24-A 16-kg block is attached to a cord that is wrapped around the rim of a flywheel of diameter 0.40m and hangs vertically, as shown. The rotational inertia of the flywheel is 0.50 kg. m². When the block is released and the cord unwinds, the acceleration of the block is: A. 0.15g B. 0.56g C. 0.84g D. g E. 1.3g 0.4m رہے 16 kg
24-A 16-kg block is attached to a cord that is wrapped around the rim of a flywheel of diameter 0.40m and hangs vertically, as shown. The rotational inertia of the flywheel is 0.50 kg. m². When the block is released and the cord unwinds, the acceleration of the block is: A. 0.15g B. 0.56g C. 0.84g D. g E. 1.3g 0.4m رہے 16 kg
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![24-A 16-kg block is attached to a cord that is wrapped around
the rim of a flywheel of diameter 0.40m and hangs vertically,
as shown. The rotational inertia of the flywheel is 0.50 kg.
m². When the block is released and the cord unwinds, the
acceleration of the block is:
A. 0.15g
B. 0.56g
C. 0.84g
D. g
E. 1.3g
16 kg
0.4m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7f054dc2-bd9d-4eb4-970f-28e4559558ad%2F0f851c5a-a506-4863-9f60-b85c496fe9d6%2F0pv1mi_processed.png&w=3840&q=75)
Transcribed Image Text:24-A 16-kg block is attached to a cord that is wrapped around
the rim of a flywheel of diameter 0.40m and hangs vertically,
as shown. The rotational inertia of the flywheel is 0.50 kg.
m². When the block is released and the cord unwinds, the
acceleration of the block is:
A. 0.15g
B. 0.56g
C. 0.84g
D. g
E. 1.3g
16 kg
0.4m
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