Suppose that the velocity v (t) (in meters per second) of a sky diver falling near the Earth's surface is given by the following exponential function, where time t is the time after diving measured in seconds. v (t) =74 – 74e¯0.19t How many seconds after diving will the sky diver's velocity be 53 meters per second? Round your answer to the nearest tenth, and do not round any intermediate computations.

College Algebra
7th Edition
ISBN:9781305115545
Author:James Stewart, Lothar Redlin, Saleem Watson
Publisher:James Stewart, Lothar Redlin, Saleem Watson
Chapter4: Exponential And Logarithmic Functions
Section4.1: Exponential Functions
Problem 65E
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Suppose that the velocity v(t) (in meters per second) of a sky diver falling near the Earth's surface is given by the following exponential function, where time t is the time after diving measured in seconds.

v(t)=74-74e^-0.19t

How many seconds after diving will the sky diver's velocity be 53 meters per second?

Round your answer to the nearest tenth, and do not round any intermediate computations.

O EXPONENTIAL AND LOGARITHMIC FUNCTIONS
Finding the time given an exponential function with base e that...
Suppose that the velocity v (t (in meters per second) of a sky diver falling near the Earth's surface is given by the
following exponential function, where time t is the time after diving measured in seconds.
-0.19t
v (t) =74- 74e
How many seconds after diving will the sky diver's velocity be 53 meters per second?
Round your answer to the nearest tenth, and do not round any intermediate computations.
| seconds
?
II
Transcribed Image Text:O EXPONENTIAL AND LOGARITHMIC FUNCTIONS Finding the time given an exponential function with base e that... Suppose that the velocity v (t (in meters per second) of a sky diver falling near the Earth's surface is given by the following exponential function, where time t is the time after diving measured in seconds. -0.19t v (t) =74- 74e How many seconds after diving will the sky diver's velocity be 53 meters per second? Round your answer to the nearest tenth, and do not round any intermediate computations. | seconds ? II
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