Step-by-step answer:
It is not clear what the question exactly wants, but here's the best I can do with possible interpretations.
Let P(t) = population t years after 2000, then
P(t) = (N0)e^(Rt)
where
N0=population of year 2000 = 19169000
R=rate of growth, in ratio = 0.006
e=base of natural logarithm = 2.7182818284...
Then
P(25) = 19169000*e^(0.006*25)
= 19169000*e^(0.15)
= 22271200.59885846
= 22271201
Not sure what it means "the other value", as we only have one.