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Subindex: ComponentGroupOfIntersection  ..  ConcatenatedCode


ComponentGroupOfIntersection

   ComponentGroupOfIntersection(A, B) : ModAbVar, ModAbVar -> ModAbVarSubGrp

ComponentGroupOfKernel

   ComponentGroupOfKernel(phi) : MapModAbVar -> ModAbVarSubGrp

ComponentGroupOrder

   ComponentGroupOrder(A, p) : ModAbVar, RngIntElt -> RngIntElt
   ComponentGroupOrder(M, p) : ModSym, RngIntElt -> RngIntElt

Components

   Components(A) : FldAb -> [RngOrd]
   Components(G) : GrphMultUnd -> [ { GrphVert } ]
   Components(G) : GrphUnd -> [ { GrphVert } ]
   Components(f) : Map -> [ Map ]
   Components(f) : Map -> [Map]
   HomogeneousComponents(f) : RngMPolElt -> [ RngMPolElt ]
   NumberOfComponents(C) : SetCart -> RngIntElt
   NumberOfComponents(KS) : SymKod -> RngIntElt
   OrthogonalComponents(x, n) : AlgChtrElt, RngIntElt -> SetEnum
   PrimaryComponents(X) : Sch -> SeqEnum
   PrimeComponents(X) : Sch -> SeqEnum
   StronglyConnectedComponents(G) : GrphDir -> [ { GrphVert } ]
   StronglyConnectedComponents(G) : GrphMultDir -> [ { GrphVert } ]
   SymmetricComponents(x, n) : AlgChtrElt, RngIntElt -> SetEnum
   SymplecticComponents(x, n) : AlgChtrElt, RngIntElt -> SetEnum

Compose

   ComposeTransformations(g1,g2) : Tup, Tup -> Tup
   g1 * g2 : Tup, Tup -> Tup
   ComposeQuotients(SQ1, SQ2, SQ3: parameter) : SQProc, SQProc, SQProc -> BoolElt, SQProc

ComposeQuotients

   ComposeQuotients(SQ1, SQ2, SQ3: parameter) : SQProc, SQProc, SQProc -> BoolElt, SQProc

ComposeTransformations

   ComposeTransformations(g1,g2) : Tup, Tup -> Tup
   g1 * g2 : Tup, Tup -> Tup

Composite

   Composite(R, S) : RngPad, RngPad -> RngPad
   MergeFields(F, L) : FldAlg, FldAlg -> SeqEnum

CompositeFields

   CompositeFields(F, L) : FldAlg, FldAlg -> SeqEnum
   MergeFields(F, L) : FldAlg, FldAlg -> SeqEnum
   RngOrd_CompositeFields (Example H48E2)

Composition

   Composition(f, g) : QuadBinElt, QuadBinElt -> QuadBinElt
   f * g : QuadBinElt, QuadBinElt -> QuadBinElt
   Composition(f, g) : Map, Map -> Map
   Composition(f, g) : RngSerElt, RngSerElt -> RngSerElt
   Composition(T, q) : [ FldCycElt ], TabChtr -> AlgChtrElt
   CompositionFactors(G) : : GrpFin -> [ <RngIntElt, RngIntElt, RngIntElt> ]
   CompositionFactors(G) : : GrpMat -> [ <RngIntElt, RngIntElt, RngIntElt> ]
   CompositionFactors(G) : GrpPC -> SeqEnum
   CompositionFactors(G) : GrpPerm -> [ <RngIntElt, RngIntElt, RngIntElt> ]
   CompositionFactors(M) : ModRng -> [ ModRng ]
   CompositionSeries(A) : AlgGen -> [ AlgGen ], [ AlgGen ], AlgMatElt
   CompositionSeries(L) : AlgLie -> [ Alg ], [ AlgGen ], AlgMatElt
   CompositionSeries(G) : GrpPC -> [GrpPC]
   CompositionSeries(G, i) : GrpPC, RngIntElt -> [GrpPC]
   CompositionSeries(M) : ModRng -> [ ModRng ], [ ModRng ], AlgMatElt

composition

   Composition (MAPPINGS)
   Composition and Chief Factors (MATRIX GROUPS OVER GENERAL RINGS)
   Composition and Chief Series (PERMUTATION GROUPS)
   Composition and Decomposition (CHARACTERS OF FINITE GROUPS)
   Composition and Reversion (POWER, LAURENT AND PUISEUX SERIES)
   Composition Series (MODULES OVER AN ALGEBRA)

composition-decomposition

   Composition and Decomposition (CHARACTERS OF FINITE GROUPS)

composition-factors

   Composition and Chief Factors (MATRIX GROUPS OVER GENERAL RINGS)

composition-reversion

   Composition and Reversion (POWER, LAURENT AND PUISEUX SERIES)

composition-series

   Composition and Chief Series (PERMUTATION GROUPS)
   Composition Series (MODULES OVER AN ALGEBRA)

CompositionFactors

   CompositionFactors(G) : : GrpFin -> [ <RngIntElt, RngIntElt, RngIntElt> ]
   CompositionFactors(G) : : GrpMat -> [ <RngIntElt, RngIntElt, RngIntElt> ]
   CompositionFactors(G) : GrpPC -> SeqEnum
   CompositionFactors(G) : GrpPerm -> [ <RngIntElt, RngIntElt, RngIntElt> ]
   CompositionFactors(M) : ModRng -> [ ModRng ]
   GrpMatGen_CompositionFactors (Example H20E25)

CompositionReversion

   RngSer_CompositionReversion (Example H61E2)

CompositionSeries

   CompositionSeries(A) : AlgGen -> [ AlgGen ], [ AlgGen ], AlgMatElt
   CompositionSeries(L) : AlgLie -> [ Alg ], [ AlgGen ], AlgMatElt
   CompositionSeries(G) : GrpPC -> [GrpPC]
   CompositionSeries(G, i) : GrpPC, RngIntElt -> [GrpPC]
   CompositionSeries(M) : ModRng -> [ ModRng ], [ ModRng ], AlgMatElt

Compositum

   RngOrd_Compositum (Example H48E9)

CompSeries

   ModAlg_CompSeries (Example H76E6)

Computable

   HasComputableAbelianQuotient(G) : GrpFP -> BoolElt, GrpAb, Map
   HasComputableLCS(G) : GrpGPC -> BoolElt
   HasInfiniteComputableAbelianQuotient(G) : GrpFP -> BoolElt, GrpAb, Map
   IsDualComputable(A) : ModAbVar -> BoolElt, ModAbVar

computation

   Structure Computation (GENERIC ABELIAN GROUPS)

computing

   Computing L-values (L-FUNCTIONS)

Comultiplication

   Comultiplication(U, d) : AlgQUE, RngIntElt -> UserProgram

Concatenated

   ConcatenatedCode(O, I) : Code, Code -> Code

ConcatenatedCode

   ConcatenatedCode(O, I) : Code, Code -> Code
   CodeFld_ConcatenatedCode (Example H124E32)


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