A conservation organization releases 25 Florida panthers into a game preserve. After 2 years, there are 39 panthers in the preserve. The Florida preserve has a carrying capacity of 200 panthers. (a) Write a logistic equation that models the population of panthers in the preserve. (b) Find the population after 5 years. (c) When will the population reach 100? (d) Write a logistic differential equation that models the growth rate of the panther population. Then repeat part (b) using Euler’s Method with a step size of h = 1. Compare the approximation with the exact answer. (e) At what time is the panther population growing most rapidly? Explain
A conservation organization releases 25 Florida panthers into a game preserve. After 2 years, there are 39 panthers in the preserve. The Florida preserve has a carrying capacity of 200 panthers. (a) Write a logistic equation that models the population of panthers in the preserve. (b) Find the population after 5 years. (c) When will the population reach 100? (d) Write a logistic differential equation that models the growth rate of the panther population. Then repeat part (b) using Euler’s Method with a step size of h = 1. Compare the approximation with the exact answer. (e) At what time is the panther population growing most rapidly? Explain
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.
Chapter4: Calculating The Derivative
Section4.EA: Extended Application Managing Renewable Resources
Problem 1EA: Suppose that a particular plot of land can sustain 500 deer and that the population of this...
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A conservation organization releases 25 Florida panthers into a game preserve. After 2 years, there are 39 panthers in the preserve. The Florida preserve has a carrying capacity of 200 panthers. (a) Write a logistic equation that models the population of panthers in the preserve. (b) Find the population after 5 years. (c) When will the population reach 100? (d) Write a logistic differential equation that models the growth rate of the panther population. Then repeat part (b) using Euler’s Method with a step size of h = 1. Compare the approximation with the exact answer. (e) At what time is the panther population growing most rapidly? Explain
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