[____] [____] [_____] [____] [__] [Index] [Root]
Subindex: Consecutive .. constr
RandomConsecutiveBits(n, a, b) : RngIntElt, RngIntElt -> RngIntElt
Consistency(~P: parameters) : Process(pQuot) ->
IsConsistent(G) : GrpGPC -> BoolElt
IsConsistent(G) : GrpPC -> BoolElt
IsConsistent(A, w) : ModMatRngElt, ModTupRng -> BoolElt, ModTupRngElt, ModTupRng
IsConsistent(A, W) : ModMatRngElt, [ ModTupRng ] -> BoolElt, [ ModTupRngElt ], ModTupRng
IsConsistent(A, W) : Mtrx, Mtrx -> BoolElt, Mtrx, ModTupRng
IsConsistent(A, Q) : Mtrx, [ ModTupRng ] -> BoolElt, [ ModTupRngElt ], ModTupRng
ConstaCyclicCode(n, f, alpha) : RngUPolElt, RngIntElt, FldFinElt -> Code
ConstaCyclicCode(n, f, alpha) : RngUPolElt, RngIntElt, FldFinElt -> Code
DefiningConstantField(F) : FldFun -> Rng
ConstantField(F) : FldFun -> Rng
ConstantField(R) : RngDiff -> Rng
ConstantFieldExtension(F, E) : FldFun, Rng -> FldFun, Map
ConstantFieldExtension(F, C) : RngDiff, Fld -> RngDiff, Map
ConstantFieldExtension(R, C) : RngDiffOp,Fld -> RngDiffOp, Map
ConstantMap(X,Y,p) : Sch,Sch,Pt -> MapSch
ConstantRing(R) : RngDiff -> Rng
ConstantRing(R) : RngDiffOp -> Rng
ConstantWords(C, i) : Code, RngIntElt -> { ModTupFldElt }
DegreeOfExactConstantField(m) : DivFunElt -> RngIntElt
DegreeOfExactConstantField(m, U) : DivFunElt, GrpAb -> RngIntElt
DimensionOfExactConstantField(F) : FldFun -> RngIntElt
ExactConstantField(F) : FldFunG -> Rng, Map
ExactConstantField(F) : RngDiff -> RngDiff, Map
HeightConstant(J: parameters) : JacHyp -> FldPrElt, FldPrElt
IsConstant(a) : FldFunElt -> BoolElt, RngElt
IsConstantCurve(E) : CrvEll[FldFunRat] -> BoolElt, CrvEll
IsZero(I) : Map -> BoolElt
LieConstant_epsilon(R, r, s) : RootDtm, RngIntElt, RngIntElt -> RngIntElt
LieConstant_eta(R, r, s) : RootDtm, RngIntElt, RngIntElt -> RngIntElt
LieConstant_N(R, r, s) : RootDtm, RngIntElt, RngIntElt -> RngIntElt
LieConstant_p(R, r, s) : RootDtm, RngIntElt, RngIntElt -> RngIntElt
LieConstant_q(R, r, s) : RootDtm, RngIntElt, RngIntElt -> RngIntElt
LieConstant_M(R, r, s, i) : RootDtm, RngIntElt, RngIntElt, RngIntElt -> RngIntElt
LieConstant_C(R, i, j, r, s) : RootDtm, RngIntElt, RngIntElt, RngIntElt, RngIntElt -> RngIntElt
NumberOfConstantWords(C, i) : Code, RngIntElt -> RngIntElt
NumberOfPlacesOfDegreeOneECFBound(C) : Crv -> RngIntElt
NumberOfPlacesOfDegreeOneECFBound(F) : FldFun -> RngIntElt
NumberOfPlacesOfDegreeOneOverExactConstantField(C) : Crv[FldFin] -> RngIntElt
NumberOfPlacesOfDegreeOneOverExactConstantField(C, m) : Crv[FldFin], RngIntElt -> RngIntElt
NumberOfPlacesOfDegreeOneOverExactConstantField(F) : FldFun -> RngIntElt
NumberOfPlacesOfDegreeOneOverExactConstantField(F, m) : FldFun -> RngIntElt
NumberOfPlacesOfDegreeOneOverExactConstantField(F, m) : FldFun, RngIntElt -> RngIntElt
NumberOfPlacesOfDegreeOneOverExactConstantFieldBound(F, m) : FldFun, RngIntElt -> RngIntElt
NumberOfPlacesOfDegreeOverExactConstantField(C, m) : Crv[FldFin], RngIntElt -> RngIntElt
NumberOfPlacesOfDegreeOverExactConstantField(F, m) : FldFun, RngIntElt -> RngIntElt
NumberOfPlacesOfDegreeOverExactConstantField(F, m) : FldFun, RngIntElt -> RngIntElt
StructureConstant(G, i, j, k) : Grp, RngIntElt, RngIntElt, RngIntElt -> RngIntElt
Constants (REAL AND COMPLEX FIELDS)
DefiningConstantField(F) : FldFun -> Rng
ConstantField(F) : FldFun -> Rng
ConstantField(R) : RngDiff -> Rng
ConstantFieldExtension(F, E) : FldFun, Rng -> FldFun, Map
ConstantFieldExtension(F, C) : RngDiff, Fld -> RngDiff, Map
ConstantFieldExtension(R, C) : RngDiffOp,Fld -> RngDiffOp, Map
map< X -> Y | Q > : Sch,Sch,SeqEnum -> MapSch
ConstantMap(X,Y,p) : Sch,Sch,Pt -> MapSch
ConstantRing(R) : RngDiff -> Rng
ConstantRing(R) : RngDiffOp -> Rng
StructureConstants(R) : RootDtm -> RngIntElt
Constants Associated with Root Data (ROOT DATA)
Morphisms of Root Data (ROOT DATA)
Constants Associated with Root Data (ROOT DATA)
Morphisms of Root Data (ROOT DATA)
ConstantWords(C, i) : Code, RngIntElt -> { ModTupFldElt }
Constituent(C, i) : Cop, RngIntElt -> Struct
AbsolutelyIrreducibleConstituents(M) : ModGrp -> [ ModGrp ]
Constituents(M) : ModRng -> [ ModRng ]
ConstituentsWithMultiplicities(M) : ModRng -> [ <ModRng, RngIntElt> ]
ConstituentsWithMultiplicities(M) : ModRng -> [ <ModRng, RngIntElt> ]
Construction of Multigraphs (MULTIGRAPHS)
Construction of Networks (NETWORKS)
Incremental Construction: Adding Edges (NETWORKS)
Miscellaneous Graph Constructions (GRAPHS)
Standard Construction for Multigraphs (MULTIGRAPHS)
Standard Construction for Networks (NETWORKS)
Subgraphs (MULTIGRAPHS)
Subgraphs (NETWORKS)
Union of Networks (NETWORKS)
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