A translational bowling ball of mass M and radius R = 20.0 cm is released with an initial velocity of vi = 18.0 m/s to the right and an initial angular velocity of zero. The bowling ball can be treated as a uniform solid sphere. The coefficient of kinetic friction between the ball and the surface is 0.220. The force of kinetic friction causes a linear acceleration, as well as a torque that causes the ball to spin. The ball rolls while slipping (sliding) along the horizontal surface for some time, and then rolls without slipping at constant velocity after that. Use g = 10 m/s2. (d) How far does the ball travel while it is sliding? (e) What is the constant speed of the ball when the ball rolls without slipping?

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Chapter11: Angular Momentum
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A bowling ball of mass M and radius
R = 20.0 cm is released with an initial
translational velocity of vi = 18.0 m/s
to the right and an initial angular
velocity of zero. The bowling ball can
be treated as a uniform solid sphere.
The coefficient of kinetic friction
between the ball and the surface is
0.220. The force of kinetic friction
causes a linear acceleration, as well
as a torque that causes the ball to
spin. The ball rolls while slipping
(sliding) along the horizontal surface
for some time, and then rolls without
slipping at constant velocity after
that. Use g = 10 m/s2.
(d) How far does the ball travel while
it is sliding?
(e) What is the constant speed of the
ball when the ball rolls without
slipping?
Transcribed Image Text:A bowling ball of mass M and radius R = 20.0 cm is released with an initial translational velocity of vi = 18.0 m/s to the right and an initial angular velocity of zero. The bowling ball can be treated as a uniform solid sphere. The coefficient of kinetic friction between the ball and the surface is 0.220. The force of kinetic friction causes a linear acceleration, as well as a torque that causes the ball to spin. The ball rolls while slipping (sliding) along the horizontal surface for some time, and then rolls without slipping at constant velocity after that. Use g = 10 m/s2. (d) How far does the ball travel while it is sliding? (e) What is the constant speed of the ball when the ball rolls without slipping?
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