Properties

Label 22935.22934
Modulus $22935$
Conductor $22935$
Order $2$
Real yes
Primitive yes
Minimal yes
Parity odd

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Show commands: PariGP / SageMath
from sage.modular.dirichlet import DirichletCharacter
 
H = DirichletGroup(22935, base_ring=CyclotomicField(2))
 
M = H._module
 
chi = DirichletCharacter(H, M([1,1,1,1]))
 
pari: [g,chi] = znchar(Mod(22934,22935))
 

Kronecker symbol representation

sage: kronecker_character(-22935)
 
pari: znchartokronecker(g,chi)
 

\(\displaystyle\left(\frac{-22935}{\bullet}\right)\)

Basic properties

Modulus: \(22935\)
Conductor: \(22935\)
sage: chi.conductor()
 
pari: znconreyconductor(g,chi)
 
Order: \(2\)
sage: chi.multiplicative_order()
 
pari: charorder(g,chi)
 
Real: yes
Primitive: yes
sage: chi.is_primitive()
 
pari: #znconreyconductor(g,chi)==1
 
Minimal: yes
Parity: odd
sage: chi.is_odd()
 
pari: zncharisodd(g,chi)
 

Galois orbit 22935.p

\(\chi_{22935}(22934,\cdot)\)

sage: chi.galois_orbit()
 
order = charorder(g,chi)
 
[ charpow(g,chi, k % order) | k <-[1..order-1], gcd(k,order)==1 ]
 

Related number fields

Field of values: \(\Q\)
Fixed field: \(\Q(\sqrt{-22935}) \)

Values on generators

\((7646,13762,4171,20296)\) → \((-1,-1,-1,-1)\)

First values

\(a\) \(-1\)\(1\)\(2\)\(4\)\(7\)\(8\)\(13\)\(14\)\(16\)\(17\)\(19\)\(23\)
\( \chi_{ 22935 }(22934, a) \) \(-1\)\(1\)\(1\)\(1\)\(1\)\(1\)\(1\)\(1\)\(1\)\(1\)\(1\)\(-1\)
sage: chi.jacobi_sum(n)
 
\( \chi_{ 22935 }(22934,a) \;\) at \(\;a = \) e.g. 2