17-110. The 15-lb disk rests on the 5-lb plate. A cord is wrapped around the periphery of the disk and attached to the wall at B. If a torque M = 40 lb - ft is applied to the disk, determine the angular acceleration of the disk and the time needed for the end C of the plate to travel 3 ft and strike the wall. Assume the disk does not slip on the plate and the plate rests on the surface at D having a coefficient of kinetic friction of 4, = 0.2. Neglect the mass of the cord. M = 40 lb · ft -3 ft-

Elements Of Electromagnetics
7th Edition
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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17-110. The 15-lb disk rests on the 5-lb plate. A cord is
wrapped around the periphery of the disk and attached to
the wall at B. If a torque M = 40 lb - ft is applied to the disk,
determine the angular acceleration of the disk and the time
needed for the end C of the plate to travel 3 ft and strike the
wall. Assume the disk does not slip on the plate and the
plate rests on the surface at D having a coefficient of kinetic
friction of 4, = 0.2. Neglect the mass of the cord.
M = 40 lb · ft
-3 ft-
Transcribed Image Text:17-110. The 15-lb disk rests on the 5-lb plate. A cord is wrapped around the periphery of the disk and attached to the wall at B. If a torque M = 40 lb - ft is applied to the disk, determine the angular acceleration of the disk and the time needed for the end C of the plate to travel 3 ft and strike the wall. Assume the disk does not slip on the plate and the plate rests on the surface at D having a coefficient of kinetic friction of 4, = 0.2. Neglect the mass of the cord. M = 40 lb · ft -3 ft-
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