Consider a 10-player characteristic function where any coalition of eight players or more creates a total surplus of $5000, while all other coalitions (that is, of seven players or less) create no surplus: v(S) = 5000, if |S| ≥ 8, and v(S) = 0 for all other coalition S. What is the core in this case? Explain.
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Consider a 10-player characteristic function where any coalition of eight players or more creates a total surplus of $5000, while all other coalitions (that is, of seven players or less) create no surplus: v(S) = 5000, if |S| ≥ 8, and v(S) = 0 for all other coalition S. What is the core in this case? Explain.
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- Consider the following simplified scenario. Imagine that the Australian national rugby union (for short, Rugby AU) has exclusive rights to organize the games played by the national team. Rugby AU decides that the next match, between the Wallabies and the All Blacks (i.e., the Australian and the New Zeeland national rugby teams), will be hosted at the Marvel Stadium in Melbourne. Rugby AU has no fixed costs for organizing the game, but it must pay a marginal cost MC of $20 per seat to the owners of the Marvel Stadium. Two types of tickets will be sold for the game: concession and full fare. Based on any official document that attests to their age, children and pensioners qualify to purchase concession tickets that offer a discounted price; everyone else pays the full fare. The demand for full-fare tickets is QF(P) = 120 – 2P. The demand for concession tickets is QC(P) = 80 – 2P. Question : Use a diagram to illustrate the producer surplus PSF that Rugby AU enjoys, the consumer surplus…Suppose we have 5 people who might attend up to 2 theatre shows at the local theatre. There’s a drama and a comedy. The marginal cost of a seat on any given night is both constant and negligible (you can safely ignore it), so profit maximization and revenue maximization amount to the same thing. Below are the maximum willingness to pay values (a person will pay a price up to that value, but no greater) for a seat for each of the 5 people for the two shows. The theatre is a profit-maximizing firm. What individual ticket price (i.e., the price for anybody attending the show would be the same, but it could be different across shows) would separately maximize profit for each show?Consider the following simplified scenario. Imagine that the Australian national rugby union (for short, Rugby AU) has exclusive rights to organize the games played by the national team. Rugby AU decides that the next match, between the Wallabies and the All Blacks (i.e., the Australian and the New Zeeland national rugby teams), will be hosted at the Marvel Stadium in Melbourne. Rugby AU has no fixed costs for organizing the game, but it must pay a marginal cost MC of $20 per seat to the owners of the Marvel Stadium. Two types of tickets will be sold for the game: concession and full fare. Based on any official document that attests to their age, children and pensioners qualify to purchase concession tickets that offer a discounted price; everyone else pays the full fare. The demand for full-fare tickets is QF(P) = 120 – 2P. The demand for concession tickets is QC(P) = 80 – 2P. Tax per unit (TU): The government decides to tax Rugby AU at $10 per ticket sold. Find the new optimal price…
- Consider the following simplified scenario. Imagine that the Australian national rugby union (for short, Rugby AU) has exclusive rights to organize the games played by the national team. Rugby AU decides that the next match, between the Wallabies and the All Blacks (i.e., the Australian and the New Zeeland national rugby teams), will be hosted at the Marvel Stadium in Melbourne. Rugby AU has no fixed costs for organizing the game, but it must pay a marginal cost MC of $20 per seat to the owners of the Marvel Stadium. Two types of tickets will be sold for the game: concession and full fare. Based on any official document that attests to their age, children and pensioners qualify to purchase concession tickets that offer a discounted price; everyone else pays the full fare. The demand for full-fare tickets is QF(P) = 120 – 2P. The demand for concession tickets is QC(P) = 80 – 2P. 1. The market for full fare tickets (F)a) Calculate the inverse demand, write the profit maximizing…Consider the following simplified scenario. Imagine that the Australian national rugby union (for short, Rugby AU) has exclusive rights to organize the games played by the national team. Rugby AU decides that the next match, between the Wallabies and the All Blacks (i.e., the Australian and the New Zeeland national rugby teams), will be hosted at the Marvel Stadium in Melbourne. Rugby AU has no fixed costs for organizing the game, but it must pay a marginal cost MC of $20 per seat to the owners of the Marvel Stadium. Two types of tickets will be sold for the game: concession and full fare. Based on any official document that attests to their age, children and pensioners qualify to purchase concession tickets that offer a discounted price; everyone else pays the full fare. The demand for full-fare tickets is QF(P) = 120 – 2P. The demand for concession tickets is QC(P) = 80 – 2P. 1.Calculate the inverse demand, write the profit maximizing condition, compute the profit maximizing price…An expansion team in a professional sports league is considering locating in one of three cities, A, B, or C. The team estimates that its profit in the three cities, excluding the cost of building a stadium, will be: city A $195 million city B = $200 million city C $210 million The cost of the stadium in any city will be $100 million, but the team expects the winning city to subsidize at least some of this cost. Finally, suppose that each city expects the team to generate the following additional (spillover) economic activity: city A = $75 million city B $60 million city C= $45 million 21. It is efficient for the team to locate in (a) City A. (b) City B. (c) City C. (d) The net return is the same for all three. 22. The net social gain in the efficient city is (a) $210 (b) $270 (c) $170 (d) $155 23. The efficient city will (just) outbid the second-highest bidder if it bids at least (a) $75 (b) S70 (c) $65 (d) $55 A person is considering placing a bet of S100 on team to win a sporting…
- Suppose the Carrow Road stadium has a capacity of 50,000 seats and is used for sevengames a year. Three are Premiership games, with a demand for tickets (expressed in thousands)given by D = 150 − 3p per game, where p is the ticket price. Three of the other games are EastAnglia friendly matches with demand D = 90 − 3p per game. Finally, one is a Champion’s Leaguegame with a demand D = 240 − 3p. The costs of operating the stadium are independent of thenumber of tickets sold.(a) Determine the optimal ticket price for each game, assuming the objective is profit maximization.(b) Given that the stadium is frequently full, the idea of expanding the stadium has arisen. Apreliminary study suggests that the cost of capacity expansion would be £100 per seat per year.Would you recommend that the football club goes ahead with the project of capacity expansion?Assume that the countries of Irun and Urun are the only two producers of crude oil. Further assume that both countries have entered into an agreement to maintain certain production levels in order to maximize profits. In the world market for oil, the demand curve is downward sloping. Refer to Scenario 16-1. The fact that both countries have colluded to earn higher profit shows their desire to keep production levels above the monopoly level of output. below the Nash equilibrium level of output. equal to the Nash equilibrium level of output above the Nash equilibrium level of output.If you add more money to the economy, you might expect to see: More suppliers to meet the demand unleashed by the extra cash A move to oligopoly from the free market as big companies become bigger Fewer suppliers to meet the demand unleashed by the extra cash Drmand move to other products; the extra cash won't affect this supply-demand relationship.
- The pie chart to the right illustrates hypothetical data for the market share for the United States automobile market. The percentage of the U.S. market that U.S. auto firms control is nothing%. (Enter your response as an integer.) The image is a pie chart labeled U.S. Automobile Industry Market Share. The pie chart shows the market share of the United States, Japan, Europe, and Korea in the U.S. automobile industry. The market share of the United States is 45%. The market share of Japan is 30%. The market share of Europe is 15%. The market share of Korea is 10%. U.S. Automobile Industry Market Share U.S. 45%Japanese 30%European 15%Korean 10%The demand and supply curves for the Snoopy and Charlie Brown game is given by the following equations: Demand Curve: Qd = -P + 70 Supply Curve: Qs = 2P - 20 The equilibrium price of the Snoopy and Charlie Brown game is _____, and the equilibrium quantity of the Snoopy and Charlie Brown game is ____. A. $20.00; 35 B. $25.00; 60 C. $30.00; 40 D. $40.00; 120Suppose that two identical firms produce widgets and that they are the only firms in the market. The average and marginal cost is €60 for each firm. Price is determined by the following demand curve: P = 300 – Q where Q = Q1 + Q2. Suppose firm 1 is the leader and firm 2 is the follower. The output produced by each firm in a Stackelberg equilibrium is A. Firm 1 will produce 60 and Firm 2 will produce 120 B. Firm 1 will produce 80 and Firm 2 will produce 40 C. Firm 1 will produce 120 and Firm 2 will produce 40 D. Firm 1 will produce 120 and Firm 2 will produce 60
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