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15
Math.TechQA.Club
2026-02-24 20:56:24
288
Views
Is there an error in this GRE question?
Published on
24 Feb 2026 - 20:56
#number-theory
#square-numbers
#gre-exam
344
Views
Prove $m-n$ and $2m+2n+1$ are coprime
Published on
04 Sep 2015 - 16:31
#elementary-number-theory
#square-numbers
136
Views
Problem with Indices question
Published on
08 Sep 2015 - 21:07
#square-numbers
100
Views
Is there a factorial of the form $p m^2$ greater than 720?
Published on
09 Sep 2015 - 5:39
#number-theory
#prime-numbers
#factorial
#square-numbers
973
Views
Square number as a sum of two number.
Published on
09 Sep 2015 - 19:07
#square-numbers
76
Views
Prove that there is an integer $b$ greater than an integer $a$, such that $a + b$ is a perfect square.
Published on
13 Sep 2015 - 14:21
#elementary-number-theory
#square-numbers
24
Views
Calculating answer using Ratios
Published on
13 Sep 2015 - 22:35
#square-numbers
3.4k
Views
Find All $x$ values where $f(x)$ is Perfect Square
Published on
14 Sep 2015 - 13:12
#number-theory
#diophantine-equations
#square-numbers
#pell-type-equations
638
Views
how do i know this without using calculator :$\sqrt{(9999²+19999)}$
Published on
20 Sep 2015 - 14:15
#elementary-number-theory
#square-numbers
129
Views
Are Fibonacci numbers with a square prime index always divisible by $F_p$?
Published on
25 Sep 2015 - 5:13
#fibonacci-numbers
#square-numbers
1.8k
Views
If the square of a natural number is odd then this number is odd.
Published on
27 Sep 2015 - 16:23
#proof-explanation
#square-numbers
93
Views
The amount of times a number need to be squared rooted
Published on
01 Oct 2015 - 21:15
#recurrence-relations
#recursion
#square-numbers
2k
Views
Sum of Odd Numbers make Squares
Published on
25 Feb 2026 - 10:55
#square-numbers
#pattern-recognition
#pattern-matching
886
Views
Is it possible to subtract a perfect square from another number to make it a perfect square?
Published on
07 Oct 2015 - 12:55
#elementary-number-theory
#algebraic-number-theory
#least-squares
#square-numbers
823
Views
Explicit formula for a recurrance relationship $A_n = A_{n-1} + 2n + 1$
Published on
08 Oct 2015 - 21:42
#algorithms
#recurrence-relations
#computer-science
#recursion
#square-numbers
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