The number N(t) of supermarkets throughout the country that are using a computerized checkout system is described by the initial-value problem = 0.1 N(1 -), N(O) = 1000. dN dt a. b. - 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, 1000,000 C. 25,000 d. 50,000 N 50,000 38.9 34.9 42.6 55.5
The number N(t) of supermarkets throughout the country that are using a computerized checkout system is described by the initial-value problem = 0.1 N(1 -), N(O) = 1000. dN dt a. b. - 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, 1000,000 C. 25,000 d. 50,000 N 50,000 38.9 34.9 42.6 55.5
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Question
![The number N(t) of supermarkets throughout the country that are using a
computerized checkout system is described by the initial-value problem
dN
0.1 N(1
-), N(O) = 1000.
dt
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,
b.
1000,000
N
50,000
C. 25,000
d. 50,000
38.9
34.9
42.6
55.5](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F92c05ba6-e775-4ea8-9e55-a6761b98c61f%2F897dd384-3fe4-46ea-9bb6-2dfd4a1029ad%2Fduo30y4_processed.png&w=3840&q=75)
Transcribed Image Text:The number N(t) of supermarkets throughout the country that are using a
computerized checkout system is described by the initial-value problem
dN
0.1 N(1
-), N(O) = 1000.
dt
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,
b.
1000,000
N
50,000
C. 25,000
d. 50,000
38.9
34.9
42.6
55.5
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