Theorems · Theorem · algebraic geometry
SheafOfModules.Presentation.map_relations_I
∀ {C : Type u₁} [inst : CategoryTheory.Category.{v₁, u₁} C] {J : CategoryTheory.GrothendieckTopology C}
{R : CategoryTheory.Sheaf J RingCat} [inst_1 : CategoryTheory.HasSheafify J AddCommGrpCat]
[inst_2 : J.WEqualsLocallyBijective AddCommGrpCat] {C' : Type u₂} [inst_3 : CategoryTheory.Category.{v₂, u₂} C']
{J' : CategoryTheory.GrothendieckTopology C'} {S : CategoryTheory.Sheaf J' RingCat}
[inst_4 : CategoryTheory.HasSheafify J' AddCommGrpCat] [inst_5 : J'.WEqualsLocallyBijective AddCommGrpCat]
{M : SheafOfModules R} (P : M.Presentation) (F : CategoryTheory.Functor (SheafOfModules R) (SheafOfModules S))
[inst_6 :
CategoryTheory.Limits.PreservesColimitsOfSize.{u, u, max u u₁, max u u₂, max (max (u + 1) u₁) v₁,
max (max (u + 1) u₂) v₂}
F]
(η : SheafOfModules.unit S ≅ F.obj (SheafOfModules.unit R)), (P.map F η).relations.I = P.relations.I- Cited by
- 0 results in Mathlib
- Foundations
- Depth 116 from the axioms · uses propext, Classical.choice, Quot.sound
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