Properties

Label 31104.mm.96.m1
Order $ 2^{2} \cdot 3^{4} $
Index $ 2^{5} \cdot 3 $
Normal No

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Subgroup ($H$) information

Description:$C_3^2:S_3^2$
Order: \(324\)\(\medspace = 2^{2} \cdot 3^{4} \)
Index: \(96\)\(\medspace = 2^{5} \cdot 3 \)
Exponent: \(6\)\(\medspace = 2 \cdot 3 \)
Generators: $\langle(7,12)(8,11)(9,10)(13,15), (7,13,10)(8,14,11)(9,15,12), (7,15,11)(8,13,12) \!\cdots\! \rangle$ Copy content Toggle raw display
Derived length: $2$

The subgroup is nonabelian, supersolvable (hence solvable and monomial), metabelian, and an A-group.

Ambient group ($G$) information

Description: $C_3^4:(D_4\times \GL(2,3))$
Order: \(31104\)\(\medspace = 2^{7} \cdot 3^{5} \)
Exponent: \(24\)\(\medspace = 2^{3} \cdot 3 \)
Derived length:$5$

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

Automorphism information

While the subgroup $H$ is not characteristic, the stabilizer $S$ of $H$ in the automorphism group $\operatorname{Aut}(G)$ of the ambient group acts on $H$, yielding a homomorphism $\operatorname{res} : S \to \operatorname{Aut}(H)$. The image of $\operatorname{res}$ on the inner automorphisms $\operatorname{Inn}(G) \cap S$ is the Weyl group $W = N_G(H) / Z_G(H)$.

$\operatorname{Aut}(G)$$C_3:S_3.C_6^2.C_6.D_4.C_2$, of order \(62208\)\(\medspace = 2^{8} \cdot 3^{5} \)
$\operatorname{Aut}(H)$ $C_3^2:\GL(2,3)\times D_6$, of order \(5184\)\(\medspace = 2^{6} \cdot 3^{4} \)
$W$$C_3^2:\GL(2,3)\times D_6$, of order \(5184\)\(\medspace = 2^{6} \cdot 3^{4} \)

Related subgroups

Centralizer:$C_3$
Normalizer:$S_3^2\times C_3^2:\GL(2,3)$
Normal closure:$(C_3\times S_3^2):D_6$
Core:$C_3^2\wr C_2$
Minimal over-subgroups:$C_3^3:C_6^2$$C_3:S_3^3$$C_3\times S_3^3$$C_3:S_3^3$$S_3\times C_3^2:C_{12}$$C_3^3:C_4\times S_3$
Maximal under-subgroups:$C_3^2\wr C_2$$S_3\times C_3^3$$C_3^3:C_6$$C_3^2:D_6$$C_3\times S_3^2$$C_3:S_3^2$

Other information

Number of subgroups in this autjugacy class$4$
Number of conjugacy classes in this autjugacy class$2$
Möbius function$0$
Projective image$C_3^4:(D_4\times \GL(2,3))$