Consider a dynamic game of complete and perfect information. Suppose there are now simultaneous moves in each stage. How does this change the description of the game?
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- Look at the attached table. A. What are the Nash equilibrium to this game (if there are any)? B. Are any of the Nash equilibrium efficient? If yes, which one(s)? If any are inefficient, explain why.1. Consider the following N-player game. Each agent has a choice of strategy A or B. The state variable is x, the proportion of agents choosing strategy A. For every agent, the utility of choosing strategy A is U(A) = 10 +2x and the utility of choosing strategy B is U(B) = 10+3x. What is the Nash equilibrium to this game? Explain.a. How many proper subgames does this dynamic game have? Explain briefly. b. Is it a game of perfect or imperfect information? Explain briefly. c. What is the subgame-perfect equilibrium of this game? Show that it is unique.
- 1. With nash equilibrium, do you always choose the optimal strategy? 2. Can a game have more than one nash equilibrium?5. The following problem was first considered by John von Neumann and is a fundamentalresult game theory.A and B play the following game:A writes down either number 1 or number 2, and B must guess which one.If the number that A has written down is i and B has guessed correctly, B receives i units from A.If B makes a wrong guess, B pays 4/5 of a unit to A.First we consider the expected gain of player B.Suppose B guesses 1 with probability p and 2 with probability 1 −p.Let X1 denote B’s gain (or loss) in a game where A has written down 1.Let X2 denote B’s gain (or loss) in a game where A has written down 2.(a) Find the pmf of X1 and X2(b) Find B’s expected gain for these two cases, E[X1] and E[X2].(c) What value of p maximizes the minimum possible value of B’s expected gain?Now consider the expected loss of player ASuppose that A writes down 1 with probability q and 2 with probability 1 −q.Let Y1 be A’s loss (or gain) if B chooses number 1.Let Y2 be A’s loss (or gain) if B…Hi this is from a textbook. Thank you. Consider the following game in which Sally can play T or B and John chooses between L or R. Each player makes their choice simultaneously. If Sally chooses T and John chooses L, Sally gets a payoff of 5 and John has a payoff of 4. If Sally plays T and John R, Sally’s payoff is 8 and John gets 3. If Sally Chooses B and John L, the payoffs are 3 to Sally and 2 to John. Finally, if Sally chooses B and John R, the payoffs are 7 to Sally and 0 to John. Which statement is true? a) The Nash equilibrium is (B,R); this is a prisoners’ dilemma b) The Nash equilibrium is (T,R); this is a prisoners’ dilemma c) The Nash equilibrium is (T,R); this is not dominant strategy equilibrium d) The Nash equilibrium is (T,L); this is a dominant strategy equilibrium e) None of the above
- Game theory Consider a simultaneous move game with two players. Player 1 has three possible actions (A, B, or C) and Player 2 has two possible actions (D or E.) In the payoff matrix below, each cell contains the payoff for Player 1 followed by the payoff for Player 2. Player 2 7. Player 1 ہے A B C D -3, -3 0, -11 -4, 3 -11, E 0 -7, -7 -12, 0 (a) Identify any dominated strategies in this game. If there are none, state this clearly. (b) Identify any pure strategy Nash Equilibria in this game. If there are none, state this clearly.5. Consider the game below. a. Is this game a version of the Prisoner's Dilemma? Why or why not? b. Consider the infinitely repeated (supergame) version of this game. i. Under what conditions will the trigger strategy = {start with X, punish any strategy other than X with Z for all periods thereafter} be a Nash equilibrium of the supergame? ii. Under what conditions will the trigger strategy = {start with Y, punish any strategy other than Y with Z for all periods thereafter} be a Nash equilibrium of the supergame? iii. Explain the difference to your answers to (i) and (ii). X Y X 6, 6 -1, 7 -2, 12 Y 7, -1 4, 4 -1, 16 12, -2 16, -1 0,0Costco Spend $1B on advertising Spend $1.5B on advertising Spend $1B on advertising $3.5B; $2.7B $4.2; $2.2B Target Spend $1.5B on advertising $3.2B; $3.4B $4B; $3B
- Question > Consider the following matrix game where Player 1 moves first then Player 2 observes player 1's move and responds. Draw the game tree for the sequential move game and then determine all the Nash equilibria. Player 1 Strategy A Strategy B Strategy C Strategy D -3, -2 10, 12 9, 20 Player 2 Please show each step on how to get the answer. Thank you! Strategy E 13,7 17, 17 12, 21 Strategy F 20,8 22, 16 19, 1929. What is another name for a simultaneous-move game of incomplete information? a. Dynamic Game of Complete Information b. Static Game of Complete Information c. Dynamic Bayesian Game d. Static Bayesian Game9. Little Kona is a small coffee company that is consider- ing entering a market dominated by Big Brew. Each company's profit depends on whether Little Kona enters and whether Big Brew sets a high price or a low price: Little Kona Enter Don't Enter High Price Kona makes $2 million Kona makes zero Big Brew Brew makes $3 million Brew makes $7 million Kona loses $1 million Low Price Kona makes zero Brew makes $1 million Brew makes $2 million