3) Radius of the cylindrical pulley given below figure is 0.16 m and its moment of ineartia is 0.56 kg.m². The rope is rolling without slipping off the edge of the pulley. After the system is released, find the velocity of the 4 kg block before it hits the ground using energy methods. (Notice that pulley is rotating!). 4.00 kg 5.00 m 2.00 kg

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Chapter10: Fixed-axis Rotation
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3) Radius of the cylindrical pulley given below figure is 0.16 m and its moment of ineartia is
0.56 kg.m². The rope is rolling without slipping off the edge of the pulley. After the system is
released, find the velocity of the 4 kg block before it hits the ground using energy methods.
(Notice that pulley is rotating!).
4.00 kg
5.00 m
2.00 kg
Transcribed Image Text:3) Radius of the cylindrical pulley given below figure is 0.16 m and its moment of ineartia is 0.56 kg.m². The rope is rolling without slipping off the edge of the pulley. After the system is released, find the velocity of the 4 kg block before it hits the ground using energy methods. (Notice that pulley is rotating!). 4.00 kg 5.00 m 2.00 kg
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