Two spheres, A and B with masses mA = 1,35 kg and mg=2.96 kg, respectively, collide with = 26.2 m/s and g = 22.5 m/s Compute the postimpact velocities of A and Bif a=45°, B=16°, the COR is e=0.57, and the contact between A and Bis frictionless. (Round the final answers to four decimal places. Include a minus sign if necessary) B The postimpact velocity of A is ([ The postimpact velocity of Bis ([ B 13) m/s. j) m/s
Two spheres, A and B with masses mA = 1,35 kg and mg=2.96 kg, respectively, collide with = 26.2 m/s and g = 22.5 m/s Compute the postimpact velocities of A and Bif a=45°, B=16°, the COR is e=0.57, and the contact between A and Bis frictionless. (Round the final answers to four decimal places. Include a minus sign if necessary) B The postimpact velocity of A is ([ The postimpact velocity of Bis ([ B 13) m/s. j) m/s
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
Transcribed Image Text:= 22.5 m/s.
Two spheres, A and B with masses mA=1.35 kg and mg=2.96 kg, respectively, collide with = 26.2 m/s and
Compute the postimpact velocities of A and Bif α= 45°, 3 = 16°, the COR is e=0.57, and the contact between A and Bis
frictionless. (Round the final answers to four decimal places. Include a minus sign if necessary)
B
The postimpact velocity of A is (|
The postimpact velocity of Bis ([
B
) m/s.
3) m/s.
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