Problem 10: A fish hatchery has 500 fish at t = 0, when harvesting begins at a rate of b> 0 fish/year. The fish population is modeled by the initial value problem y' (t) = 0.01 y-b, y(0) = 500, where t is measured in years. a) Find the fish population, for t≥ 0, in terms of the harvesting rate b. (i.e. find the function y[t]). y(t) = for t≥ 0. b) Graph the solution in the case that b = 40 fish/year. Describe the solution. c) Graph the solution in the case that b = 60 fish/year. Describe the solution.

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter7: Distance And Approximation
Section7.3: Least Squares Approximation
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Problem 10: A fish hatchery has 500 fish at t = 0, when harvesting begins at a rate of
b > 0 fish / year. The fish population is modeled by the initial value problem y' (t) = 0.01 y — b,
y(0) = 500, where t is measured in years.
a) Find the fish population, for t ≥ 0, in terms of the harvesting rate b. (i.e. find the function y[t]).
y(t) =
b) Graph the solution in the case that b = 40 fish/year. Describe the solution.
c) Graph the solution in the case that b = 60 fish/year. Describe the solution.
for t≥ 0.
J
Transcribed Image Text:Problem 10: A fish hatchery has 500 fish at t = 0, when harvesting begins at a rate of b > 0 fish / year. The fish population is modeled by the initial value problem y' (t) = 0.01 y — b, y(0) = 500, where t is measured in years. a) Find the fish population, for t ≥ 0, in terms of the harvesting rate b. (i.e. find the function y[t]). y(t) = b) Graph the solution in the case that b = 40 fish/year. Describe the solution. c) Graph the solution in the case that b = 60 fish/year. Describe the solution. for t≥ 0. J
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