Results for 'Akihiro Arai'

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  1. Shisōshi no kyojintachi.Akihiro Arai (ed.) - 1979
     
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  2.  30
    Handbook of Mathematical Logic.Akihiro Kanamori - 1984 - Journal of Symbolic Logic 49 (3):971-975.
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  3.  39
    Preface.Akihiro Kanamori - 1997 - Synthese 111 (2):131-132.
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  4.  19
    マルチエージェント連続タスクにおける報酬設計の実験的考察: RoboCup Soccer Keepaway タスクを例として.Tanaka Nobuyuki Arai Sachiyo - 2006 - Transactions of the Japanese Society for Artificial Intelligence 21 (6):537-546.
    In this paper, we discuss guidelines for a reward design problem that defines when and what amount of reward should be given to the agent/s, within the context of reinforcement learning approach. We would like to take keepaway soccer as a standard task of the multiagent domain which requires skilled teamwork. The difficulties of designing reward for this task are due to its features as follows: i) since it belongs to the continuing task which has no explicit goal to achieve, (...)
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  5.  19
    Web における学習者のナビゲーションプラニングを支援する環境について.Suzuki Ryoichi Kashihara Akihiro - 2002 - Transactions of the Japanese Society for Artificial Intelligence 17 (4):510-520.
    Web-based learning resources provide learners with hyperspace where they can navigate in a self-directed way to learn the contents included in the Web pages. The navigation involves making a sequence of the pages visited, which is called navigation path. However, learners often fail in making the navigation path due to a cognitive overload, which is caused by diverse cognitive efforts at comprehending the contents in Web pages, and monitoring the navigation process such as planning and reflection of navigation path. In (...)
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  6.  13
    Perfect-set forcing for uncountable cardinals.Akihiro Kanamori - 1980 - Annals of Mathematical Logic 19 (1-2):97-114.
  7. The Higher Infinite.Akihiro Kanamori - 2000 - Studia Logica 65 (3):443-446.
     
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  8.  11
    The visually guided development of facial representations in the primate ventral visual pathway: A computer modeling study.Akihiro Eguchi, Glyn W. Humphreys & Simon M. Stringer - 2016 - Psychological Review 123 (6):696-739.
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  9.  25
    On Gödel incompleteness and finite combinatorics.Akihiro Kanamori & Kenneth McAloon - 1987 - Annals of Pure and Applied Logic 33 (C):23-41.
  10.  17
    The Higher Infinite: Large Cardinals in Set Theory from Their Beginnings.Akihiro Kanamori - 2003 - Springer.
  11.  60
    Ordinal diagrams for Π3-reflection.Toshiyasu Arai - 2000 - Journal of Symbolic Logic 65 (3):1375 - 1394.
    In this paper we introduce a recursive notation system O(Π 3 ) of ordinals. An element of the notation system is called an ordinal diagram. The system is designed for proof theoretic study of theories of Π 3 -reflection. We show that for each $\alpha in O(Π 3 ) a set theory KP Π 3 for Π 3 -reflection proves that the initial segment of O(Π 3 ) determined by α is a well ordering. Proof theoretic study for such theories (...)
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  12.  30
    The emergence of polychronization and feature binding in a spiking neural network model of the primate ventral visual system.Akihiro Eguchi, James B. Isbister, Nasir Ahmad & Simon Stringer - 2018 - Psychological Review 125 (4):545-571.
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  13.  7
    "P nottto NP" mondai: gendai sūgaku no chōnanmon.Akihiro Nozaki - 2015 - Tōkyō-to Bunkyō-ku: Kōdansha.
    コンピュータの歴史、アルゴリズムの理論の解説を経て、未解決であるミレニアム問題のひとつ、「P≠NP問題」に迫ります!
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  14. Zermelo and set theory.Akihiro Kanamori - 2004 - Bulletin of Symbolic Logic 10 (4):487-553.
    Ernst Friedrich Ferdinand Zermelo transformed the set theory of Cantor and Dedekind in the first decade of the 20th century by incorporating the Axiom of Choice and providing a simple and workable axiomatization setting out generative set-existence principles. Zermelo thereby tempered the ontological thrust of early set theory, initiated the delineation of what is to be regarded as set-theoretic, drawing out the combinatorial aspects from the logical, and established the basic conceptual framework for the development of modern set theory. Two (...)
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  15.  33
    Variations on a theme by Weiermann.Toshiyasu Arai - 1998 - Journal of Symbolic Logic 63 (3):897-925.
    Weiermann [18] introduces a new method to generate fast growing functions in order to get an elegant and perspicuous proof of a bounding theorem for provably total recursive functions in a formal theory, e.g., in PA. His fast growing function θαn is described as follows. For each ordinal α and natural number n let T α n denote a finitely branching, primitive recursive tree of ordinals, i.e., an ordinal as a label is attached to each node in the tree so (...)
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  16.  29
    Mathematical Knowledge : Motley and Complexity of Proof.Akihiro Kanamori - 2013 - Annals of the Japan Association for Philosophy of Science 21:21-35.
  17.  53
    Derivability conditions on Rosser's provability predicates.Toshiyasu Arai - 1990 - Notre Dame Journal of Formal Logic 31 (4):487-497.
  18.  6
    Gendai rinrigaku.Akihiro Sakai & Takehide Kashiwaba (eds.) - 2007 - Kyōto-shi: Nakanishiya Shuppan.
    メタ倫理学、規範倫理学、応用倫理学を体系的に概説した入門書。大学における倫理学教育のミニマム・エッセンスを体系的に学べるユニークなテキスト。.
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  19.  27
    Avicenna's denial of life in plants.Akihiro Tawara - 2014 - Arabic Sciences and Philosophy 24 (1):127-138.
    RésuméDans la partie duŠifāʾqui porte “sur les plantes”, Avicenne aboutit à cette conclusion inattendue que celles-ci ne seraient pas vivantes. Cette thèse surprend étant donné l'opinion d'Aristote voulant que tout ce qui a une âme est vivant. Cet article montre qu'Avicenne a évolué quant à la question de la vie des plantes. Il commence par adopter la conception aristotélicienne selon laquelle les plantes sont vivantes dans la mesure où elles sont dotées d'une âme, comme il ressort de son œuvre précoce (...)
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  20.  15
    Ideas in the epsilon substitution method for -FIX.Toshiyasu Arai - 2005 - Annals of Pure and Applied Logic 136 (1-2):3-21.
    Hilbert proposed the epsilon substitution method as a basis for consistency proofs. Hilbert’s Ansatz for finding a solving substitution for any given finite set of transfinite axioms is, starting with the null substitution S0, to correct false values step by step and thereby generate the process S0,S1,…. The problem is to show that the approximating process terminates. After Gentzen’s innovation, Ackermann [W. Ackermann, Zur Widerspruchsfreiheit der Zahlentheorie, Math. Ann. 117 162–194] succeeded in proving the termination of the process for the (...)
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  21. The mathematical development of set theory from Cantor to Cohen.Akihiro Kanamori - 1996 - Bulletin of Symbolic Logic 2 (1):1-71.
    Set theory is an autonomous and sophisticated field of mathematics, enormously successful not only at its continuing development of its historical heritage but also at analyzing mathematical propositions cast in set-theoretic terms and gauging their consistency strength. But set theory is also distinguished by having begun intertwined with pronounced metaphysical attitudes, and these have even been regarded as crucial by some of its great developers. This has encouraged the exaggeration of crises in foundations and of metaphysical doctrines in general. However, (...)
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  22.  94
    The empty set, the Singleton, and the ordered pair.Akihiro Kanamori - 2003 - Bulletin of Symbolic Logic 9 (3):273-298.
    For the modern set theorist the empty set Ø, the singleton {a}, and the ordered pair 〈x, y〉 are at the beginning of the systematic, axiomatic development of set theory, both as a field of mathematics and as a unifying framework for ongoing mathematics. These notions are the simplest building locks in the abstract, generative conception of sets advanced by the initial axiomatization of Ernst Zermelo [1908a] and are quickly assimilated long before the complexities of Power Set, Replacement, and Choice (...)
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  23.  34
    Epsilon Substitution Method for [image] -FIX.Toshiyasu Arai - 2006 - Journal of Symbolic Logic 71 (4):1155 - 1188.
    In this paper we formulate epsilon substitution method for a theory $\Pi _{2}^{0}$-FIX for non-monotonic $\Pi _{2}^{0}$ inductive definitions. Then we give a termination proof of the H-processes based on Ackermann [1].
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  24. [Omnibus Review].Akihiro Kanamori - 1981 - Journal of Symbolic Logic 46 (4):864-866.
  25.  7
    Evaluation of a simple, scalable, parallel best-first search strategy.Akihiro Kishimoto, Alex Fukunaga & Adi Botea - 2013 - Artificial Intelligence 195 (C):222-248.
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  26.  29
    Erdős and set theory.Akihiro Kanamori - 2014 - Bulletin of Symbolic Logic 20 (4):449-490,.
    Paul Erdős was a mathematicianpar excellencewhose results and initiatives have had a large impact and made a strong imprint on the doing of and thinking about mathematics. A mathematician of alacrity, detail, and collaboration, Erdős in his six decades of work moved and thought quickly, entertained increasingly many parameters, and wrote over 1500 articles, the majority with others. Hismodus operandiwas to drive mathematics through cycles of problem, proof, and conjecture, ceaselessly progressing and ever reaching, and hismodus vivendiwas to be itinerant (...)
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  27.  65
    The Complexity of Analytic Tableaux.Noriko H. Arai, Toniann Pitassi & Alasdair Urquhart - 2006 - Journal of Symbolic Logic 71 (3):777 - 790.
    The method of analytic tableaux is employed in many introductory texts and has also been used quite extensively as a basis for automated theorem proving. In this paper, we discuss the complexity of the system as a method for refuting contradictory sets of clauses, and resolve several open questions. We discuss the three forms of analytic tableaux: clausal tableaux, generalized clausal tableaux, and binary tableaux. We resolve the relative complexity of these three forms of tableaux proofs and also resolve the (...)
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  28.  30
    Der Mensch in der Nähe zur Natur.Akihiro Takeuchi - 1973 - Zeitschrift für Religions- Und Geistesgeschichte 25 (1):20-31.
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  29.  30
    A Dynamic Semantics for Vague Predicates.Akihiro Yoshimitsu - 2004 - Annals of the Japan Association for Philosophy of Science 12 (2):109-128.
  30.  23
    Anomalies of Classical Logic in View of Relevant Logic.Akihiro Yoshimitsu - 2012 - Kagaku Tetsugaku 45 (2):65-81.
  31.  48
    My life in psychology: Making a place for fiction in a world of science.Akihiro Yoshida - 2001 - Journal of Phenomenological Psychology 32 (2):188-202.
    The author reflects on his long career as an educational psychologist and on the role of literature in his vision of psychological science. The author followed with great interest the major developments in psychology around the world, but he felt himself progressively alienated from the revealing power of art and literature. At one moment, he realized that a simple narrative constitutes the most profound and also the most effective means of transmitting genuine insights about teaching from one generation to another. (...)
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  32.  20
    Vagueness and Causality.Akihiro Yoshimitsu - 2010 - Kagaku Tetsugaku 43 (2):95-109.
  33. Hilbert and set theory.Burton Dreben & Akihiro Kanamori - 1997 - Synthese 110 (1):77-125.
  34. The mathematical import of zermelo's well-ordering theorem.Akihiro Kanamori - 1997 - Bulletin of Symbolic Logic 3 (3):281-311.
    Set theory, it has been contended, developed from its beginnings through a progression ofmathematicalmoves, despite being intertwined with pronounced metaphysical attitudes and exaggerated foundational claims that have been held on its behalf. In this paper, the seminal results of set theory are woven together in terms of a unifying mathematical motif, one whose transmutations serve to illuminate the historical development of the subject. The motif is foreshadowed in Cantor's diagonal proof, and emerges in the interstices of the inclusion vs. membership (...)
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  35.  25
    Participation in competitive sports for intellectually challenged people.Akihiro Inoue & Yasuki Katou - 2000 - Journal of the Philosophy of Sport and Physical Education 22 (1):17-29.
  36.  8
    E-mail: aki@ math. bu. edu.Akihiro Kanamori - 2005 - Bulletin of Symbolic Logic 11 (2):131-131.
  37.  18
    Preface.Akihiro Kanamori - 2005 - Bulletin of Symbolic Logic 11 (2):131.
  38.  5
    2004–05 Winter Meeting of the Association for Symbolic Logic.Akihiro Kanamori - 2005 - Bulletin of Symbolic Logic 11 (3):454-460.
  39. Cohen and set theory.Akihiro Kanamori - 2008 - Bulletin of Symbolic Logic 14 (3):351-378.
    We discuss the work of Paul Cohen in set theory and its influence, especially the background, discovery, development of forcing.
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  40.  23
    The Mathematical Infinite as a Matter of Method.Akihiro Kanamori - 2012 - Annals of the Japan Association for Philosophy of Science 20:3-15.
  41. Macro-Scale Population Patterns in the Kofun Period of the Japanese Archipelago: Quantitative Analysis of a Larger Sample of Three-Dimensional Data from Ancient Human Crania.Hisashi Nakao, Akihiro Kaneda, Kohei Tamura, Koji Noshita & Tomomi Nakagawa - 2024 - Humans 4 (2):131–147.
    The present study collected a larger set of three-dimensional data on human crania from the Kofun period (as well as from previous periods, i.e., the Jomon and Yayoi periods) in the Japanese archipelago (AD 250 to around 700) than previous studies. Three-dimensional geometric morphometrics were employed to investigate human migration patterns in finer-grained phases. These results are consistent with those of previous studies, although some new patterns were discovered. These patterns were interpreted in terms of demic diffusion, archaeological findings, and (...)
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  42.  69
    Gödel and set theory.Akihiro Kanamori - 2007 - Bulletin of Symbolic Logic 13 (2):153-188.
    Kurt Gödel with his work on the constructible universeLestablished the relative consistency of the Axiom of Choice and the Continuum Hypothesis. More broadly, he ensured the ascendancy of first-order logic as the framework and a matter of method for set theory and secured the cumulative hierarchy view of the universe of sets. Gödel thereby transformed set theory and launched it with structured subject matter and specific methods of proof. In later years Gödel worked on a variety of set theoretic constructions (...)
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  43. Three papers on proof theory.W. Buchholz, S. Tupailo & Toshiyasu Arai - 2002 - Bulletin of Symbolic Logic 8 (3):437-438.
  44.  14
    The Armour Book in Honchō-GunkikōThe Armour Book in Honcho-Gunkiko.Schuyler Cammann, Arai Hakuseki, Y. Ōtsuka, H. Russell Robinson & Y. Otsuka - 1965 - Journal of the American Oriental Society 85 (2):221.
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  45.  19
    REVIEWS-Labyrinth of thought.J. Ferreiros & Akihiro Kanamori - 2001 - Bulletin of Symbolic Logic 7 (2):277-277.
  46.  10
    REVIEWS-Moti Gitik's recent papers on the Singular Cardinals Problem.Moti Gitik & Akihiro Kanamori - 2003 - Bulletin of Symbolic Logic 9 (2):237-241.
  47. Iers activity reports.Aylecturers List & Mr Hajime Arai - 2005 - Educational Studies 47 (47-48):215.
     
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  48.  8
    Trading transforms of non-weighted simple games and integer weights of weighted simple games.Tomomi Matsui & Akihiro Kawana - 2021 - Theory and Decision 93 (1):131-150.
    This study investigates simple games. A fundamental research question in this field is to determine necessary and sufficient conditions for a simple game to be a weighted majority game. Taylor and Zwicker showed that a simple game is non-weighted if and only if there exists a trading transform of finite size. They also provided an upper bound on the size of such a trading transform, if it exists. Gvozdeva and Slinko improved that upper bound; their proof employed a property of (...)
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  49.  26
    Consistency Proof via Pointwise Induction.Andreas Weiermann & Toshiyasu Arai - 2002 - Bulletin of Symbolic Logic 8 (4):536.
  50. The Infinite as Method in Set Theory and Mathematics.Akihiro Kanamori - 2009 - Ontology Studies: Cuadernos de Ontología:31-41.
    Este artículo da cuenta de la aparición histórica de lo infinito en la teoría de conjuntos, y de cómo lo tratamos dentro y fuera de las matemáticas. La primera sección analiza el surgimiento de lo infinito como una cuestión de método en la teoría de conjuntos. La segunda sección analiza el infinito dentro y fuera de las matemáticas, y cómo deben adoptarse. This article address the historical emergence of the infinite in set theory, and how we are to take the (...)
     
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