Question 3 A skier starts at the top of a 37-meter high mountain. She pushes off, giving herself an initial speed of 2.2 m/s. The mountain is very icy and so can be treated as frictionless. The level ground below the mountain has a coefficient of kinetic friction 0.357. a) What is the speed of the skier when she reaches the bottom of the hill? b) Use the work-energy theorem to compute how far she travels on the rough, horizontal ground before coming to rest.

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
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Problem 6P: A block of mass m = 5.00 kg is released from point and slides on the frictionless track shown in...
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Question 3 A skier starts at the top of a 37-meter high mountain. She pushes off, giving herself
an initial speed of 2.2 m/s. The mountain is very icy and so can be treated as frictionless. The
level ground below the mountain has a coefficient of kinetic friction 0.357.
a) What is the speed of the skier when she reaches the bottom of the hill?
b) Use the work-energy theorem to compute how far she travels on the rough, horizontal ground
before coming to rest.
Transcribed Image Text:Question 3 A skier starts at the top of a 37-meter high mountain. She pushes off, giving herself an initial speed of 2.2 m/s. The mountain is very icy and so can be treated as frictionless. The level ground below the mountain has a coefficient of kinetic friction 0.357. a) What is the speed of the skier when she reaches the bottom of the hill? b) Use the work-energy theorem to compute how far she travels on the rough, horizontal ground before coming to rest.
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