Given the following data find the net clockwise torque and the net counter-clockwise torque acting on the system. Let the axis be at point P (where the meter stick is supported by the stand). Finally, find the percent difference. Do not forget the torque supplied by the meterstick! You may assume that ALL of the meterstick’s mass is at its own center of mass. Show all work. Express torque in proper units (Nm).

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Given the following data find the net clockwise torque and the net counter-clockwise torque acting on the system. Let the axis be at point P (where the meter stick is supported by the stand). Finally, find the percent difference. Do not forget the torque supplied by the meterstick! You may assume that ALL of the meterstick’s mass is at its own center of mass. Show all work. Express torque in proper units (Nm).

 

**Title: Beam Balance Experiment**

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**Diagram Description:**
A meter stick balance experiment is illustrated. 

- The meter stick has a mass of 100 g and its center of mass is at 50.0 cm.
- It is suspended on a pivot (labeled "P") which balances different masses placed along its length. 

**Masses and Positions:**
1. **Left Side:**
   - **Mass:** 120 g 
   - **Position:** x = 1.0 cm
2. **Center:**
   - **Mass:** 20 g
   - **Position:** x = 55.0 cm
3. **Right Side:**
   - **Mass:** 220 g
   - **Position:** x = 87.0 cm 

The experiment demonstrates the principle of torque and the conditions for equilibrium, where the clockwise and counterclockwise moments about the pivot are balanced. The arrangement and distribution of masses with specific distances from the pivot are carefully measured to ensure equilibrium.
Transcribed Image Text:**Title: Beam Balance Experiment** **Document Recovery:** This section indicates that Microsoft Word has recovered files from previous unsaved versions: 1. Lab 6 Collisions(1) [AutoRecovered] - Version from 10/27/2020 10:57 PM 2. Lab 6 Collisions(1) [Original] - Version from 10/23/2020 9:21 PM **Diagram Description:** A meter stick balance experiment is illustrated. - The meter stick has a mass of 100 g and its center of mass is at 50.0 cm. - It is suspended on a pivot (labeled "P") which balances different masses placed along its length. **Masses and Positions:** 1. **Left Side:** - **Mass:** 120 g - **Position:** x = 1.0 cm 2. **Center:** - **Mass:** 20 g - **Position:** x = 55.0 cm 3. **Right Side:** - **Mass:** 220 g - **Position:** x = 87.0 cm The experiment demonstrates the principle of torque and the conditions for equilibrium, where the clockwise and counterclockwise moments about the pivot are balanced. The arrangement and distribution of masses with specific distances from the pivot are carefully measured to ensure equilibrium.
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