A 5.40-kg block is set into motion up an inclined plane with an initial speed of v, = 8.60 m/s (see figure below). The block comes to rest after traveling d = 3.00 m along the plane, which is inclined at an angle of e = 30.0° to the horizontal. (a) For this motion, determine the change in the block's kinetic energy. (b) For this motion, determine the change in potential energy of the block-Earth system. (c) Determine the friction force exerted on the block (assumed to be constant). (d) What is the coefficient of kinetic friction?

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
Chapter23: Faraday’s Law And Inductance
Section: Chapter Questions
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A 5.40-kg block is set into motion up an inclined plane with an initial speed of v, = 8.60 m/s (see figure below). The block comes to rest after traveling d = 3.00 m along
the plane, which is inclined at an angle of e = 30.0° to the horizontal.
two
distance
labeled
up and to the right, parallel to
(a) For this motion, determine the change in the block's kinetic energy.
(b) For this motion, determine the change in potential energy of the block-Earth system.
(c) Determine the friction force exerted on the block (assumed to be constant).
(d) What is the coefficient of kinetic friction?
Transcribed Image Text:A 5.40-kg block is set into motion up an inclined plane with an initial speed of v, = 8.60 m/s (see figure below). The block comes to rest after traveling d = 3.00 m along the plane, which is inclined at an angle of e = 30.0° to the horizontal. two distance labeled up and to the right, parallel to (a) For this motion, determine the change in the block's kinetic energy. (b) For this motion, determine the change in potential energy of the block-Earth system. (c) Determine the friction force exerted on the block (assumed to be constant). (d) What is the coefficient of kinetic friction?
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