P(t) = P,elin(2) · t) where t is the number of subdivision periods (time), and P(t) is the size at time t. Given P, = 57,the time required to increase the size of the population by 23%, rounded to 4 decimals, is equal to O 0.2987 O 28.5

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
6th Edition
ISBN:9781337111348
Author:Bruce Crauder, Benny Evans, Alan Noell
Publisher:Bruce Crauder, Benny Evans, Alan Noell
Chapter5: A Survey Of Other Common Functions
Section5.4: Combining And Decomposing Functions
Problem 7E
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Mitosis Of A Cell Population. The growth of mitosis of a cell population follows the exponential rule
P(t) = P,e(In(2) · t)
where t is the number of subdivision periods (time), and P(t) is the size at time t.
Given Po = 57,the time required to increase the size of the population by 23%, rounded to 4 decimals, is equal to
O 0.2987
28.5
O 3.3484
3.3483
57
O None of the other answers
O 114
0.2986
Transcribed Image Text:Mitosis Of A Cell Population. The growth of mitosis of a cell population follows the exponential rule P(t) = P,e(In(2) · t) where t is the number of subdivision periods (time), and P(t) is the size at time t. Given Po = 57,the time required to increase the size of the population by 23%, rounded to 4 decimals, is equal to O 0.2987 28.5 O 3.3484 3.3483 57 O None of the other answers O 114 0.2986
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