There are two blocks placed on top of each other. Friction exists between Block 1 and Block 2 as well as between Block 1 and the floor. With an unknown force, Block 1 is moved to the right. a) For each block, draw a free body diagram. b) what's the max the value pushing force can be so Block 2 won't slip? A vehicle weighing 400 kg round a 30 meter radius curve. What is the quickest the vehicle can handle the turn without slipping if the static friction coefficient among the tires and the road is 0.5?

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter6: Applications Of Newton’s Laws Of Motion
Section6.3: A Model For Static Friction
Problem 6.3CE
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**Please include formulas used for all thank you!
There are two blocks placed on top of each other.
Friction exists between Block 1 and Block 2 as well as
between Block 1 and the floor. With an unknown force,
Block 1 is moved to the right.
a) For each block, draw a free body diagram.
b) what's the max the value pushing force can be so
Block 2 won't slip?
A vehicle weighing 400 kg round a 30 meter radius
curve. What is the quickest the vehicle can handle the
turn without slipping if the static friction coefficient
among the tires and the road is 0.5?
Transcribed Image Text:**Please include formulas used for all thank you! There are two blocks placed on top of each other. Friction exists between Block 1 and Block 2 as well as between Block 1 and the floor. With an unknown force, Block 1 is moved to the right. a) For each block, draw a free body diagram. b) what's the max the value pushing force can be so Block 2 won't slip? A vehicle weighing 400 kg round a 30 meter radius curve. What is the quickest the vehicle can handle the turn without slipping if the static friction coefficient among the tires and the road is 0.5?
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