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Subindex: projective  ..  Proper


projective

   Combinatorial and Geometrical Structures (OVERVIEW)
   Indecomposable Projective Modules (BASIC ALGEBRAS)
   Projective Automorphisms (SCHEMES)
   Projective Covers (BASIC ALGEBRAS)
   Projective Resolutions (BASIC ALGEBRAS)
   The Connection between Projective and Affine Planes (FINITE PLANES)

projective-affine

   The Connection between Projective and Affine Planes (FINITE PLANES)

projective-automorphism-group

   Scheme_projective-automorphism-group (Example H97E38)

projective-automorphisms

   Projective Automorphisms (SCHEMES)

projective-closure

   Scheme_projective-closure (Example H97E12)

projective-closure-incorrect

   Scheme_projective-closure-incorrect (Example H97E13)

projective-covers

   Projective Covers (BASIC ALGEBRAS)

projective-resolutions

   Projective Resolutions (BASIC ALGEBRAS)

ProjectiveClosure

   ProjectiveClosure(f) : MapSch -> MapSch
   ProjectiveClosure(A): Sch -> Sch
   ProjectiveClosure(C) : Sch -> Sch
   ProjectiveClosure(X) : Sch -> Sch

ProjectiveClosureMap

   PCMap(A) : Aff -> MapSch
   ProjectiveClosureMap(A) : Aff -> MapSch

ProjectiveCover

   ProjectiveCover(M) : ModAlg -> ModAlg, ModMatFldElt, SeqEnum[ModMatFldElt], SeqEnum[ModMatFldElt], SeqEnum[RngIntElt]

ProjectiveEmbedding

   ProjectiveEmbedding(P) : PlaneAff -> PlaneProj, PlanePtSet, PlaneLnSet, Map

ProjectiveFunction

   ProjectiveFunction(f) : FldFunFracSchElt -> FldFracElt
   ProjectiveFunction(f) : FldFunFracSchElt -> RngFunFracElt

ProjectiveGammaLinearGroup

   PGammaL(arguments)
   ProjectiveGammaLinearGroup(arguments)

ProjectiveGammaUnitaryGroup

   PGammaU(arguments)
   ProjectiveGammaUnitaryGroup(arguments)

ProjectiveGeneralLinearGroup

   PGL(arguments)
   ProjectiveGeneralLinearGroup(arguments)

ProjectiveGeneralOrthogonalGroup

   ProjectiveGeneralOrthogonalGroup(n, q) : RngIntElt, RngIntElt -> GrpPerm, {@ ModTupFldElt @}
   PGO(arguments)

ProjectiveGeneralOrthogonalGroupMinus

   ProjectiveGeneralOrthogonalGroupMinus(n, q) : RngIntElt, RngIntElt -> GrpPerm, {@ ModTupFldElt @}
   PGOMinus(arguments)

ProjectiveGeneralOrthogonalGroupPlus

   ProjectiveGeneralOrthogonalGroupPlus(n, q) : RngIntElt, RngIntElt -> GrpPerm, {@ ModTupFldElt @}
   PGOPlus(arguments)

ProjectiveGeneralUnitaryGroup

   PGU(arguments)
   ProjectiveGeneralUnitaryGroup(arguments)

Projectively

   IsProjectivelyIrreducible(R) : RootStr -> BoolElt
   IsProjectivelyIrreducible(R) : RootSys -> BoolElt

ProjectiveMap

   ProjectiveMap(f, Y) : FldFunFracSchElt, Sch -> MapSch
   ProjectiveMap(L, Y) : [FldFunFracSchElt], Sch -> MapSch

ProjectiveModule

   ProjectiveModule(B, i) : AlgBas, RngIntElt -> ModRng
   ProjectiveModule(B, S) : AlgBas, SeqEnum[RngIntElt] -> ModAlg, SeqEnum, SeqEnum

ProjectiveOmega

   POmega(arguments)
   ProjectiveOmega(arguments)

ProjectiveOmegaMinus

   POmegaMinus(arguments)
   ProjectiveOmegaMinus(arguments)

ProjectiveOmegaPlus

   POmegaPlus(arguments)
   ProjectiveOmegaPlus(arguments)

ProjectiveOrder

   ProjectiveOrder(a) : AlgMatElt -> RngIntElt
   ProjectiveOrder(A) : AlgMatElt -> RngIntElt, RngElt
   ProjectiveOrder(g) : GrpMatElt -> RngIntElt, RngElt

ProjectivePlane

   ProjectivePlane(k) : Rng -> Prj
   ProjectiveSpace(k,n) : Rng,RngIntElt -> Prj

ProjectiveRationalFunction

   ProjectiveRationalFunction(f) : FldFunFracSchElt -> FldFunRatMElt

ProjectiveResolution

   ProjectiveResolution(M, n) : ModAlg, RngIntElt -> ModCpx, ModMatFldElt
   ProjectiveResolution(M, n) : ModAlgBas, RngIntElt -> ModCpx, ModMatFldElt
   ProjectiveResolution(PR) : Rec -> ModCpx, ModMatFldElt

ProjectiveResolutionPGroup

   ProjectiveResolutionPGroup(PR) : Rec -> ModCpx

Projectives

   NumberOfProjectives(B) : AlgBas -> RngIntElt

ProjectiveSigmaLinearGroup

   PSigmaL(arguments)
   ProjectiveSigmaLinearGroup(arguments)

ProjectiveSigmaSymplecticGroup

   PSigmaSp(arguments)
   ProjectiveSigmaSymplecticGroup(arguments)

ProjectiveSigmaUnitaryGroup

   PSigmaU(arguments)
   ProjectiveSigmaUnitaryGroup(arguments)

ProjectiveSpace

   ProjectiveSpace(k,n) : Rng,RngIntElt -> Prj
   ProjectiveSpace(k,n) : Rng,RngIntElt -> Prj
   ProjectiveSpace(R) : RngMPol -> Prj

ProjectiveSpecialLinearGroup

   PSL(arguments)
   ProjectiveSpecialLinearGroup(arguments)

ProjectiveSpecialOrthogonalGroup

   ProjectiveSpecialOrthogonalGroup(n, q) : RngIntElt, RngIntElt -> GrpPerm, {@ ModTupFldElt @}
   PSO(arguments)

ProjectiveSpecialOrthogonalGroupMinus

   ProjectiveSpecialOrthogonalGroupMinus(n, q) : RngIntElt, RngIntElt -> GrpPerm, {@ ModTupFldElt @}
   PSOMinus(arguments)

ProjectiveSpecialOrthogonalGroupPlus

   ProjectiveSpecialOrthogonalGroupPlus(n, q) : RngIntElt, RngIntElt -> GrpPerm, {@ ModTupFldElt @}
   PSOPlus(arguments)

ProjectiveSpecialUnitaryGroup

   PSU(arguments)
   ProjectiveSpecialUnitaryGroup(arguments)

ProjectiveSuzukiGroup

   PSz(arguments)
   ProjectiveSuzukiGroup(arguments)

ProjectiveSymplecticGroup

   PSp(arguments)
   ProjectiveSymplecticGroup(arguments)

Projectivity

   Projectivity(A,M) : Aff,Mtrx -> MapAutSch

projectivity

   Scheme_projectivity (Example H97E37)

ProjPl

   Combinatorial and Geometrical Structures (OVERVIEW)

Prompt

   GetIgnorePrompt() : -> BoolElt
   SetIgnorePrompt(b) : BoolElt ->
   SetPrompt(s) : MonStgElt ->

prompt

   Prompt (OVERVIEW)

Proof

   GaloisProof(f, S) : RngUPolElt, GaloisData -> BoolElt

PRoot

   HasPRoot(R) : RngPad -> BoolElt

prop

   Properties (p-ADIC RINGS AND THEIR EXTENSIONS)
   Properties of Coxeter Groups (COXETER GROUPS)

prop-generic

   Properties (p-ADIC RINGS AND THEIR EXTENSIONS)

Proper

   IsProper(I) : AlgFP -> BoolElt
   IsProper(I) : RngMPol -> BoolElt
   IsProper(I) : RngMPolRes -> BoolElt
   IsProperChainMap(f) : MapChn -> BoolElt


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