4. A block slides with constant velocity down an inclined plane that has slope angle 0 = 30°. (a) Find the coefficient of kinetic friction between the block and the plane. (b) If the block is projected up the same plane with initial speed v0 = 2.5 m/s, how far up the plane will it move before coming to rest? What fraction of the initial kinetic energy is transformed into potential energy? What happens to the remaining energy?

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
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4. A block slides with constant velocity down an inclined plane that has slope
angle 8 = 30°.
(a) Find the coefficient of kinetic friction between the block and the plane.
(b) If the block is projected up the same plane with initial speed v0 = 2.5 m/s, how
far up the plane will it move before coming to rest? What fraction of the initial
kinetic energy is transformed into potential energy? What happens to the
remaining energy?
Transcribed Image Text:4. A block slides with constant velocity down an inclined plane that has slope angle 8 = 30°. (a) Find the coefficient of kinetic friction between the block and the plane. (b) If the block is projected up the same plane with initial speed v0 = 2.5 m/s, how far up the plane will it move before coming to rest? What fraction of the initial kinetic energy is transformed into potential energy? What happens to the remaining energy?
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