BEFORE COLLISION AFTER COLLISION 5.00 m/s At rest 2.00 m/s 3.75 m/s A B A B ma = 100 kg mg = 80 kg

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Consider the collision shown below. Is this collision elastic or inelastic? Show explicitly.

The image is a diagram illustrating the scenario of a collision between two objects, labeled as A and B, before and after the collision.

### Before Collision:

- **Object A:**
  - Mass (\(m_A\)) = 100 kg
  - Velocity = 5.00 m/s (moving to the right)

- **Object B:**
  - Mass (\(m_B\)) = 80 kg
  - Velocity = 0 m/s (at rest)

### After Collision:

- **Object A:**
  - Velocity = 2.00 m/s (moving to the right)

- **Object B:**
  - Velocity = 3.75 m/s (moving to the right)

This diagram demonstrates a typical physics problem involving momentum conservation in collisions. Initially, only object A is moving, while object B is stationary. After the collision, both objects are moving in the same direction, but at different speeds.
Transcribed Image Text:The image is a diagram illustrating the scenario of a collision between two objects, labeled as A and B, before and after the collision. ### Before Collision: - **Object A:** - Mass (\(m_A\)) = 100 kg - Velocity = 5.00 m/s (moving to the right) - **Object B:** - Mass (\(m_B\)) = 80 kg - Velocity = 0 m/s (at rest) ### After Collision: - **Object A:** - Velocity = 2.00 m/s (moving to the right) - **Object B:** - Velocity = 3.75 m/s (moving to the right) This diagram demonstrates a typical physics problem involving momentum conservation in collisions. Initially, only object A is moving, while object B is stationary. After the collision, both objects are moving in the same direction, but at different speeds.
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