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Inessa05 [86]
3 years ago
11

Which table represents an exponential function of the form y= b* when I x 3 у 1 27 1 - 2 3 0

1
1
2
9
3
27
Mathematics
1 answer:
Sergio [31]3 years ago
5 0

Answer:

no table is present. please provide a table.

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Jacob invested $300 in a savings account and earned $81 in simple interest at the end of 9 years. what was the interest rate
Brilliant_brown [7]

Answer:

A.

Step-by-step explanation:

We use the simple interest equation of A=P(1+rt).

A-the total amount with interest earned

P-the initial amount or principal

r-rate

t-time in years

We substitute the values P=300, A=381, and t=9. We then solve for r.

381=300(1+9r)

We divide both sides by 300.

\frac{381}{300}=\frac{300(1+9r)}{300}

Simplify.

1.27=1+9r

We subtract 1 from both sides.

1.27-1=1-1+9r

Simplify.

0.27=9r

We divide by 9.

\frac{0.27}{9}=\frac{9r}{9}

r=0.03

We need to convert the decimal to a percentage by multiplying by 100.

The interest rate is 3%.


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4 years ago
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Tpy6a [65]

Answer:

Step-by-step explanation:

10

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X^3+9X^2–25X–33=0<br> Find The root of X??
Simora [160]

Answer:

x=-11, -1, and 3

Step-by-step explanation:

x^3+9x^2-25x-33=0

There are formulas to solve cubics, but that probably is not the way you are expected to go.  Here is a trial and error approach that works in this case.

Assume that the cubic can be factored and that the roots are r1, r2, and r3.  Then the factored form is

(x-r1)(x-r2)(x-r3)=0

This shows that the constant must equal the product of the roots.

(r1)(r2)(r3)=-33

One possibility is that the roots are integers.  In this case, a factor of 33 might work.  Prime factorization of 33 gives 3 and 11.  Try 3.  Then (x-3) is a factor.

Divide the cubic by (x-3).  It works. the result is

x^2+12x+11

This has factors of (x+11) and (x+1).  Therefore, the roots are 3, -1, and -11

6 0
3 years ago
Can someone please help me with this question?
Basile [38]

Answer:

B ( gabby)

Step-by-step explanation:

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