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Total variable cost is 0 at zero level of production
True/Falss
# Total cost incurred by the firm is the sum of both fixed and variable costs.
Total.fixed cost is 0 at zero level of production.
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- Please all parts Will definitely upvoteOutput TFC TVC TC MC АТС A 25 25 ---- -- ---- -- B 1 25 25 50 25 50 C 2 25 40 65 32.5 3 25 70 95 E 4 25 110 33.75 F 5 25 160 50 What is the total cost at point E? 135 125 185 Cannot be determinedThe variable cost for the small business is shown below. What is the marginal cost and average cost at a volume of 14 units? Cost $8000 $6000 $4000 $2000 $200/unit Volume marginal cost: $200/unit, average cost: $476/unit O marginal cost: $200/unit, average cost: $300/unit O None of them marginal cost: $300/unit, average cost: $800/unit $300/unit 10 Total cost Variable cost Fixed cost 15
- Average Total Cost (Dollars per bike) QQ = 100 QQ = 200 QQ = 300 QQ = 400 QQ = 500 QQ = 600 1 140 60 40 80 160 320 2 230 110 40 40 110 230 3 320 160 80 40 60 140The cost, in millions of dollars, of building a three-story high school in NewYork State was estimated to be: 2C x x x x 1.7 0.14 0.0001 20 400where x is the number of thousands of square feet. Suppose that you arecontemplating building a for-profit three-story high school and estimate thatyour total revenue will be $0.2 million dollars per thousand square feet.(a) What is minimum area for a three-story high school in New YorkState, that this model covers? (b) What is the variable cost of building a three-story high school in NewYork State? (c) What is the fixed cost of building a three-story high school in NewYork State? (d) Determine the profit function,P x( ), for building a three-story highschool in New York State? . (e) Determine,P(250) , for building a three-story high school in New YorkState, and interpret the result. (f) How many thousands of square feet should a three-story high schoolbuilding in New York State be in order to break even?Cost, revenue, and profit are in dollars and x is the number of units. Suppose that the marginal revenue for a product is MR = 1800 and the marginal cost is MC = 90Vx + 4, with a fixed cost of $600. (a) Find the profit or loss from the production and sale of 5 units. There is a -Select-- | of $ (b) How many units will result in a maximum profit? units
- When the production starts, the value of Total fixed cost is 0 True/FalseA cost function is given. C(q) = 3600 + 5q-0.02q² + 0.00039³ (a) Find the average cost and marginal cost functions. +5 -0.02q +0.0003q average cost 3600 9 marginal cost 5 -0.04q+0.0009q (b) Use graphs of the functions in part (a) to estimate the production level that minimizes the average cost. (Round your answer to the nearest integer.) 194 ✓ units (c) Use calculus to find the minimum average cost. (Round your answer to two decimal places.) $ 32.41 X (d) Find the minimum value of the marginal cost. (Round your answer to two decimal places.) $ 4.56Bags/Participants Fixed Cost Variable Cost Total Cost 0 $1,700 $ - $1,700 100 $1,700 $500 $2,200 200 $1,700 $1,200 $2,900 300 $1,700 $2,700 $4,400 400 $1,700 $5,200 $6,900 500 $1,700 $9,000 $10,700 600 $1,700 $15,000 $16,700 700 $1,700 $23,800 $25,500 800 $1,700 $36,800 $38,500 900 $1,700 $55,800 $57,500 1,000 $1,700 $83,000 $84,700 Given the above information on cost, if you charge $15 per entry, what is the breakeven quantity of bags that you should order? At what quantity of bags will profits be maximized? A Use the profit maximizing rule, MR ≥ MC, buy 300 bags. B Use the profit maximizing rule, MR ≥ MC, buy 200 bags. C Use Qb = F/(MR-AVC) where Qb is the breakeven quantity to be determined, the optimal quantity of bags is 300. D Use Qb = F/(MR-AVC) where Qb is the breakeven quantity to be determined, the optimal quantity of bags is 200.