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(Solved): Two boxes with masses \( m_{1} \) and \( m_{2} \) are attached to the opposite ends of a rope The r ...




Two boxes with masses \( m_{1} \) and \( m_{2} \) are attached to the opposite ends of a rope The rope runs around the inner
Two boxes with masses \( m_{1} \) and \( m_{2} \) are attached to the opposite ends of a rope The rope runs around the inner radius or of a pulley with moment of inertia \( I \), as shown a) Find the rope tensions on both sides, \( T_{1} \) and \( T_{2} \). (Note that they do not have to be equal for a massive pulley.) anyular acceleration of the pulley, \( \alpha \).


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(a)String tension of m1 side, T1=m1g(2m2+Ir2)m1+m2+Ir2 String t
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