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Ulleksa [173]
2 years ago
11

In order to save $57,000 in five years, John will start saving money next month. He already has $10,000 in his account. The acco

unt is paying him 0.1 percent interest per month. In order to have $57,000 in five years, how much will he have to deposit into that account each month?
Business
1 answer:
Jlenok [28]2 years ago
3 0

Answer:

He has to deposit $750.46 every month into the account

Explanation:

Future value id the accumulated amount of principal and compounded interest at the end of a specific investment period.

Assuming interest is compounding every month, use following formula to calculate the amount of payment each month.

FV = PV x ( 1 + r )^n + A x ( ( 1 + r )^n - 1 ) / r

$57,000 = $10,000 x (1+0.1%)^5x12 + A x ( ( 1+0.1% )^5x12 -1 ) / 0.1%

A = { $57,000 - [ $10,000 x ( 1 + 0.001 )^60 ] } / [ ( ( 1 + 0.001 )^60 )-1 / 0.001 ]

A = ( $57,000 - $10,618.05 ) / 61.80471

A = $46,381.95 / 61.80471

A = $750.46

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Answer:

Changes that would increase Susie’s limits the most without increasing her monthly premium by more than $5.00 is Option C: Increase coverage on bodily injury to $100/300,000 and on property damage to $50,000.

Explanation:

Lower coverage does not necessarily means lower premiums.

Premium is the amount of one makes to keep his insurance policy active. Lower coverage would mean lower premium but that means there would be a few restrictions on the insurance policy while covering that policy.

Full coverage policies of the vehicle not only covers the liabilities but also the damage that occurs to the car.

If Susie increases the 'coverage' on the injury of the body to '$100/300,000' and on property damage to '$50,000', then her monthly premium would not increase from more than $5.00.

7 0
2 years ago
SkyChefs, Inc., prepares in-flight meals for a number of major airlines. One of the company’s products is grilled salmon in dill
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6 0
2 years ago
Read 2 more answers
A graphics reproduction firm has four units of equipment that are automatic but occasionally become inoperative because of the n
elena55 [62]

Answer:

(a) Average number of unit in line  = 0.256

(b) Average number of unit in operation= 3.209

(c) Average number of unit being service in operation = 0.535

Explanation:

Given Data:

Number of machine N = 4

Number of attendant (S) = 1

Service time (T)= 5 mins

Time required by the machine before servicing = 30 mins

Calculating the service factor (X) using the formula;

X = T/(T+U)

    = 5/(5+30)

    = 5/35

     = 0.1429

(a) Calculating the average number of unit in line (L) using the formula;

L = N* (1-F)

where, N = Number of unit

F = efficiency factor

L = average number of unit in line

Using the finite queuing table at X = 0.1429 and S = 1,

Efficiency factor = 0.936

Substituting, we have;

L = 4*(1-0.936)

   = 4* 0.064

   = 0.256

(c) Calculating the average number of unit being service in operation (H) using the formula;

H = N*F*X

   = 4 *0.936*0.1429

   = 0.535

(b) Calculating the average number of unit in operation using the formula;

Average number of unit in operation= Number of unit-down unit

But down unit = L+H

The formula becomes;

Average number of unit in operation= Number of unit-(L+H)

                                                             = 4 - (0.256+0.535)

                                                             = 4-0.791

                                                             = 3.209

6 0
2 years ago
Many apartment-complex owners are installing water meters for each apartment and billing the occupants according to the amount o
kondor19780726 [428]

Answer:

<h2>The law of diminishing marginal utility and law of demand explain the decline in water usage by the residents or occupants,in this case.</h2>

Explanation:

  • In Microeconomic Theory,the law of diminishing marginal utility basically states that as a rational consumer or buyer consumes additional or one more unit of any product or service,the incremental or additional utility or satisfaction obtained from that per unit consumption or purchase decreases progressively.
  • Now,law of diminishing marginal utility has a conceptual connection with law of demand,which denotes the inverse or negative relationship between price of any normal good or service and its consumer demand.It implies that as price of any normal good or service increase,its consumer demand decreases and vise versa.
  • Now,observe that according to law of diminishing marginal utility,the additional or incremental consumer utility or satisfaction declines for per unit consumption,which essentially implies that the additional or marginal value of any normal product or service that the consumer is willing to pay decreases as he or she increases the consumption level.
  • Therefore,the willingness to pay for any consumer decreases progressively as he or she increases consumption level.This also explains that to increase the consumption level of any buyer or consumer,the product or service price has to decrease and vise versa.
  • In this case,as the residents use more units of water,the marginal utility or satisfaction obtained by the residents declines increasingly and so does the value they are willing to pay for more water usage.Now,installation of water meters compels the residents to pay for every unit of water they use and since the marginal utility of water drops with each unit of water usage,the price that the residents are willing to pay also drop for each additional unit of water that they use. In other words,the residents don't want to pay more and thus,they restricted their water usage.Therefore,the water usage also declined following the installation of water meter.
3 0
2 years ago
The Camino Real Landfill was required to install a plastic liner to prevent leachate from migrating into the groundwater. The fi
tensa zangetsu [6.8K]

Answer:

25.25%

Explanation:

With a fill area of 50,000m^{2}, and an installed liner cost of $8, the total cost of installation = 50,000 * 8 = $400,000.

Annual average annual cost = $400,000/4 = $100,000 (since the fill area is adequate for 4 years).

Estimated annual revenue = P_{p}* V_{p} +P_{d}* V_{d}+P_{c}* V_{c}

(P = Price, V = Value, p = Pick Up, d = Dump Truck, c = Compactor Truck)

= (10*2,500) + (25*650) + (70*1,200)

= $125,250.

Therefore, annual rate of return = \frac{125,250}{100,000} - 1 = 25.25%.

7 0
2 years ago
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