Using conservation of energy, derive a formula for the speed of an object that has a mass M, is on a spring that has a force constant k, and is oscillating with an amplitude of A, as a function of position v(x). (b) If M has a value of 250 g, the spring constant is 85 N/m, and the amplitude is 10.0 cm, use the formula to calculate the speed of the object at x = 0 cm, 2.0 cm, 5.0 cm, 8.0 cm, and 10.0 cm.

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter3: Oscillations
Section: Chapter Questions
Problem 3.44P: Consider a damped harmonic oscillator. After four cycles the amplitude of the oscillator has dropped...
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Using conservation of energy, derive a formula for the speed of an object that has a mass M, is on a spring that has a force constant k, and is oscillating with an amplitude of A, as a function of position v(x). (b) If M has a value of 250 g, the spring constant is 85 N/m, and the amplitude is 10.0 cm, use the formula to calculate the speed of the object at x = 0 cm, 2.0 cm, 5.0 cm, 8.0 cm, and 10.0 cm.

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