Nonlinear Dynamics and Chaos
Nonlinear Dynamics and Chaos
2nd Edition
ISBN: 9780813349107
Author: Steven H. Strogatz
Publisher: PERSEUS D
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Chapter 8.6, Problem 3E
Interpretation Introduction

Interpretation:

To show that each trajectory is dense by considering flow on torus given by, θ˙11θ˙22

Concept Introduction:

  • ➢ The fixed point of a differential equation is a point where, f(x*) = 0 ; while substitution f(x*) = x˙ is used and x&*#x00A0;is a fixed point.

  • ➢ Dense Trajectory on the torus means trajectory comes arbitrarily close to any given point on the torus but it does not pass through that point and orbit is never a closed one.

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e) Consider the flow ϕt (v) = e^(tA) v, v in R^(n) generated by the linear system x' = Ax where A in M (n, R). e1) Give a condition that implies that o bar is a Poincare stable fixed point for the above flow. e2) Is this condition a necessary conditon? e3) Give a condition that implies that o bar is a Lyapunov stable fixed point for the above system. e4) Is this condition necessary?
1. a) Let (x, d) be a metric space. Define a flow on (x, d). b) Let (x, {ϕt}) be a flow on a metric space X. When is xo in x a fixed point of the flow? c) When do you say that a fixed point xo in x is Poincare stable? d) When do you say that a fixed point xo is Lypanov stable?
(a) Find the minimum and maximum xcoordinates of points on the cardioid r =1−cosθ.(b) Find the minimum and maximum ycoordinates of points on the cardioid in part (a).
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