A model for the population P(t) in a suburb of a large city is given by the initial-value problem dp = 0.1 P(1 – dt -), P(O) = 10,000 1000,000 where t is measured in months. The limiting value of the population and the time will take the population be equal to one-half of this limiting value respectively are 50,000, 49.92 b. 500,000, 58 c. 1000,000 42 d. 1000,000 46

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter9: Multivariable Calculus
Section9.CR: Chapter 9 Review
Problem 85CR
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A model for the population P(t) in a suburb of a large city is given by the
initial-value problem
dp
= 0.1 P(1 - -
dt
P
-), P(O) = 10,000
1000,000
where t is measured in months.
The limiting value of the population and the time will take the
population be equal to one-half of this limiting value respectively are
a.
50,000,
49.92
b.
500,000, 58
C.
1000,000 42
d.
1000,000 46
Transcribed Image Text:A model for the population P(t) in a suburb of a large city is given by the initial-value problem dp = 0.1 P(1 - - dt P -), P(O) = 10,000 1000,000 where t is measured in months. The limiting value of the population and the time will take the population be equal to one-half of this limiting value respectively are a. 50,000, 49.92 b. 500,000, 58 C. 1000,000 42 d. 1000,000 46
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