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A Mass M1 Is Connected by a Light String That

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A mass m1 is connected by a light string that passes over a pulley of mass M to a mass m2 as shown in the figure. Both masses move vertically and there is no slippage between the string and the pulley. The pulley has a radius of 30.0 cm and a moment of inertia of MR2. If m1 is 4.00 kg, m2 is 3.00 kg and M is 6.00 kg, then what is the magnitude of the acceleration of the masses? A mass m<sub>1</sub> is connected by a light string that passes over a pulley of mass M to a mass m<sub>2</sub> as shown in the figure. Both masses move vertically and there is no slippage between the string and the pulley. The pulley has a radius of 30.0 cm and a moment of inertia of MR<sup>2</sup>. If m<sub>1</sub> is 4.00 kg, m<sub>2</sub> is 3.00 kg and M is 6.00 kg, then what is the magnitude of the acceleration of the masses?   A)  0.695 m/s<sup>2</sup> B)  0.703 m/s<sup>2</sup> C)  0.731 m/s<sup>2</sup> D)  0.754 m/s<sup>2</sup> E)  0.805 m/s<sup>2</sup>


A) 0.695 m/s2
B) 0.703 m/s2
C) 0.731 m/s2
D) 0.754 m/s2
E) 0.805 m/s2

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