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"In an incomplete space \\( l_1 \\) with an inner product from the space \\( l_2 \\), find the ortho(...TRUNCATED)
"In an incomplete space \\( l_1 \\) with an inner product from the space \\( l_2 \\), find the ortho(...TRUNCATED)
"<think>\nOkay, so I have this problem here: In an incomplete space l₁ with an inner product from (...TRUNCATED)
["<think>\nOkay, let me try to work through this problem step by step. The problem is about finding (...TRUNCATED)
[-0.16015625,-0.166015625,-0.1416015625,-0.1650390625,-0.1728515625,-0.1494140625,-0.173828125,-0.21(...TRUNCATED)
[ 8193, 8193, 8193, 8193, 5074, 5817, 7330, 6053, 6321, 6985 ]
[ -1312, -1360, -1160, -1352, -876, -872, -1272, -1312, -1280, -1544 ]
["<think>\nOkay, so I have this problem here: In an incomplete space l₁ with an inner product from(...TRUNCATED)
[ -0.4296875 ]
[ 5545 ]
[ -2384 ]
"Find all positive integer solutions \\( x, n \\) of the equation \\( x^2 + 615 = 2^n \\).\nPlease t(...TRUNCATED)
Find all positive integer solutions \( x, n \) of the equation \( x^2 + 615 = 2^n \).
"<think>\nOkay, so I have this problem: Find all positive integer solutions x, n of the equation x²(...TRUNCATED)
["<think>\nOkay, let's try to solve this equation: x² + 615 = 2ⁿ. We need to find all positive in(...TRUNCATED)
[-0.150390625,-0.14453125,-0.12890625,-0.1328125,-0.1220703125,-0.1337890625,-0.1220703125,-0.108398(...TRUNCATED)
[ 7138, 7253, 5242, 6463, 4384, 4606, 3421, 4205, 4925, 5617 ]
[ -1072, -1048, -676, -860, -536, -616, -418, -456, -612, -580 ]
["<think>\nOkay, so I have this problem: Find all positive integer solutions x, n of the equation x(...TRUNCATED)
[ -0.2412109375 ]
[ 3271 ]
[ -788 ]
"If \\( A = \\begin{pmatrix} 1 & -\\frac{x}{n} \\\\ \\frac{x}{n} & 1 \\end{pmatrix} \\), then find \(...TRUNCATED)
"If \\( A = \\begin{pmatrix} 1 & -\\frac{x}{n} \\\\ \\frac{x}{n} & 1 \\end{pmatrix} \\), then find \(...TRUNCATED)
"<think>\nOkay, let's try to solve this problem. So we have the matrix A given as:\n\nA = [[1, -x/n](...TRUNCATED)
["<think>\nOkay, let me try to solve this problem step by step. The problem is to find the limit as (...TRUNCATED)
[-0.14453125,-0.1953125,-0.1474609375,-0.19140625,-0.177734375,-0.1591796875,-0.1396484375,-0.140625(...TRUNCATED)
[ 5231, 8143, 2675, 7834, 5124, 4168, 3148, 4028, 8193, 5344 ]
[ -756, -1584, -396, -1504, -912, -664, -440, -564, -1440, -812 ]
["<think>\nOkay, let's try to solve this problem. So we have the matrix A given as:\n\nA = [[1, -x/n(...TRUNCATED)
[ -0.33984375 ]
[ 3627 ]
[ -1232 ]
"Find all polynomials \\( P(x, y) \\) in two variables such that for any \\( x \\) and \\( y \\), \\(...TRUNCATED)
"Find all polynomials \\( P(x, y) \\) in two variables such that for any \\( x \\) and \\( y \\), \\(...TRUNCATED)
"<think>\nOkay, so I need to find all polynomials P(x, y) in two variables such that for any x and y(...TRUNCATED)
["<think>\nOkay, so I need to find all polynomials P(x, y) in two variables such that for any x and (...TRUNCATED)
[-0.1591796875,-0.1533203125,-0.162109375,-0.193359375,-0.1982421875,-0.1728515625,-0.1962890625,-0.(...TRUNCATED)
[ 6161, 7463, 6006, 3927, 4052, 7898, 6803, 6872, 5554, 8193 ]
[ -976, -1144, -972, -760, -804, -1368, -1336, -1408, -1040, -1272 ]
["<think>\nOkay, so I need to find all polynomials P(x, y) in two variables such that for any x and (...TRUNCATED)
[ -0.337890625 ]
[ 6650 ]
[ -2256 ]
"Let $\\mathcal{S}$ be the set of real numbers that can be represented as repeating decimals of th(...TRUNCATED)
"Let $\\mathcal{S}$ be the set of real numbers that can be represented as repeating decimals of th(...TRUNCATED)
"<think>\nOkay, so I need to solve this problem where I have to find the sum of all elements in the (...TRUNCATED)
["<think>\nOkay, let's see. I need to find the sum of all real numbers that can be represented as re(...TRUNCATED)
[-0.1796875,-0.1630859375,-0.169921875,-0.158203125,-0.1640625,-0.1376953125,-0.1904296875,-0.168945(...TRUNCATED)
[ 4441, 7585, 8193, 6476, 4501, 6126, 5843, 4815, 6077, 5006 ]
[ -800, -1240, -1392, -1024, -740, -840, -1112, -812, -1032, -932 ]
["<think>\nOkay, so I need to solve this problem where I have to find the sum of all elements in the(...TRUNCATED)
[ -0.35546875 ]
[ 4341 ]
[ -1544 ]
"How many edges of a tetrahedron can a plane intersect if the plane does not pass through any of the(...TRUNCATED)
"How many edges of a tetrahedron can a plane intersect if the plane does not pass through any of the(...TRUNCATED)
"<think>\nOkay, so I need to figure out how many edges a plane can intersect in a tetrahedron withou(...TRUNCATED)
["<think>\nOkay, let's see. The problem is asking how many edges of a tetrahedron can a plane inters(...TRUNCATED)
[-0.2333984375,-0.22265625,-0.2734375,-0.259765625,-0.2734375,-0.19921875,-0.189453125,-0.1982421875(...TRUNCATED)
[ 8193, 8192, 4489, 6521, 3690, 6902, 8193, 6926, 3949, 5447 ]
[ -1912, -1824, -1224, -1696, -1008, -1376, -1552, -1376, -944, -1040 ]
["<think>\nOkay, so I need to figure out how many edges a plane can intersect in a tetrahedron witho(...TRUNCATED)
[ -0.416015625 ]
[ 5857 ]
[ -2448 ]
"How many ordered pairs \\( (n, k) \\) are there such that \\( \\left| {n \\choose k} - 18 \\right| (...TRUNCATED)
"How many ordered pairs \\( (n, k) \\) are there such that \\( \\left| {n \\choose k} - 18 \\right| (...TRUNCATED)
"<think>\nOkay, so I need to find the number of ordered pairs (n, k) where the absolute difference b(...TRUNCATED)
["<think>\nOkay, let's see. I need to find all ordered pairs (n, k) where the absolute difference be(...TRUNCATED)
[-0.134765625,-0.12255859375,-0.0966796875,-0.1259765625,-0.1337890625,-0.1533203125,-0.1376953125,-(...TRUNCATED)
[ 5993, 7229, 7198, 7071, 6561, 6807, 7075, 5977, 6201, 6966 ]
[ -804, -888, -696, -892, -880, -1048, -976, -864, -848, -1368 ]
["<think>\nOkay, so I need to find the number of ordered pairs (n, k) where the absolute difference (...TRUNCATED)
[ -0.328125 ]
[ 7900 ]
[ -2592 ]
"Convert the point $(\\rho,\\theta,\\phi) = \\left( 12, \\frac{7 \\pi}{6}, \\frac{\\pi}{3} \\right)$(...TRUNCATED)
"Convert the point $(\\rho,\\theta,\\phi) = \\left( 12, \\frac{7 \\pi}{6}, \\frac{\\pi}{3} \\right)$(...TRUNCATED)
"<think>\nOkay, let's see. I need to convert the spherical coordinates (ρ, θ, φ) = (12, 7π/6, π(...TRUNCATED)
["<think>\nOkay, so I need to convert the spherical coordinates (ρ, θ, φ) = (12, 7π/6, π/3) to (...TRUNCATED)
[-0.07373046875,-0.09619140625,-0.09375,-0.091796875,-0.08154296875,-0.07763671875,-0.09375,-0.08837(...TRUNCATED)
[ 1659, 1951, 1632, 1791, 1730, 1610, 1532, 1644, 1626, 1574 ]
[ -122.5, -188, -153, -165, -141, -124.5, -143, -145, -118, -126 ]
["<think>\nOkay, let's see. I need to convert the spherical coordinates (ρ, θ, φ) = (12, 7π/6, (...TRUNCATED)
[ -0.1630859375 ]
[ 1829 ]
[ -298 ]
"Let \\( P(x) = 0 \\) be a polynomial equation of the least possible degree with rational coefficien(...TRUNCATED)
"Let \\( P(x) = 0 \\) be a polynomial equation of the least possible degree with rational coefficien(...TRUNCATED)
"<think>\nOkay, so I need to find the product of all the roots of the polynomial P(x) = 0 with the l(...TRUNCATED)
["<think>\nOkay, so I need to find the product of all the roots of the polynomial equation P(x) = 0,(...TRUNCATED)
[-0.15234375,-0.142578125,-0.1328125,-0.1220703125,-0.11279296875,-0.11767578125,-0.1240234375,-0.12(...TRUNCATED)
[ 3434, 2991, 2721, 2432, 2338, 3163, 2607, 3357, 2521, 2346 ]
[ -524, -426, -360, -298, -264, -372, -324, -412, -356, -290 ]
["<think>\nOkay, so I need to find the product of all the roots of the polynomial P(x) = 0 with the (...TRUNCATED)
[ -0.330078125 ]
[ 2848 ]
[ -940 ]
"The number of seashells collected by 13 boys and \\( n \\) girls is \\( n^2 + 10n - 18 \\). If each(...TRUNCATED)
"The number of seashells collected by 13 boys and \\( n \\) girls is \\( n^2 + 10n - 18 \\). If each(...TRUNCATED)
"<think>\nOkay, let's see. So the problem says that 13 boys and n girls collected a total of n² + 1(...TRUNCATED)
["<think>\nOkay, let's see. The problem says that 13 boys and n girls collected a total of n² + 10n(...TRUNCATED)
[-0.1142578125,-0.099609375,-0.13671875,-0.1474609375,-0.1650390625,-0.09814453125,-0.1201171875,-0.(...TRUNCATED)
[ 2123, 2326, 2350, 2575, 2351, 2027, 2925, 2457, 1866, 2222 ]
[ -243, -232, -320, -380, -388, -199, -352, -316, -232, -244 ]
["<think>\nOkay, let's see. So the problem says that 13 boys and n girls collected a total of n² + (...TRUNCATED)
[ -0.279296875 ]
[ 2408 ]
[ -672 ]
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