EBK NONLINEAR DYNAMICS AND CHAOS WITH S
EBK NONLINEAR DYNAMICS AND CHAOS WITH S
2nd Edition
ISBN: 9780429680151
Author: STROGATZ
Publisher: VST
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Chapter 2.5, Problem 6E
Interpretation Introduction

Interpretation:

For a water bucket with a hole in the bottom, it is to be shown that av(t) = Ah˙(t), where a is the area of the hole, A is the cross-sectional area of the bucket, v(t) is the velocity of the water passing through the hole, and h(t) is the height of the water remaining in the bucket at time t. The equation v2 = 2gh is to be derived. It is to be shown that h˙ = -Ch, where C = 2g(aA). Given h(0) = 0, it is to be shown that the solution of h(t) is non-unique for t < 0.

Concept Introduction:

By invoking the law of conservation of mass, the equation av(t) = Ah˙(t) can be proved.

By using the law of conservation of energy, the equation v2 = 2gh can be derived.

By using the equations av(t) = Ah˙(t) and v2 = 2gh, it can be shown that h˙ = -Ch, where C = 2g(aA).

It can be shown that the solution of h(t) is non-unique for t < 0 by integrating the equation h˙ = -Ch and using the initial condition h(0) = 0.

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3. Consider the following theorem: Theorem: If n is an odd integer, then n³ is an odd integer. Note: There is an implicit universal quantifier for this theorem. Technically we could write: For all integers n, if n is an odd integer, then n³ is an odd integer. (a) Explore the statement by constructing at least three examples that satisfy the hypothesis, one of which uses a negative value. Verify the conclusion is true for each example. You do not need to write your examples formally, but your work should be easy to follow. (b) Pick one of your examples from part (a) and complete the following sentence frame: One example that verifies the theorem is when n = We see the hypothesis is true because and the conclusion is true because (c) Use the definition of odd to construct a know-show table that outlines the proof of the theorem. You do not need to write a proof at this time.
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