The cheetah in the previous problem unfortunately falls off a cliff with a purely horizontal initial velocity whose magnitude is 11 m/s. Just as the cheetah goes off the cliff, an athletic song writer throws a tennis ball downward with initial speed of vOSW = 28 m/s, and the ball hits the ground after time t = 1.43 S. (a) How high is the cliff? Answer in m with two significant digits. (b) How much time does it take for cheetah to land after going off the edge? Answer with seconds with two significant digits. (c) What horizontal distance from the cliff does the cheetah land? Answer in m with 2 significant digits.

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The cheetah in the previous problem
unfortunately falls off a cliff with a purely
horizontal initial velocity whose magnitude is
11 m/s. Just as the cheetah goes off the cliff, an
athletic song writer throws a tennis ball
downward with initial speed of VOSW = 28 m/s,
and the ball hits the ground after time t = 1.43
S.
(a) How high is the cliff? Answer in m with two
significant digits.
(b) How much time does it take for cheetah to
land after going off the edge? Answer with
seconds with two significant digits.
(c) What horizontal distance from the cliff does
the cheetah land? Answer in m with 2
significant digits.
Transcribed Image Text:The cheetah in the previous problem unfortunately falls off a cliff with a purely horizontal initial velocity whose magnitude is 11 m/s. Just as the cheetah goes off the cliff, an athletic song writer throws a tennis ball downward with initial speed of VOSW = 28 m/s, and the ball hits the ground after time t = 1.43 S. (a) How high is the cliff? Answer in m with two significant digits. (b) How much time does it take for cheetah to land after going off the edge? Answer with seconds with two significant digits. (c) What horizontal distance from the cliff does the cheetah land? Answer in m with 2 significant digits.
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