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https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Data/Setoid/Basic.lean
Setoid.eqvGen_le
[ 258, 1 ]
[ 259, 62 ]
[{"tactic": "rw [eqvGen_eq]", "annotated_tactic": ["rw [<a>eqvGen_eq</a>]", [{"full_name": "Setoid.eqvGen_eq", "def_path": "Mathlib/Data/Setoid/Basic.lean", "def_pos": [201, 9], "def_end_pos": [201, 18]}]], "state_before": "\u03b1 : Type u_1\n\u03b2 : Type u_2\nr : \u03b1 \u2192 \u03b1 \u2192 Prop\ns : Setoid \u03b1\nh...
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Order/Filter/Pointwise.lean
Filter.div_bot
[ 455, 1 ]
[ 456, 17 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Logic/Function/Basic.lean
Function.comp_update
[ 667, 1 ]
[ 669, 33 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/RingTheory/FractionalIdeal.lean
FractionalIdeal.spanSingleton_pow
[ 1367, 1 ]
[ 1370, 65 ]
[{"tactic": "induction' n with n hn", "annotated_tactic": ["induction' n with n hn", []], "state_before": "R : Type u_1\ninst\u271d\u2076 : CommRing R\nS : Submonoid R\nP : Type u_2\ninst\u271d\u2075 : CommRing P\ninst\u271d\u2074 : Algebra R P\nloc : IsLocalization S P\nR\u2081 : Type u_3\ninst\u271d\u00b3 : CommRing ...
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/MeasureTheory/Measure/Portmanteau.lean
MeasureTheory.le_measure_liminf_of_limsup_measure_compl_le
[ 131, 1 ]
[ 135, 94 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Data/Num/Lemmas.lean
PosNum.cast_to_znum
[ 1169, 1 ]
[ 1172, 74 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Algebra/Hom/Aut.lean
AddAut.conj_symm_apply
[ 290, 1 ]
[ 291, 6 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/RingTheory/FractionalIdeal.lean
FractionalIdeal.spanFinset_ne_zero
[ 1273, 1 ]
[ 1274, 56 ]
[{"tactic": "simp", "annotated_tactic": ["simp", []], "state_before": "R : Type u_1\ninst\u271d\u2076 : CommRing R\nS : Submonoid R\nP : Type u_2\ninst\u271d\u2075 : CommRing P\ninst\u271d\u2074 : Algebra R P\nloc : IsLocalization S P\nR\u2081 : Type u_3\ninst\u271d\u00b3 : CommRing R\u2081\nK : Type u_4\ninst\u271d\u0...
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Analysis/Normed/Group/Seminorm.lean
GroupNorm.coe_sup
[ 833, 1 ]
[ 834, 6 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Algebra/Order/Field/Basic.lean
add_thirds
[ 545, 1 ]
[ 547, 41 ]
[{"tactic": "rw [div_add_div_same, div_add_div_same, \u2190 two_mul, \u2190 add_one_mul 2 a, two_add_one_eq_three,\n mul_div_cancel_left a three_ne_zero]", "annotated_tactic": ["rw [<a>div_add_div_same</a>, <a>div_add_div_same</a>, \u2190 <a>two_mul</a>, \u2190 <a>add_one_mul</a> 2 a, <a>two_add_one_eq_three</a>,\n ...
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/NumberTheory/ArithmeticFunction.lean
Nat.ArithmeticFunction.zeta_apply
[ 449, 1 ]
[ 450, 6 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Probability/ProbabilityMassFunction/Constructions.lean
PMF.bernoulli_apply
[ 311, 1 ]
[ 311, 68 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Algebra/Ring/BooleanRing.lean
mul_self
[ 60, 1 ]
[ 61, 25 ]
[]
https://github.com/leanprover-community/mathlib4
3ce43c18f614b76e161f911b75a3e1ef641620ff
Mathlib/Order/Filter/Archimedean.lean
Int.comap_cast_atTop
[ 46, 9 ]
[ 49, 62 ]
[{"tactic": "exact_mod_cast hn", "annotated_tactic": ["exact_mod_cast hn", []], "state_before": "\u03b1 : Type u_1\nR : Type u_2\ninst\u271d\u00b9 : StrictOrderedRing R\ninst\u271d : Archimedean R\nr : R\nn : \u2115\nhn : r \u2264 \u2191n\n\u22a2 r \u2264 \u2191\u2191n", "state_after": "no goals"}]