rod of length L = .9 m and mass m,od = .1 kg Rotation connects two small balls of mass m = .2 kg each. The rod rotates about its midpoint with an axis perpendicular to the rod. The initial angular velocity is w, = 3 rad/s in the counterclockwise direction. A tangential force F = 9 N is applied to one of the spheres for 2 s causing the system to accelerate. a. What is the moment of inertia of the rod and ball system? b. What is the torque acting on the system? Magnitude and direction? c. What is the angular acceleration of the system?

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Chapter1: Units, Trigonometry. And Vectors
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rod of length L = .9 m and mass mod = .1 kg
connects two small balls of mass m = .2 kg each. The rod
rotates about its midpoint with an axis perpendicular to the
rod. The initial angular velocity is w, = 3 rad/s in the
counterclockwise direction. A tangential force F = 9 N is
applied to one of the spheres for 2 s causing the system to
Rotation
accelerate.
a. What is the moment of inertia of the rod and ball
m
system?
b. What is the torque acting on the system? Magnitude and direction?
c. What is the angular acceleration of the system?
d. What is the final angular velocity of the rod?
e. What is the final speed v of one of the masses?
Transcribed Image Text:rod of length L = .9 m and mass mod = .1 kg connects two small balls of mass m = .2 kg each. The rod rotates about its midpoint with an axis perpendicular to the rod. The initial angular velocity is w, = 3 rad/s in the counterclockwise direction. A tangential force F = 9 N is applied to one of the spheres for 2 s causing the system to Rotation accelerate. a. What is the moment of inertia of the rod and ball m system? b. What is the torque acting on the system? Magnitude and direction? c. What is the angular acceleration of the system? d. What is the final angular velocity of the rod? e. What is the final speed v of one of the masses?
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