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Reconciling Recent Estimates of the Marginal Welfare Cost of Taxation
Reconciling Recent Estimates of the Marginal Welfare Cost of Taxation
Two Generalizations of a Deposit–Refund System
This paper suggests two generalizations of the deposit-refund idea. In the first, we apply the idea not just to solid waste materials, but to any waste from production or consumption including wastes that may be solid, gaseous, or liquid. Using a simple general equilibrium model, we derive the optimal combination of a tax on a purchased commodity and subsidy to a clean' activity (such as emission abatement, recycling, or disposal in a sanitary landfill). This two-part instrument' is equivalent to a Pigovian tax on the dirty' activity (such as emissions, dumping, or litter). In the second generalization, we consider the case where government must use distorting taxes on labor and capital incomes. To help meet the revenue requirement, would the optimal deposit be raised and the refund reduced? We derive the second-best revenue-raising DRS or two-part instrument to answer that question.
The General Equilibrium Effects of Inflation on Housing Consumption and Investment
Neglected Effects on the Uses Side: Even a Uniform Tax Would Change Relative Goods Prices
Household Responses to Pricing Garbage by the Bag
Cost-Effective Policies to Reduce Vehicle Emissions
This paper uses an estimated demand system that accounts for heterogeneity to calculate and compare the lost consumer surplus from a higher tax on gasoline, a tax on distance, or a subsidy for buying a newer car. We introduce a view of cost-effectiveness that compares policies instead of technologies. Each tax might induce some consumers to drive less, some to switch from two vehicles to one, and some to buy a car instead of an SUV. Our model captures these behaviors. For each rate of tax, we simulate the changes in all such choices and how the new choices affect emissions. We also calculate the equivalent variation and subtract tax revenue to get deadweight loss. Finally, we take the added deadweight loss over the additional abatement as the social marginal cost of abatement, and we plot this curve for several different tax policies.
Corporate Tax Integration in the United States: A General Equilibrium Approach
This paper presents estimates of static and dynamic general equilibrium resource allocation effects for four alternative plans for corporate and personal income tax integration in the United States. A medium-scale numerical general equilibrium model is used which integrates the U.S. tax system with consumer demand behavior by household and producer behavior by industry. Results indicate that total integration of personal and corporate taxes would yield an annual static efficiency gain of around $6 billion (1973 dollars). Partial integration plans yield less. Dynamic effects are larger, and our analysis indicates that full integration may yield gains whose present value is as large as $500 billion or about 1.0 percent of the discounted present value of the GNP stream to the U.S. economy after correction for population growth. Plans differ in their distributional impacts, although these findings depend on the nature of replacement taxes used to preserve government revenues. The size of dynamic resource allocation effects is sensitive to the choice of the replacement tax, while static gains are reasonably robust.