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  • Q1:1. In the graph below are the marginal abatement costs of two firms, A and B, operating under a competitive transferable discharge permit policy. Suppose that the equilibrium price of permits is p*. $ p* Marginal abatement costs for firm A Marginal abatement costs for firm B Emissions Permits a. In the graph indicate each firm's choice of emissions and permits. Label these choices as e, and eg for emissions, and q and q3 for permits. [2 points] b. Use your answer to (a) to explain why a competitive transferable discharge system will be a cost-effective policy tool. [2 points]See Answer
  • Q2:2. Suppose that the firms in some industry emit an air pollutant that harms people who are exposed to the pollutant. This situation is illustrated in the graph below. Now suppose that a new cost-saving abatement technology is widely adopted by the industry. Questions (2.1) through (2.4) ask you to examine this change. Aggregate MAC x Aggregate MD ET EU Emissions a. Which function in the graph will change with the new information, the MAC or MD function? [1 point] b. Which way will this function shift, up or down? [1 point] c. As a result, does the efficient level of emissions increase, decrease or stay the same? [1 point]/nd. Does the efficient emissions tax increase, decrease or stay the same? [1 point]See Answer
  • Q3:3. In the graph below, a regulator imposes an emissions tax or an emissions market on the industry. The regulator knows the true marginal damage function (MD), but only has an estimate of the industry's aggregate marginal abatement cost function (Estimated MAC). Given its estimate of the industry's MAC, the regulator either (1) sets an emissions tax tº expecting the industry to respond with Eº emissions, or (ii) puts Q° emissions permits in circulation expecting the permit price to be pº. However, the true aggregate marginal abatement cost function (True MAC) is higher than the regulator's estimated MAC. Use this graph to explain why a. emissions are inefficiently high under the regulator's emissions tax tº, and [2 points] b. emissions are inefficiently low under the regulator's emissions market with Q° emissions permits. [2 points] p² p¹ pº = tº Estimated MAC True MAC EºQ° E¹ E² = MD EmissionsSee Answer
  • Q4:4. What is the "relative slopes" rule for determining whether an emission tax or a competitive emissions market is more efficient when regulators are uncertain about aggregate marginal abatement costs? [4 points]See Answer
  • Q5: 4. Convert 4000 grams into pounds; Convert 237.4 feet into meters; Convert 0.004 gallons into ml; Convert 5 milligram (mg) into microgram (ug).See Answer
  • Q6: 5. A cube occupies 0.3358 ft³. What is its volume in liter? See Answer
  • Q7: Environmental engineers and scientists have reported that global warming may be a real problem. List and discuss the major causes and the air pollutants that are associated with this phenomenon.See Answer
  • Q8: 3. Hydrology is another area in which environmental engineers are highly involved. During storm events, rain that falls to the surface either percolates into the soil to replenish groundwater supplies or becomes surface runoff. Storm water runoff from impervious areas in cities or from agricultural areas contributes large volumes of water of poor quality due to pollutant entrapment and dissolution. List and discuss some of the contaminants that might be found in urban storm water runoff versus agricultural runoff.See Answer
  • Q9: 2. Many environmentalists promote the idea of recycling solid wastes. Environmental engineers often design collection, separation, and recycling systems. Discuss the advantages and disadvantages of recycling metals, glass, and paper discarded in solid wastes. See Answer
  • Q10: The density of Trichloroethene (TCE), a harmful environmental pollutant, is 1.46g/cm-Find the mass of 2L of TCE? See Answer

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