A discus thrower moves the discus in 2.30 complete revolutions about his body in 1.32 s (starting from rest). The radius of the circular path of the discus is 0.900 m, and the mass of the discus is 2.00 kg. Assume that a constant torque is applied to the discus by the athlete. A) What is the angular speed of the discus just before release? in rad/s B) What torque does the athlete apply to move the discus about his body?

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter10: Rotational Motion
Section10.4: Rotational Kinetic Energy
Problem 10.4QQ
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A discus thrower moves the discus in 2.30 complete revolutions about his body in 1.32 s (starting from rest). The radius of the circular path of the discus is 0.900 m, and the mass of the discus is 2.00 kg. Assume that a constant torque is applied to the discus by the athlete.

A) What is the angular speed of the discus just before release? in rad/s

B) What torque does the athlete apply to move the discus about his body? in N*m

C) Approximately how far from the athlete does the discus land if it is released at a 45.0° angle to the horizontal until it returns to the same height as it was released? in m

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