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15
Math.TechQA.Club
2018-05-07 00:23:56
221
Views
How to Find the Angle of a Line With its Slope Against the X-Axis Without Trig Functions
Published on
07 May 2018 - 0:23
#trigonometry
#pi
139
Views
How is $π$ irrational if.....
Published on
07 May 2018 - 15:22
#pi
353
Views
How do I calculate $2^\pi$?
Published on
11 May 2018 - 19:22
#exponentiation
#pi
1.4k
Views
Recent progress in the irrationality measure of $\pi$
Published on
23 Mar 2026 - 12:29
#number-theory
#reference-request
#pi
#irrationality-measure
147
Views
Why is ${22\over7}-\pi =\int_0^1{(x-x^2)^4\over1+x^2}dx$
Published on
13 May 2018 - 3:04
#integration
#pi
530
Views
$\pi$ out of a right triangle and a circle
Published on
14 May 2018 - 17:59
#proof-writing
#circles
#triangles
#area
#pi
569
Views
Is this a valid mathematical proof that $\pi = 4\sqrt{\sqrt{5/4}-\sqrt{1/4}}$?
Published on
15 May 2018 - 23:48
#geometry
#trigonometry
#proof-verification
#pi
48
Views
Leibniz convergence
Published on
21 May 2018 - 11:27
#sequences-and-series
#discrete-mathematics
#pi
734
Views
How do I start this integral problem: $\int_0^1 \frac{\ln^3 u}{1-u} du = -\frac{\pi^4}{15} $?
Published on
26 May 2018 - 7:42
#integration
#definite-integrals
#riemann-integration
#pi
1.5k
Views
Can we express $\pi$ in terms of $\sum_{n=1}^\infty\frac1{n^2}$?
Published on
29 May 2018 - 12:58
#real-analysis
#sequences-and-series
#summation
#pi
120
Views
On a conjecture that $\sum\limits_{n=1}^k\frac{1}{\pi^{1/n}p_n}\stackrel{k\to\infty}{\longrightarrow} 2$.
Published on
30 May 2018 - 5:22
#sequences-and-series
#convergence-divergence
#prime-numbers
#pi
#conjectures
202
Views
Why does pi has so many digits?
Published on
11 Jun 2018 - 10:02
#pi
68
Views
Decimal representations containing every possible sequence
Published on
11 Jun 2018 - 11:01
#number-theory
#irrational-numbers
#pi
579
Views
Can we find every finite sequence of $\pi$ within $\pi$?
Published on
20 Jun 2018 - 20:11
#number-theory
#irrational-numbers
#random
#pi
116
Views
Evaluation of infinite series of ratios (with denominators given as finite products) in terms of rational numbers and $\pi\sqrt3$
Published on
17 Mar 2026 - 16:42
#sequences-and-series
#pi
#diophantine-approximation
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