Two masses, mA = 32 kg and mB = 38 kg, connected by a rope through a pulley, Figure 2. The pulley is a solid cylinder with a radius of R = 0.31 m and the mass of the pulley 3.1 kg. Initially the mA mass is on the surface soil and mass mB at rest, 2.5 m above ground. If system is released, so the masses are mA and mB free to move. Find the mass velocity mB right before hitting the ground. (Note: Use the formula for moment of inertia of cylinder solid with respect to the axis)

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Chapter1: Units, Trigonometry. And Vectors
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Two masses, mA = 32 kg and mB = 38 kg, connected by a rope through a
pulley, Figure 2. The pulley is a solid cylinder with a radius of R = 0.31 m and the mass of the pulley 3.1 kg. Initially the mA mass is on the surface soil and mass mB at rest, 2.5 m above ground. If system is released, so the masses are mA and mB free to move. Find the mass velocity mB right before hitting the ground.
(Note: Use the formula for moment of inertia of cylinder solid with respect to the axis)

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