5. The table shows the velocity and momentum of each ball both before and after the collision. What does this table mean in terms of momentum in a collision? Ball A Velocity (m/s) 0.72 Ball B Velocity (m/s) Collision Period Momentum (kg m/s) 0.25 Momentum Mass (kg) Mass (kg) (kg m/s) Before 0.35 0.35 After 0.35 0.03 0.01 0.35 0.69 0.24 A The momentum of each ball does not change once they collide, and the total momentum of the two balls together is decreased. B. The momentum of each ball changes due to the collision, but the total momentum of the two balls together remains constant. C. The momentum of the balls differs as to their total momentum. D. The total momentum of both balls is greater compare to the momentum of each ball.

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Chapter9: Momentum And Its Conservation
Section: Chapter Questions
Problem 70A
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5. The table shows the velocity and momentum of each ball both before and after the
collision. What does this table mean in terms of momentum in a collision?
Ball A
Velocity
(m/s)
0.72
0.03
Ball B
Velocity
(m/s)
Collision
Momentum
(kg.m/s)
0.25
0.01
Momentum
(kg.m/s)
Period
Mass (kg)
Mass (kg)
Before
After
0.35
0.35
0.35
0.35
0.69
0.24
A. The momentum of each ball does not change once they collide, and the total
momentum of the two balls together is decreased.
B. The momentum of each ball changes due to the collision, but the total momentum of the
two balls together remains constant.
C. The momentum of the balls differs as to their total momentum.
D. The total momentum of both balls is greater compare to the momentum of each ball.
6. It is a point that represents the average location for the total mass of a system.
A. Vertex
B. Center of mass
C. Geometric center
D. Origin
7. The center of geometry is at the geometric center while the center of mass is at a lower
position. Because the density of the object is_
(0. 1
(1, 1)
center of mass (0.5, 0.4)
center of geometry (0.5, 0.5)
(0. oL
lt. o)
A. not homogenous; the greater mass is located at the lower portion of the object.
B. homogenous; the greater mass is located at the lower portion of the object.
C. not homogenous; the lesser mass is located at the lower portion of the object.
D. homogenous; the lesser mass is located at the lower portion of the object.
8. During a collision the center of mass remains constant. The velocity of the center of mass in
an isolated system, the total linear momentum does not change. Therefore, the velocity of
the center of mass
A. changes
B. does not change C. doubles
D. cannot be determined
Transcribed Image Text:5. The table shows the velocity and momentum of each ball both before and after the collision. What does this table mean in terms of momentum in a collision? Ball A Velocity (m/s) 0.72 0.03 Ball B Velocity (m/s) Collision Momentum (kg.m/s) 0.25 0.01 Momentum (kg.m/s) Period Mass (kg) Mass (kg) Before After 0.35 0.35 0.35 0.35 0.69 0.24 A. The momentum of each ball does not change once they collide, and the total momentum of the two balls together is decreased. B. The momentum of each ball changes due to the collision, but the total momentum of the two balls together remains constant. C. The momentum of the balls differs as to their total momentum. D. The total momentum of both balls is greater compare to the momentum of each ball. 6. It is a point that represents the average location for the total mass of a system. A. Vertex B. Center of mass C. Geometric center D. Origin 7. The center of geometry is at the geometric center while the center of mass is at a lower position. Because the density of the object is_ (0. 1 (1, 1) center of mass (0.5, 0.4) center of geometry (0.5, 0.5) (0. oL lt. o) A. not homogenous; the greater mass is located at the lower portion of the object. B. homogenous; the greater mass is located at the lower portion of the object. C. not homogenous; the lesser mass is located at the lower portion of the object. D. homogenous; the lesser mass is located at the lower portion of the object. 8. During a collision the center of mass remains constant. The velocity of the center of mass in an isolated system, the total linear momentum does not change. Therefore, the velocity of the center of mass A. changes B. does not change C. doubles D. cannot be determined
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