On a frictionless, horizontal air table, puck A (with mass 0.250 kg) is moving toward puck B (with mass 0.400 kg ), which is initially at rest. After the collision, puck A has a velocity of 0.130 m/s to the left, and puck B has a velocity of 0.630 m/s to the righ A)What was the speed of puck A before the collision? B)Calculate the change in the total kinetic energy of the system that occurs during the collision
On a frictionless, horizontal air table, puck A (with mass 0.250 kg) is moving toward puck B (with mass 0.400 kg ), which is initially at rest. After the collision, puck A has a velocity of 0.130 m/s to the left, and puck B has a velocity of 0.630 m/s to the righ A)What was the speed of puck A before the collision? B)Calculate the change in the total kinetic energy of the system that occurs during the collision
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
Transcribed Image Text:On a frictionless, horizontal air table, puck A (with mass
0.250 kg) is moving toward puck B (with mass 0.400 kg
), which is initially at rest. After the collision, puck A has a
velocity of 0.130 m/s to the left, and puck B has a velocity
of 0.630 m/s to the righ
A)What was the speed of puck A before the collision?
B)Calculate the change in the total kinetic energy of the
system that occurs during the collision
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