If the population of squirrels on campus t years after the beginning of 1855 is given by the logistical growth function 4000 1 + 21e-0.95t find the time t such that s(t) = 3600. Time, t = s(t) = which when rounded to two decimal places, corresponds to the year x

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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If the population of squirrels on campus \( t \) years after the beginning of 1855 is given by the logistical growth function

\[
s(t) = \frac{4000}{1 + 21e^{-0.95t}}
\]

find the time \( t \) such that \( s(t) = 3600 \).

Time, \( t = \_\_\_\_\_\_\_\_ \)

which when rounded to two decimal places, corresponds to the year \(\_\_\_\_\_\_\_\_\).

There are no graphs or diagrams to explain in this image.
Transcribed Image Text:If the population of squirrels on campus \( t \) years after the beginning of 1855 is given by the logistical growth function \[ s(t) = \frac{4000}{1 + 21e^{-0.95t}} \] find the time \( t \) such that \( s(t) = 3600 \). Time, \( t = \_\_\_\_\_\_\_\_ \) which when rounded to two decimal places, corresponds to the year \(\_\_\_\_\_\_\_\_\). There are no graphs or diagrams to explain in this image.
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