url stringclasses 147
values | commit stringclasses 147
values | file_path stringlengths 7 101 | full_name stringlengths 1 94 | start stringlengths 6 10 | end stringlengths 6 11 | tactic stringlengths 1 11.2k | state_before stringlengths 3 2.09M | state_after stringlengths 6 2.09M | input stringlengths 73 2.09M |
|---|---|---|---|---|---|---|---|---|---|
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | have hv : ∀ v : TangentSpace K z, df (0, v) = df1 v := by
intro v
have d : HasMFDerivAt K L (uncurry f ∘ fun x ↦ (y, x)) z (df.comp
((0 : TangentSpace K z →L[𝕜] TangentSpace J y).prod
(ContinuousLinearMap.id 𝕜 (TangentSpace K z)))) :=
fh.comp z ((hasMFDerivAt_const _ _ _ _).prod (hasMFDerivAt_id... | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | Please generate a tactic in lean4 to solve the state.
STATE:
case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : Co... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | have e : (u, v) = (u, 0) + (0, v) := by simp only [Prod.mk_add_mk, add_zero, zero_add] | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | Please generate a tactic in lean4 to solve the state.
STATE:
case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : Co... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | nth_rw 1 [e] | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | Please generate a tactic in lean4 to solve the state.
STATE:
case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : Co... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | rw [map_add] | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | Please generate a tactic in lean4 to solve the state.
STATE:
case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : Co... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | exact congr_arg₂ _ (hu u) (hv v) | case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case h
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : Co... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | rw [e] at fh | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | exact fh | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | intro u | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | have d : HasMFDerivAt J L (uncurry f ∘ fun x ↦ (x, z)) y
(df.comp ((ContinuousLinearMap.id 𝕜 (TangentSpace J y)).prod 0)) :=
fh.comp y ((hasMFDerivAt_id _ _).prod (hasMFDerivAt_const _ _ _ _)) | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | simp only [hasMFDerivAt_unique fh0 d] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | refine Eq.trans (congr_arg _ ?_) (ContinuousLinearMap.comp_apply _ _ _).symm | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | refine Eq.trans ?_ (ContinuousLinearMap.prod_apply _ _ _).symm | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | simp only [ContinuousLinearMap.zero_apply, Prod.mk.injEq, and_true] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | exact rfl | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | intro v | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | have d : HasMFDerivAt K L (uncurry f ∘ fun x ↦ (y, x)) z (df.comp
((0 : TangentSpace K z →L[𝕜] TangentSpace J y).prod
(ContinuousLinearMap.id 𝕜 (TangentSpace K z)))) :=
fh.comp z ((hasMFDerivAt_const _ _ _ _).prod (hasMFDerivAt_id _ _)) | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | rw [hasMFDerivAt_unique fh1 d] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | refine Eq.trans (congr_arg _ ?_) (ContinuousLinearMap.comp_apply _ _ _).symm | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | refine Eq.trans ?_ (ContinuousLinearMap.prod_apply _ _ _).symm | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | simp only [Prod.mk.injEq] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | exact ⟨(ContinuousLinearMap.zero_apply _).symm, rfl⟩ | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_uncurry | [645, 1] | [686, 35] | simp only [Prod.mk_add_mk, add_zero, zero_add] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_comp2 | [689, 1] | [701, 11] | have fh := (fd.hasMFDerivAt_uncurry fh0 fh1).comp x (gh.prod hh) | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_comp2 | [689, 1] | [701, 11] | simp only [ContinuousLinearMap.add_comp, ContinuousLinearMap.comp_assoc,
ContinuousLinearMap.fst_comp_prod, ContinuousLinearMap.snd_comp_prod] at fh | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | MDifferentiableAt.hasMFDerivAt_comp2 | [689, 1] | [701, 11] | exact fh | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | hasMFDerivAt_iff_hasFDerivAt' | [705, 1] | [715, 51] | simp only [HasMFDerivAt, ModelWithCorners.range_eq_univ, hasFDerivWithinAt_univ,
writtenInExtChartAt, extChartAt_eq_refl, Function.comp, PartialEquiv.refl_coe,
PartialEquiv.refl_symm, id] | 𝕜 : Type
inst✝³⁴ : NontriviallyNormedField 𝕜
E A : Type
inst✝³³ : NormedAddCommGroup E
inst✝³² : NormedSpace 𝕜 E
inst✝³¹ : CompleteSpace E
inst✝³⁰ : TopologicalSpace A
F B : Type
inst✝²⁹ : NormedAddCommGroup F
inst✝²⁸ : NormedSpace 𝕜 F
inst✝²⁷ : CompleteSpace F
inst✝²⁶ : TopologicalSpace B
G C : Type
inst✝²⁵ : Norm... | 𝕜 : Type
inst✝³⁴ : NontriviallyNormedField 𝕜
E A : Type
inst✝³³ : NormedAddCommGroup E
inst✝³² : NormedSpace 𝕜 E
inst✝³¹ : CompleteSpace E
inst✝³⁰ : TopologicalSpace A
F B : Type
inst✝²⁹ : NormedAddCommGroup F
inst✝²⁸ : NormedSpace 𝕜 F
inst✝²⁷ : CompleteSpace F
inst✝²⁶ : TopologicalSpace B
G C : Type
inst✝²⁵ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝³⁴ : NontriviallyNormedField 𝕜
E A : Type
inst✝³³ : NormedAddCommGroup E
inst✝³² : NormedSpace 𝕜 E
inst✝³¹ : CompleteSpace E
inst✝³⁰ : TopologicalSpace A
F B : Type
inst✝²⁹ : NormedAddCommGroup F
inst✝²⁸ : NormedSpace 𝕜 F
inst✝²⁷ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | hasMFDerivAt_iff_hasFDerivAt' | [705, 1] | [715, 51] | exact ⟨fun x ↦ x.2, fun d ↦ ⟨d.continuousAt, d⟩⟩ | 𝕜 : Type
inst✝³⁴ : NontriviallyNormedField 𝕜
E A : Type
inst✝³³ : NormedAddCommGroup E
inst✝³² : NormedSpace 𝕜 E
inst✝³¹ : CompleteSpace E
inst✝³⁰ : TopologicalSpace A
F B : Type
inst✝²⁹ : NormedAddCommGroup F
inst✝²⁸ : NormedSpace 𝕜 F
inst✝²⁷ : CompleteSpace F
inst✝²⁶ : TopologicalSpace B
G C : Type
inst✝²⁵ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝³⁴ : NontriviallyNormedField 𝕜
E A : Type
inst✝³³ : NormedAddCommGroup E
inst✝³² : NormedSpace 𝕜 E
inst✝³¹ : CompleteSpace E
inst✝³⁰ : TopologicalSpace A
F B : Type
inst✝²⁹ : NormedAddCommGroup F
inst✝²⁸ : NormedSpace 𝕜 F
inst✝²⁷ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | generalize ht : {x | HolomorphicAt I J f x} = t | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | have o : IsOpen t := by rw [← ht]; exact isOpen_holomorphicAt | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | have sub : s ⊆ t := by rw [← ht]; exact fa | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | replace fa : HolomorphicOn I J f t := by
simp only [HolomorphicOn, mem_setOf_eq, imp_self, implies_true, ← ht] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | refine ContinuousOn.mono ?_ (preimage_mono sub) | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | apply (fa.smoothOn.contMDiffOn.continuousOn_tangentMapWithin le_top o.uniqueMDiffOn).congr | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | intro x m | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | simp only [mem_preimage] at m | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | rw [tangentMapWithin_eq_tangentMap (o.uniqueMDiffOn _ m) (fa _ m).mdifferentiableAt] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | rw [← ht] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | exact isOpen_holomorphicAt | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | rw [← ht] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | exact fa | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | HolomorphicOn.continuousOn_tangentMap | [719, 1] | [729, 87] | simp only [HolomorphicOn, mem_setOf_eq, imp_self, implies_true, ← ht] | 𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteSpace F
inst✝¹⁸ : TopologicalSpace B
G C : Type
inst✝¹⁷ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁶ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁵ : NormedAddCommGroup E
inst✝²⁴ : NormedSpace 𝕜 E
inst✝²³ : CompleteSpace E
inst✝²² : TopologicalSpace A
F B : Type
inst✝²¹ : NormedAddCommGroup F
inst✝²⁰ : NormedSpace 𝕜 F
inst✝¹⁹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | extChartAt_symm_map_nhds' | [757, 1] | [761, 66] | convert extChartAt_symm_map_nhds (mem_extChartAt_target I x) | 𝕜 : Type
inst✝²⁹ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁸ : NormedAddCommGroup E
inst✝²⁷ : NormedSpace 𝕜 E
inst✝²⁶ : CompleteSpace E
inst✝²⁵ : TopologicalSpace A
F B : Type
inst✝²⁴ : NormedAddCommGroup F
inst✝²³ : NormedSpace 𝕜 F
inst✝²² : CompleteSpace F
inst✝²¹ : TopologicalSpace B
G C : Type
inst✝²⁰ : Norm... | case h.e'_3.h.e'_3
𝕜 : Type
inst✝²⁹ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁸ : NormedAddCommGroup E
inst✝²⁷ : NormedSpace 𝕜 E
inst✝²⁶ : CompleteSpace E
inst✝²⁵ : TopologicalSpace A
F B : Type
inst✝²⁴ : NormedAddCommGroup F
inst✝²³ : NormedSpace 𝕜 F
inst✝²² : CompleteSpace F
inst✝²¹ : TopologicalSpace B
G C : ... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁹ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁸ : NormedAddCommGroup E
inst✝²⁷ : NormedSpace 𝕜 E
inst✝²⁶ : CompleteSpace E
inst✝²⁵ : TopologicalSpace A
F B : Type
inst✝²⁴ : NormedAddCommGroup F
inst✝²³ : NormedSpace 𝕜 F
inst✝²² : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | extChartAt_symm_map_nhds' | [757, 1] | [761, 66] | simp only [PartialEquiv.left_inv _ (mem_extChartAt_source I x)] | case h.e'_3.h.e'_3
𝕜 : Type
inst✝²⁹ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁸ : NormedAddCommGroup E
inst✝²⁷ : NormedSpace 𝕜 E
inst✝²⁶ : CompleteSpace E
inst✝²⁵ : TopologicalSpace A
F B : Type
inst✝²⁴ : NormedAddCommGroup F
inst✝²³ : NormedSpace 𝕜 F
inst✝²² : CompleteSpace F
inst✝²¹ : TopologicalSpace B
G C : ... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case h.e'_3.h.e'_3
𝕜 : Type
inst✝²⁹ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁸ : NormedAddCommGroup E
inst✝²⁷ : NormedSpace 𝕜 E
inst✝²⁶ : CompleteSpace E
inst✝²⁵ : TopologicalSpace A
F B : Type
inst✝²⁴ : NormedAddCommGroup F
inst✝²³ : NormedSpace 𝕜 F
... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | have p := Module.punctured_nhds_neBot 𝕜 E (extChartAt I x x) | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | simp only [← Filter.frequently_true_iff_neBot, frequently_nhdsWithin_iff, ←
extChartAt_symm_map_nhds' I x, Filter.frequently_map, true_and_iff,
mem_compl_singleton_iff] at p ⊢ | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | apply p.mp | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | apply ((isOpen_extChartAt_target I x).eventually_mem (mem_extChartAt_target I x)).mp | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | refine eventually_of_forall fun y m h ↦ ?_ | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | contrapose h | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | simp only [not_not] at m h ⊢ | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | nth_rw 2 [← h] | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | AnalyticManifold.punctured_nhds_neBot | [765, 1] | [775, 34] | rw [PartialEquiv.right_inv _ m] | 𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteSpace F
inst✝²⁰ : TopologicalSpace B
G C : Type
inst✝¹⁹ : Norm... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜 : Type
inst✝²⁸ : NontriviallyNormedField 𝕜
E A : Type
inst✝²⁷ : NormedAddCommGroup E
inst✝²⁶ : NormedSpace 𝕜 E
inst✝²⁵ : CompleteSpace E
inst✝²⁴ : TopologicalSpace A
F B : Type
inst✝²³ : NormedAddCommGroup F
inst✝²² : NormedSpace 𝕜 F
inst✝²¹ : CompleteS... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | mfderiv_comp' | [778, 1] | [790, 40] | apply mfderiv_comp | 𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
inst✝³² : CompleteSpace F
inst✝³¹ : TopologicalSpace B
G C : Type
inst✝³... | case hg
𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
inst✝³² : CompleteSpace F
inst✝³¹ : TopologicalSpace B
G C : Typ... | Please generate a tactic in lean4 to solve the state.
STATE:
𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
inst✝³² : C... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | mfderiv_comp' | [778, 1] | [790, 40] | repeat assumption | case hg
𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
inst✝³² : CompleteSpace F
inst✝³¹ : TopologicalSpace B
G C : Typ... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case hg
𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
ins... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/AnalyticManifold.lean | mfderiv_comp' | [778, 1] | [790, 40] | assumption | case hf
𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
inst✝³² : CompleteSpace F
inst✝³¹ : TopologicalSpace B
G C : Typ... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case hf
𝕜✝ : Type
inst✝³⁹ : NontriviallyNormedField 𝕜✝
E✝ A : Type
inst✝³⁸ : NormedAddCommGroup E✝
inst✝³⁷ : NormedSpace 𝕜✝ E✝
inst✝³⁶ : CompleteSpace E✝
inst✝³⁵ : TopologicalSpace A
F B : Type
inst✝³⁴ : NormedAddCommGroup F
inst✝³³ : NormedSpace 𝕜✝ F
ins... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticOn_iff_differentiableOn | [31, 1] | [36, 56] | constructor | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ AnalyticOn ℂ f s ↔ DifferentiableOn ℂ f s | case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ AnalyticOn ℂ f s → DifferentiableOn ℂ f s
case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : ... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ AnalyticOn ℂ f s ↔ DifferentiableOn ℂ f s
TACTI... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticOn_iff_differentiableOn | [31, 1] | [36, 56] | exact AnalyticOn.differentiableOn | case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ AnalyticOn ℂ f s → DifferentiableOn ℂ f s | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ AnalyticOn ℂ f s → DifferentiableOn ℂ f... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticOn_iff_differentiableOn | [31, 1] | [36, 56] | intro d z zs | case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ DifferentiableOn ℂ f s → AnalyticOn ℂ f s | case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
d : DifferentiableOn ℂ f s
z : ℂ
zs : z ∈ s
⊢ AnalyticAt ℂ f z | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
⊢ DifferentiableOn ℂ f s → AnalyticOn ℂ ... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticOn_iff_differentiableOn | [31, 1] | [36, 56] | exact DifferentiableOn.analyticAt d (o.mem_nhds zs) | case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
d : DifferentiableOn ℂ f s
z : ℂ
zs : z ∈ s
⊢ AnalyticAt ℂ f z | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
s : Set ℂ
o : IsOpen s
d : DifferentiableOn ℂ f s
z : ℂ
zs : z ... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticOn_univ_iff_differentiable | [39, 1] | [42, 52] | simp only [← differentiableOn_univ] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
⊢ AnalyticOn ℂ f univ ↔ Differentiable ℂ f | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
⊢ AnalyticOn ℂ f univ ↔ DifferentiableOn ℂ f univ | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
⊢ AnalyticOn ℂ f univ ↔ Differentiable ℂ f
TACTIC:
|
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticOn_univ_iff_differentiable | [39, 1] | [42, 52] | exact analyticOn_iff_differentiableOn isOpen_univ | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
⊢ AnalyticOn ℂ f univ ↔ DifferentiableOn ℂ f univ | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
⊢ AnalyticOn ℂ f univ ↔ DifferentiableOn ℂ f univ
TACTIC:
|
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | constructor | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ AnalyticAt ℂ f c ↔ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z | case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ AnalyticAt ℂ f c → ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ AnalyticAt ℂ f c ↔ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
TA... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | intro fa | case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ AnalyticAt ℂ f c → ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z | case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
fa : AnalyticAt ℂ f c
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z | Please generate a tactic in lean4 to solve the state.
STATE:
case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ AnalyticAt ℂ f c → ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | rcases fa.exists_ball_analyticOn with ⟨r, rp, fa⟩ | case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
fa : AnalyticAt ℂ f c
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z | case mp.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
fa✝ : AnalyticAt ℂ f c
r : ℝ
rp : 0 < r
fa : AnalyticOn ℂ f (ball c r)
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, Differentiable... | Please generate a tactic in lean4 to solve the state.
STATE:
case mp
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
fa : AnalyticAt ℂ f c
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, Differentiable... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | exact fa.differentiableOn.eventually_differentiableAt (Metric.ball_mem_nhds _ rp) | case mp.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
fa✝ : AnalyticAt ℂ f c
r : ℝ
rp : 0 < r
fa : AnalyticOn ℂ f (ball c r)
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, Differentiable... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case mp.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
fa✝ : AnalyticAt ℂ f c
r : ℝ
rp : 0 < r
fa : A... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | intro d | case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ (∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z) → AnalyticAt ℂ f c | case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
⊢ AnalyticAt ℂ f c | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
⊢ (∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z) → Analytic... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | rcases Metric.eventually_nhds_iff.mp d with ⟨r, rp, d⟩ | case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
⊢ AnalyticAt ℂ f c | case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → Differentia... | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
⊢ Analytic... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | have dr : DifferentiableOn ℂ f (ball c r) := by
intro z zs; simp only [Metric.mem_ball] at zs; exact (d zs).differentiableWithinAt | case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → Differentia... | case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → Differentia... | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | rw [← analyticOn_iff_differentiableOn isOpen_ball] at dr | case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → Differentia... | case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → Differentia... | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | exact dr _ (Metric.mem_ball_self rp) | case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → Differentia... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case mpr.intro.intro
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | intro z zs | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → DifferentiableAt ℂ f y
⊢ Differe... | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → DifferentiableAt ℂ f y
z : ℂ
zs ... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | simp only [Metric.mem_ball] at zs | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → DifferentiableAt ℂ f y
z : ℂ
zs ... | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → DifferentiableAt ℂ f y
z : ℂ
zs ... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_iff_eventually_differentiableAt | [45, 1] | [54, 41] | exact (d zs).differentiableWithinAt | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d : ∀ ⦃y : ℂ⦄, dist y c < r → DifferentiableAt ℂ f y
z : ℂ
zs ... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f : ℂ → E
c : ℂ
d✝ : ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ f z
r : ℝ
rp : r > 0
d... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticOn.exp | [57, 1] | [58, 76] | rw [analyticOn_univ_iff_differentiable] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
⊢ AnalyticOn ℂ Complex.exp univ | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
⊢ Differentiable ℂ Complex.exp | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
⊢ AnalyticOn ℂ Complex.exp univ
TACTIC:
|
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticOn.exp | [57, 1] | [58, 76] | exact Complex.differentiable_exp | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
⊢ Differentiable ℂ Complex.exp | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
⊢ Differentiable ℂ Complex.exp
TACTIC:
|
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_log | [65, 1] | [69, 35] | rw [analyticAt_iff_eventually_differentiableAt] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ AnalyticAt ℂ log c | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ log z | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ AnalyticAt ℂ log c
TACTIC:
|
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_log | [65, 1] | [69, 35] | filter_upwards [Complex.isOpen_slitPlane.eventually_mem m] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ log z | case h
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ ∀ a ∈ Complex.slitPlane, DifferentiableAt ℂ log a | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ ∀ᶠ (z : ℂ) in 𝓝 c, DifferentiableAt ℂ log z
TAC... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_log | [65, 1] | [69, 35] | intro z m | case h
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ ∀ a ∈ Complex.slitPlane, DifferentiableAt ℂ log a | case h
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m✝ : c ∈ Complex.slitPlane
z : ℂ
m : z ∈ Complex.slitPlane
⊢ DifferentiableAt ℂ log z | Please generate a tactic in lean4 to solve the state.
STATE:
case h
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m : c ∈ Complex.slitPlane
⊢ ∀ a ∈ Complex.slitPlane, DifferentiableAt... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | analyticAt_log | [65, 1] | [69, 35] | exact differentiableAt_id.clog m | case h
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m✝ : c ∈ Complex.slitPlane
z : ℂ
m : z ∈ Complex.slitPlane
⊢ DifferentiableAt ℂ log z | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case h
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
c : ℂ
m✝ : c ∈ Complex.slitPlane
z : ℂ
m : z ∈ Complex.slitPlane
⊢ Differen... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | have fc : f c ≠ 0 := Complex.slitPlane_ne_zero m | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
⊢ AnalyticAt ℂ (fun z => f z ^ g z) c | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
⊢ AnalyticAt ℂ (fun z => f z ^ g z) c | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | have e : (fun z ↦ f z ^ g z) =ᶠ[𝓝 c] fun z ↦ Complex.exp (Complex.log (f z) * g z) := by
refine (fa.continuousAt.eventually_ne fc).mp (Filter.eventually_of_forall ?_)
intro z fz; simp only [fz, Complex.cpow_def, if_false] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
⊢ AnalyticAt ℂ (fun z => f z ^ g z) c | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
e : (𝓝 c).EventuallyEq (fun z => f z ^ ... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | rw [analyticAt_congr e] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
e : (𝓝 c).EventuallyEq (fun z => f z ^ ... | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
e : (𝓝 c).EventuallyEq (fun z => f z ^ ... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | exact AnalyticAt.exp.comp ((fa.log m).mul ga) | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
e : (𝓝 c).EventuallyEq (fun z => f z ^ ... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | refine (fa.continuousAt.eventually_ne fc).mp (Filter.eventually_of_forall ?_) | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
⊢ (𝓝 c).EventuallyEq (fun z => f z ^ g ... | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
⊢ ∀ (x : E), f x ≠ 0 → (fun z => f z ^ g... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | intro z fz | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
⊢ ∀ (x : E), f x ≠ 0 → (fun z => f z ^ g... | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
z : E
fz : f z ≠ 0
⊢ (fun z => f z ^ g z... | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/Analytic/HolomorphicUpstream.lean | AnalyticAt.cpow | [82, 1] | [89, 48] | simp only [fz, Complex.cpow_def, if_false] | E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.slitPlane
fc : f c ≠ 0
z : E
fz : f z ≠ 0
⊢ (fun z => f z ^ g z... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
E : Type
inst✝⁵ : NormedAddCommGroup E
inst✝⁴ : NormedSpace ℂ E
inst✝³ : CompleteSpace E
F : Type
inst✝² : NormedAddCommGroup F
inst✝¹ : NormedSpace ℂ F
inst✝ : CompleteSpace F
f g : E → ℂ
c : E
fa : AnalyticAt ℂ f c
ga : AnalyticAt ℂ g c
m : f c ∈ Complex.sl... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated | [64, 1] | [70, 42] | have fa : AnalyticAt ℂ (fun w ↦ f w - f z) z := (n.analyticOn z zs).sub analyticAt_const | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | Please generate a tactic in lean4 to solve the state.
STATE:
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : Topologica... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated | [64, 1] | [70, 42] | cases' fa.eventually_eq_zero_or_eventually_ne_zero with h h | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | case inl
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | Please generate a tactic in lean4 to solve the state.
STATE:
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : Topologica... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated | [64, 1] | [70, 42] | have b := h.and_frequently (n.nonconst z zs) | case inl
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | case inl
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | Please generate a tactic in lean4 to solve the state.
STATE:
case inl
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated | [64, 1] | [70, 42] | simp only [sub_eq_zero, Ne, and_not_self_iff, Filter.frequently_false] at b | case inl
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case inl
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated | [64, 1] | [70, 42] | simp only [sub_ne_zero] at h | case inr
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | case inr
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | Please generate a tactic in lean4 to solve the state.
STATE:
case inr
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated | [64, 1] | [70, 42] | exact h | case inr
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case inr
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated' | [73, 1] | [76, 90] | by_cases h : f z = a | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | case pos
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | Please generate a tactic in lean4 to solve the state.
STATE:
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : Topologica... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated' | [73, 1] | [76, 90] | simp only [← h] | case pos
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | case pos
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | Please generate a tactic in lean4 to solve the state.
STATE:
case pos
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated' | [73, 1] | [76, 90] | exact n.isolated zs | case pos
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | case neg
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | Please generate a tactic in lean4 to solve the state.
STATE:
case pos
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | NontrivialAnalyticOn.isolated' | [73, 1] | [76, 90] | exact ((n.analyticOn _ zs).continuousAt.eventually_ne h).filter_mono nhdsWithin_le_nhds | case neg
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticMani... | no goals | Please generate a tactic in lean4 to solve the state.
STATE:
case neg
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : T... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | IsPreconnected.nontrivialAnalyticOn | [79, 1] | [88, 41] | contrapose ne | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | Please generate a tactic in lean4 to solve the state.
STATE:
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : Topologica... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | IsPreconnected.nontrivialAnalyticOn | [79, 1] | [88, 41] | simp only [not_forall, Filter.not_frequently, not_not] at ne | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | Please generate a tactic in lean4 to solve the state.
STATE:
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : Topologica... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | IsPreconnected.nontrivialAnalyticOn | [79, 1] | [88, 41] | rcases ne with ⟨z, zs, h⟩ | X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : AnalyticManifold 𝓘(ℂ... | case intro.intro
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : Anal... | Please generate a tactic in lean4 to solve the state.
STATE:
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : Topologica... |
https://github.com/girving/ray.git | 0be790285dd0fce78913b0cb9bddaffa94bd25f9 | Ray/AnalyticManifold/Nontrivial.lean | IsPreconnected.nontrivialAnalyticOn | [79, 1] | [88, 41] | simp only [not_exists, exists_and_left, not_and, not_not] | case intro.intro
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : Anal... | case intro.intro
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
inst✝¹ : TopologicalSpace U
inst✝ : ChartedSpace ℂ U
cmu : Anal... | Please generate a tactic in lean4 to solve the state.
STATE:
case intro.intro
X : Type
inst✝⁶ : TopologicalSpace X
S : Type
inst✝⁵ : TopologicalSpace S
inst✝⁴ : ChartedSpace ℂ S
cms : AnalyticManifold 𝓘(ℂ, ℂ) S
T : Type
inst✝³ : TopologicalSpace T
inst✝² : ChartedSpace ℂ T
cmt : AnalyticManifold 𝓘(ℂ, ℂ) T
U : Type
in... |
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