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Consider the following pure exchange, Edgeworth box economy. There are 2 consumers and 2 goods. Consumer 1 has an endowment of 3 units of good Y, while consumer 2 has an endowment of 3 units of good X. For both consumers the utility function is given by: U (x, v) = x^2y, where x and y denote the respective quantities of goods X and Y. Find the Walrasian
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- John and Belle consume only two goods, x and y. They have strictly convex preferences and no kinks in their indifference curves. At the initial endowment point, the ratio of John's marginal utility of x to his marginal utility of y is J and the ratio of Belle's marginal utility of x to her marginal utility of y is B, where J B. b. C < J. c. C = J. d. C = B. e. JCarol and Bob both consume the same goods in an economy of pure exchange. Carol is initially endowed with 9 units of good 1 and 6 units of good 2. Bob is initially endowed with 18 units of good 1 and 3 units of good 2. They both have the utility function U(x₁, x₂) = = $1), what will the equilibrium price of x1/³x/3. If we set good 1 as the numeraire (so that p₁ good 2 be?Consider an general equilibrium endowment economy with two goods and two individuals. The two individuals A and B have the following endowments {(w^, w), (wP, w? )} = {(4,3), (2, 1)} The utility functions for A and B are: U^(*f, a) = 0.5 log(x†)+log(x;) U® x? ,a?) = log(x)+0.5 log(xž) ** Part a (10 State the market clearing conditions. ** Part b ( Draw the Edgeworth box, including: • the x-y coordinates of the 4 corners. • the x-y coordinates of endowment point. • a sketch of some indifference curves for both individuals. ** Part c (10 Given the relative price p > 0, find the demand of good 1 for both individuals.Competitive general equilibrium Amy(A) and Brian (B) have the following utility function U^A= 2XaYa, U^B= √XbYb Were there endowment of consumption good X and Y are as follows: Xa= 60 Ya = 80 Xd=30 Yb=180 At the endowment point what is the marginal rate of substitution of X for Y for Amy? For Brian? Find the competitive equilibrium price of the goods at which the consumers trade with each other In the competitive equilibrium for each unit of good Y how many units of good X can be exchanged. Find both brian and amy preferred consumption bundles in the equilibrium Is the allocation of resources achieved in part d pareto-optimal? Explain. Draw the edgeworth box that shows all possible allocations and plot the endowment points. Plot the indifferent curves of the two consumers and the contract curve in the edgeworth box as well.Problem 1: Exchange economy Consider an exchange economy with two consumers, A and B, and two goods, X and Y. Consumer A has an initial endowment TA = i >0 of good X, an initial endowment yA = 0 of good Y, and preferences over consumption bundles that can be represented by the Cobb-Douglas utility function uA(TA: YA) = ", where ra is the quantity of good X, yYA is the quantity of good Y, and a € (0, 1) is a preference parameter. Consumer B has an initial endowment ig = 0 of good X, an initial endow- ment js = j > 0 of good Y, and preferences over consumption bundles that can be represented by the Cobb-Douglas utility function up(rB, YB): B1-3 where rB is the quantity of good X, YB is the quantity of good Y, and BE (0, 1) is a preference parameter. (a) Find the set of Pareto optimal allocations in this economy. In appro- priate diagrams, illustrate the set of Pareto optimal allocations when (i) 3 = a, (ii) 3 > a, and (iii) 3 a.Consider a two-people, two-goods exchange economy, where Person A and Person B have the following utility functions. In which case, the Pareto optimal allocation can be on the boundary of the Edgeworth box? Note: Do not consider the origins as the boundary points. (Boundary points are the edges of the Edgeworth box except for the origins.) 0 UA = min (XA1, XA2) and Ug = Xg1.Xg2 (i) UA = log(xA1) + log(Xa2) and ug = 3Xgt + X82 (ii) uA = (XA1) 0XA) and ug = 3log(Xgy) + X82 %3! (iv) uA = (XA1)2 + XA2 and ug = log(xa1) + Xe2In an exchange economy, two agents have utility functions u^(x, y) = x2 y and u"(x, y) = x · y, respectively, from x units of Good 1 and y units of Good 2. Assume the initial endowments are w A = (@A.1,2) and oB = (32,40), respectively. Suppose that an equilibrium is found in which the prices of the good are equal (that is, Pi = P2, i.e., the relative price is 1). If WA.1 = 60, then wA.2 %3DCarol and Bob both consume the same goods in an economy of pure exchange. Carol is initially endowed with 9 units of good 1 and 6 units of good 2. Bob is initially endowed with 18 units of good 1 and 3 units of good 2. They both have the utility function U(x₁, x₂) = 1/3 2/3 x1³x2³. If we set good 1 as the numeraire (so that p. = $1), what will the equilibrium price of good 2 be?For the next three questions, assume that there are two consumers in an economy that have utility functions UA(2,3)=2¹/42/4 U" (x,y)=1¹/2¹/2 The two consumers begin with equal endowments of the two goods === e = 50 29. If the price of z and y were both set to 1, there would be (a) An excess demand for r so the equilibrium price ratio must be less than 1 (b) An excess supply of r so the equilibrium price ratio must be less than 1 (c) An excess demand for y so the equilibrium price ratio must be greater than 1 (d) An excess supply of y so the equilibrium price ratio must be greater than 1 (e) No excess supply or demand for either good, so the equilibrium price ratio is 1 30. What is the equilibrium price ratio? (a) 2/3 (b) 5/2 (c) 3/5 (d) 1 (e) None of these 31. Consumer A increases his endowment of both goods to 100 (e = e = 100). This will cause (a) No change in the equilibrium price ratio (b) The equilibrium price ratio to increase, causing consumer B to decrease their consumption of…consider an exchange economy with 2 goods (1 and 2) and 2 consumer (A and B). a bundle with x units of good 1 and y units of good 2 is written as (x,y). consumer A has an endowment (4,0) and consumer B has an endowment (12,12). the 2 goods are perfect substitutes for each consumer. consider an allocation in which A receives (1,9) and B receives (15,3) if we can redistribute endowments suitably, it is possible to obtain this allocation as the outcome of a competitive equilibrium. is this true or false? explain carefullySuppose there are two consumers, A and B. There are two goods, X and Y. There is a TOTAL of 8 units of X and a TOTAL of 8 units of Y. The consumers' utility functions are given by: UA(X,Y) = 2X + Y UB(X,Y) = X*Y2 Which of the following allocations is Pareto Efficient? None of the other answers are Pareto Efficient. Consumer A gets 3 units of X and 8 units of Y, and Consumer B gets 5 units of X and O units of Y. Consumer A gets 4 units of X and 4 units of Y, and Consumer B gets 4 units of X and 4 units of Y. Consumer A gets 1 units of X and 4 units of Y, and Consumer B gets 7 units of X and 4 units of Y. Consumer A gets 8 units of X and 8 units of Y, and Consumer B gets 0 units of X and O units of Y.Consider an exchange economy with two consumers (A and B) and two goods (x1 and x2). Consumer A has an endowment of 5 units of x1 and none of x2, whereas Consumer B has an endowment of 3 units of x1 and 15 units of x2. Consumer A's utility function is given by uA=xA1xA2, and Consumer B's utility function is given by uB=min{xB1,xB2}. Both goods are traded in competitive markets. Find the competitive equilibrium price for x2, assuming p1=1.SEE MORE QUESTIONS