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Two blocks of weights  W1 = m1g and W2 = m2g are suspended by a pin-supported rope drum (moment of inertia ΘA) as shown in Fig.Determine the angular acceleration of the drum and the force in rope ① using dynamic equilibrium conditions. Neglect the mass of the ropes. 

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We first introduce the coordinates x1 and x2 describing the motion of the blocks. The inertial forces −mixi point in the negative xi-directions (see the freebody diagram). In addition, we have to consider the pseudo moment −ΘAϕ¨ which acts in the negative ϕdirection. Moment equilibrium about point A then yields

Using the kinematic relations

we obtain the angular acceleration of the drum:

In order to determine the force in rope ① we cut the rope. Force equilibrium (see the free-body diagram) yields

↑ : S1 − m1g − m1x1 = 0

or

Note: For r2m2 > r1m1 the drum rotates clockwise, for r2m2 < r1m1 it rotates counterclockwise. In the special case r2m2 = r1m1 the system is in static equilibrium ( ¨ϕ = 0). 

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