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15
Math.TechQA.Club
2015-05-04 18:35:08
1k
Views
Factorization method using difference of squares (Fermat, Dixon)
Published on
04 May 2015 - 18:35
#elementary-number-theory
#factoring
5.2k
Views
Simple Fermat Factorization Example
Published on
05 May 2015 - 2:25
#factoring
581
Views
Diagonally dominant matrix for Cholesky?
Published on
25 Mar 2026 - 11:19
#linear-algebra
#matrices
#factoring
#symmetric-matrices
#cholesky-decomposition
368
Views
Questions from Dixon Factorization Paper
Published on
08 May 2015 - 14:44
#factoring
295
Views
Irreducibility and factoring in $\mathbb Z[i], \mathbb Z[\sqrt{-3}]$
Published on
08 May 2015 - 17:04
#abstract-algebra
#ring-theory
#factoring
675
Views
Laplace transform (Simple factorization)
Published on
08 May 2015 - 17:19
#laplace-transform
#factoring
455
Views
Reducible polynomials in $\mathbb{Z}[X]$
Published on
04 Apr 2026 - 21:31
#abstract-algebra
#polynomials
#factoring
#irreducible-polynomials
95
Views
Solving "finding value" using factorisation
Published on
11 May 2015 - 11:49
#factoring
91
Views
Factorising polynomials over $\mathbb{Z}_2$
Published on
11 May 2015 - 12:23
#algebra-precalculus
#polynomials
#factoring
1.3k
Views
proof that $\frac{x^p - 1}{x-1} = 1 + x + \dots + x^{p-1}$ is irreducible
Published on
26 Mar 2026 - 21:10
#abstract-algebra
#polynomials
#factoring
#irreducible-polynomials
#cyclotomic-polynomials
199
Views
Methods for factorising polynomials into irreducibles over finite fields
Published on
11 May 2015 - 21:41
#abstract-algebra
#polynomials
#soft-question
#finite-fields
#factoring
899
Views
What is the remainder $ax+b$ when a cubic polynomial $P(x)$ is divided by $x^2-1$?
Published on
12 May 2015 - 12:45
#factoring
43.8k
Views
How to know if equation can be solved by factorising before trying?
Published on
12 May 2015 - 18:19
#factoring
#quadratics
8.7k
Views
How do I quickly factorize quadratic equations?
Published on
13 May 2015 - 7:08
#factoring
287
Views
Theoretical way to prove no positive integer $n$ exists such that $n+3$ and $n^2+3n+3$ are both perfect cubes.
Published on
14 May 2015 - 2:46
#elementary-number-theory
#contest-math
#factoring
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