4. The velocity of the falling parachutist can be computed by v(t) = Use a first-order error analysis to estimate the error of v at c= 12, if g = 9.8, t= 10.5 (1-e-(=)) 1.5, and m= 50±3. (Note: Round off your answers to 6 decimal places.
4. The velocity of the falling parachutist can be computed by v(t) = Use a first-order error analysis to estimate the error of v at c= 12, if g = 9.8, t= 10.5 (1-e-(=)) 1.5, and m= 50±3. (Note: Round off your answers to 6 decimal places.
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![4. The velocity of the falling parachutist can be computed by
v(t) =
Use a first-order error analysis to estimate the error of v at c = 12, if g = 9.8, t = 10.5
(1-e-(=t))
1.5, and m = 50 ±3. (Note: Round off your answers to 6 decimal places.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fda495154-4f31-4ddf-98b2-00be9a7ee885%2Fb4266387-0fbb-4027-bfb5-2f46542e193b%2Fa843s5f_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4. The velocity of the falling parachutist can be computed by
v(t) =
Use a first-order error analysis to estimate the error of v at c = 12, if g = 9.8, t = 10.5
(1-e-(=t))
1.5, and m = 50 ±3. (Note: Round off your answers to 6 decimal places.
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