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  1. Sprague–Grundy theory in bounded arithmetic.Satoru Kuroda - 2021 - Archive for Mathematical Logic 61 (1):233-262.
    We will give a two-sort system which axiomatizes winning strategies for the combinatorial game Node Kayles. It is shown that our system captures alternating polynomial time reasonings in the sense that the provably total functions of the theory corresponds to those computable in APTIME. We will also show that our system is equivalently axiomatized by Sprague–Grundy theorem which states that any Node Kayles position is provably equivalent to some NIM heap.
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  • Partial-order Boolean games: informational independence in a logic-based model of strategic interaction.Julian Bradfield, Julian Gutierrez & Michael Wooldridge - 2016 - Synthese 193 (3):781-811.
    As they are conventionally formulated, Boolean games assume that players make their choices in ignorance of the choices being made by other players – they are games of simultaneous moves. For many settings, this is clearly unrealistic. In this paper, we show how Boolean games can be enriched by dependency graphs which explicitly represent the informational dependencies between variables in a game. More precisely, dependency graphs play two roles. First, when we say that variable x depends on variable y, then (...)
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