Fill in the following tables and include them in your lab report.
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Data Table 1: Mass of the stick (don’t forget units and uncertainties. Add any other masses you measured to this table as well)
Configuration 1 | |||
Force | F (±?) | R (±?) | θ (±?) |
1 | |||
2 | |||
3 | |||
4 |
Data Table 2: Magnitude, position, and direction of all forces acting on the stick for Configuration 1. (be sure to define all these forces, and explain what the position and angles are measured relative to. Indicate any values which are calculated (for instance, if you measured a mass and converted into weight))
Configuration 2 | |||
Force | F (±?) | R (±?) | θ (±?) |
1 | |||
2 | |||
3 | |||
4 |
Data Table 3: Magnitude, position, and direction of all forces acting on the stick for Configuration 2. (be sure to define all these forces, and explain what the position and angles are measured relative to. Indicate any values which are calculated (for instance, if you measured a mass and converted into weight))
Lab 10: Torque – Data Tables:
Fill in the following tables and include them in your lab report.
Ms
Data Table 1: Mass of the stick (don’t forget units and uncertainties. Add any other masses you measured to this table as well)
Configuration 1
Force F (±?) R (±?) θ (±?)
1
2
3
4
Data Table 2: Magnitude, position, and direction of all forces acting on the stick for Configuration 1. (be sure to define all these forces, and explain what the position and angles are measured relative to. Indicate any values which are calculated (for instance, if you measured a mass and converted into weight))
Configuration 2
Force F (±?) R (±?) θ (±?)
1
2
3
4
Data Table 3: Magnitude, position, and direction of all forces acting on the stick for Configuration 2. (be sure to define all these forces, and explain what the position and angles are measured relative to. Indicate any values which are calculated (for instance, if you measured a mass and converted into weight))