Theorems · Theorem · algebraic topology
Bundle.Pretrivialization.IsLinear.linear
∀ {R : Type u_1} {B : Type u_2} {F : Type u_3} {E : B → Type u_4} {inst : Semiring R} {inst_1 : TopologicalSpace F}
{inst_2 : TopologicalSpace B} {inst_3 : AddCommMonoid F} {inst_4 : Module R F}
{inst_5 : (x : B) → AddCommMonoid (E x)} {inst_6 : (x : B) → Module R (E x)}
{e : Bundle.Pretrivialization F Bundle.TotalSpace.proj} [self : Bundle.Pretrivialization.IsLinear R e],
∀ b ∈ e.baseSet, IsLinearMap R fun x => (↑e ⟨b, x⟩).2- Defined in
- Mathlib.Topology.VectorBundle.Basic
- Cited by
- 2 results in Mathlib
- Foundations
- Depth 4 from the axioms · uses no axioms
Around this declaration
Dashed lines are statement dependencies; solid lines are citations in proofs.
Cites12
Mathlib declarations this one mentions in its statement or cites explicitly in its proof. Plumbing is filtered out.
- Setstatement · cited by 53,352
- TopologicalSpacestatement and proof · cited by 24,529
- Modulestatement and proof · cited by 20,661
- Semiringstatement and proof · cited by 13,802
- AddCommMonoidstatement and proof · cited by 12,281
- Bundle.TotalSpacestatement · cited by 766
- Bundle.TotalSpace.projstatement and proof · cited by 447
- Bundle.Pretrivializationstatement and proof · cited by 111
- Bundle.Pretrivialization.baseSetstatement · cited by 80
- Bundle.Pretrivialization.toFun'statement · cited by 53
- IsLinearMapstatement · cited by 41
- Bundle.Pretrivialization.IsLinearstatement and proof · cited by 21
Cited by2
Results whose statement or proof uses this declaration.
- VectorPrebundle.linear_trivializationOfMemPretrivializationAtlasproof · cited by 1
- Bundle.Pretrivialization.linearproof · cited by 0