A 40. kg block is placed on a ramp inclined thirty degrees to the horizontal as seen in the figure below. A horizontal force of 35 Newtons is placed on the block. If the coefficient of static friction is: 4, = 0.65 will the block remain stationary on the ramp or will it slide? 1) Sketch a free-body-diagram for this situation, include an axis. 2) Analyze the free body diagram using Newtons 2nd law. 3) Calculate f 4) Calculate fi marc 5) Draw a conclusion (circle one) F The block slides down the ramp The block remains stationary 30.0⁰ The block slides up the ramp

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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A 40. kg block is placed on a ramp inclined thirty degrees to the horizontal as seen in the figure below. A horizontal force of 35
Newtons is placed on the block. If the coefficient of static friction is: 4, = 0.65 will the block remain stationary on the ramp or will
it slide?
1) Sketch a free-body-diagram for this situation, include an axis.
2) Analyze the free body diagram using Newtons 2nd law.
3) Calculate f
4) Calculate fi marc
5) Draw a conclusion (circle one)
F
The block slides down the ramp The block remains stationary
30.0⁰
The block slides up the ramp
Transcribed Image Text:A 40. kg block is placed on a ramp inclined thirty degrees to the horizontal as seen in the figure below. A horizontal force of 35 Newtons is placed on the block. If the coefficient of static friction is: 4, = 0.65 will the block remain stationary on the ramp or will it slide? 1) Sketch a free-body-diagram for this situation, include an axis. 2) Analyze the free body diagram using Newtons 2nd law. 3) Calculate f 4) Calculate fi marc 5) Draw a conclusion (circle one) F The block slides down the ramp The block remains stationary 30.0⁰ The block slides up the ramp
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