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musickatia [10]
2 years ago
10

An initial population of 7 chipmunks increases by 6% each year. If the function f(x) = abx models this situation, which function

could you use to find the population after 8 years?
A) f(x) = 8(1.06)7
B) f(x) = 7(1.06)8
C) f(x) = 7(0.06)8
D) f(x) = 8(0.06)7
Mathematics
2 answers:
laiz [17]2 years ago
5 0
I’m not sure but i think it is a a
steposvetlana [31]2 years ago
5 0

Answer:

f(x) = 7(1.06)^8

Step-by-step explanation:

Given : An initial population of 7 chipmunks increases by 6% each year.

To Find: which function could you use to find the population after 8 years?

Solution:

We are given that the function f(x) = ab^x models this situation

Where a is the initial amount.

b = 1+r

r is the rate of change

x is number of years

Since we are given that initial population is 7

So, a = 7

We are also given that chipmunks increases by 6% each year.

So, r = 6%=0.06

So, b = 1+r = 1+0.06 = 1.06

Now we are supposed to find the function which can be used to find the population after 8 years

So, x =8

Substitute the values in the function:

f(x) = 7(1.06)^8

Thus Option B is correct .

Hence the function which represents the population after 8 years is f(x) = 7(1.06)^8

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Estimates show that there are 1.4x10^8 pet fish and 9.4x10^6 pet reptiles in the United States. How many pet fish and reptile pe
azamat

Answer:

There are total number of pet fish and reptile pets are 1.49\times 10^8.

Step-by-step explanation:

Number of pet fish are 1.4\times 10^8 and the number of pet reptiles are 9.4\times 10^6.

It is required to find the total number of pet fish and reptile pets in the United States. It can be done by simply adding the above numbers such that total numbers are given by :

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The number of calls coming per minute into a hotel reservation center is Poisson random variable with mean 3.
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Answer:

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c) 0.000039308

Step-by-step explanation:

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b) For two minutes, the mean is doubled, hence it is 6. In order to calculate the probability of al least two calls arriving, we calculate first the probability of the complementary event: At most 1 call will arrive. For that probability, we need to sum the probabilities of 0 and 1.

P_X(0) = e^{-6}

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Practically 0

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