Problem 3. Two blocks, A and B are resting on a corner as shown. They are connected by a slender rod of negligible weight, pinned to both. If A weighs 50 lb, 0 = 60°, μ, = 0.35 and μ = 0.25, determine the maximum weight of block B for the system to stay in equilibrium. B A e
Problem 3. Two blocks, A and B are resting on a corner as shown. They are connected by a slender rod of negligible weight, pinned to both. If A weighs 50 lb, 0 = 60°, μ, = 0.35 and μ = 0.25, determine the maximum weight of block B for the system to stay in equilibrium. B A e
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Two blocks, A and B are resting on a corner as shown. They are connected by a slender rod of negligible
weight, pinned to both. If A weighs 50 lb, 0 = 60°, μ, = 0.35 and μ = 0.25, determine the maximum
weight of block B for the system to stay in
equilibrium.
B
A
e"
Transcribed Image Text:Problem 3.
Two blocks, A and B are resting on a corner as shown. They are connected by a slender rod of negligible
weight, pinned to both. If A weighs 50 lb, 0 = 60°, μ, = 0.35 and μ = 0.25, determine the maximum
weight of block B for the system to stay in
equilibrium.
B
A
e
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