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15
Math.TechQA.Club
2026-03-25 06:03:36
53
Views
How would i put this into polynomial equation really struggling ive tried alot
Published on
25 Mar 2026 - 6:03
#measure-theory
#polynomials
#summation
#education
265
Views
Calculating upper and lower limits for a linear function
Published on
12 May 2018 - 11:29
#linear-algebra
#limits
#summation
3.2k
Views
What is the sum of numbers between 250 and 350 which are divisible by 7?
Published on
25 Mar 2026 - 11:04
#sequences-and-series
#summation
#arithmetic-progressions
788
Views
Finding upper bound of a linear function
Published on
25 Mar 2026 - 18:45
#calculus
#limits
#summation
#upper-lower-bounds
99
Views
Sum of reciprocals of prime numbers, using alternating sings
Published on
25 Mar 2026 - 16:02
#sequences-and-series
#summation
#prime-numbers
#divergent-series
#riemann-sum
42
Views
Evaluation of Summations
Published on
13 May 2018 - 7:36
#calculus
#sequences-and-series
#summation
64
Views
How to explain the equation about summation?
Published on
27 Mar 2026 - 13:39
#statistics
#summation
#economics
151
Views
Confirmation of Proof: $\exp_a\Big\{\sum_{k=1}^n \gcd(k,n)\cos\left(\frac{2\pi k}{n}\right)\Big\}\equiv 1\pmod n$.
Published on
26 Mar 2026 - 19:20
#elementary-number-theory
#summation
#proof-writing
#modular-arithmetic
#exponential-function
288
Views
sum of alternating binomial
Published on
26 Mar 2026 - 9:37
#combinatorics
#summation
#binomial-coefficients
136
Views
Telescoping sum involving $\int_0^\frac{\pi}{2}\cos^{2n} x\,dx$ and $\int_0^\frac{\pi}{2}x^2\cos^{2n} x\,dx$
Published on
25 Mar 2026 - 17:21
#integration
#limits
#summation
#gamma-function
242
Views
Finding upper and lower sum of a Heaviside function.
Published on
25 Mar 2026 - 18:45
#calculus
#definite-integrals
#summation
#upper-lower-bounds
201
Views
Concrete Mathematics(3.2) - Doubt in a Summation involving Floor Function
Published on
25 Mar 2026 - 9:36
#discrete-mathematics
#summation
#ceiling-and-floor-functions
163
Views
Evaluate $\sum_{n=1}^\infty \frac{(-1)^{n+1}n^2}{n^4+1}$
Published on
14 May 2018 - 16:31
#complex-analysis
#complex-numbers
#summation
55
Views
Why is P{$\cup_{k=2,4,6,...even}[\frac{1}{2^k},\frac{1}{2^k}+\frac{1}{2^{k+1}}]$}=$\sum_{k=2,4,6,..even}\frac{1}{2^{k+1}}$
Published on
15 May 2018 - 1:38
#probability
#summation
3k
Views
How to rewrite a Sum?
Published on
15 May 2018 - 5:31
#summation
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