These cannonballs are all fired at the same angle. The masses are different as shown. The initial velocities are different as shown. 8 m/s 2 m/s 6 m/s 2 m/s 6 kg 12 kg 4 kg s kg A в C D Rank them according to their magnitude of impact velocity, greatest to least. O A>C> D>B OC>A>D > B O A>C>B = D O A>B = C >D O A= B = C = D

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The image features a physics problem involving four cannonballs, each with different masses and initial velocities, being fired at the same angle. The goal is to rank the cannonballs according to their magnitude of impact velocity from greatest to least.

### Cannonball Details:

- **Cannonball A:**
  - Mass: 6 kg
  - Initial Velocity: 8 m/s

- **Cannonball B:**
  - Mass: 12 kg
  - Initial Velocity: 2 m/s

- **Cannonball C:**
  - Mass: 4 kg
  - Initial Velocity: 6 m/s

- **Cannonball D:**
  - Mass: 8 kg
  - Initial Velocity: 2 m/s

### Question:
Rank the cannonballs from greatest to least based on their magnitude of impact velocity.

### Options for Ranking:
1. A > C > D > B
2. C > A > D > B
3. A > C > B = D
4. A = B = C > D
5. A = B = C = D

This exercise encourages understanding of projectile motion and the influence of mass and initial velocity on impact velocity.
Transcribed Image Text:The image features a physics problem involving four cannonballs, each with different masses and initial velocities, being fired at the same angle. The goal is to rank the cannonballs according to their magnitude of impact velocity from greatest to least. ### Cannonball Details: - **Cannonball A:** - Mass: 6 kg - Initial Velocity: 8 m/s - **Cannonball B:** - Mass: 12 kg - Initial Velocity: 2 m/s - **Cannonball C:** - Mass: 4 kg - Initial Velocity: 6 m/s - **Cannonball D:** - Mass: 8 kg - Initial Velocity: 2 m/s ### Question: Rank the cannonballs from greatest to least based on their magnitude of impact velocity. ### Options for Ranking: 1. A > C > D > B 2. C > A > D > B 3. A > C > B = D 4. A = B = C > D 5. A = B = C = D This exercise encourages understanding of projectile motion and the influence of mass and initial velocity on impact velocity.
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