A population follows a logistic DDS given by Pn = 1.755pm 1-0.0002p-1 a) Determine the growth rate r. r = Round to three decimal places. b) Determine the carrying capacity. Carrying capacity = integer value. c) State the equilibrium values for this population. Smaller pe value. Round to the nearest . Round to the nearest integer Larger Pe Round to the nearest integer value. For the Beverton-Holt model given by the DDS Pr 2.23Pn-1 1+0.003Pn-1 If Po=1300, find P1, P2, and P3. Round your answers to 1 decimal place as needed. Use these rounded values for the next iteration. P₁ P2 P2

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.
Chapter14: Discrete Dynamical Systems
Section14.1: Sequences
Problem 20E
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A population follows a logistic DDS given by
Pn = 1.755pm 1-0.0002p-1
a) Determine the growth rate r.
r =
Round to three decimal places.
b) Determine the carrying capacity.
Carrying capacity =
integer value.
c) State the equilibrium values for this population.
Smaller pe
value.
Round to the nearest
. Round to the nearest integer
Larger Pe
Round to the nearest integer value.
Transcribed Image Text:A population follows a logistic DDS given by Pn = 1.755pm 1-0.0002p-1 a) Determine the growth rate r. r = Round to three decimal places. b) Determine the carrying capacity. Carrying capacity = integer value. c) State the equilibrium values for this population. Smaller pe value. Round to the nearest . Round to the nearest integer Larger Pe Round to the nearest integer value.
For the Beverton-Holt model given by the DDS Pr
2.23Pn-1
1+0.003Pn-1
If Po=1300, find P1, P2, and P3. Round your answers to 1 decimal place as
needed. Use these rounded values for the next iteration.
P₁
P2
P2
Transcribed Image Text:For the Beverton-Holt model given by the DDS Pr 2.23Pn-1 1+0.003Pn-1 If Po=1300, find P1, P2, and P3. Round your answers to 1 decimal place as needed. Use these rounded values for the next iteration. P₁ P2 P2
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