A 25-kg child slides down a playground slide that is 6.6 m long and makes an angle of 30° above the horizontal. The child starts from rest at the top of the slide. As the child slides down the slide, a kinetic frictional force of magnitude 15 N acts on her. 7 What is the change in potential energy when the child travels from the top of the slide to the bottom of the slide?

University Physics Volume 1
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ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 68P: Shown below is a box of mass m1 that sits on a frictionless incline at an angle above the horizontal...
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A 25-kg child slides down a playground slide that is 6.6 m long and makes an angle of
30° above the horizontal. The child starts from rest at the top of the slide. As the child
slides down the slide, a kinetic frictional force of magnitude 15 N acts on her.
What is the change in potential energy when the child travels from the top of the
slide to the bottom of the slide?
Transcribed Image Text:A 25-kg child slides down a playground slide that is 6.6 m long and makes an angle of 30° above the horizontal. The child starts from rest at the top of the slide. As the child slides down the slide, a kinetic frictional force of magnitude 15 N acts on her. What is the change in potential energy when the child travels from the top of the slide to the bottom of the slide?
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