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  1. Computation without representation.Gualtiero Piccinini - 2008 - Philosophical Studies 137 (2):205-241.
    The received view is that computational states are individuated at least in part by their semantic properties. I offer an alternative, according to which computational states are individuated by their functional properties. Functional properties are specified by a mechanistic explanation without appealing to any semantic properties. The primary purpose of this paper is to formulate the alternative view of computational individuation, point out that it supports a robust notion of computational explanation, and defend it on the grounds of how computational (...)
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  • Symbols and Computation A Critique of the Computational Theory of Mind.Steven Horst - 1999 - Minds and Machines 9 (3):347-381.
    Over the past several decades, the philosophical community has witnessed the emergence of an important new paradigm for understanding the mind.1 The paradigm is that of machine computation, and its influence has been felt not only in philosophy, but also in all of the empirical disciplines devoted to the study of cognition. Of the several strategies for applying the resources provided by computer and cognitive science to the philosophy of mind, the one that has gained the most attention from philosophers (...)
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  • Mental imagery.Nigel J. T. Thomas - 2001 - Stanford Encyclopedia of Philosophy.
    Mental imagery (varieties of which are sometimes colloquially refered to as “visualizing,” “seeing in the mind's eye,” “hearing in the head,” “imagining the feel of,” etc.) is quasi-perceptual experience; it resembles perceptual experience, but occurs in the absence of the appropriate external stimuli. It is also generally understood to bear intentionality (i.e., mental images are always images of something or other), and thereby to function as a form of mental representation. Traditionally, visual mental imagery, the most discussed variety, was thought (...)
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  • Realization: Metaphysics, mind, and science.Robert A. Wilson - 2004 - Philosophy of Science 71 (5):985-996.
    This paper surveys some recent work on realization in the philosophy of mind and the philosophy of science.
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  • Mental Representation.David Pitt - 2020 - Stanford Encyclopedia of Philosophy.
    The notion of a "mental representation" is, arguably, in the first instance a theoretical construct of cognitive science. As such, it is a basic concept of the Computational Theory of Mind, according to which cognitive states and processes are constituted by the occurrence, transformation and storage (in the mind/brain) of information-bearing structures (representations) of one kind or another.
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  • How Do Mental Processes Preserve Truth? Husserl’s Discovery of the Computational Theory of Mind.Jesse Daniel Lopes - 2020 - Husserl Studies 36 (1):25-45.
    Hubert Dreyfus once noted that it would be difficult to ascertain whether Edmund Husserl had a computational theory of mind. I provide evidence that he had one. Both Steven Pinker and Steven Horst think that the computational theory of mind must have two components: a representational-symbolic component and a causal component. Bearing this in mind, we proceed to a close-reading of the sections of “On the Logic of Signs” wherein Husserl presents, if I’m correct, his computational theory of mind embedded (...)
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  • (2 other versions)What Computations (Still, Still) Can't Do: Jerry Fodor on Computation and Modularity.Robert A. Wilson - 2004 - Canadian Journal of Philosophy 34 (sup1):407-425.
    Fodor's thinking on modularity has been influential throughout a range of the areas studying cognition, chiefly as a prod for positive work on modularity and domain-specificity. In _The Mind Doesn't Work That Way_, Fodor has developed the dark message of _The Modularity of Mind_ regarding the limits to modularity and computational analyses. This paper offers a critical assessment of Fodor's scepticism with an eye to highlighting some broader issues in play, including the nature of computation and the role of recent (...)
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  • The concept of a symbol and the vacuousness of the symbolic conception of thought.John-Michael Kuczynski - 2005 - Semiotica 2005 (154 - 1/4):243-264.
    Linguistic expressions must be decrypted if they are to transmit information. Thoughts need not be decrypted if they are to transmit information. Therefore thought-processes do not consist of linguistic expressions: thought is not linguistic. A consequence is that thought is not computational, given that a computation is the operationalization of a function that assigns one expression to some other expression (or sequence of expressions).
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  • Phenomenal intentionality past and present: introductory.Uriah Kriegel - 2013 - Phenomenology and the Cognitive Sciences 12 (3):437-444.
    This is an introduction to a special issue on the history of phenomenal intentionality.
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  • The Phenomenal Intentionality Research Program.Uriah Kriegel - 2013 - In Phenomenal Intentionality. , US: Oxford University Press. pp. 1–26.
    We review some of the work already done around the notion of phenomenal intentionality and propose a way of turning this body of work into a self-conscious research program for understanding intentionality.
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  • Naturalisms in philosophy of mind.Steven Horst - 2008 - Philosophy Compass 4 (1):219-254.
    Most contemporary philosophers of mind claim to be in search of a 'naturalistic' theory. However, when we look more closely, we find that there are a number of different and even conflicting ideas of what would count as a 'naturalization' of the mind. This article attempts to show what various naturalistic philosophies of mind have in common, and also how they differ from one another. Additionally, it explores the differences between naturalistic philosophies of mind and naturalisms found in ethics, epistemology, (...)
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  • The intentionality of formal systems.Ard Van Moer - 2006 - Foundations of Science 11 (1-2):81-119.
    One of the most interesting and entertaining philosophical discussions of the last few decades is the discussion between Daniel Dennett and John Searle on the existence of intrinsic intentionality. Dennett denies the existence of phenomena with intrinsic intentionality. Searle, however, is convinced that some mental phenomena exhibit intrinsic intentionality. According to me, this discussion has been obscured by some serious misunderstandings with regard to the concept ‘intrinsic intentionality’. For instance, most philosophers fail to realize that it is possible that the (...)
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  • Modeling, localization and the explanation of phenomenal properties: Philosophy and the cognitive sciences at the beginning of the millennium.Steven Horst - 2005 - Synthese 147 (3):477-513.
    Case studies in the psychophysics, modeling and localization of human vision are presented as an example of “hands-on” philosophy of the cognitive sciences. These studies also yield important results for familiar problems in philosophy of mind: the explanatory gap surrounding phenomenological feels is not closed by the kinds of investigations surveyed. However, the science is able to explain some sorts of phenomenological facts, such as why the human color space takes the form of the Munsell color solid, or why there (...)
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  • The Intentionality of Formal Systems.Ard Moer - 2006 - Foundations of Science 11 (1):81-119.
    One of the most interesting and entertaining philosophical discussions of the last few decades is the discussion between Daniel Dennett and John Searle on the existence of intrinsic intentionality. Dennett denies the existence of phenomena with intrinsic intentionality. Searle, however, is convinced that some mental phenomena exhibit intrinsic intentionality. According to me, this discussion has been obscured by some serious misunderstandings with regard to the concept ‘intrinsic intentionality’. For instance, most philosophers fail to realize that it is possible that the (...)
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  • (2 other versions)What Computers (Still, Still) Can't Do: Jerry Fodor on Computation and Modularity.Robert A. Wilson - 2008 - In Robert J. Stainton (ed.), New Essays in Philosophy of Language and Mind. pp. 407-425.
    Fodor's thinking on modularity has been influential throughout a range of the areas studying cognition, chiefly as a prod for positive work on modularity and domain-specificity. In The Mind Doesn't Work That Way, Fodor has developed the dark message of The Modularity of Mind regarding the limits to modularity and computational analyses. This paper offers a critical assessment of Fodor's scepticism with an eye to highlighting some broader issues in play, including the nature of computation and the role of recent (...)
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  • Causality.Jessica M. Wilson - 2005 - In Sahotra Sarkar & Jessica Pfeifer (eds.), The Philosophy of Science: An Encyclopedia. New York: Routledge. pp. 90--100.
    Arguably no concept is more fundamental to science than that of causality, for investigations into cases of existence, persistence, and change in the natural world are largely investigations into the causes of these phenomena. Yet the metaphysics and epistemology of causality remain unclear. For example, the ontological categories of the causal relata have been taken to be objects (Hume 1739), events (Davidson 1967), properties (Armstrong 1978), processes (Salmon 1984), variables (Hitchcock 1993), and facts (Mellor 1995). (For convenience, causes and effects (...)
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  • (1 other version)Personal Level Representation.Uriah Kriegel - 2012 - ProtoSociology 28:77-114.
    The current orthodoxy on mental representation can be characterized in terms of three central ideas. The -rst is ontological, the second semantic, and the third methodological. The ontological tenet is that mental representation is a two-place relation holding between a representing state and a represented entity (object, event, state of a.airs). The semantic tenet is that the relation in question is probably information-theoretic at heart, perhaps augmented teleologically, functionally, or teleo-functionally to cope with di/cult cases. The methodological tenet is that (...)
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  • Mirror notation: Symbol manipulation without inscription manipulation.Roy A. Sorensen - 1999 - Journal of Philosophical Logic 28 (2):141-164.
    Stereotypically, computation involves intrinsic changes to the medium of representation: writing new symbols, erasing old symbols, turning gears, flipping switches, sliding abacus beads. Perspectival computation leaves the original inscriptions untouched. The problem solver obtains the output by merely alters his orientation toward the input. There is no rewriting or copying of the input inscriptions; the output inscriptions are numerically identical to the input inscriptions. This suggests a loophole through some of the computational limits apparently imposed by physics. There can be (...)
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  • John Anderson’s development of (situational) realism and its bearing on psychology today.Fiona J. Hibberd - 2009 - History of the Human Sciences 22 (4):63-92.
    In 1927, the Scottish philosopher John Anderson arrived in Australia to take up the chair of Philosophy at the University of Sydney. By the late 1930s, the ‘macrostructure’ of his realist system was in place. It includes a theory of process and a substantial metaphysics, one that opposes positivism, linguistic philosophy and all forms of idealism. However, beyond Australia it remains largely unknown, despite its bearing on a number of current issues in psychology and the social sciences generally. This article (...)
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  • Phenomenology and psychophysics.Steven Horst - 2005 - Phenomenology and the Cognitive Sciences 4 (1):1-21.
    Recent philosophy of mind has tended to treat.
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  • Alfred Schutz and Herbert Simon: Can their Action Theories Work Together?Marco Castellani - 2013 - Journal for the Theory of Social Behaviour 43 (4):383-404.
    This paper combines Alfred Shultz and Herbert Simon's theories of action in order to understand the grey area between dynamic and completely unstructured decision making better. As a result I have put together a specific scheme of how choice elements are represented from an agent's personal experience, so as to create a bridge between the phenomenological and cognitive-procedural approaches of decision making. I first look at the key points of their original models relating Alfred Schutz's “provinces of meaning” and Herbert (...)
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