The market for smart phone applications is characterized by the following demand and supply curves. QD = D(P) = 15 - 3P Qs = S(P) = 5 + 10P (a) Calculate the equilibrium price and quantity for this market. (b) The government is considering introducing a per unit subsidy of t on each electric car that is purchased. Suppose that the statutory incidence of this subsidy will be on

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2 Tax Incidence and Excess Burden
The market for smart phone applications is characterized by the following demand and
supply curves.
QD = D(P) = 15 - 3P
Qs = S(P) = 5 + 10P
(a) Calculate the equilibrium price and quantity for this market.
(b) The government is considering introducing a per unit subsidy of t on each electric
car that is purchased. Suppose that the statutory incidence of this subsidy will be on
Transcribed Image Text:2 Tax Incidence and Excess Burden The market for smart phone applications is characterized by the following demand and supply curves. QD = D(P) = 15 - 3P Qs = S(P) = 5 + 10P (a) Calculate the equilibrium price and quantity for this market. (b) The government is considering introducing a per unit subsidy of t on each electric car that is purchased. Suppose that the statutory incidence of this subsidy will be on
buyers. Using the equilibrium conditions, D(Pn - t) = S(Pn) = Q* (i.e. that demand
equals-supply in equilibrium), derive an equation in terms of es and ed that describes
what fraction of the subsidy is borne by buyers/consumers.
Transcribed Image Text:buyers. Using the equilibrium conditions, D(Pn - t) = S(Pn) = Q* (i.e. that demand equals-supply in equilibrium), derive an equation in terms of es and ed that describes what fraction of the subsidy is borne by buyers/consumers.
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