Respuesta :
Answer:
[tex]P = 13,000(1.11) ^ t[/tex]
Step-by-step explanation:
This scenario can be modeled using an exponential growth equation.
The exponential growth equations have the following form:
[tex]P = p (1 + r) ^ t[/tex]
Where P is the population in year t
p is the initial population at t = 0
r is the growth rate
t is the time in years.
In this case we know that the current population is 13,000 and that the growth rate is 11%
So
[tex]p = 13,000\\r = 0.11[/tex]
The equation that models this scenario is:
[tex]P = 13,000(1 + 0.11) ^ t[/tex]
[tex]P = 13,000(1.11) ^ t[/tex]
Answer:
y = 13,000(1.11)x (i did the test)
Step-by-step explanation:
This scenario can be modeled using an exponential growth equation.
The exponential growth equations have the following form:
Where P is the population in year t
p is the initial population at t = 0
r is the growth rate
t is the time in years.
In this case we know that the current population is 13,000 and that the growth rate is 11%
So
The equation that models this scenario is:
y = 13,000(1.11)x