AffineEquiv.sOppSide_map_iff
∀ {R : Type u_1} {V : Type u_2} {V' : Type u_3} {P : Type u_4} {P' : Type u_5} [inst : CommRing R]
[inst_1 : PartialOrder R] [inst_2 : IsStrictOrderedRing R] [inst_3 : AddCommGroup V] [inst_4 : Module R V]
[inst_5 : AddTorsor V P] [inst_6 : AddCommGroup V'] [inst_7 : Module R V'] [inst_8 : AddTorsor V' P']
{s : AffineSubspace R P} {x y : P} (f : P ≃ᵃ[R] P'), (AffineSubspace.map (↑f) s).SOppSide (f x) (f y) ↔ s.SOppSide x y- Defined in
- Mathlib.Analysis.Convex.Side
- Cited by
- 0 results in Mathlib
- Foundations
- Depth 35 from the axioms · uses propext, Classical.choice, Quot.sound
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Cites14
Mathlib declarations this one mentions in its statement or cites explicitly in its proof. Plumbing is filtered out.
- DFunLike.coestatement and proof · cited by 62,936
- Modulestatement and proof · cited by 20,661
- CommRingstatement and proof · cited by 17,173
- AddCommGroupstatement and proof · cited by 12,871
- PartialOrderstatement and proof · cited by 6,410
- IsStrictOrderedRingstatement and proof · cited by 2,490
- AddTorsorstatement and proof · cited by 1,657
- AffineSubspacestatement and proof · cited by 871
- AffineEquivstatement and proof · cited by 191
- AffineSubspace.mapstatement · cited by 78
- AffineEquiv.toAffineMapstatement and proof · cited by 65
- AffineSubspace.SOppSidestatement · cited by 56
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