Two masses ma=1kg and my=5.4kg are connected by a rope that hangs over a pulley as shown in the figure. The pulley is a uniform cylinder of radius R=0.62m and mass M-15kg. The system is released from rest. Just before mp hits the ground, calculate the speed of the pulley. Take h=8.5m, g=10 m/s?. Round your answer to one decimal place. Note: 1inder =-MR , assume the rope is massless and does not slide over the pulley. %3D CM me

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Two masses ma=1kg and my=5.4kg are connected by a rope that hangs over a pulley as shown in the figure. The pulley is a uniform cylinder of
radius R=0.62m and mass M=15kg. The system is released from rest. Just before mp hits the ground, calculate the speed of the pulley. Take
h=8,5m, g=10 m/s. Round your answer to one decimal place.
Note: 1Minder =
CM
MR?
assume the rope is massiess and does not slide over the pulley.
me
me
Transcribed Image Text:Two masses ma=1kg and my=5.4kg are connected by a rope that hangs over a pulley as shown in the figure. The pulley is a uniform cylinder of radius R=0.62m and mass M=15kg. The system is released from rest. Just before mp hits the ground, calculate the speed of the pulley. Take h=8,5m, g=10 m/s. Round your answer to one decimal place. Note: 1Minder = CM MR? assume the rope is massiess and does not slide over the pulley. me me
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