How to find the momentum before and after collision

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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How to find the momentum before and after collision 

**Data Table Part 1: Before Elastic Collision**

| Trial | Glider A Before Collision              |                     | Glider B Before Collision |
|-------|----------------------------------------|---------------------|---------------------------|
|       | Mass            | Distance | Time     | Vel                  | Mass  | Distance | Time | Vel    |
| 1     | 311 g           | 10 cm    | 1.406 s  | 87.7 cm/s            | 211 g |          |      |        |
| 2     | 311 g           | 10 cm    | 1.174 s  | 85.2 cm/s            | 211 g |          |      |        |

**Data Table Part 1: After Elastic Collision**

| Trial | Glider A After Collision               |                     | Glider B After Collision   |
|-------|----------------------------------------|---------------------|---------------------------|
|       | Mass            | Distance | Time     | Vel                  | Mass  | Distance | Time | Vel    |
| 1     | 311 g           | 10 cm    | 0.6141 s | 162.3 cm/s           | 211 g | 10 cm    | 1.052 s| 95.1 cm/s |
| 2     | 311 g           | 10 cm    | 0.4948 s | 202.5 cm/s           | 211 g | 10 cm    | 1.016 s| 98.4 cm/s |

**Momentum Data Table Part 1: Elastic Collision**

| Trial | Momentum Before Collision | Momentum After Collision | Percent Difference |
|-------|---------------------------|--------------------------|--------------------|
| 1     |                           |                          |                    |
| 2     |                           |                          |                    |

**Calculations:**

[Empty space for calculations]

---

This data is organized in tables indicating the mass, distance, time, and velocity of gliders before and after an elastic collision. The velocity (Vel) values are derived from recorded time intervals for a fixed distance of 10 cm. Further, there's a table provided for calculating the momentum before and after the collision, meant to observe momentum conservation.
Transcribed Image Text:**Data Table Part 1: Before Elastic Collision** | Trial | Glider A Before Collision | | Glider B Before Collision | |-------|----------------------------------------|---------------------|---------------------------| | | Mass | Distance | Time | Vel | Mass | Distance | Time | Vel | | 1 | 311 g | 10 cm | 1.406 s | 87.7 cm/s | 211 g | | | | | 2 | 311 g | 10 cm | 1.174 s | 85.2 cm/s | 211 g | | | | **Data Table Part 1: After Elastic Collision** | Trial | Glider A After Collision | | Glider B After Collision | |-------|----------------------------------------|---------------------|---------------------------| | | Mass | Distance | Time | Vel | Mass | Distance | Time | Vel | | 1 | 311 g | 10 cm | 0.6141 s | 162.3 cm/s | 211 g | 10 cm | 1.052 s| 95.1 cm/s | | 2 | 311 g | 10 cm | 0.4948 s | 202.5 cm/s | 211 g | 10 cm | 1.016 s| 98.4 cm/s | **Momentum Data Table Part 1: Elastic Collision** | Trial | Momentum Before Collision | Momentum After Collision | Percent Difference | |-------|---------------------------|--------------------------|--------------------| | 1 | | | | | 2 | | | | **Calculations:** [Empty space for calculations] --- This data is organized in tables indicating the mass, distance, time, and velocity of gliders before and after an elastic collision. The velocity (Vel) values are derived from recorded time intervals for a fixed distance of 10 cm. Further, there's a table provided for calculating the momentum before and after the collision, meant to observe momentum conservation.
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