1.8 m/s 4 kg Before 0.2 m/s 6 kg 0.6 m/s 4 kg After 1.4 m/s 6 kg

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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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In the figure, determine the character of the collision. The masses of the blocks, and the velocities before and after are given. The collision is (choose one )

partially inelastic.
completely inelastic.
perfectly elastic.
characterized by an increase in kinetic energy.
**Before and After Collision: Analysis of Linear Momentum**

**Diagram Explanation:**
The diagram illustrates the conservation of linear momentum in a collision scenario involving two objects. The setup consists of two stages: "Before" and "After" the collision.

**Before Collision:**
- The first object has a mass of 4 kg and is moving to the right with a velocity of 1.8 m/s.
- The second object has a mass of 6 kg and is moving to the left with a velocity of 0.2 m/s.

**After Collision:**
- The 4 kg object is now moving to the left with a velocity of 0.6 m/s.
- The 6 kg object is moving to the right with a velocity of 1.4 m/s.

**Conservation of Momentum Principle:**
This diagram serves as a visual representation of the principle of conservation of momentum, which states that in an isolated system, the total momentum before a collision is equal to the total momentum after the collision, provided no external forces are acting on it. This principle can be useful in predicting the outcomes of collisions in various physical situations.
Transcribed Image Text:**Before and After Collision: Analysis of Linear Momentum** **Diagram Explanation:** The diagram illustrates the conservation of linear momentum in a collision scenario involving two objects. The setup consists of two stages: "Before" and "After" the collision. **Before Collision:** - The first object has a mass of 4 kg and is moving to the right with a velocity of 1.8 m/s. - The second object has a mass of 6 kg and is moving to the left with a velocity of 0.2 m/s. **After Collision:** - The 4 kg object is now moving to the left with a velocity of 0.6 m/s. - The 6 kg object is moving to the right with a velocity of 1.4 m/s. **Conservation of Momentum Principle:** This diagram serves as a visual representation of the principle of conservation of momentum, which states that in an isolated system, the total momentum before a collision is equal to the total momentum after the collision, provided no external forces are acting on it. This principle can be useful in predicting the outcomes of collisions in various physical situations.
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