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  1. Laws of nature.Fred I. Dretske - 1977 - Philosophy of Science 44 (2):248-268.
    It is a traditional empiricist doctrine that natural laws are universal truths. In order to overcome the obvious difficulties with this equation most empiricists qualify it by proposing to equate laws with universal truths that play a certain role, or have a certain function, within the larger scientific enterprise. This view is examined in detail and rejected; it fails to account for a variety of features that laws are acknowledged to have. An alternative view is advanced in which laws are (...)
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  • Phil Dowe, Physical Causation. [REVIEW]Phil Dowe - 2002 - Erkenntnis 56 (2):258-263.
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  • Physical Causation.Phil Dowe - 2000 - New York: Cambridge University Press.
    This book, published in 2000, is a clear account of causation based firmly in contemporary science. Dowe discusses in a systematic way, a positive account of causation: the conserved quantities account of causal processes which he has been developing over the last ten years. The book describes causal processes and interactions in terms of conserved quantities: a causal process is the worldline of an object which possesses a conserved quantity, and a causal interaction involves the exchange of conserved quantities. Further, (...)
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  • Against Brain-in-a-Vatism: On the Value of Virtual Reality.Jon Cogburn & Mark Silcox - 2014 - Philosophy and Technology 27 (4):561-579.
    The term “virtual reality” was first coined by Antonin Artaud to describe a value-adding characteristic of certain types of theatrical performances. The expression has more recently come to refer to a broad range of incipient digital technologies that many current philosophers regard as a serious threat to human autonomy and well-being. Their concerns, which are formulated most succinctly in “brain in a vat”-type thought experiments and in Robert Nozick's famous “experience machine” argument, reflect a fundamental misunderstanding of the way that (...)
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  • The Virtual and the Real.David J. Chalmers - 2017 - Disputatio 9 (46):309-352.
    I argue that virtual reality is a sort of genuine reality. In particular, I argue for virtual digitalism, on which virtual objects are real digital objects, and against virtual fictionalism, on which virtual objects are fictional objects. I also argue that perception in virtual reality need not be illusory, and that life in virtual worlds can have roughly the same sort of value as life in non-virtual worlds.
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  • The Virtual as the Digital.David J. Chalmers - 2019 - Disputatio 11 (55):453-486.
    I reply to seven commentaries on “The Virtual and the Real”. In response to Claus Beisbart, Jesper Juul, Peter Ludlow, and Neil McDonnell and Nathan Wildman, I clarify and develop my view that virtual are digital objects, with special attention to the nature of digital objects and data structures. In response to Alyssa Ney and Eric Schwitzgebel, I clarify and defend my spatial functionalism, with special attention to the connections between space and consciousness. In response to Marc Silcox, I clarify (...)
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  • Virtual Realism.Michael Heim - 2000 - Oxford University Press USA.
    Virtual Realism is an art form and a way of living with technology. To explain it, Michael Heim draws on a hypertext of topics, from answering machines to interactive art, from engineering to television programs, from the meaning of UFOs to the Internet. The book begins with the primer 'VR 101'. The issues are discussed, then several chapters illustrate virtual realism with tours through art exhibits and engineering projects. Each chapter suggests a harmony of technology with lifestyle.
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  • The Ontology of Digital Physics.Anderson Beraldo-de-Araújo & Lorenzo Baravalle - 2017 - Erkenntnis 82 (6):1211-1231.
    Digital physics claims that the entire universe is, at the very bottom, made out of bits; as a result, all physical processes are intrinsically computational. For that reason, many digital physicists go further and affirm that the universe is indeed a giant computer. The aim of this article is to make explicit the ontological assumptions underlying such a view. Our main concern is to clarify what kind of properties the universe must instantiate in order to perform computations. We analyse the (...)
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  • Patterns, Information, and Causation.Holly Andersen - 2017 - Journal of Philosophy 114 (11):592-622.
    This paper articulates an account of causation as a collection of information-theoretic relationships between patterns instantiated in the causal nexus. I draw on Dennett’s account of real patterns to characterize potential causal relata as patterns with specific identification criteria and noise tolerance levels, and actual causal relata as those patterns instantiated at some spatiotemporal location in the rich causal nexus as originally developed by Salmon. I develop a representation framework using phase space to precisely characterize causal relata, including their degree (...)
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  • (1 other version)What is a mechanism? A counterfactual account.Jim Woodward - 2002 - Proceedings of the Philosophy of Science Association 2002 (3):S366-S377.
    This paper presents a counterfactual account of what a mechanism is. Mechanisms consist of parts, the behavior of which conforms to generalizations that are invariant under interventions, and which are modular in the sense that it is possible in principle to change the behavior of one part independently of the others. Each of these features can be captured by the truth of certain counterfactuals.
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  • (1 other version)What Is a Mechanism? A Counterfactual Account.James Woodward - 2002 - Philosophy of Science 69 (S3):S366-S377.
    This paper presents a counterfactual account of what a mechanism is. Mechanisms consist of parts, the behavior of which conforms to generalizations that are invariant under interventions, and which are modular in the sense that it is possible in principle to change the behavior of one part independently of the others. Each of these features can be captured by the truth of certain counterfactuals.
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  • Mechanisms revisited.James Woodward - 2011 - Synthese 183 (3):409-427.
    This paper defends an interventionist treatment of mechanisms and contrasts this with Waskan (forthcoming). Interventionism embodies a difference-making conception of causation. I contrast such conceptions with geometrical/mechanical or “actualist” conceptions, associating Waskan’s proposals with the latter. It is argued that geometrical/mechanical conceptions of causation cannot replace difference-making conceptions in characterizing the behavior of mechanisms, but that some of the intuitions behind the geometrical/mechanical approach can be captured by thinking in terms of spatio-temporally organized difference-making information.
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  • (1 other version)What is a Law of Nature?[author unknown] - 1985 - Philosophical Books 26 (2):120-120.
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  • Truth Tracking and Knowledge from Virtual Reality.Billy Wheeler - 2020 - Logos and Episteme 11 (3):369-388.
    Is it possible to gain knowledge about the real world based solely on experiences in virtual reality? According to one influential theory of knowledge, you cannot. Robert Nozick's truth-tracking theory requires that, in addition to a belief being true, it must also be sensitive to the truth. Yet beliefs formed in virtual reality are not sensitive: in the nearest possible world where P is false, you would have continued to believe that P. This is problematic because there is increasing awareness (...)
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  • (1 other version)Mimesis as make-believe: on the foundations of the representational arts.Kendall L. Walton - 1990 - Cambridge: Harvard University Press.
    Mimesis as Make-Believe is important reading for everyone interested in the workings of representational art.
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  • Discovering Causal Structure: Artificial Intelligence, Philosophy of Science, and Statistical Modeling.Clark Glymour, Richard Scheines, Peter Spirtes & Kevin Kelly - 1987 - Academic Press.
    Clark Glymour, Richard Scheines, Peter Spirtes and Kevin Kelly. Discovering Causal Structure: Artifical Intelligence, Philosophy of Science and Statistical Modeling.
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  • The nature of laws.Michael Tooley - 1977 - Canadian Journal of Philosophy 7 (4):667-98.
    This paper is concerned with the question of the truth conditions of nomological statements. My fundamental thesis is that it is possible to set out an acceptable, noncircular account of the truth conditions of laws and nomological statements if and only if relations among universals - that is, among properties and relations, construed realistically - are taken as the truth-makers for such statements. My discussion will be restricted to strictly universal, nonstatistical laws. The reason for this limitation is not that (...)
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  • (1 other version)Scientific Explanation and the Causal Structure of the World.Wesley C. Salmon - 1984 - Princeton University Press.
    The philosophical theory of scientific explanation proposed here involves a radically new treatment of causality that accords with the pervasively statistical character of contemporary science. Wesley C. Salmon describes three fundamental conceptions of scientific explanation--the epistemic, modal, and ontic. He argues that the prevailing view is untenable and that the modal conception is scientifically out-dated. Significantly revising aspects of his earlier work, he defends a causal/mechanical theory that is a version of the ontic conception. Professor Salmon's theory furnishes a robust (...)
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  • Programming the Universe.Seh Lloyd - 2007 - Vintage.
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  • A New Kind of Science.Stephen Wolfram - 2002 - Wolfram Media.
    NOW IN PAPERBACK"€"Starting from a collection of simple computer experiments"€"illustrated in the book by striking computer graphics"€"Stephen Wolfram shows how their unexpected results force a whole new way of looking at the operation of our universe.
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  • Virtuality and Reality—Toward a Representation Ontology.László Ropolyi - 2015 - Philosophies 1 (1):40--54.
    Based on a brief overview of the history of ontology and on some philosophical problems of virtual reality, a new approach to virtuality is proposed. To characterize the representational technologies in the Internet age, I suggest that Aristotle’s dualistic ontological system be complemented with a third form of being: virtuality. In the virtual form of being actuality and potentiality are inseparably intertwined. Virtuality is potentiality considered together with its actualization. In this view, virtuality is reality with a measure, a reality (...)
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  • Walton, Truth in Fiction, and Video Games: A Rejoinder to Willis.Martin Ricksand - 2020 - Journal of Aesthetics and Art Criticism 78 (1):101-105.
    The Journal of Aesthetics and Art Criticism, Volume 78, Issue 1, Page 101-105, Winter 2020.
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  • Cellular automata.Francesco Berto & Jacopo Tagliabue - 2012 - Stanford Encyclopedia of Philosophy.
    Cellular automata (henceforth: CA) are discrete, abstract computational systems that have proved useful both as general models of complexity and as more specific representations of non-linear dynamics in a variety of scientific fields. Firstly, CA are (typically) spatially and temporally discrete: they are composed of a finite or denumerable set of homogeneous, simple units, the atoms or cells. At each time unit, the cells instantiate one of a finite set of states. They evolve in parallel at discrete time steps, following (...)
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  • (1 other version)Models and Analogies in Science.Mary B. Hesse - 1963 - [Notre Dame, Ind.]: University of Notre Dame Press.
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  • Ways of worldmaking.Nelson Goodman - 1978 - Hassocks [Eng.]: Harvester Press.
    Required reading at more than 100 colleges and universities throughout North America.
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  • Information, physics, quantum: the search for links.John Archibald Wheeler - 1989 - In Wheeler John Archibald (ed.), Proceedings III International Symposium on Foundations of Quantum Mechanics. pp. 354-358.
    This report reviews what quantum physics and information theory have to tell us about the age-old question, How come existence? No escape is evident from four conclusions: (1) The world cannot be a giant machine, ruled by any preestablished continuum physical law. (2) There is no such thing at the microscopic level as space or time or spacetime continuum. (3) The familiar probability function or functional, and wave equation or functional wave equation, of standard quantum theory provide mere continuum idealizations (...)
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  • Mechanisms and the nature of causation.Stuart S. Glennan - 1996 - Erkenntnis 44 (1):49--71.
    In this paper I offer an analysis of causation based upon a theory of mechanisms-complex systems whose internal parts interact to produce a system's external behavior. I argue that all but the fundamental laws of physics can be explained by reference to mechanisms. Mechanisms provide an epistemologically unproblematic way to explain the necessity which is often taken to distinguish laws from other generalizations. This account of necessity leads to a theory of causation according to which events are causally related when (...)
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  • Virtual Reality: Digital or Fictional?Neil McDonnell & Nathan Wildman - 2019 - Disputatio 11 (55):371-397.
    Are the objects and events that take place in Virtual Reality genuinely real? Those who answer this question in the affirmative are realists, and those who answer in the negative are irrealists. In this paper we argue against the realist position, as given by Chalmers (2017), and present our own preferred irrealist account of the virtual. We start by disambiguating two potential versions of the realist position—weak and strong— and then go on to argue that neither is plausible. We then (...)
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  • Thinking about mechanisms.Peter Machamer, Lindley Darden & Carl F. Craver - 2000 - Philosophy of Science 67 (1):1-25.
    The concept of mechanism is analyzed in terms of entities and activities, organized such that they are productive of regular changes. Examples show how mechanisms work in neurobiology and molecular biology. Thinking in terms of mechanisms provides a new framework for addressing many traditional philosophical issues: causality, laws, explanation, reduction, and scientific change.
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  • Perception of Affordances and Experience of Presence in Virtual Reality.Paweł Grabarczyk & Marek Pokropski - 2016 - Avant: Trends in Interdisciplinary Studies 7 (2):25-44.
    Recent developments in virtual reality technology raise a question about the experience of presence and immersion in virtual environments. What is immersion and what are the conditions for inducing the experience of virtual presence? In this paper, we argue that crucial determinants of presence are perception of affordances and sense of embodiment. In the first section of this paper, we define key concepts and introduce important distinctions such as immersion and presence. In the second and third sections, we respectively discuss (...)
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  • Representation and make-believe.Alan H. Goldman - 1990 - Inquiry: Critical Thinking Across the Disciplines 36 (3):335 – 350.
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  • Mechanisms, Causes, and the Layered Model of the World.Stuart Glennan - 2010 - Philosophy and Phenomenological Research 81 (2):362-381.
    Most philosophical accounts of causation take causal relations to obtain between individuals and events in virtue of nomological relations between properties of these individuals and events. Such views fail to take into account the consequences of the fact that in general the properties of individuals and events will depend upon mechanisms that realize those properties. In this paper I attempt to rectify this failure, and in so doing to provide an account of the causal relevance of higher-level properties. I do (...)
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  • The New Mechanical Philosophy.Stuart Glennan - 2017 - Oxford: Oxford University Press.
    This volume argues for a new image of science that understands both natural and social phenomena to be the product of mechanisms, casting the work of science as an effort to understand those mechanisms. Glennan offers an account of the nature of mechanisms and of the models used to represent them in physical, life, and social sciences.
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  • Physical Causation.Phil Dowe - 2003 - Philosophy and Phenomenological Research 67 (1):244-248.
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  • (1 other version)Models and Analogies in Science.Mary B. Hesse - 1966 - Philosophy and Rhetoric 3 (3):190-191.
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  • Digital metaphysics.Eric Steinhart - 1998 - In Terrell Ward Bynum & James Moor (eds.), The Digital Phoenix: How Computers are Changing Philosophy. Cambridge: Blackwell. pp. 117--134.
    I discuss the view, increasingly common in physics, that the foundational level of our physical reality is a network of computing machines (so that our universe is ultimately like a cellular automaton). I discuss finitely extended and divided (discrete) space-time and discrete causality. I examine reasons for thinking that the foundational computational complexity of our universe is finite. I discuss the emergence of an ordered complexity hierarchy of levels of objects over the foundational level and I show how the special (...)
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  • (2 other versions)Weak emergence: Causation and emergence.Ma Bedau - 1997 - Philosophical Perspectives 11:375-399.
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  • The morality of experience machines for palliative and end of life care.Dan Weijers - 2017 - In Mark Silcox (ed.), Experience Machines: The Philosophy of Virtual Worlds. London: Rowman & Littlefield. pp. 183-201.
    Experience machines, popularized in print by Robert Nozick and on the screen by the Wachowskis’ film The Matrix, provide highly or perfectly realistic experiences that are more pleasant and less painful than those generated in real life.1 The recent surge in virtual reality and neuro-prosthetic technologies is making the creation of real-world experience machines seem inevitable and perhaps imminent.2 Given the likelihood of the near-future availability of such machines, it behooves ethicists to consider the moral status of their potential uses. (...)
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  • A New Kind of Science.Stephen Wolfram - 2002 - Bulletin of Symbolic Logic 10 (1):112-114.
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  • (1 other version)Mimesis as Make-Believe: On the Foundations of the Representational Arts.Kendall L. WALTON - 1990 - Philosophy 66 (258):527-529.
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  • The recursive universe: cosmic complexity and the limits of scientific knowledge.William Poundstone - 1985 - Mineola, New York: Dover Publications.
    This fascinating popular science journey explores key concepts in information theory in terms of Conway's "Game of Life" program. The author explains the application of natural law to a random system and demonstrates the necessity of limits. Other topics include the limits of knowledge, paradox of complexity, Maxwell's demon, Big Bang theory, and much more. 1985 edition.
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  • (5 other versions)Philosophical Explanations. [REVIEW]Robert Nozick - 1981 - Philosophy 58 (223):118-121.
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  • (5 other versions)Philosophical Explanations. [REVIEW]Robert Nozick - 1982 - Critica 14 (41):87-93.
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