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OLga [1]
1 year ago
5

During her first year of college, Sara put $2000 in the bank to save for a trip to Italy after graduation. The money earned 3% s

imple annual interest. After 4 years, how much money did she have in the bank for her trip?
$ ____
Mathematics
2 answers:
pantera1 [17]1 year ago
7 0

Answer:

The Answer Is: 2240 I Just did the question

Step-by-step explanation:

Lostsunrise [7]1 year ago
3 0

The money she will have in the bank after her trip is  $2240.

<h3>How much will she have in the bank?</h3>

Simple interest is when the amount deposited increase by a fixed percentage over a period of time. The amount Sara would have in her account is a function of the amount deposited, the interest rate and the number of years.

The amount she would have = simple interest + amount deposited

Simple interest = principal x time x interest rate

2,000 x 0.03 x 4 = $240

The amount she would have =  $240 +  $2000 =  $2240

To learn more about simple interest, please check: brainly.com/question/27328409

#SPJ1

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the answer is 3,500

Step-by-step explanation:

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Answer:

  • (3y)(2x^2 -1x -8xy +4y)
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Step-by-step explanation:

<u>Part A</u>: All of the coefficients have a common factor of 3. All of the variable products have a common factor of y, so the greatest common factor of all terms is 3y. The expression can be written as ...

  (3y)(2x^2 -1x -8xy +4y)

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<u>Part B</u>: The remaining factor can be factored pairwise:

  3y(x(2x -1) -4y(2x -1)) = 3y(x -4y)(2x -1)

6 0
3 years ago
A fence is to be built to enclose a rectangular area of 1800 square feet. The fence along three sides is to be made of material
drek231 [11]

Answer:

length = 60 foot, width = 30 foot

Step-by-step explanation:

Area of rectangular part, A = 1800 ft²

Cost of fencing three sides is $ 6 per foot and cost of one side fencing is $18 per foot.

Let the length of the rectangle is l and the width of the rectangle is W.

Area = Length x width

A = L x W

1800 = L x W ...... (1)

Total cost of fencing, C = 6 x ( L + W + L) + 18 x W

C = 6 (2L + W) + 18 W

C = 12 L + 24 W

Substitute the value of W from equation (1), W=\frac{1800}{L} in equation (2)

C=12L+24\times \frac{1800}{L}

C=12L+\frac{43200}{L}

Differentiate both sides with respect to L:

\frac{dC}{dL}=12-\frac{43200}{L^{2}}

Put it equal to zero for maxima and minima

12-\frac{43200}{L^{2}}=0

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So, the costing is minimum for length = 60 foot and the width = 30 foot.

4 0
3 years ago
Suppose the supply function for a certain item is given by S(q)= (q+6)2 and the demand funtion is given by D(q)= (1000)/(q+6).
nasty-shy [4]

Answer: The equilibrium point is where; Quantity supplied = 100 and Quantity demanded = 100

Step-by-step explanation: The equilibrium point on a demand and supply graph is the point at which demand equals supply. Better put, it is the point where the demand curve intersects the supply curve.

The supply function is given as

S(q) = (q + 6)^2

The demand function is given as

D(q) = 1000/(q + 6)

The equilibrium point therefore would be derived as

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Cross multiply and you have

(q + 6)^2 x (q + 6) = 1000

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Add the cube root sign to both sides of the equation

q + 6 = 10

Subtract 6 from both sides of the equation

q = 4

Therefore when q = 4, supply would be

S(q) = (4 + 6)^2

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Also when q = 4, demand would be

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D(q) = 1000/10

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Hence at the point of equilibrium the quantity demanded and quantity supplied would be 100 units.

7 0
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