Each of the double pulleys shown has a mass moment of inertia of 15 Ib-ft-s² and is initially at rest. The outside radius is 18 in., and the inner radius is 9 in. Consider M = 240 Ib, M2 = 240 lb, M3 = 540 lb, M4 = 380 lb, and M5 = 160 lb. M1 M2 Ms M3 M4 (1) (3) (4) Determine the angular velocity of each pulley after Point A on the cord has moved 10 ft. Case 1: 12 rad/s . The angular velocity of the pulley is [ Case 2: The angular velocity of the pulley is| 9.38 rad/s O. Case 3: 6.39 rad/s O. The angular velocity of the pulley is Case 4: The angular velocity of the pulley is 11.06 rad/s (S

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Chapter11: Angular Momentum
Section: Chapter Questions
Problem 89AP: A solid cylinder of mass 2.0 kg and radius 20 cm is rotating counterclockwise around a vertical axis...
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NOTE: ThiS is a muiti-part question. Once an answer is submitted, you will
Each of the double pulleys shown has a mass moment of inertia of 15 Ib-ft-s2 and is initially at rest. The outside radius is 18
in., and the inner radius is 9 in. Consider M = 240 Ib, Mh = 240 lb, M3 = 540 Ib, MA = 380 lb, and M5 = 160 Ib.
able to return to this part.
A
A
A
M1
M2
M3
M4
M5
(1)
(2)
(3)
(4)
Determine the angular velocity of each pulley after Point A on the cord has moved 10 f.
Case 1:
12 rad/s O.
The angular velocity of the pulley is
Case 2:
The angular velocity of the pulley is
9.38 rad/s ().
Case 3:
6.39 rad/s O.
The angular velocity of the pulley is
Case 4:
The angular velocity of the pulley is
11.06 rad/s O
Transcribed Image Text:NOTE: ThiS is a muiti-part question. Once an answer is submitted, you will Each of the double pulleys shown has a mass moment of inertia of 15 Ib-ft-s2 and is initially at rest. The outside radius is 18 in., and the inner radius is 9 in. Consider M = 240 Ib, Mh = 240 lb, M3 = 540 Ib, MA = 380 lb, and M5 = 160 Ib. able to return to this part. A A A M1 M2 M3 M4 M5 (1) (2) (3) (4) Determine the angular velocity of each pulley after Point A on the cord has moved 10 f. Case 1: 12 rad/s O. The angular velocity of the pulley is Case 2: The angular velocity of the pulley is 9.38 rad/s (). Case 3: 6.39 rad/s O. The angular velocity of the pulley is Case 4: The angular velocity of the pulley is 11.06 rad/s O
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