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Subindex: NumberOfProjectives .. numerical-invariants-diff-rings
NumberOfProjectives(B) : AlgBas -> RngIntElt
NumberOfPunctures(C): CrvPln -> RngIntElt
Nqubits(H) : HilbSpc -> RngIntElt
NumberOfQubits(H) : HilbSpc -> RngIntElt
NumberOfRationalPoints(A) : ModAbVar -> RngIntElt, RngIntElt
Nrels(G) : GrpRWS -> RngIntElt
NumberOfRelations(G) : GrpRWS -> RngIntElt
NumberOfRelations(M) : MonRWS -> RngIntElt
NumberOfRelations(P) : Process(Tietze) -> RngIntElt
NumberOfRelationsRequired(P) : NFSProc -> RngIntElt
NumberOfRepresentations(D, i): DB, RngIntElt -> RngIntElt
Nrows(a) : AlgMatElt -> RngIntElt
NumberOfRows(a) : AlgMatElt -> RngIntElt
NumberOfRows(u) : ModTupFldElt -> RngIntElt
NumberOfRows(A) : Mtrx -> RngIntElt
NumberOfRows(A) : MtrxSprs -> RngIntElt
NumberOfRows(t) : Tbl -> RngIntElt
NumberOfSkewRows(t) : Tbl -> RngIntElt
NumberOfSmallGroups(o) : RngIntElt -> RngIntElt
NumberOfSmoothDivisors(n, m, P) : RngIntElt, RngIntElt, SeqEnum[RngElt] -> RngElt
NumberOfSolubleIrreducibleMatrixGroups(k, p) : RngIntElt, RngIntElt -> RngIntElt
NumberOfIrreducibleMatrixGroups(k, p) : RngIntElt, RngIntElt -> RngIntElt
NumberOfStandardTableaux(P) : SeqEnum -> RngIntElt
NumberOfStandardTableauxOnWeight(n) : RngIntElt -> RngIntElt
NumberOfStrings(B) : GrpBrd -> RngIntElt
Nsgens(G) : GrpMat -> RngIntElt
NumberOfStrongGenerators(G) : GrpMat -> RngIntElt
NumberOfStrongGenerators(G) : GrpPerm -> RngIntElt
NumberOfStrongGenerators(G, i) : GrpPerm, RngIntElt -> RngIntElt
NumberOfSubgroupsAbelianPGroup (A) : SeqEnum -> SeqEnum
NumberOfSymmetricForms(G) : GrpMat -> RngIntElt
NumberOfTableauxOnAlphabet(P, m) : SeqEnum,RngIntElt -> RngIntElt
NumberOfTransitiveGroups(d) : RngIntElt -> RngIntElt
NumberOfVariables(L) : LP -> RngIntElt
NumberOfWords(C, w) : Code, RngIntElt -> RngIntElt
NumberOfWords(C, w) : Code, RngIntElt -> RngIntElt
ApparentEquationDegrees(X) : GRSch -> RngIntElt
ApparentSyzygyDegrees(X) : GRSch -> RngIntElt
BettiNumbers(X) : GRSch -> RngIntElt
ApparentCodimension(X) : GRSch -> RngIntElt
ExtensionNumbers(D, Q, p, r) : DB, MonStgElt, RngIntElt, RngIntElt -> SetEnum
GapNumbers(C) : Crv -> [RngIntElt]
GapNumbers(C, P) : Crv, PlcCrvElt -> [RngIntElt]
GapNumbers(D) : DivCrvElt -> SeqEnum
GapNumbers(D) : DivFunElt -> SeqEnum[RngIntElt]
GapNumbers(D, P) : DivFunElt, PlcFunElt -> SeqEnum[RngIntElt]
GapNumbers(F) : FldFunG -> SeqEnum[RngIntElt]
GapNumbers(F, P) : FldFunG, PlcFunElt -> SeqEnum[RngIntElt]
GapNumbers(p) : Pt -> SeqEnum
LinkingNumbers(s) : GrphSpl -> SeqEnum
NumbersOfPointsOnSurface(E, e) : CrvEll, RngIntElt -> [ RngIntElt ], [ RngIntElt ]
TamagawaNumbers(E) : CrvEll -> [ RngIntElt ]
NumbersOfPointsOnSurface(E, e) : CrvEll, RngIntElt -> [ RngIntElt ], [ RngIntElt ]
ApparentEquationDegrees(f) : RngUPolElt -> RngIntElt
ApparentSyzygyDegrees(f) : RngUPolElt -> RngIntElt
Interpreting the Hilbert Numerator (HILBERT SERIES OF POLARISED VARIETIES)
HilbertNumerator(g, D) : FldFunRatUElt, SeqEnum -> FldFunRatUElt
HilbertNumerator(X) : GRSch -> RngUPolElt
NoetherNumerator(X) : GRSch -> RngUPolElt
Numerator(D) : DivCrvElt -> DivCrvElt
Numerator(D) : DivFunElt -> DivFunElt
Numerator(a) : FldAlgElt -> RngIntElt
Numerator(a, O) : FldFunElt, RngFunOrd -> RngFunOrdElt
Numerator(f, X) : FldFunFracSchElt, Sch -> MPolElt
Numerator(a) : FldFunOrdElt -> RngFunOrdElt
Numerator(f) : FldFunRatElt -> RngElt
Numerator(q) : FldRatElt -> RngIntElt
Numerator(f) : RngFracElt -> RngElt
Numerator(a) : RngFunFrac -> RngMPolResElt
Numerator and Denominator (RATIONAL FIELD)
Numerator, Denominator and Degree (RATIONAL FUNCTION FIELDS)
FldRat_numerator (Example H40E3)
Numerator and Denominator (RATIONAL FIELD)
Numerator, Denominator and Degree (RATIONAL FUNCTION FIELDS)
Basic Numerical Invariants (ADDITIVE CODES)
Basic Numerical Invariants (LINEAR CODES OVER FINITE FIELDS)
Numerical Data Associated to a Graph (RESOLUTION GRAPHS AND SPLICE DIAGRAMS)
Numerical Functions (REAL AND COMPLEX FIELDS)
Numerical Functions of Splice Diagrams (RESOLUTION GRAPHS AND SPLICE DIAGRAMS)
Numerical Invariants (DIFFERENTIAL RINGS, FIELDS AND OPERATORS)
Numerical Data Associated to a Graph (RESOLUTION GRAPHS AND SPLICE DIAGRAMS)
Numerical Functions of Splice Diagrams (RESOLUTION GRAPHS AND SPLICE DIAGRAMS)
Basic Numerical Invariants (ADDITIVE CODES)
Basic Numerical Invariants (LINEAR CODES OVER FINITE FIELDS)
Numerical Invariants (DIFFERENTIAL RINGS, FIELDS AND OPERATORS)
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