2. Study Questions and Problems #2 Suppose a car sells for $21,000 in a market with no pollution restrictions. When there are pollution restrictions, the car will sell for $21,000.
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- An emissions tax on a quantity of emissions from a film is not a command-and-control approach to reducing pollution. Why?In the Land of Purity, there is only one form of pollution, called gunk. Table 12.14 shows possible combinations of economic output and reduction of gunk, depending on what kinds of environmental regulations you choose. Sketch a graph of a production possibility frontier with environmental quality on the horizontal axis, measured by the percentage reduction of gunk, and with the quantity of economic output on the vertical axis. Which choices display productive efficiency? How can you tell? Which choices show allocative efficiency? How can you tell? In the choice between K and L, can you say which one is better and why? In the choice between K. and N, can you say which one is better, and why? If you had to guess, which choice would you think is move likely to represent a command-and-control environmental policy and which choice is more likely to represent a market-oriented environmental policy, choice L or M? Why?Is zero pollution an optimal goal? Way or why not?
- Suppose a city releases 16 million gallons of raw sewage into a nearby lake. Table 12.8 shows the total costs of cleaning up the sewage to different levels, together with the total benefits of doing so. (Benefits include environmental, recreational, health, and industrial benefits.) Using the information in Table 12.8, calculate the marginal costs and marginal benefits of reducing sewage emissions for this city. See Production, Costs and Industry Structure if you need a refresher on how to calculate marginal costs. What is the optimal level of sewage for this city? Why not just pass a law that films can emit zero sewage? After all, the total benefits of zero emissions exceed the total costs.A city currently emits 15 million gallons (MG) of raw sewage into a lake that is beside the city. Table 12.13 shows the total costs (TC) in thousands of dollars of cleaning up the sewage to different levels, together with the total benefits (TB) of doing so. Benefits include environmental, recreational, health, and industrial benefits. Using the information in Table 12.13 calculate the marginal costs and marginal benefits of reducing sewage emissions for this City. What is the optimal level of sewage for this city? How can you tell?The rows in Table 12.7 show three market-oriented tools for reducing pollution. The columns of the table show three complaints about command-and-control regulation. Fill in the table by stating briefly how each market-oriented tool addresses each of the three concerns.
- Table 12.5 provides the supply and demand conditions for a manufacturing film. The third column represents a supply curve without accounting for the social cost of pollution. The fourth column represents the supply curve when the film is required to account for the social cost of pollution. Identify the equilibrium before the social cost of production is included and after the social cost of production is included.22. Discuss the benefits and drawbacks associated with using a corrective tax to control pollution.What should the government set their corrective tax to if they want to eliminate 7 units of pollution?
- 5. There are three industrial plants in Simontown: Plant A B C Current Pollution Level Cost of Reducing Pollution by One Pound 70 pounds 80 pounds 50 pounds $20 $25 $10 The government passes a cap-and-trade policy, giving each plant 40 tradeable permits, each permit allows for one pound of pollution emissions. e. a. Which plant(s) sells permits, and how many do they each sell? Explain. b. Which plant(s) buys permits, and how many do they each buy? Explain. C. How much pollution is eliminated by this policy? d. Based on your answers, how much will it cost Simontown to achieve this reduction in pollution? How much would it cost to achieve this reduction in pollution if the plants could not trade the permits? Explain why making the permits tradeable reduces the cost of pollution reduction.Define pollution charge and will our economy be able to control pollution? Share your thoughts in a paragraph.The table below shows the demand for pollution permits to emit hydrocarbons in a particular industrial park. Each permit allows the owner to release one tonne of pollutants into the atmosphere. Price perPollution Permit Quantity of Permits $4,500 75 4,000 150 3,500 225 3,000 300 2,500 375 2,000 450 1,500 525 a. If no fee for a pollution permit were charged, how many tonnes of pollutants would be discharged into the atmosphere, assuming a straight-line demand curve? Quantity: tonnesb. Suppose government were to set a fee of $3,500 per pollution permit. How many tonnes of pollutants would now be dumped? What is the total revenue received by government? Quantity: tonnes Total revenue: $ c. Suppose that a new technology allows for a significant reduction in hydrocarbons at a relatively low cost so that the demand for pollution permits in the industrial park drops by 150 tonnes. Assuming that government holds the permit fee at $3,500, how many tonnes of…