2. For the system shown, solve for the maximum mass M that can be suspended as shown and sill maintain equilibrium. The masses of A and B are 55 kg and 135 kg, respectively. The coefficient of static friction between block B and the surface C 200 A B is 0.12 and the coefficient of static friction between blocks A and B is 0.10. The coefficient of friction between the rope and the pulley is O.10.

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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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2. For the system shown, solve for the
maximum mass M that can be suspended
as shown and still maintain equilibrium.
The masses of A and B are 55 kg and 135
kg, respectively. The coefficient of static
friction between block B and the surface C
20°
в
is 0.12 and the coefficient of static friction
between blocks A and B is 0.10. The
coefficient of friction between the rope
and the pulley is 0.10.
Transcribed Image Text:2. For the system shown, solve for the maximum mass M that can be suspended as shown and still maintain equilibrium. The masses of A and B are 55 kg and 135 kg, respectively. The coefficient of static friction between block B and the surface C 20° в is 0.12 and the coefficient of static friction between blocks A and B is 0.10. The coefficient of friction between the rope and the pulley is 0.10.
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