4, 1, 2, 3, 4, 5, 5]) == False", "assert unique_Element([1, 2, 3, 0, 2, 5, 1, 2, 3, 5, 4]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 1, 3, 4, 5, 1, 1, 1]) == False", "assert unique_Element([1, 1, 3, 4, 4, 5, 4, 4, 4, 5, 4, 4]) == False", "assert unique_Element([1, 2, 3, 5, 1, 1, 1, 3, 4, 5, 1, 1, 1]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 2, 10, 1, 1, 10]) == False", "assert unique_Element([2, 3, 1, 0, 5, 1, 1, 3, 4, 5, 1, 1, 3, 1]) == False", "assert unique_Element([1, 1, 2, 3, 4, 4, 5, 4, 5, 5, 4, 4, 4]) == False", "assert unique_Element([1, 1, 1, 1, 1, 3, 0, 2, 10, 1]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 0, 0, 2, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 2, 3, 5]) == False", "assert unique_Element([1, 1, 2, 3, 4, 4, 5, 5, 4, 4, 4, 4]) == False", "assert unique_Element([1, 1, 2, 2, 8, 4, 4, 10, 5, 4, 4, 4, 4]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 0, 0, 1, 2, 1]) == False", "assert unique_Element([1, 2, 3, 4, 5, 1, 3, 4, 5]) == False", "assert unique_Element([1, 3, 0, 2, 5, 1, 2, 3, 5, 4]) == False", "assert unique_Element([1, 2, 2, 3, 4, 5, 1, 1, 1, 3, 4, 5, 1]) == False", "assert unique_Element([1, 1, 1, 1, 1, 1, 2, 2, 2]) == False", "assert unique_Element([1, 3, 10, 3, 5, 1, 1, 1, 2, 5, 1, 3, 2]) == False", "assert unique_Element([1, 2, 2, 3, 4, 5, 5, 1, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 2, 3, 4, 1, 2, 5, 3, 4, 5, 5]) == False", "assert unique_Element([1, 2, 3, 4, 5, 6, 1, 7, 9, 10]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 2, 2, 10, 1, 5]) == False", "assert unique_Element([1, 2, 3, 4, 5, 7, 2, 3, 4, 5, 4, 2]) == False", "assert unique_Element([1, 7, 2, 3, 0, 5, 1, 1, 10, 3, 4, 5, 1, 1]) == False", "assert unique_Element([2, 3, 4, 5, 1, 2, 6, 5, 3, 4, 5]) == False", "assert unique_Element([1, 3, 0, 1, 5, 1, 2, 3, 5, 4]) == False", "assert unique_Element([1, 7, 2, 3, 0, 5, 1, 1, 10, 3, 4, 5, 1, 1, 5]) == False", "assert unique_Element([1, 3, 0, 1, 5, 1, 2, 3, 5, 4, 2]) == False", "assert unique_Element([1, 2, 3, 4, 5, 2, 1, 1, 3, 4, 5, 1, 1]) == False", "assert unique_Element([1, 1, 2, 5, 1, 1, 1, 0, 2, 10, 1, 1]) == False", "assert unique_Element([3, 0, 1, 5, 1, 2, 3, 5, 4]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 2, 10, 1, 1, 10, 1]) == False", "assert unique_Element([1, 1, 2, 3, 4, 4, 5, 4, 4, 4, 4, 4, 2]) == False", "assert unique_Element([1, 2, 3, 4, 5, 7, 2, 3, 4, 5, 4, 2, 2]) == False", "assert unique_Element([4, 1, 2, 4, 7, 2, 3, 4, 5, 4]) == False", "assert unique_Element([1, 1, 4, 2, 5, 1, 1, 1, 0, 7, 10, 1, 4, 2, 2]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given month number contains 30 days or not. Months are given as number from 1 to 12.\nassert check_monthnumber_number(6)==True\nYour code should pass the test:\nassert check_monthnumber_number(6)==True", "test_list": [ "assert check_monthnumber_number(6)==True", "assert check_monthnumber_number(2)==False", "assert check_monthnumber_number(12)==False", "assert check_monthnumber_number(1) == False", "assert check_monthnumber_number(True) == False", "assert check_monthnumber_number(3) == False", "assert check_monthnumber_number(2) == False", "assert check_monthnumber_number(4) == True", "assert check_monthnumber_number(5) == False", "assert check_monthnumber_number(6) == True", "assert check_monthnumber_number(7) == False", "assert check_monthnumber_number(9) == True", "assert check_monthnumber_number(10) == False", "assert check_monthnumber_number(8) == False", "assert check_monthnumber_number(11) == True", "assert check_monthnumber_number(12) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the minimum difference between any two elements in a given array. \nassert find_min_diff((1,5,3,19,18,25),6) == 1\nYour code should pass the test:\nassert find_min_diff((1,5,3,19,18,25),6) == 1", "test_list": [ "assert find_min_diff((1,5,3,19,18,25),6) == 1", "assert find_min_diff((4,3,2,6),4) == 1", "assert find_min_diff((30,5,20,9),4) == 4", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 37, 22, 28, 11, 25), 12) == 1", "assert find_min_diff((15, 12, 20, 29, 8, 4, 19, 37, 22, 28, 11, 25), 12) == 1", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 28, 11, 25), 12) == 1", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 11, 4, 18, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 30, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 30, 22, 28, 11, 25, 22), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 11, 4, 18, 37, 22, 28, 11, 26), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 28, 11, 25, 22), 13) == 0", "assert find_min_diff((15, 12, 31, 30, 8, 4, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 31, 11, 25, 22), 13) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 20, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 11, 4, 19, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 30, 22, 28, 11, 26, 22), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 38, 22, 31, 11, 25, 22), 13) == 0", "assert find_min_diff((15, 12, 20, 18, 8, 20, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 30, 20, 30, 8, 4, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 36, 22, 28, 11, 25), 12) == 1", "assert find_min_diff((15, 15, 20, 29, 11, 4, 19, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 30, 8, 4, 19, 37, 22, 3, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 12, 20, 29, 11, 4, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 26, 20, 30, 8, 4, 30, 22, 28, 11, 25, 22), 12) == 0", "assert find_min_diff((15, 30, 20, 30, 8, 4, 29, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 11, 5, 18, 37, 22, 28, 11, 26), 12) == 0", "assert find_min_diff((15, 30, 20, 30, 8, 4, 19, 37, 22, 36, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 28, 20, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 20, 19, 37, 22, 28, 11, 37, 8), 13) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 28, 9, 11, 25), 13) == 1", "assert find_min_diff((9, 15, 20, 29, 11, 4, 19, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 13, 11, 4, 18, 37, 22, 28, 11, 26), 12) == 0", "assert find_min_diff((15, 12, 31, 20, 8, 4, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 21, 31, 11, 25, 22), 13) == 1", "assert find_min_diff((15, 12, 21, 18, 8, 20, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 11, 4, 19, 37, 22, 28, 11, 25), 11) == 0", "assert find_min_diff((28, 12, 20, 29, 8, 4, 18, 37, 22, 28, 20, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 12, 4, 18, 37, 22, 31, 11, 25, 22), 13) == 0", "assert find_min_diff((15, 12, 20, 29, 12, 4, 18, 37, 22, 4, 11, 25, 22), 13) == 0", "assert find_min_diff((15, 12, 20, 18, 8, 20, 19, 37, 22, 28, 11, 20), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 36, 22, 11, 11, 25), 12) == 0", "assert find_min_diff((15, 23, 12, 20, 29, 8, 4, 18, 37, 22, 28, 11, 25, 22), 14) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 38, 22, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 36, 22, 11, 11, 23), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 36, 22, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 12, 20, 30, 8, 4, 12, 36, 22, 11, 11, 23), 12) == 0", "assert find_min_diff((14, 12, 20, 29, 11, 4, 18, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 30, 8, 4, 19, 38, 22, 3, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 12, 20, 30, 8, 4, 18, 30, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((9, 30, 15, 20, 29, 11, 4, 19, 37, 22, 28, 11, 25), 13) == 0", "assert find_min_diff((15, 12, 29, 8, 4, 19, 38, 22, 3, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 23, 12, 20, 29, 8, 4, 18, 37, 4, 22, 28, 11, 25, 22), 15) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 30, 22, 28, 14, 25, 22), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 11, 5, 18, 37, 22, 28, 29, 11, 26), 13) == 0", "assert find_min_diff((15, 12, 14, 30, 8, 4, 19, 38, 22, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 12, 20, 29, 11, 4, 18, 37, 22, 29, 11, 26), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 18, 30, 22, 28, 11, 26), 12) == 0", "assert find_min_diff((15, 12, 20, 28, 11, 4, 18, 37, 22, 29, 11, 26), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 28, 11, 25, 37), 13) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 30, 5, 28, 11, 26, 22), 12) == 0", "assert find_min_diff((37, 12, 12, 20, 29, 11, 4, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((28, 12, 20, 29, 8, 4, 18, 37, 22, 27, 20, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 3, 8, 4, 30, 22, 28, 11, 26, 22), 12) == 0", "assert find_min_diff((15, 12, 20, 28, 11, 4, 18, 37, 22, 29, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 5, 11, 25, 37), 13) == 0", "assert find_min_diff((15, 12, 29, 8, 5, 19, 38, 22, 3, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 12, 20, 29, 10, 4, 19, 37, 22, 28, 11, 25), 12) == 1", "assert find_min_diff((37, 12, 12, 20, 29, 37, 4, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 8, 4, 19, 30, 25, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 20, 29, 12, 4, 18, 37, 22, 4, 11, 25, 22), 12) == 0", "assert find_min_diff((15, 12, 12, 20, 29, 11, 5, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 3, 20, 30, 11, 5, 18, 37, 22, 28, 11, 26), 12) == 0", "assert find_min_diff((15, 15, 20, 29, 11, 4, 18, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 30, 20, 19, 37, 22, 28, 11, 37, 11), 12) == 0", "assert find_min_diff((25, 15, 20, 29, 11, 4, 19, 37, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((28, 12, 20, 29, 8, 4, 18, 30, 22, 28, 20, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 9, 4, 18, 37, 22, 28, 9, 11, 25), 13) == 0", "assert find_min_diff((5, 12, 20, 30, 8, 20, 19, 37, 22, 28, 11, 37), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 4, 18, 37, 22, 28, 5, 25, 22, 22), 14) == 0", "assert find_min_diff((15, 12, 20, 29, 8, 18, 18, 37, 22, 28, 11, 25, 22), 13) == 0", "assert find_min_diff((15, 15, 20, 29, 11, 4, 18, 18, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((28, 29, 20, 29, 8, 4, 18, 37, 22, 27, 20, 25), 12) == 0", "assert find_min_diff((15, 12, 20, 29, 12, 4, 18, 37, 22, 30, 11, 25, 26), 13) == 0", "assert find_min_diff((11, 12, 20, 30, 8, 4, 18, 30, 22, 28, 11, 25), 12) == 0", "assert find_min_diff((37, 12, 12, 20, 29, 10, 4, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 15, 20, 29, 11, 4, 18, 37, 22, 28, 14, 25), 12) == 0", "assert find_min_diff((15, 12, 31, 20, 8, 4, 19, 37, 22, 28, 12, 37), 12) == 0", "assert find_min_diff((9, 30, 15, 20, 29, 11, 4, 19, 37, 22, 28, 11, 24), 13) == 0", "assert find_min_diff((37, 12, 12, 20, 29, 10, 4, 18, 38, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 30, 30, 8, 4, 29, 37, 22, 28, 11, 37, 37), 12) == 0", "assert find_min_diff((37, 12, 12, 20, 29, 37, 4, 13, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((26, 12, 20, 29, 8, 4, 19, 37, 22, 28, 11, 25), 12) == 1", "assert find_min_diff((37, 12, 12, 20, 29, 25, 10, 4, 18, 37, 22, 28, 25), 13) == 0", "assert find_min_diff((15, 12, 20, 29, 9, 4, 18, 38, 22, 28, 9, 11, 25), 13) == 0", "assert find_min_diff((9, 30, 15, 20, 29, 11, 4, 19, 37, 22, 28, 11, 24, 11), 14) == 0", "assert find_min_diff((15, 12, 29, 9, 4, 19, 38, 22, 3, 28, 11, 37), 12) == 1", "assert find_min_diff((15, 12, 20, 4, 8, 4, 30, 22, 28, 11, 26, 22), 12) == 0", "assert find_min_diff((15, 12, 36, 30, 11, 5, 18, 37, 22, 28, 29, 11, 26), 13) == 0", "assert find_min_diff((15, 37, 12, 20, 30, 8, 20, 19, 37, 22, 28, 11, 37, 8), 14) == 0", "assert find_min_diff((37, 22, 12, 20, 29, 10, 4, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 23, 27, 20, 29, 8, 4, 18, 37, 4, 22, 28, 11, 25, 22), 15) == 0", "assert find_min_diff((37, 12, 12, 20, 29, 37, 9, 18, 37, 22, 28, 25), 12) == 0", "assert find_min_diff((15, 12, 29, 12, 4, 19, 38, 22, 3, 28, 11, 37), 12) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count number of digits in a given string.\nassert number_ctr('program2bedone') == 1\nYour code should pass the test:\nassert number_ctr('program2bedone') == 1", "test_list": [ "assert number_ctr('program2bedone') == 1", "assert number_ctr('3wonders') == 1", "assert number_ctr('123') == 3", "assert number_ctr('3wond-1ers2') == 3", "assert number_ctr('') == 0", "assert number_ctr('hello world') == 0", "assert number_ctr('1234567890') == 10", "assert number_ctr('1 2 3') == 3", "assert number_ctr(' ') == 0", "assert number_ctr('12 2 3') == 4", "assert number_ctr('hello 12 2 3world') == 4", "assert number_ctr('lhello world') == 0", "assert number_ctr('12 2 3') == 4", "assert number_ctr('lhello') == 0", "assert number_ctr('1 22 3') == 4", "assert number_ctr('22') == 2", "assert number_ctr('1 2 3lhello') == 3", "assert number_ctr('hello 12 2 olrld') == 3", "assert number_ctr('lhell3lhelloo world') == 1", "assert number_ctr('3') == 1", "assert number_ctr('1 22 322') == 6", "assert number_ctr('helhello 12 2 olrldlo world') == 3", "assert number_ctr('hello') == 0", "assert number_ctr('1lhell3lhelloo 22 3') == 5", "assert number_ctr('3world') == 1", "assert number_ctr('12 22 322') == 7", "assert number_ctr('2222') == 4", "assert number_ctr('1 22 3212') == 7", "assert number_ctr('hello 12 2 olrlld') == 3", "assert number_ctr('world') == 0", "assert number_ctr('1 22 13212') == 8", "assert number_ctr('112 2 3') == 5", "assert number_ctr('1lhell3lhell oo 22 3') == 5", "assert number_ctr('322') == 3", "assert number_ctr('helhello 12 2 olrldlo worldolrlld') == 3", "assert number_ctr(' olrldlo ') == 0", "assert number_ctr('112') == 3", "assert number_ctr('olrlld') == 0", "assert number_ctr('12') == 2", "assert number_ctr('olrld') == 0", "assert number_ctr('1 2 2 3') == 4", "assert number_ctr(' ') == 0", "assert number_ctr('oo') == 0", "assert number_ctr('122 3') == 4", "assert number_ctr('112 2 32233world') == 9", "assert number_ctr('1 2 3lheworldllo') == 3", "assert number_ctr('olrldlo') == 0", "assert number_ctr('olr') == 0", "assert number_ctr('hello 12 2 olrlld2222') == 7", "assert number_ctr('hello 12l 2 olrld') == 3", "assert number_ctr('old') == 0", "assert number_ctr('lhello worlolrlld222o2d') == 4", "assert number_ctr('1lhell3lhell') == 2", "assert number_ctr('wold') == 0", "assert number_ctr('22122 3') == 6", "assert number_ctr('ooo') == 0", "assert number_ctr('lhewll3lhelloo world') == 1", "assert number_ctr('1hello 12l 2 olrld 23 3') == 7", "assert number_ctr('olrlld2222') == 4", "assert number_ctr('1lhell3l13212hell') == 7", "assert number_ctr('13212lhell3lhellolo') == 6", "assert number_ctr('1 22 31 2 3212') == 10", "assert number_ctr('rw') == 0", "assert number_ctr('lhello122 3') == 4", "assert number_ctr(' ') == 0", "assert number_ctr('ollrlld2222') == 4", "assert number_ctr('1 22 33') == 5", "assert number_ctr('1123') == 4", "assert number_ctr('3lhello1234567890') == 11", "assert number_ctr('31') == 2", "assert number_ctr('1lhell3lhelloo 222 3') == 6", "assert number_ctr('helhello') == 0", "assert number_ctr('bNEygn') == 0", "assert number_ctr('2lhell3lhelloo22') == 4", "assert number_ctr(' ') == 0", "assert number_ctr('lhell3lhelloo weorld') == 1", "assert number_ctr('12 2 122 33') == 8", "assert number_ctr('1 22') == 3", "assert number_ctr('12 2 122 233') == 9", "assert number_ctr('123') == 3", "assert number_ctr(' olrlld') == 0", "assert number_ctr('lhell3lhelloollo') == 1", "assert number_ctr('helhelllo') == 0", "assert number_ctr('233') == 3", "assert number_ctr('222') == 3", "assert number_ctr('12 2 122lhewll3lhelloo worldlhell3lhelloo 33') == 10", "assert number_ctr('3w12 2 122 33orld') == 9", "assert number_ctr('1l12 2 32 122lhewll3lhelloo worldlhell3lhelloo 33l oo 22 3') == 16", "assert number_ctr('1 32222 3212') == 10", "assert number_ctr('3lheworldllo') == 1", "assert number_ctr('lhdello worlolrlld222o2d') == 4", "assert number_ctr('122') == 3", "assert number_ctr('1l12 2 32 122lhewll3lhellloo worldlhell3lhelloo 33l oo 22 3') == 16", "assert number_ctr('31hello 12 2 olrlld2222') == 9", "assert number_ctr('1 22') == 3", "assert number_ctr('1l12') == 3", "assert number_ctr('worldolrlld') == 0", "assert number_ctr('hell3lhello1234567890o2222') == 15", "assert number_ctr('olrlld22d22') == 4", "assert number_ctr('3wold') == 1", "assert number_ctr('22122') == 5", "assert number_ctr('ollrll12 2 122 233d2222') == 13", "assert number_ctr('3123') == 4", "assert number_ctr('122 2 3') == 5", "assert number_ctr('1l12 2 3e2 122lhewll3lhellloo wohello 12l3lhelloo 33l oo 22 3') == 18", "assert number_ctr('hell3lhello1234567890o22223') == 16", "assert number_ctr('12 lhello1222 3') == 7", "assert number_ctr('hello 12 2 orld') == 3", "assert number_ctr('wworld') == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find nth polite number. geeksforgeeks.org/n-th-polite-number/\nassert is_polite(7) == 11\nYour code should pass the test:\nassert is_polite(7) == 11", "test_list": [ "assert is_polite(7) == 11", "assert is_polite(4) == 7", "assert is_polite(9) == 13" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to return a list of all pairs of consecutive items in a given list.\nassert pair_wise([1,1,2,3,3,4,4,5])==[(1, 1), (1, 2), (2, 3), (3, 3), (3, 4), (4, 4), (4, 5)]\nYour code should pass the test:\nassert pair_wise([1,1,2,3,3,4,4,5])==[(1, 1), (1, 2), (2, 3), (3, 3), (3, 4), (4, 4), (4, 5)]", "test_list": [ "assert pair_wise([1,1,2,3,3,4,4,5])==[(1, 1), (1, 2), (2, 3), (3, 3), (3, 4), (4, 4), (4, 5)]", "assert pair_wise([1,5,7,9,10])==[(1, 5), (5, 7), (7, 9), (9, 10)]", "assert pair_wise([5,1,9,7,10])==[(5, 1), (1, 9), (9, 7), (7, 10)]", "assert pair_wise([1,2,3,4,5,6,7,8,9,10])==[(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7), (7, 8), (8, 9), (9, 10)]", "assert pair_wise([]) == []", "assert pair_wise([1]) == []", "assert pair_wise([1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6]) == [(1, 1), (1, 2), (2, 2), (2, 3), (3, 3), (3, 4), (4, 4), (4, 5), (5, 5), (5, 6), (6, 6)]", "assert pair_wise(['apple', 1, True, 2.5, [1, 2]]) == [('apple', 1), (1, True), (True, 2.5), (2.5, [1, 2])]", "assert pair_wise([10, 20, 30, 40, 50, 60, 70, 80, 90, 100]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 60), (60, 70), (70, 80), (80, 90), (90, 100)]", "assert pair_wise([5, 10, 15, 20, 25, 30, 35]) == [(5, 10), (10, 15), (15, 20), (20, 25), (25, 30), (30, 35)]", "assert pair_wise([2, 4, 8, 16, 32, 64, 128]) == [(2, 4), (4, 8), (8, 16), (16, 32), (32, 64), (64, 128)]", "assert pair_wise(['a', 'b', 'c', 'd', 'e', 'f', 'g']) == [('a', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'g')]", "assert pair_wise(['apple', 'banana', 'cherry', 'date', 'elderberry']) == [('apple', 'banana'), ('banana', 'cherry'), ('cherry', 'date'), ('date', 'elderberry')]", "assert pair_wise([1, 3, 5, 7, 9, 11, 13, 15, 17, 19]) == [(1, 3), (3, 5), (5, 7), (7, 9), (9, 11), (11, 13), (13, 15), (15, 17), (17, 19)]", "assert pair_wise([1, 2.5, 'hello', True, 3.14, 'world', False]) == [(1, 2.5), (2.5, 'hello'), ('hello', True), (True, 3.14), (3.14, 'world'), ('world', False)]", "assert pair_wise(['', 'c', 'B', 'vi', 'pAKb', 'c', 'EuUfCuweMj']) == [('', 'c'), ('c', 'B'), ('B', 'vi'), ('vi', 'pAKb'), ('pAKb', 'c'), ('c', 'EuUfCuweMj')]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True, False]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True), (True, False)]", "assert pair_wise(['a', 'b', 'c', 'd', 'e', 'f', 'g', 'a']) == [('a', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'g'), ('g', 'a')]", "assert pair_wise(['apple', 1, 3.14, 'appl', True, 2.5, [1, 2]]) == [('apple', 1), (1, 3.14), (3.14, 'appl'), ('appl', True), (True, 2.5), (2.5, [1, 2])]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True)]", "assert pair_wise(['date', 'b', 'c', 'd', 'e', 'f', 'g']) == [('date', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'g')]", "assert pair_wise(['date', 'b', 'c', 'd', 'ee', 'f', 'a', 'g']) == [('date', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'ee'), ('ee', 'f'), ('f', 'a'), ('a', 'g')]", "assert pair_wise(['c', 'B', 'vi', 'pAKb', 'c', 'EuUfCuweMj', 'c']) == [('c', 'B'), ('B', 'vi'), ('vi', 'pAKb'), ('pAKb', 'c'), ('c', 'EuUfCuweMj'), ('EuUfCuweMj', 'c')]", "assert pair_wise(['apple', 1, True, [1, 2]]) == [('apple', 1), (1, True), (True, [1, 2])]", "assert pair_wise([39.52616213203228, -64.78484107892933, 2.5, 3.14, -60.839277499671866, 3.14, 2.5, 83.06195985369447]) == [(39.52616213203228, -64.78484107892933), (-64.78484107892933, 2.5), (2.5, 3.14), (3.14, -60.839277499671866), (-60.839277499671866, 3.14), (3.14, 2.5), (2.5, 83.06195985369447)]", "assert pair_wise([10, 20, 30, 40, 50, 30, 70, 80, 90, 100]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 70), (70, 80), (80, 90), (90, 100)]", "assert pair_wise(['Mw', 'luttEB']) == [('Mw', 'luttEB')]", "assert pair_wise(['apple', 1, True, 2.5, [1, 2], 1]) == [('apple', 1), (1, True), (True, 2.5), (2.5, [1, 2]), ([1, 2], 1)]", "assert pair_wise([20, 30, 40, 50, 30, 100, 70, 80, 90, 100]) == [(20, 30), (30, 40), (40, 50), (50, 30), (30, 100), (100, 70), (70, 80), (80, 90), (90, 100)]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a']) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a')]", "assert pair_wise([2, 20, -69, 1, 48, 42, 30]) == [(2, 20), (20, -69), (-69, 1), (1, 48), (48, 42), (42, 30)]", "assert pair_wise(['date', 'b', 'c', 'd', 'ee', 'f', 'a', 'g', 'c']) == [('date', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'ee'), ('ee', 'f'), ('f', 'a'), ('a', 'g'), ('g', 'c')]", "assert pair_wise([-37, 17, 35, 19, 5, -69, 2, 40, 2]) == [(-37, 17), (17, 35), (35, 19), (19, 5), (5, -69), (-69, 2), (2, 40), (40, 2)]", "assert pair_wise(['apple', 1, True]) == [('apple', 1), (1, True)]", "assert pair_wise(['apple', 1]) == [('apple', 1)]", "assert pair_wise([1, 'hello', True, 3.14, 'world', False]) == [(1, 'hello'), ('hello', True), (True, 3.14), (3.14, 'world'), ('world', False)]", "assert pair_wise(['apple', 1, True, 2.5, [1, 2], [1, 2]]) == [('apple', 1), (1, True), (True, 2.5), (2.5, [1, 2]), ([1, 2], [1, 2])]", "assert pair_wise(['Mw', 'luttEB', 'luttEB']) == [('Mw', 'luttEB'), ('luttEB', 'luttEB')]", "assert pair_wise([False, False, None, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True]) == [(False, False), (False, None), (None, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True)]", "assert pair_wise(['apple', 1, True, 2.5]) == [('apple', 1), (1, True), (True, 2.5)]", "assert pair_wise([20, 30, 40, 50, 60, 70, 80, 90, 100]) == [(20, 30), (30, 40), (40, 50), (50, 60), (60, 70), (70, 80), (80, 90), (90, 100)]", "assert pair_wise(['luttEB', 'luttEB']) == [('luttEB', 'luttEB')]", "assert pair_wise(['YrFlQtkwMA', 'c', 'B', 'vi', 'pAKb', 'c', 'EuUfCuweMj']) == [('YrFlQtkwMA', 'c'), ('c', 'B'), ('B', 'vi'), ('vi', 'pAKb'), ('pAKb', 'c'), ('c', 'EuUfCuweMj')]", "assert pair_wise(['apple', 'banana', 'Mw', 'cherry', 'date', 'elderberry']) == [('apple', 'banana'), ('banana', 'Mw'), ('Mw', 'cherry'), ('cherry', 'date'), ('date', 'elderberry')]", "assert pair_wise([10, 20, 30, 40, 50, 30, 70, 80, 90, 100, 50]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 70), (70, 80), (80, 90), (90, 100), (100, 50)]", "assert pair_wise([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 3]) == [(1, 3), (3, 5), (5, 7), (7, 9), (9, 11), (11, 13), (13, 15), (15, 17), (17, 19), (19, 3)]", "assert pair_wise(['apple']) == []", "assert pair_wise([10, 20, 30, 40, 50, 30, 80, 90, 100]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 80), (80, 90), (90, 100)]", "assert pair_wise(['a', 'b', 'c', 'd', 'e', 'f', 'EuUfCuweMj', 'g']) == [('a', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'EuUfCuweMj'), ('EuUfCuweMj', 'g')]", "assert pair_wise([False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a']) == [(False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a')]", "assert pair_wise([5, 15, 20, 25, 30, 35]) == [(5, 15), (15, 20), (20, 25), (25, 30), (30, 35)]", "assert pair_wise(['apple', 'crherry', 'banana', 'cherry', 'cherry', 'b', 'date', 'elderberry']) == [('apple', 'crherry'), ('crherry', 'banana'), ('banana', 'cherry'), ('cherry', 'cherry'), ('cherry', 'b'), ('b', 'date'), ('date', 'elderberry')]", "assert pair_wise([0, 1]) == [(0, 1)]", "assert pair_wise(['applle', 'apple', 1]) == [('applle', 'apple'), ('apple', 1)]", "assert pair_wise([2, 20, -69, 1, 48, 42, 30, 20]) == [(2, 20), (20, -69), (-69, 1), (1, 48), (48, 42), (42, 30), (30, 20)]", "assert pair_wise([39.52616213203228, 2.5, 3.14, -60.839277499671866, 3.14, 2.5, 83.06195985369447]) == [(39.52616213203228, 2.5), (2.5, 3.14), (3.14, -60.839277499671866), (-60.839277499671866, 3.14), (3.14, 2.5), (2.5, 83.06195985369447)]", "assert pair_wise([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 3, 13]) == [(1, 3), (3, 5), (5, 7), (7, 9), (9, 11), (11, 13), (13, 15), (15, 17), (17, 19), (19, 3), (3, 13)]", "assert pair_wise([1, 'hello', 3.14, 'world', False]) == [(1, 'hello'), ('hello', 3.14), (3.14, 'world'), ('world', False)]", "assert pair_wise([10, 20, 30, 40, 50, 30, 80, 21, 100]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 80), (80, 21), (21, 100)]", "assert pair_wise(['', 'c', 'B', 'vi', 'pAKb', 'c', 'EuUfCuweMj', 'EuUfCuweMj']) == [('', 'c'), ('c', 'B'), ('B', 'vi'), ('vi', 'pAKb'), ('pAKb', 'c'), ('c', 'EuUfCuweMj'), ('EuUfCuweMj', 'EuUfCuweMj')]", "assert pair_wise(['applle', 1]) == [('applle', 1)]", "assert pair_wise([20, 30, 40, False, 99, 50, 60, 70, 80, 90, 100]) == [(20, 30), (30, 40), (40, False), (False, 99), (99, 50), (50, 60), (60, 70), (70, 80), (80, 90), (90, 100)]", "assert pair_wise([5, 10, 15, 20, 25, 30]) == [(5, 10), (10, 15), (15, 20), (20, 25), (25, 30)]", "assert pair_wise([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 19]) == [(1, 3), (3, 5), (5, 7), (7, 9), (9, 11), (11, 13), (13, 15), (15, 17), (17, 19), (19, 19)]", "assert pair_wise([False, False, False, True, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True]) == [(False, False), (False, False), (False, True), (True, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True)]", "assert pair_wise([10, 20, 30, 40, 50, 30, 80, 90, 100, 100]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 80), (80, 90), (90, 100), (100, 100)]", "assert pair_wise(['date', 'b', 'c', 'd', 'ee', 'f', 'a', 'g', 'ee']) == [('date', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'ee'), ('ee', 'f'), ('f', 'a'), ('a', 'g'), ('g', 'ee')]", "assert pair_wise(['UZHjhsX', 'b', 'Rf', 'pAKb', '', 'apple', 'pAKb', 'xubfwq', '', 'g']) == [('UZHjhsX', 'b'), ('b', 'Rf'), ('Rf', 'pAKb'), ('pAKb', ''), ('', 'apple'), ('apple', 'pAKb'), ('pAKb', 'xubfwq'), ('xubfwq', ''), ('', 'g')]", "assert pair_wise([False, False, None, False, True, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True]) == [(False, False), (False, None), (None, False), (False, True), (True, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True)]", "assert pair_wise([1, True, [1, 2]]) == [(1, True), (True, [1, 2])]", "assert pair_wise([2, 4, 8, 32, 32, 64, 128, 64]) == [(2, 4), (4, 8), (8, 32), (32, 32), (32, 64), (64, 128), (128, 64)]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True, False, False, False]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True), (True, False), (False, False), (False, False)]", "assert pair_wise(['apple', 'crherry', 'banana', 'cherry', 'cherry', 'date', 'elderberry']) == [('apple', 'crherry'), ('crherry', 'banana'), ('banana', 'cherry'), ('cherry', 'cherry'), ('cherry', 'date'), ('date', 'elderberry')]", "assert pair_wise(['appMw', 'crherry', 'banana', 'cherry', 'cherry', 'b', 'date', 'elderberry']) == [('appMw', 'crherry'), ('crherry', 'banana'), ('banana', 'cherry'), ('cherry', 'cherry'), ('cherry', 'b'), ('b', 'date'), ('date', 'elderberry')]", "assert pair_wise([1, True, [100, 2]]) == [(1, True), (True, [100, 2])]", "assert pair_wise(['', '', '', 'B', 'vi', 'pAKb', 'c', 'EuUfCuweMj']) == [('', ''), ('', ''), ('', 'B'), ('B', 'vi'), ('vi', 'pAKb'), ('pAKb', 'c'), ('c', 'EuUfCuweMj')]", "assert pair_wise([39.52616213203228, -64.78484107892933, 2.5, 3.9503308701348963, -60.839277499671866, 3.14, 2.5, 83.06195985369447]) == [(39.52616213203228, -64.78484107892933), (-64.78484107892933, 2.5), (2.5, 3.9503308701348963), (3.9503308701348963, -60.839277499671866), (-60.839277499671866, 3.14), (3.14, 2.5), (2.5, 83.06195985369447)]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True, False, False]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True), (True, False), (False, False)]", "assert pair_wise([10, 20, 30, 40, 51, 30, 80, 21, 100, 20]) == [(10, 20), (20, 30), (30, 40), (40, 51), (51, 30), (30, 80), (80, 21), (21, 100), (100, 20)]", "assert pair_wise(['', 'c', 'EuUfCuwe', 'B', 'vi', 'pAKb', 'c', 'EuUfCuweMj', 'EuUfCuweMj']) == [('', 'c'), ('c', 'EuUfCuwe'), ('EuUfCuwe', 'B'), ('B', 'vi'), ('vi', 'pAKb'), ('pAKb', 'c'), ('c', 'EuUfCuweMj'), ('EuUfCuweMj', 'EuUfCuweMj')]", "assert pair_wise([10, 30, 40, 50, 30, 80, 90, 100]) == [(10, 30), (30, 40), (40, 50), (50, 30), (30, 80), (80, 90), (90, 100)]", "assert pair_wise(['c', 'd', 'e', 'f', 'g', 'e']) == [('c', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'g'), ('g', 'e')]", "assert pair_wise(['c', 'apple', 1]) == [('c', 'apple'), ('apple', 1)]", "assert pair_wise([10, 20, 30, 40, 50, 30, 70, 80, 90, 100, 50, 40]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 70), (70, 80), (80, 90), (90, 100), (100, 50), (50, 40)]", "assert pair_wise([1, True, True, [100, 2]]) == [(1, True), (True, True), (True, [100, 2])]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', False, False, False, False]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', False), (False, False), (False, False), (False, False)]", "assert pair_wise([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 3, 13, 13]) == [(1, 3), (3, 5), (5, 7), (7, 9), (9, 11), (11, 13), (13, 15), (15, 17), (17, 19), (19, 3), (3, 13), (13, 13)]", "assert pair_wise(['apple', 'crherry', 'b', 'cherry', 'cherry', 'date', 'elderberry']) == [('apple', 'crherry'), ('crherry', 'b'), ('b', 'cherry'), ('cherry', 'cherry'), ('cherry', 'date'), ('date', 'elderberry')]", "assert pair_wise(['date', 'b', 'c', 'd', 'ee', 'f', 'a', 'g', 'c', 'c']) == [('date', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'ee'), ('ee', 'f'), ('f', 'a'), ('a', 'g'), ('g', 'c'), ('c', 'c')]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', True, False, False, False, False]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', True), (True, False), (False, False), (False, False), (False, False)]", "assert pair_wise(['date', 'd', 'b', 'd', 'e', 'f', 'g']) == [('date', 'd'), ('d', 'b'), ('b', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'g')]", "assert pair_wise(['apple', 'apluttEBple', 1]) == [('apple', 'apluttEBple'), ('apluttEBple', 1)]", "assert pair_wise(['date', 'd', 'b', 'd', 'e', 'f', 'g', 'd']) == [('date', 'd'), ('d', 'b'), ('b', 'd'), ('d', 'e'), ('e', 'f'), ('f', 'g'), ('g', 'd')]", "assert pair_wise(['appMw', 'crherry', 'banana', 'cherry', 'cherry', 'b', 'date', 'crherry']) == [('appMw', 'crherry'), ('crherry', 'banana'), ('banana', 'cherry'), ('cherry', 'cherry'), ('cherry', 'b'), ('b', 'date'), ('date', 'crherry')]", "assert pair_wise(['apple', 1, [1]]) == [('apple', 1), (1, [1])]", "assert pair_wise([10, 20, 30, 40, 30, 5, 80, 50, 90, 100]) == [(10, 20), (20, 30), (30, 40), (40, 30), (30, 5), (5, 80), (80, 50), (50, 90), (90, 100)]", "assert pair_wise(['apple', 'banana', 'cherry', 'date', 'elderberry', 'apple']) == [('apple', 'banana'), ('banana', 'cherry'), ('cherry', 'date'), ('date', 'elderberry'), ('elderberry', 'apple')]", "assert pair_wise(['apviple', 'apple']) == [('apviple', 'apple')]", "assert pair_wise([20, 30, 40, 50, 30, 128, 100, 70, 80, 90, 100, 30]) == [(20, 30), (30, 40), (40, 50), (50, 30), (30, 128), (128, 100), (100, 70), (70, 80), (80, 90), (90, 100), (100, 30)]", "assert pair_wise([1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 3, 9]) == [(1, 3), (3, 5), (5, 7), (7, 9), (9, 11), (11, 13), (13, 15), (15, 17), (17, 19), (19, 3), (3, 9)]", "assert pair_wise(['apple', 1, [1, 1]]) == [('apple', 1), (1, [1, 1])]", "assert pair_wise([False, False, False, True, None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True, 'a', False, False, False, False, False]) == [(False, False), (False, False), (False, True), (True, None), (None, {'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}), ({'3.14': 'apple', '2.5': 'YrFlQtkwMA', '-63.48479177576927': 'd'}, True), (True, 'a'), ('a', False), (False, False), (False, False), (False, False), (False, False)]", "assert pair_wise([1, True, [1, 2, 2], [1, 2], True]) == [(1, True), (True, [1, 2, 2]), ([1, 2, 2], [1, 2]), ([1, 2], True)]", "assert pair_wise([5, 10, 15, 20, 25, 35]) == [(5, 10), (10, 15), (15, 20), (20, 25), (25, 35)]", "assert pair_wise(['apluttEBple', 'aplluttEBple', 1]) == [('apluttEBple', 'aplluttEBple'), ('aplluttEBple', 1)]", "assert pair_wise(['apple', True, 2.5]) == [('apple', True), (True, 2.5)]", "assert pair_wise([5, 15, 20, 25, 35]) == [(5, 15), (15, 20), (20, 25), (25, 35)]", "assert pair_wise([10, 20, 30, 40, 50, 30, 70, 80, -69, 90, 100, 50]) == [(10, 20), (20, 30), (30, 40), (40, 50), (50, 30), (30, 70), (70, 80), (80, -69), (-69, 90), (90, 100), (100, 50)]", "assert pair_wise([-37, 17, 35, 19, 20, 5, -69, 2, 40, 2, -69]) == [(-37, 17), (17, 35), (35, 19), (19, 20), (20, 5), (5, -69), (-69, 2), (2, 40), (40, 2), (2, -69)]", "assert pair_wise([0, 'apple', 1]) == [(0, 'apple'), ('apple', 1)]", "assert pair_wise([2, 4, 8, 16, 32, 64, 128, 8]) == [(2, 4), (4, 8), (8, 16), (16, 32), (32, 64), (64, 128), (128, 8)]", "assert pair_wise([2, 128, 8, 32, 32, 64, 127, 64]) == [(2, 128), (128, 8), (8, 32), (32, 32), (32, 64), (64, 127), (127, 64)]", "assert pair_wise(['banana', 'cherry', 'date', 'elderberry']) == [('banana', 'cherry'), ('cherry', 'date'), ('date', 'elderberry')]", "assert pair_wise(['banana', 'cherry', 'date', 'elderberry', 'date']) == [('banana', 'cherry'), ('cherry', 'date'), ('date', 'elderberry'), ('elderberry', 'date')]", "assert pair_wise(['apple', 'dappMwe', 'banana', 'cherry', 'eldeerberry', 'date', 'elderberry']) == [('apple', 'dappMwe'), ('dappMwe', 'banana'), ('banana', 'cherry'), ('cherry', 'eldeerberry'), ('eldeerberry', 'date'), ('date', 'elderberry')]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of pairs whose sum is equal to ‘sum’. The funtion gets as input a list of numbers and the sum,\nassert get_pairs_count([1,1,1,1],2) == 6\nYour code should pass the test:\nassert get_pairs_count([1,1,1,1],2) == 6", "test_list": [ "assert get_pairs_count([1,1,1,1],2) == 6", "assert get_pairs_count([1,5,7,-1,5],6) == 3", "assert get_pairs_count([1,-2,3],1) == 1", "assert get_pairs_count([-1,-2,3],-3) == 1", "assert get_pairs_count([], 0) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9], 8) == 5.0", "assert get_pairs_count([], 5) == 0.0", "assert get_pairs_count([-1, 0, 6, 1, 2, 3, 4, 5, 6, 7, 8, 9], 8) == 6.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9], 8) == 6.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9], 0) == 1.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8], 0) == 1.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 1], 0) == 2.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 4], 8) == 7.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 7, 8, 9], 8) == 4.0", "assert get_pairs_count([97.69700646889478], 5) == 0.0", "assert get_pairs_count([-1, 6, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 1], 1) == 3.0", "assert get_pairs_count([], -1) == 0.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 6, 7, 8, 9], 8) == 4.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8], 8) == 4.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 7, 8, 9], 9) == 4.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 7, 8, 9], 4) == 3.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9], 1) == 2.0", "assert get_pairs_count([-1, 1, 2, 4, 5, 6, 8, 9], 8) == 2.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 7, 8, 9], 8) == 3.0", "assert get_pairs_count([True, False, False, True, True, False, True, True, True], 1) == 18.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 4], 2) == 2.0", "assert get_pairs_count([True, False, False, True, True, False, True, True, True], 2) == 15.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 1], -1) == 1.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 3], 4) == 4.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 6, 7, 8, 9], 1) == 1.0", "assert get_pairs_count([97.69700646889478], 6) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 1, 7], -1) == 1.0", "assert get_pairs_count([-1, 0, 6, 1, 2, 3, 4, 5, 6, 5, 7, 8, 9, 7], 8) == 8.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 1, 6, 7, 8, 9, 9, 4], 2) == 3.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 8, 5, 6, 7, 8, 9, 3], 4) == 3.0", "assert get_pairs_count([True, False, True, True, False, True, True, True, True, True], 3) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 1, 9, 9, 1], 8) == 8.0", "assert get_pairs_count([9, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8], 2) == 2.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 5], 8) == 7.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 1, 9, 9, 1], -1) == 1.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 6, 7, 8, 9], 9) == 4.0", "assert get_pairs_count([97.69700646889478, 97.69700646889478], 6) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9], 7) == 5.0", "assert get_pairs_count([-1, 1, 1, 4, 5, 6, 8, 9], 8) == 1.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4], 8) == 6.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8], 4) == 3.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 4], 8) == 6.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 5, 6, 7, 8, 9], 8) == 6.0", "assert get_pairs_count([-1, 8, 0, 1, 2, 3, 4, 5, 7, 8, 9], 9) == 5.0", "assert get_pairs_count([-1, 8, 0, 1, 2, 3, 4, 5, 7, 8, 9], 10) == 4.0", "assert get_pairs_count([], 6) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 7, 8, 9], 7) == 4.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 7, 8, 9, -1], 8) == 5.0", "assert get_pairs_count([97.69700646889478], 7) == 0.0", "assert get_pairs_count([-1, -1, 1, 1, 4, 5, 6, 8, 9], 8) == 2.0", "assert get_pairs_count([-1, 6, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 1, 6], 1) == 3.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 5, 6, 7, 8, 9], 2) == 2.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 5, 6, 7, 8, 9], 4) == 4.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 7, 8, 9, 9, 4], 8) == 5.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 8, 5, 6, 7, 8, 9, 3], 5) == 4.0", "assert get_pairs_count([True, False, False, True, True, False, True, True, False, True], 2) == 15.0", "assert get_pairs_count([4, 24, 20], 1) == 0.0", "assert get_pairs_count([True, False, True, True, False, False, True, True, True, True, True], 3) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 1, 9, 9, 1], 9) == 8.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 5], 9) == 7.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 8, 5, 6, 7, 8, 9, 3], 8) == 7.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8], 3) == 3.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 10, 7, 8, 1, 9, 9, 1], -2) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 7, 8, 9, -1], -2) == 1.0", "assert get_pairs_count([97.69700646889478, 97.69700646889478], 8) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 5, 5], 8) == 8.0", "assert get_pairs_count([0, 1, 2, 3, 6, 8, 5, 6, 7, 8, 9, 3], 5) == 3.0", "assert get_pairs_count([5, -1, 1, 2, 4, 5, 6, 8, 9], 8) == 2.0", "assert get_pairs_count([-1, 1, 24, 2, 3, 4, 5, 6, 7, 8, 9], 1) == 1.0", "assert get_pairs_count([-1, 1, 24, 2, 3, 4, 5, 6, 7, 8, 9], 2) == 1.0", "assert get_pairs_count([97.69700646889478, 97.23101051556709], 8) == 0.0", "assert get_pairs_count([-1, 0, 6, 1, 2, 3, 4, 5, 6, 7, 8, 9, 8], 8) == 7.0", "assert get_pairs_count([-1, 0, 6, 1, 2, 3, 4, 5, 2, 6, 7, 8, 9, 6], 9) == 8.0", "assert get_pairs_count([5, 24, 24, -1, 1, 2, 4, 5, 6, 8, 9], 8) == 2.0", "assert get_pairs_count([97.35909695921131, 97.69700646889478], 7) == 0.0", "assert get_pairs_count([-1, 0, 1, 3, 20, 3, 4, 5, 6, -2, 7, 8], 3) == 4.0", "assert get_pairs_count([-1, -1, 1, 1, 4, 5, 6, 8, 9, -1], 8) == 3.0", "assert get_pairs_count([-1, 0, 6, 1, 2, 3, 4, 5, 6, 7, 8, 9, 8], 9) == 7.0", "assert get_pairs_count([], 8) == 0.0", "assert get_pairs_count([-73, 8, -86, -19], 5) == 0.0", "assert get_pairs_count([-1, -73, 1, 2, 3, 4, 5, 7, 8, 9, -1], -2) == 1.0", "assert get_pairs_count([6, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 5, 5, 6], 3) == 3.0", "assert get_pairs_count([-1, 0, 2, 2, 3, 4, 5, 6, 7, 8, 1, 9, 9, 1], 2) == 4.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 1, 9, 9, 1], 6) == 6.0", "assert get_pairs_count([-1, 0, 1, 3, 4, 5, 6, 7, 8, 9, 1, 7], -1) == 1.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 8, 5, 6, 8, 9, 3, 8], 5) == 4.0", "assert get_pairs_count([-1, 2, 2, 4, 5, 6, 8, 9], 7) == 3.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9], 4) == 3.0", "assert get_pairs_count([-1, -1, 1, 1, 4, 5, 6, 9, -1, 1], 7) == 3.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 8, 5, 6, 7, 8, 9, 3, 8], 8) == 8.0", "assert get_pairs_count([False, True, True, False], 1) == 4.0", "assert get_pairs_count([-1, 0, 6, 1, 2, 3, 4, 5, 6, 7, 8, 8], 9) == 6.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 1], -2) == 0.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 4, 5, 6, 7, 8, 9], 8) == 6.0", "assert get_pairs_count([5, -1, 1, 2, 4, 5, 6, 8, 9, 5], 8) == 2.0", "assert get_pairs_count([True, False, False, True, True, False, False, True, True, True], 1) == 24.0", "assert get_pairs_count([-1, 8, 0, 1, 2, 3, 4, 5, 7, 8, 9], 6) == 3.0", "assert get_pairs_count([-1, 0, 2, 2, 3, 4, 5, 6, 7, 8, 9, 9, 5, 5], 2) == 3.0", "assert get_pairs_count([9, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8], -19) == 0.0", "assert get_pairs_count([9, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8], -1) == 1.0", "assert get_pairs_count([-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 4], 9) == 7.0", "assert get_pairs_count([-1, 1, 2, 3, 4, 5, 6, 7, 8, 9, 4], 1) == 1.0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to get the difference between two lists.\nassert (Diff([10, 15, 20, 25, 30, 35, 40], [25, 40, 35])) == [10, 20, 30, 15]\nYour code should pass the test:\nassert (Diff([10, 15, 20, 25, 30, 35, 40], [25, 40, 35])) == [10, 20, 30, 15]", "test_list": [ "assert (Diff([10, 15, 20, 25, 30, 35, 40], [25, 40, 35])) == [10, 20, 30, 15]", "assert (Diff([1,2,3,4,5], [6,7,1])) == [2,3,4,5,6,7]", "assert (Diff([1,2,3], [6,7,1])) == [2,3,6,7]", "assert Diff([], []) == []", "assert Diff([], [1, 2, 3]) == [1, 2, 3]", "assert Diff([1, 2, 3], []) == [1, 2, 3]", "assert Diff([1, 2, 3, 4, 5], [2, 4, 6, 8, 10]) == [1, 3, 5, 8, 10, 6]", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 5, 5], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7]) == [1, 2, 6, 7]", "assert Diff([1, 2, 3, 4, 5], [3, 3, 3, 3, 3]) == [1, 2, 4, 5]", "assert Diff([10, 20, 30, 40, 50], [5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55]) == [35, 5, 45, 15, 55, 25]", "assert Diff([1, 2, 3, 4, 5], [5, 4, 3, 2, 1]) == []", "assert Diff([1, 1, 1, 2, 2, 3], [2, 2, 3, 3, 4]) == [1, 4]", "assert Diff([1, 1, 1, 2, 2, 3, 2], [2, 2, 2, 3, 3, 4]) == [1, 4]", "assert Diff([10, 20, 30, 40, 50], [5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 26, 55]) == [35, 5, 45, 15, 55, 25, 26]", "assert Diff([], [21.053827787412118, -26.99597124733289, -31.379141584827323, 92.96856462430469, 80.59200072494767, -33.39739721928059, 78.85020436951248, 63.482299506394384, -38.72845621707337, 80.59200072494767]) == [-31.379141584827323, -26.99597124733289, 78.85020436951248, 80.59200072494767, 21.053827787412118, -38.72845621707337, 92.96856462430469, 63.482299506394384, -33.39739721928059]", "assert Diff([45, -1, -57, 10, 55, -6, -72, -10], [1, 2, 3]) == [-57, 10, 45, -10, 55, -72, -6, -1, 1, 2, 3]", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 5, 5], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 5]) == [1, 2, 6, 7]", "assert Diff([1, 2, 3, 4, 5], [5, 4, 3, 2, 1, 5]) == []", "assert Diff([78.85020436951248, 4.052029849956853, -33.39739721928059, 57.29229970397222, -63.90816106474213, -94.57327338374273, 57.29229970397222], [78.85020436951248, 4.052029849956853, -33.39739721928059, 57.29229970397222, -63.90816106474213, -94.57327338374273, 57.29229970397222]) == []", "assert Diff([2, 2, 3, 3, 2, 4], [2, 2, 3, 3, 2, 4]) == []", "assert Diff([1, 25, 2, 2, 3, 3, 4, 4, 5, 5], [1, 25, 2, 2, 3, 3, 4, 4, 5, 5]) == []", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 5, 5], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 5, 6]) == [1, 2, 6, 7]", "assert Diff([-1, -57, 10, 55, -6, -72, -10], [1, 3]) == [-57, 10, -10, 55, -72, -6, -1, 1, 3]", "assert Diff([1, 2, 3, 4, 5], [2, 4, 6, 10, 2]) == [1, 3, 5, 10, 6]", "assert Diff([78.85020436951248, 4.052029849956853, 57.29229970397222, -33.39739721928059, 57.29229970397222, -63.90816106474213, -94.57327338374273, 57.29229970397222], [78.85020436951248, 4.052029849956853, 57.29229970397222, -33.39739721928059, 57.29229970397222, -63.90816106474213, -94.57327338374273, 57.29229970397222]) == []", "assert Diff([2, 3, 4, 5], [2, 4, 6, 10, 2]) == [3, 5, 10, 6]", "assert Diff([5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 10], [5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 10]) == []", "assert Diff([5, 10, 15, 20, 30, 35, 4, 45, 55, 10], [5, 10, 15, 20, 30, 35, 4, 45, 55, 10]) == []", "assert Diff([78.85020436951248, 4.052029849956853, 57.29229970397222, -34.126255419632514, -63.90816106474213, -94.57327338374273, 57.29229970397222], [78.85020436951248, 4.052029849956853, 57.29229970397222, -34.126255419632514, -63.90816106474213, -94.57327338374273, 57.29229970397222]) == []", "assert Diff([2, 2, 3, 3, 3, 2, 4], [2, 2, 3, 3, 3, 2, 4]) == []", "assert Diff([92.96856462430469, 78.85020436951248, -31.379141584827323, -6.798645629977713, 4.052029849956853], []) == [-31.379141584827323, 4.052029849956853, -6.798645629977713, 92.96856462430469, 78.85020436951248]", "assert Diff([78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213], [78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213]) == []", "assert Diff([21.053827787412118, -26.99597124733289, -31.379141584827323, 92.96856462430469, 80.59200072494767, -33.39739721928059, 78.85020436951248, 63.482299506394384, -38.72845621707337, 80.59200072494767], [21.053827787412118, -26.99597124733289, -31.379141584827323, 92.96856462430469, 80.59200072494767, -33.39739721928059, 78.85020436951248, 63.482299506394384, -38.72845621707337, 80.59200072494767]) == []", "assert Diff([6, 4, 5], [6, 4, 5]) == []", "assert Diff([-1, -57, 10, 55, -6, -72], [1, 3, 3]) == [-57, 10, 55, -72, -6, -1, 1, 3]", "assert Diff([21.053827787412118, -26.99597124733289, -31.379141584827323, 92.96856462430469, 80.59200072494767, -33.39739721928059, 78.85020436951248, 63.482299506394384, -38.72845621707337, 80.59200072494767, 80.59200072494767], [21.053827787412118, -26.99597124733289, -31.379141584827323, 92.96856462430469, 80.59200072494767, -33.39739721928059, 78.85020436951248, 63.482299506394384, -38.72845621707337, 80.59200072494767, 80.59200072494767]) == []", "assert Diff([1, 25, 2, 2, 3, 4, 5, 5, 5], [1, 25, 2, 2, 3, 4, 5, 5, 5]) == []", "assert Diff([2, 4, 6, 10, 2], [2, 4, 6, 10, 2]) == []", "assert Diff([78.85020436951248, 4.052029849956853, -33.39739721928059, -93.71866999005064, 57.29229970397222, -63.90816106474213, -94.57327338374273, 57.29229970397222], [78.85020436951248, 4.052029849956853, -33.39739721928059, -93.71866999005064, 57.29229970397222, -63.90816106474213, -94.57327338374273, 57.29229970397222]) == []", "assert Diff([1, 2, 3, 4, 5], [1, 2, 3, 4, 5]) == []", "assert Diff([45, 3, 4, 5], [45, 3, 4, 5]) == []", "assert Diff([True, True], [True, True]) == []", "assert Diff([1, 2, 3, 2], []) == [1, 2, 3]", "assert Diff([1, 3, 4, 4], [1, 3, 4, 4]) == []", "assert Diff([3, 3, 3, 3, 3], [3, 3, 3, 3, 3]) == []", "assert Diff([1, 2, 2, 3, 6], [1, 2, 2, 3, 6]) == []", "assert Diff([78.85020436951248, 57.44201028672728, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213, -33.39739721928059], [78.85020436951248, 57.44201028672728, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213, -33.39739721928059]) == []", "assert Diff([1, 3, 4, 1, 5], [1, 3, 4, 1, 5]) == []", "assert Diff([1, 25, 2, 2, 3, 4, -57, 5, 5], [1, 25, 2, 2, 3, 4, -57, 5, 5]) == []", "assert Diff([1, 2, 3, 4], [5, 4, 3, 2, 1]) == [5]", "assert Diff([5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 10, 45], [5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 10, 45]) == []", "assert Diff([78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, 19.280231583546648, -63.90816106474213, 57.29229970397222, -63.90816106474213], [78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, 19.280231583546648, -63.90816106474213, 57.29229970397222, -63.90816106474213]) == []", "assert Diff([3, 3, 3, 3, 4, 3], [3, 3, 3, 3, 4, 3]) == []", "assert Diff([1, 2, 3, 4, 5], [5, 4, 3, 2, -57]) == [1, -57]", "assert Diff([1, 2, 3], [5, 4, 3, 2, 1]) == [4, 5]", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 3, 5, 5, 3], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7]) == [1, 2, 6, 7]", "assert Diff([1, 2, 2, 3, 2], [1, 2, 2, 3, 2]) == []", "assert Diff([3, 3, 3, 3, 4, 3, 3, 4, 3], [3, 3, 3, 3, 4, 3, 3, 4, 3]) == []", "assert Diff([10, 20, 30, 40, 50], [10, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 26, 55]) == [35, 5, 45, 15, 55, 25, 26]", "assert Diff([1, 2, 3, 4], [8, 4, 3, 2, 1]) == [8]", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 3, 5, 5, 4], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7]) == [1, 2, 6, 7]", "assert Diff([3, 3, 3, 3], [3, 3, 3, 3]) == []", "assert Diff([1, 3, 4], [1, 3, 4]) == []", "assert Diff([3, 3, 4, 4, 5, 5, 6, 6, 7, 7], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7]) == []", "assert Diff([92.96856462430469, 78.85020436951248, -31.379141584827323, -6.798645629977713, 4.052029849956853, -6.798645629977713], []) == [-31.379141584827323, 4.052029849956853, -6.798645629977713, 92.96856462430469, 78.85020436951248]", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 3, 5, 5, 4], [3, 3, 4, 4, 5, 5, 7, 7]) == [1, 2, 7]", "assert Diff([10, 20, 26, 40, 50], [5, 10, 15, 20, 25, 30, 35, 30, 40, 45, 50, 55]) == [26, 35, 5, 45, 15, 55, 25, 30]", "assert Diff([5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 15], [5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 15]) == []", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 3, 5, 5, 4], [1, 1, 2, 2, 3, 3, 4, 4, 3, 5, 5, 4]) == []", "assert Diff([78.85020436951248, 57.44201028672728, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213, -33.39739721928059, 78.85020436951248], [78.85020436951248, 57.44201028672728, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213, -33.39739721928059, 78.85020436951248]) == []", "assert Diff([1, 2, 3, 3], [1, 2, 3, 3]) == []", "assert Diff([2, 50, 2, 3, 3, 3, 2, 4, 2], [2, 50, 2, 3, 3, 3, 2, 4, 2]) == []", "assert Diff([78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, -32.6127267841512, 34.11377601910786, -94.57327338374273, 57.29229970397222, -63.90816106474213], [78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, -32.6127267841512, 34.11377601910786, -94.57327338374273, 57.29229970397222, -63.90816106474213]) == []", "assert Diff([-72, 2, 3, 4], [-72, 2, 3, 4]) == []", "assert Diff([78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, 19.280231583546648, -63.90816106474213, 57.29229970397222, -63.90816106474213, -63.90816106474213], [78.85020436951248, 5.016938121201768, 57.29229970397222, -33.39739721928059, 19.280231583546648, -63.90816106474213, 57.29229970397222, -63.90816106474213, -63.90816106474213]) == []", "assert Diff([-1, -57, 10, 55, -6, -72, -10], [1, 3, 1]) == [-57, 10, -10, 55, -72, -6, -1, 1, 3]", "assert Diff([92.96856462430469, 78.85020436951248, 4.052029849956853, 57.29229970397222, -34.126255419632514, -63.90816106474213, -94.57327338374273, 57.29229970397222], [92.96856462430469, 78.85020436951248, 4.052029849956853, 57.29229970397222, -34.126255419632514, -63.90816106474213, -94.57327338374273, 57.29229970397222]) == []", "assert Diff([10, 3, 4], [10, 3, 4]) == []", "assert Diff([4.052029849956853, -33.39739721928059, 57.29229970397222, -63.90816106474213, -94.57327338374273, -6.798645629977713, 45.00118380650045, 57.29229970397222, 57.29229970397222], [4.052029849956853, -33.39739721928059, 57.29229970397222, -63.90816106474213, -94.57327338374273, -6.798645629977713, 45.00118380650045, 57.29229970397222, 57.29229970397222]) == []", "assert Diff([5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 15, 10], [5, 10, 15, 20, 30, 35, 40, 45, 50, 55, 15, 10]) == []", "assert Diff([-1, -57, 10, 55, -6, -72], [1, 3, 3, 1]) == [-57, 10, 55, -72, -6, -1, 1, 3]", "assert Diff([2, 3, 5, 5], [2, 3, 5, 5]) == []", "assert Diff([-1, -57, 10, 55, -6, -72], [-1, -57, 10, 55, -6, -72]) == []", "assert Diff([True], [True]) == []", "assert Diff([6, 4, 25], [6, 4, 25]) == []", "assert Diff([92.96856462430469, 78.85020436951248, -31.379141584827323, -6.798645629977713, 4.052029849956853, -6.798645629977713, 78.85020436951248], [92.96856462430469, 78.85020436951248, -31.379141584827323, -6.798645629977713, 4.052029849956853, -6.798645629977713, 78.85020436951248]) == []", "assert Diff([1, 2, 3], ['Dxjf', 'IPtogid', 'kZeTRnafBg', '', 'oQBAov', 'Zd', 'YuHlX', 'wH', 'nHgsGYA']) == [1, 2, 3, '', 'IPtogid', 'nHgsGYA', 'wH', 'Dxjf', 'YuHlX', 'kZeTRnafBg', 'oQBAov', 'Zd']", "assert Diff([], [21.053827787412118, -26.99597124733289, -31.379141584827323, 92.96856462430469, 80.59200072494767, -33.39739721928059, 78.85020436951248, 63.482299506394384, -38.72845621707337, 80.59200072494767, 80.59200072494767]) == [-31.379141584827323, -26.99597124733289, 78.85020436951248, 80.59200072494767, 21.053827787412118, -38.72845621707337, 92.96856462430469, 63.482299506394384, -33.39739721928059]", "assert Diff([-1, -57, 10, 55, -6, -72, 10], [-1, -57, 10, 55, -6, -72, 10]) == []", "assert Diff([5, 4, 2, 3, 2, -57], [5, 4, 2, 3, 2, -57]) == []", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 3, 5, 3], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7]) == [1, 2, 6, 7]", "assert Diff([1, 1, 2, 2, 3, 3, 4, 4, 5, 5], [3, 3, 4, 4, 5, 5, 35, 6, 7]) == [1, 2, 35, 6, 7]", "assert Diff([3, 3, 3, 3, 3, 3, 3], [3, 3, 3, 3, 3, 3, 3]) == []", "assert Diff([True, True, True], [True, True, True]) == []", "assert Diff([1, 2, 3, 4, 5, 5], [1, 2, 3, 4, 5, 5]) == []", "assert Diff([92.96856462430469, -31.379141584827323, -6.798645629977713, 4.052029849956853, -6.798645629977713], [78.85020436951248, 92.96856462430469, -6.798645629977713, 19.280231583546648]) == [-31.379141584827323, 4.052029849956853, 19.280231583546648, 78.85020436951248]", "assert Diff([1, 2, 2, 6, 6], [1, 2, 2, 6, 6]) == []", "assert Diff([1, 1, 2, 3, 3, 4, 4, 5, 5], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7]) == [1, 2, 6, 7]", "assert Diff([5, 10, 15, 16, 20, 35, 40, 45, 55, -1, 10], [5, 10, 15, 16, 20, 35, 40, 45, 55, -1, 10]) == []", "assert Diff([1, 25, 2, 2, 3, 4, -57, 5, 5, 4], [1, 25, 2, 2, 3, 4, -57, 5, 5, 4]) == []", "assert Diff(['oQBAov', 'Dxjf', ''], []) == ['Dxjf', '', 'oQBAov']", "assert Diff([1, 2, 2, 2, 2], [1, 2, 2, 2, 2]) == []", "assert Diff([4, 5, 4, 3, 2, -72, 3], [4, 5, 4, 3, 2, -72, 3]) == []", "assert Diff([-1, 10, 55, -6, -72, 3, 10, -1], [-1, 10, 55, -6, -72, 3, 10, -1]) == []", "assert Diff(['Dxjf', 'IPtogid', 'kZeTRnafBg', '', 'oQBAov', 'Zd', 'YuHlX', 'wH'], ['Dxjf', 'IPtogid', 'kZeTRnafBg', '', 'oQBAov', 'Zd', 'YuHlX', 'wH']) == []", "assert Diff([1, 3, 3, 4, 4], [1, 3, 3, 4, 4]) == []", "assert Diff([1, 2, 2, 3, 2, 2], [1, 2, 2, 3, 2, 2]) == []", "assert Diff([3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 5, 7], [3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 5, 7]) == []", "assert Diff([78.85020436951248, 57.44201028672728, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213, -33.39739721928059, -63.90816106474213], [78.85020436951248, 57.44201028672728, 5.016938121201768, 57.29229970397222, -33.39739721928059, 34.11377601910786, -63.90816106474213, -94.57327338374273, 57.29229970397222, -63.90816106474213, -33.39739721928059, -63.90816106474213]) == []", "assert Diff([1, 25, 2, 2, 3, 4, 5, 5, 3], [1, 25, 2, 2, 3, 4, 5, 5, 3]) == []", "assert Diff([1, 26, 2, 2, 3, 2, 2], [1, 26, 2, 2, 3, 2, 2]) == []", "assert Diff([1, 2, 15], [5, 4, 3, 2, 1]) == [15, 3, 4, 5]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find whether a number is divisible by 11.\nassert is_Diff (12345) == False\nYour code should pass the test:\nassert is_Diff (12345) == False", "test_list": [ "assert is_Diff (12345) == False", "assert is_Diff(1212112) == True", "assert is_Diff(1212) == False", "assert is_Diff(12345678901234567890) == False", "assert is_Diff(98765432109876543210) == False", "assert is_Diff(-1212) == False", "assert is_Diff(-12345) == False", "assert is_Diff(-12345678901234567890) == False", "assert is_Diff(987654321098765432109876543210) == False", "assert is_Diff(-123456789012345678901234567890) == False", "assert is_Diff(123456789012345678901234567890) == False", "assert is_Diff(-987654321098765432109876543210) == False", "assert is_Diff(9876543210987654321098765432110) == False", "assert is_Diff(9876543210987654321098765432101) == False", "assert is_Diff(-9876543210987654321098765432110) == False", "assert is_Diff(-9876543210987654321098765432101) == False", "assert is_Diff(-1000) == False", "assert is_Diff(1001) == True", "assert is_Diff(0) == True", "assert is_Diff(-65) == False", "assert is_Diff(1002) == False", "assert is_Diff(-12345678901234567889) == True", "assert is_Diff(True) == False", "assert is_Diff(-56) == False", "assert is_Diff(98765432109876543209) == True", "assert is_Diff(9876543210987654321098765432102) == False", "assert is_Diff(-64) == False", "assert is_Diff(-9876543210987654321098765432100) == False", "assert is_Diff(-12344) == False", "assert is_Diff(-63) == False", "assert is_Diff(987654321098765432109876543211) == False", "assert is_Diff(False) == True", "assert is_Diff(-999) == False", "assert is_Diff(98765432109876543211) == False", "assert is_Diff(-57) == False", "assert is_Diff(-66) == True", "assert is_Diff(-55) == True", "assert is_Diff(-123456789012345678901234567891) == False", "assert is_Diff(-987654321098765432109876543211) == False", "assert is_Diff(123456789012345678901234567891) == False", "assert is_Diff(-67) == False", "assert is_Diff(-39) == False", "assert is_Diff(61) == False", "assert is_Diff(987654321098765432109876543209) == False", "assert is_Diff(-12343) == False", "assert is_Diff(987654321098765432109876543208) == False", "assert is_Diff(-54) == False", "assert is_Diff(-58) == False", "assert is_Diff(987654321098765432109876543212) == False", "assert is_Diff(9876543210987654321098765432103) == False", "assert is_Diff(-12345678901234567891) == False", "assert is_Diff(-62) == False", "assert is_Diff(-9876543210987654321098765432111) == False", "assert is_Diff(-12345678901234567888) == False", "assert is_Diff(12345678901234567891) == False", "assert is_Diff(12345678901234567892) == False", "assert is_Diff(1) == False", "assert is_Diff(987654321098765432109876543214) == True", "assert is_Diff(98765432109876543212) == False", "assert is_Diff(-9876543210987654321098765432102) == False", "assert is_Diff(-9876543210987654321098765432099) == False", "assert is_Diff(81) == False", "assert is_Diff(987654321098765432109876543213) == False", "assert is_Diff(9876543210987654321098765432105) == False", "assert is_Diff(-9876543210987654321098765432112) == False", "assert is_Diff(123456789012345678901234567889) == False", "assert is_Diff(9876543210987654321098765432104) == False", "assert is_Diff(-59) == False", "assert is_Diff(-61) == False", "assert is_Diff(-9876543210987654321098765432098) == False", "assert is_Diff(-1213) == False", "assert is_Diff(96) == False", "assert is_Diff(1000) == False", "assert is_Diff(98765432109876543208) == False", "assert is_Diff(12345678901234567889) == True", "assert is_Diff(-123456789012345678901234567892) == False", "assert is_Diff(-38) == False", "assert is_Diff(-987654321098765432109876543208) == False", "assert is_Diff(-123456789012345678901234567893) == False", "assert is_Diff(-987654321098765432109876543212) == False", "assert is_Diff(12345678901234567893) == False", "assert is_Diff(999) == False", "assert is_Diff(-60) == False", "assert is_Diff(987654321098765432109876543215) == False", "assert is_Diff(-40) == False", "assert is_Diff(-53) == False", "assert is_Diff(100) == False", "assert is_Diff(82) == False", "assert is_Diff(-12346) == False", "assert is_Diff(80) == False", "assert is_Diff(-52) == False", "assert is_Diff(-78) == False", "assert is_Diff(-123456789012345678901234567889) == False", "assert is_Diff(-12342) == True", "assert is_Diff(60) == False", "assert is_Diff(-68) == False", "assert is_Diff(9876543210987654321098765432100) == False", "assert is_Diff(-9876543210987654321098765432113) == False", "assert is_Diff(-123456789012345678901234567888) == False", "assert is_Diff(1003) == False", "assert is_Diff(47) == False", "assert is_Diff(79) == False", "assert is_Diff(59) == False", "assert is_Diff(9876543210987654321098765432108) == False", "assert is_Diff(36) == False", "assert is_Diff(37) == False", "assert is_Diff(9876543210987654321098765432107) == True", "assert is_Diff(2) == False", "assert is_Diff(12345678901234567894) == False", "assert is_Diff(98765432109876543213) == False", "assert is_Diff(-12347) == False", "assert is_Diff(-1211) == False", "assert is_Diff(-88) == True", "assert is_Diff(1004) == False", "assert is_Diff(98765432109876543214) == False", "assert is_Diff(-51) == False", "assert is_Diff(-998) == False", "assert is_Diff(-50) == False", "assert is_Diff(-9876543210987654321098765432109) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of fourth power of first n odd natural numbers.\nassert odd_num_sum(2) == 82\nYour code should pass the test:\nassert odd_num_sum(2) == 82", "test_list": [ "assert odd_num_sum(2) == 82", "assert odd_num_sum(3) == 707", "assert odd_num_sum(4) == 3108", "assert odd_num_sum(1) == 1", "assert odd_num_sum(2) == 82", "assert odd_num_sum(3) == 707", "assert odd_num_sum(4) == 3108", "assert odd_num_sum(5) == 9669", "assert odd_num_sum(69) == 5004024325", "assert odd_num_sum(70) == 5377325366", "assert odd_num_sum(6) == 24310", "assert odd_num_sum(True) == 1", "assert odd_num_sum(71) == 5772579527", "assert odd_num_sum(68) == 4651748964", "assert odd_num_sum(7) == 52871", "assert odd_num_sum(72) == 6190741128", "assert odd_num_sum(67) == 4319598339", "assert odd_num_sum(66) == 4006697618", "assert odd_num_sum(8) == 103496", "assert odd_num_sum(65) == 3712197697", "assert odd_num_sum(64) == 3435274816", "assert odd_num_sum(73) == 6632791753", "assert odd_num_sum(9) == 187017", "assert odd_num_sum(10) == 317338", "assert odd_num_sum(63) == 3175130175", "assert odd_num_sum(62) == 2930989550", "assert odd_num_sum(60) == 2487744028", "assert odd_num_sum(11) == 511819", "assert odd_num_sum(61) == 2702102909", "assert odd_num_sum(74) == 7099740634", "assert odd_num_sum(75) == 7592625035", "assert odd_num_sum(76) == 8112510636", "assert odd_num_sum(18) == 6031074", "assert odd_num_sum(77) == 8660491917", "assert odd_num_sum(59) == 2287210107", "assert odd_num_sum(30) == 77688014", "assert odd_num_sum(17) == 4530449", "assert odd_num_sum(58) == 2099821386", "assert odd_num_sum(78) == 9237692542", "assert odd_num_sum(16) == 3344528", "assert odd_num_sum(39) == 288559271", "assert odd_num_sum(29) == 65570653", "assert odd_num_sum(15) == 2421007", "assert odd_num_sum(91) == 19967019163", "assert odd_num_sum(28) == 55014652", "assert odd_num_sum(79) == 9845265743", "assert odd_num_sum(31) == 91533855", "assert odd_num_sum(90) == 18893736042", "assert odd_num_sum(12) == 791660", "assert odd_num_sum(89) == 17867110361", "assert odd_num_sum(13) == 1182285", "assert odd_num_sum(14) == 1713726", "assert odd_num_sum(40) == 327509352", "assert odd_num_sum(19) == 7905235", "assert odd_num_sum(41) == 370556073", "assert odd_num_sum(42) == 418014394", "assert odd_num_sum(32) == 107286816", "assert odd_num_sum(100) == 31997333380", "assert odd_num_sum(43) == 470215019", "assert odd_num_sum(57) == 1924920761", "assert odd_num_sum(20) == 10218676", "assert odd_num_sum(27) == 45864027", "assert odd_num_sum(80) == 10484394704", "assert odd_num_sum(21) == 13044437", "assert odd_num_sum(56) == 1761873400", "assert odd_num_sum(99) == 30429094179", "assert odd_num_sum(81) == 11156292945", "assert odd_num_sum(98) == 28922955698", "assert odd_num_sum(97) == 27477055073", "assert odd_num_sum(93) == 22259882909", "assert odd_num_sum(33) == 125137441", "assert odd_num_sum(101) == 33629574181", "assert odd_num_sum(92) == 21088532284", "assert odd_num_sum(37) == 221765605", "assert odd_num_sum(35) == 167955683", "assert odd_num_sum(44) == 527504780", "assert odd_num_sum(82) == 11862204706", "assert odd_num_sum(38) == 253406230", "assert odd_num_sum(83) == 12603405331", "assert odd_num_sum(55) == 1610066359", "assert odd_num_sum(94) == 23482713870", "assert odd_num_sum(45) == 590247021", "assert odd_num_sum(84) == 13381201652", "assert odd_num_sum(26) == 37973546", "assert odd_num_sum(53) == 1337828597", "assert odd_num_sum(88) == 16885604120", "assert odd_num_sum(52) == 1216277972", "assert odd_num_sum(54) == 1468908198", "assert odd_num_sum(87) == 15947713495", "assert odd_num_sum(36) == 193367364", "assert odd_num_sum(50) == 999666690", "assert odd_num_sum(85) == 14196932373", "assert odd_num_sum(95) == 24758703711", "assert odd_num_sum(96) == 26089567072", "assert odd_num_sum(102) == 35327755862", "assert odd_num_sum(34) == 145288562", "assert odd_num_sum(51) == 1103727091", "assert odd_num_sum(86) == 15051968454", "assert odd_num_sum(22) == 16463238", "assert odd_num_sum(49) == 903607089", "assert odd_num_sum(103) == 37093856487", "assert odd_num_sum(23) == 20563863", "assert odd_num_sum(25) == 31208345", "assert odd_num_sum(24) == 25443544" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if the given expression is balanced or not. \nassert check_expression(\"{()}[{}]\") == True\nYour code should pass the test:\nassert check_expression(\"{()}[{}]\") == True", "test_list": [ "assert check_expression(\"{()}[{}]\") == True", "assert check_expression(\"{()}[{]\") == False", "assert check_expression(\"{()}[{}][]({})\") == True", "assert check_expression('') == False", "assert check_expression('(((())()))(()') == False", "assert check_expression('(((())()(((())()))(()))(){[{[()]}]}') == False", "assert check_expression('{[{[()]}](((())()))(()}') == False", "assert check_expression('(((())()(((()){[{[()]}](((())()]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((()))(()}()))(()))(){[{[()]}]}') == False", "assert check_expression('((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}') == False", "assert check_expression('(((())()((((((((())()(((()){[{[()]}](((())()]}))()))(()))(){[{[()]}]}') == False", "assert check_expression('((){[{[()(((())()(((()){[{[(()]}](((()))(()}()))(()))(){[{[()]}]}]}]}') == False", "assert check_expression('((((())()(((()){[{[()]}]((((()))(()}()((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}') == False", "assert check_expression('(((())())))()') == False", "assert check_expression('(((())())(((()){[{[()]}](((())()))())(){[{[()]}]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((())()))())(){[{[())]}]}') == False", "assert check_expression('(((())()))(()ws') == False", "assert check_expression('((((())()(((()){[{[()]}]((((()))(()}((((())()(((()){[{[()]}]((((()))(()}()((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}{[{[()]}]}') == False", "assert check_expression('((){[{[()(((}())()(((()){[{[(()]}](((()))(()}()))(())))(){((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}[(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}(((())()((((((((())()(((()){[{[()]}](((())()]}))()))(()))(){[{[()]}]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}') == False", "assert check_expression('(()(())()(((())()))(())){(){[{[()]}]}') == False", "assert check_expression('{[{[()](((())()))(()}') == False", "assert check_expression('((((())()(((()){[{[()]}]((((()))(()}()((((())()(((())((((())()))()((())())((){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}') == False", "assert check_expression('{[{[()](((())()))(ws()}') == False", "assert check_expression('((){[{[()(((}())()(((()){[{[(()](((())()(((()){[{[()]}](((())()((){[{[()(((())()(((()){[{[(()]}](((()))(()}()))(())))(){[(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}))())(){[{[()]}]}}](((()))(()}()))(())))(){((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}[(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}(((())()((((((((())()(((()){[{[()]}](((())()]}))()))(()))(){[{[()]}]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}') == False", "assert check_expression('((){[{[()(((())()(((()){[{[(()]}](((()))(()}()))(()))(){[{[()]}]}]}]}(((())()(((()){[{[()]}](((())()))())(){[{[()]}]}') == False", "assert check_expression('((){[{[()(((())()(((()){[{[(()]}](((()))(()}()))(())))(){[(((())()((((((((())()(((()){[{[()]}(((()()()(((()){[{[()]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((())()))(){[{[()]}]})(){[{[())]}]}') == False", "assert check_expression('w{[{[()](((())()))(ws()}s') == False", "assert check_expression('(((())()((((((((())()(((()){[{[()]}](((())()]}))()))(()))())]{[{[()]}]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((())()))(()}()))(()))(){[{((){[{[()(((())()(((()){[{[(()]}](((()))(()}()))(())))(){[(((())()((((((((())()(((()){[{[()]}(((()()()(((()){[{[()]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}[()]}]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((())()))())()){[{[()]}]}') == False", "assert check_expression('((){[{[()(((())()(((()){[{)[(()]}](((()))(()}()))(())))(){[(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}') == False", "assert check_expression('(()(())()(((())()))((]}') == False", "assert check_expression('(((())()(((((((((())()(((()]){[{[()]}](((())()]}))()))(()))(){[{[()]}]}') == False", "assert check_expression('(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}](((())()]}](((())((((())()(((()){[{[()]}]((((()))(()}((((())()(((()){[{[()]}]((((()))(()}()((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}{[{[()]}]}}]}') == False", "assert check_expression('(((((())()(((()){[{[()]}]((((()))(()}()((((())()(((())((((())()))()((())())(()))(()))(){[{[()]}]}') == False", "assert check_expression('(((((())()()((()){[{[()]}]((((()))(()}()((((())()(((())((((())()))()((())())vBMc((){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}') == False", "assert check_expression('(((()(((())()(((()){[{[()]}](((()))(()}()))(()))(){[{[)()]}]})()))((()(())()(((())()))(())){(){[{[()]}]})') == False", "assert check_expression('((){[{)[()(((())()(((((())()(((()){[{[()]}](((())()]}(()){[{[(()]}](((()))(()}()))(()))(){[{[()]}]}]}]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((((())()))(){[{[()]}]}(())()))())()){[{[()]}]}') == False", "assert check_expression('(((()vvBMMc)()(((()){[{[()]}](((())()))())(){[{[()]}{[{[()](((())()))(ws()}]}') == False", "assert check_expression('EOLG(((())()(((()){[{[()]}](((()))(()}()))(()))(){[{[()]}]}') == False", "assert check_expression('(((()(((())()(((()){[{[()]}](((()))(()}()))(()))(){[{[)()]}]})()))((()(())()((((())()))(())[){(){[{[()]}]})') == False", "assert check_expression('((){[{[()(((())()(((()){[{[(()]}](((()))(()}()(((())()))(()))(())))(){[{[()]}]}]}]}') == False", "assert check_expression('{[{[()]}](((()]{)()))(()}') == False", "assert check_expression('((){[{[()(((}())()(((()){[{[(()](((())()(((()){[{[()]}](((())()((){[{[()(((())()(((()){[{[(()]}}](((()))(()}()))(())))(){[(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}]}]}]}))())(){[{[()]}]}}](((()))(()}()))(())))(){((((())()(((()){[{[()]}]((((()))(()}()))(()))(){[{[()]}]}[(((}]}]}') == False", "assert check_expression('(((())()(((())(()(()())())(((((((())()(((())())))()))))()))(()))(())((]}({[{[()]}](}((())()]}') == False", "assert check_expression('(()(())()(((())())))((]') == False", "assert check_expression('{[{[()]}](((((((())()))()((())())(()())()))(()}') == False", "assert check_expression('(((())()(((((((((())()(((()]){[{[()]}](()(())()]}))()))(()))(){(((())()(((()){[{[()]}](((()))(()}()))(()))(){[{[()]}]}[{[()]}]}') == False", "assert check_expression('(((())()(((())(()(()())())(((((())()((((((((())()(((()){[{[()]}](((())()]}))()))(()))()]{[{[()]}]}(((((())()(((())())))()))))()))(()))(())((]}({[{[()]}](}((())()]}') == False", "assert check_expression('((){[{[()(((())()(((()){[{)[(()]}](((()))(()}()))(())))(){[(((())()((((((((())()(((()){[{[()]}(((())()(((()){[{[()]}](((())()]}](((())()]}))()))(()))(){[{[()]}]}{[()]}Wofi]}]}]}') == False", "assert check_expression('(((())()(((()){[{[()]}](((())()))(())(){[{[())]}]') == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove all the words with k length in the given string.\nassert remove_length('The person is most value tet', 3) == 'person is most value'\nYour code should pass the test:\nassert remove_length('The person is most value tet', 3) == 'person is most value'", "test_list": [ "assert remove_length('The person is most value tet', 3) == 'person is most value'", "assert remove_length('If you told me about this ok', 4) == 'If you me about ok'", "assert remove_length('Forces of darkeness is come into the play', 4) == 'Forces of darkeness is the'", "assert remove_length('', 3) == ''", "assert remove_length('', 5) == ''", "assert remove_length('', 10) == ''", "assert remove_length('This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestablishmentarianism.', 10) == 'This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestablishmentarianism.'", "assert remove_length('This is a Test of the Function', 4) == 'is a of the Function'", "assert remove_length('This is a test sentence with all words having length of five.', 5) == 'This is a test sentence with all having length of'", "assert remove_length('This is a very long and complex sentence that contains words of different lengthsa such as abracadabra, internationalization, and antidisestablishmentarianism.', 10) == 'This is a very long and complex sentence that contains words of different lengthsa such as abracadabra, internationalization, and antidisestablishmentarianism.'", "assert remove_length('Test', 6) == 'Test'", "assert remove_length('This is a test sentence with all words having length of five.', 10) == 'This is a test sentence with all words having length of five.'", "assert remove_length('Test', 10) == 'Test'", "assert remove_length('T', 11) == 'T'", "assert remove_length('', 6) == ''", "assert remove_length('', 4) == ''", "assert remove_length('Tesallt', 6) == 'Tesallt'", "assert remove_length('abracadabra,Test', 10) == 'abracadabra,Test'", "assert remove_length('This is a Test Thisof the Function', 4) == 'is a Thisof the Function'", "assert remove_length('five.', 4) == 'five.'", "assert remove_length('This is a Test Thisof the Fuwith', 6) == 'This is a Test the'", "assert remove_length('Fuwith', 10) == 'Fuwith'", "assert remove_length('contains', 5) == 'contains'", "assert remove_length('iThis is a test sentence with all words having length of five.', 5) == 'is a test sentence with all having length of'", "assert remove_length('contais', 5) == 'contais'", "assert remove_length('', 9) == ''", "assert remove_length('This is a test sentence with all words having length of five.t of the Function', 4) == 'is a sentence all words having length of five.t of the Function'", "assert remove_length('abracadabra,Test', 11) == 'abracadabra,Test'", "assert remove_length('This is a Test Thisof the Fuwith', 7) == 'This is a Test Thisof the Fuwith'", "assert remove_length('This is a Test Thisof the Fuwith', 5) == 'This is a Test Thisof the Fuwith'", "assert remove_length('all', 6) == 'all'", "assert remove_length('contais', 3) == 'contais'", "assert remove_length('abracadabra,Test', 5) == 'abracadabra,Test'", "assert remove_length('This is a very long and complex sentence that contains words of different lengthsa such as abracadabra, internationalization, and antidisestablishmentarianism.', 9) == 'This is a very long and complex sentence that contains words of lengthsa such as abracadabra, internationalization, and antidisestablishmentarianism.'", "assert remove_length('TeT', 10) == 'TeT'", "assert remove_length('iThis is a test sentence with all words having length of five.', 10) == 'iThis is a test sentence with all words having length of five.'", "assert remove_length('very', 9) == 'very'", "assert remove_length('Test', 9) == 'Test'", "assert remove_length('Fuwith', 5) == 'Fuwith'", "assert remove_length('This is a Test of the unction', 4) == 'is a of the unction'", "assert remove_length('that', 11) == 'that'", "assert remove_length('This is a very long and complex sentence that contaThisins words of different lengths such as abracadabra, internationalization, and antidisestablishmentarianism.', 10) == 'This is a very long and complex sentence that contaThisins words of different lengths such as abracadabra, internationalization, and antidisestablishmentarianism.'", "assert remove_length('This is a Test of the unctionof', 4) == 'is a of the unctionof'", "assert remove_length('This is a Test of the unction', 9) == 'This is a Test of the unction'", "assert remove_length('Tabracadabra,his is a Test Thisof the Function', 7) == 'Tabracadabra,his is a Test Thisof the Function'", "assert remove_length('unctioncontais', 3) == 'unctioncontais'", "assert remove_length('Test', 5) == 'Test'", "assert remove_length('conThisoftais', 3) == 'conThisoftais'", "assert remove_length('Tabracadabra,his is a Test Thisof the Function', 9) == 'Tabracadabra,his is a Test Thisof the Function'", "assert remove_length('This is a test sen tence with all words having length of five.', 5) == 'This is a test sen with all having length of'", "assert remove_length('complex', 3) == 'complex'", "assert remove_length('This is a Test of the unctionof', 5) == 'This is a Test of the unctionof'", "assert remove_length('aand', 6) == 'aand'", "assert remove_length('aand', 9) == 'aand'", "assert remove_length('tunctioncontais', 7) == 'tunctioncontais'", "assert remove_length('This is a Test of the unctionof', 7) == 'This is a Test of the unctionof'", "assert remove_length('having', 3) == 'having'", "assert remove_length('This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestatunctioncontaisblishmentarianism.', 10) == 'This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestatunctioncontaisblishmentarianism.'", "assert remove_length('different', 4) == 'different'", "assert remove_length('This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestablishmentarianism.', 11) == 'This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestablishmentarianism.'", "assert remove_length('This is a very long and complex sentence that contains words of different lengthsthationalization, and antidisestablishmentarianism.', 9) == 'This is a very long and complex sentence that contains words of lengthsthationalization, and antidisestablishmentarianism.'", "assert remove_length('This is a test sentence with all words having length of five.', 7) == 'This is a test sentence with all words having length of five.'", "assert remove_length('', 7) == ''", "assert remove_length('This is a Test Thisof the FuwitThis is a Test of the Functionh', 7) == 'This is a Test Thisof the FuwitThis is a Test of the Functionh'", "assert remove_length('This is a test sentence with all words having length of five.', 11) == 'This is a test sentence with all words having length of five.'", "assert remove_length('This is a very long and complex sentence that contains words of different lengthsthationalization, and antidisestablishmentarianism.', 6) == 'This is a very long and complex sentence that contains words of different lengthsthationalization, and antidisestablishmentarianism.'", "assert remove_length('TeunctionofT', 10) == 'TeunctionofT'", "assert remove_length('Thsenis is a Test of the Function', 4) == 'Thsenis is a of the Function'", "assert remove_length('This is a Tescontainst of the unctionof', 7) == 'This is a Tescontainst of the unctionof'", "assert remove_length('This isi a Test Thisof the Function', 7) == 'This isi a Test Thisof the Function'", "assert remove_length('aan', 9) == 'aan'", "assert remove_length('This is a Tescontainst of the unctionof', 5) == 'This is a Tescontainst of the unctionof'", "assert remove_length('This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestatunctioncontaisblishmentarianism.', 11) == 'This is a very long and complex sentence that contains words of different lengths such as abracadabra, internationalization, and antidisestatunctioncontaisblishmentarianism.'", "assert remove_length('tence', 9) == 'tence'", "assert remove_length('lengthsa', 4) == 'lengthsa'", "assert remove_length('This is a very long and complex sentence that contains words of different lengthsa such as abracadabra, internationalization, and antidisestablishmentarianism.', 3) == 'This is a very long complex sentence that contains words of different lengthsa such as abracadabra, internationalization, antidisestablishmentarianism.'", "assert remove_length('This i Test Thisof the FuwitThis is a Test of the Functionh', 11) == 'This i Test Thisof the FuwitThis is a Test of the Functionh'", "assert remove_length('a', 5) == 'a'", "assert remove_length('abracradabra,Test', 11) == 'abracradabra,Test'", "assert remove_length('iThis is a test sentence with all words having length of five.', 11) == 'iThis is a test sentence with all words having length of five.'", "assert remove_length('FuwitThis', 6) == 'FuwitThis'", "assert remove_length('thatunctioncontais', 11) == 'thatunctioncontais'", "assert remove_length('This ise unction', 9) == 'This ise unction'", "assert remove_length('all', 5) == 'all'", "assert remove_length('iThis is a tiest sentence with all words having length of five.', 5) == 'is a sentence with all having length of'", "assert remove_length('TeunctionofT', 5) == 'TeunctionofT'", "assert remove_length('This is a Test of the unctionof', 2) == 'This a Test the unctionof'", "assert remove_length('that', 5) == 'that'", "assert remove_length('FuwitThis', 5) == 'FuwitThis'", "assert remove_length('Tabracadabra,his is a Test Thisof the Function', 11) == 'Tabracadabra,his is a Test Thisof the Function'", "assert remove_length('test', 5) == 'test'", "assert remove_length('This', 2) == 'This'", "assert remove_length('abracadabra,Tebst', 10) == 'abracadabra,Tebst'", "assert remove_length('This is a very long and complex sentence that contains words of differecontainsnt lengthsa such as abracadabra, internationalization, and antidisestablishmentarianism.', 3) == 'This is a very long complex sentence that contains words of differecontainsnt lengthsa such as abracadabra, internationalization, antidisestablishmentarianism.'", "assert remove_length('Tesallt', 5) == 'Tesallt'", "assert remove_length('length', 3) == 'length'", "assert remove_length('thatt', 11) == 'thatt'", "assert remove_length('contais', 10) == 'contais'", "assert remove_length('having', 11) == 'having'", "assert remove_length('Test', 8) == 'Test'", "assert remove_length('lengths', 11) == 'lengths'", "assert remove_length('lengths', 5) == 'lengths'", "assert remove_length('thatunctioncontais', 10) == 'thatunctioncontais'", "assert remove_length('This is a Test of abracadabra,Tebstthe unctionofwith', 2) == 'This a Test abracadabra,Tebstthe unctionofwith'", "assert remove_length('lengthsTesallt', 5) == 'lengthsTesallt'", "assert remove_length('TeT', 3) == ''", "assert remove_length('TieunctionofT', 5) == 'TieunctionofT'", "assert remove_length('', 8) == ''", "assert remove_length('FuwitThis', 7) == 'FuwitThis'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the occurrence and position of the substrings within a string. Return None if there is no match.\nassert occurance_substring('python programming, python language','python')==('python', 0, 6)\nYour code should pass the test:\nassert occurance_substring('python programming, python language','python')==('python', 0, 6)", "test_list": [ "assert occurance_substring('python programming, python language','python')==('python', 0, 6)", "assert occurance_substring('python programming,programming language','programming')==('programming', 7, 18)", "assert occurance_substring('python programming,programming language','language')==('language', 31, 39)", "assert occurance_substring('c++ programming, c++ language','python')==None" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether every odd index contains odd numbers of a given list.\nassert odd_position([2,1,4,3,6,7,6,3]) == True\nYour code should pass the test:\nassert odd_position([2,1,4,3,6,7,6,3]) == True", "test_list": [ "assert odd_position([2,1,4,3,6,7,6,3]) == True", "assert odd_position([4,1,2]) == True", "assert odd_position([1,2,3]) == False", "assert odd_position([2, 5, 4, 3, 6, 7, 8, 9]) == True", "assert odd_position([1, 3, 5, 7, 9, 11, 13, 15]) == True", "assert odd_position([2, 13, 5, 4, 3, 6, 7, 8, 9]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 11, 13, 15]) == True", "assert odd_position([2, 5, 4, 3, 6, 7, 8]) == True", "assert odd_position([2, 13, 5, 4, 4, 3, 6, 7, 8, 13]) == False", "assert odd_position([2, 5, 4, 3, 3, 6, 8, 8, 8, 9]) == False", "assert odd_position([2, 13, 5, 15, 4, 11, 3, 6, 7, 8, 9]) == False", "assert odd_position([2, 9, 5, 4, 4, 3, 6, 13, 7, 8, 13]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 11, 13, 15, 3]) == True", "assert odd_position([2, 5, 4, 3, 7, 8, 9, 5]) == False", "assert odd_position([2, 9, 5, 4, 5, 3, 6, 13, 7, 8, 13]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 11, 13, 15, 3, 3]) == True", "assert odd_position([2, 13, 5, 15, 4, 7, 11, 3, 6, 7, 8, 9]) == True", "assert odd_position([2, 13, 5, 15, 4, 4, 11, 3, 6, 7, 8, 9]) == False", "assert odd_position([2, 5, 4, 3, 7, 8]) == False", "assert odd_position([2, 13, 5, 15, 7, 11, 3, 6, 7, 8, 9, 3]) == False", "assert odd_position([2, 13, 5, 15, 4, 4, 11, 3, 6, 7, 8, 9, 5]) == False", "assert odd_position([2, 13, 5, 15, 4, 11, 3, 6, 7, 8, 9, 5]) == False", "assert odd_position([3, 9, 5, 4, 4, 3, 3, 6, 13, 7, 8, 13]) == False", "assert odd_position([2, 5, 4, 3, 6, 8, 9, 7]) == False", "assert odd_position([1, 5, 6, 15, 9, 11, 13, 15, 3]) == True", "assert odd_position([3, 5, 7, 15, 9, 11, 13, 15, 3]) == True", "assert odd_position([1, 3, 5, 7, 15, 9, 13, 11, 13, 15]) == True", "assert odd_position([3, 9, 5, 4, 4, 3, 3, 6, 13, 7, 8, 3]) == False", "assert odd_position([1, 5, 6, 15, 9, 11, 13, 15, 8]) == True", "assert odd_position([1, 5, 4, 3, 3, 6, 8, 8, 8, 9]) == False", "assert odd_position([2, 13, 5, 15, 4, 4, 11, 3, 11, 6, 7, 8, 9, 5]) == False", "assert odd_position([3, 13, 5, 15, 4, 4, 11, 3, 6, 7, 8, 9, 9]) == False", "assert odd_position([3, 13, 5, 15, 4, 4, 11, 3, 6, 8, 8, 9, 9]) == False", "assert odd_position([1, 3, 3, 5, 7, 15, 11, 9, 11, 13, 15]) == True", "assert odd_position([2, 9, 5, 7, 4, 3, 6, 13, 7, 8, 13]) == False", "assert odd_position([2, 13, 5, 4, 4, 3, 1, 7, 8, 13]) == False", "assert odd_position([1, 5, 4, 3, 3, 6, 8, 8, 8]) == False", "assert odd_position([2, 5, 15, 4, 7, 11, 3, 6, 7, 8, 9]) == False", "assert odd_position([2, 9, 5, 5, 4, 3, 6, 13, 7, 8, 13]) == False", "assert odd_position([1, 5, 4, 3, 3, 6, 3, 10, 8, 8, 8, 9]) == False", "assert odd_position([1, 5, 4, 3, 3, 6, 8, 8, 11, 8, 9]) == False", "assert odd_position([3, 13, 5, 15, 4, 11, 3, 6, 7, 8, 9, 9]) == False", "assert odd_position([2, 13, 15, 4, 7, 11, 3, 6, 7, 8, 9]) == False", "assert odd_position([1, 3, 3, 5, 7, 7, 15, 11, 9, 11, 13, 15, 5]) == True", "assert odd_position([1, 5, 4, 3, 6, 8, 9, 7]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 11, 4, 13, 15, 3, 3]) == False", "assert odd_position([2, 9, 5, 4, 4, 6, 13, 7, 8, 13]) == False", "assert odd_position([3, 9, 5, 7, 4, 3, 3, 6, 13, 7, 8, 13, 3]) == False", "assert odd_position([3, 9, 2, 5, 4, 6, 4, 3, 3, 6, 13, 7, 8, 3]) == False", "assert odd_position([1, 3, 7, 9, 11, 15]) == True", "assert odd_position([1, 5, 4, 3, 3, 8, 8, 8, 9, 8, 4]) == False", "assert odd_position([1, 3, 5, 5, 7, 9, 11, 13, 15]) == True", "assert odd_position([2, 13, 5, 15, 15, 11, 3, 6, 7, 8, 9, 3]) == False", "assert odd_position([1, 3, 3, 5, 7, 7, 15, 11, 9, 11, 13, 15, 9, 5]) == True", "assert odd_position([1, 5, 6, 15, 9, 11, 7, 13, 15, 8]) == False", "assert odd_position([2, 13, 5, 15, 4, 4, 11, 3, 6, 7, 8, 9, 5, 3]) == False", "assert odd_position([1, 5, 6, 9, 11, 7, 13, 15, 8, 15]) == True", "assert odd_position([1, 5, 4, 3, 3, 6, 8, 8, 11, 8, 9, 3]) == False", "assert odd_position([13, 5, 15, 4, 4, 11, 3, 11, 6, 7, 8, 9, 5]) == False", "assert odd_position([10, 1, 5, 6, 9, 11, 7, 13, 15, 8, 15]) == False", "assert odd_position([3, 5, 7, 15, 9, 11, 13, 15, 3, 3]) == True", "assert odd_position([2, 13, 5, 4, 3, 6, 3, 7, 8, 5, 5]) == False", "assert odd_position([1, 3, 7, 9, 11, 15, 3]) == True", "assert odd_position([3, 9, 4, 4, 3, 3, 6, 13, 7, 8, 13, 4]) == False", "assert odd_position([2, 9, 5, 4, 5, 3, 6, 12, 13, 7, 8, 13, 2]) == False", "assert odd_position([3, 5, 7, 15, 9, 11, 13, 15, 3, 13]) == True", "assert odd_position([1, 5, 4, 3, 6, 8, 8, 8]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 11, 4, 15, 3, 3]) == False", "assert odd_position([3, 9, 5, 7, 4, 3, 3, 6, 13, 7, 8, 13, 3, 3]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 13, 11, 12, 13, 15]) == True", "assert odd_position([2, 13, 5, 15, 4, 4, 10, 3, 6, 7, 8, 9]) == False", "assert odd_position([1, 5, 6, 15, 9, 11, 13, 10, 3]) == False", "assert odd_position([3, 5, 7, 15, 9, 13, 11, 13, 15, 15]) == True", "assert odd_position([1, 5, 15, 9, 11, 13, 10, 3]) == True", "assert odd_position([2, 5, 4, 3, 7, 8, 5, 5]) == False", "assert odd_position([15, 1, 3, 5, 15, 15, 9, 11, 16, 11, 13, 15]) == True", "assert odd_position([1, 5, 4, 3, 3, 6, 8, 8, 8, 8]) == False", "assert odd_position([1, 3, 5, 7, 15, 9, 11, 13, 15, 3, 15]) == True", "assert odd_position([1, 3, 5, 7, 9, 11, 13, 15, 3, 3]) == True", "assert odd_position([1, 5, 6, 9, 11, 13, 10, 3]) == True", "assert odd_position([1, 5, 4, 3, 2, 3, 6, 3, 10, 8, 8, 8, 9]) == False", "assert odd_position([2, 9, 5, 5, 5, 3, 6, 12, 13, 9, 8, 13, 2]) == False", "assert odd_position([3, 9, 5, 7, 4, 3, 3, 6, 13, 2, 8, 13, 3, 2]) == False", "assert odd_position([2, 5, 2, 3, 3, 6, 8, 8, 8, 9]) == False", "assert odd_position([1, 5, 6, 15, 9, 11, 13, 15, 8, 15]) == True", "assert odd_position([2, 4, 3, 7, 8, 10, 5]) == False", "assert odd_position([2, 13, 13, 5, 4, 3, 6, 7, 8, 9, 7]) == True", "assert odd_position([3, 5, 7, 15, 9, 13, 11, 13, 15]) == True", "assert odd_position([2, 5, 4, 3, 3, 8, 6, 8, 8, 8, 9]) == False", "assert odd_position([1, 15, 5, 6, 15, 9, 11, 13, 15, 8, 15]) == False", "assert odd_position([2, 9, 5, 5, 4, 3, 6, 13, 7, 8, 13, 8, 2]) == False", "assert odd_position([2, 13, 13, 5, 4, 6, 7, 8, 9, 7]) == False", "assert odd_position([1, 5, 4, 11, 3, 6, 8]) == False", "assert odd_position([1, 5, 15, 9, 11, 13, 15, 8, 15]) == False", "assert odd_position([2, 13, 5, 15, 7, 11, 3, 6, 7, 8, 9]) == False", "assert odd_position([10, 1, 5, 6, 9, 11, 7, 13, 15, 8, 7, 15]) == False", "assert odd_position([3, 9, 3, 5, 7, 4, 3, 6, 13, 7, 8, 13, 3, 3]) == False", "assert odd_position([1, 15, 11, 5, 6, 15, 9, 11, 13, 15, 8, 15]) == True", "assert odd_position([2, 5, 4, 3, 7, 8, 9, 5, 5, 5]) == False", "assert odd_position([1, 5, 6, 15, 9, 11, 7, 15, 8]) == True", "assert odd_position([1, 5, 6, 9, 11, 7, 15, 7, 15]) == True", "assert odd_position([3, 9, 5, 7, 4, 3, 3, 6, 13, 7, 8, 13, 3, 5]) == False", "assert odd_position([7, 13, 5, 15, 15, 11, 3, 6, 7, 8, 9, 3]) == False", "assert odd_position([1, 3, 5, 5, 7, 1, 11, 13, 15]) == True", "assert odd_position([2, 13, 5, 15, 4, 11, 6, 7, 8, 9, 11, 4]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of non-repeated elements in a given list.\nassert find_sum([1,2,3,1,1,4,5,6]) == 21\nYour code should pass the test:\nassert find_sum([1,2,3,1,1,4,5,6]) == 21", "test_list": [ "assert find_sum([1,2,3,1,1,4,5,6]) == 21", "assert find_sum([1,10,9,4,2,10,10,45,4]) == 71", "assert find_sum([12,10,9,45,2,10,10,45,10]) == 78", "assert find_sum([-1, -2, -3, -1, -1, -4, -5, -6]) == -21", "assert find_sum([0, 0, 0, 0, 0, 0, 0, 0]) == 0", "assert find_sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == 55", "assert find_sum([10, 10, 10, 10, 10, 10, 10, 10, 10, 10]) == 10", "assert find_sum([-5, -5, -5, -5, -5, -5, -5, -5, -5]) == -5", "assert find_sum([]) == 0", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 7, 5]) == 28", "assert find_sum([1, 2, 3, 4, 5, 1, 2, 3, 4, 5]) == 15", "assert find_sum([-1, -2, -3, -1, -1, -4, 0, -5, -6]) == -21", "assert find_sum([1, -2, 3, 4, -5, 6, 7, -8, 9, 10]) == 25", "assert find_sum([1, 2, 3, -6, 5, 1, 2, 3, 4, 5]) == 9", "assert find_sum([9, 10, 10, 10, 10, 10, 10, 10, 10, 10]) == 19", "assert find_sum([10, 10, 10, 10, 11, 10, 10, 10, 10, 10, 10, 10, 10]) == 21", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 7, 4]) == 28", "assert find_sum([1, 8, 2, 3, 4, 1, 5, 1, 2, 3, 4, 5]) == 23", "assert find_sum([1, 8, 2, 3, 4, 1, 5, 1, 2, 3, 4, 5, 4]) == 23", "assert find_sum([1, 2, 3, 4, 1, 5, 1, 2, 3, 4, 5, 4]) == 15", "assert find_sum([-2, -3, -1, -1, -4, 0, -5, -8, -6]) == -29", "assert find_sum([1, 9, 2, 3, 4, 5, 6, 7, 8, 9, 10]) == 55", "assert find_sum([8, 9, 10, 10, 10, 10, 10, 10, 10, 11]) == 38", "assert find_sum([10, 0, 0, 0, 0, 0, 0, 0]) == 10", "assert find_sum([1, 8, 2, 3, 1, 5, 0, 2, 3, 4, 5, 4]) == 23", "assert find_sum([-5, -4, -5, -5, -5, -5, -5, -5, -5, -5]) == -9", "assert find_sum([-5, -4, -5, -5, -5, 0, -5, -5, -4]) == -9", "assert find_sum([-5, -4, -5, -5, -5, -5, -5, -5, 5, -5, -5]) == -4", "assert find_sum([1, -2, 3, 4, -5, 6, 7, -8, 9, 10, -2, 9]) == 25", "assert find_sum([1, 8, 2, 3, 4, 1, 5, 1, 2, 3, 4, 5, 4, 3, 4]) == 23", "assert find_sum([1, 2, 3, 4, 1, 5, 1, 3, 4, 5, 4]) == 15", "assert find_sum([-2, -3, -1, -1, -4, 0, -5, -8]) == -23", "assert find_sum([1, 8, 2, 3, 4, 1, 5, 1, 3, 4, 5, 4]) == 23", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 7, 4, 5]) == 28", "assert find_sum([1, 8, 2, 3, 1, 5, 1, 2, 3, 4, 5, 4, 3, 4, 1, 5]) == 23", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 3, 7, 5]) == 28", "assert find_sum([9, 10, 10, 10, 10, 10, 10, 10, 11, 10, 10]) == 30", "assert find_sum([8, 9, 10, 10, 10, 10, 10, 10, 11]) == 38", "assert find_sum([1, 8, 2, 4, 1, 5, 2, 1, 3, 4, 5, 4]) == 23", "assert find_sum([9, 10, 10, 10, 10, 10, 10, 10, 11, 10, 10, 10]) == 30", "assert find_sum([-1, -2, -3, -1, -1, -5, -6, -1]) == -17", "assert find_sum([8, 2, 3, 4, 1, 5, 1, 2, 3, 4, 5, 4, 3, 4, 1]) == 23", "assert find_sum([8, 9, 10, 10, -2, 10, 10, 10, 11, 11]) == 36", "assert find_sum([-6, 2, 3, 4, 5, 1, 2, 3, 4, 5]) == 9", "assert find_sum([8, 10, 10, 10, 9, 10, 10, 10, 11]) == 38", "assert find_sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 6]) == 55", "assert find_sum([-1, 3, -3, -1, -1, -4, -5, -6]) == -16", "assert find_sum([9, 10, 10, 10, 10, 10, 10, 10, 11, 10, 10, 6, 10]) == 36", "assert find_sum([1, -2, 3, 4, -5, 6, 7, -8, 9, 10, -2, 9, 1]) == 25", "assert find_sum([-5, -4, -5, -5, -5, -5, -5, -5, 5, -5, -5, -5]) == -4", "assert find_sum([-3, -6, 2, 3, 4, 5, 1, 2, 3, 4, 5]) == 6", "assert find_sum([-3, -6, 3, 3, 4, 5, 1, 2, 3, 4, 5]) == 6", "assert find_sum([1, 8, 2, 3, 1, 5, 1, 2, 3, 4, 5, 4]) == 23", "assert find_sum([-1, -2, -3, -1, 0, -5, -6, -1]) == -17", "assert find_sum([-6, 2, 3, 4, 5, 2, 4, 4, 5]) == 8", "assert find_sum([-5, -4, -5, -5, -5, -5, -4, -5, 5, -5, -5, -5]) == -4", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 7, 2]) == 28", "assert find_sum([-6, 2, 9, 3, 4, 2, 4, 4, 5]) == 17", "assert find_sum([1, 8, 2, 3, 4, 1, 5, 1, 2, 3, 5, 4]) == 23", "assert find_sum([-5, -5, -5, -5, -5, -5, -5, -5]) == -5", "assert find_sum([-3, -6, 3, 3, 4, 5, 1, 2, 4, 5]) == 6", "assert find_sum([5, 2, 3, 1, 4, 5, 7, 6, 7, 2]) == 28", "assert find_sum([7, 8, 10, 10, 10, 9, 10, 10, 10, 11, 10, 7]) == 45", "assert find_sum([-6, 2, 9, 3, 4, 2, 4, 5]) == 17", "assert find_sum([2, 3, 1, 4, 5, 2, 6, 3, 7, 5]) == 28", "assert find_sum([-3, -6, 3, 4, 3, 5, 1, 2, 3, 4, 5]) == 6", "assert find_sum([1, -2, 3, 4, -5, 6, 7, -8, 9, 10, -2, 9, -5]) == 25", "assert find_sum([2, 3, 1, 4, 5, 2, 6, 3, 5]) == 21", "assert find_sum([10, 0, 0, 0, 0, 0, 0, 0, 0]) == 10", "assert find_sum([8, 9, 10, 10, 10, 10, 11, 10, 11]) == 38", "assert find_sum([9, 10, 10, 10, 10, 10, 10, 11, 10, 10, 10, 10]) == 30", "assert find_sum([9, 10, 10, -4, 10, 10, 10, 10, 10, 11, 10, 10, 6, 10]) == 32", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 7, 4, 3]) == 28", "assert find_sum([-3, -6, 3, 3, 4, 5, 1, 2, 4, 5, 2, 5, 5]) == 6", "assert find_sum([-3, -6, 3, 3, 4, 5, 1, 0, 2, 3, 5]) == 6", "assert find_sum([8, 9, 10, 10, 10, 11, 10, 11]) == 38", "assert find_sum([1, 8, 2, 3, 4, 1, 5, 1, 3, 5, 4]) == 23", "assert find_sum([-1, -2, -3, -1, -1, -4, 6, -5, -6]) == -15", "assert find_sum([-6, 2, 9, 3, 4, 2, 5]) == 17", "assert find_sum([8, 2, 3, 4, 5, 1, 10, 3, 4, 5]) == 33", "assert find_sum([1, 8, 2, 4, 1, 5, 2, 1, 3, 5, 5, 4]) == 23", "assert find_sum([1, 8, 2, 3, 1, 5, 1, 2, 3, 4, 5, 4, 5]) == 23", "assert find_sum([1, -2, 3, 4, -5, 6, 7, 9, 10, -2, 9]) == 33", "assert find_sum([9, 10, 10, 10, 10, 10, 10, 11, 10, 10, 10, 9, 10, 10]) == 30", "assert find_sum([8, 2, 3, 4, 1, 5, 1, 2, 3, 4, 5, 4, 3, 4, 1, 1]) == 23", "assert find_sum([-4, -6, 2, 3, 4, 5, 1, 2, 3, 4, 5]) == 5", "assert find_sum([10, 10, 10, 11, 11, 10, 10, 10, 10, 10, 10, 10, 10, 10]) == 21", "assert find_sum([8, 10, 10, -2, 10, 10, 10, 11, 11, -2]) == 27", "assert find_sum([5, 2, 3, 1, 4, 5, 7, 1, 6, 7, 2]) == 28", "assert find_sum([1, 8, 2, 2, 3, 1, 5, 1, 2, 3, 4, 5, 4, 3, 4, 1, 5]) == 23", "assert find_sum([1, 10, 10, 10, 11, 11, 10, 10, 10, 10, 10, 10, 10, 10, 10]) == 22", "assert find_sum([1, 8, 2, 3, 1, 5, 0, 2, 3, 4, -1, 5, 4]) == 22", "assert find_sum([1, 8, 2, 3, 1, 5, 1, 2, 3, 4, 5, 4, 3, 4, 1, 5, 5]) == 23", "assert find_sum([8, 2, 3, 4, 1, 5, 2, 1, 2, 3, 4, 5, 4, 3, 4, 1, 1, 4]) == 23", "assert find_sum([1, 8, 2, 3, 1, 5, 0, 2, 3, -1, 5, 4]) == 22", "assert find_sum([1, 2, 3, -6, 5, 1, 2, 3, 4, 4]) == 9", "assert find_sum([1, 8, 2, 3, 1, 5, 2, 3, 4, -1, 5, 4]) == 22", "assert find_sum([1, 9, 2, 3, 4, 5, 6, 7, 8, 9, 10, 2]) == 55", "assert find_sum([1, 8, 2, 4, 1, 5, 2, 3, 4, -1, 5, 4, 4]) == 22", "assert find_sum([-1, 3, -3, -1, -2, -4, -5, -6]) == -18", "assert find_sum([5, 2, 3, 4, 5, 2, 6, 7, 4, 5]) == 27", "assert find_sum([1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 3, 6, 9]) == 55", "assert find_sum([8, 10, 10, 10, 9, 9, 10, 10, 12]) == 39", "assert find_sum([5, 2, 3, 4, 5, 2, 6, 7, 4]) == 27", "assert find_sum([1, 8, 2, 3, 5, 0, 2, 3, 4, 5, 4]) == 23", "assert find_sum([1, -2, 3, 4, -5, 6, 7, 8, 9, 10, -2, 9]) == 41", "assert find_sum([5, 2, 4, 1, 4, 5, 2, 6, -5, 7, 5]) == 20", "assert find_sum([6, -3, -1, -1, -4, 0, -5, -8, -6]) == -21", "assert find_sum([5, 2, 3, 1, 4, 5, 2, 6, 7, 4, 3, 2, 2]) == 28", "assert find_sum([-3, -6, 3, 3, 4, 5, 1, 0, 2, 3]) == 6", "assert find_sum([1, 8, 2, 2, 3, 4, 1, 5, 1, 3, 5, 4]) == 23", "assert find_sum([9, 10, 10, 10, 10, 10, 11, 10, 10, 11, 10, 10, 10, 10, 11]) == 30", "assert find_sum([3, -3, -6, 3, 3, 4, 5, 1, 0, 2, 3, 5, 3]) == 6" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to pack consecutive duplicates of a given list elements into sublists.\nassert pack_consecutive_duplicates([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4])==[[0, 0], [1], [2], [3], [4, 4], [5], [6, 6, 6], [7], [8], [9], [4, 4]]\nYour code should pass the test:\nassert pack_consecutive_duplicates([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4])==[[0, 0], [1], [2], [3], [4, 4], [5], [6, 6, 6], [7], [8], [9], [4, 4]]", "test_list": [ "assert pack_consecutive_duplicates([0, 0, 1, 2, 3, 4, 4, 5, 6, 6, 6, 7, 8, 9, 4, 4])==[[0, 0], [1], [2], [3], [4, 4], [5], [6, 6, 6], [7], [8], [9], [4, 4]]", "assert pack_consecutive_duplicates([10, 10, 15, 19, 18, 18, 17, 26, 26, 17, 18, 10])==[[10, 10], [15], [19], [18, 18], [17], [26, 26], [17], [18], [10]]", "assert pack_consecutive_duplicates(['a', 'a', 'b', 'c', 'd', 'd'])==[['a', 'a'], ['b'], ['c'], ['d', 'd']]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the combinations of sums with tuples in the given tuple list. \nassert find_combinations([(2, 4), (6, 7), (5, 1), (6, 10)]) == [(8, 11), (7, 5), (8, 14), (11, 8), (12, 17), (11, 11)]\nYour code should pass the test:\nassert find_combinations([(1, 2, 3), (3, 4, 5)]) == [(4, 6, 8)]", "test_list": [ "assert find_combinations([(1, 2, 3), (3, 4, 5)]) == [(4, 6, 8)]", "assert find_combinations([(2, 4), (6, 7), (5, 1), (6, 10)]) == [(8, 11), (7, 5), (8, 14), (11, 8), (12, 17), (11, 11)]", "assert find_combinations([(3, 5), (7, 8), (6, 2), (7, 11)]) == [(10, 13), (9, 7), (10, 16), (13, 10), (14, 19), (13, 13)]", "assert find_combinations([(4, 6), (8, 9), (7, 3), (8, 12)]) == [(12, 15), (11, 9), (12, 18), (15, 12), (16, 21), (15, 15)]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the count of divisors is even. \nassert count_divisors(10)\nYour code should pass the test:\nassert count_divisors(10)", "test_list": [ "assert count_divisors(10)", "assert not count_divisors(100)", "assert count_divisors(125)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of all odd length subarrays. \nassert odd_length_sum([1,2,4]) == 14\nYour code should pass the test:\nassert odd_length_sum([1,2,4]) == 14", "test_list": [ "assert odd_length_sum([1,2,4]) == 14", "assert odd_length_sum([1,2,1,2]) == 15", "assert odd_length_sum([1,7]) == 8", "assert odd_length_sum([4, 3, 2, 1, 9, 10, 7]) == 218", "assert odd_length_sum([0, -1, 5, 10, -3, 2, 8, -6, 4]) == 212", "assert odd_length_sum([-10, -20, -30, -40, -50, -60]) == -980", "assert odd_length_sum([-5, -3, -2, -1, -4, -9, -6, -7, -8]) == -405", "assert odd_length_sum([]) == 0", "assert odd_length_sum([71, -68, 32, -50, -6, 70, -24, 86, -30]) == 599", "assert odd_length_sum([0, -1, 5, 10, -3, 2, 8, 9, -6, 4]) == 362", "assert odd_length_sum([-10, -20, -3, -40, -50, -60]) == -818", "assert odd_length_sum([4, 3, 2, 1, 9, 10, 7, 3]) == 306", "assert odd_length_sum([-5, -3, -2, -1, -4, -6, -7, -8]) == -244", "assert odd_length_sum([-5, -2, -2, -1, -4, -6, -7, -8, -5]) == -365", "assert odd_length_sum([4, 3, 2, 1, 9, 10, 10, 7, 2]) == 491", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 9, -6, 4]) == 307", "assert odd_length_sum([0, -1, 5, 10, -4, 2, 8, -6, 4, -6]) == 207", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 9, -6, 4, 2]) == 373", "assert odd_length_sum([-2, 0, 21, 70, -5, -9, -7, -60]) == 461", "assert odd_length_sum([71, -2, 0, 21, 70, -5, -9, -6, -60, 70]) == 1218", "assert odd_length_sum([0, 9, 5, 10, -3, 2, 8, 9, -6, 4, 2]) == 558", "assert odd_length_sum([0, 9, 5, 10, 2, 8, 9, -6, 4, 2, 2]) == 654", "assert odd_length_sum([0, -1, 5, 10, -3, 2, 8, -6]) == 158", "assert odd_length_sum([71, 21, 0, 21, 70, -5, -9, -6, -60, 70]) == 1425", "assert odd_length_sum([4, 3, 2, 1, 9, 10, 7, 4]) == 310", "assert odd_length_sum([0, 9, 5, 10, 2, 8, 9, -6, 4, 2, 2, 9, -6]) == 944", "assert odd_length_sum([0, 9, 5, 10, 2, 8, 9, 4, 2, 2]) == 633", "assert odd_length_sum([-2, 0, 21, -9, -7, -60]) == -149", "assert odd_length_sum([-5, -3, -2, -1, -3, -7, -6, -7, -8, -1]) == -485", "assert odd_length_sum([4, 3, 2, 1, 9, -4, 10, 7, 2, 2]) == 412", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 10, -6, 4, 2, 2]) == 494", "assert odd_length_sum([0, 5, -3, 2, 8, 10, -6, 4, 2, 2]) == 299", "assert odd_length_sum([-5, -3, -7, -1, -3, -7, -6, -7, -8, -1]) == -545", "assert odd_length_sum([-20, -3, -40, -50, -60]) == -652", "assert odd_length_sum([False, True, False]) == 2", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 10, -6, 4, 2, 2, 8]) == 621", "assert odd_length_sum([-5, -3, -2, -1, -3, -7, -6, -7, -8, -1, -7]) == -668", "assert odd_length_sum([4, 3, 2, 9, 10, 7, 3]) == 256", "assert odd_length_sum([-5, -2, 2, -2, -1, -4, -6, 70, -7, -8, -5]) == 660", "assert odd_length_sum([8, 4, 3, 2, 1, 9, 10, 7, 4]) == 436", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 9, -7, 4, 2]) == 361", "assert odd_length_sum([-5, -2, 2, -1, -4, -6, 70, -7, -24, -5, -2]) == 532", "assert odd_length_sum([8, 4, 3, 2, 1, 9, 10, 7, 8, 4]) == 606", "assert odd_length_sum([-60, 3, 2, 1, 9, 10, 7, 3]) == 50", "assert odd_length_sum([-5, -3, -7, -1, -3, -7, -6, -7, -8, -1, -7]) == -738", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 10, -6, 4, 2, 2, 8, 5]) == 811", "assert odd_length_sum([4, 3, -2, 2, 1, 9, 10, 7, 3]) == 348", "assert odd_length_sum([True, True]) == 2", "assert odd_length_sum([0, 9, 5, 10, 9, 4, 2, 2]) == 356", "assert odd_length_sum([-5, -3, -2, -1, -3, 21, -7, -6, -7, -8, -1, -2, -3]) == -392", "assert odd_length_sum([0, -1, 5, -3, 2, 8, 9, -6, 4]) == 204", "assert odd_length_sum([-5, -3, -7, -1, -3, 3, -7, -6, -7, -8, -1, -7]) == -749", "assert odd_length_sum([0, -1, 5, 10, 2, 8, -6, 4, -6, -6]) == 221", "assert odd_length_sum([-5, -3, -7, 0, -7, -6, -7, -8, -1, -7]) == -569", "assert odd_length_sum([0, 5, 4, 10, -3, 2, 8, 9, -6, 4, 2]) == 504", "assert odd_length_sum([8, 4, 3, 2, 1, 9, 7, -60]) == 7", "assert odd_length_sum([-5, -3, -1, -3, -7, -6, -7, -8, -1]) == -405", "assert odd_length_sum([8, 4, 3, 2, 1, 8, 10, 7, 3]) == 419", "assert odd_length_sum([0, 9, 5, 10, 2, 8, 9, -6, 4, 2, -1]) == 636", "assert odd_length_sum([False]) == 0", "assert odd_length_sum([-5, -3, -3, -1, -3, 21, -7, -6, -7, -8, -1, -2, -3, -7]) == -557", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 9, -7, 4, 2, 4, 0]) == 554", "assert odd_length_sum([False, True, True, True, True]) == 16", "assert odd_length_sum([0, 9, -1, 5, 10, -3, 2, 8, -6, 4]) == 334", "assert odd_length_sum([0, -1, 5, 10, 2, 8, 4, -6, -6]) == 255", "assert odd_length_sum([0, 9, 5, 10, 2, 8, 9, -6, 4, 2, -1, 5]) == 752", "assert odd_length_sum([-5, -3, -2, -1, -3, -7, -4, -6, -7, -8, -1]) == -636", "assert odd_length_sum([-5, -3, -2, -1, -3, -7, -6, -7, 86, -1]) == 361", "assert odd_length_sum([4, 3, 2, 5, 9, 10, -20, 4]) == 161", "assert odd_length_sum([-60, 3, 2, 1, 9, 10, -2, 3]) == -13", "assert odd_length_sum([0, 9, 5, -5, 10, -3, 2, 8, 9, -6, 4, 2]) == 551", "assert odd_length_sum([4, 3, 1, 9, 7, 3]) == 131", "assert odd_length_sum([71, 86, -68, 32, -50, 70, -6, 70, -24, 86, 10, -24]) == 3496", "assert odd_length_sum([-5, 8, -3, -7, -1, -3, -7, -6, -7, -8, -1, -7]) == -762", "assert odd_length_sum([0, 9, 5, 10, -3, 2, 8, 9, -6, 4, 2, 0]) == 658", "assert odd_length_sum([-5, -3, -2, -1, -3, -7, -6, -7, 86, 87, -1]) == 1564", "assert odd_length_sum([4, -50, 2, 1, 9, 10, 7, 9, 7]) == 75", "assert odd_length_sum([0, 9, 5, 10, -1, 2, 8, 9, -6, 4, 2, -1]) == 692", "assert odd_length_sum([-10, -20, -30, -50, -60]) == -640", "assert odd_length_sum([-2, 1, 0, 21, -9, -7, -60, 1]) == -360", "assert odd_length_sum([0, 9, 5, 10, 2, 1, 8, 9, 4, 2, 2]) == 750", "assert odd_length_sum([False, True, True, True]) == 8", "assert odd_length_sum([8, 4, 3, 2, 1, 32, 9, 10, 7, 4, 7]) == 1258", "assert odd_length_sum([-20, -3, -40, -50, -40, -60]) == -995", "assert odd_length_sum([-5, -3, -7, 0, -7, -6, -7, -6, -8, -1, -7]) == -778", "assert odd_length_sum([0, 5, 1, 10, -3, 2, 8, 10, -6, 4, 2, 2, 8, 5, 2]) == 1160", "assert odd_length_sum([0, 9, 5, 9, 4, 2, 3, -3, 2]) == 330", "assert odd_length_sum([4, 3, 2, 1, 9, 10, -2, 3]) == 243", "assert odd_length_sum([-5, 86, -3, -2, -1, -3, -7, -6, -7, -4, 86, -1]) == 1239", "assert odd_length_sum([-20, -4, -40, -50, -60]) == -656", "assert odd_length_sum([-2, 0, 21, -9, -7, -60, 1]) == -324", "assert odd_length_sum([87, 0, 9, -1, 5, 10, -3, 2, 8, -6, 4]) == 956", "assert odd_length_sum([0, 9, 5, 10, 70, 2, 8, 9, -6, 4, 2, 2, 2]) == 2481", "assert odd_length_sum([-5, -3, -7, 0, -7, -6, -7, -7, 0, -8, -1, -7]) == -894", "assert odd_length_sum([False, True, True, False, True]) == 12", "assert odd_length_sum([-5, 21, 8, -3, -7, -1, -3, -7, -6, -7, -8, -1, -7]) == -610", "assert odd_length_sum([8, 4, 3, 2, 1, 32, 9, 10, 4, 7]) == 952", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 10, -6, 4, 4, 2, 3, 8, -60, 5, 2]) == 144", "assert odd_length_sum([71, 0, 70, -5, -9, -6, -60, 70]) == 580", "assert odd_length_sum([-5, -3, -1, -2, -1, -4, -6, -7, -8]) == -307", "assert odd_length_sum([0, 5, 10, -3, 2, 8, 9, 9, -6, 4, 2]) == 596", "assert odd_length_sum([0, 9, 5, 10, 2, 1, 8, 9, 4, -9, 2, 9]) == 776", "assert odd_length_sum([0, 5, -2, 5, -3, 2, 8, 9, -6, 4]) == 262", "assert odd_length_sum([8, 4, 3, 2, 1, 9, 7, -60, 2]) == -143", "assert odd_length_sum([0, 9, 5, 10, 2, 3, 8, 9, -6, 4, 2, -1]) == 773", "assert odd_length_sum([71, 5, 21, 70, -5, -9, -6, -60, 70, -5]) == 1223", "assert odd_length_sum([-5, -3, -2, -1, -3, -2, -4, -6, -7, -8, -1, -8]) == -722", "assert odd_length_sum([4, -50, 2, 1, 9, 9, 7, 9, 7]) == 63" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the product of first even and odd number of a given list.\nassert mul_even_odd([1,3,5,7,4,1,6,8])==4\nYour code should pass the test:\nassert mul_even_odd([1,3,5,7,4,1,6,8])==4", "test_list": [ "assert mul_even_odd([1,3,5,7,4,1,6,8])==4", "assert mul_even_odd([1,2,3,4,5,6,7,8,9,10])==2", "assert mul_even_odd([1,5,7,9,10])==10", "assert mul_even_odd([-10, -5, 0, 5, 10]) == 50", "assert mul_even_odd([0, 1, -1, 2, -2, 3, -3]) == 0", "assert mul_even_odd([-10, -5, 0, 5, 10, 0]) == 50", "assert mul_even_odd([0, 0, 1, -1, 2, -2, 3, -3]) == 0", "assert mul_even_odd([-10, -5, 0, 5, 10, -2, 0]) == 50", "assert mul_even_odd([0, 0, 1, -1, 2, -2, 3, -3, -3]) == 0", "assert mul_even_odd([0, 1, 1, -1, 2, -2, 3, -3]) == 0", "assert mul_even_odd([-10, -1, 0, 5, 10, 0]) == 10", "assert mul_even_odd([0, 1, -1, 2, 3, -3, -3]) == 0", "assert mul_even_odd([0, 0, 1, -1, 2, -2, 3, -3, 3]) == 0", "assert mul_even_odd([0, 0, 1, 2, -2, 3, -3, -3]) == 0", "assert mul_even_odd([-10, -1, 0, 5, 10, 0, 5]) == 10", "assert mul_even_odd([0, 1, 2, -2, 3, -3, -3]) == 0", "assert mul_even_odd([0, 0, 1, -1, 2, -2, 3, -3, -3, 2]) == 0", "assert mul_even_odd([0, 1, 2, -2, -3, -3]) == 0", "assert mul_even_odd([-10, -1, 0, 5, 10, 0, 5, -10]) == 10", "assert mul_even_odd([-10, -5, 0, -10, -1, 10, -2, 0]) == 50", "assert mul_even_odd([1, 2, -2, 3, -3, -3]) == 2", "assert mul_even_odd([-10, -5, 0, 1, 10]) == 50", "assert mul_even_odd([0, 0, 1, -1, -2, 3, -3, -3, 2]) == 0", "assert mul_even_odd([0, 0, 1, -1, 2, -2, 3, -3, -3, 2, -3]) == 0", "assert mul_even_odd([-10, -1, 0, 5, -2, 10, 0, 5, -10, -1]) == 10", "assert mul_even_odd([-10, -5, 10, 0, -10, -1, 10, -2]) == 50", "assert mul_even_odd([0, 1, 1, -1, -10, 3, -3, 3, 3]) == 0", "assert mul_even_odd([-5, 0, 10, 1, 10]) == 0", "assert mul_even_odd([-10, 3, 0, 1, 10]) == -30", "assert mul_even_odd([-2, -10, -5, 0, 5, 10]) == 10", "assert mul_even_odd([1, 2, -2, 3, -3]) == 2", "assert mul_even_odd([-10, -5, -1, 5, 11, 10, 1]) == 50", "assert mul_even_odd([0, 3, 1, -1, 2, -2, 3, -3, 3, -1]) == 0", "assert mul_even_odd([-10, -1, 0, 5, 10, 0, 5, -10, -10]) == 10", "assert mul_even_odd([-10, -1, 0, 5, 10, 0, 5, -10, -1]) == 10", "assert mul_even_odd([-10, -5, -2, 5, 10, 0]) == 50", "assert mul_even_odd([-10, -5, -1, 5, 11, 10, 1, 1]) == 50", "assert mul_even_odd([-10, -5, -1, 11, 10, 1, -1]) == 50", "assert mul_even_odd([-10, 0, 5, 10, 0, 0]) == -50", "assert mul_even_odd([0, 1, -1, 2, 3, -4, -3]) == 0", "assert mul_even_odd([-5, 0, 10, 1, -2, 10]) == 0", "assert mul_even_odd([0, 0, 0, -1, 2, -2, 3, -3]) == 0", "assert mul_even_odd([0, 0, 1, 2, -2, 3, -3, -3, 2]) == 0", "assert mul_even_odd([0, 1, -1, 2, 3, 5, -3]) == 0", "assert mul_even_odd([-10, 2, 0, 5, -2, 10, 0, 5, -10, -1]) == -50", "assert mul_even_odd([0, 0, -10, -1, 2, -2, 3, -3, 3]) == 0", "assert mul_even_odd([0, 0, 1, -1, 2, -2, 3, -3, -1, -3, 2, -3]) == 0", "assert mul_even_odd([-10, -5, 0, 10, 5, 10, 10, 10]) == 50", "assert mul_even_odd([0, 1, 2, -1, -3, -3]) == 0", "assert mul_even_odd([-10, -5, 0, -10, -1, 10, 11, -2, 0]) == 50", "assert mul_even_odd([0, 1, -1, 2, -2, 3, -3, 0]) == 0", "assert mul_even_odd([0, 1, 2, -1, -3]) == 0", "assert mul_even_odd([0, 1, -1, 2, 3, 11, 5, -3]) == 0", "assert mul_even_odd([-10, -5, -1, 11, 1, 10, 1]) == 50", "assert mul_even_odd([-10, -5, -10, -1, 10, -2, 0, -10]) == 50", "assert mul_even_odd([0, 0, -1, 2, -2, 3, -4]) == 0", "assert mul_even_odd([0, 1, -1, 2, -2, -4, -3, -4]) == 0", "assert mul_even_odd([-5, 10, 0, -10, -1, 10, -2]) == -50", "assert mul_even_odd([-2, -10, -5, 0, 5, 10, -2]) == 10", "assert mul_even_odd([-5, 0, 5, -2, 0]) == 0", "assert mul_even_odd([1, 2, -2, -3, -3]) == 2", "assert mul_even_odd([0, -1, 2, 3, 11, 5, -3]) == 0", "assert mul_even_odd([0, 1, 2, -2, 3, -3, -3, 2, 2]) == 0", "assert mul_even_odd([0, 0, 2, -1, 5, -3, -3, 2, 3]) == 0", "assert mul_even_odd([0, 0, 0, -1, 2, -2, -3]) == 0", "assert mul_even_odd([-10, -5, -1, 5, 11, 10]) == 50", "assert mul_even_odd([-4, -10, 0, 1, 1, -1, -10, 3, -3, 3, 3]) == -4", "assert mul_even_odd([-10, -5, 0, 5, 2]) == 50", "assert mul_even_odd([-1, 1, -1, 2, 3, -4, -3]) == -2", "assert mul_even_odd([-10, -5, 0, 5, -5, 0]) == 50", "assert mul_even_odd([0, 0, -1, 2, -2, 3, -4, 0]) == 0", "assert mul_even_odd([-10, 0, 5, 10, 0, 0, 10]) == -50", "assert mul_even_odd([-2, -10, -5, 0, 5, 10, -5]) == 10", "assert mul_even_odd([-10, -1, 0, 5, 10, 0, 1, -10, -10]) == 10", "assert mul_even_odd([-10, 0, 5, 10]) == -50", "assert mul_even_odd([-10, 10, 0, -10, -1, 10, -2]) == 10", "assert mul_even_odd([0, 2, -1, 1, -3]) == 0", "assert mul_even_odd([0, 2, -1, 2, -1, 3, 11, 5, -3]) == 0", "assert mul_even_odd([-5, 0, 1, -2, 10]) == 0", "assert mul_even_odd([0, 0, -1, 2, -2, 3, -4, -2]) == 0", "assert mul_even_odd([-4, -10, -5, 0, 5, 10, -10]) == 20", "assert mul_even_odd([0, 1, -1, 2, 3, 5, -3, 0, -3]) == 0", "assert mul_even_odd([-10, -5, -1, 5, 11, 0, 1, 1, 11]) == 50", "assert mul_even_odd([-1, 0, 2, -1, 5, -3, -3, 2, 3]) == 0", "assert mul_even_odd([0, 1, 2, -2, 3, -3, -3, 3]) == 0", "assert mul_even_odd([-10, 1, -5, 0, 10, 5, 10, 10, 10]) == -10", "assert mul_even_odd([0, 1, 1, -1, 2, -2, 3, -3, -3]) == 0", "assert mul_even_odd([-5, 0, -10, -1, 10, -2]) == 0", "assert mul_even_odd([-4, 0, 1, 2, -2, -3, -3]) == -4", "assert mul_even_odd([-10, -5, 0, -1, 10, 11, 3, 0]) == 50", "assert mul_even_odd([-11, -5, -1, 5, 6, 9, 11, 10, 1, 1, 1]) == -66", "assert mul_even_odd([-4, -5, 0, 5, 10, -10]) == 20", "assert mul_even_odd([-10, 3, -1, 5, 11, 10]) == -30", "assert mul_even_odd([-5, -1, 5, 11, 10, -11, 1, 1]) == -50", "assert mul_even_odd([-10, -5, 4, -2, 5, 10, 0]) == 50", "assert mul_even_odd([-2, -10, -5, 0, 5, 10, -5, 10]) == 10", "assert mul_even_odd([0, 1, 1, 2, -2, 3, -3, -3]) == 0", "assert mul_even_odd([-10, -5, -1, 5, 11, -1, 1, 1, 11]) == 50", "assert mul_even_odd([-10, 1, 0, 10, 5, 10, 10, 10]) == -10", "assert mul_even_odd([-10, -5, -1, 5, 11, -1, 1, 1, 1, 11]) == 50", "assert mul_even_odd([0, 1, -1, 2, 3, -4, -3, 3]) == 0", "assert mul_even_odd([0, 0, 2, -1, 5, -3, -3, 3]) == 0", "assert mul_even_odd([-4, -10, -5, 0, 5, 10, -10, -5]) == 20", "assert mul_even_odd([-1, 1, -1, 3, -4, -3]) == 4", "assert mul_even_odd([-2, -10, -5, 0, 5, 10, -2, -2]) == 10" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert tuple string to integer tuple.\nassert tuple_str_int(\"(7, 8, 9)\") == (7, 8, 9)\nYour code should pass the test:\nassert tuple_str_int(\"(7, 8, 9)\") == (7, 8, 9)", "test_list": [ "assert tuple_str_int(\"(7, 8, 9)\") == (7, 8, 9)", "assert tuple_str_int(\"(1, 2, 3)\") == (1, 2, 3)", "assert tuple_str_int(\"(4, 5, 6)\") == (4, 5, 6)", "assert tuple_str_int(\"(7, 81, 19)\") == (7, 81, 19)", "assert tuple_str_int('(1000000, 2000000, 3000000)') == (1000000, 2000000, 3000000)", "assert tuple_str_int('(999999, 888888, 777777)') == (999999, 888888, 777777)", "assert tuple_str_int('(123456789, 987654321, 1111111111)') == (123456789, 987654321, 1111111111)", "assert tuple_str_int('(1, 2, 3, 4, 5, 6, 7, 8, 9, 10)') == (1, 2, 3, 4, 5, 6, 7, 8, 9, 10)", "assert tuple_str_int('(11, 22, 33, 44, 55, 66, 77, 88, 99, 100)') == (11, 22, 33, 44, 55, 66, 77, 88, 99, 100)", "assert tuple_str_int('(1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000, 10000)') == (1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000, 10000)", "assert tuple_str_int('((7, 8, 9)') == (7, 8, 9)", "assert tuple_str_int('(7, 8, 9))') == (7, 8, 9)", "assert tuple_str_int('(1 , 2 , 3)') == (1, 2, 3)", "assert tuple_str_int('(1000000, 2000000, 30000000)') == (1000000, 2000000, 30000000)", "assert tuple_str_int('(100)') == (100,)", "assert tuple_str_int('(1000000000, 2000000000, 3000000000)') == (1000000000, 2000000000, 3000000000)", "assert tuple_str_int('(10, 20, 30, 40)') == (10, 20, 30, 40)", "assert tuple_str_int('(100, 200, 300, 400, 500, 600)') == (100, 200, 300, 400, 500, 600)", "assert tuple_str_int('(1, 2, 3, 4, 5, 6, 7, 8, 9)') == (1, 2, 3, 4, 5, 6, 7, 8, 9)", "assert tuple_str_int('(9, 8, 7, 6, 5, 4, 3, 2, 1)') == (9, 8, 7, 6, 5, 4, 3, 2, 1)", "assert tuple_str_int('(1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000)') == (1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000)", "assert tuple_str_int('(10, 600)') == (10, 600)", "assert tuple_str_int('(123456789, 98765411111)') == (123456789, 98765411111)", "assert tuple_str_int('(100, 600)') == (100, 600)", "assert tuple_str_int('(10, 600)') == (10, 600)", "assert tuple_str_int('(1 , 2, 3)') == (1, 2, 3)", "assert tuple_str_int('(1, 3)') == (1, 3)", "assert tuple_str_int('(10, 2000000000, 3000000000)') == (10, 2000000000, 3000000000)", "assert tuple_str_int('(10000000, 2000000, 30000000)') == (10000000, 2000000, 30000000)", "assert tuple_str_int('(1000)') == (1000,)", "assert tuple_str_int('(7, 8, 940)') == (7, 8, 940)", "assert tuple_str_int('(1 , 22 , 3)') == (1, 22, 3)", "assert tuple_str_int('(10, 20000000000, 3000000000)') == (10, 20000000000, 3000000000)", "assert tuple_str_int('((10, 600)') == (10, 600)", "assert tuple_str_int('(100, 200, 300, 4000, 500, 600)') == (100, 200, 300, 4000, 500, 600)", "assert tuple_str_int('(1000000000, 20000000, 3000000000)') == (1000000000, 20000000, 3000000000)", "assert tuple_str_int('(100000000, 2000000, 30000000)') == (100000000, 2000000, 30000000)", "assert tuple_str_int('(7, 8, 9 ))') == (7, 8, 9)", "assert tuple_str_int('(100000000, 20000000, 300030000)') == (100000000, 20000000, 300030000)", "assert tuple_str_int('(1 , 22 , 3)') == (1, 22, 3)", "assert tuple_str_int('(10, 20000000000, 300000000)') == (10, 20000000000, 300000000)", "assert tuple_str_int('(10, 2000002000, 3000000000)') == (10, 2000002000, 3000000000)", "assert tuple_str_int('(10, 200000000000, 300000000)') == (10, 200000000000, 300000000)", "assert tuple_str_int('(10, 200000000000, 3000000000)') == (10, 200000000000, 3000000000)", "assert tuple_str_int('(9999799, 888888, 777777)') == (9999799, 888888, 777777)", "assert tuple_str_int('(100, 200, 300, 4000, 0500, 600)') == (100, 200, 300, 4000, 500, 600)", "assert tuple_str_int('(1723456789, 98765411111)') == (1723456789, 98765411111)", "assert tuple_str_int('(9999799, 8888888, 77777)') == (9999799, 8888888, 77777)", "assert tuple_str_int('(999999, 888888, 7787777)') == (999999, 888888, 7787777)", "assert tuple_str_int('(999999, 888888, 97787777)') == (999999, 888888, 97787777)", "assert tuple_str_int('(10, 2000000000, 30300000000)') == (10, 2000000000, 30300000000)", "assert tuple_str_int('(999999, 8787777)') == (999999, 8787777)", "assert tuple_str_int('(100, 200, 300, 4000, 000)') == (100, 200, 300, 4000, 0)", "assert tuple_str_int('(110, 600)') == (110, 600)", "assert tuple_str_int('(999999, 8888889, 777777)') == (999999, 8888889, 777777)", "assert tuple_str_int('(999999, 8888888, 7787777)') == (999999, 8888888, 7787777)", "assert tuple_str_int('(123456789, 998765411111)') == (123456789, 998765411111)", "assert tuple_str_int('(1 , 23, 3)') == (1, 23, 3)", "assert tuple_str_int('(10, 6600)') == (10, 6600)", "assert tuple_str_int('(10, 6000)') == (10, 6000)", "assert tuple_str_int('(9989999, 888888, 97787777)') == (9989999, 888888, 97787777)", "assert tuple_str_int('(10, 2000000000000, 300000000)') == (10, 2000000000000, 300000000)", "assert tuple_str_int('(100000, 3000000000)') == (100000, 3000000000)", "assert tuple_str_int('(1000, 200000, 5000, 6000, 7000, 08000, 9000, 10000)') == (1000, 200000, 5000, 6000, 7000, 8000, 9000, 10000)", "assert tuple_str_int('(1723456789, 998765411111)') == (1723456789, 998765411111)", "assert tuple_str_int('(1234561789, 98765411111)') == (1234561789, 98765411111)", "assert tuple_str_int('(1000, 2000, 3000, 4000, 5000, 6000, 70000, 8000, 9000, 10000)') == (1000, 2000, 3000, 4000, 5000, 6000, 70000, 8000, 9000, 10000)", "assert tuple_str_int('(1, 33)') == (1, 33)", "assert tuple_str_int('(9999799, 88888887)') == (9999799, 88888887)", "assert tuple_str_int('((1 , 22 , 3)') == (1, 22, 3)", "assert tuple_str_int('(10 , 600)') == (10, 600)", "assert tuple_str_int('(99899888888, 97787777)') == (99899888888, 97787777)", "assert tuple_str_int('(1 , 22 , 3)') == (1, 22, 3)", "assert tuple_str_int('(19000)') == (19000,)", "assert tuple_str_int('(100, 200, 300, 400, 500, 600)') == (100, 200, 300, 400, 500, 600)", "assert tuple_str_int('(156789, 998765411111)') == (156789, 998765411111)", "assert tuple_str_int('(10, 2000000000000, 3000000)') == (10, 2000000000000, 3000000)", "assert tuple_str_int('(1 , 3)') == (1, 3)", "assert tuple_str_int('(999999, 8888888, 97787777)') == (999999, 8888888, 97787777)", "assert tuple_str_int('(999999, 7787777)') == (999999, 7787777)", "assert tuple_str_int('(9999799, 88889888, 77777)') == (9999799, 88889888, 77777)", "assert tuple_str_int('(10000000, 2000000, 300000000)') == (10000000, 2000000, 300000000)", "assert tuple_str_int('(100000000, 2000000, 300000000)') == (100000000, 2000000, 300000000)", "assert tuple_str_int('(1 , 2 , 3)') == (1, 2, 3)", "assert tuple_str_int('(12345617819, 98765411111)') == (12345617819, 98765411111)", "assert tuple_str_int('(010, 20, 30, 40)') == (10, 20, 30, 40)", "assert tuple_str_int('(999999, 8898888, 777777)') == (999999, 8898888, 777777)", "assert tuple_str_int('(123456)') == (123456,)", "assert tuple_str_int('(9999799, 8888887)') == (9999799, 8888887)", "assert tuple_str_int('(9999799, 888898888, 77777)') == (9999799, 888898888, 77777)", "assert tuple_str_int('(999977)') == (999977,)", "assert tuple_str_int('(100000)') == (100000,)", "assert tuple_str_int('(999999, 77877777)') == (999999, 77877777)", "assert tuple_str_int('(9999799, 888898888, 777777)') == (9999799, 888898888, 777777)", "assert tuple_str_int('(010, 20, 30, 400)') == (10, 20, 30, 400)", "assert tuple_str_int('(7, 8 , 9))') == (7, 8, 9)", "assert tuple_str_int('(100010000000, 30000000)') == (100010000000, 30000000)", "assert tuple_str_int('(1723456789, 398765411111)') == (1723456789, 398765411111)", "assert tuple_str_int('(110, 600))') == (110, 600)", "assert tuple_str_int('(0100000)') == (100000,)", "assert tuple_str_int('(100000000, 2000000000000)') == (100000000, 2000000000000)", "assert tuple_str_int('(1, 2, 3, 4, 59, 6, 7, 8, 9)') == (1, 2, 3, 4, 59, 6, 7, 8, 9)", "assert tuple_str_int('(100, 2000000000, 3000000000)') == (100, 2000000000, 3000000000)", "assert tuple_str_int('(100, 2000, 300, 4000, 500, 600)') == (100, 2000, 300, 4000, 500, 600)", "assert tuple_str_int('(10, 020000000000, 300000000)') == (10, 20000000000, 300000000)", "assert tuple_str_int('(1000000)') == (1000000,)", "assert tuple_str_int('(1000800000, 2000000000000)') == (1000800000, 2000000000000)", "assert tuple_str_int('(1256789, 98765411111)') == (1256789, 98765411111)", "assert tuple_str_int('(1000000000, 2000000, 300000000)') == (1000000000, 2000000, 300000000)", "assert tuple_str_int('(999999, 778777772000000000000))') == (999999, 778777772000000000000)", "assert tuple_str_int('(1 , 23 )') == (1, 23)", "assert tuple_str_int('(1000, 2000, 30000, 4000, 5000, 6000, 7000, 8000, 9000)') == (1000, 2000, 30000, 4000, 5000, 6000, 7000, 8000, 9000)", "assert tuple_str_int('(9899999, 77877777)') == (9899999, 77877777)", "assert tuple_str_int('(100000000, 200000000, 300030000)') == (100000000, 200000000, 300030000)", "assert tuple_str_int('(1823456789, 9987654111811)') == (1823456789, 9987654111811)", "assert tuple_str_int('(9999799, 88888788, 77777)') == (9999799, 88888788, 77777)", "assert tuple_str_int('(9999799, 88887777)') == (9999799, 88887777)", "assert tuple_str_int('(12345619789, 98765411111)') == (12345619789, 98765411111)", "assert tuple_str_int('(9, 8, 7, 6, 5, 4, 3, 2, 1)') == (9, 8, 7, 6, 5, 4, 3, 2, 1)", "assert tuple_str_int('(1000, 2000, 3000, 4000, 5000, 6000, 70000, 8000, 9000, 1000)') == (1000, 2000, 3000, 4000, 5000, 6000, 70000, 8000, 9000, 1000)", "assert tuple_str_int('(9999799, 8888798888, 77777)') == (9999799, 8888798888, 77777)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to locate the right insertion point for a specified value in sorted order.\nassert right_insertion([1,2,4,5],6)==4\nYour code should pass the test:\nassert right_insertion([1,2,4,5],6)==4", "test_list": [ "assert right_insertion([1,2,4,5],6)==4", "assert right_insertion([1,2,4,5],3)==2", "assert right_insertion([1,2,4,5],7)==4" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that matches a string that has an a followed by three 'b'.\nassert not text_match_three(\"ac\")\nYour code should pass the test:\nassert not text_match_three(\"ac\")", "test_list": [ "assert not text_match_three(\"ac\")", "assert not text_match_three(\"dc\")", "assert text_match_three(\"abbbba\")", "assert text_match_three(\"caacabbbba\")" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to create a new tuple from the given string and list.\nassert new_tuple([\"WEB\", \"is\"], \"best\") == ('WEB', 'is', 'best')\nYour code should pass the test:\nassert new_tuple([\"WEB\", \"is\"], \"best\") == ('WEB', 'is', 'best')", "test_list": [ "assert new_tuple([\"WEB\", \"is\"], \"best\") == ('WEB', 'is', 'best')", "assert new_tuple([\"We\", \"are\"], \"Developers\") == ('We', 'are', 'Developers')", "assert new_tuple([\"Part\", \"is\"], \"Wrong\") == ('Part', 'is', 'Wrong')", "assert new_tuple([], '') == ('',)", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], '') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, '')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], '') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, '')", "assert new_tuple([None, '', 'vJLhOqhq', -86], '') == (None, '', 'vJLhOqhq', -86, '')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJLhOqhq') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJLhOqhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJLhOqhq') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJLhOqhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], '') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, '')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJL') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], 'vJLhOqhq') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 'vJLhOqhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJLhOhq') == (-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJLhOhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJvJLL') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJvJLL')", "assert new_tuple([45.31554022015084, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], 'vJLhOqhq') == (45.31554022015084, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 'vJLhOqhq')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJL') == (-51.27715473966572, 33.69836348184855, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -6.3979421133605765, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-6.80022506914743, -51.27715473966572, -6.3979421133605765, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267], '') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, '')", "assert new_tuple(['POiV', -10.355958900117983, -86, 79, -8.323840159169166, False, 'JGOc'], '') == ('POiV', -10.355958900117983, -86, 79, -8.323840159169166, False, 'JGOc', '')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJL') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJL')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJL') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, -10.472754063243912], 'vJLhOqhq') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([None, 'vJLhOqhq', -86], '') == (None, 'vJLhOqhq', -86, '')", "assert new_tuple([-64.42482790803071, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 45.31554022015084], 'vJLhvOqhq') == (-64.42482790803071, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 45.31554022015084, 'vJLhvOqhq')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJL') == (-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJL')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'JGO') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'JGO')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'JGO') == (-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'JGO')", "assert new_tuple([None, -86, 'vJLhOqhq', -86], '') == (None, -86, 'vJLhOqhq', -86, '')", "assert new_tuple([-51.27715473966572, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJvJLL') == (-51.27715473966572, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJvJLL')", "assert new_tuple(['POiV', -10.355958900117983, 79, -8.323840159169166, False, 'JGOc'], '') == ('POiV', -10.355958900117983, 79, -8.323840159169166, False, 'JGOc', '')", "assert new_tuple([None, -86, 'vJLhOqhq', -86], 'POiV') == (None, -86, 'vJLhOqhq', -86, 'POiV')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJvJLL') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJvJLL')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -15.508723324824603, 34.07985408015267, -8.323840159169166, 45.31554022015084, 34.07985408015267], 'vJ') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -15.508723324824603, 34.07985408015267, -8.323840159169166, 45.31554022015084, 34.07985408015267, 'vJ')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 34.07985408015267], 'vJL') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 34.07985408015267, 'vJL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, -10.355958900117983], 'vJL') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, -10.355958900117983, 'vJL')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-51.27715473966572, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-51.27715473966572, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([34.721023127039466, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (34.721023127039466, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -15.508723324824603, 34.07985408015267, -8.323840159169166, 45.31554022015084, 34.07985408015267, -15.508723324824603], 'vvJ') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -15.508723324824603, 34.07985408015267, -8.323840159169166, 45.31554022015084, 34.07985408015267, -15.508723324824603, 'vvJ')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'LL') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'LL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, -10.472754063243912], '') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, -10.472754063243912, '')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'LL') == (-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'LL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'JLL') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'JLL')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -51.27715473966572, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'POiV') == (-51.27715473966572, -10.355958900117983, -51.27715473966572, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'POiV')", "assert new_tuple([14, 79], 'JLL') == (14, 79, 'JLL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], 'LL') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 'LL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 45.31554022015084], 'POi') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 45.31554022015084, 'POi')", "assert new_tuple([25.957846772778606, -6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJvJLL') == (25.957846772778606, -6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJvJLL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'PvJvJLLOi') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'PvJvJLLOi')", "assert new_tuple([34.721023127039466, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vvJLhOqhq') == (34.721023127039466, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vvJLhOqhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'LLvJLhvOqhqJGOc') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'LLvJLhvOqhqJGOc')", "assert new_tuple([None, '', 'vJLhOqhq', -86], 'vJ') == (None, '', 'vJLhOqhq', -86, 'vJ')", "assert new_tuple([45.31554022015084, -51.27715473966572, -10.355958900117983, -11.24647564777949, -10.472754063243912, 45.31554022015084], 'vJLhOqhq') == (45.31554022015084, -51.27715473966572, -10.355958900117983, -11.24647564777949, -10.472754063243912, 45.31554022015084, 'vJLhOqhq')", "assert new_tuple([-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOhq') == (-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOhq')", "assert new_tuple([-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJLhOhhq') == (-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJLhOhhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'GJGO') == (-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'GJGO')", "assert new_tuple([-51.27715473966572, 45.360838150180015, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'JLL') == (-51.27715473966572, 45.360838150180015, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'JLL')", "assert new_tuple([-51.27715473966572, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-51.27715473966572, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple(['POiV', -10.355958900117983, 79, -8.323840159169166, 'JGOc'], 'JGO') == ('POiV', -10.355958900117983, 79, -8.323840159169166, 'JGOc', 'JGO')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'v') == (-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'v')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, -10.355958900117983], 'POi') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, -10.355958900117983, 'POi')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'LLvJLhvOqhqJGOc') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'LLvJLhvOqhqJGOc')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], 'vJvJLL') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 'vJvJLL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -9.051593176986296, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], '') == (-6.80022506914743, -51.27715473966572, -9.051593176986296, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, '')", "assert new_tuple([14, 14, 14], 'LJLL') == (14, 14, 14, 'LJLL')", "assert new_tuple([34.721023127039466, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vvJLhOqhq') == (34.721023127039466, -6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vvJLhOqhq')", "assert new_tuple([-51.27715473966572, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'JLL') == (-51.27715473966572, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'JLL')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, 34.07985408015267, -69.2423613608672], 'vJL') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, 34.07985408015267, -69.2423613608672, 'vJL')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqOq') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqOq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084], 'vJLhhOqhq') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, 'vJLhhOqhq')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, 34.07985408015267, -69.2423613608672], 'vJLL') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, 34.07985408015267, -69.2423613608672, 'vJLL')", "assert new_tuple([45.31554022015084, -51.27715473966572, -10.355958900117983, -11.24647564777949, -10.472754063243912, 45.31554022015084, -11.24647564777949, -11.24647564777949], 'vJLhOqhq') == (45.31554022015084, -51.27715473966572, -10.355958900117983, -11.24647564777949, -10.472754063243912, 45.31554022015084, -11.24647564777949, -11.24647564777949, 'vJLhOqhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'v') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'v')", "assert new_tuple([-51.27715473966572, 34.07985408015267, 45.31554022015084, -15.508723324824603], 'LLvJLhvOqhqJGOcLhOqhq') == (-51.27715473966572, 34.07985408015267, 45.31554022015084, -15.508723324824603, 'LLvJLhvOqhqJGOcLhOqhq')", "assert new_tuple([34.07985408015267, -51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'GJGO') == (34.07985408015267, -51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'GJGO')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'LLvJLLvJLhvOqhqJGOc') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'LLvJLLvJLhvOqhqJGOc')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqq') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.611106744609591, 34.07985408015267], 'LLvJLLvJLhvOqhqJGOc') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, -10.611106744609591, 34.07985408015267, 'LLvJLLvJLhvOqhqJGOc')", "assert new_tuple([-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'vJLhOOhq') == (-10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'vJLhOOhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084], 'LLvJLhvJLhOqhqvOqhqJGOc') == (-51.27715473966572, -10.355958900117983, -69.2423613608672, 34.07985408015267, 45.31554022015084, 'LLvJLhvJLhOqhqvOqhqJGOc')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, -10.472754063243912], 'vJLhOhqvJLhOqhq') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.611106744609591, -10.472754063243912, 'vJLhOhqvJLhOqhq')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084], 'GJGOGO') == (-51.27715473966572, -10.355958900117983, -10.472754063243912, 34.07985408015267, 45.31554022015084, 'GJGOGO')", "assert new_tuple([-10.355958900117983, -69.2423613608672, -10.472754063243912, -8.212306909448763, 34.07985408015267, 45.31554022015084], 'vJLhOOhq') == (-10.355958900117983, -69.2423613608672, -10.472754063243912, -8.212306909448763, 34.07985408015267, 45.31554022015084, 'vJLhOOhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -6.3979421133605765, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOOLLqhq') == (-6.80022506914743, -51.27715473966572, -6.3979421133605765, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOOLLqhq')", "assert new_tuple([-51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJvJLL') == (-51.27715473966572, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJvJLL')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, 25.957846772778606, -10.355958900117983, 34.07985408015267, 45.31554022015084, -10.611106744609591, -10.472754063243912], 'vJLLvJLhOhqvJLhOqhq') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, 25.957846772778606, -10.355958900117983, 34.07985408015267, 45.31554022015084, -10.611106744609591, -10.472754063243912, 'vJLLvJLhOhqvJLhOqhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -6.3979421133605765, -10.355958900117983, -60.35480001031404, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-6.80022506914743, -51.27715473966572, -6.3979421133605765, -10.355958900117983, -60.35480001031404, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -69.2423613608672, -53.93069976413123, -10.472754063243912, 34.07985408015267, 45.31554022015084, -69.2423613608672], '') == (-6.80022506914743, -51.27715473966572, -69.2423613608672, -53.93069976413123, -10.472754063243912, 34.07985408015267, 45.31554022015084, -69.2423613608672, '')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, -10.355958900117983], 'PvvJOi') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -11.24647564777949, -10.472754063243912, 45.31554022015084, -10.355958900117983, 'PvvJOi')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 34.07985408015267], 'JGO') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 34.07985408015267, 'JGO')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 38.28990847119975], 'vJL') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 38.28990847119975, 'vJL')", "assert new_tuple([-51.27715473966572, -5.763487757578141, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 34.07985408015267, 34.07985408015267], 'JGO') == (-51.27715473966572, -5.763487757578141, 33.69836348184855, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 34.07985408015267, 34.07985408015267, 'JGO')", "assert new_tuple([14, 14, 14], 'vJLhOOhq') == (14, 14, 14, 'vJLhOOhq')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vJLhOOhq') == (-51.27715473966572, 33.69836348184855, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vJLhOOhq')", "assert new_tuple([-51.27715473966572, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 45.360838150180015, 34.07985408015267], 'vJvJLL') == (-51.27715473966572, -8.323840159169166, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 45.360838150180015, 34.07985408015267, 'vJvJLL')", "assert new_tuple([-10.355958900117983, -69.2423613608672, -8.212306909448763, 34.07985408015267, 45.31554022015084], 'JGOc') == (-10.355958900117983, -69.2423613608672, -8.212306909448763, 34.07985408015267, 45.31554022015084, 'JGOc')", "assert new_tuple([None, '', -86, 'vJLhOqhq', -86], 'vJ') == (None, '', -86, 'vJLhOqhq', -86, 'vJ')", "assert new_tuple([-51.27715473966572, -69.2423613608672, -10.472754063243912, -8.323840159169166, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vvJ') == (-51.27715473966572, -69.2423613608672, -10.472754063243912, -8.323840159169166, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vvJ')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, -8.323840159169166], 'vJL') == (-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, -8.323840159169166, 'vJL')", "assert new_tuple([-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267], 'vvJL') == (-51.27715473966572, 33.69836348184855, -69.2423613608672, -8.323840159169166, -69.2423613608672, -10.472754063243912, 34.07985408015267, 45.31554022015084, 34.07985408015267, 'vvJL')", "assert new_tuple([-51.27715473966572, -10.355958900117983, -69.07470488220116, 34.07985408015267, 45.31554022015084, -10.472754063243912], 'vJLhOqhq') == (-51.27715473966572, -10.355958900117983, -69.07470488220116, 34.07985408015267, 45.31554022015084, -10.472754063243912, 'vJLhOqhq')", "assert new_tuple([-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267], 'LJLL') == (-6.80022506914743, -51.27715473966572, -10.355958900117983, -69.2423613608672, -10.472754063243912, 34.07985408015267, 'LJLL')" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether the length of the word is odd or not.\nassert word_len(\"Hadoop\") == False\nYour code should pass the test:\nassert word_len(\"Hadoop\") == False", "test_list": [ "assert word_len(\"Hadoop\") == False", "assert word_len(\"great\") == True", "assert word_len(\"structure\") == True", "assert word_len('a') == True", "assert word_len('longstringwithmixture') == True", "assert word_len('lonlongstringwithmixturegstringwithmixture') == False", "assert word_len('lonlongstringwithmixturegstringwithmixturlongstringwithmixturee') == True", "assert word_len('lonlongstringwithmixturegstringwithmxture') == True", "assert word_len('longstringwithmiixtiure') == True", "assert word_len('lnongstringwithmixture') == False", "assert word_len('alongstringwithmiixtiure') == False", "assert word_len('lonlongstringwitlongstringwithmiixtiurehmixturegstringwithmxture') == False", "assert word_len('lonlongstringwithmixturegstringwithlongstringwithmixturemixture') == True", "assert word_len('lonlongstringwitringwithmixture') == True", "assert word_len('lnongstringwithmixturea') == True", "assert word_len('mlongstringwithmiixtiure') == False", "assert word_len('lonlongstrringwithmixturegstringwithlongstringwitnhmixturemixture') == True", "assert word_len('longstringwithmiixlonlongstringwithmixturegstringwithmxturetiure') == False", "assert word_len('lonlongstringwitringwhithmixture') == False", "assert word_len('lonlongstringwithmixturegstringwithmixturlongstringwithmixturelongstringwithmiixlonlongstringwithmixturegstringwithmxturetiuree') == True", "assert word_len('lonlongstringwithmixlonlongstringwithmixturegstringwithmixtureturegstringwithmixture') == False", "assert word_len('lonlongstringwitringwithmixtongtstringwitringwhithmixture') == True", "assert word_len('lnongstringwithmixlonlongstringwithmixturegstringwithmxtureturea') == False", "assert word_len('lnmlongstringwithmiixtiureongstringwithmixturea') == True", "assert word_len('longstringwithmiixlonlongstringwithmixturegstlringwithmxturetiure') == True", "assert word_len('TtYAzEr') == True", "assert word_len('lonlongstrlonlongstrringwithmixturegstringwithlongstringwitnhmixturemixtureingwithmixturegstringwithmxture') == False", "assert word_len('lnmlongstringwithmiixtiureongstringwithmixturelonlongstringwitringwhithmixturea') == True", "assert word_len('longstlongstringwithmiixlonlongstringwithmixturegstringwithmxturetiureringwithmiixtiure') == True", "assert word_len('lonlongstrlonlongstrringwithmixturegstringwithlongstringwitwnhmixturemixtureingwithmixturegstrinhmtxture') == False", "assert word_len('aa') == False", "assert word_len('longastringwithmiixtiure') == False", "assert word_len('longastringxwithmiixtiure') == True", "assert word_len('liongastringwithmixtiure') == False", "assert word_len('lonlongstringwithmixlonlongstrilongstringwithmixturengwithmixturegstringwithmixtureturegstringwithmixture') == True", "assert word_len('lnongstriengwithmixturea') == False", "assert word_len('longstringwithmiixlonlongstringwithmialongstringwithmiixtiurexturegstringwithmxturetiure') == False", "assert word_len('longstringwithmiixlonnlongstringwithmixturegstringwithmxturetiure') == True", "assert word_len('alongslongastringwithmiixtiuretringwithmiixtiure') == False", "assert word_len('lonlongstringwithmixturegstrinurlongstringwithmixturee') == False", "assert word_len('longstringwithmiixlonlongstrinlonlongstringwithmixturelongstringwithmiixlonlongstringwithmixturegstringwithmxturetiuregstringwithlongstringwithmixturemixturethmxturetiure') == False", "assert word_len('lonlongstringwitringwithmixtongtstringwitringwhitthmixture') == False", "assert word_len('longstringwithmiixlonlongstringwithmialongstrilnmlongstringwithmiixtiureongstringwithmixtureangwithmiixtiurexturegstringwithmxturetiure') == True", "assert word_len('lonlongstrinlonlongstringwithmixturegstringwithmxturegwitringwhithmixture') == True", "assert word_len('lonlongstringwitringwithmixlonlongstringwithmixturegstringwithmxtureture') == False", "assert word_len('mlongstringwithmiiwxtiure') == True", "assert word_len('lionglongastringxwithmiixtiureastringwithmixtiure') == True", "assert word_len('lonlongstringwitringwiithmixture') == False", "assert word_len('longstlongstringwithmiixlonlongstringwithmixturegstringwithmxturetiurerinigwithmiixtiure') == False", "assert word_len('mlongstringwwithmiixtiure') == True", "assert word_len('lonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiureonlongstrlonlongstrringwithmixturegstringwithlongstringwitnhmixturemixtureingwithmixturegstringwithmxtureingwitnhmixturemixture') == False", "assert word_len('lnongstringwithmirea') == False", "assert word_len('lonlongstringwithmixturegstringwithmixturlongstlonlongstrlonlongstrringwithmixturegstringwitlonlongstringwitringwithmixlonlongstringwithmixturegstringwithmxtureturegwithmixturee') == True", "assert word_len('mxlongstringwithmiixtiure') == True", "assert word_len('lonlongstringwithmixturegstringwithmxturlongstringwithmixturee') == False", "assert word_len('lnmlongstringwithmiixtiureongstringwithmixtulongstlongstringwithmiixlonlongstringwithmixturegstringwithmxturetiurerinigwithmiixtiure') == False", "assert word_len('mlongstrintgwwithmiixtiure') == False", "assert word_len('lonlongstringwitringwithmixtongtstringwitringwhtithmixture') == False", "assert word_len('lonlongstringwithmixturegstringwithmixturlongstlonlongstringwithmixturegstringwithmixturlongstringwithmixturelongstringwithmiixlonlongstringwithmixturegstringwithmxturetiureeringwithmixturelongstringwithmiixlonllonlongstringwitringwiithmixturegstringwithmxturetiuree') == False", "assert word_len('lonlongstrhingwithmixlonlongstrilongstringwithmixturengwithmixturegstrhgingwithmixtureturegstringwithmixture') == False", "assert word_len('ltiongastringwithmixtiure') == True", "assert word_len('liongastringwithmtixtiure') == True", "assert word_len('lnongstringwgithlnongstringwithmixtureturegstringwithmxtureturea') == False", "assert word_len('lgstringwithmixturee') == False", "assert word_len('lonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiureonlongstrlonlongstrringwithmixturegstringwithlongstringwiwithmxtureingwitnhmixturemixture') == False", "assert word_len('alonlongstringwithmixturegstringwithmixturlongstlonlongstrlonlongstrringwithmixturegstringwitlonlongstringwitringwithmixlonlongstringwithmixturegstringwithmxtureturegwithmixtureea') == True", "assert word_len('lonlongstrhingwithmixlonlongstrilongstringwithmixturengwithmixturegstrhgingwithmixturture') == True", "assert word_len('lonlongstrinlonlongstringwithmixturegstringwithmxturegwitringwhithmlongstringwithmiixlonlongstringwithmixturegstlringwithmxturetiureixture') == False", "assert word_len('lnmlongstringwithmiixtiurreonwgstringwithmixturelonlongstringwitringwhithmixturea') == True", "assert word_len('lonlongstrlongstringwithmiixlonlongstrinlonlongstringwithmixturelongstringwithmiixlonlongstringwithmixturegstringwithmxturetiuregstringwithlongstringwithmixturemixturethmxturetiureingwitringwithmixture') == True", "assert word_len('lonlongstrlonlongstrringwithmixturegstringwithlongstringwitwnlongastringxwithmiixtiurehmixturemixtureingwithmixturegstrinhmtxture') == True", "assert word_len('lonlongstringwitringwlonlongstrringwithmgwitnhmixturemixturehithmixture') == True", "assert word_len('lonlongstringwitritngwithmixture') == False", "assert word_len('lnongs') == False", "assert word_len('alongslonlongstrlonlongstrrinlonlongstringwithmixturegstringwithmixturlongstringwithmixtureegwithmixturegstringwithlongstringwitnhmixturemixtureingwithmixturegstringwithmxturelongastringwithmiixtiuretringwithmiixtiure') == True", "assert word_len('lnongstrilonlongstrringwithmixturegstringwithlongstringwitnhmixturemixturengwithmixlonlongstringwithmixturelonlongstrlonlongstrringwithmixturegstringwithlongstringwitwnlongastringxwithmiixtiurehmixturemixtureingwithmixturegstrinhmtxturegstringwithmxtureturea') == False", "assert word_len('longastringxwithmiixtiurliongastringwithmtixtiuree') == False", "assert word_len('lonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiulreonlongstrlonlongstrringwithmixturegstringwithlongstringwiwithmxtureingwitnhmixturemixture') == True", "assert word_len('longstringwithmiixlonlongstringwitlongstringwithmiixtiuremixturegstlringwithmxturetiure') == True", "assert word_len('lonlongstringwithmixturegstrinurlongstringwithhmixturee') == True", "assert word_len('lonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiureonlongstrlonlongstrringwithmixturegstringwithlongstringwiwithmxtureingwitnhmixturemixre') == False", "assert word_len('ltiongastringwithmixtinure') == False", "assert word_len('lonlongstringwithmixturegstringwithmixturlongstlonlongstrlonlthmixturegstringwithmxtureturegwithmixturee') == False", "assert word_len('lonlongstrlonlongstrringwithmixturegstringwithlongstringwitwnhmixtulonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiureonlongstrlonlongstrringwithmixturegstringwithlongstringwiwithmxtureingwitnhmixturemixreremixtureingwithmixturegstrinhmtxture') == False", "assert word_len('lonlongstringwitrinthmixtongtstrinigwitringwhtithmixture') == False", "assert word_len('longstringwitlongstringwithmiixlonlongstringwithmilonlongstringwitringwithmxturexturegstlringwithmxturetiurehmiixtiure') == False", "assert word_len('mxllonlongstrlonlongstrringwithmixturegstringwithlongstringwitwnhmixturemixtustrinhmtxtureongstringwithmiixtiure') == False", "assert word_len('lonlongstrlongstringwithmiixlonlongstrinlonlongstringwithmixturelongstringwithmiixlonlongstringwithmixturegstringwithmxturetiuoregstringwithlongstringwithmixturemixturethmxturetiureingwitringwithmixture') == False", "assert word_len('lnmlongstringwithmiixtiureongstringwithmixturealonlongstringwithmixturegstringwithmixturlongstringwithmixturee') == False", "assert word_len('longstlongstrsingwithmiixlonlongstringwithmixturegstringwithmxturetiuaare') == True", "assert word_len('lgstringwithmlonlongstringwithmixturegstringwithmxtureixturee') == True", "assert word_len('alongslonlongstrlonlongstrrinlonlongstringwithmixturegstringwithmixturlongstringwithmixtureegwithmixturegstringwithlongstringwitnhmtixturemixtureingwithmixturegstringwithmxturelongastringwithmiixtiuretringwithmiixtiure') == False", "assert word_len('lithmiixtgwithmxturetiure') == True", "assert word_len('lnmlongstringwithmiixtiurreonwgstringwithmixturelonlongstringwitlongstlongstringwithmiixlonlongstringwithmixturegstringwithmxturetiurerinigwithmiixtiureringwhithmixturlongstringwitlongstlonlongstringwitringwiithmixtureringwithmiixlonlongstringwithmilonlongstringwitringwithmxturexturegstlringwithmxturetiurehmiixtiureea') == True", "assert word_len('mxllonlongstrlonlongstrringwithmixturegstringwithlongstringwitwnhmixturemixtustrinhmtxlonlongstringwithmixturegstringwithmixturlongstlonlongstrlonlthmixturegstringwithmxtureturegwithmixtureetureongstringwithmiixtiure') == False", "assert word_len('lonlongstrlonlongstrringhwithmixturegstringwithlongstringwitnhmixturemixtureingwithmixturegstringwithure') == False", "assert word_len('longstlongstrsingwithmiixlonlongsxtringwithmiithmxturetiuaare') == True", "assert word_len('lgstringwithmixtlnongstringwithmireareelnmlongstringwithmiixtiureongstringwithmixturelonlongstringwitringwhithmixturea') == False", "assert word_len('lolongastringxwithmiixtiurliongastringwithmtixtiureengstringwithmiixlonlongstrinlonlongstringwithmixturelongstringwithmiixlonlongstringwithmixturelongstringwithmiixlonnlongstringwithmixturegstringwithmxturetiuregstringwithmxturetiuregstringwithlongstringwithmixturemixturethmxturetiure') == True", "assert word_len('lonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiulreonlongstrlonlongstrringwithmixturegstringwlonlongstringwitringwithmixturethmxtureingwitnhmixturemixture') == True", "assert word_len('lnmlongstringwithmiimxtiureongstringwithmixturea') == False", "assert word_len('lonlongstrringwithmixturegstringwithlongstrllongstringwithmiixtiulreliongastringwithmtixtiureonlongstrlonlongstrringwithmixturegstringwithlongstringwiwithmxtureingwitnhmixturemixture') == False", "assert word_len('longstrinithmixture') == True", "assert word_len('lgstringwithmixtlnongstringwithmireareelnmlongstringwithmiixtiurheongstringwithmixturelonlongstringwitringwhithmixturea') == True", "assert word_len('longasntringxwithmiixtiure') == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to check whether every even index contains even numbers of a given list.\nassert even_position([3,2,1]) == False\nYour code should pass the test:\nassert even_position([3,2,1]) == False", "test_list": [ "assert even_position([3,2,1]) == False", "assert even_position([1,2,3]) == False", "assert even_position([2,1,4]) == True", "assert even_position([2, 1, 4, 2, 6, 1, 8, 2, 10, 1, 12]) == False", "assert even_position([2, 7, 4, 9, 6, 12, 8]) == False", "assert even_position([2, 1, 4, 6, 8, 2, 10, 12]) == False", "assert even_position([1, 2, 3, 4, 5, 6]) == False", "assert even_position([1, 2, 4, 6, 8, 10, 12]) == False", "assert even_position([1, 3, 5, 7, 9, 11, 13]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 9]) == True", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 11, 13]) == False", "assert even_position([1]) == False", "assert even_position([2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22]) == False", "assert even_position([3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29]) == False", "assert even_position([1, 2, 4, 6, 2, 10, 12]) == False", "assert even_position([2, 1, 4, 3, 7, 6, 5, 8, 7, 10, 9]) == False", "assert even_position([2, 10]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 8, 10, 11, 13]) == False", "assert even_position([2, 7, 4, 9, 20, 6, 12, 8, 2, 2]) == False", "assert even_position([3, 11, 10, 11, 10]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 9, 8, 7, 8, 10, 11, 13, 10]) == False", "assert even_position([1, 2, 4, 6, 21, 2, 10, 12]) == False", "assert even_position([1, 4, 3, 6, 5, 8, 7, 8, 10, 11, 13, 3]) == False", "assert even_position([2, 7, 5, 9, 6, 12, 8, 12]) == False", "assert even_position([2, 7, 4, 9, 20, 6, 12, 8, 2, 2, 4, 4]) == False", "assert even_position([1, 10]) == False", "assert even_position([1, 2, 4, 8, 10, 12, 8]) == False", "assert even_position([2, 7, 5, 4, 9, 20, 6, 12, 8, 2, 2]) == False", "assert even_position([1, 2, 3, 0, 4, 5, 6, 5, 2]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 2, 2]) == False", "assert even_position([18, 1, 2, 4, 6, 8, 9, 12]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 11, 13, 2, 8]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 7, 2, 2]) == False", "assert even_position([1, 2, 4, 6, 2, 10, 9]) == False", "assert even_position([1, 2, 8, 4, 6, 2, 10, 9, 4]) == False", "assert even_position([2]) == True", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 11, 13, 2, 8, 6]) == False", "assert even_position([1, 2, 4, 22, 6, 8, 10, 12, 18, 6]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 9, 8, 7, 8, 10, 11, 13, 10, 6]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 10, 11, 13]) == False", "assert even_position([1, 2, 4, 6, 10, 9]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 7, 2, 7]) == False", "assert even_position([9]) == False", "assert even_position([1, 7, 2, 4, 22, 6, 8, 10, 12, 18, 6]) == False", "assert even_position([1, 1, 4, 3, 6, 5, 8, 7, 10, 11, 13, 2, 8, 6, 1, 2]) == False", "assert even_position([3, 11, 10, 11, 10, 10]) == False", "assert even_position([2, 7, 4, 9, 20, 6, 12, 8, 2, 2, 7]) == False", "assert even_position([1, 2, 4, 6, 2, 10, 12, 1]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 11, 2, 8, 6]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 9, 6]) == True", "assert even_position([7, 2]) == False", "assert even_position([2, 4, 2, 10, 12, 1]) == False", "assert even_position([1, 3, 5, 7, 9, 11, 0]) == False", "assert even_position([1, 2, 4, 6, 21, 2, 10, 12, 1]) == False", "assert even_position([2, 7, 5, 9, 22, 8, 12]) == False", "assert even_position([3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 29]) == False", "assert even_position([2, 1, 4, 2, 6, 1, 8, 10, 1, 12, 1]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 7, 2, 2, 7]) == False", "assert even_position([2, 1, 4, 3, 5, 8, 7, 10, 9]) == False", "assert even_position([6, 2, 6, 6]) == False", "assert even_position([2, 12, 7, 29, 4, 9, 20, 18, 6, 12, 8, 7, 2, 2, 13, 7]) == False", "assert even_position([25, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 7, 2, 2]) == False", "assert even_position([1, 3, 5, 7, 9, 11, 13, 13, 7]) == False", "assert even_position([2, 7, 5, 9, 22, 8, 12, 22, 2]) == False", "assert even_position([2, 7, 5, 4, 9, 20, 18, 6, 12, 8, 2, 2]) == False", "assert even_position([1, 2, 4, 6, 2, 10, 12, 10]) == False", "assert even_position([2, 1, 4, 3, 7, 6, 5, 8, 7, 8, 10, 9]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 9, 8, 8, 10, 11, 13, 10]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 7, 2, 2, 7, 7]) == False", "assert even_position([1, 3, 5, 7, 9, 11]) == False", "assert even_position([6, 6, 6, 6]) == False", "assert even_position([2, 7, 5, 4, 9, 20, 13, 6, 12, 8, 2, 2]) == False", "assert even_position([2, 1, 4, 3, 6, 5, 8, 7, 10, 11, 13, 2, 12, 8]) == False", "assert even_position([2, 7, 5, 4, 9, 20, 18, 6, 12, 8, 2, 2, 2]) == False", "assert even_position([2, 7, 9, 12, 8, 13]) == False", "assert even_position([1, 2, 4, 6, 15, 2, 12, 10]) == False", "assert even_position([6, 6, 6, 6, 6]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 2, 2, 20]) == False", "assert even_position([1, 15, 4, 8, 10, 12, 8]) == False", "assert even_position([2, 1, 3, 6, 5, 9, 8, 4, 8, 11, 13, 10]) == False", "assert even_position([2, 2, 4, 6, 21, 2, 10, 12, 1]) == False", "assert even_position([18, 1, 2, 4, 6, 8, 9, 12, 8]) == False", "assert even_position([1, 2, 4, 6, 2, 10, 12, 10, 10]) == False", "assert even_position([2, 7, 5, 22, 9, 6, 13, 8, 12, 8]) == False", "assert even_position([19, 21, 2, 3, 0, 4, 5, 6, 5, 2]) == False", "assert even_position([]) == True", "assert even_position([2, 1, 4, 6, 8, 2, 10, 2, 12]) == False", "assert even_position([12, 7, 5, 9, 20, 18, 6, 12, 8, 7, 2, 2]) == False", "assert even_position([2, 1, 4, 3, 7, 6, 5, 8, 7, 29, 8, 9]) == False", "assert even_position([1, 3, 23, 7, 9, 11, 13]) == False", "assert even_position([2, 1, 4, 2, 6, 1, 8, 10, 1, 9, 12, 1, 9]) == False", "assert even_position([3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 20, 25, 27, 29]) == False", "assert even_position([1, 3, 5, 7, 9, 11, -1]) == False", "assert even_position([1, 3, 5, 9, 11, 13, 13, 7, 5, 7, 1]) == False", "assert even_position([2, 12, 7, 4, 9, 20, 18, 6, 12, 8, 7, 2, 7]) == False", "assert even_position([1, 2, 6, 4, 8, 10, 12, 8, 2]) == False", "assert even_position([1, 2, 7, 6, 4, 8, 10, 12, 8]) == False", "assert even_position([2, 1, 4, 3, 7, 6, 5, 8, 7, 10, 29, 9]) == False", "assert even_position([2, 4, 10, 12, 19, 19]) == False", "assert even_position([3, 11, 29, 10, 11, 10, 10]) == False", "assert even_position([2, 3, 4, 3, 6, 4, 5, 8, 7, 10, 9]) == False", "assert even_position([2, 1, 3, 6, 5, 9, 8, 8, 11, 13, 10, 10]) == False", "assert even_position([2, 1, 19, 3, 7, 6, 5, 8, 7, 29, 8, 9]) == False", "assert even_position([2, 7, 9, 12, 8, 12]) == False", "assert even_position([6, 6, 6, 6, 4, 6]) == False", "assert even_position([2, 4, 6, 2, 10]) == False", "assert even_position([1, 7, 4, 9, 20, 6, 12, 8, 2, 2]) == False", "assert even_position([1, 2, 4, 22, 6, 8, 10, 12, 18, 10]) == False", "assert even_position([2, 12, 7, 5, 4, 9, 20, 18, 6, 12, 8, 8, 2, 2]) == False", "assert even_position([2, 7, 5, 9, 22, 8, 27, 12, 22, 2]) == False", "assert even_position([2, 7, 5, 2, 4, 9, 20, 6, 12, 8, 2, 2]) == False", "assert even_position([6, 6, 6]) == False", "assert even_position([1, 6, 3, 5, 7, 9, 11, 0]) == False", "assert even_position([3, 11, 29, 10, 11, 10, 10, 10]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove tuples from the given tuple.\nassert remove_nested((1, 5, 7, (4, 6), 10)) == (1, 5, 7, 10)\nYour code should pass the test:\nassert remove_nested((1, 5, 7, (4, 6), 10)) == (1, 5, 7, 10)", "test_list": [ "assert remove_nested((1, 5, 7, (4, 6), 10)) == (1, 5, 7, 10)", "assert remove_nested((2, 6, 8, (5, 7), 11)) == (2, 6, 8, 11)", "assert remove_nested((3, 7, 9, (6, 8), 12)) == (3, 7, 9, 12)", "assert remove_nested((3, 7, 9, (6, 8), (5,12), 12)) == (3, 7, 9, 12)", "assert remove_nested(((2, 6, 8, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((1, 2, 3, 4),)) == ()", "assert remove_nested(((),)) == ()", "assert remove_nested(((1, 5, 7, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12)),)) == ()", "assert remove_nested((((), (), ((), ())),)) == ()", "assert remove_nested((((1, 2, ((3, 4), 5)), ((6, 7, ()), 8)),)) == ()", "assert remove_nested((((1, 2), (3, 4), (5, 6), ((7, 8), (9, 10), (11, 12)), (((13, 14), 15), 16), (17, 18, (19, 20))),)) == ()", "assert remove_nested(((((1, (2, 3), 4), 5), (((6, 7), 8), 9), ((10, 11), 12, (13, (14, 15))), (16, 17), (18, (), 19, 20)),)) == ()", "assert remove_nested((('BBeujUUS', '', 'cHImXR', 'BeujUUS'),)) == ()", "assert remove_nested(((1, 5, 7, ((4, 6), 3), (10, 3), (10, 2), ((8, (14, 10)), 12), 1),)) == ()", "assert remove_nested((((), ((), ())),)) == ()", "assert remove_nested((((), (), ((), ()), ((), ())),)) == ()", "assert remove_nested((((1, 2, ((3, 4), 5)),),)) == ()", "assert remove_nested((('iaZtoqM', -15, 55),)) == ()", "assert remove_nested(((2, 6, ((6, 3),), 8, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((1, 5, 7, ((4, 6), 3), (10, 3), (10, 2), ((8, (14, 10)), 12), 1, (10, 3)),)) == ()", "assert remove_nested(((2, 6, ((6, 3),), 8, (5, 7), 11, ((6, 4), (6, 3)), ((2, 9), (6, 3)), 4, ((6, 3),)),)) == ()", "assert remove_nested((('BBeujUUS', '', 'cHImXR', 'BeujUUS', ''),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, (5, 7)),)) == ()", "assert remove_nested((('iaZtoqM', 55, -15, 55),)) == ()", "assert remove_nested((((), ((), (), ()), (), ((), ())),)) == ()", "assert remove_nested(((((), ()),),)) == ()", "assert remove_nested(((2, 6, 8, (5, 7), 11, ((2, 9), (6, 3)), 4, 6),)) == ()", "assert remove_nested(((2, 20, ((6, 3),), 8, (5, 7), 11, 4),)) == ()", "assert remove_nested(((2, 7, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, (5, 7)),)) == ()", "assert remove_nested((((), (), ((), ()), ()),)) == ()", "assert remove_nested(((14, 6, ((6, 3),), 8, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested((((), ((), (), (), ()), ('iaZtoqM', 'pm', 'iaZtoqM', 'wOkCgN', 'oQjO', 'BBeujUUS', 'HjLKztlzPf', 'BeujUUS', '', ''), (), ((), ())),)) == ()", "assert remove_nested(((1, 5, 7, ((15, 6), 3), ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), ((8, (14, 10)), (8, (14, 10), (14, 10)), 12), ((4, 6), 3)),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, (5, 7), (5, 7)),)) == ()", "assert remove_nested((((), (), ((), ()), ((),)),)) == ()", "assert remove_nested(((({'9': True, '1': True, '21': True, '32': False, '2': True, '-44': True}, 'BBeujUUS', -39.29936222397124, True, (81,), 'hTiPAxILj', -38.17279241711651, 15.51245915461675), ((), (), ()), (), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), ((), ())),)) == ()", "assert remove_nested(((({'9': True, '1': True, '21': True, '32': False, '2': True, '-44': True}, 'BBeujUUS', -39.29936222397124, True, (81,), 'hTiPAxILj', -38.17279241711651, 15.51245915461675), ((), (), ()), (), ((), ())),)) == ()", "assert remove_nested(((5, 7, 6, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12)),)) == ()", "assert remove_nested(((2, 6, 20, 16, (5, 7), 11, ((2, 9), (6, 3)), 4, (5, 7)),)) == ()", "assert remove_nested((((1, 2, 1, ((3, 4), 5)), ((6, 7, ()), 8)),)) == ()", "assert remove_nested((('iaZtoqM', 55),)) == ()", "assert remove_nested((((10, 10, 2), 5, 7, 6, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), ((4, 6), 3)),)) == ()", "assert remove_nested((((1, 2), (3, 4), (5, 6, 5), (((13, 14), 15), 16), (17, 18, (19, 20))),)) == ()", "assert remove_nested(((5, 7, 6, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), 6),)) == ()", "assert remove_nested((((), ((), (), (), ()), ('iaZtoqM', 'pm', 'iaZtoqM', 'wOkCgN', 'oQjO', 'BBeujUUS', 'HjLKztlzPf', 'BeujUUS', '', ''), ((), ())),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, 6),)) == ()", "assert remove_nested(((2, 10, 20, 16, (5, 7, 7), 11, ((2, 9), (6, 3)), 4, (5, 7)),)) == ()", "assert remove_nested((((1, 2, ((3, 4),)), (1, 2, ((3, 4), 5))),)) == ()", "assert remove_nested((((), (), ((),), ()),)) == ()", "assert remove_nested((((1, 2), (3, 4), (5, 6, 5, 5), (5, 6, 5), (((13, 14), 15), 16), (17, 18, (19, 20))),)) == ()", "assert remove_nested(((((), (), ()), (50, 80, -9, 12, 100, -66), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), ((), ())),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, 6, 20),)) == ()", "assert remove_nested(((1, 5, 6, 7, ((4, 6), 3), (10, 3), (10, 2), ((8, (14, 10)), 12), 1, (10, 3), 5),)) == ()", "assert remove_nested((((1, 2, 1, ((3, 4), 5)), ((6, 7, ()), 8, 8)),)) == ()", "assert remove_nested(((1, 5, 7, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), ((4, 6), 3)),)) == ()", "assert remove_nested(((((), (), ()), (50, 80, -9, 12, 100, -66), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), (50, 80, -9, 12, 100, -66, 12), ((), ())),)) == ()", "assert remove_nested(((((), (), ()), (50, 80, -9, 12, 100, -66), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), (50, 80, -9, 12, 100, -66, 12), ((), (), ()), ((), ()), ((), (), ())),)) == ()", "assert remove_nested(((9, 'iaZtoqM', -15, 55),)) == ()", "assert remove_nested(((1, 5, 7, ((4, 6), 3), (10, 3), (10, 2), 8, 1),)) == ()", "assert remove_nested(((1, 5, 7, ((15, 6), 3), ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), ((4, 6), 3, (4, 6)), ((8, (14, 10)), (8, (14, 10), (14, 10)), 12), ((4, 6), 3)),)) == ()", "assert remove_nested((((45, 81, 83, 83, 24, 4, -32), ((), ())),)) == ()", "assert remove_nested((((), (), (), ((), ()), ((),)),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, 6, 20, 11),)) == ()", "assert remove_nested(((({'9': True, '1': True, '21': True, '32': False, '2': True, '-44': True}, 'BBeujUUS', -39.29936222397124, True, (81,), 'hTiPAxILj', -38.17279241711651), ((), (), (), ()), ('jGdwijsq', 'xbjajBrxs', 'iaZtoqM', 'gBXqaucn'), (), ((), ())),)) == ()", "assert remove_nested(((1, 1, 7, ((4, 6), 3), (10, 3), (10, 2), 8, 1),)) == ()", "assert remove_nested(((5, 7, 6, ((4, 6), 3), (10, 2), ((8, (14, 10)),)),)) == ()", "assert remove_nested(((((), (), ()), (50, 80, -9, 12, 100, -66), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), ((), ())),)) == ()", "assert remove_nested(((14, 6, ((6, 3),), 12, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((5, 7, 7, 6, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12)),)) == ()", "assert remove_nested((((1, 2), (5, 6), ((7, 8), (9, 10), (11, 12)), (((13, 14), 15), 16), (17, 18, (19, 20))),)) == ()", "assert remove_nested(((8, 5, 6, 7, ((4, 6), 3), (10, 3), (10, 2), ((8, (14, 10)), 12), 1, (10, 3), 5),)) == ()", "assert remove_nested(((14, 6, ((6, 3),), 10, 12, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested((((1, 2, 1), ((6, 7, ()), 8)),)) == ()", "assert remove_nested((((1, 2), (3, 4), (5, 6), (((13, 14), 15), 16), (17, 18, (19, 20))),)) == ()", "assert remove_nested((((),),)) == ()", "assert remove_nested((('', 'cHImXR', 'BeujUUS'),)) == ()", "assert remove_nested((((17, 18, (19, 20)), (1, 2), (3, 4), (5, 6, 5), (((13, 14), 15), 16), (17, 18, (19, 20)), (5, 6, 5)),)) == ()", "assert remove_nested((((10, 10, 2), 5, 6, 17, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), ((4, 6), 3)),)) == ()", "assert remove_nested((((1, 2, 1, ((3, 4), 5)), ((6, 7, ()), 8), ((6, 7, ()), 8, 8)),)) == ()", "assert remove_nested(((8, 5, 6, 7, (10, 3), (10, 2), ((8, (14, 10)), 12), 1, (10, 3), 5),)) == ()", "assert remove_nested(((((), (), ()), (50, 80, -9, 12, 100, -66), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), (50, 80, -9, 12, 100, -66, 12), ((), ()), ((), ())),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (19, 2, 9), (6, 3)), 4, (5, 7), (5, 7)),)) == ()", "assert remove_nested(((2, 6, (7,), 11, ((2, 9), (6, 3)), 4, 6),)) == ()", "assert remove_nested(((False, True, True, False, False, False, False, False),)) == ()", "assert remove_nested((((17, 18, (19, 20)), (1, 2), (3, 4), (5, 6, 5), (((13, 14), 15), 16), (17, 18, (19, 20)), (3, 4, 3), (5, 6, 5)),)) == ()", "assert remove_nested(((14, 5, ((6, 3),), 8, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((5, 7, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), 6),)) == ()", "assert remove_nested(((2, (5, 7), 11, ((2, 9), (6, 3)), 4, 6, 4),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (6, 3)), 4, 6, (5, 7), (5, 7)),)) == ()", "assert remove_nested((((), (), (), ((), (), ()), ((),)),)) == ()", "assert remove_nested((((), ((), (), (), ()), ('iaZtoqM', 'pm', 'iaZtoqM', 'wOkCgN', 'oQjO', 'BBeujUUS', 'HjLKztlzPf', 'BeujUUS', '', ''), (), ((), ()), ()),)) == ()", "assert remove_nested(((({'9': True, '1': True, '21': True, '32': False, '2': True, '-44': True}, 'BBeujUUS', -39.29936222397124, True, (81,), 'hTiPAxILj', -38.17279241711651, 15.51245915461675), ((), (), ()), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM', 'HjLKztlzPf'), (), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), ((), ())),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((({'9': True, '1': True, '21': True, '32': False, '2': True, '-44': True}, 'BBeujUUS', -39.29936222397124, True, (81,), 'hTiPAxILj', -38.17279241711651, 15.51245915461675), ((), (), ()), ('KyvQyRlC', 'ggsHGhlSj', 'HjLKztlzPf', 'tdmtNqM', '', 'jGdwijsq', 'xbjajBrxs', 'oQjO', 'upscQa', 'iaZtoqM'), ((), ())),)) == ()", "assert remove_nested((((), ((), (), (), ()), ('iaZtoqM', 'pm', 'iaZtoqM', 'wOkCgN', 'oQjO', 'BBeujUUS', 'HjLKztlzPf', 'BeujUUS', '', ''), (), ((), ()), ((), ())),)) == ()", "assert remove_nested((((1, 2), (3, 4), (5, 83, 5), (5, 6, 5, 5), (5, 6, 5), (((13, 14), 15), 16), (17, 18, (19, 20)), (5, 83, 5)),)) == ()", "assert remove_nested((('', 'cHImXR', 'BeujUUS', ''),)) == ()", "assert remove_nested(((2, 20, ((6, 3),), 8, (5, 7), 11, 7, 4),)) == ()", "assert remove_nested((((), ((), (), ()), (), ((), ()), ((), (), ())),)) == ()", "assert remove_nested((((), ((), (), ()), (), ((), ()), ((), (), ()), ((), (), ())),)) == ()", "assert remove_nested((((), (), (), ((), ())),)) == ()", "assert remove_nested(((2, 6, 8, (5, 7), 11, ((2, 9), (6, 3), (2, 9)), 4, 6),)) == ()", "assert remove_nested(((2, 6, ((6, 3),), 8, (5, 7), 11, ((6, 4), (6, 3)), ((2, 9), (6, 3)), 4, ((6, 3), (6, 3)), 4),)) == ()", "assert remove_nested(((2, 6, 20, (5, 7), 11, ((2, 9), (19, 2, 9), (6, 3)), 4, (5, 7)),)) == ()", "assert remove_nested(((1, 5, 7, ((4, 6), 3), (10, 3), (10, 2), 1, (10, 3, 3)),)) == ()", "assert remove_nested((('gBXqaucn', 'BBeujUUS', '', 'cHImXR', 'BeujUUS', 'BeujUUS'),)) == ()", "assert remove_nested(((8, 5, 6, 7, ((4, 6), 3), (10, 3), (10,), ((8, (14, 10)), 12), 1, (10, 3), 5),)) == ()", "assert remove_nested(((6, (5, 7), ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((14, 6, 10, 12, (5, 7), 11, ((2, 9), (6, 3)), 4),)) == ()", "assert remove_nested(((5, 7, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12)),)) == ()", "assert remove_nested(((5, 7, 7, 6, ((4, 6), 3), (10, 2), ((8, (14, 10)), 12), ((4, 6), 3)),)) == ()" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of lists in a given number of lists.\nassert count_list([[1, 3], [5, 7], [9, 11], [13, 15, 17]]) == 4\nYour code should pass the test:\nassert count_list([[1, 3], [5, 7], [9, 11], [13, 15, 17]]) == 4", "test_list": [ "assert count_list([[1, 3], [5, 7], [9, 11], [13, 15, 17]]) == 4", "assert count_list([[1,2],[2,3],[4,5]]) == 3", "assert count_list([[1,0],[2,0]]) == 2", "assert count_list([[1, 2]]) == 1", "assert count_list([]) == 0", "assert count_list([[1]]) == 1", "assert count_list([[1, [2, [3, 4]]]]) == 1", "assert count_list([[[1, 2, 3], [4, 5, [6, 7, [8, 9]]]]]) == 1", "assert count_list([[[1, 2, [3, 4]], [5, 6, [7, 8, [9, 10]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]]]) == 2", "assert count_list([[[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 1", "assert count_list([[[1, [2, [3]]], [4, [5, [6]]]]]) == 1", "assert count_list([[[1], [2], [3]], [[4], [5]], [[6], [7], [8], [9]]]) == 3", "assert count_list([[[[[1, 2]]]]]) == 1", "assert count_list([[[[[[[[1, 2, 3]]]]]]]]) == 1", "assert count_list([[[4, 5, [6, 7, [8, 9]]]]]) == 1", "assert count_list([2, 3, [4, [5, [6, [7, [8, 9]]]]]]) == 1", "assert count_list([1, [2, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 1", "assert count_list([1, 0]) == 0", "assert count_list([[[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 2", "assert count_list([True, None, False, 'obIluFKJh', None, 'HHSVQOINN', 'HHSVQOINN']) == 0", "assert count_list([[[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]]]) == 2", "assert count_list([2, 4, 3, [4, [5, [6, [7, [8, 9]]]]]]) == 1", "assert count_list([[[1], [2], [3]], [[4], [5]], [[6], [7], [8], [9]], [[6], [7], [8], [9]]]) == 4", "assert count_list([[[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]]]) == 1", "assert count_list([2, 3, [4, [5, [6, [7, [8, 9]]]]], [4, [5, [6, [7, [8, 9]]]]]]) == 2", "assert count_list([[[5], [5]]]) == 1", "assert count_list([[[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]]], [[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]]]]) == 2", "assert count_list([[[1, [2], [2]], [1, [2], [2]]], [[1, [2], [2]], [1, [2], [2]]]]) == 2", "assert count_list([[[1, [2], [2], [2]], [1, [2], [2], [2]], [1, [2], [2], [2]]], [[1, [2], [2], [2]], [1, [2], [2], [2]], [1, [2], [2], [2]]]]) == 2", "assert count_list([[[[[[[[1, 2, 3]]]], [[[[1, 2, 3]]]]]]], [[[[[[[1, 2, 3]]]], [[[[1, 2, 3]]]]]]]]) == 2", "assert count_list([[14], [14]]) == 2", "assert count_list([[[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]], [11, 12, [13, 14], [13, 14]]], [[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]], [11, 12, [13, 14], [13, 14]]], [[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]], [11, 12, [13, 14], [13, 14]]]]) == 3", "assert count_list([[2, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 1", "assert count_list([[2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 2", "assert count_list([[[1, 3], [4, 5, [6, 7, [8, 9]]]]]) == 1", "assert count_list([[[15, 16, [17, 18, [19, 20]]]], [[15, 16, [17, 18, [19, 20]]]], [[15, 16, [17, 18, [19, 20]]]]]) == 3", "assert count_list([[[2, [3, 4]]], [[2, [3, 4]]]]) == 2", "assert count_list([[[5]]]) == 1", "assert count_list([[[6], [7], [8], [9], [6]], [[1], [2], [3]], [[4], [5]], [[6], [7], [8], [9], [6]], [[6], [7], [8], [9], [6]]]) == 5", "assert count_list([[[1, 2, 3, 2], [1, 2, 3, 2], [4, 5, [6, 7, [8, 9]]]]]) == 1", "assert count_list([[[[[1, 2]]], [[[1, 2]]]], [[[[1, 2]]], [[[1, 2]]]]]) == 2", "assert count_list([[[1, [2], [2], [2]], [1, [2], [2], [2]], [1, [2], [2], [2]]], [[1, [2], [2], [2]], [1, [2], [2], [2]], [1, [2], [2], [2]]], [[1, [2], [2], [2]], [1, [2], [2], [2]], [1, [2], [2], [2]]]]) == 3", "assert count_list([[[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 1", "assert count_list([[1], [1]]) == 2", "assert count_list([[[[[1, 2]]], [[[1, 2]]]], [[[[1, 2]]], [[[1, 2]]]], [[[[1, 2]]], [[[1, 2]]]]]) == 3", "assert count_list([[[1, [2, [3]]], [4, [5, [6]]]], [[1, [2, [3]]], [4, [5, [6]]]]]) == 2", "assert count_list(['obIluFKJh', 'HHSVQOINN']) == 0", "assert count_list([2, [4, [5, [6, [7, [8, 9]]]]]]) == 1", "assert count_list([-10.342467253952691, -91.98145901709941]) == 0", "assert count_list([[[2, [3, 4]]], [[2, [3, 4]]], [[2, [3, 4]]]]) == 3", "assert count_list([[2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 3", "assert count_list([[2, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 1, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 4", "assert count_list([16, 19, 99, -25, 3, -100, 11]) == 0", "assert count_list([[[15, 16, [17, 18, [19, 20]]]], [[15, 16, [17, 18, [19, 20]]]]]) == 2", "assert count_list([[], [], [], []]) == 4", "assert count_list([[[[[[[[1, 2, 3]]]], [[[[1, 2, 3]]]]]]], [[[[[[[1, 2, 3]]]], [[[[1, 2, 3]]]]]]], [[[[[[[1, 2, 3]]]], [[[[1, 2, 3]]]]]]]]) == 3", "assert count_list([2, 3, [[[6, [7, [8, 9]]]]], [[[6, [7, [8, 9]]]]], 2]) == 2", "assert count_list([[True, False, True, False, True, False, True], [], [], []]) == 4", "assert count_list([[[2, [3, 4]], [2, [3, 4]]], [[2, [3, 4]], [2, [3, 4]]]]) == 2", "assert count_list([[1, 1], [1, 1]]) == 2", "assert count_list([[1, 1], [1, 1], [1, 1]]) == 3", "assert count_list([[[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 2", "assert count_list([[[1, 2, [3, 4]], [5, 6, [7, 8, [9, 10]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]]]) == 3", "assert count_list([[47.25172202541427, -91.98145901709941, -91.98145901709941, -10.342467253952691, -91.98145901709941, -10.342467253952691, -10.342467253952691, -10.342467253952691], []]) == 2", "assert count_list([[[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 1", "assert count_list([[[1, 2, [3, 4]], [5, 6, [7, 8, [9, 10]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]], 16]]]) == 2", "assert count_list([[[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 2", "assert count_list([[]]) == 1", "assert count_list([[[0], [0], [0]]]) == 1", "assert count_list([[[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 2", "assert count_list([[[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 3", "assert count_list([[2, [3, [4], [5, [6], [7, [8], [9]]]], [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]], [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]], [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]], [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]], [3, [4], [5, [6], [7, [8], [9]]]]]]) == 5", "assert count_list([[[4, 1, 3], [4, 5, [6, 7, [8, 9]]], [4, 1, 3]], [[4, 1, 3], [4, 5, [6, 7, [8, 9]]], [4, 1, 3]]]) == 2", "assert count_list([[[1], [2], [3], [2]], [[4], [5]], [[6], [7], [8], [9]]]) == 3", "assert count_list([[2, 99, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 99, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 99, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 99, 1, [3, [4], [5, [6], [7, [8], [9]]]]], [2, 99, 1, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 5", "assert count_list([[0, 1, 1, 1], [0, 1, 1, 1], [0, 1, 1, 1], [0, 1, 1, 1]]) == 4", "assert count_list([[[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]]]) == 4", "assert count_list([[[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 4", "assert count_list([[[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]], [11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]]], [[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]], [11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]]], [[11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]], [15, 16, [17, 18, [19, 20]]], [11, 12, [13, 14], [13, 14]], [11, 12, [13, 14], [13, 14]]]]) == 3", "assert count_list([[[4], [5], [4]], [[1], [2], [3], [2]], [[4], [5], [4]], [[6], [7], [8], [9]], [[1], [2], [3], [2]]]) == 5", "assert count_list([[True, False, True, False, True, False, True], ['HHSVQOINN', 'obIluFKJh', 'obIluFKJh', 'qzJk'], [], []]) == 4", "assert count_list([[[0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [0, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]]]) == 5", "assert count_list([[[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1]]) == 5", "assert count_list([[[4], [5]], [[6], [7], [8], [9]]]) == 2", "assert count_list([[1, 1, 1, 1, 1], [1, 1, 1, 1, 1], [1, 1, 1, 1, 1], [1, 1, 1, 1, 1], [1, 1, 1, 1, 1]]) == 5", "assert count_list([[], []]) == 2", "assert count_list([[[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 1]]) == 4", "assert count_list([[[[[1, 2]]], [[[1, 2]]], [[[1, 2]]], [[[1, 2]]]], [[[[1, 2]]], [[[1, 2]]], [[[1, 2]]], [[[1, 2]]]], [[[[1, 2]]], [[[1, 2]]], [[[1, 2]]], [[[1, 2]]]], [[[[1, 2]]], [[[1, 2]]], [[[1, 2]]], [[[1, 2]]]]]) == 4", "assert count_list([[[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 17]]]) == 6", "assert count_list([2, 3, [4, [5, [9, [7, [8, 9]]]], [5, [9, [7, [8, 9]]]], [5, [9, [7, [8, 9]]]]], [4, [5, [9, [7, [8, 9]]]], [5, [9, [7, [8, 9]]]], [5, [9, [7, [8, 9]]]]]]) == 2", "assert count_list([[[], [5], []], [[1], [2], [3], [2]], [[], [5], []], [[], [5], []], [[6], [7], [8], [9]], [[1], [2], [3], [2]]]) == 6", "assert count_list([[[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[1, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 3", "assert count_list([[[1, [2], [2]], [1, [2], [2]]], [[1, [2], [2]], [1, [2], [2]]], [[1, [2], [2]], [1, [2], [2]]]]) == 3", "assert count_list([[[4, 5, [6, 7, [8, 9]]]], [[4, 5, [6, 7, [8, 9]]]]]) == 2", "assert count_list([[], [], []]) == 3", "assert count_list([[[15, 16, [17, 18, [19, 20]]], [15, 16, [17, 18, [19, 20]]]], [[15, 16, [17, 18, [19, 20]]], [15, 16, [17, 18, [19, 20]]]]]) == 2", "assert count_list([[[[2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]], [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 20, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]], [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[[2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]], [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 20, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]], [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 2", "assert count_list([[[4, 5]]]) == 1", "assert count_list([[47.25172202541427, -91.98145901709941, -91.98145901709941, -10.342467253952691, -91.98145901709941, -10.342467253952691, -10.342467253952691, -10.342467253952691], [], [], []]) == 4", "assert count_list([[[1, 2, [3, 4]], [5, 6, 6, [7, 8, [9, 10]]]], [[1, 2, [3, 4]], [5, 6, 6, [7, 8, [9, 10]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]], [[11, 12, [13, 14]], [15, 16, [17, 18, [19, 20]]]]]) == 4", "assert count_list([[], [], [True, None], [], [], []]) == 6", "assert count_list([[], [], [True, None], [], [18, 0, -63, 9, 6, 3, 20, -63, 4, 60], [], [], []]) == 8", "assert count_list([[True, False, True, False, True, False, True, True], [], [], [True, False, True, False, True, False, True, True], []]) == 5", "assert count_list([[2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 4", "assert count_list([[[4], [5], [4]], [[1], [], [3], [], []], [[4], [5], [4]], [[6], [7], [8], [9]], [[1], [], [3], [], []]]) == 5", "assert count_list([0]) == 0", "assert count_list([True, None, False, None, 'HHSVQOINN', 'HHSVQOINN']) == 0", "assert count_list([[[[2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]], [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], 20, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]], [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 1", "assert count_list([[2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]], [2, [3, [4], [5, [6], [7, [8], [9]]]]]]) == 5", "assert count_list([[47.25172202541427, -91.98145901709941, -91.98145901709941, -11.162037698096084, -91.98145901709941, -10.342467253952691, -10.342467253952691, -10.342467253952691], [], [], [], [47.25172202541427, -91.98145901709941, -91.98145901709941, -11.162037698096084, -91.98145901709941, -10.342467253952691, -10.342467253952691, -10.342467253952691]]) == 5", "assert count_list([[[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [0, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]], [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 4", "assert count_list([[[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]], [[3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]], 2, 1, [3, [4], [5, [6], [7, [8], [9]]], [5, [6], [7, [8], [9]]]]]]) == 2", "assert count_list([[[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]], [[17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]], [17, 17, [2, [3, [4, [5, [6, [7, [8, [9, [10]]]]]]]]]]]]) == 5", "assert count_list([True, None, False, 'obIluFKJh', None, 'HHSVQOINN', 'HHSVQOINN', False]) == 0", "assert count_list([[[11, 12], [11, 12], [15, 16, [17, 18, [19, 20]]]], [[11, 12], [11, 12], [15, 16, [17, 18, [19, 20]]]], [[1, 2, [3, 4]], [5, 6, [7, 8, [9, 10]]]], [[11, 12], [11, 12], [15, 16, [17, 18, [19, 20]]]], [[11, 12], [11, 12], [15, 16, [17, 18, [19, 20]]]]]) == 5", "assert count_list([['qQtdzvurOO', 'qzJk', 'HHSVQOINN', 'qQtdzvurOOqzJk', 'y', 'HHSVQOINN', 'HHSVQOINN'], ['qQtdzvurOO', 'qzJk', 'HHSVQOINN', 'qQtdzvurOOqzJk', 'y', 'HHSVQOINN', 'HHSVQOINN'], []]) == 3", "assert count_list([[[1, 3], [4, 5, [6, 7, [8, 9]]]], [[1, 3], [4, 5, [6, 7, [8, 9]]]]]) == 2", "assert count_list([2, 4, 2, [4, [5, [6, [7, [8, 9]]]]]]) == 1" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the last position of an element in a sorted array.\nassert last([1,2,3],1) == 0\nYour code should pass the test:\nassert last([1,2,3],1) == 0", "test_list": [ "assert last([1,2,3],1) == 0", "assert last([1,1,1,2,3,4],1) == 2", "assert last([2,2,3,3,6,8,9],3) == 3" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that matches a string that has an 'a' followed by anything, ending in 'b'.\nassert text_starta_endb(\"aabbbb\")\nYour code should pass the test:\nassert text_starta_endb(\"aabbbb\")", "test_list": [ "assert text_starta_endb(\"aabbbb\")", "assert not text_starta_endb(\"aabAbbbc\")", "assert not text_starta_endb(\"accddbbjjj\")" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write function to find the sum of all items in the given dictionary.\nassert return_sum({'a': 100, 'b':200, 'c':300}) == 600\nYour code should pass the test:\nassert return_sum({'a': 100, 'b':200, 'c':300}) == 600", "test_list": [ "assert return_sum({'a': 100, 'b':200, 'c':300}) == 600", "assert return_sum({'a': 25, 'b':18, 'c':45}) == 88", "assert return_sum({'a': 36, 'b':39, 'c':49}) == 124", "assert return_sum({}) == 0", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 1000001}) == 3000000", "assert return_sum({'a': 1000000000, 'b': 2000000000, 'c': 3000000000}) == 6000000000", "assert return_sum({'b': 2000000000, 'c': 3000000000}) == 5000000000", "assert return_sum({'a': 1000000, 'b': 999999}) == 1999999", "assert return_sum({'a': 1000000000, 'b': 999999}) == 1000999999", "assert return_sum({'b': 1999999999, 'c': 1000001, '': 3000000000}) == 5001000000", "assert return_sum({'a': 1000000, 'b': 999998, 'c': 1000001}) == 2999999", "assert return_sum({'': 3000000000, 'c': 2000000000}) == 5000000000", "assert return_sum({'a': 1000000000, 'b': 1000000000, 'c': 3000000000}) == 5000000000", "assert return_sum({'a': 1000001, 'b': 999999}) == 2000000", "assert return_sum({'a': 1000000, 'c': 1000001}) == 2000001", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 1000001, '': 1999999999}) == 2002999999", "assert return_sum({'b': 2000000000}) == 2000000000", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 2999999999}) == 3001999998", "assert return_sum({'a': 999999, 'b': 999998, 'c': 1000001}) == 2999998", "assert return_sum({'a': 999999, 'b': 2000000000, 'c': 1000001, '': 3000000000}) == 5002000000", "assert return_sum({'a': 999999, 'b': 1000002, 'c': 1000001, '': 3000000000}) == 3003000002", "assert return_sum({'b': 999999, 'c': 1000001}) == 2000000", "assert return_sum({'c': 1000000000, 'a': 1000000000}) == 2000000000", "assert return_sum({'b': 2000000000, '': 2000000000}) == 4000000000", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 1000001, '': 999998}) == 3999998", "assert return_sum({'a': 1000000000}) == 1000000000", "assert return_sum({'b': 1000002, 'c': 1000001, '': 3000000000}) == 3002000003", "assert return_sum({'a': 2999999999, 'b': 2000000000, 'c': 1000001, 'bb': 3000000000}) == 8001000000", "assert return_sum({'a': 1000001, 'b': 999998, 'c': 1000001}) == 3000000", "assert return_sum({'a': 999999, 'b': 999998, 'c': 1000000, 'bb': 1000001}) == 3999998", "assert return_sum({'a': 1000000000, 'b': 999999, '': 1000000000}) == 2000999999", "assert return_sum({'a': 1000001, 'c': 2999999999}) == 3001000000", "assert return_sum({'b': 999998, 'c': 999998}) == 1999996", "assert return_sum({'a': 1000000001}) == 1000000001", "assert return_sum({'b': 999998, '': 1000000000}) == 1000999998", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 1000001, '': 999999}) == 3999999", "assert return_sum({'-74.66033573549664': 3000000000, '40.06660936473111': 16, '3.5240647102472593': 93, '-36.90905808979343': 26, '-88.03974519895088': 36, '4.283511885784776': 1999999999, '90.27479950111882': -10, '27.153580187375766': 49, '75.20584319153858': -71, '-65.82670218861853': -82}) == 5000000056", "assert return_sum({'a': 999999, 'b': 999998, 'c': 1000000, 'bb': 1000001, 'cc': 999998}) == 4999996", "assert return_sum({'-74.66033573549664': 3000000000, '40.06660936473111': 16, '3.5240647102472593': 93, '-36.90905808979343': 26, '-88.03974519895088': 36, '4.283511885784776': 16, '90.27479950111882': -10, '27.153580187375766': 49, '75.20584319153858': -71, '-65.82670218861853': -82}) == 3000000073", "assert return_sum({'b': 2000000000, '': 999999}) == 2000999999", "assert return_sum({'b': 1000002, '': 3000000000}) == 3001000002", "assert return_sum({'b': 2000000000, 'c': 3000000000, 'cc': 1000000001}) == 6000000001", "assert return_sum({'a': 999999, 'b': 999998, '': 3000000000, 'cca': 3000000000}) == 6001999997", "assert return_sum({'a': 1000001, 'b': -10, '': 1000000}) == 1999991", "assert return_sum({'c': 2999999998}) == 2999999998", "assert return_sum({'b': 16}) == 16", "assert return_sum({'-6.592133142656678': -74.66033573549664, '4.283511885784776': 29.179082806283958, '96.95801895498732': -63.94902533164137, '-43.659979177568474': -80.16037131046572, '-43.89754125964028': -88.34305526116584}) == -277.9337048324856", "assert return_sum({'a': 1000002, 'b': 999998, 'c': 1000001, 'cc': 1000000}) == 4000001", "assert return_sum({'b': 999998, '': 1000000001}) == 1000999999", "assert return_sum({'a': 1000000}) == 1000000", "assert return_sum({'a': 1000002, 'b': 999998, 'c': 1000001, 'cc': 1000000, '': 999999}) == 5000000", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 2999999999, '': 2999999999}) == 6001999997", "assert return_sum({'-6.592133142656678': -36.90905808979343, '4.283511885784776': 29.179082806283958, '96.95801895498732': -63.94902533164137, '-43.659979177568474': -80.16037131046572, '-43.89754125964028': -88.34305526116584}) == -240.18242718678238", "assert return_sum({'b': 1000001}) == 1000001", "assert return_sum({'b': 999998, 'c': 3000000000}) == 3000999998", "assert return_sum({'a': 1000002, 'b': 999998, 'c': 1000001, 'cc': 1000000, 'cca': 1000002}) == 5000003", "assert return_sum({'a': 2999999999, 'b': 2000000000, 'c': 1000001, 'bb': 3000000000, 'aa': 16}) == 8001000016", "assert return_sum({'b': 1999999999, '': 3000000000}) == 4999999999", "assert return_sum({'b': 2999999998, '': 3000000000}) == 5999999998", "assert return_sum({'-74.66033573549664': 1000001, '40.06660936473111': 16, '3.5240647102472593': 93, '-36.90905808979343': 26, '-88.03974519895088': 36, '4.283511885784776': 1999999999, '90.27479950111882': -10, '27.153580187375766': 49, '75.20584319153858': -71, '-65.82670218861853': -82}) == 2001000057", "assert return_sum({'a': 1000000, 'b': 999998, 'c': 1000001, 'cc': 1000001}) == 4000000", "assert return_sum({'a': 1000000000, 'b': 2000000000, 'c': 3000000000, 'aa': 26}) == 6000000026", "assert return_sum({'a': 1000000000, 'aa': 1000000001, 'cc': 1999999999}) == 4000000000", "assert return_sum({'-74.66033573549664': 1000001, '40.06660936473111': 16, '3.5240647102472593': 93, '-36.90905808979343': 26, '-88.03974519895088': 36, '4.283511885784776': 1999999999, '90.27479950111882': -10, '75.20584319153858': -71, '-65.82670218861853': -82}) == 2001000008", "assert return_sum({'a': 1000000002}) == 1000000002", "assert return_sum({'b': 999997, '': 1000000000}) == 1000999997", "assert return_sum({'a': 999999, 'c': 1000001}) == 2000000", "assert return_sum({'b': 999999, 'c': 1000001, '': 1000002}) == 3000002", "assert return_sum({'-74.66033573549664': 1000001, '40.06660936473111': 16, '3.5240647102472593': 93, '-36.90905808979343': 26, '-88.03974519895088': 36, '4.283511885784776': 1999999999, '90.27479950111882': -10, '27.153580187375766': 49, '75.20584319153858': -71, '-65.82670218861853': -82, '89.97296312885616': -71}) == 2000999986", "assert return_sum({'a': 1000000, 'c': 1000001, 'ca': 999999}) == 3000000", "assert return_sum({'b': 999998, '': 1000000001, 'cc': 999999}) == 1001999998", "assert return_sum({'': 1000000001, 'a': 1000000001}) == 2000000002", "assert return_sum({'a': 1000001, 'cc': 2999999999}) == 3001000000", "assert return_sum({'b': 999996, '': 1000000000}) == 1000999996", "assert return_sum({'b': 999998, 'c': 3000000000, '': 93, 'bb': 26}) == 3001000117", "assert return_sum({'b': 2999999998, 'cca': 999999}) == 3000999997", "assert return_sum({'a': 1000000, 'b': 999998, 'c': 1000001, 'cc': 1000001, 'bb': 1000000001}) == 1004000001", "assert return_sum({'b': 999999, 'c': 1000001, '': 999998}) == 2999998", "assert return_sum({'96.95801895498732': 1000000002, '-88.03974519895088': 49}) == 1000000051", "assert return_sum({'b': 999997, '': 1000000001}) == 1000999998", "assert return_sum({'a': 1000000000, 'b': 999999, 'cc': 1000000001}) == 2001000000", "assert return_sum({'a': 1000000, 'b': 999999, 'c': 1000002}) == 3000001", "assert return_sum({'a': 999996}) == 999996", "assert return_sum({'a': 999999, 'c': 1000000, 'bb': 999999, 'cc': 999998}) == 3999996", "assert return_sum({'a': 999999, 'c': 1000000, 'bb': 1000000, 'cc': 999998}) == 3999997", "assert return_sum({'b': 999999, 'c': 1000001, 'bb': 49}) == 2000049", "assert return_sum({'b': 999999, 'c': -10, '': 999998, 'aa': 16}) == 2000003", "assert return_sum({'b': 1000002, 'c': 999999}) == 2000001", "assert return_sum({'a': 1000000000, 'b': 999999, 'ccab': 1000000}) == 1001999999", "assert return_sum({'4.283511885784776': 29.179082806283958, '96.95801895498732': -63.94902533164137, '-43.659979177568474': -80.16037131046572, '-43.89754125964028': -63.94902533164137}) == -178.8793391674645", "assert return_sum({'a': 999999, 'c': 1000000, 'bb': 999999, 'cc': 999998, 'aa': 999997}) == 4999993", "assert return_sum({'a': 999999, 'c': 1000001, '': 3000000000}) == 3002000000", "assert return_sum({'b': 16, 'ca': 999999}) == 1000015", "assert return_sum({'4.283511885784776': 29.179082806283958, '96.95801895498732': -64.13993946348552, '-43.659979177568474': -80.16037131046572, '-43.89754125964028': -63.94902533164137}) == -179.07025329930866", "assert return_sum({'b': 1000000, 'c': 1000001, '': 999998}) == 2999999", "assert return_sum({'a': 1000000000, 'aa': 3000000000}) == 4000000000", "assert return_sum({'a': 1000000, 'b': 999998, 'c': 1000001, 'cc': 1000001, '': 1000000}) == 5000000", "assert return_sum({'-74.66033573549664': 3000000000, '40.06660936473111': 16, '3.5240647102472593': 93, '-36.90905808979343': 26, '-88.03974519895088': 36, '4.283511885784776': 1999999999, '90.27479950111882': -10, '27.153580187375766': 48, '75.20584319153858': -71, '-65.82670218861853': -82}) == 5000000055", "assert return_sum({'b': 2999999998}) == 2999999998", "assert return_sum({'': 999998}) == 999998", "assert return_sum({'b': 999999}) == 999999", "assert return_sum({'a': 999999, 'c': 1000000, 'bb': 999999, 'cc': 48}) == 3000046", "assert return_sum({'b': 1000002, '': 3000000000, 'bb': 2999999999}) == 6001000001", "assert return_sum({'-6.592133142656678': -74.66033573549664, '4.283511885784776': 29.179082806283958, '-43.659979177568474': -80.16037131046572, '-43.89754125964028': -88.34305526116584}) == -213.98467950084427", "assert return_sum({'b': 17, 'ca': 999999}) == 1000016", "assert return_sum({'b': 1999999999, 'c': 1000001, '': 3000000000, 'bb': 999997}) == 5001999997" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of all odd natural numbers within the range l and r.\nassert sum_in_range(2,5) == 8\nYour code should pass the test:\nassert sum_in_range(2,5) == 8", "test_list": [ "assert sum_in_range(2,5) == 8", "assert sum_in_range(5,7) == 12", "assert sum_in_range(7,13) == 40" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the sum of an array.\nassert _sum([1, 2, 3]) == 6\nYour code should pass the test:\nassert _sum([1, 2, 3]) == 6", "test_list": [ "assert _sum([1, 2, 3]) == 6", "assert _sum([15, 12, 13, 10]) == 50", "assert _sum([0, 1, 2]) == 3", "assert _sum([10, -5, 3, 7, -2]) == 13", "assert _sum([10, -5, 3, 7, -2, -2]) == 11", "assert _sum([10, -5, -5, 3, 7, -2]) == 8", "assert _sum([10, -5, -5, 3, -2]) == 1", "assert _sum([-2, 10, -5, 3, 7, -2]) == 11", "assert _sum([-2, 10, -5, 3, 7, -3, -2]) == 8", "assert _sum([10, -5, 3, -2]) == 6", "assert _sum([-5, 3, 7, -2, -2]) == 1", "assert _sum([10, 10, -5, 3, 7, -2, -2, 7]) == 28", "assert _sum([-2, 10, -5, 3, 7, 7, -3, -2]) == 15", "assert _sum([-5, 3, 7, 7, -2]) == 10", "assert _sum([-5, -4, 3, 7, 7, -2]) == 6", "assert _sum([-5, 3, 7, 7, -2, -2]) == 8", "assert _sum([-6, 3, 7, 8, -2]) == 10", "assert _sum([-2, -1, 10, -5, 3, 7, -1, -2]) == 9", "assert _sum([10, 3, -5, 3, -2]) == 9", "assert _sum([10, -5, 3, -6, -2]) == 0", "assert _sum([10, -5, 9, 3, 7, -2, 7]) == 29", "assert _sum([10, 10, -5, 3, 7, -2, -2]) == 21", "assert _sum([10, -5, 3, 7, -2, -2, 7, -5]) == 13", "assert _sum([-2, -5, -4, 3, 7, 7, -5, -2]) == -1", "assert _sum([-5, -4, 3, 7, 3, -2]) == 2", "assert _sum([-5, 3, 7, 7, -2, -2, 7]) == 15", "assert _sum([-5, 3, 7, 7, -2, -4, -2]) == 4", "assert _sum([10, -5, 9, 3, 7, -2, 7, 3]) == 32", "assert _sum([9, 3, -5, 3, -2]) == 8", "assert _sum([-5, 3, -2]) == -4", "assert _sum([-5, -4, -5, 3, 7, 7, -2]) == 1", "assert _sum([-5, -2]) == -7", "assert _sum([9, 3, 7, 7, -2, -4, -2]) == 18", "assert _sum([-5, -5, -6, 3, -2, -2]) == -17", "assert _sum([-2, -1, 10, -5, 3, 7, -2, -1, -2]) == 7", "assert _sum([10, -5, 3, 7, -2, 10]) == 23", "assert _sum([10, -5, -5, -2, 3, -2]) == -1", "assert _sum([-2, -5, 3]) == -4", "assert _sum([-5, -3]) == -8", "assert _sum([10, 3, -5, 3, 3, -2]) == 12", "assert _sum([10, -5, 3, 7, -2, 7, -2]) == 18", "assert _sum([-2, -5, -4, 3, 7, 7, -3, -5, -2]) == -4", "assert _sum([-5, 3, 8, 7]) == 13", "assert _sum([10, -5, 3, 8, -2]) == 14", "assert _sum([10, -4, 3, 7, -2, 10]) == 24", "assert _sum([-2, 10, -5, 3, 7, 7, -3, -2, -5]) == 10", "assert _sum([10, -5, -5, 3, 7, -2, -2]) == 6", "assert _sum([-2, 10, -5, 3, -1, 9, 7, -3, -2, -5]) == 11", "assert _sum([-5, -5, -6, 3, -2, -2, -2, -2]) == -21", "assert _sum([9, 3, 9, -5, 3, -2]) == 17", "assert _sum([10, -5, -3, 7, -2, -2]) == 5", "assert _sum([9, 10, 3, 7, -2, -4, -2]) == 21", "assert _sum([-3]) == -3", "assert _sum([-5, 3, 7, -2, -2, -5]) == -4", "assert _sum([10, 3, -5, 3, -3]) == 8", "assert _sum([10, 11, -5, 3, 7, -2]) == 24", "assert _sum([-5, 3, 3, -2]) == -1", "assert _sum([10, -5, 7, 3, -6, -2]) == 7", "assert _sum([-5, -4, -3]) == -12", "assert _sum([10, 11, 3, 7, -2]) == 29", "assert _sum([-5, 8, -5, 3, 7, 7, -2]) == 13", "assert _sum([8, 3, 12, 9, -5, 3, -2]) == 28", "assert _sum([9, 3, 3, -2]) == 13", "assert _sum([10, -5, -3, 11, -2, -2, 7]) == 16", "assert _sum([11, -2, 10, 3, -1, 9, 7, -3, -2, -5]) == 27", "assert _sum([-5, 3, 7, -1, -2, -4, -2]) == -4", "assert _sum([10, -5, 3, -1, 9, 7, -3, -2, -5, 7]) == 20", "assert _sum([9, 10, 3, 7, -2, -4, -2, -2]) == 19", "assert _sum([-5, -2, 3, -2, 7, -2, -2]) == -3", "assert _sum([9, 3, 9, -5, 3, -2, 9]) == 26", "assert _sum([10, -5, 6, 7, -5]) == 13", "assert _sum([10, -5, -5, 3, 7, -2, -1, -2]) == 5", "assert _sum([10, -5, -5, 3, 7]) == 10", "assert _sum([-5, 3, 7, -1, -2, 8, -4, -2]) == 4", "assert _sum([-2, -1, 10, -5, 3, 7, -2, -1, -2, 10]) == 17", "assert _sum([-2, -5, 3, 7, 7, -3, -2, -5]) == 0", "assert _sum([10, -5, -5, 3, 7, -2, -2, -2]) == 4", "assert _sum([9, 7, 7, -2, -4, -2]) == 15", "assert _sum([10, 10, 3, 7, -2, -2, 7]) == 33", "assert _sum([-2, 10, -4, 3, -1, 9, 6, -3, -2, -5]) == 11", "assert _sum([-2, 10, -5, 3, 7]) == 13", "assert _sum([-5, 3, 7, 7, 6, -2, -2, 7, 7]) == 28", "assert _sum([6, -5, -2]) == -1", "assert _sum([-5, -3, -3]) == -11", "assert _sum([-2, 10, -4, 3, -1, 9, 6, -3, -2, -5, -4]) == 7", "assert _sum([10, -5, 9, 3, -2, 7, 10]) == 32", "assert _sum([9, 3, -5, -2]) == 5", "assert _sum([10, -5, 3, 7, -2, 7]) == 20", "assert _sum([-2, 10, -5, 7]) == 10", "assert _sum([10, -5, 9, 3, 7, -2, -4, 7]) == 25", "assert _sum([-4]) == -4", "assert _sum([-5]) == -5", "assert _sum([10, 7, -5, 3, 7, -2, 7, -5, -2]) == 20", "assert _sum([10, -3, 9, 3, 7, -2, 7, 3]) == 34", "assert _sum([10, -5, 3, 7]) == 15", "assert _sum([10, -4, 3, 7, -2, 10, 7, -2]) == 29", "assert _sum([10, 10, -5, 3, 7, -2, -2, 3]) == 24", "assert _sum([-5, -1, -5, 3, 7, 7, -2]) == 4", "assert _sum([10, -5, 9, 3, 6, -2, 7, 3, 3]) == 34", "assert _sum([10, -5, 3, 7, -2, 10, 7, -2]) == 28", "assert _sum([-2, -1, 10, -5, 3, 7, -2, -1, -2, 10, -2]) == 15", "assert _sum([10, -5, -2, 3, 8, 10]) == 24", "assert _sum([10, -3, 9, 3, 7, -2, -3, 7, 3, -2]) == 29", "assert _sum([]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to that rotate left bits by d bits a given number. We assume that the number is 32 bit.\nassert left_rotate(16,2) == 64\nYour code should pass the test:\nassert left_rotate(16,2) == 64", "test_list": [ "assert left_rotate(16,2) == 64", "assert left_rotate(10,2) == 40", "assert left_rotate(99,3) == 792", "assert left_rotate(99,3) == 792", "assert left_rotate(0b0001,3) == 0b1000", "assert left_rotate(0b0101,3) == 0b101000", "assert left_rotate(0b11101,3) == 0b11101000", "assert left_rotate(0, 4) == 0", "assert left_rotate(0, 0) == 0", "assert left_rotate(1, 1) == 2", "assert left_rotate(4, 4) == 64", "assert left_rotate(1, 4) == 16", "assert left_rotate(1, 0) == 1", "assert left_rotate(0, 1) == 0", "assert left_rotate(4, 1) == 8", "assert left_rotate(5, 4) == 80", "assert left_rotate(4, 0) == 4", "assert left_rotate(3, 3) == 24", "assert left_rotate(5, 3) == 40", "assert left_rotate(5, 5) == 160", "assert left_rotate(4, 3) == 32", "assert left_rotate(1, 5) == 32", "assert left_rotate(2, 1) == 4", "assert left_rotate(2, 5) == 64", "assert left_rotate(3, 2) == 12", "assert left_rotate(1, 3) == 8", "assert left_rotate(3, 0) == 3", "assert left_rotate(6, 5) == 192", "assert left_rotate(5, 0) == 5", "assert left_rotate(2, 3) == 16", "assert left_rotate(4, 6) == 256", "assert left_rotate(6, 2) == 24", "assert left_rotate(3, 1) == 6", "assert left_rotate(6, 1) == 12", "assert left_rotate(3, 4) == 48", "assert left_rotate(2, 6) == 128", "assert left_rotate(6, 6) == 384", "assert left_rotate(0, 6) == 0", "assert left_rotate(5, 6) == 320", "assert left_rotate(5, 1) == 10", "assert left_rotate(6, 4) == 96", "assert left_rotate(2, 4) == 32", "assert left_rotate(3, 5) == 96", "assert left_rotate(1, 6) == 64", "assert left_rotate(4, 2) == 16", "assert left_rotate(7, 1) == 14", "assert left_rotate(7, 7) == 896", "assert left_rotate(2, 2) == 8", "assert left_rotate(1, 2) == 4", "assert left_rotate(6, 3) == 48", "assert left_rotate(4, 5) == 128", "assert left_rotate(8, 8) == 2048", "assert left_rotate(7, 6) == 448", "assert left_rotate(7, 3) == 56", "assert left_rotate(8, 7) == 1024", "assert left_rotate(9, 1) == 18", "assert left_rotate(7, 0) == 7", "assert left_rotate(9, 4) == 144", "assert left_rotate(9, 8) == 2304", "assert left_rotate(7, 2) == 28", "assert left_rotate(8, 6) == 512", "assert left_rotate(7, 8) == 1792", "assert left_rotate(8, 0) == 8", "assert left_rotate(5, 2) == 20", "assert left_rotate(5, 10) == 5120", "assert left_rotate(8, 3) == 64", "assert left_rotate(2, 0) == 2", "assert left_rotate(9, 10) == 9216", "assert left_rotate(2, 8) == 512", "assert left_rotate(3, 9) == 1536", "assert left_rotate(4, 10) == 4096", "assert left_rotate(10, 6) == 640", "assert left_rotate(6, 9) == 3072", "assert left_rotate(5, 8) == 1280", "assert left_rotate(True, True) == 2", "assert left_rotate(10, 0) == 10", "assert left_rotate(True, False) == 1", "assert left_rotate(10, 9) == 5120", "assert left_rotate(10, 8) == 2560", "assert left_rotate(9, 5) == 288", "assert left_rotate(6, 7) == 768", "assert left_rotate(9, 0) == 9", "assert left_rotate(9, 9) == 4608", "assert left_rotate(1, 9) == 512", "assert left_rotate(7, 5) == 224", "assert left_rotate(8, 10) == 8192", "assert left_rotate(0, 2) == 0", "assert left_rotate(8, 1) == 16", "assert left_rotate(1, 8) == 256", "assert left_rotate(False, False) == 0", "assert left_rotate(2, 9) == 1024", "assert left_rotate(9, 3) == 72", "assert left_rotate(10, 10) == 10240", "assert left_rotate(0, 3) == 0", "assert left_rotate(6, 0) == 6", "assert left_rotate(3, 10) == 3072", "assert left_rotate(11, 11) == 22528", "assert left_rotate(9, 11) == 18432", "assert left_rotate(11, 10) == 11264", "assert left_rotate(8, 9) == 4096", "assert left_rotate(12, 6) == 768", "assert left_rotate(False, True) == 0", "assert left_rotate(0, 9) == 0", "assert left_rotate(11, 8) == 2816", "assert left_rotate(0, 11) == 0", "assert left_rotate(3, 7) == 384", "assert left_rotate(12, 12) == 49152", "assert left_rotate(0, 5) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find squares of individual elements in a list.\nassert square_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1, 4, 9, 16, 25, 36, 49, 64, 81, 100]\nYour code should pass the test:\nassert square_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1, 4, 9, 16, 25, 36, 49, 64, 81, 100]", "test_list": [ "assert square_nums([1, 2, 3, 4, 5, 6, 7, 8, 9, 10])==[1, 4, 9, 16, 25, 36, 49, 64, 81, 100]", "assert square_nums([10,20,30])==([100,400,900])", "assert square_nums([12,15])==([144,225])", "assert square_nums([]) == []", "assert square_nums([-3, -2, -1, 0, 1, 2, 3]) == [9, 4, 1, 0, 1, 4, 9]", "assert square_nums([9, 17, 5, 23, 10, 13, 19, 7, 2, 4]) == [81, 289, 25, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([-2, 17, 5, 23, 10, 13, 19, 7, 2, 4]) == [4, 289, 25, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([17, -3, -2, -1, 0, 1, 2, 3]) == [289, 9, 4, 1, 0, 1, 4, 9]", "assert square_nums([-2, 17, 5, 24, 10, 13, 19, 7, 2, 4]) == [4, 289, 25, 576, 100, 169, 361, 49, 4, 16]", "assert square_nums([-3, -2, -1, 0, 1, 2]) == [9, 4, 1, 0, 1, 4]", "assert square_nums([17, -3, -2, 1, 0, 1, 2, 3]) == [289, 9, 4, 1, 0, 1, 4, 9]", "assert square_nums([-3, -2, -1, 0, 1, 7, 2, 3]) == [9, 4, 1, 0, 1, 49, 4, 9]", "assert square_nums([-3, 1, -1, 0, 1, 2, 3]) == [9, 1, 1, 0, 1, 4, 9]", "assert square_nums([17, -2, 1, -92, -36, 69, 18]) == [289, 4, 1, 8464, 1296, 4761, 324]", "assert square_nums([17, -2, 1, -92, -36, 69, 18, -36]) == [289, 4, 1, 8464, 1296, 4761, 324, 1296]", "assert square_nums([-3, 1, -1, 0, 1, 2, 3, 1]) == [9, 1, 1, 0, 1, 4, 9, 1]", "assert square_nums([False, True, False, True, False, True, True, True, False, False, False]) == [0, 1, 0, 1, 0, 1, 1, 1, 0, 0, 0]", "assert square_nums([17, -3, -2, -1, 0, 1, 69, 3]) == [289, 9, 4, 1, 0, 1, 4761, 9]", "assert square_nums([17, 4, -2, -1, 0, 1, 10, 3]) == [289, 16, 4, 1, 0, 1, 100, 9]", "assert square_nums([9, 17, 23, 10, 13, 19, 7, 7, 2, 4]) == [81, 289, 529, 100, 169, 361, 49, 49, 4, 16]", "assert square_nums([9, 17, 23, 10, 13, 19, 7, 7, 2, 9]) == [81, 289, 529, 100, 169, 361, 49, 49, 4, 81]", "assert square_nums([15, 17, -2, 1, -92, -36, 69, 18]) == [225, 289, 4, 1, 8464, 1296, 4761, 324]", "assert square_nums([17, 1, 1, -92, -36, 69, 18, 17]) == [289, 1, 1, 8464, 1296, 4761, 324, 289]", "assert square_nums([17, -3, -2, -1, 0, 1, 69, 17, 3]) == [289, 9, 4, 1, 0, 1, 4761, 289, 9]", "assert square_nums([-3, -2, -1, 0, 2, 1]) == [9, 4, 1, 0, 4, 1]", "assert square_nums([17, -2, 1, 1, -36, 69, 18]) == [289, 4, 1, 1, 1296, 4761, 324]", "assert square_nums([-3, -2, -1, 0, 1, 69, 17, 3, -2]) == [9, 4, 1, 0, 1, 4761, 289, 9, 4]", "assert square_nums([-2, 17, 5, 24, 13, 19, 7, 2, 4]) == [4, 289, 25, 576, 169, 361, 49, 4, 16]", "assert square_nums([False, True, False, True, False, True, True, True, False, False]) == [0, 1, 0, 1, 0, 1, 1, 1, 0, 0]", "assert square_nums([17, -2, 1, 1, -36, 18]) == [289, 4, 1, 1, 1296, 324]", "assert square_nums([9, 17, 5, 12, 23, 10, 13, 19, 7, 2, 4]) == [81, 289, 25, 144, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([17, -2, 1, -92, 18, -36, 17, -2]) == [289, 4, 1, 8464, 324, 1296, 289, 4]", "assert square_nums([17, -3, -2, -1, 0, 1, 2, 2, 3]) == [289, 9, 4, 1, 0, 1, 4, 4, 9]", "assert square_nums([17, -2, 1, -92, -36, 69, 18, 17]) == [289, 4, 1, 8464, 1296, 4761, 324, 289]", "assert square_nums([-2, 17, 24, 13, 19, 7, 2, 4]) == [4, 289, 576, 169, 361, 49, 4, 16]", "assert square_nums([24, 9, 17, 5, 12, 23, 10, 13, 19, 7, 2, 4]) == [576, 81, 289, 25, 144, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([17, -3, -2, 5, -1, 1, 2, 2, 3]) == [289, 9, 4, 25, 1, 1, 4, 4, 9]", "assert square_nums([17, -2, 1, -92, -36, 69, 18, 17, 17]) == [289, 4, 1, 8464, 1296, 4761, 324, 289, 289]", "assert square_nums([17, -2, 1, -91, -92, -36, 69, 18]) == [289, 4, 1, 8281, 8464, 1296, 4761, 324]", "assert square_nums([17, -2, 1, -92, 18, -36, 17, 24, -2, -2]) == [289, 4, 1, 8464, 324, 1296, 289, 576, 4, 4]", "assert square_nums([17, -3, -2, 5, -1, 1, 2, 3, 3]) == [289, 9, 4, 25, 1, 1, 4, 9, 9]", "assert square_nums([17, -3, -2, -1, 0, 1, 69, 3, -2]) == [289, 9, 4, 1, 0, 1, 4761, 9, 4]", "assert square_nums([-3, -2, -1, 2, 18, 1, 18, 7, 2, 3]) == [9, 4, 1, 4, 324, 1, 324, 49, 4, 9]", "assert square_nums([-3, -2, 15, 0, 2]) == [9, 4, 225, 0, 4]", "assert square_nums([17, 4, -2, -1, 0, 3, 1, 3, 3]) == [289, 16, 4, 1, 0, 9, 1, 9, 9]", "assert square_nums([17, 1, -1, 1, -92, -36, 69, 18, 1, 1]) == [289, 1, 1, 1, 8464, 1296, 4761, 324, 1, 1]", "assert square_nums([-3, -2, -1, 0, 1, 69, 17, 3, -2, 17]) == [9, 4, 1, 0, 1, 4761, 289, 9, 4, 289]", "assert square_nums([9, 17, 5, 12, 23, 10, 13, 19, 7, 4]) == [81, 289, 25, 144, 529, 100, 169, 361, 49, 16]", "assert square_nums([-3, -1, -2, -1, 0, 1, 2, 3, -1]) == [9, 1, 4, 1, 0, 1, 4, 9, 1]", "assert square_nums([-3, -2, -1, 0, 1, 69, 3, -2, 17]) == [9, 4, 1, 0, 1, 4761, 9, 4, 289]", "assert square_nums([3, 17, 24, 13, 19, 7, 2, 4]) == [9, 289, 576, 169, 361, 49, 4, 16]", "assert square_nums([17, -2, 1, 18, -36, 17, -2]) == [289, 4, 1, 324, 1296, 289, 4]", "assert square_nums([4, -2, -1, 0, 3, 1, 3, 3]) == [16, 4, 1, 0, 9, 1, 9, 9]", "assert square_nums([-2, 17, 5, 23, 10, 13, 19, 7, 2, 4, 13]) == [4, 289, 25, 529, 100, 169, 361, 49, 4, 16, 169]", "assert square_nums([17, -2, 1, -92, -36, 69, 18, 17, 18]) == [289, 4, 1, 8464, 1296, 4761, 324, 289, 324]", "assert square_nums([17, -1, -3, -2, -1, 0, 1, 2, 3, -1]) == [289, 1, 9, 4, 1, 0, 1, 4, 9, 1]", "assert square_nums([17, -3, -2, 4, 1, 0, 1, 2, 3]) == [289, 9, 4, 16, 1, 0, 1, 4, 9]", "assert square_nums([17, -2, 1, 1, -35, 69, 18]) == [289, 4, 1, 1, 1225, 4761, 324]", "assert square_nums([-2, 17, 5, 0, 23, 10, 13, 19, 7, 2, 4]) == [4, 289, 25, 0, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([17, -3, -2, -1, 1, 69, 17, 3]) == [289, 9, 4, 1, 1, 4761, 289, 9]", "assert square_nums([-2, 17, 5, 24, 13, 19, 7, 2, 3]) == [4, 289, 25, 576, 169, 361, 49, 4, 9]", "assert square_nums([24, 9, 17, 6, 12, 23, 10, 13, 19, 7, 2, 4]) == [576, 81, 289, 36, 144, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([17, -2, 1, 18, -36, 17]) == [289, 4, 1, 324, 1296, 289]", "assert square_nums([17, -2, -1, 0, 1, 7, 2, 3]) == [289, 4, 1, 0, 1, 49, 4, 9]", "assert square_nums([17, -2, 1, -36, 17, -2]) == [289, 4, 1, 1296, 289, 4]", "assert square_nums([-2, 1, 18, -36, 16, -2]) == [4, 1, 324, 1296, 256, 4]", "assert square_nums([24, 9, 17, 6, 12, 10, 13, 19, 7, 2, 4]) == [576, 81, 289, 36, 144, 100, 169, 361, 49, 4, 16]", "assert square_nums([24, 10, 9, 17, 6, 12, 10, 13, 19, 7, 2, 4]) == [576, 100, 81, 289, 36, 144, 100, 169, 361, 49, 4, 16]", "assert square_nums([24, 9, 19, 6, 12, 10, 6, 13, 19, 7, 2, 4, 2, 6]) == [576, 81, 361, 36, 144, 100, 36, 169, 361, 49, 4, 16, 4, 36]", "assert square_nums([17, -3, 4, 1, 7, 1, 2, 3]) == [289, 9, 16, 1, 49, 1, 4, 9]", "assert square_nums([-3, 1, -1, 1, 2, 3, 1]) == [9, 1, 1, 1, 4, 9, 1]", "assert square_nums([68, 17, -2, 1, -92, -36, 69, 1, 18]) == [4624, 289, 4, 1, 8464, 1296, 4761, 1, 324]", "assert square_nums([6, 9, 17, 5, 12, 23, 10, 13, 19, 7, 4]) == [36, 81, 289, 25, 144, 529, 100, 169, 361, 49, 16]", "assert square_nums([17, -3, -1, 0, 1, 69, 3, -2]) == [289, 9, 1, 0, 1, 4761, 9, 4]", "assert square_nums([24, 9, -1, 19, 6, 12, 10, 6, 13, 19, 7, 2, 4, 2, 6, 2, -1]) == [576, 81, 1, 361, 36, 144, 100, 36, 169, 361, 49, 4, 16, 4, 36, 4, 1]", "assert square_nums([24, 9, 17, 12, 10, 13, 19, 7, 2, 4, 68, 9]) == [576, 81, 289, 144, 100, 169, 361, 49, 4, 16, 4624, 81]", "assert square_nums([17, -2, -91, -92, 18, -36, 17, 24, 7, -2, -2]) == [289, 4, 8281, 8464, 324, 1296, 289, 576, 49, 4, 4]", "assert square_nums([9, 17, 23, 10, 13, 19, 7, 7, 2, 9, 9]) == [81, 289, 529, 100, 169, 361, 49, 49, 4, 81, 81]", "assert square_nums([17, -2, 4, 1, 0, 1, 2, 3]) == [289, 4, 16, 1, 0, 1, 4, 9]", "assert square_nums([17, -3, 4, 1, 7, 2, 3]) == [289, 9, 16, 1, 49, 4, 9]", "assert square_nums([-2, 17, 5, 0, 10, 13, 19, 7, 2, 4]) == [4, 289, 25, 0, 100, 169, 361, 49, 4, 16]", "assert square_nums([-2, 10, -3, 18, -36, 16, -2]) == [4, 100, 9, 324, 1296, 256, 4]", "assert square_nums([17, -2, 4, 1, 18, -3, -36, 17, -2]) == [289, 4, 16, 1, 324, 9, 1296, 289, 4]", "assert square_nums([17, 17, 1, -92, -36, 69, 18, -36]) == [289, 289, 1, 8464, 1296, 4761, 324, 1296]", "assert square_nums([17, -2, -91, -92, 18, -36, 17, 24, 7, -2, -2, 24]) == [289, 4, 8281, 8464, 324, 1296, 289, 576, 49, 4, 4, 576]", "assert square_nums([17, -3, -1, 0, 1, 69, 3, -2, 17]) == [289, 9, 1, 0, 1, 4761, 9, 4, 289]", "assert square_nums([-2, -91, 5, 0, 10, 14, 19, 7, 2, 4, -2]) == [4, 8281, 25, 0, 100, 196, 361, 49, 4, 16, 4]", "assert square_nums([17, -3, -2, -1, 0, 1, 69, -2]) == [289, 9, 4, 1, 0, 1, 4761, 4]", "assert square_nums([17, 16, 6, 17, 1, -92, -36, 69, 18, -36]) == [289, 256, 36, 289, 1, 8464, 1296, 4761, 324, 1296]", "assert square_nums([24, 9, -2, 19, 6, 12, 10, 6, 13, 19, 7, 2, 4, 2, 6, 2, -1]) == [576, 81, 4, 361, 36, 144, 100, 36, 169, 361, 49, 4, 16, 4, 36, 4, 1]", "assert square_nums([-3, -3, -2, -1, 0, 2, 3]) == [9, 9, 4, 1, 0, 4, 9]", "assert square_nums([9, 17, 23, 10, 9, 13, 19, 7, 7, 2, 9]) == [81, 289, 529, 100, 81, 169, 361, 49, 49, 4, 81]", "assert square_nums([17, -2, -91, -92, 18, -36, 17, -1, 24, 7, -2, -2, 24]) == [289, 4, 8281, 8464, 324, 1296, 289, 1, 576, 49, 4, 4, 576]", "assert square_nums([9, -3, -2, 5, -1, 1, 2, 2, 3]) == [81, 9, 4, 25, 1, 1, 4, 4, 9]", "assert square_nums([-3, 1, -1, 0, 1, 2, 3, 1, 1]) == [9, 1, 1, 0, 1, 4, 9, 1, 1]", "assert square_nums([24, 9, 17, 12, 23, 13, 19, 7, 2, 4]) == [576, 81, 289, 144, 529, 169, 361, 49, 4, 16]", "assert square_nums([16, 6, 17, 1, -92, -3, -36, 69, 18, -36]) == [256, 36, 289, 1, 8464, 9, 1296, 4761, 324, 1296]", "assert square_nums([-2, 1, 18, -36, 15, -2]) == [4, 1, 324, 1296, 225, 4]", "assert square_nums([16, 17, 1, -92, -3, -36, 69, 18, -36, 1]) == [256, 289, 1, 8464, 9, 1296, 4761, 324, 1296, 1]", "assert square_nums([-2, 17, 3, 13, 23, 10, 13, 19, 7, 2, 4]) == [4, 289, 9, 169, 529, 100, 169, 361, 49, 4, 16]", "assert square_nums([19, -3, -2, -1, 2, 1, 18, 7, 2, 3]) == [361, 9, 4, 1, 4, 1, 324, 49, 4, 9]", "assert square_nums([17, -2, 1, 68, 1, -35, 69, 18]) == [289, 4, 1, 4624, 1, 1225, 4761, 324]", "assert square_nums([-2, 17, -2, 1, -92, -36, 69, 18, 17, 17]) == [4, 289, 4, 1, 8464, 1296, 4761, 324, 289, 289]", "assert square_nums([-2, 1, 18, -3, -36, 15, -2, 18, -36]) == [4, 1, 324, 9, 1296, 225, 4, 324, 1296]", "assert square_nums([-2, 17, 15, 5, 24, -2, 13, 7, 2, 3]) == [4, 289, 225, 25, 576, 4, 169, 49, 4, 9]", "assert square_nums([-3, -2, -1, 2, 18, -92, 18, 7, 2, 3]) == [9, 4, 1, 4, 324, 8464, 324, 49, 4, 9]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth tetrahedral number.\nassert tetrahedral_number(5) == 35\nYour code should pass the test:\nassert tetrahedral_number(5) == 35", "test_list": [ "assert tetrahedral_number(5) == 35", "assert tetrahedral_number(6) == 56", "assert tetrahedral_number(7) == 84", "assert tetrahedral_number(10) == 220.0", "assert tetrahedral_number(11) == 286.0", "assert tetrahedral_number(True) == 1.0", "assert tetrahedral_number(False) == 0.0", "assert tetrahedral_number(12) == 364.0", "assert tetrahedral_number(13) == 455.0", "assert tetrahedral_number(9) == 165.0", "assert tetrahedral_number(14) == 560.0", "assert tetrahedral_number(8) == 120.0", "assert tetrahedral_number(15) == 680.0", "assert tetrahedral_number(16) == 816.0", "assert tetrahedral_number(73) == 67525.0", "assert tetrahedral_number(17) == 969.0", "assert tetrahedral_number(7) == 84.0", "assert tetrahedral_number(74) == 70300.0", "assert tetrahedral_number(75) == 73150.0", "assert tetrahedral_number(76) == 76076.0", "assert tetrahedral_number(29) == 4495.0", "assert tetrahedral_number(78) == 82160.0", "assert tetrahedral_number(18) == 1140.0", "assert tetrahedral_number(77) == 79079.0", "assert tetrahedral_number(19) == 1330.0", "assert tetrahedral_number(72) == 64824.0", "assert tetrahedral_number(28) == 4060.0", "assert tetrahedral_number(30) == 4960.0", "assert tetrahedral_number(6) == 56.0", "assert tetrahedral_number(55) == 29260.0", "assert tetrahedral_number(56) == 30856.0", "assert tetrahedral_number(5) == 35.0", "assert tetrahedral_number(3) == 10.0", "assert tetrahedral_number(2) == 4.0", "assert tetrahedral_number(57) == 32509.0", "assert tetrahedral_number(79) == 85320.0", "assert tetrahedral_number(4) == 20.0", "assert tetrahedral_number(20) == 1540.0", "assert tetrahedral_number(31) == 5456.0", "assert tetrahedral_number(1) == 1.0", "assert tetrahedral_number(71) == 62196.0", "assert tetrahedral_number(84) == 102340.0", "assert tetrahedral_number(54) == 27720.0", "assert tetrahedral_number(95) == 147440.0", "assert tetrahedral_number(85) == 105995.0", "assert tetrahedral_number(53) == 26235.0", "assert tetrahedral_number(39) == 10660.0", "assert tetrahedral_number(58) == 34220.0", "assert tetrahedral_number(80) == 88560.0", "assert tetrahedral_number(70) == 59640.0", "assert tetrahedral_number(59) == 35990.0", "assert tetrahedral_number(52) == 24804.0", "assert tetrahedral_number(32) == 5984.0", "assert tetrahedral_number(40) == 11480.0", "assert tetrahedral_number(38) == 9880.0", "assert tetrahedral_number(83) == 98770.0", "assert tetrahedral_number(82) == 95284.0", "assert tetrahedral_number(26) == 3276.0", "assert tetrahedral_number(60) == 37820.0", "assert tetrahedral_number(61) == 39711.0", "assert tetrahedral_number(62) == 41664.0", "assert tetrahedral_number(37) == 9139.0", "assert tetrahedral_number(33) == 6545.0", "assert tetrahedral_number(86) == 109736.0", "assert tetrahedral_number(81) == 91881.0", "assert tetrahedral_number(66) == 50116.0", "assert tetrahedral_number(41) == 12341.0", "assert tetrahedral_number(36) == 8436.0", "assert tetrahedral_number(96) == 152096.0", "assert tetrahedral_number(27) == 3654.0", "assert tetrahedral_number(35) == 7770.0", "assert tetrahedral_number(87) == 113564.0", "assert tetrahedral_number(69) == 57155.0", "assert tetrahedral_number(88) == 117480.0", "assert tetrahedral_number(97) == 156849.0", "assert tetrahedral_number(68) == 54740.0", "assert tetrahedral_number(65) == 47905.0", "assert tetrahedral_number(21) == 1771.0", "assert tetrahedral_number(34) == 7140.0", "assert tetrahedral_number(64) == 45760.0", "assert tetrahedral_number(94) == 142880.0", "assert tetrahedral_number(89) == 121485.0", "assert tetrahedral_number(67) == 52394.0", "assert tetrahedral_number(42) == 13244.0", "assert tetrahedral_number(98) == 161700.0", "assert tetrahedral_number(100) == 171700.0", "assert tetrahedral_number(22) == 2024.0", "assert tetrahedral_number(99) == 166650.0", "assert tetrahedral_number(90) == 125580.0", "assert tetrahedral_number(91) == 129766.0", "assert tetrahedral_number(43) == 14190.0", "assert tetrahedral_number(101) == 176851.0", "assert tetrahedral_number(0) == 0.0", "assert tetrahedral_number(92) == 134044.0", "assert tetrahedral_number(63) == 43680.0", "assert tetrahedral_number(25) == 2925.0", "assert tetrahedral_number(23) == 2300.0", "assert tetrahedral_number(44) == 15180.0", "assert tetrahedral_number(51) == 23426.0", "assert tetrahedral_number(93) == 138415.0", "assert tetrahedral_number(24) == 2600.0", "assert tetrahedral_number(102) == 182104.0", "assert tetrahedral_number(50) == 22100.0", "assert tetrahedral_number(45) == 16215.0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to remove all whitespaces from a string.\nassert remove_all_spaces('python program')==('pythonprogram')\nYour code should pass the test:\nassert remove_all_spaces('python program')==('pythonprogram')", "test_list": [ "assert remove_all_spaces('python program')==('pythonprogram')", "assert remove_all_spaces('python programming language')==('pythonprogramminglanguage')", "assert remove_all_spaces('python program')==('pythonprogram')", "assert remove_all_spaces(' python program')=='pythonprogram'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces(' python programming language ') == 'pythonprogramminglanguage'", "assert remove_all_spaces(' python program ') == 'pythonprogram'", "assert remove_all_spaces(' python program ') == 'pythonprogram'", "assert remove_all_spaces('python program ') == 'pythonprogram'", "assert remove_all_spaces(' python programming language python programming language ') == 'pythonprogramminglanguagepythonprogramminglanguage'", "assert remove_all_spaces(' python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces(' python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces('python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces('python\\nprogram') == 'python\\nprogram'", "assert remove_all_spaces('pythonprogramminglanguage') == 'pythonprogramminglanguage'", "assert remove_all_spaces('') == ''", "assert remove_all_spaces(' \\t \\n python \\t \\n program \\t \\n python \\t \\n program \\t \\n ') == '\\t\\npython\\t\\nprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces('python\\tprogram') == 'python\\tprogram'", "assert remove_all_spaces('python\\rprogram') == 'python\\rprogram'", "assert remove_all_spaces('python\\x0cprogram') == 'python\\x0cprogram'", "assert remove_all_spaces('python\\x0bprogram') == 'python\\x0bprogram'", "assert remove_all_spaces(' python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces(' \\t \\n python \\t \\n program \\t \\n \\t \\n ') == '\\t\\npython\\t\\nprogram\\t\\n\\t\\n'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces('python prograpython\\nprogramm ') == 'pythonprograpython\\nprogramm'", "assert remove_all_spaces('python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces('python\\rprogrpythonprogramminglanguageam') == 'python\\rprogrpythonprogramminglanguageam'", "assert remove_all_spaces(' \\t \\n pytprogrpythonprogramminglanguageamhon \\t \\n program \\t \\n python \\t \\n program \\t \\n ') == '\\t\\npytprogrpythonprogramminglanguageamhon\\t\\nprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces(' python programming g language ') == 'pythonprogrammingglanguage'", "assert remove_all_spaces(' prython programming language python programming language ') == 'prythonprogramminglanguagepythonprogramminglanguage'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces('python') == 'python'", "assert remove_all_spaces('python\\rprrogrpythonprogramminglanguageam') == 'python\\rprrogrpythonprogramminglanguageam'", "assert remove_all_spaces('language') == 'language'", "assert remove_all_spaces(' \\t \\n python \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == '\\t\\npython\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces('python prograpython\\nprogramm ') == 'pythonprograpython\\nprogramm'", "assert remove_all_spaces(' python\\tprogram ') == 'python\\tprogram'", "assert remove_all_spaces(' prython ') == 'prython'", "assert remove_all_spaces('pythyon\\x0bprogram') == 'pythyon\\x0bprogram'", "assert remove_all_spaces('pytprogrammhonprogramminglanguage') == 'pytprogrammhonprogramminglanguage'", "assert remove_all_spaces(' prypython\\x0bprogramon ') == 'prypython\\x0bprogramon'", "assert remove_all_spaces('python program python program \\t \\n python \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == 'pythonprogrampythonprogram\\t\\npython\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces(' pr ython ') == 'prython'", "assert remove_all_spaces(' \\t \\n python \\t \\n program \\t \\n \\t \\n ') == '\\t\\npython\\t\\nprogram\\t\\n\\t\\n'", "assert remove_all_spaces('program') == 'program'", "assert remove_all_spaces('ython\\rprogram') == 'ython\\rprogram'", "assert remove_all_spaces('prython') == 'prython'", "assert remove_all_spaces('iEYji') == 'iEYji'", "assert remove_all_spaces('ythprogram') == 'ythprogram'", "assert remove_all_spaces(' python program python program r ') == 'pythonprogrampythonprogramr'", "assert remove_all_spaces('python program ') == 'pythonprogram'", "assert remove_all_spaces(' \\t \\n python \\t \\n m program \\t \\n python \\t \\n program \\t \\nython\\rprogram') == '\\t\\npython\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\nython\\rprogram'", "assert remove_all_spaces('python program pr python program \\t \\n python \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == 'pythonprogramprpythonprogram\\t\\npython\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces(' python program ython\\rprogram python program ') == 'pythonprogramython\\rprogrampythonprogram'", "assert remove_all_spaces(' python programming language pytprogrammhonprogramminglanguage ') == 'pythonprogramminglanguagepytprogrammhonprogramminglanguage'", "assert remove_all_spaces(' \\t \\n python \\t \\n m progroam \\t \\n pythoon \\t \\n program \\t \\nython\\rprogram') == '\\t\\npython\\t\\nmprogroam\\t\\npythoon\\t\\nprogram\\t\\nython\\rprogram'", "assert remove_all_spaces(' python program ') == 'pythonprogram'", "assert remove_all_spaces(' python program python program python program ') == 'pythonprogrampythonprogrampythonprogram'", "assert remove_all_spaces('pythonprogramprogroamguage') == 'pythonprogramprogroamguage'", "assert remove_all_spaces(' \\t \\n pythonprogrpythonprogramminglanguageam \\t \\n program \\t \\n \\t \\n ') == '\\t\\npythonprogrpythonprogramminglanguageam\\t\\nprogram\\t\\n\\t\\n'", "assert remove_all_spaces(' python program python program python p rogram ') == 'pythonprogrampythonprogrampythonprogram'", "assert remove_all_spaces(' python program pyt hon program python program ') == 'pythonprogrampythonprogrampythonprogram'", "assert remove_all_spaces(' pr yt ') == 'pryt'", "assert remove_all_spaces(' python program ') == 'pythonprogram'", "assert remove_all_spaces('pythonprogramprogroamguapytge') == 'pythonprogramprogroamguapytge'", "assert remove_all_spaces(' prythopythonprogramprogroamguapytgen ') == 'prythopythonprogramprogroamguapytgen'", "assert remove_all_spaces('python prograpython\\nprogramm python\\rprrogrpythonprogramminglanguageam ') == 'pythonprograpython\\nprogrammpython\\rprrogrpythonprogramminglanguageam'", "assert remove_all_spaces('ythpm') == 'ythpm'", "assert remove_all_spaces('langythpr ogramuage') == 'langythprogramuage'", "assert remove_all_spaces('ytmhtpm') == 'ytmhtpm'", "assert remove_all_spaces(' python pro gramming g language ') == 'pythonprogrammingglanguage'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces(' pr python program ') == 'prpythonprogram'", "assert remove_all_spaces('python program python program python\\tprogram ') == 'pythonprogrampythonprogrampython\\tprogram'", "assert remove_all_spaces('pythpython\\tprogramon') == 'pythpython\\tprogramon'", "assert remove_all_spaces('pythonprogrpythonprogramminglanguageam') == 'pythonprogrpythonprogramminglanguageam'", "assert remove_all_spaces(' \\t \\n python \\t \\n program \\n \\t \\n ') == '\\t\\npython\\t\\nprogram\\n\\t\\n'", "assert remove_all_spaces('langythpr ogramuage') == 'langythprogramuage'", "assert remove_all_spaces('programm') == 'programm'", "assert remove_all_spaces(' \\t \\n pythonprogrpythonprogramminglanguageam \\t \\n progra m \\t \\n \\t \\n ') == '\\t\\npythonprogrpythonprogramminglanguageam\\t\\nprogram\\t\\n\\t\\n'", "assert remove_all_spaces('pythonprogramprogroamgugapytge') == 'pythonprogramprogroamgugapytge'", "assert remove_all_spaces('python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces('r pr ython ogram') == 'rprythonogram'", "assert remove_all_spaces('python program pytprogrpythonprogramminglanguageamhon python program ') == 'pythonprogrampytprogrpythonprogramminglanguageamhonpythonprogram'", "assert remove_all_spaces(' python program python \\t \\n python \\t \\n program \\t \\n \\t \\n ') == 'pythonprogrampython\\t\\npython\\t\\nprogram\\t\\n\\t\\n'", "assert remove_all_spaces(' \\t \\n pypthon \\t \\n program \\n \\t \\n ') == '\\t\\npypthon\\t\\nprogram\\n\\t\\n'", "assert remove_all_spaces('gramming') == 'gramming'", "assert remove_all_spaces('pro') == 'pro'", "assert remove_all_spaces('python\\rprogrpythonpguageam') == 'python\\rprogrpythonpguageam'", "assert remove_all_spaces(' pyt hon python\\x0cprogram program python program ') == 'pythonpython\\x0cprogramprogrampythonprogram'", "assert remove_all_spaces('hon') == 'hon'", "assert remove_all_spaces(' \\t \\n pytprogrpythonprogramminglanguprageamhon \\t \\n program \\t \\n python \\t \\n program \\t \\n ') == '\\t\\npytprogrpythonprogramminglanguprageamhon\\t\\nprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces('python program ') == 'pythonprogram'", "assert remove_all_spaces('python pprogrpythonprogrammi python\\tprogram python program ') == 'pythonpprogrpythonprogrammipython\\tprogrampythonprogram'", "assert remove_all_spaces('prograrm') == 'prograrm'", "assert remove_all_spaces(' python program python program \\t \\n python \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == 'pythonprogrampythonprogram\\t\\npython\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces('python prograprogrammingm ') == 'pythonprograprogrammingm'", "assert remove_all_spaces('progrpythonpguageam') == 'progrpythonpguageam'", "assert remove_all_spaces('prytprogrpythonprogramminglanguageamhon') == 'prytprogrpythonprogramminglanguageamhon'", "assert remove_all_spaces(' python program python program \\t \\n py python programming language pytprogrammhonprogramminglanguage thon \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == 'pythonprogrampythonprogram\\t\\npypythonprogramminglanguagepytprogrammhonprogramminglanguagethon\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces(' python pythpython\\tprogramon program ') == 'pythonpythpython\\tprogramonprogram'", "assert remove_all_spaces(' python program python program \\t \\n pypythyonthon \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == 'pythonprogrampythonprogram\\t\\npypythyonthon\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces('python prograpython\\nprogram m ') == 'pythonprograpython\\nprogramm'", "assert remove_all_spaces('ogram') == 'ogram'", "assert remove_all_spaces(' pypythyonthonamming language ') == 'pypythyonthonamminglanguage'", "assert remove_all_spaces('pythyon') == 'pythyon'", "assert remove_all_spaces('rogram') == 'rogram'", "assert remove_all_spaces('pypythyonthon') == 'pypythyonthon'", "assert remove_all_spaces(' ') == ''", "assert remove_all_spaces(' python\\tprogram g ') == 'python\\tprogramg'", "assert remove_all_spaces(' python pro g python programming g language ramming g language ') == 'pythonprogpythonprogrammingglanguagerammingglanguage'", "assert remove_all_spaces('python program python program ') == 'pythonprogrampythonprogram'", "assert remove_all_spaces('pythonprogramprogroaamguage') == 'pythonprogramprogroaamguage'", "assert remove_all_spaces('hhon') == 'hhon'", "assert remove_all_spaces('python program python program \\t \\n python \\t \\n m program \\t \\n pyth ') == 'pythonprogrampythonprogram\\t\\npython\\t\\nmprogram\\t\\npyth'", "assert remove_all_spaces(' pypythyonthonammi python propygram python program r ng language ') == 'pypythyonthonammipythonpropygrampythonprogramrnglanguage'", "assert remove_all_spaces('python program pr python p pr python program rogram \\t \\n python \\t \\n m program \\t \\n python \\t \\n program \\t \\n ') == 'pythonprogramprpythonpprpythonprogramrogram\\t\\npython\\t\\nmprogram\\t\\npython\\t\\nprogram\\t\\n'", "assert remove_all_spaces(' pprythopythonprogramprogroamguapytgen ') == 'pprythopythonprogramprogroamguapytgen'", "assert remove_all_spaces('python program python program ') == 'pythonprogrampythonprogram'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to count the number of equal numbers from three given integers.\nassert test_three_equal(1,1,1) == 3\nYour code should pass the test:\nassert test_three_equal(1,1,1) == 3", "test_list": [ "assert test_three_equal(1,1,1) == 3", "assert test_three_equal(-1,-2,-3) == 0", "assert test_three_equal(1,2,2) == 2", "assert test_three_equal(1, 2, 3) == 0", "assert test_three_equal(10, 10, 20) == 2", "assert test_three_equal(-5, 0, 5) == 0", "assert test_three_equal(100, 99, 101) == 0", "assert test_three_equal(7, 7, 7) == 3", "assert test_three_equal(10000000000, 9999999999, 10000000000) == 2", "assert test_three_equal(9999999999, 9999999999, 10000000000) == 2", "assert test_three_equal(100, 100, 100) == 3", "assert test_three_equal(9876543210, 1234567890, 9876543210) == 2", "assert test_three_equal(9999999999, 9999999999, 9999999999) == 3", "assert test_three_equal(9876543210, 9876543210, 9876543210) == 3", "assert test_three_equal(8, 7, 7) == 2", "assert test_three_equal(9999999999, 3, 9999999999) == 2", "assert test_three_equal(99, 10000000000, 9999999999) == 0", "assert test_three_equal(9876543210, 5, 9876543210) == 2", "assert test_three_equal(100, 6, 9876543210) == 0", "assert test_three_equal(99, 6, 9999999999) == 0", "assert test_three_equal(8, 7, 100) == 0", "assert test_three_equal(-5, -5, 5) == 2", "assert test_three_equal(99, 0, 9999999999) == 0", "assert test_three_equal(99, 10, 2) == 0", "assert test_three_equal(9999999999, 101, 6) == 0", "assert test_three_equal(100, 7, 100) == 2", "assert test_three_equal(8, -5, 100) == 0", "assert test_three_equal(1234567890, 1, 1234567890) == 2", "assert test_three_equal(7, 10000000000, 9999999999) == 0", "assert test_three_equal(1, 101, 6) == 0", "assert test_three_equal(100, 8, 9999999999) == 0", "assert test_three_equal(1, 2, 4) == 0", "assert test_three_equal(8, 9999999999, 9999999999) == 2", "assert test_three_equal(100, 5, 101) == 0", "assert test_three_equal(101, 99, 101) == 2", "assert test_three_equal(3, 10, 2) == 0", "assert test_three_equal(-5, -5, 6) == 2", "assert test_three_equal(1234567890, 7, 7) == 2", "assert test_three_equal(100, 9999999999, 9999999999) == 2", "assert test_three_equal(3, 3, 2) == 2", "assert test_three_equal(-5, 6, -5) == 2", "assert test_three_equal(5, 9876543210, 9876543210) == 2", "assert test_three_equal(-4, -5, 6) == 0", "assert test_three_equal(10000000000, 9999999998, 10000000000) == 2", "assert test_three_equal(9999999999, 9999999999, 10000000001) == 2", "assert test_three_equal(98, 10, 2) == 0", "assert test_three_equal(10000000000, 9999999999, 10000000001) == 0", "assert test_three_equal(8, 7, 6) == 0", "assert test_three_equal(7, 7, 6) == 2", "assert test_three_equal(5, 6, 5) == 2", "assert test_three_equal(1, 3, 6) == 0", "assert test_three_equal(4, 100, 99) == 0", "assert test_three_equal(9876543209, 5, 9876543210) == 0", "assert test_three_equal(100, 9876543210, 6) == 0", "assert test_three_equal(1234567890, 1, 1) == 2", "assert test_three_equal(0, 0, 5) == 2", "assert test_three_equal(-5, 9876543210, 8) == 0", "assert test_three_equal(100, 8, -4) == 0", "assert test_three_equal(98, 9876543210, 6) == 0", "assert test_three_equal(9999999999, 6, 10000000001) == 0", "assert test_three_equal(100, 99, 6) == 0", "assert test_three_equal(6, 100, 7) == 0", "assert test_three_equal(100, 9999999999, 9999999998) == 0", "assert test_three_equal(101, 6, 101) == 2", "assert test_three_equal(9999999999, 100, 6) == 0", "assert test_three_equal(6, 5, 5) == 2", "assert test_three_equal(99, 100, 9999999999) == 0", "assert test_three_equal(2, -5, 6) == 0", "assert test_three_equal(98, 100, 100) == 2", "assert test_three_equal(9876543210, 1, 1) == 2", "assert test_three_equal(98, -5, 5) == 0", "assert test_three_equal(7, 7, 9876543210) == 2", "assert test_three_equal(10000000001, 100, 100) == 2", "assert test_three_equal(-5, 100, 9999999997) == 0", "assert test_three_equal(4, 9999999999, 9999999999) == 2", "assert test_three_equal(97, -5, 97) == 2", "assert test_three_equal(98, 3, 4) == 0", "assert test_three_equal(8, 98, 6) == 0", "assert test_three_equal(9876543209, 97, 1) == 0", "assert test_three_equal(-1, 0, 5) == 0", "assert test_three_equal(4, 10, 100) == 0", "assert test_three_equal(101, 10000000000, 10000000001) == 0", "assert test_three_equal(9876543209, 97, 9876543209) == 2", "assert test_three_equal(2, 9876543210, 3) == 0", "assert test_three_equal(6, 7, 7) == 2", "assert test_three_equal(6, 7, 2) == 0", "assert test_three_equal(98, -5, -5) == 2", "assert test_three_equal(-6, 100, 9999999997) == 0", "assert test_three_equal(9876543210, 0, 1) == 0", "assert test_three_equal(6, -5, -5) == 2", "assert test_three_equal(-4, 8, 6) == 0", "assert test_three_equal(6, 5, 6) == 2", "assert test_three_equal(9999999998, -76, 8) == 0", "assert test_three_equal(100, 10000000000, 9999999999) == 0", "assert test_three_equal(100, 9999999998, 100) == 2", "assert test_three_equal(9876543209, 9876543210, 9876543210) == 2", "assert test_three_equal(9999999998, 1, 9999999998) == 2", "assert test_three_equal(10, 20, -1) == 0", "assert test_three_equal(0, 5, 5) == 2", "assert test_three_equal(8, 8, 6) == 2", "assert test_three_equal(8, 7, 10000000000) == 0", "assert test_three_equal(-4, -5, -5) == 2", "assert test_three_equal(8, 97, 6) == 0", "assert test_three_equal(-4, 100, 101) == 0", "assert test_three_equal(5, 0, 0) == 2", "assert test_three_equal(98, 5, 5) == 2", "assert test_three_equal(8, 9876543209, 9876543210) == 0", "assert test_three_equal(5, 6, 10) == 0", "assert test_three_equal(1234567891, 1, 1) == 2", "assert test_three_equal(100, -4, 100) == 2", "assert test_three_equal(20, 9999999999, 9999999999) == 2", "assert test_three_equal(100, 8, 100) == 2", "assert test_three_equal(9999999998, 10000000000, 9999999998) == 2" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given number is a perfect square or not. \nassert not is_perfect_square(10)\nYour code should pass the test:\nassert not is_perfect_square(10)", "test_list": [ "assert not is_perfect_square(10)", "assert is_perfect_square(36)", "assert not is_perfect_square(14)", "assert is_perfect_square(14*14)", "assert not is_perfect_square(125)", "assert is_perfect_square(125*125)", "assert is_perfect_square(-9) == False", "assert is_perfect_square(-5686748) == False", "assert is_perfect_square(123456789) == False", "assert is_perfect_square(987654321) == False", "assert is_perfect_square(2147483647) == False", "assert is_perfect_square(9223372036854775807) == False", "assert is_perfect_square(-8) == False", "assert is_perfect_square(987654320) == False", "assert is_perfect_square(-5686747) == False", "assert is_perfect_square(123456788) == False", "assert is_perfect_square(-7) == False", "assert is_perfect_square(84) == False", "assert is_perfect_square(False) == True", "assert is_perfect_square(83) == False", "assert is_perfect_square(9223372036854775806) == False", "assert is_perfect_square(2147483646) == False", "assert is_perfect_square(2147483645) == False", "assert is_perfect_square(82) == False", "assert is_perfect_square(85) == False", "assert is_perfect_square(True) == True", "assert is_perfect_square(98) == False", "assert is_perfect_square(987654319) == False", "assert is_perfect_square(9223372036854775808) == False", "assert is_perfect_square(86) == False", "assert is_perfect_square(-10) == False", "assert is_perfect_square(97) == False", "assert is_perfect_square(-11) == False", "assert is_perfect_square(987654322) == False", "assert is_perfect_square(9223372036854775805) == False", "assert is_perfect_square(123456787) == False", "assert is_perfect_square(-6) == False", "assert is_perfect_square(123456786) == False", "assert is_perfect_square(987654318) == False", "assert is_perfect_square(-82) == False", "assert is_perfect_square(67) == False", "assert is_perfect_square(-83) == False", "assert is_perfect_square(87) == False", "assert is_perfect_square(123456791) == False", "assert is_perfect_square(987654323) == False", "assert is_perfect_square(123456790) == False", "assert is_perfect_square(68) == False", "assert is_perfect_square(-80) == False", "assert is_perfect_square(23) == False", "assert is_perfect_square(123456792) == False", "assert is_perfect_square(99) == False", "assert is_perfect_square(69) == False", "assert is_perfect_square(2147483644) == False", "assert is_perfect_square(70) == False", "assert is_perfect_square(2147483648) == False", "assert is_perfect_square(81) == True", "assert is_perfect_square(-5686746) == False", "assert is_perfect_square(37) == False", "assert is_perfect_square(987654317) == False", "assert is_perfect_square(22) == False", "assert is_perfect_square(-5686745) == False", "assert is_perfect_square(-75) == False", "assert is_perfect_square(29) == False", "assert is_perfect_square(88) == False", "assert is_perfect_square(64) == True", "assert is_perfect_square(123456793) == False", "assert is_perfect_square(28) == False", "assert is_perfect_square(2147483643) == False", "assert is_perfect_square(987654316) == False", "assert is_perfect_square(987654324) == False", "assert is_perfect_square(987654315) == False", "assert is_perfect_square(987654314) == False", "assert is_perfect_square(2147483649) == False", "assert is_perfect_square(36) == True", "assert is_perfect_square(9223372036854775809) == False", "assert is_perfect_square(-5) == False", "assert is_perfect_square(63) == False", "assert is_perfect_square(-4) == False", "assert is_perfect_square(62) == False", "assert is_perfect_square(80) == False", "assert is_perfect_square(123456794) == False", "assert is_perfect_square(-12) == False", "assert is_perfect_square(39) == False", "assert is_perfect_square(24) == False", "assert is_perfect_square(-81) == False", "assert is_perfect_square(987654325) == False", "assert is_perfect_square(38) == False", "assert is_perfect_square(95) == False", "assert is_perfect_square(40) == False", "assert is_perfect_square(-74) == False", "assert is_perfect_square(30) == False", "assert is_perfect_square(-44) == False", "assert is_perfect_square(15) == False", "assert is_perfect_square(-73) == False", "assert is_perfect_square(987654326) == False", "assert is_perfect_square(16) == True", "assert is_perfect_square(25) == True", "assert is_perfect_square(41) == False", "assert is_perfect_square(26) == False", "assert is_perfect_square(-1) == False", "assert is_perfect_square(123456785) == False", "assert is_perfect_square(65) == False", "assert is_perfect_square(94) == False", "assert is_perfect_square(71) == False", "assert is_perfect_square(14) == False", "assert is_perfect_square(-76) == False", "assert is_perfect_square(21) == False", "assert is_perfect_square(-43) == False", "assert is_perfect_square(96) == False", "assert is_perfect_square(-13) == False", "assert is_perfect_square(27) == False", "assert is_perfect_square(-22) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the product of numbers in a list is even or not.\nassert is_product_even([1,2,3])\nYour code should pass the test:\nassert is_product_even([1,2,3])", "test_list": [ "assert is_product_even([1,2,3])", "assert is_product_even([1,2,1,4])", "assert not is_product_even([1,1])", "assert is_product_even([2, 2, 2, 2, 2]) == True", "assert is_product_even([1, 2, 3, 4, 5]) == True", "assert is_product_even([0, 0, 0, 0, 0]) == True", "assert is_product_even([1, 3, 5, 7, 9]) == False", "assert is_product_even([2, 4, 6, 8, 10]) == True", "assert is_product_even([2, -2, -2, -2, -2]) == True", "assert is_product_even([1, -2, 3, -4, 5]) == True", "assert is_product_even([-1, 2, 3, 5]) == True", "assert is_product_even([1, -2, 3, 5]) == True", "assert is_product_even([0, 2, 3, 5]) == True", "assert is_product_even([1, 3, 5, 7, 9, 1]) == False", "assert is_product_even([0, 9, 4, 5]) == True", "assert is_product_even([0, 2, 9, 3, 5]) == True", "assert is_product_even([-1, 2, 3, 4]) == True", "assert is_product_even([1, 3, 5]) == False", "assert is_product_even([1, -2, 1, 3, -4, 5]) == True", "assert is_product_even([1, 2, 3, 4, 3]) == True", "assert is_product_even([3, 3, 1, 2, 2, 2]) == True", "assert is_product_even([1, -2, 1, 3, -4, 5, -4]) == True", "assert is_product_even([-1, 2, 3, 4, 4]) == True", "assert is_product_even([1, 3, 5, 7]) == False", "assert is_product_even([-1, 2, 3, 5, 4, 4, 3]) == True", "assert is_product_even([-1, 2, 3, 2, 5, 3]) == True", "assert is_product_even([9, 5]) == False", "assert is_product_even([10, 0, 9, 4, 5, 9]) == True", "assert is_product_even([0, 2, 0, 2, 3, 5]) == True", "assert is_product_even([1, 3, 5, 3]) == False", "assert is_product_even([1, 1, 4, 3, 1]) == True", "assert is_product_even([-1, 7, 2, 3, 5]) == True", "assert is_product_even([1, 3, 5, 7, 7]) == False", "assert is_product_even([1, 1, 3, 10, 5, 3]) == True", "assert is_product_even([2, -2, -2, -2, -2, -2, -2]) == True", "assert is_product_even([3, 3, 1, 2, 4, 2, 2]) == True", "assert is_product_even([9, 1]) == False", "assert is_product_even([1, 10, 5, 3]) == True", "assert is_product_even([0, 9, 4, 5, 5]) == True", "assert is_product_even([0, 0, 0, 0, 0, 0, 0]) == True", "assert is_product_even([1, 1, 3, 10, 9, 5, 3, 9]) == True", "assert is_product_even([1, 1, 2, 5, 7]) == True", "assert is_product_even([1, 3, 7, 3, 3]) == False", "assert is_product_even([-1, 2, 3, 2, 5, 3, 3]) == True", "assert is_product_even([3, 1, 3, 7, 3, 3]) == False", "assert is_product_even([0, 0, 0, 1, 0, 0]) == True", "assert is_product_even([1, -2, 1, 3, -4, 5, -4, 1]) == True", "assert is_product_even([1, 10, 5, 2, 3]) == True", "assert is_product_even([0, 2, 9]) == True", "assert is_product_even([1, 2, 4, 3, 1]) == True", "assert is_product_even([2, 4, 6, 8, 10, 2]) == True", "assert is_product_even([-1, 7, 2, 3, 5, 3]) == True", "assert is_product_even([0, -1, 2, 9]) == True", "assert is_product_even([-1, 2, 3, 5, 4, 5, 3]) == True", "assert is_product_even([1, 1, 2, 1, 7, 1]) == True", "assert is_product_even([1, 1, 3, 10, 9, 5, 3, 3, 9]) == True", "assert is_product_even([1, 3, 8, 3]) == True", "assert is_product_even([1, 3, 5, 7, 9, 3]) == False", "assert is_product_even([1, 2, 3, 3]) == True", "assert is_product_even([2, -2, -2, -2, -2, -2]) == True", "assert is_product_even([1, 3, 7, 7]) == False", "assert is_product_even([3, 3, 1, 2, 1, 2, 2]) == True", "assert is_product_even([-1, 2, 3]) == True", "assert is_product_even([1, 10, 5]) == True", "assert is_product_even([0, 0, 0, 0, 0, 0, 0, 0]) == True", "assert is_product_even([8, 1, 3, 5, 4]) == True", "assert is_product_even([0, 0, 0, 0, 0, 0]) == True", "assert is_product_even([-1, 7, 2, 3, 5, 7]) == True", "assert is_product_even([3, 3, 1, 2, 10, 2, 2]) == True", "assert is_product_even([2, 9, -2, -2, -2, -2, -2]) == True", "assert is_product_even([1, 4, 3, 6]) == True", "assert is_product_even([1, 1, 3, -4, 5, -4, 1, 3]) == True", "assert is_product_even([7, 1, 5, 7, 9]) == False", "assert is_product_even([9, -1, -2, 5]) == True", "assert is_product_even([-1, 2, 3, 2]) == True", "assert is_product_even([1, 1, 2, 1, 5, 7]) == True", "assert is_product_even([0, 0, 0, 1, 0, 0, 0]) == True", "assert is_product_even([1, 1, 2, 1, 5, 7, 6, 2]) == True", "assert is_product_even([3, 3, 1, 2, -2, 2]) == True", "assert is_product_even([1, 5, 5, 3]) == False", "assert is_product_even([3, 6, 1, 2, 1, 2, 2]) == True", "assert is_product_even([-1, 1, 5, -2, 2, 3]) == True", "assert is_product_even([3, 5]) == False", "assert is_product_even([-2, 1, 3, -4, 5, -4, 1]) == True", "assert is_product_even([1, 4, 3, 1]) == True", "assert is_product_even([-1, 2, 3, 6, 4]) == True", "assert is_product_even([2, 4, 6, 9, 8, 10, 2]) == True", "assert is_product_even([3, 3, 1, 2, 2]) == True", "assert is_product_even([2, 3, 10, 5, 3]) == True", "assert is_product_even([4, -2, 4, 3, -4, 5, -2]) == True", "assert is_product_even([2, 10, 2, 3]) == True", "assert is_product_even([2, 1, 3, 8, 3, 3]) == True", "assert is_product_even([1, 0, 0, 0, 0]) == True", "assert is_product_even([2, 1, 3, 5, 7, 9, 1]) == True", "assert is_product_even([3, 1, 3, 7, 4, 3, 3]) == True", "assert is_product_even([0, 2, 9, 0, -1, 5]) == True", "assert is_product_even([3, 6, 1, 2, 1, -2, 2]) == True", "assert is_product_even([1, -2, 1, 3, -4, 5, -4, 1, -4]) == True", "assert is_product_even([1, 4, 5, 7]) == True", "assert is_product_even([0, -1, 0, 0, 0, 0]) == True", "assert is_product_even([-2, 0, 9, 4, 5]) == True", "assert is_product_even([-1, 2, 2, 3, 2, 2]) == True", "assert is_product_even([3, 3, 5]) == False", "assert is_product_even([2, 3, 6, 4, 3]) == True", "assert is_product_even([1, 3, 2, 3, 5, 5, 3]) == True", "assert is_product_even([-2, 0, 9, 4, 5, 0]) == True", "assert is_product_even([2, 4, 6, 8, 10, 2, 4]) == True", "assert is_product_even([1, 1, 2, 2, 5, 7]) == True", "assert is_product_even([3, 3, 1, 2, 10, 2, 2, 2]) == True", "assert is_product_even([-1, 2, 3, 2, 5, 3, 9, 3]) == True", "assert is_product_even([5, 2, 2, 2, 2, 2, 2]) == True", "assert is_product_even([3, 3, 1, 2, -4, 10, 2, 2, 2]) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function that returns the list in a list of lists whose sum of elements is the highest.\nassert max_sum_list([[1,2,3], [4,5,6], [10,11,12], [7,8,9]])==[10, 11, 12]\nYour code should pass the test:\nassert max_sum_list([[1,2,3], [4,5,6], [10,11,12], [7,8,9]])==[10, 11, 12]", "test_list": [ "assert max_sum_list([[1,2,3], [4,5,6], [10,11,12], [7,8,9]])==[10, 11, 12]", "assert max_sum_list([[3,2,1], [6,5,4], [12,11,10]])==[12,11,10]", "assert max_sum_list([[2,3,1]])==[2,3,1]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [7, 8, 9]]) == [7, 8, 9]", "assert max_sum_list([[1, 1], [2, 2, 2], [3, 3, 3, 3]]) == [3, 3, 3, 3]", "assert max_sum_list([[10, 20, 30], [40, 50], [10, 10, 10, 10, 10, 10]]) == [40, 50]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15]]) == [13, 14, 15]", "assert max_sum_list([[4, 3, 2, 1], [10, 20, 30], [1, 2, 3, 4, 5], [100, 200, 300, 400]]) == [100, 200, 300, 400]", "assert max_sum_list([[1], [2], [3], [4], [5], [6], [7]]) == [7]", "assert max_sum_list([[1, 2, 3], [4, 5, 9], [7, 6]]) == [4, 5, 9]", "assert max_sum_list([[]]) == []", "assert max_sum_list([[1000], [5000], [2000], [3000], [4000], [6000], [7000]]) == [7000]", "assert max_sum_list([[1, 10000, 100000], [1000, 20000, 300000], [100, 1000000, 10000000], [10000, 200000, 3000000]]) == [100, 1000000, 10000000]", "assert max_sum_list([[300, 200, 100], [600, 500, 400], [1200, 1100, 1000]]) == [1200, 1100, 1000]", "assert max_sum_list([[4000, 3000, 2000, 1000], [10000, 20000, 30000], [1, 2, 3, 4, 5, 55555555], [100000, 200000, 3000000, 4000000]]) == [1, 2, 3, 4, 5, 55555555]", "assert max_sum_list([[1, 20, 300], [400, 5000, 60000], [700, 8000, 90000]]) == [700, 8000, 90000]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15], [16, 17, 18]]) == [16, 17, 18]", "assert max_sum_list([[10, 20, 30], [40, 50, 60], [70, 80, 90], [100, 110, 120], [130, 140, 150], [160, 170, 180], [190, 200, 210]]) == [190, 200, 210]", "assert max_sum_list([[100, 200, 300], [400, 500, 600], [700, 800, 900], [1000, 1100, 1200], [1300, 1400, 1500], [1600, 1700, 1800]]) == [1600, 1700, 1800]", "assert max_sum_list([[1, 100, 10000], [2, 200, 20000], [3, 300, 30000], [4, 400, 40000], [5, 500, 50000], [6, 600, 60000]]) == [6, 600, 60000]", "assert max_sum_list([[10, 20, 30], [40, 50, 60, 70], [80, 90], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[], [1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[-10, -20, -30], [-40, -50, -60], [-70, -80, -90], [-100, -110, -120]]) == [-10, -20, -30]", "assert max_sum_list([[-1, -2, -3], [0, 0, 0, 0], [4, 5, 6, 7, 8]]) == [4, 5, 6, 7, 8]", "assert max_sum_list([[9, 8, 7], [], [-6, -5, -4, -3, -2, -1]]) == [9, 8, 7]", "assert max_sum_list([[0, 0, 0], [2, 4, 6], [-1, -2, -3, -4]]) == [2, 4, 6]", "assert max_sum_list([[-10, -20, -30], [40, 50, 60], [-70, -80, -90]]) == [40, 50, 60]", "assert max_sum_list([[100, 200, 300, 400], [0, 0, 0], [1, -1, 1, -1, 1, -1]]) == [100, 200, 300, 400]", "assert max_sum_list([[0, 0, 0], [2, 4, 6], [-1, -2, -3, -4], [-1, -2, -3, -4]]) == [2, 4, 6]", "assert max_sum_list([[1, 2, 3], [60, 4, 5, 70, 6], [60, 4, 5, 70, 6], [7, 8, 9]]) == [60, 4, 5, 70, 6]", "assert max_sum_list([[1000], [5000], [2000], [3000, 3000], [4000], [6000], [7000]]) == [7000]", "assert max_sum_list([[-10, -20, -30], [40, 50, 60], [-70, -80, -90], [-70, -80, -90]]) == [40, 50, 60]", "assert max_sum_list([[-1, -2, -3, -2], [-1, -2, -3, -2], [0, 0, 0, 0], [4, 5, 6, 7, 8]]) == [4, 5, 6, 7, 8]", "assert max_sum_list([[1, 20, 300], [5000, 60000, 60000], [5000, 60000, 60000], [5000, 60000, 60000], [700, 8000, 90000]]) == [5000, 60000, 60000]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[1, 2, 3], [4, 6], [10, 11, 12], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[-1, -2, -3, -2], [-1, -2, -3, -2]]) == [-1, -2, -3, -2]", "assert max_sum_list([[-10, -20, -30], [-70, -80, -90, -80], [40, 50, 60], [-70, -80, -90, -80], [-10, -20, -30]]) == [40, 50, 60]", "assert max_sum_list([[300, 200, 100], [600, 500, 400, 400], [1200, 1100, 1000]]) == [1200, 1100, 1000]", "assert max_sum_list([[10, 20, -120], [10, 20, -120], [40, 50], [10, 10, 10, 10, 10, 10], [10, 20, -120]]) == [40, 50]", "assert max_sum_list([[100, 200, 300, 400], [0, 0, 0], [1, -1, 1, -1, 1, -1], [0, 0, 0]]) == [100, 200, 300, 400]", "assert max_sum_list([[1, 2, 3], [4, 5, 9]]) == [4, 5, 9]", "assert max_sum_list([[40, 50, 60, 70], [80, 90], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[10, 20, 30], [1, 2, 3, 4, 5], [100, 200, 300, 400]]) == [100, 200, 300, 400]", "assert max_sum_list([[100, 100, 400], [1, -1, 1, -1, 1, -1, 1], [100, 100, 400], [100, 100, 400], [1, -1, 1, -1, 1, -1, 1]]) == [100, 100, 400]", "assert max_sum_list([[10, 20, 30], [40, 50, 60, 70], [80, 90], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [10, 20, 30]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[-1, -2, -3, -2, -3], [-1, -2, -3, -2, -3], [-1, -2, -3, -2, -3]]) == [-1, -2, -3, -2, -3]", "assert max_sum_list([[300, 200, 100], [600, 500, 400, 400], [300, 200, 100], [1200, 1100, 1000]]) == [1200, 1100, 1000]", "assert max_sum_list([[10, 20, 30], [40, 50, 60], [70, 80, 90], [100, 110, 120], [130, 140, 150], [190, 200, 210]]) == [190, 200, 210]", "assert max_sum_list([[10, 20, 30], [40, 50, 60, 70], [80, 90], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [150, 160, 170]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[-1, -2, -3, -2], [-1, -2, -3, -2], [-1, -2, -3, -2]]) == [-1, -2, -3, -2]", "assert max_sum_list([[-20, -30], [-20, -30], [-70, -80, -90, 20000], [40, 50, 60], [-70, -80, -90, 20000], [-20, -30]]) == [-70, -80, -90, 20000]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15], [17, 18], [10, 11, 12]]) == [13, 14, 15]", "assert max_sum_list([[100, 200, 300], [400, 500, 600], [700, 800, 899, 900], [1000, 1100, 1200], [1300, 1400, 1500], [1600, 1700, 1800]]) == [1600, 1700, 1800]", "assert max_sum_list([[-10, -20, -30], [-100, -110, -120]]) == [-10, -20, -30]", "assert max_sum_list([[2, 3], [4, 5, 6], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[-1, -2, -3, -2], [-1, -2, -3, -2], [0, 0, 0, 0], [4, 5, 6, 7, 8], [-1, -2, -3, -2]]) == [4, 5, 6, 7, 8]", "assert max_sum_list([[1, 2, 300000], [], [1, 2, 300000], [4, 5, 6], [7, 8, 9], [10, 11, 12]]) == [1, 2, 300000]", "assert max_sum_list([[-1, -2, 150, -3, -2]]) == [-1, -2, 150, -3, -2]", "assert max_sum_list([[80, 90, 90], [40, 50, 60, 70], [80, 90, 90], [150, 160, 170], [180, 190, 200, 210, 220, 230]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[10, 1100, 20, 30], [10, 1100, 20, 30], [40, 50, 60, 70], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [150, 160, 170]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[100, 200, 300], [700, 800, 900], [1000, 1100, 20], [1300, 1400, 1500], [1000, 1100, 20], [1600, 1700, 1800]]) == [1600, 1700, 1800]", "assert max_sum_list([[400, 500, 600], [700, 800, 899, 900], [1000, 1100, 1200], [1300, 1400, 1500], [1600, 1700, 1800]]) == [1600, 1700, 1800]", "assert max_sum_list([[-100, -110, -1], [-100, -110, -1]]) == [-100, -110, -1]", "assert max_sum_list([[1, 2, 3], [60, 4, 5, 70, 6], [7, 8, 9]]) == [60, 4, 5, 70, 6]", "assert max_sum_list([[1, 2, 3], [60, 4, 5, 70, 6], [60, 4, 5, 70, 6], [7, 8, 9], [60, 4, 5, 70, 6]]) == [60, 4, 5, 70, 6]", "assert max_sum_list([[10, 20, 30], [40, 50, 60, 70], [80, 90, 80], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[1, 10000, 100000], [1000, 20000, 300000], [10000, 200000, 3000000], [1000, 20000, 300000]]) == [10000, 200000, 3000000]", "assert max_sum_list([[16, 1000], [5000], [16, 1000], [3000], [4000], [1], [6000], [1]]) == [6000]", "assert max_sum_list([[2000, 200, 300, 400], [0, 0, 0], [2000, 200, 300, 400], [1, -1, 1, -1, 1, -1]]) == [2000, 200, 300, 400]", "assert max_sum_list([[170, 20, 30], [40, 50, 60, 70], [80, 90], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [170, 20, 30]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15], [16, 17, 18]]) == [16, 17, 18]", "assert max_sum_list([[100, 200, 300], [400, 500, 600], [700, 800, 900], [1600, 1700, 1800], [400, 500, 600]]) == [1600, 1700, 1800]", "assert max_sum_list([[1, 2], [60, 4, 5, 70, 6], [1, 2], [7, 8, 9]]) == [60, 4, 5, 70, 6]", "assert max_sum_list([[1, 2, 3], [4, 5, 6, 6], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[0, 0, 0], [2, 4, 6], [-1, -2, -3, -4], [-1, -2, -3, -4], [2, 4, 6]]) == [2, 4, 6]", "assert max_sum_list([[1, 2, 3], [10, 11, 12], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[1, 20, 301, 300], [400, 5000, 60000], [1, 20, 301, 300]]) == [400, 5000, 60000]", "assert max_sum_list([[], [], [], []]) == []", "assert max_sum_list([[4, 600, 6], [1, 2, 3], [4, 600, 6], [7, 8, 9]]) == [4, 600, 6]", "assert max_sum_list([[10, 20, 30], [-90, 1, 2, 3, 4, 5], [-90, 1, 2, 3, 4, 5], [100, 200, 300, 400]]) == [100, 200, 300, 400]", "assert max_sum_list([[170, 21, 30], [40, 50, 60, 70], [90], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [170, 21, 30], [180, 190, 200, 210, 220, 230]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[-1, -2, -3, -2, -3], [-1, -2, -3, -2, -3], [-1, -2, -3, -2, -3], [-1, -2, -3, -2, -3]]) == [-1, -2, -3, -2, -3]", "assert max_sum_list([[4, 5, 6, 6], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[4000, 3000, 2000, 1000], [10000, 20000, 30000], [1, 2, 3, 4, 5, 55555555], [10000, 20000, 30000], [100000, 200000, 3000000, 4000000]]) == [1, 2, 3, 4, 5, 55555555]", "assert max_sum_list([[1, 20, 300], [5000, 60000, 60000], [5000, 60000, 60000], [5000, 60000, 60000], [700, 8000, 90000], [5000, 60000, 60000]]) == [5000, 60000, 60000]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15], [16, 17, 18], [7, 8, 9], [13, 14, 15]]) == [16, 17, 18]", "assert max_sum_list([[40, 50, 60], [-19, -10, -20, -30], [-70, -80, -90], [-70, -80, -90]]) == [40, 50, 60]", "assert max_sum_list([[1, 2, 3], [4, 6], [10, 11, 12], [10, 11, 12], [1, 2, 3]]) == [10, 11, 12]", "assert max_sum_list([[100, 200, 300], [400, 500, 600], [700, 800, 899, 900], [1000, 1100, 1200], [1600, 1700, 1800]]) == [1600, 1700, 1800]", "assert max_sum_list([[-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3]]) == [-1, -2, -3, -3, -2, -3]", "assert max_sum_list([[-20, -10, -30], [-20, -10, -30], [-20, -10, -30], [-70, -80, -90, 20000, -70], [40, 50, 60], [-70, -80, -90, 20000, -70], [-20, -10, -30], [-20, -10, -30]]) == [-70, -80, -90, 20000, -70]", "assert max_sum_list([[10, 20, 30], [40, 50, 60], [100, 110, 120], [190, 200, 210]]) == [190, 200, 210]", "assert max_sum_list([[41, 40, 50], [10, 20, 30], [41, 40, 50], [10, 10, 10, 10, 10, 10]]) == [41, 40, 50]", "assert max_sum_list([[1, 2, 3], [4, 5, 6], [7, 8, 9], [10, 11, 12], [13, 14, 15], [17, 18], [10, 11, 12], [10, 11, 12]]) == [13, 14, 15]", "assert max_sum_list([[1000], [5000], [2000], [3000], [4000], [6000, 6000], [7000]]) == [6000, 6000]", "assert max_sum_list([[10, 20, 30], [40, 50, 60], [109, 100, 110, 120], [70, 80, 90], [109, 100, 110, 120], [130, 140, 150], [160, 170, 180], [190, 200, 210]]) == [190, 200, 210]", "assert max_sum_list([[9, 8, 7], []]) == [9, 8, 7]", "assert max_sum_list([[1, 2, 3], [60, 4, 5, 5000, 6], [60, 4, 5, 5000, 6], [7, 8, 9], [60, 4, 5, 5000, 6], [60, 4, 5, 5000, 6]]) == [60, 4, 5, 5000, 6]", "assert max_sum_list([[1, 2, 3], [10, 11, 12], [10, 11, 12], [10, 11, 12]]) == [10, 11, 12]", "assert max_sum_list([[1, 1], [2, 2, 2], [3, 3, 3, 3], [2, 2, 2]]) == [3, 3, 3, 3]", "assert max_sum_list([[10, 20, 30], [40, 50, 60], [70, 80, 90], [100, 120], [200000, 140, 150], [190, 200, 210]]) == [200000, 140, 150]", "assert max_sum_list([[1, 2, 3], [10, 11, -50, 12], [10, 11, -50, 12]]) == [1, 2, 3]", "assert max_sum_list([[1001, 1000], [5000], [2000], [1001, 1000], [3000], [4000], [6000], [7000]]) == [7000]", "assert max_sum_list([[400, 500, 600], [700, 800, 899, 900], [1000, 1100, 1200], [1300, 1400, 1500], [1600, 1700, 1800], [1300, 1400, 1500]]) == [1600, 1700, 1800]", "assert max_sum_list([[-1, 500, -2, -3, -2, -3], [-1, 500, -2, -3, -2, -3], [-1, 500, -2, -3, -2, -3], [-1, 500, -2, -3, -2, -3], [-1, 500, -2, -3, -2, -3]]) == [-1, 500, -2, -3, -2, -3]", "assert max_sum_list([[5000, 60000, 60000], [5000, 60000, 60000], [5000, 60000, 60000], [5000, 60000, 60000], [700, 8000, 90000]]) == [5000, 60000, 60000]", "assert max_sum_list([[10, 20, 30], [-90, 1, 2, 3, 4, 5], [100, 200, 300, 400]]) == [100, 200, 300, 400]", "assert max_sum_list([[10, 12, 30], [1, 2, 3, 4, 5], [10, 12, 30], [100, 200, 300, 400]]) == [100, 200, 300, 400]", "assert max_sum_list([[20000, -1, -2, -3, -3, -2, -3, -3], [20000, -1, -2, -3, -3, -2, -3, -3], [20000, -1, -2, -3, -3, -2, -3, -3], [20000, -1, -2, -3, -3, -2, -3, -3], [20000, -1, -2, -3, -3, -2, -3, -3]]) == [20000, -1, -2, -3, -3, -2, -3, -3]", "assert max_sum_list([[40, 50, 60], [70, 80, 90], [100, 110, 120], [130, 140, 150], [190, 200, 210]]) == [190, 200, 210]", "assert max_sum_list([[-1, -2, -3, -2, -1], [-1, -2, -3, -2, -1], [0, 0, 0, 0], [-1, -2, -3, -2, -1], [4, 5, 6, 7, 8], [-1, -2, -3, -2, -1], [-1, -2, -3, -2, -1]]) == [4, 5, 6, 7, 8]", "assert max_sum_list([[1001, 1000], [5000], [2000], [1001, 1000], [100], [4000], [6000], [7000]]) == [7000]", "assert max_sum_list([[1, 10000, 100000], [1000, 20000, 300000], [1000, 20000, 300000]]) == [1000, 20000, 300000]", "assert max_sum_list([[-1, -3, -2], [-1, -3, -2], [-1, -3, -2], [-1, -3, -2]]) == [-1, -3, -2]", "assert max_sum_list([[1, 20, 300], [400, 5000, 60000], [700, 8000, 90000], [700, 8000, 90000]]) == [700, 8000, 90000]", "assert max_sum_list([[10, 20, 30], [100, 110, 120, 109, 130, 140], [40, 50, 60, 70], [80, 90], [100, 110, 120, 109, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [150, 160, 170]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[700, 800, 899, 900], [400, 500, 600], [700, 800, 899, 900], [1000, 1100, 1200], [1300, 1400, 1500], [1600, 1700, 1800], [1300, 1400, 1500]]) == [1600, 1700, 1800]", "assert max_sum_list([[1000], [5000], [2000], [3000], [70], [6000], [70], [7000]]) == [7000]", "assert max_sum_list([[-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3], [-1, -2, -3, -3, -2, -3]]) == [-1, -2, -3, -3, -2, -3]", "assert max_sum_list([[0, 0], [2, 4, 6], [-1, -2, -3, -4], [-1, -2, -3, -4]]) == [2, 4, 6]", "assert max_sum_list([[1, 8, 2, 3], [10, 11, 12], [10, 11, 12], [1, 8, 2, 3]]) == [10, 11, 12]", "assert max_sum_list([[100, 200, 300], [400, 500, 600], [700, 900], [700, 900], [1600, 1700, 1800], [400, 500, 600]]) == [1600, 1700, 1800]", "assert max_sum_list([[-1, -2, -3, -2], [-1, -2, -3, -2], [5, 4, 5, 6, 7, 8], [0, 0, 0, 0], [5, 4, 5, 6, 7, 8]]) == [5, 4, 5, 6, 7, 8]", "assert max_sum_list([[1001, 1000], [5000], [2000], [100], [4000], [6000], [7000]]) == [7000]", "assert max_sum_list([[10, 1100, 20, 30], [10, 1100, 20, 30], [40, 50, 60, 70], [100, 110, 120, 130, 140], [150, 160, 170], [180, 190, 200, 210, 220, 230], [150, 160, 170], [100, 110, 120, 130, 140]]) == [180, 190, 200, 210, 220, 230]", "assert max_sum_list([[100, 200, 300], [401, 500, 600], [700, 800, 899, 900], [1000, 1100, 1200], [1600, 1700, 1800]]) == [1600, 1700, 1800]", "assert max_sum_list([[4, 3, 2, 1], [10, 20, 30], [1, 2, 3, 4, 5], [100, 200, 300, 400], [1, 2, 3, 4, 5]]) == [100, 200, 300, 400]" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find maximum run of uppercase characters in the given string.\nassert max_run_uppercase('GeMKSForGERksISBESt') == 5\nYour code should pass the test:\nassert max_run_uppercase('GeMKSForGERksISBESt') == 5", "test_list": [ "assert max_run_uppercase('GeMKSForGERksISBESt') == 5", "assert max_run_uppercase('PrECIOusMOVemENTSYT') == 6", "assert max_run_uppercase('GooGLEFluTTER') == 4", "assert max_run_uppercase('A') == 1", "assert max_run_uppercase('a') == 0", "assert max_run_uppercase('aa') == 0", "assert max_run_uppercase('aA') == 1", "assert max_run_uppercase('Aaa') == 0", "assert max_run_uppercase('aaaAaA') == 1", "assert max_run_uppercase('aaaAaAA') == 2", "assert max_run_uppercase('aaaA') == 1", "assert max_run_uppercase('aaA') == 1", "assert max_run_uppercase('aAaa') == 0", "assert max_run_uppercase('aaaaA') == 1", "assert max_run_uppercase('AaaA') == 1", "assert max_run_uppercase('aaaAaaaAaAA') == 2", "assert max_run_uppercase('aAaaa') == 0", "assert max_run_uppercase('aaaAAaA') == 1", "assert max_run_uppercase('AaaaAA') == 2", "assert max_run_uppercase('aaaaAaAA') == 2", "assert max_run_uppercase('AaaaAAA') == 3", "assert max_run_uppercase('aaaaAaA') == 1", "assert max_run_uppercase('AaaaaAA') == 2", "assert max_run_uppercase('Aa') == 1", "assert max_run_uppercase('aaaAaaaaaAAA') == 3", "assert max_run_uppercase('aaaAAaaaaaAAaaaAAaAA') == 2", "assert max_run_uppercase('aaaaAAaA') == 1", "assert max_run_uppercase('aAaaaaAAaaaaAAA') == 3", "assert max_run_uppercase('aaaaaAAaA') == 1", "assert max_run_uppercase('aaaaaAaAAaaAAaA') == 1", "assert max_run_uppercase('aaaaAAaAA') == 2", "assert max_run_uppercase('xTzcVWVVy') == 4", "assert max_run_uppercase('aaaaAAaAAAaaA') == 1", "assert max_run_uppercase('aaAaaaAAaA') == 1", "assert max_run_uppercase('aaaaaAaAAaaAaAaA') == 1", "assert max_run_uppercase('aaaaAaaaAaAA') == 2", "assert max_run_uppercase('AaaaAAaA') == 1", "assert max_run_uppercase('AAa') == 2", "assert max_run_uppercase('aaaaaAaAAaaAAaAA') == 2", "assert max_run_uppercase('AaAa') == 1", "assert max_run_uppercase('AaaaaAAA') == 3", "assert max_run_uppercase('aaaaaAAaAAAaa') == 0", "assert max_run_uppercase('aaAaaaAAAaaAAaAA') == 2", "assert max_run_uppercase('xTzcVWVaaaAAaaaaaAAaaaAAaAAy') == 2", "assert max_run_uppercase('aaaaAaAaAaa') == 0", "assert max_run_uppercase('aaaaAaaaaaAaAaAaaA') == 1", "assert max_run_uppercase('AaaaaAAaaaaaAAaaaAAaAAaaAAA') == 3", "assert max_run_uppercase('aaaaaAaAAaaaAAaA') == 1", "assert max_run_uppercase('aaaaAaaAAaA') == 1", "assert max_run_uppercase('aaAaaaAaaAAaAA') == 2", "assert max_run_uppercase('aaaAA') == 2", "assert max_run_uppercase('aAaAaaA') == 1", "assert max_run_uppercase('aaaAAaaaaaAAaaAaAAaAA') == 2", "assert max_run_uppercase('AaaaaA') == 1", "assert max_run_uppercase('AAAa') == 3", "assert max_run_uppercase('aaaAAAaaaAaaAAaA') == 1", "assert max_run_uppercase('aaAaaaaAAAaaAAaAA') == 2", "assert max_run_uppercase('aaaaAaAAaa') == 0", "assert max_run_uppercase('aaa') == 0", "assert max_run_uppercase('aaaAAaaaaaAAaAaAaAAaaAaaaAAAaaAAaAAaAA') == 2", "assert max_run_uppercase('aaaaAaaaaAAAaaAAaA') == 1", "assert max_run_uppercase('aaAaaaAAAaaAAaAAaaAaaaAaA') == 1", "assert max_run_uppercase('AaaaaAAaaaaaAAaAaAaAAaaAaaaAAAaaAAaAAaAAaA') == 1", "assert max_run_uppercase('aaaAaaaAaaaaaAAAaAA') == 2", "assert max_run_uppercase('aaaaaAaaaaaAAAAaaaaAAAaaAAaAA') == 2", "assert max_run_uppercase('aaaaaaaaAaAAaaAaAaAaaAaAAaaAAaA') == 1", "assert max_run_uppercase('aaaaAaaaaaAaAAaaAAaA') == 1", "assert max_run_uppercase('aaaaaAaAAaa') == 0", "assert max_run_uppercase('aaaaaAaaaaAaAAaaaAAaaaAAaA') == 1", "assert max_run_uppercase('aaaAAaaaaaAAAaAaAaAAaaAaaaAAAaaAAaAAaAA') == 2", "assert max_run_uppercase('aaAaaaAAAaaAAAaAA') == 2", "assert max_run_uppercase('aaaaaaaaAaAAaaAaAaAaaAaaaaAAaAAaAAaaAAaaaaAAaAaaaaA') == 1", "assert max_run_uppercase('aaaaaAaaaAaAA') == 2", "assert max_run_uppercase('aaaaAaaaaaAaaaaaAAAAaaaaAAAAaAA') == 2", "assert max_run_uppercase('aaaaAAaaaaaAAaaAaAAaAA') == 2", "assert max_run_uppercase('AAaaaAAaA') == 1", "assert max_run_uppercase('AAaaaaAAaA') == 1", "assert max_run_uppercase('AAaaaA') == 1", "assert max_run_uppercase('aAaaaaAAaAaaA') == 1", "assert max_run_uppercase('aaaaAaAAaaaAAa') == 2", "assert max_run_uppercase('aaaaaaaaaaAaaaAAAaaAAaAAAaAAaaAaAaaaaAAaaaaA') == 1", "assert max_run_uppercase('aaaaaAaaaaAAAaaAAaA') == 1", "assert max_run_uppercase('aaaAAaaaaAAA') == 3", "assert max_run_uppercase('aAaaaAAaAAAaaA') == 1", "assert max_run_uppercase('AaAaaaaAA') == 2", "assert max_run_uppercase('aaaaaaaAaaaaAaAAaaaAAaaaAAaAaAA') == 2", "assert max_run_uppercase('AaAaaaaAAAaA') == 1", "assert max_run_uppercase('xzcVWVVy') == 4", "assert max_run_uppercase('AaAaAaaaAAAaA') == 1", "assert max_run_uppercase('aaaaAaaa') == 0", "assert max_run_uppercase('aaaaaA') == 1", "assert max_run_uppercase('aaaaaaaaAaAAaaAaAaAaaAaaaaAAaAAaAAaaAAaaaaAAaAAAaaAaaaaAAaAaaaaA') == 1", "assert max_run_uppercase('aaaaAaaaaaAaAaAaaAaaaAAaaaaaAAaAaAaAAaaAaaaAAAaaAAaAAaAA') == 2", "assert max_run_uppercase('aaaAaaaaAAAaaAAaAA') == 2", "assert max_run_uppercase('aaaaaaaAaAaAaaAAaaaaAAA') == 3", "assert max_run_uppercase('aAaaaaAAaaaaAA') == 2", "assert max_run_uppercase('aaaAAaaaaaAAaaaAAaAAaaaaaAaaaAaAA') == 2", "assert max_run_uppercase('AaaaA') == 1", "assert max_run_uppercase('AaAaA') == 1", "assert max_run_uppercase('AaaaaAAAa') == 3", "assert max_run_uppercase('aAaAaaaAA') == 2", "assert max_run_uppercase('AaA') == 1", "assert max_run_uppercase('aaaAaaaAaaaaaAAAaAAA') == 3", "assert max_run_uppercase('aAAaaaAA') == 2", "assert max_run_uppercase('aaaAAaaaaaaaaAAaaaaaAAAaAaAaAAaaAaaaAAAaaAAaAAaAAAAaaaAAaAAaaaaaAaaaAaAA') == 2" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the first odd number in a given list of numbers.\nassert first_odd([1,3,5]) == 1\nYour code should pass the test:\nassert first_odd([1,3,5]) == 1", "test_list": [ "assert first_odd([1,3,5]) == 1", "assert first_odd([2,4,1,3]) == 1", "assert first_odd ([8,9,1]) == 9", "assert first_odd([1, 2, 3, 4, 5]) == 1", "assert first_odd([2, 3, 4, 6, 7]) == 3", "assert first_odd([4, 5, 6, 8, 9]) == 5", "assert first_odd([11, 13, 15, 17, 19, 21, 23, 25, 27, 29]) == 11", "assert first_odd([2, 4, 6, 8, 10, 1, 3, 5, 7, 9]) == 1", "assert first_odd([1, 2, 4, 7, 4, 5]) == 1", "assert first_odd([2, 3, 3, 4, 6, 7]) == 3", "assert first_odd([2, 4, 6, 8, 10, 1, 3, 7, 9]) == 1", "assert first_odd([2, 4, 6, 8, 10, 1, 3, 7, 9, 3]) == 1", "assert first_odd([2, 1, 2, 3, 4, 5]) == 1", "assert first_odd([2, 1, 2, 3, 4, 27, 5, 1]) == 1", "assert first_odd([4, 5, 6, 8, 9, 5]) == 5", "assert first_odd([2, 3, 3, 4, 17, 6, 7]) == 3", "assert first_odd([2, 1, 2, 2, 3, 4, 5]) == 1", "assert first_odd([11, 13, 15, 17, 19, 23, 25, 27, 11, 29, 19]) == 11", "assert first_odd([3, 4, 6, 8, 10, 1, 3, 7, 8, 7, 9]) == 3", "assert first_odd([2, 4, 6, 10, 1, 3, 5, 7, 9]) == 1", "assert first_odd([4, 6, 8, 10, 1, 3, 7, 8, 7, 9]) == 1", "assert first_odd([2, 1, 2, 2, 3, 4, 5, 3]) == 1", "assert first_odd([1, 2, 4, 7, 4, 5, 2]) == 1", "assert first_odd([3, 4, 6, 8, 10, 23, 1, 3, 7, 8, 7, 9]) == 3", "assert first_odd([2, 3, 4, 6, 7, 4]) == 3", "assert first_odd([2, 4, 6, 10, 1, 5, 7, 9]) == 1", "assert first_odd([11, 13, 21, 17, 19, 21, 23, 27, 29]) == 11", "assert first_odd([4, 5, 6, 8, 9, 5, 8]) == 5", "assert first_odd([1, 1, 4, 7, 4, 5]) == 1", "assert first_odd([1, 1, 4, 7, 4, 5, 1]) == 1", "assert first_odd([2, 1, 2, 2, 3, 4, 5, 2]) == 1", "assert first_odd([11, 13, 15, 17, 19, 21, 23, 25, 7, 29]) == 11", "assert first_odd([1, 2, 7, 4, 5]) == 1", "assert first_odd([2, 4, 6, 10, 2, 3, 5, 7, 9]) == 3", "assert first_odd([3, 4, 23, 6, 8, 10, 1, 3, 7, 8, 7, 9]) == 3", "assert first_odd([4, 5, 6, 23, 8, 9, 5, 5]) == 5", "assert first_odd([2, 3, 4, 6, 19, 4]) == 3", "assert first_odd([4, 8, 10, 1, 3, 7, 8, 7, 9]) == 1", "assert first_odd([2, 3, 3, 4, 6, 19, 4]) == 3", "assert first_odd([4, 1, 2, 4, 7, 4, 5, 2]) == 1", "assert first_odd([2, 4, 6, 10, 1, 3, 5, 7, 9, 2, 2]) == 1", "assert first_odd([2, 3, 4, 5, 19, 4]) == 3", "assert first_odd([13, 1, 4, 7, 4, 5, 2]) == 13", "assert first_odd([2, 4, 6, 10, 1, 3, 5, 7, 9, 2, 2, 2]) == 1", "assert first_odd([2, 1, 2, 3, 4, 27, 5, 1, 4]) == 1", "assert first_odd([2, 1, 3, 3, 4, 5, 2]) == 1", "assert first_odd([1, 4, 7, 4, 5]) == 1", "assert first_odd([3, 4, 23, 6, 8, 10, 3, 7, 8, 7, 3]) == 3", "assert first_odd([2, 1, 2, 2, 3, 4, 5, 2, 4]) == 1", "assert first_odd([1, 4, 7, 4, 5, 1]) == 1", "assert first_odd([11, 13, 15, 17, 19, 21, 23, 27, 25, 7, 29]) == 11", "assert first_odd([4, 6, 8, 2, 10, 1, 3, 7, 8, 7, 9]) == 1", "assert first_odd([2, 3, 4, 7]) == 3", "assert first_odd([2, 23, 4, 7, 7, 7, 7]) == 23", "assert first_odd([2, 2, 1, 2, 2, 3, 4, 5, 5]) == 1", "assert first_odd([3, 4, 6, 8, 10, 1, 3, 27, 8, 7, 9]) == 3", "assert first_odd([1, 2, 3, 4, 5, 3]) == 1", "assert first_odd([2, 3, 5, 4, 6, 7, 4]) == 3", "assert first_odd([2, 2, 3, 4, 15, 5, 3, 5]) == 3", "assert first_odd([1, 2, 3, 3, 5, 3]) == 1", "assert first_odd([6, 1, 4, 7, 4, 5]) == 1", "assert first_odd([11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 21]) == 11", "assert first_odd([13, 15, 17, 19, 21, 23, 25, 27, 29, 29]) == 13", "assert first_odd([4, 6, 8, 10, 1, 3, 5, 7, 9, 8]) == 1", "assert first_odd([11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 11]) == 11", "assert first_odd([2, 1, 2, 3, 4]) == 1", "assert first_odd([12, 13, 15, 17, 19, 21, 23, 25, 29, 11]) == 13", "assert first_odd([2, 3, 3, 7, 6, 19, 4, 4]) == 3", "assert first_odd([11, 13, 10, 15, 17, 19, 21, 23, 25, 27, 29, 21]) == 11", "assert first_odd([2, 4, 6, 10, 2, 3, 5, 9]) == 3", "assert first_odd([11, 13, 15, 17, 19, 21, 23, 25, 19, 29]) == 11", "assert first_odd([2, 3, 3, 7, 6, 18, 4, 4, 3]) == 3", "assert first_odd([3, 6, 8, 1, 3, 7, 8, 7, 9]) == 3", "assert first_odd([3, 4, 23, 6, 8, 10, 3, 7, 8, 7]) == 3", "assert first_odd([2, 27, 6, 10, 1, 3, 5, 7, 9, 2, 2]) == 27", "assert first_odd([3, 4, 23, 8, 10, 3, 29, 8, 7, 3]) == 3", "assert first_odd([12, 13, 15, 17, 19, 21, 23, 27, 25, 7, 29]) == 13", "assert first_odd([1, 4, 7, 4, 5, 4]) == 1", "assert first_odd([27, 11, 13, 15, 17, 19, 21, 23, 25, 19, 29]) == 27", "assert first_odd([11, 13, 29, 17, 19, 21, 23, 25, 27, 29, 11, 17]) == 11", "assert first_odd([3, 4, 23, 8, 10, 3, 29, 27, 8, 7, 3]) == 3", "assert first_odd([2, 4, 6, 6, 8, 10, 1, 3, 5, 7, 9]) == 1", "assert first_odd([3, 4, 6, 8, 10, 1, 3, 7, 8, 9, 9]) == 3", "assert first_odd([2, 1, 3, 3, 4, 5, 2, 2]) == 1", "assert first_odd([4, 5, 7, 6, 8, 9]) == 5", "assert first_odd([2, 3, 3, 7, 6, 9, 4, 4]) == 3", "assert first_odd([1, 4, 7, 4, 5, 4, 4]) == 1", "assert first_odd([4, 1, 2, 4, 4, 5, 2]) == 1", "assert first_odd([4, 5, 6, 8, 9, 5, 6]) == 5", "assert first_odd([11, 13, 15, 20, 17, 19, 21, 23, 25, 27, 21]) == 11", "assert first_odd([3, 4, 8, 10, 3, 29, 27, 8, 7, 3]) == 3", "assert first_odd([12, 15, 17, 19, 21, 23, 10, 27, 25, 7, 29]) == 15", "assert first_odd([2, 1, 2, 4, 4, 5]) == 1", "assert first_odd([3, 6, 8, 10, 1, 3, 7, 8, 7, 9]) == 3", "assert first_odd([2, 4, 6, 8, 10, 1, 3, 7, 6, 9, 3, 8]) == 1", "assert first_odd([4, 23, 6, 8, 10, 3, 7, 8, 7]) == 23", "assert first_odd([3, 4, 7, 10, 1, 3, 7, 8, 7, 9]) == 3", "assert first_odd([13, 15, 19, 21, 23, 26, 27, 29, 29, 26]) == 13", "assert first_odd([11, 13, 7, 29, 17, 19, 21, 23, 25, 27, 29, 11, 17]) == 11", "assert first_odd([2, 4, 6, 8, 10, 1, 3, 7]) == 1", "assert first_odd([1, 1, 5, 7, 4, 5]) == 1", "assert first_odd([4, 5, 7, 6, 8, 9, 9]) == 5", "assert first_odd([1, 1, 3, 3, 5, 3]) == 1", "assert first_odd([2, 1, 2, 3, 4, 27, 5, 1, 2]) == 1", "assert first_odd([12, 13, 15, 17, 19, 23, 25, 27, 11, 19, 12]) == 13", "assert first_odd([3, 4, 6, 8, 10, 1, 3, 27, 8, 7, 9, 4]) == 3", "assert first_odd([3, 4, 23, 6, 8, 10, 1, 3, 7, 8, 7, 9, 1, 6]) == 3", "assert first_odd([11, 13, 21, 17, 19, 21, 23, 27, 29, 21]) == 11" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if the given tuples contain the k or not.\nassert check_K((10, 4, 5, 6, 8), 6) == True\nYour code should pass the test:\nassert check_K((10, 4, 5, 6, 8), 6) == True", "test_list": [ "assert check_K((10, 4, 5, 6, 8), 6) == True", "assert check_K((1, 2, 3, 4, 5, 6), 7) == False", "assert check_K((7, 8, 9, 44, 11, 12), 11) == True", "assert check_K(([1, 2, 3], [4, 5, 6], [7, 8, 9]), [4, 5, 6]) == True", "assert check_K(('apple', 'banana', 'cherry'), 'banana') == True", "assert check_K((10, 'hello', True, 3.14), 'hello') == True", "assert check_K(([], [], []), []) == True", "assert check_K(('a', 'b', 'c'), 'd') == False", "assert check_K((1, 2, 3, 1, 2, 3), 3) == True", "assert check_K((), 5) == False", "assert check_K(([1, 2, 3], 4), [1, 2, 3]) == True", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [2, 3]) == False", "assert check_K((10, 'hello', True, [1, 2, 3]), [1, 2, 3]) == True", "assert check_K((1, 2, 3, 2, 4, 2), 2) == True", "assert check_K((-10, -20, -30, -40), -30) == True", "assert check_K((1.5, 2.5, 3.5), 1.5) == True", "assert check_K(([], '', 'apple'), '') == True", "assert check_K((), 'banana') == False", "assert check_K((), 7) == False", "assert check_K(([1, 2, [3, 4]], 2), 2) == True", "assert check_K(([10, 20], [10, 20]), [10, 20]) == True", "assert check_K(([1, 2, [3, [4, 5]]], [[4, 5], 6]), [[4, 5], 6]) == True", "assert check_K((['a', 'b', ['c', 'd']], ['c', 'd']), ['c', 'd']) == True", "assert check_K(([1, 2], {'a': 1, 'b': 2}), {'a': 1, 'b': 2}) == True", "assert check_K((), []) == False", "assert check_K((2, 3, 1, 2, 3), 3) == True", "assert check_K((1, 2, 3, 4, 2), 2) == True", "assert check_K((2, 20, 1, 2, 3), 3) == True", "assert check_K((1, 3, 2, 3, 4, 2, 3), 2) == True", "assert check_K((1, 2, 3, 4, 2), [1, 2, 3, 4, 2]) == False", "assert check_K(([1, 2, [3, [4, 5]]], [[4, 5], 6]), [[4, 5], 6, 6]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [3]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [3, 3]) == False", "assert check_K((3, 3, 3), [3, 3]) == False", "assert check_K(('xBmhAx', 'rBIbfb', 'xBhmhAx', 'b', 'b'), []) == False", "assert check_K(([1, 2, 3],), [[1, 2, 3]]) == False", "assert check_K(('chcherryerry', 'apple', 'banana', 'cherry'), ['apple', 'banana', 'cherry']) == False", "assert check_K(([1, [2, 3], 4], [5, 8]), [2, 3]) == False", "assert check_K(('chcherryerry', 'apple', 'banana', 'cherry', 'cherry'), ['apple', 'banana', 'cherry']) == False", "assert check_K((4.348560304127057, 1.5, 2.5, 3.5), [4.348560304127057, 1.5, 2.5, 3.5]) == False", "assert check_K(('chcherryerry', 'banana', 'cherry', 'cherry', 'cherry'), ['apple', 'banana', 'cherry']) == False", "assert check_K(('xBmhAx', 'rBIbfb', 'xBhmhAx', 'b', 'b', 'xBhmhAx'), []) == False", "assert check_K(([10, 20], [10, 20]), [10, 10]) == False", "assert check_K(('chcherryerry', 'banana', 'cherry', 'cherry', 'b', 'cherry'), ['apple', 'banana', 'cherry']) == False", "assert check_K(('xBmhAx', 'rBIbfb', 'xBhmhAx', 'b', 'b'), [28.964266674760978, 19.32979185384636, 1.5, -76.47615018021537, -81.70482776125439]) == False", "assert check_K(([3, [2, 3], 4], [5, [6, 7], 8]), [1, 3]) == False", "assert check_K((4,), [1, -30, 2, 3]) == False", "assert check_K((2, 3, 1, 2, 3, 2), 3) == True", "assert check_K((10, 3), [10, 3]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [2, 3, 3]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [[1, [2, 3], 4], [5, [6, 7], 8]]) == False", "assert check_K((2, 20, 1, 1, 2, 3), 3) == True", "assert check_K((['a', 'b', ['c', 'd']], ['c', 'd']), [['a', 'b', ['c', 'd']], ['c', 'd']]) == False", "assert check_K(([], '', 'apple', ''), 'd') == False", "assert check_K(([1, 2, 3, 3],), [[1, 2, 3], [1, 2, 3]]) == False", "assert check_K((1, 2, 3, 4, 2), [9, 1, 2, 3, 3, 2]) == False", "assert check_K((1, 3, 2, 3, 4, 2, 3), 10) == False", "assert check_K((1, 2, 3, 4), 2) == True", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8], [1, [2, 3], 4]), [3, 3]) == False", "assert check_K(([10, 20], [10, 20]), [11, 20]) == False", "assert check_K((2, 20, 1, 2, 3), 10) == False", "assert check_K((3, 3), [[1, [2, 3], 4], [5, [6, 7], 8], [1, [2, 3], 4]]) == False", "assert check_K((10, 3), [3]) == False", "assert check_K((28.964266674760978, 3.14, 19.32979185384636, 1.5, -76.47615018021537, -81.70482776125439), [28.964266674760978, 19.32979185384636, 1.5, -76.47615018021537, -81.70482776125439]) == False", "assert check_K((2, 2, 20, 1, 2, 3), 2) == True", "assert check_K((1, 1, 2, 3, 4, 2, 3), 9) == False", "assert check_K((-10, -20, -30, -40), [-10, 1, -20, -30, -40]) == False", "assert check_K(([1, [2, 3], 4],), [2, 3]) == False", "assert check_K((1, 1, 2, 3, 4, 2, 3), [1, 1, 2, 3, 4, 2, 3]) == False", "assert check_K((), [[1, [2, 3], 4]]) == False", "assert check_K((1, 3, 2, 3, 4, 2, 3), [1, 3, 2, 2, 4, 2, 3]) == False", "assert check_K(([1, 2, [3, [4, 5]]], [[4, 5], 6]), [[-40, 5], 6]) == False", "assert check_K((-10, -20, -30), -30) == True", "assert check_K((3,), [3, 3]) == False", "assert check_K((7, 1, 3, 2, 3, 4, 2, 3), [1, 3, 2, 2, 4, 2, 3]) == False", "assert check_K(([1, 2, 1], [1, 2], {'a': 1, 'b': 2}, [1, 2, 1]), [[1, 2, 1], [1, 2], {'a': 1, 'b': 2}, [1, 2, 1], [1, 2, 1]]) == False", "assert check_K(([1, 3, [3, [4, 5]]], [[4, 5], 6]), [[4, 5], 6]) == True", "assert check_K((), ['', 'apple', 'akhIW', 'd', 'c', 'a', 'RmxIIB', 'Ttp']) == False", "assert check_K(('a', 'b', 'cherry'), 'dapple') == False", "assert check_K((-10, -20, -30, -40), [-10, 1, -20, -30, -40, -30]) == False", "assert check_K((-10, 1, 11, -20, -30, -40, 1), [-10, 1, -20, -30, -40, 1, 1]) == False", "assert check_K(('apple', 'banana', 'cherry'), ['apple', 'banana', 'cherry']) == False", "assert check_K((2, 3, 0, 2, 3, 1), 3) == True", "assert check_K((1, 3, 2, 3, 4, 2, 3), [1, 3, 2, 20, 2, 4, 2, 3]) == False", "assert check_K(([2, 3, 3],), [[1, 2, 3], [1, 2, 3], [1, 2, 3]]) == False", "assert check_K((1, 2, 3, 4, 2, 2), [1, 2, 3, 4, 2]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [2, 3, 3, 3]) == False", "assert check_K(([10, 20], [10, 20, 20], [10, 20, 20]), [11, 20]) == False", "assert check_K((1, 1, 2, 3, 4, 2, 3), 8) == False", "assert check_K(([1, [2, 3, 3], 4],), [[1, [2, 3], 4], [1, [2, 3], 4]]) == False", "assert check_K(([], [], []), [{'-73.52218882955222': 2, '-66.96191247748814': 50, '4.348560304127057': 90.88824607409293, '28.964266674760978': True, '1.5': False, '3.14': [False, True, False, True, False], '2.5': True}, 11, 8, {}, 'chcherryerry']) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8, 5], [5, [6, 7], 8], [1, [2, 3], 4], [1, [2, 3], 4]), [[1, [2, 3], 4], [5, [6, 7], 8, 5], [5, [6, 7], 8], [1, [2, 3], 4], [1, [2, 3], 4]]) == False", "assert check_K((-77.49409548611021, 2.5, 2.5, 9.624371119653333, 28.964266674760978, -73.52218882955222), 'banana') == False", "assert check_K((2, 3), [3]) == False", "assert check_K(([1, [2, 3], 4], [1, [2, 3], 4], [1, [2, 3], 4]), [[1, [2, 3, 3], 4]]) == False", "assert check_K((-6.114892068502201, -7.851316646059402, -73.52218882955222, 19.32979185384636, 82.27006557582865, -16.21417108166898, 59.653975366495985, 67.76262613952514, 39.06517900991895, 28.964266674760978), [[1, [2, 3], 4]]) == False", "assert check_K((3,), [3]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [[1, [2, 3], 4], [5, 8, [6, 7], 8]]) == False", "assert check_K(([1, 2, 3], [1, 2, 3]), [[1, 2, 3, 3]]) == False", "assert check_K(([1, 2], {'b': 2}, [1, 2]), [[1, 2], {'b': 2}, [1, 2]]) == False", "assert check_K(([1, [2, 3], 4], [5, [6, 7], 8]), [[1, [2, 3], 4], [5, [6, 7], 8, 5]]) == False", "assert check_K(([1, [2, 3]], [5, [6, 7], 8]), [2, 3, 3]) == False", "assert check_K(('xBmhAx', 'rBIbfb', 'xBhmhAx', 'b', 'b', 'xBhmhAx'), ['xBmhAx', 'rBIbfb', 'xBhmhAx', 'b', 'b', 'xBhmhAx']) == False", "assert check_K((), [1, -30, 2, 3, -30]) == False", "assert check_K(([1, 2, 3], [1, 2, 3], [2, 3], [1, 2, 3]), [[1, 2, 3], [1, 2, 3], [1, 2, 3]]) == False", "assert check_K((20, -60, 10, -21), 5) == False", "assert check_K((4.348560304127057, 1.5, 1.0981435370277304, 2.44007671951608, 3.5), [4.348560304127057, 1.5, 2.5, 3.5]) == False", "assert check_K((2, 3, 2, 2, 2, 0, -20, 4, 2, 3), [2, 3, 2, 2, -20, 4, 2, 3]) == False", "assert check_K((1, 2, 3, 7, 2, 4, 2, 2), [1, 2, 3, 2, 4, 2]) == False", "assert check_K((3, 1, 3, 2, 3, -60, 2, 3, 3), [1, 3, 2, 3, -60, 2, 3, 3]) == False", "assert check_K((2, 3, 1, 2, 3, 2), 4) == False", "assert check_K(([4, 5], 6, 6), [[4, 5], 6, 6]) == False", "assert check_K((1, 3, 2, 3, 4, 2), [1, 3, 2, 3, 4, 0, 3]) == False", "assert check_K((3, 1, 3, 2, 3, -60, 2, 3, 3), [1, 3, 2, 2, -60, 2, 3, 3]) == False", "assert check_K((3, 2), [3, 3, 3]) == False", "assert check_K((1, 2, 3, 4, 2, 2, 1), [1, 2, 3, 4, 2, 2]) == False", "assert check_K(('chcherryerry', 'apple', 'banana', 'cherry'), ['apple', 'banana', 'cherry', 'banana']) == False", "assert check_K((3.748269152011608, 1.5, 2.5, 3.5), [4.348560304127057, 1.5, 2.5, 3.5]) == False", "assert check_K((2, 3, 1, 2, 3), 20) == False", "assert check_K(([1, 2], {'a': 1, 'b': 3}, {'a': 1, 'b': 3}), {'a': 1, 'b': 3, 'xBmhAx': 11}) == False", "assert check_K((2, 9, 10), [3]) == False", "assert check_K((1, 3, 2, 3, 4, 1, 3), [1, 3, 2, 3, 4, 0, 3]) == False", "assert check_K((2, 3, 4, 2, 2, 1), [1, 2, 3, 4, 2, 2]) == False", "assert check_K((1, 3, 2, 3, 5, 2), [1, 3, 2, 3, 4, 0, 3]) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if each element of second tuple is smaller than its corresponding element in the first tuple.\nassert check_smaller((1, 2, 3), (2, 3, 4)) == False\nYour code should pass the test:\nassert check_smaller((1, 2, 3), (2, 3, 4)) == False", "test_list": [ "assert check_smaller((1, 2, 3), (2, 3, 4)) == False", "assert check_smaller((4, 5, 6), (3, 4, 5)) == True", "assert check_smaller((11, 12, 13), (10, 11, 12)) == True", "assert check_smaller((5, 10, 15, 20), (4, 8, 16, 25)) == False", "assert check_smaller((3, 7, 11, 15, 19), (2, 6, 10, 14, 18)) == True", "assert check_smaller((0, 1, 2, 3, 4, 5), (-1, 0, 1, 2, 3, 4)) == True", "assert check_smaller((), ()) == True", "assert check_smaller((1, 2, 3), (4, 5, 6)) == False", "assert check_smaller((0, 10, 20), (-1, 9, 21)) == False", "assert check_smaller((100, 200, 300), (99, 199, 299)) == True", "assert check_smaller((-1, -2, -3), (-4, -5, -6)) == True", "assert check_smaller((10, 20, 30, 40), (11, 19, 31, 39)) == False", "assert check_smaller((-10, -20, -30, -40), (-11, -19, -31, -39)) == False", "assert check_smaller((1, 2, 3), (3, 2, 1)) == False", "assert check_smaller((10, 20, 30, 40), (10, 19, 31, 39)) == False", "assert check_smaller((100, 200, 300), (100, 200, 299)) == False", "assert check_smaller((3, 7, 11, 15, 19), (2, 6, 10, 15, 18)) == False", "assert check_smaller((-1, -2, -3), (-4, -5, -3)) == False", "assert check_smaller((1, 2, 3), (1, 2, 3)) == False", "assert check_smaller((4, 5, 6), (4, 5, 6)) == False", "assert check_smaller((7, 8, 9, 10), (7, 8, 9, 10)) == False", "assert check_smaller((4, 5, 6), (5, 6, 7)) == False", "assert check_smaller((7, 8, 9, 10), (8, 9, 10, 11)) == False", "assert check_smaller((1, 2, 3), (2, 1, 4)) == False", "assert check_smaller((4, 5, 6), (6, 4, 7)) == False", "assert check_smaller((4, 5, 6, 6), (4, 5, 6, 6)) == False", "assert check_smaller((0, 10, -6), (-1, 9, 21)) == False", "assert check_smaller((1, 99, 3), (1, 2, 3)) == False", "assert check_smaller((10, 19, 31, 39), (10, 19, 31, 39)) == False", "assert check_smaller((7, 8, 9, -10, 7), (7, 8, 9, 11, 10)) == False", "assert check_smaller((-40, 5, 7), (5, 6, 7)) == False", "assert check_smaller((7, 8, 9, 10), (-31, 9, 10, 11)) == False", "assert check_smaller((-1, 0, 1, 2, 3, 4), (0, 1, 2, 3, 4, 5)) == False", "assert check_smaller((1, -5, 3), (1, 2, 3)) == False", "assert check_smaller((4, 5, 39, 6), (4, 5, 39, 6)) == False", "assert check_smaller((1, 2, 3), (4, 5, -31)) == False", "assert check_smaller((0, 1, 2, 3, 4, 5, 3), (0, 1, 2, 3, 4, 5, 3)) == False", "assert check_smaller((4, 5, 7), (5, 6, 7)) == False", "assert check_smaller((-1, -30, 1, 3, 4), (-1, 0, 2, 3, 4)) == False", "assert check_smaller((2, 6, 10, 14, 18), (2, 6, 10, 14, 18)) == False", "assert check_smaller((10, 20, 30, 25), (10, 20, 30, 25)) == False", "assert check_smaller((-2, 2, 1, 4), (-2, 2, 1, 4)) == False", "assert check_smaller((0, 1, 2, 39, 4, 5, 3), (0, 1, 2, 3, 4, 5, 3)) == False", "assert check_smaller((1, 2, -6), (1, 2, 3)) == False", "assert check_smaller((2, 7, 10, 14, 18), (2, 6, 10, 14, 18)) == False", "assert check_smaller((10, 19, 31, 39), (11, 19, 31, 39)) == False", "assert check_smaller((5, 10, 15, 20), (5, 10, 15, 20)) == False", "assert check_smaller((2, 6, 10, 14, 18, 6), (2, 6, 10, 14, 18, 10)) == False", "assert check_smaller((1, -5, 3), (1, -5, 3)) == False", "assert check_smaller((100, 200, 299), (100, 200, 299)) == False", "assert check_smaller((2, 1, 4), (2, 1, 4)) == False", "assert check_smaller((5, 6, 6), (5, 6, 7)) == False", "assert check_smaller((4, 5, 6, 5), (4, 5, 6, 6)) == False", "assert check_smaller((4, 39, 6), (4, 39, 6)) == False", "assert check_smaller((2, 6, 10, -4, 18), (2, 6, 10, -4, 18)) == False", "assert check_smaller((3, 7, -39, 15, 19), (11, 6, 10, 15, 18)) == False", "assert check_smaller((7, 8, 9, -10, 7), (7, 8, 9, 10, 9)) == False", "assert check_smaller((0, 10, 20), (0, 10, 20)) == False", "assert check_smaller((-11, -19, -30, -31, -39), (-10, -20, -30, -40, -20)) == False", "assert check_smaller((4, 6, 6), (4, 6, 6)) == False", "assert check_smaller((6, 39, 39, 6), (6, -40, 39, 6)) == False", "assert check_smaller((-1, -6, 1, 3, 4), (-1, -30, 1, 3, 4)) == False", "assert check_smaller((0, 10, 20), (0, 10, 19)) == False", "assert check_smaller((-6, 6, 7), (-6, 6, 7)) == False", "assert check_smaller((10, 20, 30, 25), (11, 20, 30, 25)) == False", "assert check_smaller((-5, 6, 7), (-6, 6, 7)) == False", "assert check_smaller((5, 6, 7), (5, 6, 7)) == False", "assert check_smaller((4, 6, 6), (15, 6, 6)) == False", "assert check_smaller((-11, 6, 7), (5, 6, 7)) == False", "assert check_smaller((2, 3), (2, 3)) == False", "assert check_smaller((3, 0, 11, 15, 19), (3, 0, 11, 15, 19)) == False", "assert check_smaller((-6, 7, 7), (-6, 6, 7)) == False", "assert check_smaller((0, 20, 20), (0, 10, 20)) == False", "assert check_smaller((99, 19, 31, 39), (11, 19, 31, 39)) == False", "assert check_smaller((3, 7, 11, 15, 3, 19), (2, 6, 10, 10, 15, 18)) == False", "assert check_smaller((-1, 2, 1, 3, 4), (-1, -30, 2, 3, 5)) == False", "assert check_smaller((0, 10, 20), (-1, 10, 21)) == False", "assert check_smaller((-1, 2, 1, 3, 4), (-1, 2, 1, 3, 4)) == False", "assert check_smaller((2, 6, 10, 14, 18, 6), (2, 6, 10, 14, 18, 6)) == False", "assert check_smaller((39, 39, 6, 39), (6, 39, 39, 6)) == False", "assert check_smaller((10, 20, 30, 40), (10, -30, 31, 39)) == False", "assert check_smaller((10, 19, 31, 39), (11, 19, -40, 39)) == False", "assert check_smaller((-31, 10, 10, 11), (-31, 10, 10, 11)) == False", "assert check_smaller((19, 31, 39, 39), (11, 19, 3, 39)) == False", "assert check_smaller((4, 3, 5, 6, 6), (4, 3, 5, 6, 6)) == False", "assert check_smaller((15, 6, 6, 6), (15, 6, 6, 6)) == False", "assert check_smaller((7, 8, 9, -10, 7, 9), (7, 30, 9, -10, 7, 9)) == False", "assert check_smaller((20, 30, 40, 30), (20, 30, 40, 30)) == False", "assert check_smaller((11, 31, 39), (11, 31, 39)) == False", "assert check_smaller((-11, 30, 7), (5, 6, 7)) == False", "assert check_smaller((-40, 5, 7), (-40, 5, 7)) == False", "assert check_smaller((0, 20, -1, 20), (0, 20, -1, 20)) == False", "assert check_smaller((10, 19, -1, 39), (10, 20, 30, 40)) == False", "assert check_smaller((-2, 5, 6), (-11, 6, 7)) == False", "assert check_smaller((10, 20, 29, 40), (10, 20, 29, 40)) == False", "assert check_smaller((0, 0, 10, 20), (0, 10, 20, 0)) == False", "assert check_smaller((10, 30, 31, 39), (10, 19, 31, 39)) == False", "assert check_smaller((10, 31, 39), (10, 31, 39)) == False", "assert check_smaller((3, 0, 1, 2, 3, 4, 5), (3, 0, 1, 2, 3, 4, 5)) == False", "assert check_smaller((2, 1, 4), (2, 1, 99)) == False", "assert check_smaller((5, -40, 6, 7, 5), (5, 99, 6, 7, 5)) == False", "assert check_smaller((-11, -19, -31, -39), (-10, -20, -40, -20)) == False", "assert check_smaller((4, 16, 6, 6), (4, 5, 6, 5)) == False", "assert check_smaller((-5, 5, 6), (5, 6, 7)) == False", "assert check_smaller((10, 19, 31, 39), (11, 18, -40, 39)) == False", "assert check_smaller((15, 6, 6), (15, 6, 6)) == False", "assert check_smaller((0, 1, 2, 3, 4, 5), (-1, 0, 1, 29, 3, 4)) == False", "assert check_smaller((11, 32, 31, 39), (11, 31, 39, 11)) == False", "assert check_smaller((2, 6, 10, 15), (2, 6, 10, 15)) == False", "assert check_smaller((4, 5, 5), (5, 6, 7)) == False", "assert check_smaller((-1, -6, 1, 3, 4), (-1, -30, 1, -20, 4)) == False", "assert check_smaller((14, 6, 6), (15, 6, 6)) == False", "assert check_smaller((-1, 2, 1, 31, 4), (-1, 2, 1, 3, 4)) == False", "assert check_smaller((4, -39, 6), (4, 5, 6)) == False", "assert check_smaller((14, 6, 6), (14, 6, 6)) == False", "assert check_smaller((-6, 3, 7), (-6, 3, 7)) == False", "assert check_smaller((2, 6, 10, 14, 18, 10), (300, 6, 10, 14, 18, 9)) == False", "assert check_smaller((-6, 6, 7), (-6, 6, 29)) == False", "assert check_smaller((-6, 7, 7), (-6, 7, 7)) == False", "assert check_smaller((6, 7, 7), (-11, 6, 6)) == True", "assert check_smaller((10, 20, 8, 40), (10, 20, 30, 40)) == False", "assert check_smaller((5, 4, 99, 6, 7, 5), (5, 99, 6, 7, 5, 5)) == False", "assert check_smaller((2, 10, 14, 18, 2), (2, 10, 14, 18, 2)) == False", "assert check_smaller((-1, 0, 1, 2, 3, 4), (0, 1, 2, 3, 3, 5)) == False", "assert check_smaller((1, -4, 3), (1, 2, 3)) == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the volume of a sphere.\nassert math.isclose(volume_sphere(10), 4188.790204786391, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(volume_sphere(10), 4188.790204786391, rel_tol=0.001)", "test_list": [ "assert math.isclose(volume_sphere(10), 4188.790204786391, rel_tol=0.001)", "assert math.isclose(volume_sphere(25), 65449.84694978735, rel_tol=0.001)", "assert math.isclose(volume_sphere(20), 33510.32163829113, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the nth number in the newman conway sequence.\nassert sequence(10) == 6\nYour code should pass the test:\nassert sequence(10) == 6", "test_list": [ "assert sequence(10) == 6", "assert sequence(2) == 1", "assert sequence(3) == 2", "assert sequence(100) == 57", "assert sequence(1000) == 510", "assert sequence(10000) == 5373", "assert sequence(1000000) == 510403", "assert sequence(49284) == 26387", "assert sequence(76589) == 40520", "assert sequence(92346) == 49477", "assert sequence(109872) == 58093", "assert sequence(92345) == 49476", "assert sequence(76590) == 40521", "assert sequence(1001) == 510", "assert sequence(10001) == 5374", "assert sequence(109871) == 58093", "assert sequence(True) == 1", "assert sequence(101) == 57", "assert sequence(99) == 56", "assert sequence(109873) == 58094", "assert sequence(76588) == 40520", "assert sequence(109870) == 58093", "assert sequence(999999) == 510402", "assert sequence(999998) == 510402", "assert sequence(28) == 16", "assert sequence(9999) == 5372", "assert sequence(109874) == 58094", "assert sequence(49283) == 26386", "assert sequence(102) == 57", "assert sequence(76591) == 40522", "assert sequence(98) == 56", "assert sequence(92344) == 49476", "assert sequence(29) == 16", "assert sequence(999) == 509", "assert sequence(109869) == 58093", "assert sequence(109868) == 58093", "assert sequence(97) == 55", "assert sequence(109867) == 58093", "assert sequence(49285) == 26387", "assert sequence(9998) == 5372", "assert sequence(109866) == 58092", "assert sequence(88) == 50", "assert sequence(49282) == 26385", "assert sequence(30) == 16", "assert sequence(109876) == 58094", "assert sequence(87) == 49", "assert sequence(31) == 16", "assert sequence(49280) == 26383", "assert sequence(92343) == 49476", "assert sequence(32) == 16", "assert sequence(92342) == 49475", "assert sequence(49281) == 26384", "assert sequence(103) == 58", "assert sequence(76592) == 40522", "assert sequence(999997) == 510402", "assert sequence(85) == 48", "assert sequence(95) == 54", "assert sequence(76587) == 40520", "assert sequence(25) == 15", "assert sequence(86) == 48", "assert sequence(89) == 51", "assert sequence(104) == 58", "assert sequence(96) == 54", "assert sequence(27) == 15", "assert sequence(109875) == 58094", "assert sequence(84) == 48", "assert sequence(1000001) == 510403", "assert sequence(9997) == 5371", "assert sequence(997) == 509", "assert sequence(49286) == 26388", "assert sequence(1002) == 510", "assert sequence(105) == 58", "assert sequence(11) == 7", "assert sequence(9996) == 5370", "assert sequence(1000002) == 510403", "assert sequence(92341) == 49475", "assert sequence(9) == 5", "assert sequence(8) == 4", "assert sequence(1000003) == 510403", "assert sequence(76586) == 40519", "assert sequence(109865) == 58092", "assert sequence(12) == 7", "assert sequence(76585) == 40519", "assert sequence(26) == 15", "assert sequence(996) == 509", "assert sequence(33) == 17", "assert sequence(49287) == 26389", "assert sequence(10) == 6", "assert sequence(92340) == 49474", "assert sequence(76593) == 40523", "assert sequence(92347) == 49477", "assert sequence(76584) == 40518", "assert sequence(7) == 4", "assert sequence(92348) == 49477", "assert sequence(34) == 18", "assert sequence(92339) == 49473", "assert sequence(106) == 58", "assert sequence(6) == 4", "assert sequence(76594) == 40523", "assert sequence(109864) == 58092", "assert sequence(92338) == 49473", "assert sequence(998) == 509", "assert sequence(49288) == 26390", "assert sequence(76595) == 40523", "assert sequence(92337) == 49473", "assert sequence(76583) == 40517", "assert sequence(13) == 8", "assert sequence(83) == 47", "assert sequence(1004) == 510", "assert sequence(23) == 14", "assert sequence(82) == 47" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the surface area of a sphere.\nassert math.isclose(surfacearea_sphere(10), 1256.6370614359173, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(surfacearea_sphere(10), 1256.6370614359173, rel_tol=0.001)", "test_list": [ "assert math.isclose(surfacearea_sphere(10), 1256.6370614359173, rel_tol=0.001)", "assert math.isclose(surfacearea_sphere(15), 2827.4333882308138, rel_tol=0.001)", "assert math.isclose(surfacearea_sphere(20), 5026.548245743669, rel_tol=0.001)" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find nth centered hexagonal number.\nassert centered_hexagonal_number(10) == 271\nYour code should pass the test:\nassert centered_hexagonal_number(10) == 271", "test_list": [ "assert centered_hexagonal_number(10) == 271", "assert centered_hexagonal_number(2) == 7", "assert centered_hexagonal_number(9) == 217", "assert centered_hexagonal_number(1000000) == 2999997000001", "assert centered_hexagonal_number(True) == 1", "assert centered_hexagonal_number(1000001) == 3000003000001", "assert centered_hexagonal_number(1000002) == 3000009000007", "assert centered_hexagonal_number(999999) == 2999991000007", "assert centered_hexagonal_number(79) == 18487", "assert centered_hexagonal_number(999998) == 2999985000019", "assert centered_hexagonal_number(999997) == 2999979000037", "assert centered_hexagonal_number(80) == 18961", "assert centered_hexagonal_number(1000003) == 3000015000019", "assert centered_hexagonal_number(81) == 19441", "assert centered_hexagonal_number(78) == 18019", "assert centered_hexagonal_number(82) == 19927", "assert centered_hexagonal_number(999996) == 2999973000061", "assert centered_hexagonal_number(77) == 17557", "assert centered_hexagonal_number(84) == 20917", "assert centered_hexagonal_number(83) == 20419", "assert centered_hexagonal_number(999995) == 2999967000091", "assert centered_hexagonal_number(85) == 21421", "assert centered_hexagonal_number(999994) == 2999961000127", "assert centered_hexagonal_number(76) == 17101", "assert centered_hexagonal_number(999993) == 2999955000169", "assert centered_hexagonal_number(86) == 21931", "assert centered_hexagonal_number(75) == 16651", "assert centered_hexagonal_number(1000004) == 3000021000037", "assert centered_hexagonal_number(74) == 16207", "assert centered_hexagonal_number(88) == 22969", "assert centered_hexagonal_number(93) == 25669", "assert centered_hexagonal_number(94) == 26227", "assert centered_hexagonal_number(92) == 25117", "assert centered_hexagonal_number(999992) == 2999949000217", "assert centered_hexagonal_number(87) == 22447", "assert centered_hexagonal_number(999991) == 2999943000271", "assert centered_hexagonal_number(91) == 24571", "assert centered_hexagonal_number(999989) == 2999931000397", "assert centered_hexagonal_number(89) == 23497", "assert centered_hexagonal_number(999987) == 2999919000547", "assert centered_hexagonal_number(90) == 24031", "assert centered_hexagonal_number(97) == 27937", "assert centered_hexagonal_number(52) == 7957", "assert centered_hexagonal_number(96) == 27361", "assert centered_hexagonal_number(53) == 8269", "assert centered_hexagonal_number(95) == 26791", "assert centered_hexagonal_number(999990) == 2999937000331", "assert centered_hexagonal_number(1000005) == 3000027000061", "assert centered_hexagonal_number(999986) == 2999913000631", "assert centered_hexagonal_number(98) == 28519", "assert centered_hexagonal_number(999985) == 2999907000721", "assert centered_hexagonal_number(51) == 7651", "assert centered_hexagonal_number(999984) == 2999901000817", "assert centered_hexagonal_number(54) == 8587", "assert centered_hexagonal_number(50) == 7351", "assert centered_hexagonal_number(999982) == 2999889001027", "assert centered_hexagonal_number(999988) == 2999925000469", "assert centered_hexagonal_number(73) == 15769", "assert centered_hexagonal_number(999981) == 2999883001141", "assert centered_hexagonal_number(49) == 7057", "assert centered_hexagonal_number(99) == 29107", "assert centered_hexagonal_number(38) == 4219", "assert centered_hexagonal_number(48) == 6769", "assert centered_hexagonal_number(37) == 3997", "assert centered_hexagonal_number(20) == 1141", "assert centered_hexagonal_number(21) == 1261", "assert centered_hexagonal_number(36) == 3781", "assert centered_hexagonal_number(72) == 15337", "assert centered_hexagonal_number(35) == 3571", "assert centered_hexagonal_number(55) == 8911", "assert centered_hexagonal_number(999983) == 2999895000919", "assert centered_hexagonal_number(100) == 29701", "assert centered_hexagonal_number(70) == 14491", "assert centered_hexagonal_number(71) == 14911", "assert centered_hexagonal_number(1000006) == 3000033000091", "assert centered_hexagonal_number(33) == 3169", "assert centered_hexagonal_number(19) == 1027", "assert centered_hexagonal_number(31) == 2791", "assert centered_hexagonal_number(32) == 2977", "assert centered_hexagonal_number(22) == 1387", "assert centered_hexagonal_number(30) == 2611", "assert centered_hexagonal_number(23) == 1519", "assert centered_hexagonal_number(101) == 30301", "assert centered_hexagonal_number(18) == 919", "assert centered_hexagonal_number(24) == 1657", "assert centered_hexagonal_number(34) == 3367", "assert centered_hexagonal_number(56) == 9241", "assert centered_hexagonal_number(47) == 6487", "assert centered_hexagonal_number(102) == 30907", "assert centered_hexagonal_number(17) == 817", "assert centered_hexagonal_number(29) == 2437", "assert centered_hexagonal_number(57) == 9577", "assert centered_hexagonal_number(69) == 14077", "assert centered_hexagonal_number(39) == 4447", "assert centered_hexagonal_number(103) == 31519", "assert centered_hexagonal_number(40) == 4681", "assert centered_hexagonal_number(58) == 9919", "assert centered_hexagonal_number(999980) == 2999877001261", "assert centered_hexagonal_number(15) == 631", "assert centered_hexagonal_number(104) == 32137", "assert centered_hexagonal_number(16) == 721", "assert centered_hexagonal_number(28) == 2269", "assert centered_hexagonal_number(105) == 32761", "assert centered_hexagonal_number(27) == 2107" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to merge three dictionaries into a single dictionary.\nassert merge_dictionaries_three({ \"R\": \"Red\", \"B\": \"Black\", \"P\": \"Pink\" }, { \"G\": \"Green\", \"W\": \"White\" },{ \"O\": \"Orange\", \"W\": \"White\", \"B\": \"Black\" })=={'B': 'Black', 'R': 'Red', 'P': 'Pink', 'G': 'Green', 'W': 'White', 'O': 'Orange'}\nYour code should pass the test:\nassert merge_dictionaries_three({ \"R\": \"Red\", \"B\": \"Black\", \"P\": \"Pink\" }, { \"G\": \"Green\", \"W\": \"White\" },{ \"O\": \"Orange\", \"W\": \"White\", \"B\": \"Black\" })=={'B': 'Black', 'R': 'Red', 'P': 'Pink', 'G': 'Green', 'W': 'White', 'O': 'Orange'}", "test_list": [ "assert merge_dictionaries_three({ \"R\": \"Red\", \"B\": \"Black\", \"P\": \"Pink\" }, { \"G\": \"Green\", \"W\": \"White\" },{ \"O\": \"Orange\", \"W\": \"White\", \"B\": \"Black\" })=={'B': 'Black', 'R': 'Red', 'P': 'Pink', 'G': 'Green', 'W': 'White', 'O': 'Orange'}", "assert merge_dictionaries_three({ \"R\": \"Red\", \"B\": \"Black\", \"P\": \"Pink\" }, { \"G\": \"Green\", \"W\": \"White\" },{\"L\":\"lavender\",\"B\":\"Blue\"})=={'W': 'White', 'P': 'Pink', 'B': 'Black', 'R': 'Red', 'G': 'Green', 'L': 'lavender'}", "assert merge_dictionaries_three({ \"R\": \"Red\", \"B\": \"Black\", \"P\": \"Pink\" },{\"L\":\"lavender\",\"B\":\"Blue\"},{ \"G\": \"Green\", \"W\": \"White\" })=={'B': 'Black', 'P': 'Pink', 'R': 'Red', 'G': 'Green', 'L': 'lavender', 'W': 'White'}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to get the frequency of all the elements in a list, returned as a dictionary.\nassert freq_count([10,10,10,10,20,20,20,20,40,40,50,50,30])==({10: 4, 20: 4, 40: 2, 50: 2, 30: 1})\nYour code should pass the test:\nassert freq_count([10,10,10,10,20,20,20,20,40,40,50,50,30])==({10: 4, 20: 4, 40: 2, 50: 2, 30: 1})", "test_list": [ "assert freq_count([10,10,10,10,20,20,20,20,40,40,50,50,30])==({10: 4, 20: 4, 40: 2, 50: 2, 30: 1})", "assert freq_count([1,2,3,4,3,2,4,1,3,1,4])==({1:3, 2:2,3:3,4:3})", "assert freq_count([5,6,7,4,9,10,4,5,6,7,9,5])==({10:1,5:3,6:2,7:2,4:2,9:2})" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find the closest smaller number than n.\nassert closest_num(11) == 10\nYour code should pass the test:\nassert closest_num(11) == 10", "test_list": [ "assert closest_num(11) == 10", "assert closest_num(7) == 6", "assert closest_num(12) == 11", "assert closest_num(-5) == -6", "assert closest_num(0) == -1", "assert closest_num(True) == 0", "assert closest_num(False) == -1", "assert closest_num(-4) == -5", "assert closest_num(-3) == -4", "assert closest_num(-1) == -2", "assert closest_num(-39) == -40", "assert closest_num(-37) == -38", "assert closest_num(-36) == -37", "assert closest_num(-35) == -36", "assert closest_num(-38) == -39", "assert closest_num(47) == 46", "assert closest_num(-20) == -21", "assert closest_num(46) == 45", "assert closest_num(-34) == -35", "assert closest_num(45) == 44", "assert closest_num(-40) == -41", "assert closest_num(-33) == -34", "assert closest_num(-21) == -22", "assert closest_num(88) == 87", "assert closest_num(89) == 88", "assert closest_num(-2) == -3", "assert closest_num(1) == 0", "assert closest_num(2) == 1", "assert closest_num(-59) == -60", "assert closest_num(-41) == -42", "assert closest_num(-32) == -33", "assert closest_num(-58) == -59", "assert closest_num(-31) == -32", "assert closest_num(-6) == -7", "assert closest_num(-42) == -43", "assert closest_num(-60) == -61", "assert closest_num(-7) == -8", "assert closest_num(3) == 2", "assert closest_num(-53) == -54", "assert closest_num(4) == 3", "assert closest_num(72) == 71", "assert closest_num(-19) == -20", "assert closest_num(-43) == -44", "assert closest_num(5) == 4", "assert closest_num(-52) == -53", "assert closest_num(44) == 43", "assert closest_num(52) == 51", "assert closest_num(-51) == -52", "assert closest_num(-54) == -55", "assert closest_num(43) == 42", "assert closest_num(-55) == -56", "assert closest_num(55) == 54", "assert closest_num(42) == 41", "assert closest_num(-28) == -29", "assert closest_num(-95) == -96", "assert closest_num(-22) == -23", "assert closest_num(-96) == -97", "assert closest_num(-50) == -51", "assert closest_num(73) == 72", "assert closest_num(-97) == -98", "assert closest_num(90) == 89", "assert closest_num(-94) == -95", "assert closest_num(53) == 52", "assert closest_num(-49) == -50", "assert closest_num(-23) == -24", "assert closest_num(-98) == -99", "assert closest_num(54) == 53", "assert closest_num(6) == 5", "assert closest_num(-29) == -30", "assert closest_num(-30) == -31", "assert closest_num(41) == 40", "assert closest_num(91) == 90", "assert closest_num(56) == 55", "assert closest_num(63) == 62", "assert closest_num(-56) == -57", "assert closest_num(60) == 59", "assert closest_num(-8) == -9", "assert closest_num(-68) == -69", "assert closest_num(48) == 47", "assert closest_num(87) == 86", "assert closest_num(86) == 85", "assert closest_num(-27) == -28", "assert closest_num(92) == 91", "assert closest_num(51) == 50", "assert closest_num(-24) == -25", "assert closest_num(61) == 60", "assert closest_num(-44) == -45", "assert closest_num(-69) == -70", "assert closest_num(84) == 83", "assert closest_num(-70) == -71", "assert closest_num(40) == 39", "assert closest_num(-61) == -62", "assert closest_num(-18) == -19", "assert closest_num(-9) == -10", "assert closest_num(39) == 38", "assert closest_num(-93) == -94", "assert closest_num(62) == 61", "assert closest_num(64) == 63", "assert closest_num(-62) == -63", "assert closest_num(59) == 58", "assert closest_num(-26) == -27", "assert closest_num(-99) == -100", "assert closest_num(-45) == -46", "assert closest_num(-92) == -93", "assert closest_num(-10) == -11" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the minimum number of rotations (greater than 0) required to get the same string.\nassert find_Rotations(\"aaaa\") == 1\nYour code should pass the test:\nassert find_Rotations(\"aaaa\") == 1", "test_list": [ "assert find_Rotations(\"aaaa\") == 1", "assert find_Rotations(\"ab\") == 2", "assert find_Rotations(\"abc\") == 3", "assert find_Rotations('aaaaaaaaaaaaaaaab') == 17", "assert find_Rotations('aaaaaaaaaaaaaaaaab') == 18", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaab') == 36", "assert find_Rotations('aaaaaaaaaaaaaaaaababab') == 22", "assert find_Rotations('aaaaaaaaaaaaaaaaaab') == 19", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 56", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaab') == 84", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaab') == 103", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaab') == 51", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 142", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaab') == 103", "assert find_Rotations('aaaaaaaaaaaaaaab') == 16", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabab') == 35", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaab') == 89", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaabaaaaaaabaab') == 142", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaab') == 37", "assert find_Rotations('aaaaaaaaaaa') == 1", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaaabaab') == 90", "assert find_Rotations('aaaaaaaaaaaa') == 1", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaabaaaaaaaabaab') == 109", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabb') == 87", "assert find_Rotations('aaaaaaaaaaaaaaaaaaab') == 20", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabb') == 38", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaab') == 82", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaa') == 50", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaab') == 21", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaababab') == 40", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabaaaaaaaaaaaab') == 100", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaab') == 185", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 160", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaababab') == 81", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 57", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaaabaabb') == 275", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaababaaaabaabaaaaaaaaaaaaaaaaab') == 181", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaab') == 27", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaab') == 182", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabab') == 119", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 153", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaab') == 183", "assert find_Rotations('aaaaaaaaaaaaabaab') == 17", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 157", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 146", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaa') == 153", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaababab') == 57", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaabaaab') == 89", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaabaaababaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaab') == 175", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaabaaaaaaabab') == 191", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaabaaaaab') == 28", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaababaaaabaabaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaa') == 334", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaaaaaab') == 116", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaab') == 105", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 159", "assert find_Rotations('pmUjgIomJ') == 9", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaabaaaaaaabb') == 88", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaababaaab') == 53", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaa') == 43", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaab') == 184", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabababaaaaaaaaaaabaaaaaaabab') == 231", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaaaaaaaabaaaaaaaaaaaaaaaaaaabaabaaaaaaaaaaaab') == 283", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 246", "assert find_Rotations('aaaaaaab') == 8", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaabababaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 327", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaababaaaabaaabaaaaaaaaaaaaaaaaab') == 125", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabababaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaabaaaaaaabab') == 233", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 161", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabaaaaaaaaaaaab') == 70", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaabababaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 328", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaabaaaaaaabbaaaab') == 106", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaabaaaaabaaab') == 90", "assert find_Rotations('aaaaaaaaaaaaaabaab') == 18", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaabaaaaaaabab') == 192", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabab') == 120", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababab') == 302", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabbabb') == 126", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 58", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabaaaaab') == 214", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaabababaaabaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaabaaaaaaaabaab') == 182", "assert find_Rotations('pmUaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaabaaabjgmIomJ') == 99", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabababaaaaaaaaaaabaaaaaaabab') == 232", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabababaaaaaaaaaaabaaaaaaababaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 385", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabaaaaaaaaaaaabbaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaab') == 253", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabababaaaaaaaaaaabaaaaaaababaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabab') == 386", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaababaaaaaaaaaaaaaaaaaaab') == 202", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaabaaaaaaabaab') == 135", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaabaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 247", "assert find_Rotations('aaaaaaaaaaaaaaaaaabababaaaaaaaaaaaaabaab') == 40", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaabaaaaaaabb') == 191", "assert find_Rotations('aaaaaaaab') == 9", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaabaaaaaaabaabaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaabab') == 259", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabab') == 41", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaabababaaabaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaabaaaaaaaabaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaabababaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 510", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaab') == 28", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaababaaaaaaaaaaaaabababaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaaabaabaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaabaababaaaabb') == 328", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaab') == 49", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbabb') == 100", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaababaaaabaabaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaabaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaab') == 353", "assert find_Rotations('pmaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaababaaaabaabaaaaaaaaaaaaaaaaabUjgIomJ') == 191", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabaaaaaaaaa') == 51", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaababaaabaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaababaaaabaabaaaaaaaaaaaaaaaaabUjgIomJb') == 247", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaaababaaaabaaabaaaaaaaaaaaaaaaaab') == 126", "assert find_Rotations('aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaabaaaaaaabbaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaabaaaaaaaaaaaaaaaaaaaaaabaaaaaaaaaaaaaabaaaaabaaab') == 127" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the length of the longest word.\nassert len_log([\"python\",\"PHP\",\"bigdata\"]) == 7\nYour code should pass the test:\nassert len_log([\"python\",\"PHP\",\"bigdata\"]) == 7", "test_list": [ "assert len_log([\"python\",\"PHP\",\"bigdata\"]) == 7", "assert len_log([\"a\",\"ab\",\"abc\"]) == 3", "assert len_log([\"small\",\"big\",\"tall\"]) == 5", "assert len_log(['Longest', 'word', 'length']) == 7", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'to', 'test', 'the', 'function']) == 8", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['fox', 'monkey', 'zebra', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 12", "assert len_log(['fox', 'Longest', 'zebra', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['fox', 'monkey', 'zebra', 'lion', 'This', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'monkey']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'tiger', 'giraffe', 'p', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['i', 'This', 'is', 'a', 'complex', 'example', 'to', 'test', 'the', 'ttoo', 'function']) == 8", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'lion', 'tiger', 'gireaffe', 'kangaroo', 'panda', 'hippopotamus']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger', 'tiger']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangamonkeyroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 14", "assert len_log(['fox', 'monkey', 'zebra', 'tiger', 'giraffe', 'p', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'to', 'test', 'the', 'function', 'a']) == 8", "assert len_log(['Longest', 'length']) == 7", "assert len_log(['fox', 'Longest', 'zebra', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['fox', 'monkey', 'zebra', 'tiger', 'giraffe', '', 'p', 'kangaroo', 'foelephantx', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['fox', 'Longest', 'zebra', 'pandaa', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['Longest', 'zebra', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['Longest', 'length', 'Longest']) == 7", "assert len_log(['fox', 'monkey', 'zebra', 'tiger', 'giraffe', '', 'p', 'kangaroo', 'foelephantx', 'bear', 'panda', 'hippopotamus', 'giraffe']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'function', 'zebra', 'lion', 'tiger', 'gireaffe', 'kangaroo', 'panda', 'hippopotamus']) == 12", "assert len_log(['length', 'LongestThis', 'Longest']) == 11", "assert len_log(['elephant', 'fox', 'monkey', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['This', 'is', '', 'a', 'complex', 'example', 'to', 'test', 'the', 'function', 'the']) == 8", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'to', 'the', 'aa', 'function', 'a']) == 8", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'to', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['elephant', 'fox', 'teiger', 'monkey', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 12", "assert len_log(['elephant', 'fx', 'monkey', 'zebra', 'lion', 'tiger', 'giraffe', 'giraff', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['elephant', 'fox', 'zebra', 'monkey', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 12", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'is', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'is', '', 'a', 'complex', 'example', 'to', 'test', 'the']) == 7", "assert len_log(['fox', 'monkey', 'zebra', 'lion', 'tigttooer', 'giraffe', 'kangaroo', 'bear', 'hippopotamus']) == 12", "assert len_log(['Longest', 'word', 'length', 'Longest']) == 7", "assert len_log(['This', 'a', 'complex', 'example', 'to', 'test', 'thte', 'function', 'a', 'a']) == 8", "assert len_log(['monkey', 'zebra', 'tiger', 'giraffe', '', 'p', 'kangaroo', 'foelephantx', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['Longest', 'Lonngest', 'length', 'Longest']) == 8", "assert len_log(['leth', 'LongestThis', 'Longest']) == 11", "assert len_log(['fnunction', 'This', 'is', 'a', 'complex', 'example', 'to', 'the', 'aa', 'function', 'a']) == 9", "assert len_log(['elephant', 'fox', 'monkey', 'LongestThis', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger', 'tiger']) == 12", "assert len_log(['This', 'is', 'elephant', 'complex', 'example', 'is', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['fox', 'monkey', 'zebra', 'lion', 'This', 'giraffe', 'kangaroo', 'bear', 'panda', 'giraffbeare', 'hippopotamus', 'monkey']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'hippopotamus', 'tiger']) == 12", "assert len_log(['This', 'a', 'complex', 'giraffbeare', 'to', 'test', 'thte', 'function', 'a', 'a']) == 11", "assert len_log(['Longest', 'word', 'Lonpgest', 'length', 'Longest', 'Longest']) == 8", "assert len_log(['Longest', 'word', 'length', 'word']) == 7", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'to', 'test', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'is', 'a', 'complex', 'example', 'to', 'test', 'oto', 'function', 'a', 'a', 'is']) == 8", "assert len_log(['Longest']) == 7", "assert len_log(['fox', 'monkey', 'zebra', 'lion', 'giraffe', 'kangaroo', 'bear', 'hippopotamus']) == 12", "assert len_log(['leth', 'LongestThis', 'leelephantth', 'Longest']) == 12", "assert len_log(['Lot', 'word', 'length', 'word']) == 6", "assert len_log(['Longest', 'fnunction', 'lion', 'tigerLongest', 'giraffe', 'kangaroo', 'bear', 'hippopotamus']) == 12", "assert len_log(['elephant', 'fx', 'monkey', 'zebra', 'foelephantx', 'lion', 'tiger', 'giraffe', 'giraff', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['This', 'a', 'example', 'to', 'test', 'thte', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'a', 'complex', 'the', 'to', 'test', 'thte', 'function', 'a', 'a']) == 8", "assert len_log(['is', 'a', 'complex', 'example', 'to', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'a', 'complex', 'the', 'to', 'apandaa', 'test', 'thte', 'function', 'a', 'a']) == 8", "assert len_log(['Longest', 'word', 'length', 'Longest', 'Longest']) == 7", "assert len_log(['Lonpgest', 'monkey', '', 'length', 'length']) == 8", "assert len_log(['lgth', 'Longest', 'length', 'Longest', 'length']) == 7", "assert len_log(['elephant', 'fox', 'monkey', 'zebra', 'zebralengthn', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger', 'tiger', 'elephant']) == 12", "assert len_log(['is', 'a', 'complex', 'word', 'to', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'TThis', 'is', 'a', 't', 'complex', 'example', 'to', 'test', 'the', 'function', 'the']) == 8", "assert len_log(['LLot', 'word', 'length', 'word', 'word']) == 6", "assert len_log(['Longest', 'fnunction', 'lion', 'tigerLongest', 'giraffe', 'bear', 'hippopotamus']) == 12", "assert len_log(['is', 'a', 'complex', '', 'example', 'to', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'a', 'complex', 'the', 'to', 'apandaa', 'test', 'thtte', 'function', '', 'a']) == 8", "assert len_log(['Longest', 'lion', 'tigerLongest', 'giraffe', 'bbr', 'kangaroo', 'bbear', 'bear', 'hippopotamus']) == 12", "assert len_log(['Longest', 'word', 'length', 'Longest', 'Longest', 'word', 'Longest']) == 7", "assert len_log(['Lot', 'fox', 'monkey', 'zebra', 'zera', 'giraffe', 'hiippopotamus', 'kangaroo', 'bear', 'hippopotamus']) == 13", "assert len_log(['This', 'is', 'elephant', 'example', 'is', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['Longest', 'fnunction', 'lion', 'tigerLongest', 'giraffe', 'bearr', 'hippopotamus', 'fnunction']) == 12", "assert len_log(['LLot', 'word', 'length', 'word', 'panda']) == 6", "assert len_log(['fox', 'LongestThis', 'Longsest', 'example']) == 11", "assert len_log(['elephant', 'giraff', 'monkey', 'lion', 'tiger', 'mlengthonkey', 'giraffe', 'kangaroo', 'bear', 'panda', 'pada', 'hippopotamus']) == 12", "assert len_log(['elephant', 'fox', 'zebra', 'zebra', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger']) == 12", "assert len_log(['This', 'a', 'complex', 'the', 'to', 'apandaa', 'length', 'test', 'thtte', 'function', '', 'a']) == 8", "assert len_log(['Longest', 'fnunction', 'lion', 'tigerLongest', 'giraffe', 'kangaroo', 'bear', 'hippopotamus', 'fnunction']) == 12", "assert len_log(['Longetst', 'zebra', 'lion', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 12", "assert len_log(['a', 'complex', 'giraffbeare', 'to', 'test', 'thte', 'function', 'a', 'a']) == 11", "assert len_log(['zera', 'Lot', 'word', 'length', 'word', 'zera']) == 6", "assert len_log(['oto', 'This', 'is', 'a', 'complex', 'example', 'to', 'the', 'aa', 'function', 'a']) == 8", "assert len_log(['Longest', 'fnunction', 'lion', 'tigerLongest', 'giraffe', 'fnuncction', 'bear', 'hippopotamus']) == 12", "assert len_log(['oto', 'This', 'a', 'complex', 'example', 'aa', 'to', 'aa', 'function', 'a']) == 8", "assert len_log(['This', 'is', 'elephant', 'example', 'is', 'test', 'the', 'function', 'elephant', 'a']) == 8", "assert len_log(['lgth', 'Longest', 'length', 'Longest', 'length', 'Longest']) == 7", "assert len_log(['elephant', 'fox', 'monkey', 'LongestThis', 'zebran', 'tiger', 'giraffe', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger', 'kangamonkeyroo']) == 14", "assert len_log(['oto', 'This', 'is', 'a', 'complex', 'exampl', 'to', 'the', 'aa', 'function', 'hthe', 'a']) == 8", "assert len_log(['fox', 'p', 'zebra', 'tiger', 'giraffe', 'p', 'kangaroo', 'foelephantx', 'bear', 'panda', 'hippopotamus', 'giraffe']) == 12", "assert len_log(['elephant', 'fox', 'monkey', 'LongestThis', 'zebran', 'tiger', 'kangaroo', 'bear', 'panda', 'hippopotamus', 'tiger', 'kangamonkeyroo', 'monkey']) == 14", "assert len_log(['fox', 'Longest', 'zebra', 'lion', 'tiger', 'girafffoelephantx', 'kangaroo', 'bear', 'panda', 'hippopotamus']) == 17", "assert len_log(['elephant', 'fox', 'monkey', 'function', 'zebra', 'lion', 'tiger', 'gireaffe', 'to', 'kangaroo', 'panda', 'hippopotamus']) == 12", "assert len_log(['This', 'a', 'complex', 'the', 'to', 'apandaa', 'test', 'thte', 'function', 'a', 'a', 'apandaa']) == 8", "assert len_log(['fnunction', 'This', 'is', 'a', 'complex', 'example', 'to', 'the', 'aa', 'function', 'a', 'to', 'to']) == 9", "assert len_log(['is', 'a', 'complex', '', 'to', 'test', 'the', 'function', 'a', 'a']) == 8", "assert len_log(['This', 'a', 'complex', 'the', 'to', 'apandaa', 'test', 'thtte', 'function', '', 'a', 'complex']) == 8", "assert len_log(['This', 'is', '', 'a', 'complex', 'example', 'to', 'test', 'the', 'function', 'the', 'th', 'a']) == 8", "assert len_log(['elephant', 'fox', 'monkey', 'function', 'zebra', 'lion', 'tiger', 'gireaffe', 'kangaroo', 'panda', 'girafffoelephantx', 'hippopotamus']) == 17", "assert len_log(['Longest', 'fnunction', 'lion', 'tigerLongest', 'giraffe', 'bearr', 'fnunction']) == 12", "assert len_log(['Longest', 'lion', 'tigerLongest', 'giraffe', 'bearr', 'fnunction']) == 12" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check if a string is present as a substring in a given list of string values.\nassert find_substring([\"red\", \"black\", \"white\", \"green\", \"orange\"],\"ack\")==True\nYour code should pass the test:\nassert find_substring([\"red\", \"black\", \"white\", \"green\", \"orange\"],\"ack\")==True", "test_list": [ "assert find_substring([\"red\", \"black\", \"white\", \"green\", \"orange\"],\"ack\")==True", "assert find_substring([\"red\", \"black\", \"white\", \"green\", \"orange\"],\"abc\")==False", "assert find_substring([\"red\", \"black\", \"white\", \"green\", \"orange\"],\"ange\")==True", "assert find_substring([], 'abc') == False", "assert find_substring([], '') == False", "assert find_substring([], 'abac') == False", "assert find_substring([], 'aabac') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'aabac') == True", "assert find_substring([], 'acbc') == False", "assert find_substring([], 'aabaac') == False", "assert find_substring([], 'acbacbcc') == False", "assert find_substring(['aabac', '', 'aabac'], 'aabac') == True", "assert find_substring(['acbc', 'acbacbcc'], 'acbacbcc') == True", "assert find_substring(['acbc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring(['acabcbc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring(['mHUIYqZU', 'acabcbc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'aacbac') == False", "assert find_substring(['acbacbccacbacbcc', 'acbacbcc'], 'acbacbccaacbacbcc') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'aabaac') == False", "assert find_substring(['acabcbc', 'acbabcbc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'acbacbccaacbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'acbacbccaaccbacbcc') == False", "assert find_substring(['amHUIYqZUcbc', 'acbc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring(['acabcbc', 'acbacbcc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring([], 'abcbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'mHUIYqZU') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'amHUIYqZUcbc', 'abc', 'acbacbccacbacbcc'], 'acbacbccaaccbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'acbacbccaaccbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'acbacbccaaccacbacbccaaccbacbccbacbcc') == False", "assert find_substring([], 'aacbacacbacbccacbacbcc') == False", "assert find_substring(['acbacbccacbacbcc', 'acbacbcc'], 'acbacbccaacbaccc') == False", "assert find_substring([], 'accbc') == False", "assert find_substring([], 'acbacbccacbcacbcc') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'aacb') == False", "assert find_substring(['', 'aabac', 'mHUIYqZU'], 'aabaac') == False", "assert find_substring(['aabac', 'abc', 'aabac', 'mHUIYqZU'], 'aabaac') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'mHUIYqZU') == False", "assert find_substring(['acbaccbcc'], 'acbacbccaacbacbcc') == False", "assert find_substring(['acbacbccacbacbcc', 'mHUIYqZU'], 'abcaacb') == False", "assert find_substring(['acabcbc', 'acbacbccaacbacbcc', 'acbacbcc'], 'acbacbccacbacbcc') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac'], 'acbaccbccaacb') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'acbaccbccaacb') == False", "assert find_substring(['acabcbc', 'acbacbcc', 'acbacbcc'], 'acbacbccaaccacbacbccaaccbacbccbacbcc') == False", "assert find_substring(['acacbc', 'acbacbcc'], 'acbacbcc') == True", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'mHUIZU') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'aacbb') == False", "assert find_substring(['acabcbc', 'acbabcbc', 'acbacbcc'], 'acbacbccacbacacbacbccaacbacbccbcc') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'mHUIYamHUIYqZUcbcqZU') == True", "assert find_substring(['acbacbccacbacbcc', 'amHUIYqZUcbc', 'acbc', 'acbacbcc'], 'acbacbccacbacbcc') == True", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'acbacbccaaccbacbaacbacacbacbccacbacbcccc') == False", "assert find_substring([], 'acbcbacbcc') == False", "assert find_substring(['acbacbccaaccacbacbccaaccbacbccbacbcc', 'acabcbc', 'acbabcbc', 'acbacbcc'], 'acbacbccacbacacbacbccaacbacbccbcc') == False", "assert find_substring(['aabac', '', 'mHUIYqZU'], 'aacbac') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], '') == True", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc'], 'mHUIYmHUIYqZUqZU') == False", "assert find_substring(['acbacbccacbcacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc', 'acbacbcc'], 'acbacbccaaccacbacbccaaccbacbccbacbcc') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'mHaacbacacbacbccacbacbccUIYamHUIYqZUcbcqZU', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'mHUIYamHUIYqZUcbcqZU') == True", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'acbaccbccaacb') == False", "assert find_substring(['acabcbc', 'acbabcbc', 'acbacbcc', 'acbabcbc'], 'acbacbccacbacacbacbccaacbacbccbcc') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'aacbac') == False", "assert find_substring(['aacbabcbcabac', 'aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'mHUIYqZU') == True", "assert find_substring(['aabac', '', 'mHUIYqZU'], 'aabaacbbaac') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbc', 'aacbacacbacbccacbacbcc', 'acbacbcc'], 'mHUIYqZU') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'amHUIYqZUcbc', 'acbcbacbcc', 'abc', 'acbacbccacbacbcc'], 'acbacbccaaccbacbcc') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'acbc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbcabcaacbcacbacbcc'], 'acbacbccaaccbacbaacbacacbacbccacbacbcccc') == False", "assert find_substring(['acabcbc', 'acbabcbc', 'acbacbcc'], 'acbaccbccaacb') == False", "assert find_substring(['acbacbccacbacbcc', 'acbacbcc'], 'acbacbccaacba') == False", "assert find_substring(['acabcbc', 'acbabcbc', 'acbacbcc', 'acabcbc'], 'acbaccbccaacb') == False", "assert find_substring(['acbacbccacbacbcc', 'mHUIYqZU'], 'amHUIZUbcaacb') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'abcaacb', 'mHUIYamHUIYqZUcbcqZU'], 'mHUIYamHUIYqZUcbcqZU') == True", "assert find_substring(['acbacbccaaccacbacbccaaccbacbccbacbcc', 'acabcbc', 'acbabcbc', 'acbacbcc'], 'acbacbccacbacacbacbacbccaaccacbacbccaaccbacbccbacbccacbccaacbacbccbcc') == False", "assert find_substring(['aabac', '', 'mHUIZU', 'aabac', 'mHUIYqZU'], 'aabaac') == False", "assert find_substring(['acbacbccacbacbcc', 'amHUIYqZUcbc', 'acbc', 'acbacbcc'], 'acbacbcccacbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc', 'acbacbccacbcacbcc'], 'acbacbccaaccbacbcc') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'aaabaac') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'aacbacacbacbccacbacbcc'], 'abc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'amHUIYqZUcbc') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'acbaccbabcbacbccccaacb') == False", "assert find_substring(['aabac', 'aaac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'aacbac') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU', 'aabac'], 'acbaccbabcbacbccccaacb') == False", "assert find_substring(['acabcbc', 'acbacbcc', 'acbacbcc', 'acbacbcc'], 'amHUIYqZUcbc') == False", "assert find_substring(['aabaacbacbccacbcacbccc', 'mHUaacbacacbacbccacbacbcIYqZU', '', 'mHUIZU', 'aabac', 'mHUIYqZU'], 'acbacbccaacbaccc') == False", "assert find_substring(['aabac', '', 'mHUIaacbabcbcabacYqZU'], 'aacbac') == False", "assert find_substring(['acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbacbccacbacbcc'], 'acbacbccaaccbacbaacbacacbacbccacbacbcccc') == False", "assert find_substring(['acbacbccaaccacbacbccaaccbacbccbacbcc', 'acabcbc', 'acbabcbc', 'acbacbcc'], 'acbacbccacbacacbacbacbccaaccacbacbccaaccbacbcccbacbccacbccaacbacbccbcc') == False", "assert find_substring(['aabac', 'acbacbcc'], 'acbacbcc') == True", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'aacbacacbacbccacbacbcc'], 'aabc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbccacc', 'acbacbcc', 'acbacbccacbacbcc'], 'mHUIYqZU') == False", "assert find_substring(['aabac', '', 'aabac', 'mHUIYqZU'], 'aacbacabcbcac') == False", "assert find_substring(['acbacbccacbacacbacbccaacbacbccbcc', 'acbacbccaaccbacbcc'], 'aabaacbbaac') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'aacbacacbacbccacbacbcc'], 'abbc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'aacbacacbacbccacbacbcc'], 'a') == True", "assert find_substring(['accbc', 'aabac', '', 'aabac', 'mHUIYqZU'], 'aacb') == False", "assert find_substring(['acbacbccaaccacbacbccaaccbacbccbacbcc', 'acabcbc', 'acbabcbc'], 'acbacbccacbacacbacbacbccaaccacbacbccaaccbacbcccbacbccacbccaacbacbccbcc') == False", "assert find_substring(['aabac', '', 'mHUIZU', 'aabac', 'mHUIYqZU'], 'acbacbcccacbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'aacbbacbacbccacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc', 'acbaccbcc', 'acbacbccacbacbcc'], 'amHUIYqZUcbc') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'abcaacb', 'mHUIYamHUIYqZUcbcqZU'], 'mHUIYamHUIYqZmUcbcqZU') == False", "assert find_substring([], 'aacbbacbacbccacbacbcc') == False", "assert find_substring(['acbacbccacbcacbcc', 'acbacbcacbaccbccaacbcacbacbcc', 'aacbacacbacbccacbacbcc', 'acbacbcc'], 'mHUIYmHUIYqZUqZU') == False", "assert find_substring(['aabac', '', 'mHUIYqZU'], 'aabaacbaac') == False", "assert find_substring(['acabcbc', 'acbabccbc', 'acbacbcc'], 'acbacbccacbacacbacbccaacbacbccbcc') == False", "assert find_substring([], 'acaabaacbbaacbc') == False", "assert find_substring(['acbacbccacbacbcc', 'mHUIYqZU', 'mHUIYqZU'], 'amHUIZUbcaacb') == False", "assert find_substring(['aabac', 'aabac', 'mHUIYqZU', 'mHUIYamHUIYqZUcbcqZU', 'aabac', 'aabac', 'mHUIYamHUIYqZUcbcqZU'], 'acbacbcabcaacbcacbacbcc') == False" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to check whether the given number is undulating or not.\nassert is_undulating(1212121) == True\nYour code should pass the test:\nassert is_undulating(1212121) == True", "test_list": [ "assert is_undulating(1212121) == True", "assert is_undulating(1991) == False", "assert is_undulating(121) == True", "assert is_undulating(2121212121212121) == True", "assert is_undulating(2121212121212122) == False", "assert is_undulating(2121212121212119) == False", "assert is_undulating(2121212121212123) == False", "assert is_undulating(2121212121212124) == False", "assert is_undulating(2121212121212125) == False", "assert is_undulating(2121212121212120) == False", "assert is_undulating(2121212121212118) == False", "assert is_undulating(2121212121212126) == False", "assert is_undulating(2121212121212117) == False", "assert is_undulating(2121212121212127) == False", "assert is_undulating(82) == True", "assert is_undulating(40) == True", "assert is_undulating(83) == True", "assert is_undulating(39) == True", "assert is_undulating(81) == True", "assert is_undulating(2121212121212116) == False", "assert is_undulating(2121212121212128) == False", "assert is_undulating(2121212121212115) == False", "assert is_undulating(41) == True", "assert is_undulating(80) == True", "assert is_undulating(19) == True", "assert is_undulating(20) == True", "assert is_undulating(42) == True", "assert is_undulating(84) == True", "assert is_undulating(18) == True", "assert is_undulating(2121212121212129) == False", "assert is_undulating(43) == True", "assert is_undulating(21) == True", "assert is_undulating(62) == True", "assert is_undulating(17) == True", "assert is_undulating(85) == True", "assert is_undulating(2121212121212130) == False", "assert is_undulating(79) == True", "assert is_undulating(12) == True", "assert is_undulating(2121212121212131) == False", "assert is_undulating(86) == True", "assert is_undulating(44) == False", "assert is_undulating(52) == True", "assert is_undulating(16) == True", "assert is_undulating(11) == False", "assert is_undulating(53) == True", "assert is_undulating(63) == True", "assert is_undulating(10) == True", "assert is_undulating(78) == True", "assert is_undulating(51) == True", "assert is_undulating(61) == True", "assert is_undulating(87) == True", "assert is_undulating(50) == True", "assert is_undulating(77) == False", "assert is_undulating(54) == True", "assert is_undulating(92) == True", "assert is_undulating(55) == False", "assert is_undulating(49) == True", "assert is_undulating(22) == False", "assert is_undulating(96) == True", "assert is_undulating(38) == True", "assert is_undulating(97) == True", "assert is_undulating(56) == True", "assert is_undulating(23) == True", "assert is_undulating(91) == True", "assert is_undulating(2121212121212114) == False", "assert is_undulating(15) == True", "assert is_undulating(93) == True", "assert is_undulating(24) == True", "assert is_undulating(48) == True", "assert is_undulating(89) == True", "assert is_undulating(60) == True", "assert is_undulating(64) == True", "assert is_undulating(65) == True", "assert is_undulating(37) == True", "assert is_undulating(76) == True", "assert is_undulating(59) == True", "assert is_undulating(35) == True", "assert is_undulating(88) == False", "assert is_undulating(2121212121212132) == False", "assert is_undulating(58) == True", "assert is_undulating(14) == True", "assert is_undulating(94) == True", "assert is_undulating(9) == False", "assert is_undulating(47) == True", "assert is_undulating(95) == True", "assert is_undulating(66) == False", "assert is_undulating(57) == True", "assert is_undulating(36) == True", "assert is_undulating(8) == False", "assert is_undulating(13) == True", "assert is_undulating(25) == True", "assert is_undulating(45) == True", "assert is_undulating(90) == True", "assert is_undulating(2121212121212113) == False", "assert is_undulating(67) == True", "assert is_undulating(46) == True", "assert is_undulating(7) == False", "assert is_undulating(68) == True", "assert is_undulating(75) == True", "assert is_undulating(34) == True", "assert is_undulating(2121212121212133) == False", "assert is_undulating(2121212121212134) == False", "assert is_undulating(26) == True", "assert is_undulating(74) == True" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to calculate the value of 'a' to the power 'b'.\nassert power(3,4) == 81\nYour code should pass the test:\nassert power(3,4) == 81", "test_list": [ "assert power(3,4) == 81", "assert power(2,3) == 8", "assert power(5,5) == 3125", "assert power(4, -2) == 0.0625", "assert power(-2, 3) == -8", "assert power(0, 5) == 0", "assert power(-3, -4) == 0.012345679012345678", "assert power(0, 10) == 0", "assert power(10, -1) == 0.1", "assert power(0, 0) == 1", "assert power(2, -3) == 0.125", "assert power(1, 100) == 1", "assert power(-1, 100) == 1", "assert power(5, 10) == 9765625", "assert power(5, 0) == 1", "assert power(2, 3) == 8", "assert power(-3, 2) == 9", "assert power(0, 9) == 0", "assert power(-1, 10) == 1", "assert power(0, 4) == 0", "assert power(5, -2) == 0.04", "assert power(4, 9) == 262144", "assert power(-2, -2) == 0.25", "assert power(1, 99) == 1", "assert power(100, 5) == 10000000000", "assert power(99, 2) == 9801", "assert power(100, 100) == 100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000", "assert power(-4, -2) == 0.0625", "assert power(100, 3) == 1000000", "assert power(0, 3) == 0", "assert power(5, 11) == 48828125", "assert power(4, 1) == 4", "assert power(-2, 0) == 1", "assert power(4, 4) == 256", "assert power(100, 6) == 1000000000000", "assert power(100, 4) == 100000000", "assert power(11, 5) == 161051", "assert power(-4, -4) == 0.00390625", "assert power(5, 9) == 1953125", "assert power(11, 99) == 12527829399838427440107579247354215251149392000034969484678615956504532008683916069945559954314411495091", "assert power(100, -1) == 0.01", "assert power(6, 6) == 46656", "assert power(-1, -1) == -1.0", "assert power(3, 0) == 1", "assert power(2, 2) == 4", "assert power(9, -1) == 0.1111111111111111", "assert power(-4, 2) == 16", "assert power(5, 5) == 3125", "assert power(-2, 5) == -32", "assert power(6, 0) == 1", "assert power(5, 4) == 625", "assert power(-1, 0) == 1", "assert power(99, 4) == 96059601", "assert power(-1, 9) == -1", "assert power(5, 2) == 25", "assert power(99, 1) == 99", "assert power(11, -1) == 0.09090909090909091", "assert power(-4, 7) == -16384", "assert power(7, 0) == 1", "assert power(98, 3) == 941192", "assert power(100, -2) == 0.0001", "assert power(99, -1) == 0.010101010101010102", "assert power(3, 7) == 2187", "assert power(-3, -3) == -0.037037037037037035", "assert power(1, 6) == 1", "assert power(3, 1) == 3", "assert power(3, 8) == 6561", "assert power(99, 99) == 369729637649726772657187905628805440595668764281741102430259972423552570455277523421410650010128232727940978889548326540119429996769494359451621570193644014418071060667659301384999779999159200499899", "assert power(100, 9) == 1000000000000000000", "assert power(-1, 98) == 1", "assert power(7, -1) == 0.14285714285714285", "assert power(9, 99) == 29512665430652752148753480226197736314359272517043832886063884637676943433478020332709411004889", "assert power(5, 8) == 390625", "assert power(11, 3) == 1331", "assert power(3, -3) == 0.037037037037037035", "assert power(2, 5) == 32", "assert power(99, -4) == 1.0410203556852167e-08", "assert power(5, 101) == 39443045261050590270586428264139311483660321755451150238513946533203125", "assert power(9, 9) == 387420489", "assert power(8, 3) == 512", "assert power(99, -3) == 1.0306101521283646e-06", "assert power(1, 10) == 1", "assert power(7, 1) == 7", "assert power(101, 100) == 270481382942152609326719471080753083367793838278100277689020104911710151430673927943945601434674459097335651375483564268312519281766832427980496322329650055217977882315938008175933291885667484249510001", "assert power(8, 0) == 1", "assert power(100, 101) == 10000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000", "assert power(4, 8) == 65536", "assert power(2, 4) == 16", "assert power(3, 3) == 27", "assert power(8, 4) == 4096", "assert power(101, -2) == 9.802960494069208e-05", "assert power(98, 102) == 127367821481320961306779453124811493852927587601071435268660949497933336539304230215165634203675222190265666055792155413670466901678107154499490273199816067233222775795686789175668564014387134300740911104", "assert power(8, 8) == 16777216", "assert power(2, -4) == 0.0625", "assert power(-2, 101) == -2535301200456458802993406410752", "assert power(-1, -2) == 1.0", "assert power(100, 7) == 100000000000000", "assert power(-3, -2) == 0.1111111111111111", "assert power(1, 2) == 1", "assert power(9, 3) == 729", "assert power(7, 7) == 823543", "assert power(4, 3) == 64", "assert power(2, -2) == 0.25", "assert power(11, 10) == 25937424601", "assert power(1, 0) == 1", "assert power(5, -3) == 0.008", "assert power(99, 3) == 970299", "assert power(98, 2) == 9604", "assert power(8, 7) == 2097152", "assert power(3, 6) == 729", "assert power(1, -1) == 1.0", "assert power(-1, 8) == 1", "assert power(101, 6) == 1061520150601" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Given a list of tuples, write a function that returns the first value of the tuple with the smallest second value.\nassert index_minimum([('Rash', 143), ('Manjeet', 200), ('Varsha', 100)]) == 'Varsha'\nYour code should pass the test:\nassert index_minimum([('Rash', 143), ('Manjeet', 200), ('Varsha', 100)]) == 'Varsha'", "test_list": [ "assert index_minimum([('Rash', 143), ('Manjeet', 200), ('Varsha', 100)]) == 'Varsha'", "assert index_minimum([('Yash', 185), ('Dawood', 125), ('Sanya', 175)]) == 'Dawood'", "assert index_minimum([('Sai', 345), ('Salman', 145), ('Ayesha', 96)]) == 'Ayesha'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the length of the smallest list in a list of lists.\nassert Find_Min_Length([[1],[1,2]]) == 1\nYour code should pass the test:\nassert Find_Min_Length([[1],[1,2]]) == 1", "test_list": [ "assert Find_Min_Length([[1],[1,2]]) == 1", "assert Find_Min_Length([[1,2],[1,2,3],[1,2,3,4]]) == 2", "assert Find_Min_Length([[3,3,3],[4,4,4,4]]) == 3", "assert Find_Min_Length([[], [], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 2, 3], [4, 5], [6, 7, 8, 9, 10], [11, 12, 13]]) == 2", "assert Find_Min_Length([[], [], [], [], []]) == 0", "assert Find_Min_Length([[], [], []]) == 0", "assert Find_Min_Length([[], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[4, 1, 2, 3], [4, 5], [4, 1, 2, 3], [6, 7, 8, 9, 10], [11, 12, 13]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 12, 13]]) == 2", "assert Find_Min_Length([[], [], [9, 2, -89, 83, 13], [], [], [], []]) == 0", "assert Find_Min_Length([[]]) == 0", "assert Find_Min_Length([[], [], [], [True, False, 84.98850542252845, True], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 12, 13], [11, 12, 13]]) == 2", "assert Find_Min_Length([[False], [False]]) == 1", "assert Find_Min_Length([[84.98850542252845, -78.5618531155085]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [6, 7, 8, 5, 9]]) == 3", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 12, 13], [11, 12, 13], [1, 2, 3]]) == 2", "assert Find_Min_Length([[4, 1, 2, 3], [4, 8], [4, 1, 2, 3], [6, 11, 7, 8, 9, 10], [11, 12, 13]]) == 2", "assert Find_Min_Length([[85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085], [True, True, True, True, False, True, True]]) == 5", "assert Find_Min_Length([[], [], [], [True, False, 84.98850542252845, True], [], [], [], [], [], [], [False, False, False, True, True], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 12, 13], [1, 2, 3]]) == 2", "assert Find_Min_Length([[1, 2, 3], [4, 5], [6, 7, 8, 9, 10], [11, 12, 13], [1, 2, 3]]) == 2", "assert Find_Min_Length([[85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085], [True, True, True, True, False, True, True], [85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085]]) == 5", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 9, 10], [11, 12, 13], [6, 7, 8, 9, 10]]) == 3", "assert Find_Min_Length([[1, 3, 6, 7, 3], [1, 3, 6, 7, 3], [1, 3, 6, 7, 3], [4, 5], [6, 7, 8, 9, 10], [11, 12, 13]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 8, 5, 9], [6, 8, 5, 9], [4, 5], [6, 8, 5, 9], [11, 12, 13], [11, 12, 13]]) == 2", "assert Find_Min_Length([[1, 2, 3], [4, 5], [6, 7, 8, 9, 10], [11, 12, 13], [6, 7, 8, 9, 10]]) == 2", "assert Find_Min_Length([[85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085], [True, True, True, True, False, True, True, True], [85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085]]) == 5", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 9, 10], [6, 7, 8, 9, 10], [11, 12, 13]]) == 3", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 13], [4, 5], [6, 7, 8, 5, 13], [11, 12, 13]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 5, 9], [6, 7, 5, 9]]) == 3", "assert Find_Min_Length([[4, 1, 2, 3], [4, 8], [4, 1, 2, 3], [11, 12, 13]]) == 2", "assert Find_Min_Length([[], [], [], [], [], [], [], ['nmUTpTB', 'LqgBbFug', 'A', 'YmVhY'], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 8, 9], [4, 5], [6, 7, 8, 5, 8, 9], [11, 12, 13], [11, 12, 13]]) == 2", "assert Find_Min_Length([[], [], [], [-89, 12, 11], [False], [], []]) == 0", "assert Find_Min_Length([[4, 1, 3, 3], [4, 8], [4, 1, 3, 3], [4, 1, 3, 3], [11, 12, 13]]) == 2", "assert Find_Min_Length([[6, 7, 8, 9], [4, 5], [6, 7, 8, 9]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 8, 9], [4, 5, 5], [6, 7, 8, 5, 8, 9], [11, 12, 13], [11, 12, 13]]) == 3", "assert Find_Min_Length([[84.98850542252845, -78.5618531155085, -78.5618531155085], [84.98850542252845, -78.5618531155085, -78.5618531155085]]) == 3", "assert Find_Min_Length([[], [False, True, False, False, False, True, False, True], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 2, 3], [6, 8, 5, 9], [6, 8, 5, 9], [6, 8, 5, 9], [11, 12, 13], [11, 12, 13], [1, 2, 3]]) == 3", "assert Find_Min_Length([[6, 7, 5, 9], [6, 7, 5, 9]]) == 4", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 8, 9], [4, 5], [6, 7, 8, 5, 8, 9], [11, 12, 13], [11, 12, 13], [11, 12, 13]]) == 2", "assert Find_Min_Length([[6, 7, 5, 9], [6, 7, 5, 9], [6, 7, 5, 9]]) == 4", "assert Find_Min_Length([[1, 2, 3], [4, 5], [6, 7, 8, 8, 10, 9], [6, 7, 8, 8, 10, 9], [11, 12, 13], [1, 2, 3]]) == 2", "assert Find_Min_Length([[], [33, 9, -70, False, -84, -42, False, -64, 7, -66], [], [], []]) == 0", "assert Find_Min_Length([[4, 2, 3], [6, 11, 7, 8, 9, 10], [4, 8], [4, 2, 3], [6, 11, 7, 8, 9, 10], [11, 12, 13]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 9, 10], [6, 7, 8, 9, 10], [11, 12, 13], [6, 7, 8, 9, 10], [11, 12, 13]]) == 3", "assert Find_Min_Length([[1, 2, 3], [6, 8, 5, 9, 8], [6, 8, 5, 9, 8], [6, 8, 5, 9, 8], [6, 8, 5, 9, 8], [11, 12, 13], [11, 12, 13], [1, 2, 3], [6, 8, 5, 9, 8]]) == 3", "assert Find_Min_Length([[84.98850542252845, -78.5618531155085, -78.5618531155085]]) == 3", "assert Find_Min_Length([[6, 7, 8, 9], [4, 5], [6, 7, 8, 9], [6, 7, 8, 9]]) == 2", "assert Find_Min_Length([[4, 1, 2, 3], [4, 5], [4, 1, 2, 3], [6, 7, 8, 9, 10], [11, 12, 13], [4, 1, 2, 3], [6, 7, 8, 9, 10]]) == 2", "assert Find_Min_Length([[85.61630620077268, -90.47064487499253, 84.98850542252845, 84.52239660663136, -78.5618531155085], [True, True, True, True, False, True, True]]) == 5", "assert Find_Min_Length([[False]]) == 1", "assert Find_Min_Length([[], [33, 9, -70, False, -84, -42, False, -64, 7, -66, -84], [], [], [], [33, 9, -70, False, -84, -42, False, -64, 7, -66, -84], [33, 9, -70, False, -84, -42, False, -64, 7, -66, -84]]) == 0", "assert Find_Min_Length([[1, 2, 2, 3], [4, 5], [11, 12, 13], [1, 2, 2, 3], [6, 7, 8, 9, 10]]) == 2", "assert Find_Min_Length([[33, 9, -70, False, -84, -42, False, -64, 7, -66], [], [], [90, 33, 2, 13, 69, 3, 83, 2]]) == 0", "assert Find_Min_Length([[2, -84, 3], [5], [5], [6, 7, 8, 9, 10], [2, -84, 3], [11, 12, 13]]) == 1", "assert Find_Min_Length([[3, 2, 3], [3, 2, 3], [6, 7, 8, 5, 9], [3, 2, 3], [4, 4, 5], [6, 7, 8, 5, 9], [11, 12, 13], [11, 12, 13], [3, 2, 3]]) == 3", "assert Find_Min_Length([[], [33, 9, -70, False, -84, -42, False, -64, 7, -66, -84], [], [], [], [33, 9, -70, False, -84, -42, False, -64, 7, -66, -84], [33, 9, -70, False, -84, -42, False, -64, 7, -66, -84], []]) == 0", "assert Find_Min_Length([[6, 7, 8], [4, 5], [6, 7, 8]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 9], [6, 7, 8, 9], [6, 7, 8, 9], [11, 12, 13], [6, 7, 8, 9], [11, 12, 13], [1, 2, 3]]) == 3", "assert Find_Min_Length([[], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 3, 6, 7, 3], [1, 3, 6, 7, 3], [1, 3, 6, 7, 3], [4, 5], [6, 7, 8, 9, 10], [11, 12, 13], [6, 7, 8, 9, 10]]) == 2", "assert Find_Min_Length([[], [33, 9, False, -70, False, -84, -42, False, -64, 7, -66], [], [], []]) == 0", "assert Find_Min_Length([[4, 1, 2, 3], [4, 5], [4, 1, 2, 3], [6, 7, 8, 9, 10], [11, 12, 13], [11, 12, 13]]) == 2", "assert Find_Min_Length([[False, True, True, True, True, False, False, False], [], []]) == 0", "assert Find_Min_Length([[2, 9, 63, 9, 4, 2, -83, -84, -78], [33, 9, -70, False, -84, -42, False, -64, 7, -66], [], [], []]) == 0", "assert Find_Min_Length([[4, 1, 2, 2, 3], [4, 5], [4, 1, 2, 2, 3], [4, 1, 2, 2, 3], [6, 7, 8, 9, 10], [11, 12], [4, 1, 2, 2, 3]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 12, 13, 12], [11, 12, 13, 12]]) == 2", "assert Find_Min_Length([[], [33, 9, -70, False, -84, -42, False, -64, 7, -66], [], [], [], []]) == 0", "assert Find_Min_Length([[3, 2, 3, 3], [3, 2, 3, 3], [6, 7, 8, 5, 9], [3, 2, 3, 3], [4, 4, 5], [6, 7, 8, 5, 9], [11, 12, 13], [11, 12, 13], [3, 2, 3, 3]]) == 3", "assert Find_Min_Length([[6, 7, -84, 8, 9], [6, 7, -84, 8, 9], [4, 5], [6, 7, -84, 8, 9]]) == 2", "assert Find_Min_Length([[4, 1, 2, 2, 3], [4, 5], [4, 1, 2, 2, 3], [4, 1, 2, 2, 3], [11, 12], [4, 1, 2, 2, 3]]) == 2", "assert Find_Min_Length([[4, 1, 2, 3, 4], [4, 1, 2, 3, 4], [4, 8], [11, 12, 13, 13], [4, 1, 2, 3, 4], [11, 12, 13, 13]]) == 2", "assert Find_Min_Length([[-58.13858535192631, 85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085], [-58.13858535192631, 85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085], [True, True, True, True, False, True, True, True], [True, True, True, True, False, True, True, True]]) == 6", "assert Find_Min_Length([[6, 11, 7, 8, 6, 10], [4, 2, 3], [6, 11, 7, 8, 6, 10], [4, 8], [4, 2, 3], [6, 11, 7, 8, 6, 10], [11, 12, 13]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 9, 10, 7], [6, 7, 8, 9, 10, 7], [6, 7, 8, 9, 10, 7], [11, 12, 13], [6, 7, 8, 9, 10, 7], [11, 12, 13]]) == 3", "assert Find_Min_Length([[4, 5, 4], [6, 7, 8, 5, 13], [11, 12, 13]]) == 3", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 13, 13, 12], [11, 13, 13, 12]]) == 2", "assert Find_Min_Length([[], [], [], [], [], [], [], ['nmUTpTB', 'LqgBbFug', 'A', 'YmVhY'], ['LqgBbFug', 'ADAvRmZZL', 'A', ''], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[2, -84, 3], [5], [5], [6, 7, 8, 9, 10], [2, -84, 3], [11, 12, 13], [11, 12, 13]]) == 1", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 8, 9], [4, 5, 5], [6, 7, 8, 5, 8, 9], [11, 12, 13]]) == 3", "assert Find_Min_Length([[1, 2, 3], [5, 7, 8, 5], [5, 7, 8, 5], [5, 7, 8, 5], [5, 7, 8, 5]]) == 3", "assert Find_Min_Length([[1, 2, 3], [4, 5], [6, 7, 8, 9, 10], [11, 12, 13], [6, 7, 8, 9, 10], [1, 2, 3]]) == 2", "assert Find_Min_Length([[], [33, 9, False, -84, -42, False, -64, 7, -66, -84], [], [], [], []]) == 0", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [4, 5], [6, 7, 8, 5, 9], [11, 12, 13], [1, 2, 3], [6, 7, 8, 5, 9]]) == 2", "assert Find_Min_Length([[6, 11, 7, 8, 6, 10], [4, 2, 3], [6, 11, 7, 8, 6, 10], [4, 8], [6, 11, 7, 8, 6, 10], [11, 12, 13], [4, 8]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 7, 5, 9], [4, 5], [6, 7, 5, 9], [12, 13, 12], [12, 13, 12]]) == 2", "assert Find_Min_Length([[1, 2, 3], [6, 9, 8, 9, 10], [6, 9, 8, 9, 10], [11, 12, 13], [6, 9, 8, 9, 10], [11, 12, 13]]) == 3", "assert Find_Min_Length([[], [False, True, False, False, False, True, False, True], [], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[False], [False], [False]]) == 1", "assert Find_Min_Length([[4, 1, 2, 2, 3], [4], [4, 1, 2, 2, 3], [4, 1, 2, 2, 3], [11, 12], [4, 1, 2, 2, 3]]) == 1", "assert Find_Min_Length([[1, 2, 3], [6, 8, 5, 9], [6, 8, 5, 9], [4, 5], [6, 8, 5, 9], [11, 12, 13, 11], [11, 12, 13, 11], [11, 12, 13, 11], [6, 8, 5, 9]]) == 2", "assert Find_Min_Length([[3, 2, 3, 3], [3, 2, 3, 3], [6, 7, 8, 5, 9, 8], [6, 7, 8, 5, 9, 8], [3, 2, 3, 3], [4, 4, 5], [6, 7, 8, 5, 9, 8], [11, 12, 13], [11, 12, 13], [3, 2, 3, 3], [11, 12, 13]]) == 3", "assert Find_Min_Length([[1, 2, 3], [6, 7, 8, 5, 9], [5], [11, 12, 13], [11, 12, 13], [6, 7, 8, 5, 9], [11, 12, 13]]) == 1", "assert Find_Min_Length([[], [], [], [True, False, 84.98850542252845, True], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [], [69, 8, -42, 6], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[85.61630620077268, -90.47064487499253, 87.92412950816434, 84.98850542252845, -78.5618531155085], [85.61630620077268, -90.47064487499253, 87.92412950816434, 84.98850542252845, -78.5618531155085]]) == 5", "assert Find_Min_Length([[False, True, False, False, False, True, False, True], [], [], [], [], [], []]) == 0", "assert Find_Min_Length([[85.61630620077268, 84.98850542252845, 84.98850542252845, -78.5618531155085], [True, True, True, True, False, True, True, True], [85.61630620077268, 84.98850542252845, 84.98850542252845, -78.5618531155085], [85.61630620077268, 84.98850542252845, 84.98850542252845, -78.5618531155085]]) == 4", "assert Find_Min_Length([[1, 2, 2, 3, 1], [4, 5], [11, 12, 13], [1, 2, 2, 3, 1], [1, 2, 2, 3, 1], [6, 7, 8, 9, 10], [1, 2, 2, 3, 1]]) == 2", "assert Find_Min_Length([[6, 11, 7, 8, 6, 10], [4, 2, 3], [6, 11, 7, 8, 6, 10], [8], [6, 11, 7, 8, 6, 10], [11, 12, 13], [8]]) == 1", "assert Find_Min_Length([[4, 1, 2, 3, 4], [4, 8], [7, 11, 12, 13, 13], [4, 1, 2, 3, 4], [7, 11, 12, 13, 13]]) == 2", "assert Find_Min_Length([[4, 5, 4], [6, 7, 8, 5, 13], [11, 12, 13], [4, 5, 4]]) == 3", "assert Find_Min_Length([[85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085], [85.61630620077268, -90.47064487499253, 84.98850542252845, 84.98850542252845, -78.5618531155085]]) == 5", "assert Find_Min_Length([[62.65634626917724, -78.5618531155085], [62.65634626917724, -78.5618531155085], [62.65634626917724, -78.5618531155085]]) == 2", "assert Find_Min_Length([[], [], [True, 'ERSEFXmEb', [-90.47064487499253, -61.40371790488326, 84.52239660663136], False, {'-80': None, '-78': -1.574803399508525, '47': 6, '-81': 4.848176964479563, '82': False, '6': 5}, -58.13858535192631, True, None, 'ERSEFXmEb'], [], [], [], []]) == 0" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a python function to find the number of divisors of a given integer.\nassert divisor(15) == 4\nYour code should pass the test:\nassert divisor(15) == 4", "test_list": [ "assert divisor(15) == 4", "assert divisor(12) == 6", "assert divisor(9) == 3", "assert divisor(79337) == 2", "assert divisor(79336) == 16", "assert divisor(86) == 4", "assert divisor(87) == 4", "assert divisor(88) == 8", "assert divisor(85) == 4", "assert divisor(79335) == 24", "assert divisor(79334) == 4", "assert divisor(79333) == 2", "assert divisor(79332) == 24", "assert divisor(True) == 1", "assert divisor(89) == 2", "assert divisor(79331) == 6", "assert divisor(95) == 4", "assert divisor(90) == 12", "assert divisor(79338) == 16", "assert divisor(91) == 4", "assert divisor(92) == 6", "assert divisor(93) == 4", "assert divisor(84) == 12", "assert divisor(94) == 4", "assert divisor(83) == 2", "assert divisor(79330) == 8", "assert divisor(82) == 4", "assert divisor(46) == 4", "assert divisor(47) == 2", "assert divisor(44) == 6", "assert divisor(48) == 10", "assert divisor(49) == 3", "assert divisor(81) == 5", "assert divisor(43) == 2", "assert divisor(42) == 8", "assert divisor(96) == 12", "assert divisor(41) == 2", "assert divisor(45) == 6", "assert divisor(97) == 2", "assert divisor(79) == 2", "assert divisor(78) == 8", "assert divisor(79329) == 8", "assert divisor(80) == 10", "assert divisor(50) == 6", "assert divisor(40) == 8", "assert divisor(79328) == 24", "assert divisor(51) == 4", "assert divisor(17) == 2", "assert divisor(98) == 6", "assert divisor(39) == 4", "assert divisor(16) == 5", "assert divisor(18) == 6", "assert divisor(99) == 6", "assert divisor(38) == 4", "assert divisor(79327) == 4", "assert divisor(19) == 2", "assert divisor(20) == 6", "assert divisor(79325) == 12", "assert divisor(77) == 4", "assert divisor(15) == 4", "assert divisor(79339) == 8", "assert divisor(37) == 2", "assert divisor(36) == 9", "assert divisor(79324) == 12", "assert divisor(79340) == 12", "assert divisor(79341) == 8", "assert divisor(35) == 4", "assert divisor(34) == 4", "assert divisor(79323) == 8", "assert divisor(73) == 2", "assert divisor(79322) == 8", "assert divisor(21) == 4", "assert divisor(22) == 4", "assert divisor(79320) == 32", "assert divisor(52) == 6", "assert divisor(23) == 2", "assert divisor(74) == 4", "assert divisor(65) == 4", "assert divisor(79326) == 32", "assert divisor(79321) == 4", "assert divisor(33) == 4", "assert divisor(79319) == 2", "assert divisor(76) == 6", "assert divisor(32) == 6", "assert divisor(14) == 4", "assert divisor(75) == 6", "assert divisor(57) == 4", "assert divisor(100) == 9", "assert divisor(62) == 4", "assert divisor(67) == 2", "assert divisor(72) == 12", "assert divisor(58) == 4", "assert divisor(59) == 2", "assert divisor(60) == 12", "assert divisor(66) == 8", "assert divisor(56) == 8", "assert divisor(53) == 2", "assert divisor(101) == 2", "assert divisor(54) == 8", "assert divisor(68) == 6", "assert divisor(63) == 6", "assert divisor(55) == 4", "assert divisor(61) == 2", "assert divisor(64) == 7" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to find frequency of each element in a flattened list of lists, returned in a dictionary.\nassert frequency_lists([[1, 2, 3, 2], [4, 5, 6, 2], [7, 8, 9, 5]])=={1: 1, 2: 3, 3: 1, 4: 1, 5: 2, 6: 1, 7: 1, 8: 1, 9: 1}\nYour code should pass the test:\nassert frequency_lists([[1, 2, 3, 2], [4, 5, 6, 2], [7, 8, 9, 5]])=={1: 1, 2: 3, 3: 1, 4: 1, 5: 2, 6: 1, 7: 1, 8: 1, 9: 1}", "test_list": [ "assert frequency_lists([[1, 2, 3, 2], [4, 5, 6, 2], [7, 8, 9, 5]])=={1: 1, 2: 3, 3: 1, 4: 1, 5: 2, 6: 1, 7: 1, 8: 1, 9: 1}", "assert frequency_lists([[1,2,3,4],[5,6,7,8],[9,10,11,12]])=={1: 1, 2: 1, 3: 1, 4: 1, 5: 1, 6: 1, 7: 1, 8: 1, 9: 1,10:1,11:1,12:1}", "assert frequency_lists([[20,30,40,17],[18,16,14,13],[10,20,30,40]])=={20:2,30:2,40:2,17: 1,18:1, 16: 1,14: 1,13: 1, 10: 1}", "assert frequency_lists([[1, 1, 1, 1], [2, 2, 2, 2], [3, 3, 3, 3]]) == {1: 4, 2: 4, 3: 4}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 3, 3: 3, 4: 3, 5: 3, 6: 3, 7: 3, 8: 3, 9: 3}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {1: 3, 2: 6, 3: 9, 4: 6, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 3, 3: 3, 4: 3, 5: 3, 6: 3, 7: 4, 8: 3, 9: 3}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 9, 3: 12, 4: 9, 1: 3, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 5, 2: 5, 3: 5, 4: 5, 5: 5, 6: 5, 7: 9, 8: 5, 9: 5}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 6, 3: 9, 4: 6, 1: 3, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 4, 2: 4, 3: 4, 4: 4, 5: 4, 6: 4, 7: 7, 8: 4, 9: 4}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 8], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 8], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 8]]) == {1: 5, 2: 5, 3: 5, 4: 5, 5: 5, 6: 5, 7: 9, 8: 8, 9: 5}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9]]) == {1: 6, 2: 6, 3: 6, 4: 6, 5: 6, 6: 6, 7: 7, 8: 6, 9: 9}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 4, 2: 6, 3: 4, 4: 4, 5: 4, 6: 4, 7: 4, 8: 4, 9: 4}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 5, 2: 5, 3: 5, 4: 5, 5: 5, 6: 5, 7: 5, 8: 5, 9: 5}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 3, 2: 3, 3: 3, 4: 3, 5: 3, 6: 3, 7: 6, 8: 3, 9: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 2, 2: 2, 3: 2, 4: 2, 5: 2, 6: 2, 7: 2, 8: 2, 9: 2}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 4, 5, 5, 5]]) == {2: 9, 3: 12, 4: 10, 1: 3, 5: 3}", "assert frequency_lists([[1, 1, 1, 1, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {1: 8, 2: 7, 3: 12, 4: 6, 5: 3}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 8, 5, 5]]) == {2: 3, 3: 6, 4: 6, 8: 1, 5: 2}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 3, 2: 7, 3: 5, 4: 5, 5: 5, 6: 5, 7: 5, 8: 5, 9: 5}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9, 3]]) == {1: 7, 2: 7, 3: 11, 4: 7, 5: 7, 6: 7, 7: 8, 8: 7, 9: 11}", "assert frequency_lists([[1, 2, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 4, 5, 6, 2, 7, 8, 9], [1, 2, 4, 5, 6, 2, 7, 8, 9], [1, 2, 4, 5, 6, 2, 7, 8, 9]]) == {1: 5, 2: 11, 4: 7, 5: 7, 6: 7, 7: 7, 8: 7, 9: 7, 3: 3}", "assert frequency_lists([[1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {1: 8, 2: 10, 3: 18, 4: 14, 5: 6}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [1, 1, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 9, 3: 12, 4: 6, 1: 6, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9]]) == {1: 6, 2: 5, 3: 6, 4: 6, 5: 6, 6: 6, 7: 6, 8: 6, 9: 6}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4]]) == {1: 3, 2: 6, 3: 15, 4: 15, 5: 9}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {2: 5, 3: 5, 4: 5, 5: 5, 6: 7, 7: 5, 8: 5, 9: 5, 1: 3}", "assert frequency_lists([[3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {3: 3, 4: 3, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 6, 2: 8, 3: 6, 4: 6, 5: 6, 6: 6, 7: 6, 8: 6, 9: 6}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 2, 2: 3, 3: 3, 4: 3, 5: 3, 6: 3, 7: 3, 8: 3, 9: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 4, 2: 4, 3: 4, 4: 4, 5: 4, 6: 4, 7: 5, 8: 4, 9: 4}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 6, 3: 9, 4: 9, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 6, 7, 8, 9, 9], [1, 2, 3, 4, 6, 7, 8, 9, 9]]) == {1: 7, 2: 7, 3: 7, 4: 7, 6: 7, 7: 8, 8: 7, 9: 11, 5: 3}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {2: 6, 3: 6, 4: 6, 5: 6, 6: 9, 7: 6, 8: 6, 9: 6, 1: 4}", "assert frequency_lists([[1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7]]) == {1: 7, 2: 15, 4: 9, 7: 21, 6: 9, 8: 9, 9: 9, 3: 3, 5: 3}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5], [1, 1, 1, 2, 2, 2, 3, 3, 3]]) == {1: 6, 2: 9, 3: 12, 4: 6, 5: 3}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {2: 4, 3: 4, 4: 4, 5: 4, 6: 6, 7: 4, 8: 4, 9: 4, 1: 3}", "assert frequency_lists([[1, 2, 3, 4, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 4, 2: 4, 3: 4, 4: 5, 5: 4, 6: 4, 7: 7, 8: 4, 9: 4}", "assert frequency_lists([[1, 1, 1, 1, 2, 2, 3, 3, 3], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4]]) == {1: 8, 2: 7, 3: 12, 4: 7, 5: 3, 9: 1}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6]]) == {2: 6, 3: 6, 4: 6, 5: 6, 6: 9, 7: 6, 8: 6, 9: 6, 1: 4}", "assert frequency_lists([[2, 2, 2, 3, 4, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 6, 3: 8, 4: 7, 1: 3, 5: 3}", "assert frequency_lists([[1, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 3, 4, 5, 6, 7, 8, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9, 9, 3]]) == {1: 8, 3: 13, 4: 8, 5: 8, 6: 8, 7: 9, 8: 8, 9: 13, 2: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 2, 2: 2, 3: 2, 4: 2, 5: 2, 6: 2, 7: 3, 8: 2, 9: 2}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 8, 5, 5], [3, 3, 3, 4, 4, 4, 8, 5, 5]]) == {2: 3, 3: 9, 4: 9, 8: 2, 5: 4}", "assert frequency_lists([[1, 1, 1, 1], [2, 2, 6, 2, 2]]) == {1: 4, 2: 4, 6: 1}", "assert frequency_lists([[2, 3, 4, 5, 6, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [2, 3, 4, 5, 6, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {2: 6, 3: 6, 4: 6, 5: 6, 6: 9, 8: 6, 9: 6, 1: 4, 7: 4}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 8], [2, 3, 1, 4, 5, 6, 7, 8, 8], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 8], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 6, 2: 8, 3: 6, 4: 6, 5: 6, 6: 6, 7: 6, 8: 9, 9: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 6, 2: 7, 3: 6, 4: 6, 5: 6, 6: 6, 7: 6, 8: 6, 9: 6}", "assert frequency_lists([[2, 3, 1, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {2: 6, 3: 5, 1: 5, 4: 5, 5: 5, 6: 5, 7: 5, 8: 5, 9: 5}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5], [1, 1, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {1: 6, 2: 9, 3: 15, 4: 9, 5: 6}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 4, 2: 4, 3: 4, 4: 4, 5: 4, 6: 4, 7: 7, 8: 4, 9: 4}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 4, 2: 4, 3: 4, 4: 4, 5: 4, 6: 4, 7: 4, 8: 4, 9: 4}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 4, 2: 9, 3: 6, 4: 6, 5: 6, 6: 6, 7: 6, 8: 6, 9: 6}", "assert frequency_lists([[1, 2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 8, 5, 5]]) == {1: 1, 2: 3, 3: 6, 4: 6, 8: 1, 5: 2}", "assert frequency_lists([[7, 1, 2, 3, 4, 5, 6, 7, 8, 2, 9, 9, 3], [7, 1, 2, 3, 4, 5, 6, 7, 8, 2, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 8], [7, 1, 2, 3, 4, 5, 6, 7, 8, 2, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 8], [1, 2, 3, 4, 5, 6, 7, 8, 8], [7, 1, 2, 3, 4, 5, 6, 7, 8, 2, 9, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 8]]) == {7: 14, 1: 9, 2: 13, 3: 13, 4: 9, 5: 9, 6: 9, 8: 13, 9: 9}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 5, 2: 5, 3: 8, 4: 5, 5: 8, 6: 5, 7: 5, 8: 5, 9: 8}", "assert frequency_lists([[1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [2, 3, 9, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 9, 4, 5, 6, 7, 8, 9], [2, 3, 9, 4, 5, 6, 7, 8, 9], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7], [1, 2, 4, 7, 6, 2, 7, 8, 9, 7]]) == {1: 7, 2: 16, 4: 10, 7: 22, 6: 10, 8: 10, 9: 13, 3: 4, 5: 4}", "assert frequency_lists([[2, 2, 2, 2], [3, 3, 3, 3]]) == {2: 4, 3: 4}", "assert frequency_lists([[1, 2, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 4, 2: 4, 4: 4, 5: 4, 6: 4, 7: 8, 8: 4, 9: 4, 3: 2}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5], [1, 1, 1, 2, 2, 2, 3, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {1: 6, 2: 9, 3: 17, 4: 9, 5: 6}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {2: 12, 3: 12, 4: 9, 1: 3}", "assert frequency_lists([[1, 3, 1, 1, 1, 2, 2, 3, 3, 3], [1, 3, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4]]) == {1: 8, 3: 20, 2: 13, 4: 13, 5: 3, 9: 3}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [8, 3, 3, 3, 4, 4, 4, 5, 5, 7], [2, 2, 2, 3, 3, 3, 4, 4, 4], [8, 3, 3, 3, 4, 4, 4, 5, 5, 7]]) == {2: 9, 3: 15, 4: 12, 1: 3, 8: 2, 5: 4, 7: 2}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3, 1], [1, 1, 1, 2, 2, 2, 3, 3, 3, 1], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {1: 8, 2: 9, 3: 12, 4: 6, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9], [3, 4, 5, 6, 7, 8, 9], [3, 4, 5, 6, 7, 8, 9], [3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [3, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 5, 3: 7, 4: 7, 5: 7, 6: 7, 7: 7, 8: 7, 9: 7}", "assert frequency_lists([[1, 7, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 5, 5, 5], [1, 7, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 5, 5, 5]]) == {1: 4, 7: 2, 2: 9, 3: 15, 4: 7, 5: 6}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 5, 3: 9, 4: 6, 1: 4, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 5, 2: 6, 3: 5, 4: 5, 5: 5, 6: 5, 7: 5, 8: 5, 9: 5}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9]]) == {1: 6, 2: 6, 3: 6, 4: 8, 5: 6, 6: 6, 7: 7, 8: 6, 9: 9}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5], [2, 2, 2, 3, 3, 3, 4, 4, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {2: 11, 3: 15, 4: 12, 1: 4, 5: 3}", "assert frequency_lists([[1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 5], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 5], [2, 2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 5], [2, 2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {1: 8, 2: 12, 3: 21, 4: 18, 5: 12}", "assert frequency_lists([[1, 2, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 3, 4: 3, 5: 3, 6: 3, 7: 4, 8: 3, 9: 3, 3: 1}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 6, 5, 6, 7, 8, 9, 6], [2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 6, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 6, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {2: 6, 3: 6, 4: 6, 5: 6, 6: 12, 7: 6, 8: 6, 9: 8, 1: 4}", "assert frequency_lists([[1, 3, 1, 1, 1, 2, 2, 3, 3, 3], [1, 3, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [1, 3, 1, 1, 1, 2, 2, 3, 3, 3]]) == {1: 12, 3: 24, 2: 15, 4: 13, 5: 3, 9: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 8, 8, 8], [2, 3, 1, 4, 5, 6, 7, 8, 8, 8, 8], [2, 3, 1, 4, 5, 6, 7, 8, 8, 8, 8], [1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 1, 4, 5, 6, 7, 8, 8, 8, 8], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9]]) == {1: 7, 2: 9, 3: 7, 4: 7, 5: 7, 6: 7, 7: 7, 8: 19, 9: 3}", "assert frequency_lists([[1, 2, 3, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 3, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 4, 3: 7, 4: 4, 5: 4, 6: 4, 7: 4, 8: 4, 9: 4}", "assert frequency_lists([[1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 4], [2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {1: 8, 2: 10, 3: 18, 4: 16, 5: 6}", "assert frequency_lists([[0, 1, 1, 1, 1], [0, 1, 1, 1, 1], [2, 2, 6, 2, 2]]) == {0: 2, 1: 8, 2: 4, 6: 1}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6]]) == {2: 5, 3: 5, 4: 5, 5: 5, 6: 8, 7: 5, 8: 5, 9: 5, 1: 4}", "assert frequency_lists([[1, 3, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [1, 3, 1, 1, 1, 2, 2, 3, 3, 3]]) == {1: 8, 3: 17, 2: 10, 4: 10, 5: 3, 9: 2}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 6], [2, 3, 4, 5, 6, 7, 8, 9]]) == {2: 7, 3: 7, 4: 7, 5: 7, 6: 10, 7: 7, 8: 7, 9: 7, 1: 4}", "assert frequency_lists([[1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 4, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 1, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4, 4, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {1: 8, 2: 10, 3: 20, 4: 16, 5: 6}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 2, 3, 4, 5, 6, 2, 7, 8, 9], [1, 3, 4, 5, 6, 7, 8, 9]]) == {1: 6, 2: 6, 3: 6, 4: 6, 5: 6, 6: 6, 7: 6, 8: 6, 9: 6}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 3, 2, 2, 3, 3, 2], [1, 1, 1, 3, 2, 2, 3, 3, 2], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 9, 3: 12, 4: 6, 1: 6, 5: 3}", "assert frequency_lists([[1, 3, 1, 1, 1, 2, 2, 5, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [2, 2, 2, 3, 3, 3, 4, 9, 4, 4], [1, 3, 1, 1, 1, 2, 2, 5, 3, 3, 3], [1, 3, 1, 1, 1, 2, 2, 5, 3, 3, 3]]) == {1: 12, 3: 21, 2: 12, 5: 6, 4: 10, 9: 2}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3], [1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3], [1, 2, 3, 4, 6, 6, 7, 8, 9], [1, 2, 3, 4, 6, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3], [1, 2, 3, 4, 6, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 5, 9, 3]]) == {1: 7, 2: 7, 3: 11, 4: 7, 5: 8, 6: 10, 7: 7, 8: 7, 9: 11}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5], [2, 2, 2, 3, 3, 3, 4, 4, 4]]) == {1: 3, 2: 9, 3: 12, 4: 9, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 4, 4, 5, 6, 7, 8, 9], [1, 2, 4, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 3, 3: 1, 4: 5, 5: 3, 6: 3, 7: 4, 8: 3, 9: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 5, 2: 5, 3: 5, 4: 5, 5: 5, 6: 5, 7: 9, 8: 5, 9: 5}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 3, 2, 2, 3, 3, 2], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 6, 3: 9, 4: 6, 1: 3, 5: 3}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8], [1, 2, 3, 4, 5, 6, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9]]) == {1: 10, 2: 7, 3: 7, 4: 7, 5: 7, 6: 7, 7: 8, 8: 7, 9: 9}", "assert frequency_lists([[1, 2, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9], [1, 2, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9]]) == {1: 4, 2: 4, 4: 4, 5: 4, 6: 4, 7: 6, 8: 4, 9: 4, 3: 2}", "assert frequency_lists([[1, 3, 2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 3, 2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 8, 5, 5]]) == {1: 2, 3: 11, 2: 6, 4: 9, 8: 1, 5: 2}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [8, 3, 3, 3, 4, 4, 4, 5, 5, 7], [2, 2, 2, 3, 3, 3, 4, 4, 4], [8, 3, 3, 3, 4, 4, 4, 5, 5, 7]]) == {2: 6, 3: 12, 4: 12, 8: 2, 5: 4, 7: 2}", "assert frequency_lists([[1, 7, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 5, 5, 5], [1, 7, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 5, 5, 5], [3, 3, 3, 4, 4, 5, 5, 5]]) == {1: 4, 7: 2, 2: 9, 3: 18, 4: 9, 5: 9}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 7, 8, 9, 1]]) == {1: 11, 2: 6, 3: 6, 4: 6, 5: 6, 6: 6, 7: 11, 8: 6, 9: 6}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 7, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 5, 5, 5]]) == {2: 6, 3: 9, 4: 5, 1: 2, 7: 1, 5: 3}", "assert frequency_lists([[2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 6, 5, 6, 7, 8, 9, 6], [2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 6, 5, 6, 7, 8, 9, 6], [1, 2, 3, 4, 6, 5, 6, 7, 8, 9, 6]]) == {2: 5, 3: 5, 4: 5, 5: 5, 6: 11, 7: 5, 8: 5, 9: 7, 1: 3}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 3, 3: 6, 4: 6, 5: 3}", "assert frequency_lists([[1, 1, 1, 2, 2, 2, 3, 3, 3], [2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 3, 4, 4, 4, 5, 5, 5], [1, 1, 1, 2, 2, 2, 3, 3, 3], [1, 1, 1, 2, 2, 2, 3, 3, 3]]) == {1: 9, 2: 12, 3: 15, 4: 6, 5: 3}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [3, 3, 4, 4, 4, 5, 5, 5], [1, 1, 1, 8, 2, 2, 3, 3, 3, 1], [1, 1, 1, 8, 2, 2, 3, 3, 3, 1], [3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 7, 3: 13, 4: 9, 5: 6, 1: 8, 8: 2}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 7, 8, 6], [1, 2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9]]) == {1: 3, 2: 3, 3: 3, 4: 3, 5: 3, 6: 4, 7: 4, 8: 3, 9: 2}", "assert frequency_lists([[2, 2, 2, 3, 3, 3, 4, 4, 4], [1, 1, 1, 2, 2, 2, 3, 3, 3], [1, 1, 1, 2, 2, 2, 3, 3, 3], [3, 3, 3, 4, 4, 4, 5, 5, 5], [3, 3, 3, 4, 4, 4, 5, 5, 5]]) == {2: 9, 3: 15, 4: 9, 1: 6, 5: 6}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 7, 8], [1, 2, 3, 4, 5, 6, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9], [1, 2, 3, 4, 5, 6, 7, 8, 9, 1], [1, 2, 3, 4, 5, 6, 7, 8, 9, 9]]) == {1: 8, 2: 6, 3: 6, 4: 6, 5: 6, 6: 6, 7: 7, 8: 6, 9: 8}", "assert frequency_lists([[1, 2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [2, 3, 4, 5, 6, 7, 8, 9], [1, 2, 4, 5, 6, 2, 7, 8, 9], [1, 2, 4, 5, 6, 2, 7, 8, 9], [1, 2, 4, 5, 6, 2, 7, 8, 9]]) == {1: 4, 2: 9, 3: 3, 4: 6, 5: 6, 6: 6, 7: 6, 8: 6, 9: 6}" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to multiply all the numbers in a list and divide with the length of the list.\nassert math.isclose(multiply_num((8, 2, 3, -1, 7)), -67.2, rel_tol=0.001)\nYour code should pass the test:\nassert math.isclose(multiply_num((8, 2, 3, -1, 7)), -67.2, rel_tol=0.001)", "test_list": [ "assert math.isclose(multiply_num((8, 2, 3, -1, 7)), -67.2, rel_tol=0.001)", "assert math.isclose(multiply_num((-10,-20,-30)), -2000.0, rel_tol=0.001)", "assert math.isclose(multiply_num((19,15,18)), 1710.0, rel_tol=0.001)", "assert multiply_num([100000, 2, 3]) == 200000.0", "assert multiply_num([2.5, 1.5, 0, -3, 4.2]) == -0.0", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7]) == 2.1000000000000006e-05", "assert multiply_num([1, 10, 100, 1000, 10000, 100000]) == 166666666666666.66", "assert multiply_num([-1, -2, -3, -4, -5, -6, -7, -8, -9, -10]) == 362880.0", "assert multiply_num([0, 0]) == 0.0", "assert multiply_num([2, 3, 4, -2, 0]) == 0.0", "assert multiply_num([1000000, 2000000, 3000000, -1000000]) == -1.5e+24", "assert multiply_num([5, 5, 5, 5]) == 156.25", "assert multiply_num([1, -2, 3, -4, 5]) == 24.0", "assert multiply_num([1, -2, 3, -4, 5, -2]) == -40.0", "assert multiply_num([2, -2, 3, -6, -2, 0]) == 0.0", "assert multiply_num([0, 0, 0]) == 0.0", "assert multiply_num([2, 3, 4, -2, 0, 2]) == 0.0", "assert multiply_num([2, 2, 3, 4, -2, 0]) == 0.0", "assert multiply_num([2, 3, 4, -2, 0, -2]) == 0.0", "assert multiply_num([3, 100000, 2, 3]) == 450000.0", "assert multiply_num([1, 10, 100, 1000, 10000, 100000, 100000]) == 1.4285714285714287e+19", "assert multiply_num([1, 10, 100, 1000, 10000, 100000, 10]) == 1428571428571428.5", "assert multiply_num([2, 3, 0, -2, 0, 2]) == 0.0", "assert multiply_num([2, 1, -2, 0, 2]) == 0.0", "assert multiply_num([1000000, 2000000, 3000000, -1000000, -1000000]) == 1.2e+30", "assert multiply_num([-1, -2, -3, -5, -6, -7, -8, -9, -10]) == -100800.0", "assert multiply_num([1000000, 2000000, -1000000]) == -6.666666666666666e+17", "assert multiply_num([100000, 2]) == 100000.0", "assert multiply_num([0]) == 0.0", "assert multiply_num([1000000, 2000000, -9, -1000000, 1000000]) == 3.6e+24", "assert multiply_num([-9, -1, -2, -3, -4, -5, -7, -8, -9, -10]) == 544320.0", "assert multiply_num([2, -2, 3, -7, -6, -2, 0]) == 0.0", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.2734396265136305, 0.3, 0.4, 0.5, 0.6, 0.7]) == 5.168008941107618e-06", "assert multiply_num([-1, -2, -1, -3, -4, -5, -6, -7, -8, -9, -10, -1]) == 302400.0", "assert multiply_num([2, 3, -2, 0]) == 0.0", "assert multiply_num([2, 3, -1, -6, -2, 0]) == 0.0", "assert multiply_num([1000000, -1000000]) == -500000000000.0", "assert multiply_num([5, 5, 5]) == 41.666666666666664", "assert multiply_num([5, 5]) == 12.5", "assert multiply_num([-1, -2, -3, 0, -5, -6, -7, -8, -9, -10, -1]) == 0.0", "assert multiply_num([100000, 2, 100001, 3]) == 15000150000.0", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.3, 0.4, 0.5, 0.1027137544003226, 0.6, 0.7, 0.3]) == 5.294427158634811e-07", "assert multiply_num([2, 3, -4, 4, -2, 0]) == 0.0", "assert multiply_num([100001, 2, -2, 0]) == 0.0", "assert multiply_num([0.5, 0.75, 0.7, 0.1, 0.2, 0.3, 0.4, 0.5, 1.5, 0.6, 0.7]) == 1.8040909090909085e-05", "assert multiply_num([-5, -2, 2, 5]) == 25.0", "assert multiply_num([-1]) == -1.0", "assert multiply_num([2, 3, -3, 4, -2, 0, -2]) == 0.0", "assert multiply_num([1, 9, 10, 100, 1000, 10000, 100000, 10000, 1000]) == 1e+22", "assert multiply_num([2.5, 1.5, 0]) == 0.0", "assert multiply_num([100000, 3]) == 150000.0", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.3, 0.4, 0.5, 0.1027137544003226, 0.6, 0.7, 0.3, 0.7]) == 3.39725742679067e-07", "assert multiply_num([2, 3, -3, 4, -2, 0, -3]) == 0.0", "assert multiply_num([-2, 2, -1, 5]) == 5.0", "assert multiply_num([0.5, 0.75, 1.5, 0.2, 0.2734396265136305, 0.3, 0.4, 0.5, 0.6, 0.7]) == 7.752013411661425e-05", "assert multiply_num([1, 10, 100, 1000, 10000, -9]) == -15000000000.0", "assert multiply_num([1.6805641411244991, 2.5, 1.5, 0]) == 0.0", "assert multiply_num([3000000, 2, 3, 4, 0, 1]) == 0.0", "assert multiply_num([0, 6, 5, 5]) == 0.0", "assert multiply_num([1, 10, 100, 1000, 10000, 100000, 100000, 1]) == 1.25e+19", "assert multiply_num([2.5, 0, 2.5]) == 0.0", "assert multiply_num([-6, 0]) == 0.0", "assert multiply_num([1000000, 2000000, 3000000, -1000000, -1000000, 3000000]) == 3e+36", "assert multiply_num([2, 3, -2, 0, 3]) == 0.0", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.3, 0.4, 0.2734396265136305, 0.5, 0.1027137544003226, 1.0039341653341238, 0.3, 0.7]) == 2.2204748199748898e-07", "assert multiply_num([2, 3, -6, -2, 0]) == 0.0", "assert multiply_num([1]) == 1.0", "assert multiply_num([-9, 1000000, 2000000, 3000000, -1000000]) == 1.08e+25", "assert multiply_num([-5, -1, 2, 5]) == 12.5", "assert multiply_num([5, 5, 1, 5]) == 31.25", "assert multiply_num([100000, 2, 4]) == 266666.6666666667", "assert multiply_num([1, 10, 101, 100, 1000, 10000, -9]) == -1298571428571.4285", "assert multiply_num([2, 3, 0, 2]) == 0.0", "assert multiply_num([2, 3, -2, 0, 3, 3]) == 0.0", "assert multiply_num([-1, -2, -1, -3, -4, -5, -6, -8, -8, -9, -10, -1]) == 345600.0", "assert multiply_num([1000000, 2000000, -9, -1000000, 1000000, 2000000]) == 6e+30", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.3, 0.3408682932336746, 0.4, 0.2734396265136305, 0.5, 0.1027137544003226, 1.0039341653341238, 0.3, 0.7]) == 6.986671957414076e-08", "assert multiply_num([2, 3, 0, 100000, 2]) == 0.0", "assert multiply_num([1000000, -1000000, 1000000]) == -3.333333333333333e+17", "assert multiply_num([-1, -2, -1, -3, -4, -5, -6, -8, -8, -9, -10, 9, -1]) == 2871138.4615384615", "assert multiply_num([2.5, 1.5, 0, 1.5]) == 0.0", "assert multiply_num([2, 3, 4, -2, -10, 0, 2]) == 0.0", "assert multiply_num([0, 0, 1000000, 0, 0]) == 0.0", "assert multiply_num([1, 1]) == 0.5", "assert multiply_num([2, 3, 4, 1, -2, 0]) == 0.0", "assert multiply_num([100000, -2, 3, 100000]) == -15000000000.0", "assert multiply_num([2, 3, 0, -10, -2, 0, 2]) == 0.0", "assert multiply_num([1.6805641411244991, 1.5, 0]) == 0.0", "assert multiply_num([3]) == 3.0", "assert multiply_num([2.5, 1.5]) == 1.875", "assert multiply_num([1, 11, 101, 100, 1000, 10000, -9, 1]) == -1249875000000.0", "assert multiply_num([1.6805641411244991, 1.6805641411244991]) == 1.4121479162167627", "assert multiply_num([-1, -2, -1, -3, -4, -5, -7, -8, -9, -10, -1]) == -54981.818181818184", "assert multiply_num([1000000, 5]) == 2500000.0", "assert multiply_num([1, 10, 100, 1000, -9, 9999, -9]) == 115702714285.71428", "assert multiply_num([-6, -6]) == 18.0", "assert multiply_num([2, -2, 3, -6, -2]) == -28.8", "assert multiply_num([0.5, 0.75, 0.1, 0.2, 0.75, 0.4, 0.5, 0.6, 0.7]) == 5.25e-05", "assert multiply_num([2, 3, 4, -1, 1]) == -4.8", "assert multiply_num([2000000, -9, -1000000, 1000000]) == 4.5e+18", "assert multiply_num([1, 10, 100, 1000, 100000]) == 20000000000.0", "assert multiply_num([-1000000, 1, 10, 100, 1000, -9, -9]) == -11571428571428.572", "assert multiply_num([1, 3, 4, -2, -10, 0, 2]) == 0.0", "assert multiply_num([2, 3, 4, -2, -10, 0, 2, -3, 2]) == 0.0", "assert multiply_num([1, 10, 100, 10000, 100000, 100000, 1]) == 1.4285714285714286e+16", "assert multiply_num([2.5, 0.1027137544003226, 1.5, 0]) == 0.0", "assert multiply_num([2, 3, 0, -10, -2, 0, 3, 2]) == 0.0", "assert multiply_num([1000001, 2000000, -9, -1000000, 1000000]) == 3.6000036e+24", "assert multiply_num([2, 2, 3, 0, -2, 0, 2]) == 0.0", "assert multiply_num([1, 10, 100, 10000, 100000, 1]) == 166666666666.66666", "assert multiply_num([2, 1, -2, 0, -2]) == 0.0", "assert multiply_num([2.5, 1.5, 0, 1]) == 0.0", "assert multiply_num([-5, -1, 1, 5]) == 6.25" ], "test_method": "function", "test_time_limit": 1, "prefix": "" }, { "question": "Write a function to convert the given decimal number to its binary equivalent, represented as a string with no leading zeros.\nassert decimal_to_binary(8) == '1000'\nYour code should pass the test:\nassert decimal_to_binary(8) == '1000'", "test_list": [ "assert decimal_to_binary(8) == '1000'", "assert decimal_to_binary(18) == '10010'", "assert decimal_to_binary(7) == '111'", "assert decimal_to_binary(0) == '0'", "assert decimal_to_binary(-5) == '-101'", "assert decimal_to_binary(999999999999999999999999999999999999999999) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111111'", "assert decimal_to_binary(-1000000000000000000000000000000000000000000) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000000'", "assert decimal_to_binary(-33) == '-100001'", "assert decimal_to_binary(False) == '0'", "assert decimal_to_binary(-1) == '-1'", "assert decimal_to_binary(-1000000000000000000000000000000000000000001) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000001'", "assert decimal_to_binary(999999999999999999999999999999999999999998) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111110'", "assert decimal_to_binary(-999999999999999999999999999999999999999999) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111111'", "assert decimal_to_binary(True) == '1'", "assert decimal_to_binary(-6) == '-110'", "assert decimal_to_binary(-68) == '-1000100'", "assert decimal_to_binary(-34) == '-100010'", "assert decimal_to_binary(-1000000000000000000000000000000000000000002) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000010'", "assert decimal_to_binary(1000000000000000000000000000000000000000000) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000000'", "assert decimal_to_binary(2) == '10'", "assert decimal_to_binary(26) == '11010'", "assert decimal_to_binary(1) == '1'", "assert decimal_to_binary(-69) == '-1000101'", "assert decimal_to_binary(80) == '1010000'", "assert decimal_to_binary(-87) == '-1010111'", "assert decimal_to_binary(-2) == '-10'", "assert decimal_to_binary(-3) == '-11'", "assert decimal_to_binary(79) == '1001111'", "assert decimal_to_binary(-7) == '-111'", "assert decimal_to_binary(-1000000000000000000000000000000000000000003) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000011'", "assert decimal_to_binary(-999999999999999999999999999999999999999998) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111110'", "assert decimal_to_binary(3) == '11'", "assert decimal_to_binary(-999999999999999999999999999999999999999997) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111101'", "assert decimal_to_binary(-999999999999999999999999999999999999999996) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111100'", "assert decimal_to_binary(4) == '100'", "assert decimal_to_binary(1000000000000000000000000000000000000000001) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000001'", "assert decimal_to_binary(1000000000000000000000000000000000000000002) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000010'", "assert decimal_to_binary(25) == '11001'", "assert decimal_to_binary(-97) == '-1100001'", "assert decimal_to_binary(-35) == '-100011'", "assert decimal_to_binary(27) == '11011'", "assert decimal_to_binary(999999999999999999999999999999999999999997) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111101'", "assert decimal_to_binary(28) == '11100'", "assert decimal_to_binary(81) == '1010001'", "assert decimal_to_binary(-70) == '-1000110'", "assert decimal_to_binary(-32) == '-100000'", "assert decimal_to_binary(55) == '110111'", "assert decimal_to_binary(78) == '1001110'", "assert decimal_to_binary(77) == '1001101'", "assert decimal_to_binary(-999999999999999999999999999999999999999993) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111001'", "assert decimal_to_binary(-24) == '-11000'", "assert decimal_to_binary(-96) == '-1100000'", "assert decimal_to_binary(-71) == '-1000111'", "assert decimal_to_binary(-86) == '-1010110'", "assert decimal_to_binary(-23) == '-10111'", "assert decimal_to_binary(-25) == '-11001'", "assert decimal_to_binary(24) == '11000'", "assert decimal_to_binary(29) == '11101'", "assert decimal_to_binary(-72) == '-1001000'", "assert decimal_to_binary(86) == '1010110'", "assert decimal_to_binary(82) == '1010010'", "assert decimal_to_binary(46) == '101110'", "assert decimal_to_binary(-98) == '-1100010'", "assert decimal_to_binary(-26) == '-11010'", "assert decimal_to_binary(-95) == '-1011111'", "assert decimal_to_binary(30) == '11110'", "assert decimal_to_binary(23) == '10111'", "assert decimal_to_binary(56) == '111000'", "assert decimal_to_binary(999999999999999999999999999999999999999996) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111100'", "assert decimal_to_binary(-999999999999999999999999999999999999999995) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111011'", "assert decimal_to_binary(-4) == '-100'", "assert decimal_to_binary(85) == '1010101'", "assert decimal_to_binary(-36) == '-100100'", "assert decimal_to_binary(57) == '111001'", "assert decimal_to_binary(87) == '1010111'", "assert decimal_to_binary(58) == '111010'", "assert decimal_to_binary(83) == '1010011'", "assert decimal_to_binary(-1000000000000000000000000000000000000000004) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000100'", "assert decimal_to_binary(999999999999999999999999999999999999999995) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111011'", "assert decimal_to_binary(84) == '1010100'", "assert decimal_to_binary(54) == '110110'", "assert decimal_to_binary(20) == '10100'", "assert decimal_to_binary(31) == '11111'", "assert decimal_to_binary(-999999999999999999999999999999999999999994) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111000111111111111111111111111111111111111111010'", "assert decimal_to_binary(-73) == '-1001001'", "assert decimal_to_binary(-37) == '-100101'", "assert decimal_to_binary(-22) == '-10110'", "assert decimal_to_binary(45) == '101101'", "assert decimal_to_binary(13) == '1101'", "assert decimal_to_binary(-74) == '-1001010'", "assert decimal_to_binary(75) == '1001011'", "assert decimal_to_binary(88) == '1011000'", "assert decimal_to_binary(71) == '1000111'", "assert decimal_to_binary(-31) == '-11111'", "assert decimal_to_binary(-99) == '-1100011'", "assert decimal_to_binary(-100) == '-1100100'", "assert decimal_to_binary(22) == '10110'", "assert decimal_to_binary(76) == '1001100'", "assert decimal_to_binary(14) == '1110'", "assert decimal_to_binary(59) == '111011'", "assert decimal_to_binary(-88) == '-1011000'", "assert decimal_to_binary(74) == '1001010'", "assert decimal_to_binary(-1000000000000000000000000000000000000000005) == '-10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000101'", "assert decimal_to_binary(-94) == '-1011110'", "assert decimal_to_binary(-49) == '-110001'", "assert decimal_to_binary(1000000000000000000000000000000000000000003) == '10110111101010111100011000100111000001010000001100000101101011011111000101001010001111011001111001000000000000000000000000000000000000000011'", "assert decimal_to_binary(-93) == '-1011101'" ], "test_method": "function", "test_time_limit": 1, "prefix": "" } ]