1. A 0.50 kg ball traveling at 6.0 m/s due east collides head on with a 1.00 kg ball traveling in the opposite direction at -12.0 m/s. After the collision, the 0.50 kg ball moves away at -14 m/s. Find the velocity of the second ball after the collision.

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NDY1NZEYNDUXM]95/a/l
4MZM2/detalis
1. A 0.50 kg ball traveling at 6.0 m/s due east collides head on with a 1.00 kg ball
traveling in the opposite direction at -12.0 m/s. After the collision, the 0.50 kg ball
moves away at -14 m/s. Find the velocity of the second ball after the collision.
2. A 0.12 kg hockey puck moving at 50 m/s is caught by a 75 kg goalie at rest. With
what speed does the goalie slide on the (frictionless) ice?
3. Two carts are stationary with a compressed spring between them and held
together by a thread. When the thread is cut, the two carts move apart. After the
spring is released, one cart m=3.00 kg has a velocity of 0.82 m/s east. What is the
magnitude of the velocity of the second cart (m=1.70 kg)after the spring is
released?
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4. The brakes on a 15,680 N car exert a stopping force of 640. N. The car's velocity
changes from 20.0 m/s to 0 m/s.
a) What is the car's mass?
b) What was its initial momentum?
c) What was the change in momentum for the car?
d) How long does it take the braking force to bring the car to rest?
Transcribed Image Text:NDY1NZEYNDUXM]95/a/l 4MZM2/detalis 1. A 0.50 kg ball traveling at 6.0 m/s due east collides head on with a 1.00 kg ball traveling in the opposite direction at -12.0 m/s. After the collision, the 0.50 kg ball moves away at -14 m/s. Find the velocity of the second ball after the collision. 2. A 0.12 kg hockey puck moving at 50 m/s is caught by a 75 kg goalie at rest. With what speed does the goalie slide on the (frictionless) ice? 3. Two carts are stationary with a compressed spring between them and held together by a thread. When the thread is cut, the two carts move apart. After the spring is released, one cart m=3.00 kg has a velocity of 0.82 m/s east. What is the magnitude of the velocity of the second cart (m=1.70 kg)after the spring is released? wwwww 4. The brakes on a 15,680 N car exert a stopping force of 640. N. The car's velocity changes from 20.0 m/s to 0 m/s. a) What is the car's mass? b) What was its initial momentum? c) What was the change in momentum for the car? d) How long does it take the braking force to bring the car to rest?
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