Determine for what least value of the pulling force P and angle θ, in the system as shown below, to cause the motion of the blocks to impend from left to right ? Assume the pulley to be smooth and coefficient of friction between the mating surfaces be 0.20. The weight of block A is 90 N while weight of block b is 60 N. OPTIONS:(MULTI CORRECT(MAY BE)): 1.Angle θ is around 6 Degrees 2.Force P is approximately 72 N 3.Angle θ is around 15 Degrees 4.Angle θ is around 11 Degrees 5.Angle θ is around 17 Degrees 6.Force P is approximately 81 N 7.Force P is approximately 102 N 8.Angle θ is around 8 Degree 9.Force P is approximately 94 N
Determine for what least value of the pulling force P and angle θ, in the system as shown below, to cause the motion of the blocks to impend from left to right ? Assume the pulley to be smooth and coefficient of friction between the mating surfaces be 0.20. The weight of block A is 90 N while weight of block b is 60 N. OPTIONS:(MULTI CORRECT(MAY BE)): 1.Angle θ is around 6 Degrees 2.Force P is approximately 72 N 3.Angle θ is around 15 Degrees 4.Angle θ is around 11 Degrees 5.Angle θ is around 17 Degrees 6.Force P is approximately 81 N 7.Force P is approximately 102 N 8.Angle θ is around 8 Degree 9.Force P is approximately 94 N
Automotive Technology: A Systems Approach (MindTap Course List)
6th Edition
ISBN:9781133612315
Author:Jack Erjavec, Rob Thompson
Publisher:Jack Erjavec, Rob Thompson
Chapter46: Suspension Systems
Section: Chapter Questions
Problem 2RQ: Explain the difference between sprung and unsprung weight.
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Determine for what least value of the pulling force P and angle θ, in the system as shown below, to cause the motion of the blocks to impend from left to right ? Assume the pulley to be smooth and coefficient of friction between the mating surfaces be 0.20. The weight of block A is 90 N while weight of block b is 60 N.
OPTIONS:(MULTI CORRECT(MAY BE)):
1.Angle θ is around 6 Degrees
2.Force P is approximately 72 N
3.Angle θ is around 15 Degrees
4.Angle θ is around 11 Degrees
5.Angle θ is around 17 Degrees
6.Force P is approximately 81 N
7.Force P is approximately 102 N
8.Angle θ is around 8 Degree
9.Force P is approximately 94 N
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