Find the optimum strategies for player A, the row player, and player B, the column player, in the game below. Find the value of the game. (Be sure to look for a saddle point first.) 4 3 24 a. Set up the expected value for player A given player B chooses the first column. Let p, (use the subscript option on the toolbar to enter the 1 as a subscript) be the probability with which player A should choose the first row. P(X) b. Solve for the expected value in part a. Simplity your answer.

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Find the optimum strategies for player A, the row player, and player B, the column player, in the game below. Find the value of the game. (Be sure to
look for a saddle point first.)
4 3
2 4
a. Set up the expected value for player A given player B chooses the first column. Let p, (use the subscript option on the toolbar to enter the 1 as a
subscript) be the probability with which player A should choose the first row.
P(x)
b. Solve for the expected value in part a. Simplify your answer.
Transcribed Image Text:Find the optimum strategies for player A, the row player, and player B, the column player, in the game below. Find the value of the game. (Be sure to look for a saddle point first.) 4 3 2 4 a. Set up the expected value for player A given player B chooses the first column. Let p, (use the subscript option on the toolbar to enter the 1 as a subscript) be the probability with which player A should choose the first row. P(x) b. Solve for the expected value in part a. Simplify your answer.
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