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    After eliminating Player I's bottom row, Player II's payo... — Carmelics
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    Supports→Mutual confession is the solution to the Prisoner's Dilemma game, the outcome on which play must converge when players are economically rational.

    After eliminating Player I's bottom row, Player II's payoff from confessing is higher than from refusing in each remaining cell.

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    Because refusing to confess is strictly dominated for Player I, Player I will ne...Because refusing to confess is strictly dominated for Player II given the reduce...Both players are economically rational, meaning each will always choose strategi...

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    Player I's payoffs in every cell of the top row (confess) are higher t...91%Because refusing to confess is strictly dominated for Player I, Player...83%Because refusing to confess is strictly dominated for Player II given ...80%Mutual confession is the solution to the Prisoner's Dilemma game, the ...75%

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    The players, and analysts, can predict this outcome using a mechanical procedure, known as iterated elimination of strictly dominated strategies. Player 1 can see by examining the matrix that his payoffs in each cell of the top row are higher than his payoffs in each corresponding cell of the bottom row. Therefore, it can never be utility-maximizing for him to play his bottom-row strategy, viz., refusing to confess, regardless of what Player II does. Since Player I’s bottom-row strategy will nev

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