Properties

Label 105468750.e
Order \( 2 \cdot 3^{3} \cdot 5^{9} \)
Exponent \( 2 \cdot 3 \cdot 5 \)
Nilpotent no
Solvable yes
$\card{G^{\mathrm{ab}}}$ \( 2 \cdot 3 \cdot 5 \)
$\card{Z(G)}$ 5
$\card{\Aut(G)}$ \( 2^{8} \cdot 3^{3} \cdot 5^{8} \)
$\card{\mathrm{Out}(G)}$ \( 2^{7} \)
Perm deg. $45$
Trans deg. $45$
Rank $2$

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Show commands: Gap / Magma / SageMath

Copy content comment:Define the group as a permutation group
 
Copy content magma:G := PermutationGroup< 45 | (1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39)(11,17,12,18,13,19,14,20,15,16)(21,23,25,22,24), (1,33,23,5,32,22,4,31,21,3,35,25,2,34,24)(6,36,12,8,38,14,10,40,11,7,37,13,9,39,15)(16,45,29,18,42,26,20,44,28,17,41,30,19,43,27) >;
 
Copy content gap:G := Group( (1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39)(11,17,12,18,13,19,14,20,15,16)(21,23,25,22,24), (1,33,23,5,32,22,4,31,21,3,35,25,2,34,24)(6,36,12,8,38,14,10,40,11,7,37,13,9,39,15)(16,45,29,18,42,26,20,44,28,17,41,30,19,43,27) );
 
Copy content sage:G = PermutationGroup(['(1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39)(11,17,12,18,13,19,14,20,15,16)(21,23,25,22,24)', '(1,33,23,5,32,22,4,31,21,3,35,25,2,34,24)(6,36,12,8,38,14,10,40,11,7,37,13,9,39,15)(16,45,29,18,42,26,20,44,28,17,41,30,19,43,27)'])
 
Copy content sage_gap:# This uses Sage's interface to GAP, as Sage (currently) has no native support for PC groups G = gap.new('PcGroupCode(101593868886176992391057906352013259111301628121171814014196063944652200170171616011420612536955861744019004212429019135059984138770791650296981006185846556982623423490481913188657787179879107681502105480916046117235163397756262666349819797469042663794049968979588272806891279045703761717267584329333056104887996406844267633272000651108939935015558714933327195983446015,105468750)'); a = G.1; b = G.4; c = G.5; d = G.7; e = G.8; f = G.9; g = G.10; h = G.11; i = G.12; j = G.13;
 

Group information

Description:$C_5^7.C_{15}^2:S_3$
Order: \(105468750\)\(\medspace = 2 \cdot 3^{3} \cdot 5^{9} \)
Copy content comment:Order of the group
 
Copy content magma:Order(G);
 
Copy content gap:Order(G);
 
Copy content sage:G.order()
 
Copy content sage_gap:G.Order()
 
Exponent: \(30\)\(\medspace = 2 \cdot 3 \cdot 5 \)
Copy content comment:Exponent of the group
 
Copy content magma:Exponent(G);
 
Copy content gap:Exponent(G);
 
Copy content sage:G.exponent()
 
Copy content sage_gap:G.Exponent()
 
Automorphism group:Group of order \(2700000000\)\(\medspace = 2^{8} \cdot 3^{3} \cdot 5^{8} \)
Copy content comment:Automorphism group
 
Copy content gap:AutomorphismGroup(G);
 
Copy content magma:AutomorphismGroup(G);
 
Copy content sage_gap:G.AutomorphismGroup()
 
Composition factors:$C_2$, $C_3$ x 3, $C_5$ x 9
Copy content comment:Composition factors of the group
 
Copy content magma:CompositionFactors(G);
 
Copy content gap:CompositionSeries(G);
 
Copy content sage:G.composition_series()
 
Copy content sage_gap:G.CompositionSeries()
 
Derived length:$3$
Copy content comment:Derived length of the group
 
Copy content magma:DerivedLength(G);
 
Copy content gap:DerivedLength(G);
 
Copy content sage_gap:G.DerivedLength()
 

This group is nonabelian and solvable. Whether it is monomial has not been computed.

Copy content comment:Determine if the group G is abelian
 
Copy content magma:IsAbelian(G);
 
Copy content gap:IsAbelian(G);
 
Copy content sage:G.is_abelian()
 
Copy content sage_gap:G.IsAbelian()
 
Copy content comment:Determine if the group G is cyclic
 
Copy content magma:IsCyclic(G);
 
Copy content gap:IsCyclic(G);
 
Copy content sage:G.is_cyclic()
 
Copy content sage_gap:G.IsCyclic()
 
Copy content comment:Determine if the group G is nilpotent
 
Copy content magma:IsNilpotent(G);
 
Copy content gap:IsNilpotentGroup(G);
 
Copy content sage:G.is_nilpotent()
 
Copy content sage_gap:G.IsNilpotentGroup()
 
Copy content comment:Determine if the group G is solvable
 
Copy content magma:IsSolvable(G);
 
Copy content gap:IsSolvableGroup(G);
 
Copy content sage:G.is_solvable()
 
Copy content sage_gap:G.IsSolvableGroup()
 
Copy content comment:Determine if the group G is supersolvable
 
Copy content gap:IsSupersolvableGroup(G);
 
Copy content sage:G.is_supersolvable()
 
Copy content sage_gap:G.IsSupersolvableGroup()
 
Copy content comment:Determine if the group G is simple
 
Copy content magma:IsSimple(G);
 
Copy content gap:IsSimpleGroup(G);
 
Copy content sage_gap:G.IsSimpleGroup()
 

Group statistics

Copy content comment:Compute statistics for the group G
 
Copy content magma:// Magma code to output the first two rows of the group statistics table element_orders := [Order(g) : g in G]; orders := Set(element_orders); printf "Orders: %o\n", orders; printf "Elements: %o %o\n", [#[x : x in element_orders | x eq n] : n in orders], Order(G); cc_orders := [cc[1] : cc in ConjugacyClasses(G)]; printf "Conjugacy classes: %o %o\n", [#[x : x in cc_orders | x eq n] : n in orders], #cc_orders;
 
Copy content gap:# Gap code to output the first two rows of the group statistics table element_orders := List(Elements(G), g -> Order(g)); orders := Set(element_orders); Print("Orders: ", orders, "\n"); element_counts := List(orders, n -> Length(Filtered(element_orders, x -> x = n))); Print("Elements: ", element_counts, " ", Size(G), "\n"); cc_orders := List(ConjugacyClasses(G), cc -> Order(Representative(cc))); cc_counts := List(orders, n -> Length(Filtered(cc_orders, x -> x = n))); Print("Conjugacy classes: ", cc_counts, " ", Length(ConjugacyClasses(G)), "\n");
 
Copy content sage:# Sage code to output the first two rows of the group statistics table element_orders = [g.order() for g in G] orders = sorted(list(set(element_orders))) print("Orders:", orders) print("Elements:", [element_orders.count(n) for n in orders], G.order()) cc_orders = [cc[0].order() for cc in G.conjugacy_classes()] print("Conjugacy classes:", [cc_orders.count(n) for n in orders], len(cc_orders))
 

Order 1 2 3 5 6 10 15 30
Elements 1 5625 316250 1953124 281250 17572500 50465000 34875000 105468750
Conjugacy classes   1 1 6 37124 2 1124 1424 248 39930
Divisions 1 1 4 9309 1 281 188 31 9816

Minimal presentations

Permutation degree:$45$
Transitive degree:$45$
Rank: $2$
Inequivalent generating pairs: not computed

Minimal degrees of linear representations for this group have not been computed

Constructions

Show commands: Gap / Magma / SageMath


Presentation: ${\langle a, b, c, d, e, f, g, h, i, j \mid a^{30}=c^{15}=d^{5}=e^{5}=f^{5}= \!\cdots\! \rangle}$ Copy content Toggle raw display
Copy content comment:Define the group with the given generators and relations
 
Copy content magma:G := PCGroup([13, -2, -3, -5, -3, 3, -5, 5, 5, 5, 5, 5, 5, 5, 26, 92, 4683, 388652176, 46910269, 51433242, 971630404, 2824498967, 42413505, 3163, 251, 3038431505, 1610563518, 13419476, 1162922676, 3084812659, 12587256, 21329548, 12355207, 3929402900, 655246, 4789259, 3342316778, 3289672056, 101983097, 129808635, 2454192009, 2204437972, 116619798, 25340311, 445096090, 542953148, 151447774, 116505737, 11284074371, 4085829564, 327588350, 63870363, 1954697952, 2448460195, 368120076, 128511889]); a,b,c,d,e,f,g,h,i,j := Explode([G.1, G.4, G.5, G.7, G.8, G.9, G.10, G.11, G.12, G.13]); AssignNames(~G, ["a", "a2", "a6", "b", "c", "c3", "d", "e", "f", "g", "h", "i", "j"]);
 
Copy content gap:G := PcGroupCode(101593868886176992391057906352013259111301628121171814014196063944652200170171616011420612536955861744019004212429019135059984138770791650296981006185846556982623423490481913188657787179879107681502105480916046117235163397756262666349819797469042663794049968979588272806891279045703761717267584329333056104887996406844267633272000651108939935015558714933327195983446015,105468750); a := G.1; b := G.4; c := G.5; d := G.7; e := G.8; f := G.9; g := G.10; h := G.11; i := G.12; j := G.13;
 
Copy content sage:# This uses Sage's interface to GAP, as Sage (currently) has no native support for PC groups G = gap.new('PcGroupCode(101593868886176992391057906352013259111301628121171814014196063944652200170171616011420612536955861744019004212429019135059984138770791650296981006185846556982623423490481913188657787179879107681502105480916046117235163397756262666349819797469042663794049968979588272806891279045703761717267584329333056104887996406844267633272000651108939935015558714933327195983446015,105468750)'); a = G.1; b = G.4; c = G.5; d = G.7; e = G.8; f = G.9; g = G.10; h = G.11; i = G.12; j = G.13;
 
Copy content sage_gap:# This uses Sage's interface to GAP, as Sage (currently) has no native support for PC groups G = gap.new('PcGroupCode(101593868886176992391057906352013259111301628121171814014196063944652200170171616011420612536955861744019004212429019135059984138770791650296981006185846556982623423490481913188657787179879107681502105480916046117235163397756262666349819797469042663794049968979588272806891279045703761717267584329333056104887996406844267633272000651108939935015558714933327195983446015,105468750)'); a = G.1; b = G.4; c = G.5; d = G.7; e = G.8; f = G.9; g = G.10; h = G.11; i = G.12; j = G.13;
 
Permutation group:Degree $45$ $\langle(1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39) \!\cdots\! \rangle$ Copy content Toggle raw display
Copy content comment:Define the group as a permutation group
 
Copy content magma:G := PermutationGroup< 45 | (1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39)(11,17,12,18,13,19,14,20,15,16)(21,23,25,22,24), (1,33,23,5,32,22,4,31,21,3,35,25,2,34,24)(6,36,12,8,38,14,10,40,11,7,37,13,9,39,15)(16,45,29,18,42,26,20,44,28,17,41,30,19,43,27) >;
 
Copy content gap:G := Group( (1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39)(11,17,12,18,13,19,14,20,15,16)(21,23,25,22,24), (1,33,23,5,32,22,4,31,21,3,35,25,2,34,24)(6,36,12,8,38,14,10,40,11,7,37,13,9,39,15)(16,45,29,18,42,26,20,44,28,17,41,30,19,43,27) );
 
Copy content sage:G = PermutationGroup(['(1,34,6,27,41,38,5,33,10,26,45,37,4,32,9,30,44,36,3,31,8,29,43,40,2,35,7,28,42,39)(11,17,12,18,13,19,14,20,15,16)(21,23,25,22,24)', '(1,33,23,5,32,22,4,31,21,3,35,25,2,34,24)(6,36,12,8,38,14,10,40,11,7,37,13,9,39,15)(16,45,29,18,42,26,20,44,28,17,41,30,19,43,27)'])
 
Transitive group: 45T3793 more information
Direct product: not computed
Semidirect product: not computed
Trans. wreath product: not computed
Possibly split product: $(C_5^9.C_3^2)$ . $S_3$ $C_5^7$ . $(C_{15}^2:S_3)$ $(C_5^8.C_3^2)$ . $C_{30}$ $C_5^8$ . $(C_3^2:C_{30})$ all 20

Elements of the group are displayed as permutations of degree 45.

Homology

Abelianization: $C_{30} \simeq C_{2} \times C_{3} \times C_{5}$
Copy content comment:The abelianization of the group
 
Copy content magma:quo< G | CommutatorSubgroup(G) >;
 
Copy content gap:FactorGroup(G, DerivedSubgroup(G));
 
Copy content sage:G.quotient(G.commutator())
 
Schur multiplier: not computed
Copy content comment:The Schur multiplier of the group
 
Copy content gap:AbelianInvariantsMultiplier(G);
 
Copy content sage:G.homology(2)
 
Copy content sage_gap:G.AbelianInvariantsMultiplier()
 
Commutator length: not computed
Copy content comment:The commutator length of the group
 
Copy content gap:CommutatorLength(G);
 
Copy content sage_gap:G.CommutatorLength()
 

Subgroups

Copy content comment:List of subgroups of the group
 
Copy content magma:Subgroups(G);
 
Copy content gap:AllSubgroups(G);
 
Copy content sage:G.subgroups()
 
Copy content sage_gap:G.AllSubgroups()
 

There are 24 normal subgroups, and all normal subgroups are characteristic.

Characteristic subgroups are shown in this color.

Special subgroups

Center: a subgroup isomorphic to $C_5$
Copy content comment:Center of the group
 
Copy content magma:Center(G);
 
Copy content gap:Center(G);
 
Copy content sage:G.center()
 
Copy content sage_gap:G.Center()
 
Commutator: a subgroup isomorphic to $C_5^8.C_3^2$
Copy content comment:Commutator subgroup of the group G
 
Copy content magma:CommutatorSubgroup(G);
 
Copy content gap:DerivedSubgroup(G);
 
Copy content sage:G.commutator()
 
Copy content sage_gap:G.DerivedSubgroup()
 
Frattini: a subgroup isomorphic to $C_1$
Copy content comment:Frattini subgroup of the group G
 
Copy content magma:FrattiniSubgroup(G);
 
Copy content gap:FrattiniSubgroup(G);
 
Copy content sage:G.frattini_subgroup()
 
Copy content sage_gap:G.FrattiniSubgroup()
 
Fitting: not computed
Copy content comment:Fitting subgroup of the group G
 
Copy content magma:FittingSubgroup(G);
 
Copy content gap:FittingSubgroup(G);
 
Copy content sage:G.fitting_subgroup()
 
Copy content sage_gap:G.FittingSubgroup()
 
Radical: not computed
Copy content comment:Radical of the group G
 
Copy content magma:Radical(G);
 
Copy content gap:SolvableRadical(G);
 
Copy content sage_gap:G.SolvableRadical()
 
Socle: not computed
Copy content comment:Socle of the group G
 
Copy content magma:Socle(G);
 
Copy content gap:Socle(G);
 
Copy content sage:G.socle()
 
Copy content sage_gap:G.Socle()
 
2-Sylow subgroup: $P_{ 2 } \simeq$ $C_2$
3-Sylow subgroup: $P_{ 3 } \simeq$ $\He_3$
5-Sylow subgroup: $P_{ 5 } \simeq$ $C_5^9$

Subgroup diagram and profile

Series

Derived series not computed
Copy content comment:Derived series of the group GF
 
Copy content magma:DerivedSeries(G);
 
Copy content gap:DerivedSeriesOfGroup(G);
 
Copy content sage:G.derived_series()
 
Copy content sage_gap:G.DerivedSeriesOfGroup()
 
Chief series not computed
Copy content comment:Chief series of the group G
 
Copy content magma:ChiefSeries(G);
 
Copy content gap:ChiefSeries(G);
 
Copy content sage_gap:G.ChiefSeries()
 
Lower central series not computed
Copy content comment:The lower central series of the group G
 
Copy content magma:LowerCentralSeries(G);
 
Copy content gap:LowerCentralSeriesOfGroup(G);
 
Copy content sage:G.lower_central_series()
 
Copy content sage_gap:G.LowerCentralSeriesOfGroup()
 
Upper central series not computed
Copy content comment:The upper central series of the group G
 
Copy content magma:UpperCentralSeries(G);
 
Copy content gap:UpperCentralSeriesOfGroup(G);
 
Copy content sage:G.upper_central_series()
 
Copy content sage_gap:G.UpperCentralSeriesOfGroup()
 

Supergroups

This group is a maximal subgroup of 7 larger groups in the database.

This group is a maximal quotient of 0 larger groups in the database.

Character theory

Copy content comment:Character table
 
Copy content magma:CharacterTable(G); // Output not guaranteed to exactly match the LMFDB table
 
Copy content gap:CharacterTable(G); # Output not guaranteed to exactly match the LMFDB table
 
Copy content sage:G.character_table() # Output not guaranteed to exactly match the LMFDB table
 
Copy content sage_gap:G.CharacterTable() # Output not guaranteed to exactly match the LMFDB table
 

Complex character table

The $39930 \times 39930$ character table is not available for this group.

Rational character table

The $9816 \times 9816$ rational character table is not available for this group.