b. A belt, which is wrapped between three cylinders, connects two blocks as shown. The coefficient of friction between the belt and the cvlinders and the block 1 and the surface is μs 0.33. If Block 1 has a weight, W = 64 lb., what is the minimum weight of Block 2 that will cause Block 1 to start moving? W, Find the moment of inertia around the x-axis. The dimensions are as follows: a 6 ft., b = 10 ft., c 4 ft. d 3 ft.,

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Please help. Written on paper not typed on computer or keyboard please. Need help on both questions. Please include all units, steps to the problem and information such as its direction or if it is in compression or tension. Thx.
b.
A belt, which is wrapped between three cylinders,
connects two blocks as shown. The coefficient of friction
between the belt and the cvlinders and the block 1 and the surface
is μs 0.33. If Block 1 has a weight, W = 64 lb., what is the
minimum weight of Block 2 that will cause Block 1 to start
moving?
W,
Find the moment of inertia around the x-axis. The dimensions are as
follows: a 6 ft., b = 10 ft.,
c 4 ft. d 3 ft.,
Transcribed Image Text:b. A belt, which is wrapped between three cylinders, connects two blocks as shown. The coefficient of friction between the belt and the cvlinders and the block 1 and the surface is μs 0.33. If Block 1 has a weight, W = 64 lb., what is the minimum weight of Block 2 that will cause Block 1 to start moving? W, Find the moment of inertia around the x-axis. The dimensions are as follows: a 6 ft., b = 10 ft., c 4 ft. d 3 ft.,
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