(A)/ Four masses A, B, C and D are attached to a rotating shaft with radii 50 mm, 62.5 mm, 100 mm and 75 mm respectively. The distance between planes A and B; between planes B and C and between planes C and D are 600 mm each. The masses B, C and D are 20 kg, 10 kg and 8 kg respectively. If the shaft is in complete balance, then find the angular position of masses C and D from mass B.

International Edition---engineering Mechanics: Statics, 4th Edition
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Chapter4: Coplanar Equilibrium Analysis
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Problem 4.8P: The figure models the handle of the water cock described in Prob. 4.9. Draw the FBD of the handle,...
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(A)/ Four masses A, B, C and D are attached to a rotating shaft with radii 50 mm, 62.5 mm,
100 mm and 75 mm respectively. The distance between planes A and B; between planes B
and C and between planes C and D are 600 mm each. The masses B, C and D are 20 kg,
10 kg and 8 kg respectively. If the shaft is in complete balance, then find the angular position
of masses C and D from mass B.
Transcribed Image Text:(A)/ Four masses A, B, C and D are attached to a rotating shaft with radii 50 mm, 62.5 mm, 100 mm and 75 mm respectively. The distance between planes A and B; between planes B and C and between planes C and D are 600 mm each. The masses B, C and D are 20 kg, 10 kg and 8 kg respectively. If the shaft is in complete balance, then find the angular position of masses C and D from mass B.
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