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NARA [144]
2 years ago
9

The builder of a new movie theater complex is trying to decide how many screens she wants. Below are her estimates of the number

of patrons the complex will attract each year, depending on the number of screens available. After paying the movie distributors and meeting all other non-interest expenses, the owner expects to net $2.00 per ticket sold. Construction costs are $1,000,000 per screen. (a) Make a table showing the value of the marginal product for each screen from the first through the fifth. What property is illustrated by the behavior of marginal products? # of screens Total # of patrons Additional patrons Value of marginal (marginal product) Product ($1M/screen) 1 40,000 2 75,000 3 105,000 4 130,000 5 150,000 (b) How many screens will be built if the real interest rate is 5.5 percent? (c) If the real interest rate is 7.5 percent? (d) If the real interest rate is 10 percent? (e) If the real interest rate is 5.5 percent, how far would construction costs have to fall before the builder would be willing to build a five-screen complex? The builder of a new movie theater complex is trying to decide how many screens she wants. Below are her estimates of the number of patrons the complex will attract each year, depending on the number of screens available. After paying the movie distributors and meeting all other non-interest expenses, the owner expects to net $2.00 per ticket sold. Construction costs are $1,000,000 per screen.

Business
1 answer:
DochEvi [55]2 years ago
3 0

Answer:

<u>Part (a):</u>

Make a table showing the value of the marginal product for each screen from the first through the fifth:

<u>Solution: </u>

The answer is attached.

<u>Part (b):</u>  

How many screens will be built if the real interest rate is 5.5 percent?

<u>Answer:</u> 3 screens

<u>Part (c): </u>

How many screens will be built if the real interest rate is 7.5 percent?

<u>Answer:</u> 1 screen

<u>Part (d):</u>

How many screens will be built if the real interest rate is 10 percent?

<u>Answer:</u> 0 screens

<u>Part (e): </u>

If the real interest rate is 5.5 percent, how far would construction costs have to fall before the builder would be willing to build a five-screen complex?

<u>Answer:</u> $727,272.73(approx.)

Explanation:

Part (a):

Make a table showing the value of the marginal product for each screen from the first through the fifth:

Solution:

The solution is attached with working.

<u>Part (b):</u>

<u>How many screens will be built if the real interest rate is 5.5 percent?</u>

<u>Solution:</u>

3 screens

The interest cost of each screen = 5.5% x $1,000,000 = $55,000.

There are no other costs mentioned. The value of marginal product exceeds $55,000 for 3 screens.

Therefore, 3 screens should be built.

<u>Part (c): </u>

<u>How many screens will be built if the real interest rate is 7.5 percent?</u>

<u>Solution:</u>

1 screen

The value of the marginal product exceeds the interest cost (7.5% of $1,000,000, or $75,000) for only the first screen.

Thus, <u>one</u> screen will be built.

<u>Part (d):</u>

<u>How many screens will be built if the real interest rate is 10 percent?</u>

<u>Solution:</u>

0 screens

At 10% interest, the interest cost of a screen is $100,000, more than the value of the marginal product of even the first screen.

<u> </u>Thus, no screens will be built.

Part (e):

<u>If the real interest rate is 5.5 percent, how far would construction costs have to fall before the builder would be willing to build a five-screen complex?</u>

<u>Solution:</u>

The value of the marginal product of the fifth screen is $40,000. At an interest rate of 5.5%, building five screens is profitable only if 5.5% times the per-screen construction cost is no greater than $40,000.

<u>Financial cost per screen = real interest rate x construction cost of per screen </u>

$40, 000 = 5.5% x construction cost per screen Construction cost per screen  = $40,000 ÷ 5.5%

= $727,272.73(approx.)

<u></u>

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Answer:

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Explanation:

To solve this you just have to think on the unknown value and represent it as "X" in the first problem we do not know the length or width but we have a values given between them, so if "x" is the height then the width becomes "x+9" so those two values multiplied become the area.

x(x+9)=250\\x^{2} +9x=250\\x^{2} +9x-250=0\\

With this you just keep solving the others.

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2m as an area and the height is "x"

x(x+-5)=2\\x^{2} +.5x=2\\x^{2} +.5x-2=0\\

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7 0
2 years ago
Fuji film was also able to succeed in the US due to their history of catering to a sophisticated Japanese photo market in their
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Answer:

Option B. Demand conditions

Explanation:

The demand conditioning is the domestic demand of the product that forms greater impact on the demand and innovation of the product in its domestic market. This great domestic demand of Fuji film products stipulated greater innovation which not only differentiated the product but also increased the demand in other markets like US and Europe.

This increased Demand conditions enabled the company to gain competitive advantage.

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Manufacturing costs for Davenport Company during 2018 were as follows: Beginning Finished Goods, 1/1/18 $ 24,400 Beginning Raw M
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1. $283,400

2. $214,968

3. $790,468

4. $780,168

5. $781,868

Explanation:

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                       = $299,900

Then,

<em>Direct Materials Used = Total Materials Used - Indirect Material</em>

                                     = $299,900 - $16,500

                                     = $283,400

Applied overhead = Application Rate × Actual Activity        

                               =  78% ×  $275,600

                               =  $214,968

Calculation of Total Manufacturing Costs

Direct Materials                         $283,400

Direct Labor                               $275,600

Overheads Applied                    $214,968

Indirect Materials                          $16,500

Total Manufacturing Costs        $790,468

Cost of Goods Manufactured = Beginning Work in Process Inventory + Manufacturing Costs - Ending Work in Process Inventory

                                                  = $110,600 + $790,468 - $120,900

                                                  = $780,168

Cost of goods sold = Beginning Finished Goods Inventory + Cost of Goods Manufactured - Ending Finished Goods Inventory    

                                =  $ 24,400 +  $780,168 -  $22,700    

                                = $781,868

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Answer:

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Mixture 2

2/3 x 100000 + 1/3 x 400000 = 600000 / 3 = 200000

Number average  

Mixture 1  

(1 / 100000 x 100000 + 2 / 400000 x 400000) / (1/100000 + 2/400000 )

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Accounting cost =  $80,000 +  $20,000 =  $100,000

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