Labor Capital Output Total Cost Average Total Cost 0 1 0 $500 - 1 1 80 720 $nothing 2 1 240 940 nothing 3 1 320 1,160 nothing 4 1 360 1,380 nothing 5 1 380 1,600 nothing
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Labor
|
Capital
|
Output
|
Total Cost
|
Average Total Cost
|
0
|
1
|
0
|
$500
|
-
|
1
|
1
|
80
|
720
|
$nothing
|
2
|
1
|
240
|
940
|
nothing
|
3
|
1
|
320
|
1,160
|
nothing
|
4
|
1
|
360
|
1,380
|
nothing
|
5
|
1
|
380
|
1,600
|
nothing
|
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- Choose the correct letter of answer On a scattergrap, the diagonal line cuts across two sets of observations, namely: 600:200, and 900:500 which refer to costs and units, respectively. The fixed costs is plotted in the graph at P400. In this case, the variable cost per unit is equal to: a. P1.00b. P1.25c. P1.50d. P1.12The "x" in the overhead cost equation, y = $5.50x + $92,000, represents which of the following? total overhead costs. the variable costs. total fixed costs. the cost driver in units.Given the following cost and activity observations for Leno Enterprises'utilities, use the high-low method to calculate Leno's variable utilities cost permachine hour. Cost Machine HoursSeptember £4,100 22,000October £3,700 18,000November £3,900 19,000December £4,500 28,000a) £0.08b) £4.86c) £0.25d) £12.50
- Cullumber Company accumulates the following data concerning a mixed cost, using miles as the activity level. MilesDriven TotalCost MilesDriven TotalCost January 8,005 $14,170 March 8,500 $14,790 February 7,500 13,490 April 8,200 14,485 (A) Compute the variable cost per mile using the high-low method. (Round answer to 2 decimal places, e.g. 2.25.) Variable cost per mile $Type your answer here (B) Compute the fixed cost elements using the high-low method. Fixed costs $Type your answer hereI need help figuring out the operating expenses Using the format y = mx + b, develop a cost formula for total expenses. (Round unit cost to 2 decimal places, e.g. 52.75 and all other answers to 0 decimal places, e.g. 5,275.) Operating expenses = $_________ X + $____________The Perize Corporation used regression analysis to predict the annual cost of indirect materials. The results were as follows: Indirect Materials Cost Explained by Units Produced Constant $15,685 Standard error of Y estimate $3,500 r2 0.7832 Number of observations 20 X coefficient(s) 10.25 Standard error of coefficient(s) 2.1876 What is the cost function? Select one: a. Y = $19,185 + $4.48X b. Y = $15,685 + $10.25X c. Y = $12,285 + $10.25X d. Y = $3,500 + $5.15X
- Assume that the linear cost and revenue models apply. An item costs $13 to make. If fixed costs are $1600 and profits are $5700 when 100 items are made and sold, find the revenue equation. (Let x be the number of items.)R(x) =Using the data in E4-2 and spreadsheet software, determine: The variable cost per unit, the total fixed cost, and R2. The plotted data points using the graphing function. Compare the results to your solutions in E4-2 and E4-3 and explain the reasons for the results.To determine the effect of different levels of production on the company’s income, move to cell B7 (Actual production). Change the number in B7 to the different production levels given in the table below. The first level, 100,000, is the current level. What happens to the operating income on both statements as production levels change? Enter the operating incomes in the following table. Does the level of production affect income under either costing method? Explain your findings.
- Scattergraph method Using the data in P4-2 and a piece of graph paper: 1. Plot the data points on the graph and draw a line by visual inspection, indicating the trend shown by the data points. 2. Determine the variable cost per unit and the total fixed cost from the information on the graph. 3. Determine the variable cost to be charged to the product for the year. 4. Determine the fixed cost to be charged to factory overhead for the year. 5. Do these answers agree with the answers to P4-2? Why or why not?The cost behavior patterns below are lettered A through H. The vertical axes of the graphs represent total dollars of expense, and the horizontal axes represent production in units, machine hours, or direct labor hours. In each case, the zero point is at the intersection of the two axes. Each graph may be used no more than once. Required: Select the graph that matches the lettered cost described here. a. Depreciation of equipmentthe amount of depreciation charged is computed based on the number of machine hours that the equipment was operated. b. Electricity billflat fixed charge, plus a variable cost after a certain number of kilowatt hours are used. c. City water billcomputed as follows: d. Depreciation of equipmentthe amount is computed by the straight-line method. e. Rent on a factory building donated by the citythe agreement calls for a fixed fee payment, unless 200,000 labor hours are worked, in which case no rent need be paid. f. Salaries of repair workersone repair worker is needed for every 1,000 machine hours or less (i.e., 0 to 1,000 hours requires one repair worker, 1,001 to 2,000 hours requires two repair workers, etc.).Compute the profit or loss on the job in (a) dollars and (b) as a percentage of the bid price. Express labor plus overhead as a percentage of total costs. (Round to one decimal place.)