If an average-size man jumps from an airplane with a properly opening parachute, his downward velocity v = v(t), in feet pe second, t seconds into the fall is given by the following table. t = Seconds into the fall 0 1 2 3 v = Velocity 0 16 19.2 19.83 19.96 (a) Explain why you expect v to have a limiting value and what this limiting value represents physically. 4 (b) Estimate the terminal velocity of the parachutist. (Round your answer to two decimal places.) feet per second

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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If an average-size man jumps from an airplane with a properly opening parachute, his downward velocity v = v(t), in feet per
second, t seconds into the fall is given by the following table.
t = Seconds
into the fall
v = Velocity
0
16
19.2
19.83
19.96
(a) Explain why you expect v to have a limiting value and what this limiting value represents physically.
0
1
2
3
4
(b) Estimate the terminal velocity of the parachutist. (Round your answer to two decimal places.)
feet per second
Transcribed Image Text:If an average-size man jumps from an airplane with a properly opening parachute, his downward velocity v = v(t), in feet per second, t seconds into the fall is given by the following table. t = Seconds into the fall v = Velocity 0 16 19.2 19.83 19.96 (a) Explain why you expect v to have a limiting value and what this limiting value represents physically. 0 1 2 3 4 (b) Estimate the terminal velocity of the parachutist. (Round your answer to two decimal places.) feet per second
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