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Theorems · Definition · category theory

CategoryTheory.Functor.mapBifunctorHomologicalComplexObj

{C₁ : Type u_1} →
  {C₂ : Type u_2} →
    {D : Type u_3} →
      [inst : CategoryTheory.Category.{v_1, u_1} C₁] →
        [inst_1 : CategoryTheory.Category.{v_2, u_2} C₂] →
          [inst_2 : CategoryTheory.Category.{v_3, u_3} D] →
            [inst_3 : CategoryTheory.Limits.HasZeroMorphisms C₁] →
              [inst_4 : CategoryTheory.Limits.HasZeroMorphisms C₂] →
                [inst_5 : CategoryTheory.Limits.HasZeroMorphisms D] →
                  (F : CategoryTheory.Functor C₁ (CategoryTheory.Functor C₂ D)) →
                    {I₁ : Type u_4} →
                      {I₂ : Type u_5} →
                        {c₁ : ComplexShape I₁} →
                          (c₂ : ComplexShape I₂) →
                            [F.PreservesZeroMorphisms] →
                              [∀ (X₁ : C₁), (F.obj X₁).PreservesZeroMorphisms] →
                                HomologicalComplex C₁ c₁ →
                                  CategoryTheory.Functor (HomologicalComplex C₂ c₂) (HomologicalComplex₂ D c₁ c₂)

Auxiliary definition for mapBifunctorHomologicalComplex.

Defined in
Mathlib.Algebra.Homology.Bifunctor
Cited by
5 results in Mathlib
Foundations
Depth 27 from the axioms · uses propext, Classical.choice, Quot.sound
Assumes
CategoryTheory.CategoryCategoryTheory.CategoryCategoryTheory.CategoryCategoryTheory.Limits.HasZeroMorphismsCategoryTheory.Limits.HasZeroMorphismsCategoryTheory.Limits.HasZeroMorphismsCategoryTheory.Functor.PreservesZeroMorphismsCategoryTheory.Functor.PreservesZeroMorphisms

Around this declaration

Dashed lines are statement dependencies; solid lines are citations in proofs.

CategoryTheory.Functor.mapBifunctorHomologicalComplex · cited by 35Functor.mapBifunctorHomol…CategoryTheory.Functor.mapBifunctorHomologicalComplex_map_app_f_f · cited by 1Functor.mapBifunctorHomol…CategoryTheory.Functor.mapBifunctorHomologicalComplexObj_map_f_f · cited by 0Functor.mapBifunctorHomol…CategoryTheory.Functor.mapBifunctorHomologicalComplexObj_obj_X_X · cited by 0Functor.mapBifunctorHomol…CategoryTheory.Functor.mapBifunctorHomologicalComplexObj_obj_X_d · cited by 0Functor.mapBifunctorHomol…CategoryTheory.Functor.mapBifunctorHomologicalComplexObj_obj_d_f · cited by 0Functor.mapBifunctorHomol…CategoryTheory.Category · cited by 32673CategoryTheory.CategoryQuiver.Hom · cited by 32603Quiver.HomCategoryTheory.Functor.obj · cited by 19642Functor.objCategoryTheory.Functor · cited by 16252CategoryTheory.FunctorCategoryTheory.Functor.map · cited by 8698Functor.mapCategoryTheory.NatTrans.app · cited by 7406NatTrans.appCategoryTheory.Limits.HasZeroMorphisms · cited by 3275Limits.HasZeroMorphismsHomologicalComplex.X · cited by 1839HomologicalComplex.XHomologicalComplex · cited by 1691HomologicalComplexComplexShape · cited by 1684ComplexShapeHomologicalComplex.Hom.f · cited by 845Hom.fHomologicalComplex.d · cited by 598HomologicalComplex.dComplexShape.Rel · cited by 518ComplexShape.RelCategoryTheory.Functor.PreservesZeroMorphisms · cited by 458Functor.PreservesZeroMorp…HomologicalComplex₂ · cited by 153HomologicalComplex₂Functor.mapBifunctorHomologic…CITED BYCITES

Cites18

Mathlib declarations this one mentions in its statement or cites explicitly in its proof. Plumbing is filtered out.

Cited by6

Results whose statement or proof uses this declaration.