In the shown systems of pulleys, the weight of each box is W=100N. For each configuration, calculate the force that needs to be applied at the free end of the rope to keep the system in static equilibrium.

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter10: Virtual Work And Potential Energy
Section: Chapter Questions
Problem 10.59P: The weight of the uniform bar AB is W. The stiffness of the ideal spring attached to B is k, and the...
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In the shown systems of pulleys, the weight of each box is W=100N. For each configuration, calculate
the force that needs to be applied at the free end of the rope to keep the system in static equilibrium.
F=?
F=?
w = 100N
F=?
W = 100N W = 100N
A)
B)
Be sure to indicate the tension forces in the rope. The uppermost pulleys in B in each assembly are
anchored by their orange brackets to the ceiling.
Transcribed Image Text:In the shown systems of pulleys, the weight of each box is W=100N. For each configuration, calculate the force that needs to be applied at the free end of the rope to keep the system in static equilibrium. F=? F=? w = 100N F=? W = 100N W = 100N A) B) Be sure to indicate the tension forces in the rope. The uppermost pulleys in B in each assembly are anchored by their orange brackets to the ceiling.
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