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An electric motor exerts a constant torque of T = 10 N - m on a grindstone mounted on its shaft; the moment of inertia

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An electric motor exerts a constant torque of T = 10 N - m on a grindstone mounted on its shaft; the moment of inertia of the grindstone is I = 2.0 kg - m2 . If the system starts from rest, find the work done by the motor in 8.0 s and the kinetic energy at the end of this time. What was the average power delivered by the motor? V Part A - Practice Problem: Suppose we now turn off the motor and apply a brake to bring the grindstone from its greatest angular speed of 60 rad/s to a stop. It the brake generates a constant torque of 30 N - m , find the total work done (including signs) needed to stop the grindstone. Express your answer in joules. mrtO-C? muest Answer V Part B - Practice Problem: Find the average power (including signs) needed to stop the grindstone in Part A. Express your answer in watts. P = muest

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