5. The figure below illustrates an Atwood's machine. Let the masses of blocks A and B be 4.00 kg and 2.00 kg, respectively, the moment of inertia of the wheel about its axis be 0.100 kg.m² and the radius of the wheel be 0.500 m. a) Find the linear acceleration of block A and block B if there is no slipping between the cord and the surface of the wheel b) Find the tension in right side of the cord if there is no slipping between the cord and the surface of the wheel c) Find the tension in left side of the cord if there is no slipping between the cord and the surface of the wheel.

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Chapter11: Angular Momentum
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5. The figure below illustrates an Atwood's machine. Let the masses of blocks A and B be 4.00 kg
and 2.00 kg, respectively, the moment of inertia of the wheel about its axis be 0.100 kg.m² and
the radius of the wheel be 0.500 m.
a) Find the linear acceleration of block A and block B if there is no slipping between the cord
and the surface of the wheel
b) Find the tension in right side of the cord if there is no slipping between the cord and the
surface of the wheel
c) Find the tension in left side of the cord if there is no slipping between the cord and the
surface of the wheel.
Transcribed Image Text:5. The figure below illustrates an Atwood's machine. Let the masses of blocks A and B be 4.00 kg and 2.00 kg, respectively, the moment of inertia of the wheel about its axis be 0.100 kg.m² and the radius of the wheel be 0.500 m. a) Find the linear acceleration of block A and block B if there is no slipping between the cord and the surface of the wheel b) Find the tension in right side of the cord if there is no slipping between the cord and the surface of the wheel c) Find the tension in left side of the cord if there is no slipping between the cord and the surface of the wheel.
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