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Luba_88 [7]
3 years ago
12

(3x^2-5x+5)-(7x^2+4x-10) Can anyone please explain this problem?

Mathematics
1 answer:
Gwar [14]3 years ago
5 0
(3x^2-5x+5)-(7x^2+4x-10)
3x^2-5x+5-7x^2-4x+10
answer = -4x^2+9x+15
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What is the inverse of p(m) = m/5 + 8
zvonat [6]
The inverse is just switching y and x your answer should be . p^-1 (m)=5m-40

4 0
2 years ago
Rational number equivalent to 1.28
tatyana61 [14]

Answer:

The 1 represents a whole number, and 28/99= .28282828 (the repeating decimal wanted)

Therefore 1.28= 1 28/99

Step-by-step explanation:

6 0
3 years ago
If six pencils cost 0.59 how many pencils can you buy for $2.95?
Serga [27]

Answer:

You can only buy 29 pencils with $2.95

Each pencil costs $0.10. You'd be able to buy 29 pencils and keep $0.05

You can't buy an extra pencil with $0.05. You need $0.10 to buy a pencil.

Step-by-step explanation:

P=Pencils(s)

n=Number of pencils that can be bought for $2.95

-------------------

nP=$2.95

----------------

But 6P=$0.59

So P=($0.59)/6

------------------

Therefore:

n($0.59/6)=$2.95

n=($2.95)/($0.59/6)

n=30

(Hope this helps can I pls have brainlist (crown) ☺️)

3 0
3 years ago
Read 2 more answers
Carlos borrowed 25,000 for 3 years and had to pay $3,750 simple interest at the end of that time. What rate of interest did he p
Sever21 [200]

Answer: 5% interest rate

Step-by-step explanation: 25000+3750 divided by 3 is 26250

3750 out of 25000 as a percentage is %5

5 0
3 years ago
Use the formula for the present value of an ordinary annuity or the amortization formula to solve the following problem.
Tju [1.3M]

Answer:

  1.  n = 40

  2.  

Step-by-step explanation:

The ordinary annuity formula can be written as ...

  PV = PMT(1 -(1+r)^-n)/r

where PMT is the payment per period, r is the interest rate per period, and n is the number of periods.

This formula can be solved explicitly for n, but not for r. Iterative or other methods can be used to find r.

__

1. Filling in the given information, we have ...

  15000 = 650(1 -1.03^-n)/0.03

  450/650 = 1 - 1.03^-n . . . . . divide by the coefficient of the stuff in parens

  1.03^-n = 4/13 . . . . . . . . . . . solve for the exponential term

  -n·log(1.03) = log(4/13) . . . . take logarithms

  n = log(13/4)/log(1.03) ≈ 39.87 . . . . . solve for n

  n ≈ 40

__

2. We can rewrite the annuity formula to make it be a function of i that is zero at the desired value of i.

  f(i) = PV -PMT(1 -(1+i)^-n)/i

If we want i as a percentage, then we can replace i with i/100 and fill in the given values to get ...

  f(i) = 9000 -500(1 -(1 +i/100)^-35)/(i/100)

  f(i) = 1000(9 -50(1 -(1 +i/100)^-35)/i) . . . . multiply the fraction by 100/100

Since we're seeking a value of f(r) that is zero, we can eliminate the factor of 1000.

  f(i) = 9 -50(1 - (1+i/100)^-35)/i

The attached graph shows the solution to f(i)=0 is near i=4.27%. As a decimal rounded to 3 decimal places, this is ...

  i ≈ 0.043

3 0
3 years ago
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