Consider a two player game with Fred and Barney, who tal turns removing matchsticks from a pile. They start with 33 matchsticks, and Fred goes first. On each tum, each player may remove either one, two, three, four, or five matchsticks. The player to remove the last matchstick wins the game. What are the optimal strategies for each player? Who will win? b. Suppose now that they can remove up to six matchsticks, how will the optimal strategies change for- each player? a.
Consider a two player game with Fred and Barney, who tal turns removing matchsticks from a pile. They start with 33 matchsticks, and Fred goes first. On each tum, each player may remove either one, two, three, four, or five matchsticks. The player to remove the last matchstick wins the game. What are the optimal strategies for each player? Who will win? b. Suppose now that they can remove up to six matchsticks, how will the optimal strategies change for- each player? a.
Chapter1: Making Economics Decisions
Section: Chapter Questions
Problem 1QTC
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Transcribed Image Text:4. Consider a two player game with Fred and Barney, who tal turns removing matchsticks from a pile. They
start with 33 matchsticks, and Fred goes first. On each turn, ecach player may remove either one, two, three,
four, or five matchsticks. The player to remove the last matchstick wins the game.
What are the optimal strategies for each player? Who will win?
b. Suppose now that they can remove up to six matchsticks, how will the optimal strategies change for-
each player?
a.
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