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chubhunter [2.5K]
2 years ago
6

7) Efficiency is given by A. Actual output divided by design capacity B. Actual output divided by effective capacity C. Design c

apacity divided by utilization D. Effective capacity divided by actual output
Business
1 answer:
borishaifa [10]2 years ago
5 0

Answer:

B.  actual output divided by effective capacity.

Explanation:

The efficiency shows a relationship between the actual output and the input. It is shown as a ratio

In mathematically,

Efficiency = Actual output ÷ effective capacity

The motive is to determine the efficiency is to know how much it produced the number of units produced by reducing the wastage, cost, time, etc          

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On January 1, Year 1, Price Co. issued $190,000 of five-year, 6 percent bonds at 96½. Interest is payable annually on December 3
Tasya [4]

Answer:

a) Cash received = $183,350

b) Interest expense = $12,730

c) Carrying value = $186,010

Explanation:

As per the data given in the question,

a) Face value of bond = $190,000

Issued at =0.965

Cash received = $190,000 × 0.965

= $183,350

b) Discount on bonds payable = $190,000 - $183,350

=$6,650

Annual amortization of discount on bonds payable =$6,650÷5

= $1,330

Cash interest = $190,000×0.60

= $11,400

Interest expenses = $11,400+$1,330

= $12,730

c)

carrying value = $183,350 + ($1,330 × 2)

= $186,010

6 0
2 years ago
A population gathers plants and animals for survival. They need at least 360 units of​ energy, 300 units of​ protein, and 8 hide
stellarik [79]

Answer:

0 units of plants and 18 animals.

Explanation:

From the information provided, we know that this population must hunt at least 8 animals, to obtain the hides necessary to survive. When hunting such a quantity of animals, they would also obtain 160 units of energy and 200 units of protein. In terms of costs, this equals 80 hours of labor.

How can the population obtain the additional 200 units of energy and 100 of protein they need to live? They have two options: gather plants or keep hunting animals, of course, respecting the available quantities.

In the former case, at least 10 units of a plant would have to be gathered, this is the only way to obtain the additional units of energy and protein they are looking for. With 8 animals and 10 units of plants, they would have 460 units of energy, 300 of protein and 8 hides, and would have to invest 280 hours of labor.

If the population decided to reduce labor by gathering fewer plants (which is the activity that requires more time) but hunting the same amount of animals, it would obtain 430 units of energy, 290 units of protein and 8 hides. That means that it would not survive because it would not meet the requirement of 300 proteins.

Therefore, the only way to reduce hours of labor without risking survival would be gathering fewer plants but hunting more animals. Following this logic, the optimal amount would be 18 animals and 0 units of plants, as this would allow people to obtain the necessary resources to survive at the minimum cost in terms of labor. Furthermore, it would fit the physical limit of 27 units of plants and 23 animals. This combination would allow to obtain 360 units of energy, 450 of protein and 18 hides by investing only 180 hours of labor.

The attached image shows what happens when the quantity of animals is increased and that of plants is decreased until reaching the optimal combination of 18 animals and no units of plants.

4 0
2 years ago
The Flores Family loves to go sailing on the weekends. Mr. Flores has decided to purchase a more spacious sailboat. The sailboat
zavuch27 [327]

Answer:

$367.86

Explanation:

To calculate this, we use the formula for calculating future value annuity (FVA) due as follows:

FV = M × {[(1 + r)^n - 1] ÷ r} × (1 + r) ................................. (1)

Where,

FV = Future value of an annuity or the cost of sailboat =  $20,000

M = Amount of each annuity  or to deposit monthly = ?

r = Monthly interest rate  = 0.06 ÷ 12 = 0.005

n = number of months = 4 years × 12 = 48

Substituting the values into equation (1), we have:

20,000 = M × {[(1 + 0.005)^48 - 1] ÷ 0.005} × (1 + 0.005)

20,000 = M × 54.3683213801713  

Making M the subject of the formula and solve, we have:

M = 20,000 ÷ 54.3683213801713  = $367.86

Therefore, Mr. Flores should deposit $367.86 in this account at the beginning of each month to be able to pay cash for the sailboat in 4 years.

8 0
2 years ago
On September 30, 2018, Corso Steel acquired a patent from Thermo Steel. The agreement specified that Corso will pay Thermo $1,00
Reika [66]

Answer: $69,959

Explanation:

The amount of interest expense, that Corso will record on December 31, 2019, the company’s fiscal year end will be calculated thus:

First, we calculate the present value of payment which will be made on September 30,2020 and this will be:

= $1000000 × 0.857339

= $857339

Then, the interest expense on December 31,2018 will be:

= $857339 × 8%/12 × 3

= $17147

Therefore, the Interest expense on December 31,2019 will be:

= ($857339 + $17147) × 8%

= $874486 × 0.08

= $69959

3 0
2 years ago
Exeter Company acquires 35% of the voting stock of Fenton Corporation for $7,000,000 on January 1, 2020. At the time, the book v
ArbitrLikvidat [17]

Answer:

a. $700,000.

Explanation:

20,000,000 x 35% = 7,000,000

purchase cost:          7,000,000

nor goodwill or excess of value should be recognized.

But, if the face value is 15,000,000 then:

15,000,000 x 35% =  5,250,000

we recognize a goodwill of 1,750,000

which will be amortized over 5 year thus:

1,750,000 / 5 = 350,000

For the income of Frenton it will recognize the proportion of the net income and subtract the amortization on the goodwill.

3,000,000 x 35% =   1,050,000

amortization        <u>       (350,000)  </u>

<em>income from Frenton  700,000</em>

<em />

8 0
2 years ago
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