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15
Math.TechQA.Club
2017-11-16 16:05:43
468
Views
Gaussian Integers - Units
Published on
16 Nov 2017 - 16:05
#gaussian-integers
136
Views
Show that $\psi$ is surjective
Published on
30 Nov 2017 - 21:12
#abstract-algebra
#ring-theory
#gaussian-integers
100
Views
Irreducibles in the ring of gaussian integers
Published on
01 Dec 2017 - 2:16
#proof-verification
#ring-theory
#gaussian-integers
2.3k
Views
Complex prime factorization into Gaussian integers?
Published on
06 Dec 2017 - 17:10
#number-theory
#complex-numbers
#algorithms
#prime-factorization
#gaussian-integers
22
Views
Formal terms for a mesh over the complex numbers?
Published on
15 Dec 2017 - 17:29
#geometry
#complex-numbers
#gaussian-integers
83
Views
Find integers $x,y \in \mathbb{Z}[i]$ such that $x^2 + y^2 = 8 + 5i$.
Published on
16 Dec 2017 - 4:30
#number-theory
#complex-numbers
#gaussian-integers
76
Views
Find integers $x,y \in \mathbb{Z}[i]$ such that $x^2 + i\,y^2 = 9+ 4i$.
Published on
16 Dec 2017 - 13:02
#number-theory
#complex-numbers
#gaussian-integers
119
Views
Represent element of $SU(2)$ as a $4 \times 4$ matrix
Published on
20 Dec 2017 - 16:45
#group-theory
#representation-theory
#quaternions
#gaussian-integers
66
Views
Is my reasoning classifying gaussian primes right?
Published on
24 Dec 2017 - 1:56
#abstract-algebra
#ring-theory
#unique-factorization-domains
#gaussian-integers
1.8k
Views
How to prove that 2 is not a Gaussian prime?
Published on
29 Dec 2017 - 9:40
#elementary-number-theory
#gaussian-integers
527
Views
Proving Gaussian integers have non unique quotient and remainder in division algorithm.
Published on
29 Dec 2017 - 10:02
#elementary-number-theory
#gaussian-integers
1.6k
Views
Finding values of quotient and remainders for Gaussian integers.
Published on
29 Dec 2017 - 12:51
#elementary-number-theory
#gaussian-integers
390
Views
Significance of non-unique quotient and remainder for Gaussian integers.
Published on
29 Dec 2017 - 14:17
#elementary-number-theory
#gaussian-integers
1.4k
Views
Reason why in Gaussian integers, norm divisibility may not lead to divisibility.
Published on
30 Dec 2017 - 1:00
#elementary-number-theory
#gaussian-integers
165
Views
Let $I=(2,1+\sqrt{-5}), J=(3,1-\sqrt{-5}) \trianglelefteq \mathbb{Z}[\sqrt{-5}]$, show $IJ=(1-\sqrt{-5})$
Published on
12 Jan 2018 - 18:43
#abstract-algebra
#gaussian-integers
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