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15
Math.TechQA.Club
2026-03-25 17:36:14
233
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Inquiries around a new number system
Published on
25 Mar 2026 - 17:36
#number-systems
#hypercomplex-numbers
45
Views
How quickly can we find a modulated sequence of powers?
Published on
01 Sep 2013 - 18:33
#elementary-number-theory
#modular-arithmetic
#number-systems
73
Views
Is there a way of getting these vectors linearly independent?
Published on
02 Sep 2013 - 17:25
#matrices
#number-systems
83
Views
Can we restrict the average multiplicative order of a number?
Published on
02 Sep 2013 - 21:05
#elementary-number-theory
#number-systems
311
Views
More than one blocks of infinitely repeating digits in a number
Published on
08 Sep 2013 - 16:00
#infinity
#number-systems
6.5k
Views
Finding the last two digits of a number by binomial theorem
Published on
09 Sep 2013 - 9:31
#elementary-number-theory
#binomial-theorem
#number-systems
#decimal-expansion
73
Views
How can I demonstrate that the decimal equivalent for a binary number consisting of $n$ $1$'s is $2^n-1$?
Published on
09 Sep 2013 - 20:02
#number-systems
193
Views
Is notation of a number in base-(-2) numeral system unambiguous?
Published on
10 Sep 2013 - 18:17
#number-systems
285
Views
In a numerical system of base $r$, the polynomial $x^2 − 11x + 22 = 0$ has the solutions $3$ and $6$. What is the base r of the system?
Published on
10 Sep 2013 - 22:31
#polynomials
#roots
#number-systems
1.7k
Views
How to represent a decimal number in ternary or base $3$ number system?
Published on
17 Sep 2013 - 12:33
#number-systems
948
Views
Complement Calculations - Why do I get different answers with ones' and twos' complement?
Published on
23 Sep 2013 - 14:22
#arithmetic
#number-systems
#binary
128
Views
Multiplication of negative numbers is always positive
Published on
08 Oct 2013 - 13:31
#number-systems
27.6k
Views
Count of 3-digit numbers with at least one digit as 9
Published on
09 Oct 2013 - 7:45
#combinatorics
#permutations
#number-systems
66
Views
How would one prove that $\# (E \cup G) = \#(E) + \#(G)$?
Published on
09 Oct 2013 - 15:40
#number-systems
37
Views
Prove that $j < n$, $k < n - j$ and $(n - j) - k = n - (j + k)$ if we know that $j + k < n$ in $\mathbb{N}$
Published on
11 Oct 2013 - 15:29
#number-systems
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