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15
Math.TechQA.Club
2026-04-09 00:53:34
192
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"Beats" via trig identity or something?
Published on
09 Apr 2026 - 0:53
#ordinary-differential-equations
#almost-periodic-functions
1.4k
Views
System of differential equations - 3 masses spring system
Published on
20 Feb 2018 - 16:07
#ordinary-differential-equations
62
Views
Can a Mellin / Laplace Transform-like method be done with functions beside $x^{s-1}, e^{-st}$?
Published on
09 Apr 2026 - 2:24
#ordinary-differential-equations
#linear-transformations
#laplace-transform
#mellin-transform
339
Views
Specific gradient descent
Published on
31 Mar 2026 - 21:45
#ordinary-differential-equations
#algorithms
#gradient-descent
269
Views
Show that Hill's Equation $u'' + a(t)u=0$ if $a(t)<0$ for all $t$ then $u\to\infty$ as $t\to\infty$
Published on
13 Apr 2026 - 2:48
#real-analysis
#ordinary-differential-equations
167
Views
Maximal solutions of $x' = \sqrt{|x|}$, $x(0) = 0$
Published on
24 Mar 2026 - 23:46
#ordinary-differential-equations
#initial-value-problems
122
Views
Request picture(s) for ODE
Published on
20 Feb 2018 - 20:25
#ordinary-differential-equations
1.3k
Views
Why a n-th order linear homogeneous ODE has exactly n linearly independent solutions?
Published on
01 Apr 2026 - 21:34
#linear-algebra
#ordinary-differential-equations
69
Views
Reduction of order where $y_1=(\beta \tan^2x+1)$ with $\beta \in R$
Published on
11 Apr 2026 - 13:15
#ordinary-differential-equations
#reduction-of-order-ode
167
Views
$(3t+1)y'' - (9t+6)y' + 9y = -3.$
Published on
21 Feb 2018 - 2:09
#ordinary-differential-equations
206
Views
What is $e^{\int{\frac{1}{x}dx}}$?
Published on
11 Apr 2026 - 18:39
#integration
#ordinary-differential-equations
#indefinite-integrals
#integrating-factor
45
Views
Diagonal power series
Published on
02 Apr 2026 - 4:42
#ordinary-differential-equations
#power-series
#formal-power-series
176
Views
general solution of the FODE $\frac{1}{\sin(x)} \frac{dy}{dx} = y\sec(x) -2$
Published on
25 Mar 2026 - 6:12
#ordinary-differential-equations
#differential
128
Views
When either $\frac{\partial M}{\partial y}$, or $ \frac{\partial N}{\partial x}$ do not exists, how to check whether given ODE is exact or not
Published on
21 Feb 2018 - 8:01
#ordinary-differential-equations
280
Views
Singular points of $(4x^3 y^3 + 1/x)dx + (3x^4 y^2 - 1/y)dy = 0$
Published on
24 Mar 2026 - 20:42
#ordinary-differential-equations
#singularity
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