The two blocks (m = 13 kg and M = 100 kg) in the figure are not attached to each other. The coefficient of static friction between the blocks is µs = 0.31, but the surface beneath the larger block is frictionless. What is the minimum magnitude of the horizontal force F required to keep the smaller block from slipping down the larger block? Frictionless Number i Units N

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter4: Newton's Laws Of Motion
Section: Chapter Questions
Problem 91AP: The board sandwiched between two other boards in Figure P4.91 weighs 95.5 N. If the coefficient of...
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The two blocks (m = 13 kg and M = 100 kg) in the figure are not attached to each other. The coefficient of static friction between the
blocks is µs = 0.31, but the surface beneath the larger block is frictionless. What is the minimum magnitude of the horizontal force F
required to keep the smaller block from slipping down the larger block?
M
Frictionless
Number
i
!
Units
Transcribed Image Text:The two blocks (m = 13 kg and M = 100 kg) in the figure are not attached to each other. The coefficient of static friction between the blocks is µs = 0.31, but the surface beneath the larger block is frictionless. What is the minimum magnitude of the horizontal force F required to keep the smaller block from slipping down the larger block? M Frictionless Number i ! Units
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