Two masses of 26 kg and 12 kg are suspended by a pulley that has a radius of 4.1 cm and a mass of 6 kg. The cord has a negligible mass and causes the pulley to rotate without slipping. The pulley rotates without friction. The masses start from rest 3.7 m apart. Determine the speeds of the two masses as they pass each other. Treat the pulley as a uniform disk. The acceleration of gravity is 9.8 m/s2. Answer in units of m/s.
Two masses of 26 kg and 12 kg are suspended by a pulley that has a radius of 4.1 cm and a mass of 6 kg. The cord has a negligible mass and causes the pulley to rotate without slipping. The pulley rotates without friction. The masses start from rest 3.7 m apart. Determine the speeds of the two masses as they pass each other. Treat the pulley as a uniform disk. The acceleration of gravity is 9.8 m/s2. Answer in units of m/s.
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
Transcribed Image Text:Two masses of 26 kg and 12 kg are suspended by a pulley that has a radius of 4.1 cm and a mass of 6 kg. The cord has
a negligible mass and causes the pulley to rotate without slipping. The pulley rotates without friction. The masses start
from rest 3.7 m apart. Determine the speeds of the two masses as they pass each other. Treat the pulley as a uniform
disk. The acceleration of gravity is 9.8 m/s2. Answer in units of m/s.
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