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Subindex: schemes  ..  SchurToElementaryMatrix


schemes

   Affine and Projective Spaces (SCHEMES)
   Affine Patches and Projective Closure (SCHEMES)
   Ambients (SCHEMES)
   Base Change for Schemes (SCHEMES)
   Basic Attributes of Schemes (SCHEMES)
   Constructing Schemes (SCHEMES)
   Different Types of Scheme (SCHEMES)
   Function Fields and their Elements (SCHEMES)
   Functions and Homogeneity on Ambient Spaces (SCHEMES)
   Functions of the Ambient Space (SCHEMES)
   Global Geometry of Schemes (SCHEMES)
   Local Geometry of Schemes (SCHEMES)
   Maps and Schemes (SCHEMES)
   Prelude to Points (SCHEMES)
   Rational Points and Point Sets (SCHEMES)
   SCHEMES
   Schemes (SCHEMES)
   Scrolls and Products (SCHEMES)
   Zero-dimensional Schemes (SCHEMES)

schemes-ambient

   Ambients (SCHEMES)

schemes-ambient-functions

   Functions and Homogeneity on Ambient Spaces (SCHEMES)

schemes-ambient-points

   Prelude to Points (SCHEMES)

schemes-base-change

   Base Change for Schemes (SCHEMES)

schemes-basic

   Basic Attributes of Schemes (SCHEMES)

schemes-basic-ambient

   Functions of the Ambient Space (SCHEMES)

schemes-closure

   Affine Patches and Projective Closure (SCHEMES)

schemes-clusters

   Zero-dimensional Schemes (SCHEMES)

schemes-creation

   Name(X,i) : Sch,RngIntElt -> RngMPolElt
   Constructing Schemes (SCHEMES)
   Scheme_schemes-creation (Example H97E4)

schemes-function-elements

   Function Fields and their Elements (SCHEMES)

schemes-global

   Global Geometry of Schemes (SCHEMES)

schemes-local

   Local Geometry of Schemes (SCHEMES)

schemes-points

   Rational Points and Point Sets (SCHEMES)

schemes-points-example1

   Scheme_schemes-points-example1 (Example H97E2)

schemes-prime-components

   Scheme_schemes-prime-components (Example H97E10)

schemes-scrolls

   Scrolls and Products (SCHEMES)

schemes-standard

   Affine and Projective Spaces (SCHEMES)

schemes-types

   Different Types of Scheme (SCHEMES)

Schreier

   ArtinSchreierExtension(c,a,b) : FldFin, FldFin, FldFin -> FldFun
   ArtinSchreierImage(e) : RngWittElt -> RngWittElt
   ArtinSchreierMap(W) : RngWitt -> Map
   RandomSchreier(G: parameters) : GrpMat ->
   RandomSchreier(G: parameters) : GrpPerm : ->
   SchreierGenerators(G, H : parameters) : GrpFP, GrpFP -> { GrpFPElt }
   SchreierGraph(A, B) : Grp, Grp -> GrphDir
   SchreierSystem(G, H) : GrpFP, GrpFP -> {@ GrpFPElt @}, Map
   SchreierVector(G, i) : GrpPerm, RngIntElt -> [RngIntElt]
   SchreierVectors(G) : GrpPerm -> [ [RngIntElt] ]
   SimsSchreier(G: parameters) : GrpPerm : ->
   SolubleSchreier(G: parameters) : GrpPerm : ->
   ToddCoxeterSchreier(G) : GrpMat : ->
   ToddCoxeterSchreier(G: parameters) : GrpPerm : ->

SchreierGenerators

   SchreierGenerators(G, H : parameters) : GrpFP, GrpFP -> { GrpFPElt }
   GrpFP_1_SchreierGenerators (Example H30E49)

SchreierGraph

   UnlabelledSchreierGraph(A, B) : Grp, Grp -> GrphDir
   SchreierGraph(A, B) : Grp, Grp -> GrphDir

SchreierSystem

   Transversal(G, H) : GrpFP, GrpFP -> {@ GrpFPElt @}, Map
   SchreierSystem(G, H) : GrpFP, GrpFP -> {@ GrpFPElt @}, Map

SchreierVector

   SchreierVector(G, i) : GrpPerm, RngIntElt -> [RngIntElt]

SchreierVectors

   SchreierVectors(G) : GrpPerm -> [ [RngIntElt] ]

Schur

   AbsolutelyIrreducibleModulesSchur(G, K: parameters) : GrpPC, Rng -> List[GModule]
   AbsolutelyIrreducibleRepresentationsSchur(G, k: parameters) : GrpPC, Rng -> List[Map]
   ElementaryToSchurMatrix(n): RngIntElt -> AlgMatElt
   HasSchurBasis(A): AlgSym -> BoolElt
   HomogeneousToSchurMatrix(n): RngIntElt -> AlgMatElt
   IrreducibleModulesSchur(G, K: parameters) : GrpPC, Rng -> List[GModule]
   IrreducibleRepresentationsSchur(G, k: parameters) : GrpPC, Rng -> List[Map]
   MonomialToSchurMatrix(n): RngIntElt -> AlgMatElt
   PowerSumToSchurMatrix(n): RngIntElt -> AlgMatElt
   Schur(x, k) : AlgChtrElt, RngIntElt -> FldCycElt
   SchurToElementaryMatrix(n): RngIntElt -> AlgMatElt
   SchurToHomogeneousMatrix(n): RngIntElt -> AlgMatElt
   SchurToMonomialMatrix(n): RngIntElt -> AlgMatElt
   SchurToPowerSumMatrix(n): RngIntElt -> AlgMatElt
   SymmetricFunctionAlgebraSchur(R) : Rng -> AlgSym

schur

   Transition Matrices from Schur Basis (SYMMETRIC FUNCTIONS)

SchurToElementaryMatrix

   SchurToElementaryMatrix(n): RngIntElt -> AlgMatElt


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