The following problems add in a minimal threshold value for the species to survive, T, which changes the differential equation to P ' ( t ) = r P ( 1 − P K ) − ( 1 − T P ) 193. The population of mountain lions in Northern Arizona has an estimated carrying capacity of 250 and grows at a rate of 0.25% per year and there must be 25 for the population to survive. With an initial population of 30 mountain lions, how many years will it take to get the mountain lions off the endangered species list (at least 100)?
The following problems add in a minimal threshold value for the species to survive, T, which changes the differential equation to P ' ( t ) = r P ( 1 − P K ) − ( 1 − T P ) 193. The population of mountain lions in Northern Arizona has an estimated carrying capacity of 250 and grows at a rate of 0.25% per year and there must be 25 for the population to survive. With an initial population of 30 mountain lions, how many years will it take to get the mountain lions off the endangered species list (at least 100)?
The following problems add in a minimal threshold value for the species to survive, T, which changes the differential equation to
P
'
(
t
)
=
r
P
(
1
−
P
K
)
−
(
1
−
T
P
)
193. The population of mountain lions in Northern Arizona has an estimated carrying capacity of 250 and grows at a rate of 0.25% per year and there must be 25 for the population to survive. With an initial population of 30 mountain lions, how many years will it take to get the mountain lions off the endangered species list (at least 100)?
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