An Atwood machine has M, = 10.0 kg. M2 = 20.0 kg. The pulley is a flat cylindrical disk with. R = 0.2 m. The mass of the pulley is 10.0 kg. Start the system at rest. Measurements are made when the the masses are displaced 1.0 m. Use the conservation of energy to detemine the velocity of the system. Neglect the friction between the axle and the pulley. Do not neglect the friction between the cable and the pulley.

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An Atwood machine has M1 = 10.0 kg. M2 = 20.0 kg. The pulley is a flat cylindrical disk with,
R = 0.2 m. The mass of the pulley is 10.0 kg. Start the system at rest. Measurements are made when the
the masses are displaced 1.0 m. Use the conservation of energy to determine the velocity of the system.
Neglect the friction between the axle and the pulley. Do not neglect the friction between the cable and
the pulley.
Transcribed Image Text:An Atwood machine has M1 = 10.0 kg. M2 = 20.0 kg. The pulley is a flat cylindrical disk with, R = 0.2 m. The mass of the pulley is 10.0 kg. Start the system at rest. Measurements are made when the the masses are displaced 1.0 m. Use the conservation of energy to determine the velocity of the system. Neglect the friction between the axle and the pulley. Do not neglect the friction between the cable and the pulley.
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