This exercise uses the population growth model. A culture starts with 8900 bacteria. After 1 hour the count is 10,000. (a) Find a function that models the number of bacteria n(t) after t hours. (Round your r value to three decimal places.) n(t) = 0.117 (b) Find the number of bacteria after 2 hours. (Round your answer to the nearest hundred.) 11235 bacteria (c) After how many hours will the number of bacteria double? (Round your answer to one decimal place.) 1.8 X hr Need Help? Read It Watch It

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.6: Exponential And Logarithmic Equations
Problem 54E
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This exercise uses the population growth model.
A culture starts with 8900 bacteria. After
hour the count is 10,000.
(a) Find a function that models the number of bacteria n(t) after t hours. (Round your r value to three decimal places.)
n(t) = | 0.117
(b) Find the number of bacteria after 2 hours. (Round your answer to the nearest hundred.)
11235
bacteria
(c) After how many hours will the number of bacteria double? (Round your answer to one decimal place.)
1.8
X hr
Need Help?
Read It
Watch It
Transcribed Image Text:This exercise uses the population growth model. A culture starts with 8900 bacteria. After hour the count is 10,000. (a) Find a function that models the number of bacteria n(t) after t hours. (Round your r value to three decimal places.) n(t) = | 0.117 (b) Find the number of bacteria after 2 hours. (Round your answer to the nearest hundred.) 11235 bacteria (c) After how many hours will the number of bacteria double? (Round your answer to one decimal place.) 1.8 X hr Need Help? Read It Watch It
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