A block with a mass of m = 16 kg is given an upward initial speed v, = 13 m/s on an incline with angle e = 37° to the horizontal. It travels a distance d = 12 m up the ramp and comes to rest. (Tak g=9.80 m/s2) %3D a) Calculate the coefficient of kinetic friction µk between the block and the ramp. b) Calculate the kinetic friction force fg (in newtons). c) Calculate the minimum value of the coefficient of static friction u, between the block and the ramp for the block to stay at rest at the top of the plane. d) Calculate the static friction forcef, (in newtons) for the situation above.
A block with a mass of m = 16 kg is given an upward initial speed v, = 13 m/s on an incline with angle e = 37° to the horizontal. It travels a distance d = 12 m up the ramp and comes to rest. (Tak g=9.80 m/s2) %3D a) Calculate the coefficient of kinetic friction µk between the block and the ramp. b) Calculate the kinetic friction force fg (in newtons). c) Calculate the minimum value of the coefficient of static friction u, between the block and the ramp for the block to stay at rest at the top of the plane. d) Calculate the static friction forcef, (in newtons) for the situation above.
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter5: Displacement And Force In Two Dimensions
Section: Chapter Questions
Problem 8STP
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