Chaos

Chaos

Predictability, Turbulence in fluids, Duffing oscillator, Lorenz waterwheel

1 / 10

A chaotic system exhibits a positive Lyapunov exponent of 1.0. How does the separation between two trajectories change after 2 time units?

2 / 10

A chaotic system has a fractal dimension of 2.5. What does this indicate about the system?

3 / 10

A particle in a chaotic system exhibits an average separation rate of 0.1 m/s from a neighboring trajectory. If the Lyapunov exponent is 0.2, how much time does it take for the separation to double?

4 / 10

A system has a Lyapunov exponent of 0.5. How does the distance between two nearby trajectories change after 10 time units?

5 / 10

In a chaotic system, what happens to predictability as time progresses?

6 / 10

In fluid dynamics, what term describes the chaotic motion of fluid layers?

7 / 10

The double pendulum has a total energy E of 20 J. If small perturbations lead to chaotic motion, what remains conserved despite the chaos?

8 / 10

The logistic map x_{n+1} = r x_n (1 – x_n) exhibits chaotic behavior for which range of r?

9 / 10

Which equation models chaos in electrical circuits?

10 / 10

Which famous experiment illustrates chaos theory?

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