Figure 4 100 g 7. Place a clamp with a hanging mass of 300 g at the 30.0 cm mark of the half-meter stick (Figure 5). Place the second clamp at the 5.0 cm mark on the fulcrum and the third clampa the 40.0 cm mark with a hook upward. Hang the upward hook to a spring balance and find the reading on the balance. Be sure to keep the half-meter stick horizontal 2.66N 10 20 50 luuluuluulw 300g Figure 5 8. Interchange the spring balance with the fulcrum and read the spring balance. 162N 6. Check the sum of the two spring balance readings from procedures 7 and 8 against the total weight to verify the first condition for equilibrium.
Figure 4 100 g 7. Place a clamp with a hanging mass of 300 g at the 30.0 cm mark of the half-meter stick (Figure 5). Place the second clamp at the 5.0 cm mark on the fulcrum and the third clampa the 40.0 cm mark with a hook upward. Hang the upward hook to a spring balance and find the reading on the balance. Be sure to keep the half-meter stick horizontal 2.66N 10 20 50 luuluuluulw 300g Figure 5 8. Interchange the spring balance with the fulcrum and read the spring balance. 162N 6. Check the sum of the two spring balance readings from procedures 7 and 8 against the total weight to verify the first condition for equilibrium.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Transcribed Image Text:Figure 4
100 g
7. Place a clamp with a hanging mass of 300 g at the 30.0 cm mark of the half-meter stick
(Figure 5). Place the second clamp at the 5.0 cm mark on the fulcrum and the third clampa
the 40.0 cm mark with a hook upward. Hang the upward hook to a spring balance and find
the reading on the balance. Be sure to keep the half-meter stick horizontal
2.66N
10
20
50
luuluuluulw
300g
Figure 5
8. Interchange the spring balance with the fulcrum and read the spring balance.
162N

Transcribed Image Text:6. Check the sum of the two spring balance readings from procedures 7 and 8 against the total
weight to verify the first condition for equilibrium.
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