QUESTION 3 Suppose that the MD=5E and with its current technology, the firm's MS is given by MS₂ = 200-5E. 8. Determine the socially optimal level of emissions E.
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- Consider a firm that emits pollution into the air. Suppose that the marginal damage costs associated with the emissions are given by MDC -15+ 4 c, where e is the quantity of the emissions. The firm's marginal costs of abatement are given by (a) (b) 390 (c) MAC 1200 - 20 c. Determine the quantity of emissions that the firm would discharge in the absence of government policy. Determine the socially efficient level of emissions. Calculate the total costs to society for both a and b and draw a diagram illustrating these costs.Consider the following graph that shows the marginal abatement cost (MAC) curve for a coal power plan for reducing local air pollution and the marginal damage (MD) curve for those living around the coal power plant. MD (E) MAC (E b. Emissions E-0 E EL E-Max AMax Or Abatement E A-0 What are the total abatement costs at E' (enter your answer with the letters and "+" signs as "a+b+c+d+e+f", without the quotation marks. What are the total abatement costs at E-0 (enter your answer with the letters and "+" signs as as "a+b+c+d+c+f", without the quotation marks. If the property rights were with the coal power plant how much Emissions would we see? (enter one of the following, "E-0", "E", "E1", "E-Max") If the property rights were with the people how much Emissions would we see? (enter one of the following. "E-0", "E", "E1 "E-Max") What is the socially optimal level of emissions (choose from one of the following and enter as written without the quotation marks, "E-0". "E"E1 "E-Max").cap-and-trade and windfall profitsA city called Seoul is suffering from high concentrations of mercury in the air, caused by burningcoal in power plants. There are two of these plants close to the city. The city’s mayor wants touse cap-and-trade to reduce emissions to a reportedly “safe” level of 60 tons. The two firms havethe following marginal benefits of emissions: MB1 = 100 – 2e1, MB2 = 25 – 0.5e2.a. How much mercury will each firm emit? What allowance price will prevail in themarket?Firm 2 hires a smart lobbyist who convinces the government that its profits are relatively low andthat it therefore deserves a generous allowance allocation. The government agrees and allocatesa1 = 20 allowances to firm 1 (for free) and a2 = 40 allowances to firm 2 (for free).b. What are the firms’ profits? Do any of the firms earn windfall profits? [Hint: compareprofits with and without regulation.] Windfall profits have been sharply criticized by consumer advocacy groups and politicians.c. What can…
- No hand written solution Afirm has an industrial plant that emits pollutants into a town’s lake. The plant’s marginal abatement function is MAC= 200 – 0.5E and damages caused by its emissions are given by MD = 2E where emissions are in kg. per day. What is the socially efficient level of emissions from this plant? Illustrate this in a graph. As an incentive to reduce emissions to the socially efficient level, government offers to pay the firm for each kg. of emissions it abates per day from this plant. What subsidy per kg. should the government offer? If the plant abates to the socially efficient level of emissions, what total subsidy payment would the firm receive? Identify the area in your graph. How much better or worse off would the firm be compared to if it did no abating? Identify the area in your graph. What would be the net benefit to society if we pay the firm to reduce the plant’s emissions to the socially efficient level? Identify this area in your graph.Suppose that the MD = 5E and with its current techonlogy, the firm's MS is given by MS = 200 - 5E.Determine the emissions tax that would achieve the socially optimal level of emissions.Why is the presentaion of corparate results increasingly accompanied by the presentation of a socially responsible bussines report. Provide 3 reasons
- Find Pure Strategy Nash equilibirum then use following values for emissions.Complete the second column of the following table by indicating who buys and sells permits in this case. Complete the fourth column of the table with the number of permits each firm ends up with after trading with the others. Next, subtract the number of permits from the initial pollution level to determine how many units of pollution reduction each firm has to complete, and enter these values into the fifth column of the table. Next, determine the total cost of reducing the pollution levels you determined in the previous column, and enter that into the final column of the table. Finally, add up the total pollution reduction costs for each firm and enter the total amount in the final cell of the total row in the following table. Firm A B C Total Buys or Sells Initial Pollution Level 30 45 60 If permits could not be traded, firm A would have to remove units of pollution at a total cost of $ The overall cost of reducing pollution in this case is $ " Permits after Trade Remaining…Explanation it correctly Q)Is nutella positive externalities or negative?
- Hectares of Park 1 2 3 Figure 4.7 Willingness to pay for a Public Park 5 Consumer Group 1 Refer to Figure 4.7. As MWTP increases; increases declines; declines declines; increases the table does yield enough information MWTP $6 $4 $2 $0 $0 total willingness to pay. Consumer Group 2 MWTP $6 $5 $4 $3 $21. Solve for the graph and aggregate demand of the city’s 30 residents as functions of the number of trees. Label intercepts slopes and intersection of two sections. 2. Assume that the city can obtain each tree at a constant marginal cost of 200. Solve the socially efficient numbers of trees for the city to purchase.PRICE (Dollars per ton) 70 63 56 49 42 35 28 + 21 T 14 7 0 Demand +++ 0 40 80 120 160 200 240 280 320 360 400 QUANTITY (Millions of tons) Graph Input Tool Daily Demand for Pollution Rights Price (Dollars per ton) Quantity Demanded (Millions of tons) 7 360 Suppose the government has determined that the socially optimal quantity of particulate matter is 120 million tons per day. One way governments can charge firms for pollution rights is by imposing a per-unit tax on emissions. A tax (or price in this case) of $ of particulate matter emitted will achieve the desired level of pollution. ? per ton Now suppose the U.S. government does not know the demand curve for pollution and, therefore, cannot determine the optimal tax to achieve the desired level of pollution. Instead, it auctions off tradable pollution permits. Each permit entitles its owner to emit one ton of particulate matter per day. To achieve the socially optimal quantity of pollution, the government auctions off 120 million…