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Hiʻiaka's full name, Hiʻiaka-i-ka-poli-o-Pele, also refers to the story as it translates as "Hiʻiaka in the bosom of Pele." Her family line is called Hiʻiaka, and they take on the task of bearing the clouds, providing rain, thunder, and lightning, variously produced by storms and by Pele's volcanoes. [ 3 ]
An example of gameplay in Pelé!. Pelé! is a simulation of association football in which the player can control one of 40 national teams. [1] Gameplay takes place from an isometric perspective, [2] and during a match, the player controls the selected player's movement with the D-pad, while the button commands vary depending on whether the player is on offense, defense, or if the ball is in ...
John Harsanyi – equilibrium theory (Nobel Memorial Prize in Economic Sciences in 1994) Monika Henzinger – algorithmic game theory and information retrieval; John Hicks – general equilibrium theory (including Kaldor–Hicks efficiency) Naira Hovakimyan – differential games and adaptive control; Peter L. Hurd – evolution of aggressive ...
Game theory has come to play an increasingly important role in logic and in computer science. Several logical theories have a basis in game semantics. In addition, computer scientists have used games to model interactive computations. Also, game theory provides a theoretical basis to the field of multi-agent systems. [124]
A higher-order simultaneous game [4] is a generalization of a Simultaneous game in which players are defined by selection functions rather than by utility functions. Formally, a higher-order simultaneous game for n players contains the following elements: A set R of outcomes. For each player i, a set X i of choices (possible actions).
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Let be the number of players, the set of action profiles over the action sets of each player and : be the payoff function for player .. Given a game = (, = …,:), we say that is a potential game with an exact (weighted, ordinal, generalized ordinal, best response) potential function if : is an exact (weighted, ordinal, generalized ordinal, best response, respectively) potential function for .
In Hawaiian mythology, Kāne-milo-hai is the brother of Kāmohoaliʻi, Pele, Kapo, Nāmaka and Hiʻiaka (among others) by Haumea. He is a figure most prominently in the story of Pele 's journey along the island chain to Hawaiʻi , and may be seen as a terrestrial counterpart to his brother, the shark-god Kāmohoaliʻi .