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15
Math.TechQA.Club
2026-05-05 19:49:47
44
Views
Difficulty in showing root of polynomial
Published on
05 May 2026 - 19:49
#number-theory
#elementary-number-theory
249
Views
Euler's totient function applied to higher power triples
Published on
10 Apr 2026 - 2:28
#number-theory
#elementary-number-theory
#totient-function
#pythagorean-triples
180
Views
Is there an concept of Least Common Odd Multiple?
Published on
09 Apr 2026 - 5:32
#number-theory
#least-common-multiple
34
Views
I've the question about number theory
Published on
10 Apr 2026 - 1:14
#number-theory
166
Views
Proof of Gaussian coefficients identity
Published on
11 Apr 2026 - 3:45
#combinatorics
#number-theory
#binomial-coefficients
147
Views
Find the digit of the units for the number $(5)(7^{29})+(8)(9^{72})$
Published on
16 Apr 2026 - 21:02
#number-theory
#modular-arithmetic
401
Views
How many entries in the nth row of pascal triangle are divisible by 4(by even number)?
Published on
12 Apr 2026 - 20:37
#number-theory
749
Views
Introduction to $p$-adic Numbers
Published on
11 Apr 2026 - 18:57
#number-theory
#p-adic-number-theory
529
Views
For any $a$, can we find $b$ and $c$ such that $\phi(a^2)+\phi(b^2)=\phi(c^2)$? ($\phi$ is Euler's totient function.)
Published on
17 Apr 2026 - 13:59
#number-theory
#elementary-number-theory
#totient-function
660
Views
Show set of all real number in ($0,1$) with base $10$ decimal expansion contains no $3$s or $7$s is uncountable
Published on
17 Apr 2026 - 1:30
#number-theory
#analysis
#real-numbers
#decimal-expansion
79
Views
Algorithm for finding a "normal" form for a set of strings under character-mapping isomorphism?
Published on
27 Mar 2026 - 0:09
#number-theory
#algorithms
#equivalence-relations
1.5k
Views
How many perfect powers are there amoung the first 1000 positive integers
Published on
12 Apr 2026 - 23:12
#number-theory
#perfect-powers
154
Views
Is the notion of multiplicative order defined for rational numbers as well as integers?
Published on
17 Apr 2026 - 14:17
#number-theory
80
Views
Show that: If $1 ≤ x ≤ y ≤ z$ and $x! + y! = z!$ , then $x = y = 1$ and $z = 2$.
Published on
16 Apr 2026 - 6:42
#number-theory
#modular-arithmetic
240
Views
Guess 4 digit number where each digit has a range from [ 1, 6 ] with oracle
Published on
15 Apr 2026 - 22:55
#combinatorics
#number-theory
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