5. Particle A, moving with velocity vo in a direction perpendicular to the motionless dumbbell BC, hits the particle B squarely, with a coefficient of restitution e (Problem 4- 10 in the text). (a) Solve for the velocity of particle A, and the translational and rotational velocities of the dumbbell immediately after impact. (b) Assuming motion in free space, find the value of e which will result in the collision of particles A and C in subsequent motion of the system. Figure P4-10

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5. Particle A, moving with velocity vo in a direction perpendicular to the motionless
dumbbell BC, hits the particle B squarely, with a coefficient of restitution e (Problem 4-
10 in the text).
(a) Solve for the velocity of particle A, and the translational and rotational velocities of
the dumbbell immediately after impact.
(b) Assuming motion in free space, find the value of e which will result in the collision of
particles A and C in subsequent motion of the system.
Figure P4-10
Transcribed Image Text:5. Particle A, moving with velocity vo in a direction perpendicular to the motionless dumbbell BC, hits the particle B squarely, with a coefficient of restitution e (Problem 4- 10 in the text). (a) Solve for the velocity of particle A, and the translational and rotational velocities of the dumbbell immediately after impact. (b) Assuming motion in free space, find the value of e which will result in the collision of particles A and C in subsequent motion of the system. Figure P4-10
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