A block of mass m= 0.28 kg is resting against the spring with force constant K= 250 N/m and compressing the spring by a distance of 16 cm. Use conservation of energy in finding the maximum distance the block travels on a rough inclined plane with a coefficient of kinetic friction is 0.15. Assume that the block was initially released from rest and the horizontal surface is smooth. 20

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter9: Energy In Nonisolated Systems
Section: Chapter Questions
Problem 80PQ: A block of mass m = 0.250 kg is pressed against a spring resting on the bottom of a plane inclined...
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A block of mass m= 0.28 kg is resting against the spring with force constant K= 250 N/m and compressing the spring by a
distance of 16 cm. Use conservation of energy in finding the maximum distance the block travels on a rough inclined plane with
a coefficient of kinetic friction is 0.15.
Assume that the block was initially released from rest and the horizontal surface is smooth.
20
Transcribed Image Text:A block of mass m= 0.28 kg is resting against the spring with force constant K= 250 N/m and compressing the spring by a distance of 16 cm. Use conservation of energy in finding the maximum distance the block travels on a rough inclined plane with a coefficient of kinetic friction is 0.15. Assume that the block was initially released from rest and the horizontal surface is smooth. 20
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