10. In the French Open tennis tournament, a professional cameraman named Mike Francis useda digital camera to obtain a sequence of images of a tennis ball being struck by Serena Williams. The camera was set to take a photograph every 5.0 ms. The successive positions of the racket and ball are shown in FIGURE 6. racket ball

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Chapter1: Units, Trigonometry. And Vectors
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10. In the French Open tennis tournament, a professional
cameraman named Mike Francis useda digital camera to
obtain a sequence of images of a tennis ball being struck
by Serena Williams. The camera was set to take a
photograph every 5.0 ms. The successive positions of the
racket and ball are shown in FIGURE 6.
racket
D
All
FIGURE 6
ball
0.68 m
a. The tennis ball has a zero-horizontal velocity at A and
reaches a constant horizontal velocity at D as it leaves
the racket. The ball travels a horizontal distance of 0.68
m between D and G. Show that the horizontal velocity
of the ball between positions D and G is about 45 m/s
b. At D, the ball was projected horizontally from a height
of 2.3 m above level ground. Show that the ball would
fall to the ground in about 0.7 s.
Transcribed Image Text:10. In the French Open tennis tournament, a professional cameraman named Mike Francis useda digital camera to obtain a sequence of images of a tennis ball being struck by Serena Williams. The camera was set to take a photograph every 5.0 ms. The successive positions of the racket and ball are shown in FIGURE 6. racket D All FIGURE 6 ball 0.68 m a. The tennis ball has a zero-horizontal velocity at A and reaches a constant horizontal velocity at D as it leaves the racket. The ball travels a horizontal distance of 0.68 m between D and G. Show that the horizontal velocity of the ball between positions D and G is about 45 m/s b. At D, the ball was projected horizontally from a height of 2.3 m above level ground. Show that the ball would fall to the ground in about 0.7 s.
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