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15
Math.TechQA.Club
2015-11-03 01:14:10
4.2k
Views
Extended euclidean algorithm using table
Published on
03 Nov 2015 - 1:14
#calculus
#euclidean-algorithm
693
Views
Solving Linear Congruences with Euclidean algorithm
Published on
03 Nov 2015 - 3:21
#elementary-number-theory
#congruences
#euclidean-algorithm
238
Views
euclidian algorithm proof
Published on
07 Nov 2015 - 3:56
#proof-writing
#gcd-and-lcm
#euclidean-algorithm
243
Views
Question on uniqueness in the proof used for the partial fraction algorithm
Published on
24 Mar 2026 - 12:46
#partial-fractions
#euclidean-algorithm
815
Views
Find the inverse of $x^3+x$ mod $x^4+x+1$ in $F_2[x]$
Published on
10 Nov 2015 - 6:14
#abstract-algebra
#field-theory
#euclidean-algorithm
184
Views
Identify gcd(26,553) with extended euclid algorithm
Published on
11 Nov 2015 - 10:35
#euclidean-algorithm
134
Views
What's the inverse of 1 in (mod x)? (Working in F3)
Published on
11 Nov 2015 - 20:14
#abstract-algebra
#field-theory
#modular-arithmetic
#chinese-remainder-theorem
#euclidean-algorithm
140
Views
Quotient and Remainder algorithm for Euclidean's
Published on
14 Nov 2015 - 18:11
#polynomials
#algorithms
#coding-theory
#euclidean-algorithm
831
Views
Bezout's Theorem
Published on
27 Mar 2026 - 20:54
#elementary-number-theory
#euclidean-algorithm
254
Views
Find the highest common factor.
Published on
24 Nov 2015 - 11:27
#euclidean-algorithm
378
Views
Find GCD$(A_0,A_1,...,A_{2015})$ where $A_n=2^{3n}+3^{6n+2}+5^{6n+2}$ ; $n=0,...,2015$
Published on
24 Nov 2015 - 20:31
#elementary-number-theory
#euclidean-algorithm
603
Views
Kruskal-clustering algorithm
Published on
24 Nov 2015 - 22:11
#euclidean-algorithm
51
Views
Showing that a polynomial is a unit in a quotientring
Published on
27 Nov 2015 - 16:02
#abstract-algebra
#discrete-mathematics
#ring-theory
#finite-fields
#euclidean-algorithm
1k
Views
Find the number that gives the max number of steps for the Euclidean Algorithm
Published on
30 Nov 2015 - 1:16
#elementary-number-theory
#euclidean-algorithm
6.4k
Views
To show $\mathbb{Z}[\sqrt{-5}]$ is not a Euclidean domain, why suffices to show only the field norm $N(a+b\sqrt{-5})=a^2+5b^2$ doesn't work?
Published on
02 Dec 2015 - 7:38
#abstract-algebra
#euclidean-algorithm
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