AffineSubspace.linear_topEquiv
∀ (k : Type u_1) (V : Type u_2) (P : Type u_3) [inst : Ring k] [inst_1 : AddCommGroup V] [inst_2 : Module k V] [S : AddTorsor V P], (AffineSubspace.topEquiv k V P).linear = (LinearEquiv.ofEq ⊤.direction ⊤ ⋯).trans Submodule.topEquiv
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- Foundations
- Depth 68 from the axioms · uses propext, Classical.choice, Quot.sound
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Cites16
Mathlib declarations this one mentions in its statement or cites explicitly in its proof. Plumbing is filtered out.
- Modulestatement and proof · cited by 20,661
- RingHom.idstatement · cited by 18,349
- AddCommGroupstatement and proof · cited by 12,871
- Top.topstatement · cited by 9,680
- Ringstatement and proof · cited by 7,463
- Submodulestatement · cited by 7,192
- LinearEquivstatement · cited by 3,317
- AddTorsorstatement and proof · cited by 1,657
- AffineSubspacestatement · cited by 871
- AffineSubspace.directionstatement · cited by 339
- LinearEquiv.transstatement · cited by 298
- LinearEquiv.ofEqstatement · cited by 32
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