An inquisitive physics student and mountain climber climbs a 53.0-m-high cliff that overhangs a calm pool of water. He throws two stones vertically downward, 1.00 s apart, and observes that they cause an initial speed of 1.98 m/s. (a) How long after release of the first stone do the two stones hit the water? (b) What initial velocity must the second stone have if the two stones are to hit the water simultaneously? magnitude m/s direction --Select-- (c) What is the speed of each stone at the instant the two stones hit the water? first stone m/s second stone m/s single splash. The first stone has

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An inquisitive physics student and mountain climber climbs a 53.0-m-high cliff that overhangs a calm pool of water. He throws two stones vertically downward, 1.00 s apart, and observes that they cause a single splash. The first stone has
an initial speed of 1.98 m/s.
(a) How long after release of the first stone do the two stones hit the water?
S
(b) What initial velocity must the second stone have if the two stones are to hit the water simultaneously?
magnitude
m/s
direction --Select--- ✓
(c) What is the speed of each stone at the instant the two stones hit the water?
first stone
m/s
second stone
m/s
Transcribed Image Text:An inquisitive physics student and mountain climber climbs a 53.0-m-high cliff that overhangs a calm pool of water. He throws two stones vertically downward, 1.00 s apart, and observes that they cause a single splash. The first stone has an initial speed of 1.98 m/s. (a) How long after release of the first stone do the two stones hit the water? S (b) What initial velocity must the second stone have if the two stones are to hit the water simultaneously? magnitude m/s direction --Select--- ✓ (c) What is the speed of each stone at the instant the two stones hit the water? first stone m/s second stone m/s
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