A 2.00-kg solid, uniform ball of radius 0.100 m is released from rest at point A in Figure P8.59, its center of gravity a distance of 1.50 m above the ground. The ball rolls without slipping to the bottom of an incline and back up to point B where it is launched verti- cally into the air. The ball rises to its maximum height hmax at point C. At point B, find the ball's (a) translational speed g and (b) rotational speed wB. At point C, find the ball's (c) rotational speed wc and (d) maximum height hmax of its center of gravity. A 1.50 m hmax B t0.500 m Figure P8.59

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Chapter1: Units, Trigonometry. And Vectors
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A 2.00-kg solid, uniform ball of radius
0.100 m is released from rest at point
A in Figure P8.59, its center of gravity
a distance of 1.50 m above the ground.
The ball rolls without slipping to the
bottom of an incline and back up to
point B where it is launched verti-
cally into the air. The ball rises to its maximum height hmax at
point C. At point B, find the ball's (a) translational speed
g and (b) rotational speed wB. At point C, find the ball's
(c) rotational speed wc and (d) maximum height hmax of its
center of gravity.
A
1.50 m
hmax
B
t0.500 m
Figure P8.59
Transcribed Image Text:A 2.00-kg solid, uniform ball of radius 0.100 m is released from rest at point A in Figure P8.59, its center of gravity a distance of 1.50 m above the ground. The ball rolls without slipping to the bottom of an incline and back up to point B where it is launched verti- cally into the air. The ball rises to its maximum height hmax at point C. At point B, find the ball's (a) translational speed g and (b) rotational speed wB. At point C, find the ball's (c) rotational speed wc and (d) maximum height hmax of its center of gravity. A 1.50 m hmax B t0.500 m Figure P8.59
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