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5. Draw a free-body diagram for the ball at the top of the toss. 6. Draw a free-body diagram for the ball just before the

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5. Draw a free-body diagram for the ball at the top of the toss. 6. Draw a free-body diagram for the ball just before the ball touches the hand as it is being caught on the way down. 7. Draw a free-body diagram for the ball at a point when the ball has been caught but has not yet come to rest. (Note: it may help to draw separate diagrams for the beginning and the end of the catch.) 8. Draw a free-body diagram for the ball at the bottom of the catch. 9. Now consider a two-dimensional (projectile) ball toss like we analyzed in the projectile motion laboratory. Which of the free-body diagrams that you drew above would be different for a projectile ball toss? Be sure to explain HOW they would be different. 10. Explain how you could use your force versus time graph to determine the magnitude of the applied force at any time. 11. For which of the point(s) dealth with in (2)-(8) is the applied force app greater than, less than, or equal to the weight force W, or equal to zero. Answer by filling in the following chart

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