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Possible worlds

Philosophical Quarterly 12 (46):36-43 (1962)

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  1. Prior, translational semantics, and the Barcan formula.B. Jack Copeland - 2016 - Synthese 193 (11):3507-3519.
    The revolution in semantics in the late 1960s and 1970s overturned an earlier competing paradigm, ‘translational’ semantics. I revive and defend Prior’s translational semantics for modals and tense-modals. I also show how to extend Prior’s propositional modal semantics to quantificational modal logic, and use the resulting semantics to formalize Prior’s own counterexample to the Barcan Formula.
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  • Meredith, Prior, and the History of Possible Worlds Semantics.B. Jack Copeland - 2006 - Synthese 150 (3):373-397.
    This paper charts some early history of the possible worlds semantics for modal logic, starting with the pioneering work of Prior and Meredith. The contributions of Geach, Hintikka, Kanger, Kripke, Montague, and Smiley are also discussed.
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  • Branching in the landscape of possibilities.Thomas Müller - 2012 - Synthese 188 (1):41-65.
    The metaphor of a branching tree of future possibilities has a number of important philosophical and logical uses. In this paper we trace this metaphor through some of its uses and argue that the metaphor works the same way in physics as in philosophy. We then give an overview of formal systems for branching possibilities, viz., branching time and (briefly) branching space-times. In a next step we describe a number of different notions of possibility, thereby sketching a landscape of possibilities. (...)
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  • Abstract objects.Gideon Rosen - 2008 - Stanford Encyclopedia of Philosophy.
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  • Tense-logic and the continuity of time.A. N. Prior - 1962 - Studia Logica 13 (1):133 - 151.
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  • The interpretation of some Lewis systems of modal logic.M. J. Cresswell - 1967 - Australasian Journal of Philosophy 45 (2):198 – 206.
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  • The genesis of possible worlds semantics.B. Jack Copeland - 2002 - Journal of Philosophical Logic 31 (2):99-137.
    This article traces the development of possible worlds semantics through the work of: Wittgenstein, 1913-1921; Feys, 1924; McKinsey, 1945; Carnap, 1945-1947; McKinsey, Tarski and Jónsson, 1947-1952; von Wright, 1951; Becker, 1952; Prior, 1953-1954; Montague, 1955; Meredith and Prior, 1956; Geach, 1960; Smiley, 1955-1957; Kanger, 1957; Hintikka, 1957; Guillaume, 1958; Binkley, 1958; Bayart, 1958-1959; Drake, 1959-1961; Kripke, 1958-1965.
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  • Prior’s concept of possible worlds: Clasp between Wittgenstein and Warsaw´s School.Zuzana Rybaříková - 2015 - Pro-Fil 16 (1):30-43.
    Arthur Prior was one of the logicians who participated in the invention of the possible worlds’ semantics. The ontology, which is connected with his systems of modal logic, is unique. Prior tried to reduce the number of abstract entities as much as possible. Hence he did not elect to introduce possible worlds and possibilia into his ontology. In addition, he held a reductionist view, which is called modal actualism by Fine or modalism by Melia. Prior was inspired by various authors (...)
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  • Arthur N. Prior and the Lvov-Warsaw School.Zuzana Rybaříková - 2022 - History and Philosophy of Logic 44 (1):91-103.
    This paper presents the link between Arthur N. Prior and logicians that belonged to the Lvov-Warsaw School. Although certain members of the Lvov-Warsaw School influenced Prior’s views, the amount and the form of the impact are still under discussion. Prior also cooperated with some of them in the development of his systems of logic. This paper focuses on four main areas in which Prior admitted adopting ideas from the Lvov-Warsaw School: systems of propositional logic, the history of logic, modal and (...)
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  • Algebraic semantics for modal logics I.E. J. Lemmon - 1966 - Journal of Symbolic Logic 31 (1):46-65.
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  • Arthur N. Prior on ‘Unquestionably the Best Logical Symbolism for Most Purposes’.Jeremiah Joven B. Joaquin - 2021 - History and Philosophy of Logic 43 (2):158-174.
    In his Formal Logic, Arthur N. Prior declared that Jan Łukasiewicz's logical notation is ‘unquestionably the best logical symbolism for most purposes’. Whether he had a substantive, and...
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  • Mathematical modal logic: A view of its evolution.Robert Goldblatt - 2003 - Journal of Applied Logic 1 (5-6):309-392.
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  • Einstein Vs. Bergson: An Enduring Quarrel on Time.Alessandra Campo & Simone Gozzano (eds.) - 2021 - Boston: De Gruyter.
    This book brings together papers from a conference that took place in the city of L'Aquila, 4–6 April 2019, to commemorate the 10th anniversary of the earthquake that struck on 6 April 2009. Philosophers and scientists from diverse fields of research debated the problem that, on 6 April 1922, divided Einstein and Bergson: the nature of time. For Einstein, scientific time is the only time that matters and the only time we can rely on. Bergson, however, believes that scientific time (...)
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  • Impossibility and Impossible Worlds.Daniel Nolan - 2018 - In Otávio Bueno & Scott A. Shalkowski (eds.), The Routledge Handbook of Modality. New York: Routledge. pp. 40-48.
    Possible worlds have found many applications in contemporary philosophy: from theories of possibility and necessity, to accounts of conditionals, to theories of mental and linguistic content, to understanding supervenience relationships, to theories of properties and propositions, among many other applications. Almost as soon as possible worlds started to be used in formal theories in logic, philosophy of language, philosophy of mind, metaphysics, and elsewhere, theorists started to wonder whether impossible worlds should be postulated as well. In many applications, possible worlds (...)
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  • Modern Origins of Modal Logic.Roberta Ballarin - 2010 - Stanford Encyclopedia of Philosophy.
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