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15
Math.TechQA.Club
2026-04-12 13:36:20
168
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Show that f: $\mathbb{R}$/$\mathbb{Z}$ $\to$ $\mathbb{R}$/$\mathbb{Z}$ orientation reversing. Then f(x) = x has exactly 2 solutions.
Published on
12 Apr 2026 - 13:36
#dynamical-systems
279
Views
Prove that $T$ has an orbit of period 3
Published on
15 Apr 2026 - 12:35
#real-analysis
#dynamical-systems
69
Views
Velocity field arrows along null clines as well as outside null clines
Published on
13 Apr 2026 - 14:49
#dynamical-systems
218
Views
How can this function be considered to have a saddle node bifurcation?
Published on
26 Mar 2026 - 12:44
#general-topology
#functions
#dynamical-systems
#bifurcation
980
Views
Lotka-Volterra Problem From Arnold's Ordinary Differential Equations
Published on
13 Apr 2026 - 0:52
#ordinary-differential-equations
#dynamical-systems
69
Views
smoothness of invariant manifolds
Published on
14 Apr 2026 - 10:30
#dynamical-systems
471
Views
How to describe behavior of population system, given by system of ODEs?
Published on
13 Apr 2026 - 2:58
#ordinary-differential-equations
#dynamical-systems
#systems-of-equations
67
Views
What are the fixed points of $f_ c = c · \sin$ for $c > 1$?
Published on
14 Apr 2026 - 5:32
#real-analysis
#dynamical-systems
177
Views
is there a diffeomorphism with only finite orbits but of infinite order?
Published on
19 Apr 2026 - 22:25
#differential-topology
#dynamical-systems
#smooth-manifolds
4.8k
Views
How to find periodic points non-algebraically
Published on
12 Apr 2026 - 6:33
#dynamical-systems
#fixed-point-theorems
#periodic-functions
2.5k
Views
Linearize system around trajectory
Published on
10 Apr 2026 - 16:35
#dynamical-systems
185
Views
Need a textbook for math course
Published on
26 Mar 2026 - 12:42
#ordinary-differential-equations
#partial-differential-equations
#dynamical-systems
#applications
#bifurcation
68
Views
Fixed points of dynamical system
Published on
10 Apr 2026 - 16:02
#dynamical-systems
250
Views
Prove that there exists an $n\in\mathbb{Z}\cup\left\{-\infty,+\infty\right\}$ such that... (Dynamics)
Published on
13 Apr 2026 - 11:51
#proof-verification
#dynamical-systems
199
Views
Show that for a gradient system $\bf\dot x= f(x)$, $\frac{\partial f_i}{\partial x_j}-\frac{\partial f_j}{\partial x_i}=0$ for $1 \leq i, j \leq d$
Published on
17 Apr 2026 - 4:41
#calculus
#multivariable-calculus
#dynamical-systems
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