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Practice Questions: Momentum and Impulse

Subject: Physics  |  Grade: 11  |  Topic: Momentum and Impulse

Practice Questions: Momentum and Impulse

PRACTICE QUESTION 1

Two bumper cars collide. After collision, they move separately, but the total kinetic energy decreases.

1.1 Is momentum conserved?

1.2 Is kinetic energy conserved?

1.3 State the type of collision.

PRACTICE QUESTION 2

Two balls collide and move separately after collision. The total kinetic energy before collision is greater than the total kinetic energy after collision.

2.1 Is momentum conserved?

2.2 Is kinetic energy conserved?

2.3 State the type of collision.

PRACTICE QUESTION 3

A driver in a car is brought to rest during a collision. An airbag increases the time taken for the driver to stop.

3.1 Explain why the airbag reduces injury.

3.2 Which physical quantity is reduced when stopping time increases?

PRACTICE QUESTION 4

A safety mat increases the time taken for a gymnast to stop after landing.

4.1 Explain why the safety mat reduces injury.

4.2 Which physical quantity decreases when stopping time increases?

PRACTICE QUESTION 5

A 4 000 kg delivery van moves right at 12 m·s-1. A 1 500 kg car moves left at 8 m·s-1. After collision, the car moves right at 2 m·s-1.

5.1 Calculate the velocity of the van after collision.

5.2 Calculate the change in kinetic energy of the system.

5.3 State whether the collision is elastic or inelastic.

PRACTICE QUESTION 6

A 5 000 kg truck moves right at 10 m·s-1. A 2 000 kg car moves left at 6 m·s-1. After collision, the car moves right at 1 m·s-1.

6.1 Calculate the velocity of the truck after collision.

6.2 Calculate the change in kinetic energy of the system.

6.3 State whether the collision is elastic or inelastic.

PRACTICE QUESTION 7

A 0.2 kg ball moving right at 30 m·s-1 is hit back to the left at 20 m·s-1. Contact time is 0.05 s.

7.1 Calculate the change in momentum.

7.2 Calculate the average force.

PRACTICE QUESTION 8

A 0.15 kg ball moving right at 40 m·s-1 is hit back to the left at 10 m·s-1. Contact time is 0.03 s.

8.1 Calculate the change in momentum.

8.2 Calculate the average force.

PRACTICE QUESTION 9

A 50 kg skater moves east at 6 m·s-1. A 40 kg skater moves west at 3 m·s-1. They hold onto each other after collision.

9.1 Calculate their velocity after collision.

9.2 Calculate the distance travelled in 5 s after the collision.

PRACTICE QUESTION 10

A 60 kg skater moves east at 5 m·s-1. A 40 kg skater moves west at 2 m·s-1. They hold onto each other after collision.

10.1 Calculate their velocity after collision.

10.2 Calculate the distance travelled in 5 s after the collision.

PRACTICE QUESTION 11

An object's momentum changes from 60 kg·m·s-1 to -90 kg·m·s-1 in 5 s.

11.1 Define momentum.

11.2 Calculate the impulse.

11.3 Calculate the average net force.

PRACTICE QUESTION 12

An object's momentum changes from 80 kg·m·s-1 to -40 kg·m·s-1 in 4 s.

12.1 Define momentum.

12.2 Calculate the impulse.

12.3 Calculate the average net force.

PRACTICE QUESTION 13

A 1 000 kg car moves left at 15 m·s-1 and rebounds right at 5 m·s-1. The collision lasts 0.2 s.

13.1 Calculate the impulse experienced by the car.

13.2 Calculate the average force exerted on the car.

PRACTICE QUESTION 14

A 1 200 kg car moves left at 12 m·s-1 and rebounds right at 3 m·s-1. The collision lasts 0.3 s.

14.1 Calculate the impulse experienced by the car.

14.2 Calculate the average force exerted on the car.

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