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Alex73 [517]
3 years ago
6

Your company has sales of this year and cost of goods sold of . You forecast sales to increase to next year. Using the percent o

f sales​ method, forecast next​ year's cost of goods sold. The Tax Cuts and Jobs Act of 2017 temporarily allows​ 100% bonus depreciation​ (effectively expensing capital​ expenditures). However, we will still include depreciation forecasting in this chapter and in these problems in anticipation of the return of standard depreciation practices during your career.
The forecasted cost of goods sold (COGS) is $________
Business
1 answer:
Katyanochek1 [597]3 years ago
4 0

Complete question :

Your company has sales of $101,500 this year and cost of goods sold of $66,300. You forecast sales to increase to $118,900 next year. Using the percent of sales method, forecast next year's cost of goods sold. The Tax Cuts and Jobs Act of 2017 temporarily allows 100% bonus depreciation (effectively expensing capital expenditures). However, we will still include depreciation forecasting in this chapter and in these problems in anticipation of the return of standard depreciation practices during your career The forecasted cost of goods sold (COGS) is $ ___________ (Round to the nearest dollar.)

Answer:

$77,666

Explanation:

Given the following :

Sales for the year = $101,500

Cost of goods sold =$66,300

Forecasted increase in sales for next year = $118,900

Forecasted cost of goods sold for next year =?

Percentage cost of goods sold for this year:

Cost of goods sold / sales for this year

$66300/$101500

= 0.6532019

Forecasted cost of goods sold for next year:

(Forecasted increase in next year's sale * % cost of goods sold for this year)

= 118,900 * 0.6532019

= $77665.714

= $77666 ( nearest dollar)

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Answer:

Answer is explained in the explanation section below.

Explanation:

a)

Answer-a with option-1

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So the underage cost = Cu = 100-65 = 35 and overage cost = Co = 65-53 = 12

the critical ratio = Cu/(Cu+Co) = 35/47 = 0.7422

From the standard normal distribution function The Z value at 0.7422 = 0.66

The optimal order quantity = 200 + 0.66 x 125 = 282.5

The optimal order quantity = 282.5

b)

Answer-b with option-1

the land end sale price is $100, purchase cost is $55 and salvage value is $0

So the underage cost = Cu = 100-55 = 45 and overage cost = Co = 55-0 = 55

the critical ratio = Cu/(Cu+Co) = 45/100 = 0.45

From the standard normal distribution function The Z value at 0.45 = -0.12

the optimal order quantity = 200 - 0.12 x 125

The optimal order quantity = 185

c)

We have to calculate the expected profit in each case to determine which option Lands Ends should choose.

With option-1 Geoff's sells 282.5 units at $65 for total revenue of 18363 and production cost of 282.5 = 7063

Geoff credits Lands ends for each returned sunglass so we need to evaluate how many sunglasses Land Ends return.

Expected lost sales = 125 x 0.1528 = 19.1

Expected sales = 200 - 19.1 = 180.9

expected left over inventory = 282.5 - 180.9 = 101.6

Expected profit = (100-65) x 180.9 - (65-53)x 101.6 = 5112

Expected profit = 5112

Similarly with option 2 the Expected profit = 4053

So option-1 is preferred.

d)

If the Land chooses option-1 and orders 275 units Then Geoff earn = 275 x $65 = $17875

and production cost = $25 x 275 = $6875

With order quantity 275 the z statistics = 0.6

and expected lost sales = 125 x 0.6 = 21.09

Expected left over inventory = 275-200+21.09 = 96.09

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and expected profit = $17875 - $5093 = $5907

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Answer:

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Explanation:

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Initial outlay                              $550,000               $830,000

operating costs (years 1,2,3)    $160,000                $120,000

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we must determine which alternative has the lowest present value:

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Answer:

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WACC = After-Tax Cost of Debt*Weight of Debt + Cost of Equity*Weight of Equity

Where,

After-Tax Cost of Debt = Pretax Yield*(1-Tax Rate)

Market Value of Debt = Outstanding Bonds*Par Value*Current Selling Percentage

Cost of Equity = D1/Current Market Price + Growth Rate

Market Value of Equity = Number of Common Shares Outstanding*Current Market Price

Weight of Debt = Market Value of Debt/(Market Value of Debt + Market Value of Equity)

Weight of Equity = Market Value of Equity/(Market Value of Debt + Market Value of Equity)

Therefore, Market Value of Debt = 7,500*1,000*98.60% = $7,395,000

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