In figure shown, the mass of block A is 50 kg. The coefficient of static friction for all surfaces of contact is 0.10, determine the minimum mass of B to maintain equilibrium of the system. Assume the pulleys to be frictionless and use B = 75°, e = 70° and a = 65

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In figure shown, the mass of block A is 50 kg. The coefficient of static friction for all surfaces of contact is 0.10, determine
the minimum mass of B to maintain equiliorium of the system. Assume the pulleys to be frictionless and use B = 75°, e = 70° and a = 65°.
Transcribed Image Text:Item 2 of 2 In figure shown, the mass of block A is 50 kg. The coefficient of static friction for all surfaces of contact is 0.10, determine the minimum mass of B to maintain equiliorium of the system. Assume the pulleys to be frictionless and use B = 75°, e = 70° and a = 65°.
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