- A 40- kg block is placed on the uniform 10-kg beam, that is supported by the cable, which is attached to the end of the beam. The cable wraps around the pulley, and the cable is connected to the block. If the coefficient of the static friction between the block and the beam is us= 0.6. Neglecting friction forces in the pulley. Determine the maximum distance that the block can be placed from O and still remain in eqilibrium. Assume the block will not flip. Fig. (6) Distanc A Pulley 30 cm

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter7: Dry Friction
Section: Chapter Questions
Problem 7.3P: Two identical chairs, each weighing 14 lb, are stacked as shown. The center of gravity of each chair...
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- A 40- kg block is placed on the uniform 10-kg beam, that is supported by the cable, which is attached to the
end of the beam. The cable wraps around the pulley, and the cable is connected to the block. If the coefficient
of the static friction between the block and the beam is us=0.6. Neglecting friction forces in the pulley.
Determine the maximum distance that the block can be placed from O and still remain in eqilibrium.
Assume the block will not flip.
Fig. (6)
Distanc
3m
A
B
Pulley
T
30 cm
Transcribed Image Text:- A 40- kg block is placed on the uniform 10-kg beam, that is supported by the cable, which is attached to the end of the beam. The cable wraps around the pulley, and the cable is connected to the block. If the coefficient of the static friction between the block and the beam is us=0.6. Neglecting friction forces in the pulley. Determine the maximum distance that the block can be placed from O and still remain in eqilibrium. Assume the block will not flip. Fig. (6) Distanc 3m A B Pulley T 30 cm
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