Properties

Label 2592.he.2.c1.a1
Order $ 2^{4} \cdot 3^{4} $
Index $ 2 $
Normal Yes

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Subgroup ($H$) information

Description:$C_6^3.S_3$
Order: \(1296\)\(\medspace = 2^{4} \cdot 3^{4} \)
Index: \(2\)
Exponent: \(36\)\(\medspace = 2^{2} \cdot 3^{2} \)
Generators: $a^{3}, d^{2}, b^{6}, e, b^{2}d^{3}, d^{3}, cd^{3}, a^{2}cd^{3}$ Copy content Toggle raw display
Derived length: $3$

The subgroup is characteristic (hence normal), maximal, a semidirect factor, nonabelian, and monomial (hence solvable).

Ambient group ($G$) information

Description: $C_6^3.D_6$
Order: \(2592\)\(\medspace = 2^{5} \cdot 3^{4} \)
Exponent: \(36\)\(\medspace = 2^{2} \cdot 3^{2} \)
Derived length:$3$

The ambient group is nonabelian and monomial (hence solvable).

Quotient group ($Q$) structure

Description: $C_2$
Order: \(2\)
Exponent: \(2\)
Automorphism Group: $C_1$, of order $1$
Outer Automorphisms: $C_1$, of order $1$
Derived length: $1$

The quotient is cyclic (hence abelian, nilpotent, solvable, supersolvable, monomial, elementary, hyperelementary, metacyclic, metabelian, a Z-group, and an A-group), a $p$-group, simple, and rational.

Automorphism information

Since the subgroup $H$ is characteristic, the automorphism group $\operatorname{Aut}(G)$ of the ambient group acts on $H$, yielding a homomorphism $\operatorname{res} : \operatorname{Aut}(G) \to \operatorname{Aut}(H)$. The image of $\operatorname{res}$ on the inner automorphism group $\operatorname{Inn}(G)$ is the Weyl group $W = G / Z_G(H)$.

$\operatorname{Aut}(G)$$C_2\times C_6^2.(C_6\times S_3).C_2$
$\operatorname{Aut}(H)$ $C_2\times C_3^3.(C_3\times A_4).D_6$
$\operatorname{res}(\operatorname{Aut}(G))$$C_6^3.D_6$, of order \(2592\)\(\medspace = 2^{5} \cdot 3^{4} \)
$\card{\operatorname{ker}(\operatorname{res})}$\(2\)
$W$$C_6^2.S_3^2$, of order \(1296\)\(\medspace = 2^{4} \cdot 3^{4} \)

Related subgroups

Centralizer:$C_2$
Normalizer:$C_6^3.D_6$
Complements:$C_2$ $C_2$ $C_2$ $C_2$ $C_2$ $C_2$
Minimal over-subgroups:$C_6^3.D_6$
Maximal under-subgroups:$C_6^3.C_3$$C_3^3.S_4$$C_3^3.S_4$$C_6^2.D_6$$C_6^3:C_2$$C_6^2.D_6$$C_6^2.D_6$$C_3^3.D_6$

Other information

Möbius function$-1$
Projective image$C_6^2.S_3^2$