2. The spring in the figure has a spring constant of 1000 N/m. It is compressed 15 cm, then launches a 200 g block. The horizontal surface is frictionless, but the block's coefficient of kinetic friction on the incline is 0.20. What distance d does the block sail through the air? 200 g 2.0 m 45° Figure 2

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Chapter7: Rotational Motion And Gravitation
Section: Chapter Questions
Problem 54AP: A 0.400-kg pendulum bob passes through the lowest part of its path at a speed of 3.00 m/s. (a) What...
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The spring in the figure has a spring constant of 1300 N/m. It is compressed 17.0 cm, then launches a 200 g block. The horizontal surface is frictionless, but the block’s coefficient of kinetic friction on the incline is 0.200. What distance d does the block sail through the air?

2. The spring in the figure has a spring constant of 1000 N/m. It is compressed 15 cm, then launches a
200 g block. The horizontal surface is frictionless, but the block's coefficient of kinetic friction on the
incline is 0.20. What distance d does the block sail through the air?
200 g
2.0 m
45°
Figure 2
Transcribed Image Text:2. The spring in the figure has a spring constant of 1000 N/m. It is compressed 15 cm, then launches a 200 g block. The horizontal surface is frictionless, but the block's coefficient of kinetic friction on the incline is 0.20. What distance d does the block sail through the air? 200 g 2.0 m 45° Figure 2
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