15-77. The cue ball A is given an initial velocity (vA)1 = 5 m/s. If it makes a direct collision with ball B (e = 0.8), determine the velocity of B and the angle 0 just after it rebounds from the cushion at C (e' = 0.6). Each ball has a mass of 0.4 kg. Neglect the size of each ball. (vA) = 5 m/s 30°
15-77. The cue ball A is given an initial velocity (vA)1 = 5 m/s. If it makes a direct collision with ball B (e = 0.8), determine the velocity of B and the angle 0 just after it rebounds from the cushion at C (e' = 0.6). Each ball has a mass of 0.4 kg. Neglect the size of each ball. (vA) = 5 m/s 30°
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![15-77.
The cue ball A is given an initial velocity (vA)1 = 5 m/s. If
it makes a direct collision with ball B (e = 0.8), determine
the velocity of B and the angle 0 just after it rebounds from
the cushion at C (e' = 0.6). Each ball has a mass of 0.4 kg.
Neglect the size of each ball.
(vA) = 5 m/s
30°](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F239d1cdc-2ee1-43e7-8ebf-339c93084fdd%2F8070a36d-d652-498a-a997-57c7d13787ee%2Fqd268cp.jpeg&w=3840&q=75)
Transcribed Image Text:15-77.
The cue ball A is given an initial velocity (vA)1 = 5 m/s. If
it makes a direct collision with ball B (e = 0.8), determine
the velocity of B and the angle 0 just after it rebounds from
the cushion at C (e' = 0.6). Each ball has a mass of 0.4 kg.
Neglect the size of each ball.
(vA) = 5 m/s
30°
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