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15
Math.TechQA.Club
2026-03-31 05:24:04
175
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How to compute $\lim\limits_{n\to\infty}\int_0^\pi \frac{\sin x}{1+3\cos^2(nx)}\text dx$
Published on
31 Mar 2026 - 5:24
#calculus
#real-analysis
#integration
#limits
#trigonometry
244
Views
Double integral of exponential function
Published on
05 Apr 2026 - 23:04
#calculus
#analysis
142
Views
Computing $\int_0^\pi \frac{dx}{1+a^2\cos^2(x)}$
Published on
09 Apr 2026 - 0:30
#calculus
#real-analysis
#integration
#trigonometry
#closed-form
37
Views
Further Problem on Tangents Requiring the Use of Differentiation
Published on
09 Apr 2026 - 0:07
#calculus
#derivatives
#tangent-line
558
Views
i'm 15 and I really want to start learning calculus, I know geometry, a little trig, and algebra 1 and 2 what is the best way to go about this?
Published on
09 Apr 2026 - 6:06
#calculus
#algebra-precalculus
#education
106
Views
Limit of $\lim_{x \rightarrow 0^+} e^{\frac{x}{x}}$
Published on
10 Apr 2026 - 4:41
#calculus
#real-analysis
#limits
#derivatives
278
Views
Spivak: Calculation of $\lim\limits_{n\to \infty }na_n $ when $\sum\limits_{n=1}^\infty a_n$ converges
Published on
17 Jan 2018 - 16:13
#calculus
#real-analysis
231
Views
How to solve this integral with separation of variables?
Published on
10 Apr 2026 - 8:25
#calculus
#integration
#ordinary-differential-equations
48
Views
Find $\frac{dy}{dx}$ ($y$ given in terms of a definite integral)
Published on
10 Apr 2026 - 3:04
#calculus
#integration
#derivatives
#definite-integrals
380
Views
Continuous function with parameter
Published on
09 Apr 2026 - 7:48
#calculus
#continuity
65
Views
Determining the sign of an integral using the mean value theorem.
Published on
10 Apr 2026 - 3:04
#calculus
#real-analysis
#integration
#definite-integrals
171
Views
Can't find the result of $ \sum_{n=0}^{\infty} \frac 1 {n(n+1)(n+2)}$
Published on
10 Apr 2026 - 8:25
#calculus
#sequences-and-series
3.1k
Views
Calculus book suggestion
Published on
10 Apr 2026 - 11:13
#calculus
#book-recommendation
843
Views
Convergence (or Divergence) of [(-1)^(n-1)*e^(1/n)]/n
Published on
09 Apr 2026 - 2:44
#calculus
#convergence-divergence
#divergent-series
1.5k
Views
Simple proof of $x^n−y^n=(x−y)(x^{n−1}+x^{n−2}y+…+xy^{n−2}+y^{n−1})$
Published on
17 Jan 2018 - 18:43
#calculus
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