Masses of m = 2 (kg) and m2 = 4 (kg), the directions of which are shown in the figure, collide totally elastically with the velocity vi=v2=8 (m/s) at the origin. Find the position vector of the center of mass in (m) 2 seconds after the collision. y mị 37°

Physics for Scientists and Engineers: Foundations and Connections
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Chapter11: Collisions
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Masses of m =2 (kg) and m2 =4 (kg), the directions of which are shown in the figure, collide totally
elastically with the velocity vi=v2-8 (m/s) at the origin. Find the position vector of the center of mass in
(m) 2 seconds after the collision.
y
37°
m2
Transcribed Image Text:Masses of m =2 (kg) and m2 =4 (kg), the directions of which are shown in the figure, collide totally elastically with the velocity vi=v2-8 (m/s) at the origin. Find the position vector of the center of mass in (m) 2 seconds after the collision. y 37° m2
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