Problem #2. For the free-falling parachutist with linear drag, assume a first jumper is 70 kg and has a drag coefficient of 12 kg/s. If a second jumper has a drag coefficient of 15 kg/s and a mass of 75 kg, how long will it take him to reach the same velocity the first jumper reached in 10 s?
Problem #2. For the free-falling parachutist with linear drag, assume a first jumper is 70 kg and has a drag coefficient of 12 kg/s. If a second jumper has a drag coefficient of 15 kg/s and a mass of 75 kg, how long will it take him to reach the same velocity the first jumper reached in 10 s?
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Solve the following problems clearly showing your solution. (Explain some steps, if possible).
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Transcribed Image Text:Write the Given, Required, Solution, and Answer in the proper order.
Solve the following problems clearly showing your solution. (Explain some steps, if possible).
Enclose your final answer with a red outline. Any confusing mark may cause inconsideration
of your answer/s.
![Problem #2. For the free-falling parachutist with linear drag, assume a first jumper is 70 kg and has a drag
coefficient of 12 kg/s. If a second jumper has a drag coefficient of 15 kg/s and a mass of 75 kg, how
long will it take him to reach the same velocity the first jumper reached in 10 s?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F12ce4dc5-ddfc-489e-bfdb-966591c9ba99%2F88b7e53b-eb57-4758-a2e4-e1e3598e6de3%2Fo9h977_processed.png&w=3840&q=75)
Transcribed Image Text:Problem #2. For the free-falling parachutist with linear drag, assume a first jumper is 70 kg and has a drag
coefficient of 12 kg/s. If a second jumper has a drag coefficient of 15 kg/s and a mass of 75 kg, how
long will it take him to reach the same velocity the first jumper reached in 10 s?
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