An 8.0 kg object moving 4.0 m/s in the positive x direction has a one-dimensional collision with a 2.0 kg object moving 3.0 m/s in the opposite direction. The final velocity of the 8.0 kg object is 2.0 m/s in the positive x direction. a. After the collision, the 2.0 kg object moves at m/s. Its direction is in the b. The magnitude of the impulse on the 8.0 kg object is direction is in the c. The magnitude of the impact force on the 8.0 kg object if the collision happens in 1 millisecond is N. Its direction is in the kg m/s. Its

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B6
An 8.0 kg object moving 4.0 m/s in the positive x direction has a one-dimensional
collision with a 2.0 kg object moving 3.0 m/s in the opposite direction. The final
velocity of the 8.0 kg object is 2.0 m/s in the positive x direction.
a. After the collision, the 2.0 kg object moves at
m/s. Its direction is in the
b. The magnitude of the impulse on the 8.0 kg object is
direction is in the
c. The magnitude of the impact force on the 8.0 kg object if the collision happens in 1
millisecond is
N. Its direction is in the
d. The change in kinetic energy of the system is
the correct sign (+ or -)
kg m/s. Its
J. Make sure that you include
Transcribed Image Text:An 8.0 kg object moving 4.0 m/s in the positive x direction has a one-dimensional collision with a 2.0 kg object moving 3.0 m/s in the opposite direction. The final velocity of the 8.0 kg object is 2.0 m/s in the positive x direction. a. After the collision, the 2.0 kg object moves at m/s. Its direction is in the b. The magnitude of the impulse on the 8.0 kg object is direction is in the c. The magnitude of the impact force on the 8.0 kg object if the collision happens in 1 millisecond is N. Its direction is in the d. The change in kinetic energy of the system is the correct sign (+ or -) kg m/s. Its J. Make sure that you include
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