Moving at an initial speed of vi=2.00m/s, Jimmy slides from a height of h=5.00m down a straight playground slide, which is inclined at theta=55° above the horizontal. At the bottom of the slide, Jimmy is moving at vf=9.00m/s. By determining the change in mechanical energy, calculate the coefficient of kinetic friction between Jimmy and the slide.
Moving at an initial speed of vi=2.00m/s, Jimmy slides from a height of h=5.00m down a straight playground slide, which is inclined at theta=55° above the horizontal. At the bottom of the slide, Jimmy is moving at vf=9.00m/s. By determining the change in mechanical energy, calculate the coefficient of kinetic friction between Jimmy and the slide.
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 21P: A 5.00-kg block is set into motion up an inclined plane with an initial speed of i = 8.00 m/s (Fig....
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Moving at an initial speed of vi=2.00m/s, Jimmy slides from a height of h=5.00m down a straight playground slide, which is inclined at theta=55° above the horizontal. At the bottom of the slide, Jimmy is moving at vf=9.00m/s. By determining the change in mechanical energy, calculate the coefficient of kinetic friction between Jimmy and the slide.
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