a) Calculate the final linear velocity of the person, given his mass is 80.0 kg. m/s (b) What is his angular velocity if each arm has a 5.00 kg mass? You may treat his arms as uniform rods of length 0.9 m and the rest of his body as a uniform cylinder of radius 0.160 m. Neglect the effect of the ball on his rotational inertia and on his center of mass, so that it remains in his geometrical center. rad/s (c) Compare the initial and final total kinetic energy. (initial energy / final energy)

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 66P: A baseball catcher extends his arm straight up to catch a fast ball with a speed of 40 m/s. The...
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Suppose a 0.250 kg ball is thrown at 12.0 m/s to a motionless person standing on ice who catches it with an outstretched arm as shown in Figure 9.31.

 

(a) Calculate the final linear velocity of the person, given his mass is 80.0 kg.
m/s
(b) What is his angular velocity if each arm has a 5.00 kg mass? You may treat his arms as uniform rods of length 0.9 m and the rest of his body as a uniform cylinder of radius 0.160 m. Neglect the effect of the ball on his rotational inertia and on his center of mass, so that it remains in his geometrical center.
rad/s
(c) Compare the initial and final total kinetic energy.
(initial energy / final energy)

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