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15
Math.TechQA.Club
2026-04-17 14:28:01
94
Views
On the integral $\iint_{\partial B_1(0)}\frac{d\Omega}{\left(1+a\cdot r\right)\left(1+b\cdot r\right)}$
Published on
17 Apr 2026 - 14:28
#integration
#multivariable-calculus
#contour-integration
47
Views
$\int \left| f_n \right|< M$ then $\left| f_n(x) \right|\leq g(x)$
Published on
17 Apr 2026 - 6:04
#calculus
#real-analysis
#integration
415
Views
Recreational integral problem: $\int_0^1 (x+\sqrt[3]{x^3-1})^{2018}dx$
Published on
15 Apr 2026 - 16:49
#integration
#definite-integrals
#recreational-mathematics
134
Views
Differential Equation By Method of Integrating factors
Published on
29 Apr 2026 - 16:16
#integration
#ordinary-differential-equations
107
Views
Compute a monster integal
Published on
17 Apr 2026 - 20:39
#calculus
#integration
29
Views
How to integrate the following integral? Is it integrable?
Published on
09 Apr 2026 - 13:59
#integration
#improper-integrals
#lebesgue-integral
99
Views
Integration using numerical methods
Published on
13 Apr 2026 - 11:46
#calculus
#integration
#numerical-methods
96
Views
Evaluate $\int_{0}^{\pi}\Big\{\int_{y^2}^{\pi}\frac{y\sin x}{x} dx\Big\}dy$
Published on
17 Apr 2026 - 1:23
#integration
#riemann-integration
381
Views
How to show that $\mathscr{P} \int_{-\infty}^{\infty} \frac{d\omega}{\sqrt{\omega^2}} e^{ - i \omega t }$ is equal to $- \log(t^2)$
Published on
25 Mar 2026 - 6:13
#integration
#fourier-transform
#harmonic-analysis
#cauchy-principal-value
170
Views
How could I simplify this exponential sum?
Published on
07 Apr 2026 - 23:09
#calculus
#integration
#summation
#approximation
#exponential-sum
55
Views
Finiteness of an Integral over a Borel Measurable Function
Published on
05 May 2026 - 8:51
#probability
#integration
#borel-measures
991
Views
Notation of a volume integral
Published on
13 Apr 2026 - 23:53
#calculus
#integration
#notation
65
Views
Integral involving exponential of exponential convergence
Published on
13 Apr 2026 - 3:13
#integration
#convergence-divergence
#definite-integrals
127
Views
On $\int_0^1\left(\int_0^\infty\frac{\operatorname{gd}(x+y)}{\exp(x+y)}dx\right)dy$, being $\operatorname{gd}(u)$ the Gudermannian function
Published on
15 Apr 2026 - 18:40
#integration
#definite-integrals
#special-functions
#closed-form
580
Views
Checking whether a complex function has an antiderivative
Published on
08 Apr 2026 - 23:37
#integration
#complex-analysis
#holomorphic-functions
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