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  1. Cognitive science.Terry Dartnall, Steve Torrance, Mark Coulson, Stephen Nunn, Brendan Kitts, R. F. Port, T. van Gelder, Donald Peterson & Philip Gerrans - 1996 - Metascience 5 (1):95-166.
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  • Dynamics of Phonological Cognition.Adamantios I. Gafos & Stefan Benus - 2006 - Cognitive Science 30 (5):905-943.
    A fundamental problem in spoken language is the duality between the continuous aspects of phonetic performance and the discrete aspects of phonological competence. We study 2 instances of this problem from the phenomenon of voicing neutralization and vowel harmony. In each case, we present a model where the experimentally observed continuous distinctions are linked to the discreteness of phonological form using the mathematics of nonlinear dynamics.
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  • Multidisciplinary creativity: the case of Herbert A. Simon.Subrata Dasgupta - 2003 - Cognitive Science 27 (5):683-707.
    In the twentieth century, no person epitomized more dramatically the “Renaissance mind” than Herbert A. Simon (1916–2001). In aworking life spanning over 60 years, Simon made seminal contributions to administrative theory, axiomatic foundations of physics, economics, sociology, econometrics, cognitive psychology, logic of scientific discovery, and artificial intelligence. Simon's life of the mind, thus, affords nothing less than a “laboratory” in which to observe and examine at close quarters the phenomenon ofmultidisciplinary creativity. In this paper, we attempt to shed some light (...)
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  • (1 other version)A real‐world rational agent: unifying old and new AI.Paul F. M. J. Verschure & Philipp Althaus - 2003 - Cognitive Science 27 (4):561-590.
    Explanations of cognitive processes provided by traditional artificial intelligence were based on the notion of the knowledge level. This perspective has been challenged by new AI that proposes an approach based on embodied systems that interact with the real‐world. We demonstrate that these two views can be unified. Our argument is based on the assumption that knowledge level explanations can be defined in the context of Bayesian theory while the goals of new AI are captured by using a well established (...)
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  • Reconstructing Physical Symbol Systems.David S. Touretzky & Dean A. Pomerleau - 1994 - Cognitive Science 18 (2):345-353.
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  • A theoretical framework for the study of spatial cognition.Maurizio Tirassa, Antonella Carassa & Giuliano Geminiani - 2000 - In Maurizio Tirassa, Antonella Carassa & Giuliano Geminiani (eds.), [Book Chapter].
    We argue that the locomotion of organisms is better understood as a form of interaction with a subjective environment, rather than as a set of behaviors allegedly amenable to objective descriptions. An organism's interactions with its subjective environment are in turn understandable in terms of its cognitive architecture. We propose a large-scale classification of the possible types of cognitive architectures, giving a sketch of the subjective structure that each of them superimposes on space and of the relevant consequences on locomotion. (...)
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  • Intentional cognitive models with volition.Ammar Qusaibaty & Newton Howard - 2006
    Man’s intellectual capacity remains an enigma, as it is both the subject and the means of analysis. If one is to assume quantum-wave dualism in physics then the state of the world depends on the instruments we use for observation. The “paradoxical” nature of investigating human cognition may thus bear inherent limitations. However, studying cognitive models may be less of a seemingly inconsistent endeavor, if “contradictions” may be classified. In this brief exposition, a variety of aspects related to cognitive models (...)
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  • Searle, subsymbolic functionalism, and synthetic intelligence.Diane Law - 1994
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  • Moralische Roboter: Humanistisch-philosophische Grundlagen und didaktische Anwendungen.André Schmiljun & Iga Maria Schmiljun - 2024 - transcript Verlag.
    Brauchen Roboter moralische Kompetenz? Die Antwort lautet ja. Einerseits benötigen Roboter moralische Kompetenz, um unsere Welt aus Regeln, Vorschriften und Werten zu begreifen, andererseits um von ihrem Umfeld akzeptiert zu werden. Wie aber lässt sich moralische Kompetenz in Roboter implementieren? Welche philosophischen Herausforderungen sind zu erwarten? Und wie können wir uns und unsere Kinder auf Roboter vorbereiten, die irgendwann über moralische Kompetenz verfügen werden? André und Iga Maria Schmiljun skizzieren aus einer humanistisch-philosophischen Perspektive erste Antworten auf diese Fragen und entwickeln (...)
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  • (1 other version)Consciousness and mind in Peirce: distinctions and complementarities.Lucia Santaella - 2021 - Semiotica 2021 (243):105-128.
    In a brief overview this article discusses that, in the multifaceted field of cognitive sciences, the problem of consciousness and mind is far from being resolved. The article then argues that this problem is worked out in careful detail in Peirce’s work. Intelligence, hence mind, for Peirce, is distinct from consciousness. Without being dissociable, they are, in fact, distinct but complementary. Hence, Peirce’s ideas should be recovered not only for the sake of their relevance, but also because cognitivists have a (...)
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  • A Feminist Critique of Artificial Intelligence.Alison Adam - 1995 - European Journal of Women's Studies 2 (3):355-377.
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  • Distributed cognition in home environments : The prospective memory and cognitive practices of older adults.Mattias Forsblad - 2016 - Dissertation, Linköping University
    In this thesis I explore how older people make use of, and interact with, their physical environment in home and near-by settings to manage cognitive situations, specifically prospective memory situations. Older adults have in past research been shown to perform better on prospective memory in real-life settings than what findings in laboratory-like settings predict. An explanation for this paradox is that older adults has a more developed skill of using the environment for prospective memory than younger adults. However, research investigating (...)
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  • From Intelligence to Rationality of Minds and Machines in Contemporary Society: The Sciences of Design and the Role of Information.Wenceslao J. Gonzalez - 2017 - Minds and Machines 27 (3):397-424.
    The presence of intelligence and rationality in Artificial Intelligence and the Internet requires a new context of analysis in which Herbert Simon’s approach to the sciences of the artificial is surpassed in order to grasp the role of information in our contemporary setting. This new framework requires taking into account some relevant aspects. In the historical endeavor of building up AI and the Internet, minds and machines have interacted over the years and in many ways through the interrelation between scientific (...)
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  • Causes of Individual Differences in Animal Exploration and Search.Simon M. Reader - 2015 - Topics in Cognitive Science 7 (3):451-468.
    Numerous studies have documented individual differences in exploratory tendencies and other phenomena related to search, and these differences have been linked to fitness. Here, I discuss the origins of these differences, focusing on how experience shapes animal search and exploration. The origin of individual differences will also depend upon the alternatives to exploration that are available. Given that search and exploration frequently carry significant costs, we might expect individuals to utilize cues indicating the potential net payoffs of exploration versus the (...)
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  • Embodying Social Practice: Dynamically Co-Constituting Social Agency.Brian W. Dunst - unknown
    Theories of cognition and theories of social practices and institutions have often each separately acknowledged the relevance of the other; but seldom have there been consistent and sustained attempts to synthesize these two areas within one explanatory framework. This is precisely what my dissertation aims to remedy. I propose that certain recent developments and themes in philosophy of mind and cognitive science, when understood in the right way, can explain the emergence and dynamics of social practices and institutions. Likewise, the (...)
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  • Leaving the "gothic cathedral" of economics.Massimiliano Ugolini - 2005 - Mind and Society 4 (2):239-252.
    Studies in economics and humanities generally have intrinsic problems that this work illustrates, along with innovations for overcoming them. The main limitations and weak-points of orthodox theory necessitate the use in their stead of other multi-disciplinary approaches, like complexity science, agent-based simulations and artificial life simulations. An example of an artificial life simulation applied in the economics field concerning the exchange process shows the benefits of such new conceptual and methodological instruments.
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  • Outline of a new approach to the nature of mind.Dr Petros A. M. Gelepithis - 2009
    I propose a new approach to the constitutive problem of psychology ‘what is mind?’ The first section introduces modifications of the received scope, methodology, and evaluation criteria of unified theories of cognition in accordance with the requirements of evolutionary compatibility and of a mature science. The second section outlines the proposed theory. Its first part provides empirically verifiable conditions delineating the class of meaningful neural formations and modifies accordingly the traditional conceptions of meaning, concept and thinking. This analysis is part (...)
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  • The secret operations of the mind.Saul Traiger - 1994 - Minds and Machines 4 (3):303-315.
    For my part, my only hope is, that I may contribute a little to the advancement of knowledge, by giving in some particulars a different turn to the speculations of philosophers, and pointing out to them more distinctly those subjects, where alone they can expect assurance and conviction.
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  • Bounded Rationality and Heuristics in Humans and in Artificial Cognitive Systems.Antonio Lieto - 2019 - Isonomía. Revista de Teoría y Filosofía Del Derecho 1 (4):1-21.
    In this paper I will present an analysis of the impact that the notion of “bounded rationality”, introduced by Herbert Simon in his book “Administrative Behavior”, produced in the field of Artificial Intelligence (AI). In particular, by focusing on the field of Automated Decision Making (ADM), I will show how the introduction of the cognitive dimension into the study of choice of a rational (natural) agent, indirectly determined - in the AI field - the development of a line of research (...)
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  • Dismantling standard cognitive science: it’s time the dog has its day.Michele Merritt - 2015 - Biology and Philosophy 30 (6):811-829.
    I argue that the standard paradigm for understanding cognition—namely, that thoughts are representational, internal, and propositional—does not account for a large number of genuinely cognitive processes. Instead, if we adopt a more radical approach, one that treats cognition as a cooperative, dynamic, and interactive process, accounting for shared meaning making and embodied thought becomes much more plausible. To support this thesis, rather than turn to the debate as it has been ongoing among philosophers of mind pertaining solely to human thought, (...)
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  • Situated action, symbol systems and universal computation.Andrew Wells - 1996 - Minds and Machines 6 (1):33-46.
    Vera & Simon (1993a) have argued that the theories and methods known as situated action or situativity theory are compatible with the assumptions and methodology of the physical symbol systems hypothesis and do not require a new approach to the study of cognition. When the central criterion of computational universality is added to the loose definition of a symbol system which Vera and Simon provide, it becomes apparent that there are important incompatibilities between the two approaches such that situativity theory (...)
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  • Computers and computation in cognitive science.Tim van Gelder - 1998 - In T.M. Michalewicz (ed.), Advances in Computational Life Sciences Vol.2: Humans to Proteins. Melbourne: CSIRO Publishing.
    Digital computers play a special role in cognitive science—they may actually be instances of the phenomenon they are being used to model. This paper surveys some of the main issues involved in understanding the relationship between digital computers and cognition. It sketches the role of digital computers within orthodox computational cognitive science, in the light of a recently emerging alternative approach based around dynamical systems.
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  • Fighting human hubris: Intelligence in nonhuman animals and artefacts.Christian Hugo Hoffmann - 2023 - Ethics and Bioethics (in Central Europe) 13 (1-2):1-14.
    100 years ago, the editors of the Journal of Educational Psychology conducted one of the most famous studies of experts’ conceptions of human intelligence. This was reason enough to prompt the question where we stand today with making sense of “intelligence”. In this paper, we argue that we should overcome our anthropocentrism and appreciate the wonders of intelligence in nonhuman and nonbiological animals instead. For that reason, we study two cases of octopus intelligence and intelligence in machine learning systems to (...)
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  • Bounded rationality in problem solving: Guiding search with domain-independent heuristics.Pat Langley, Chris Pearce, Mike Barley & Miranda Emery - 2014 - Mind and Society 13 (1):83-95.
    Humans exhibit the remarkable ability to solve complex, multi-step problems despite their limited capacity for search. We review the standard theory of problem solving, which posits that heuristic guidance makes this possible, but we also note that most studies have emphasized the role of domain-specific heuristics, which are not available for unfamiliar tasks, over more general ones. We describe FPS, a flexible architecture for problem solving that supports a variety of different strategies and heuristics, and we report its use in (...)
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  • Auto-organization and emergence of shared language structure.Edwin Hutchins & Brian Hazlehurst - 2002 - In Angelo Cangelosi & Domenico Parisi (eds.), Simulating the Evolution of Language. Springer Verlag. pp. 279--305.
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  • Turing's Analysis of Computation and Theories of Cognitive Architecture.A. J. Wells - 1998 - Cognitive Science 22 (3):269-294.
    Turing's analysis of computation is a fundamental part of the background of cognitive science. In this paper it is argued that a re‐interpretation of Turing's work is required to underpin theorizing about cognitive architecture. It is claimed that the symbol systems view of the mind, which is the conventional way of understanding how Turing's work impacts on cognitive science, is deeply flawed. There is an alternative interpretation that is more faithful to Turing's original insights, avoids the criticisms made of the (...)
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  • Artificial intelligence and symbols.Chris Moss - 1989 - AI and Society 3 (4):345-356.
    The introduction of massive parallelism and the renewed interest in neural networks gives a new need to evaluate the relationship of symbolic processing and artificial intelligence. The physical symbol hypothesis has encountered many difficulties coping with human concepts and common sense. Expert systems are showing more promise for the early stages of learning than for real expertise. There is a need to evaluate more fully the inherent limitations of symbol systems and the potential for programming compared with training. This can (...)
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  • Representation Recovers Information.Chris Thornton - 2009 - Cognitive Science 33 (8):1383-1412.
    Early agreement within cognitive science on the topic of representation has now given way to a combination of positions. Some question the significance of representation in cognition. Others continue to argue in favor, but the case has not been demonstrated in any formal way. The present paper sets out a framework in which the value of representation use can be mathematically measured, albeit in a broadly sensory context rather than a specifically cognitive one. Key to the approach is the use (...)
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  • Epistemological approach to the process of practice.Richard Dazeley & Beyong Ho Kang - 2008 - Minds and Machines 18 (4):547-567.
    Systems based on symbolic knowledge have performed extremely well in processing reason, yet, remain beset with problems of brittleness in many domains. Connectionist approaches do similarly well in emulating interactive domains, however, have struggled when modelling higher brain functions. Neither of these dichotomous approaches, however, have provided many inroads into the area of human reasoning that psychology and sociology refer to as the process of practice. This paper argues that the absence of a model for the process of practise in (...)
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  • Peirce and the Philosophy of Artificial Intelligence.James Fetzer - 2004 - The Commens Encyclopedia: The Digital Encyclopedia of Peirce Studies.
    A philosophical appraisal of historical positions on the nature of thought, mentality, and intelligence, this survey begins with the views of Descartes, Turing, and Newell and Simon, but includes the work of Haugeland, Fodor, Searle, and other major scholars. The underlying issues concern distinctions between syntax, semantics, and pragmatics, where physical computers seem to be best viewed as mark-manipulating or syntax-processing mechanisms. Alternative accounts have been advanced of what it takes to be a thinking thing, including being Turing machines, symbol (...)
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  • Metaphor between Embodiment and Imaginative Processes.Tiziana Giudice - 2008 - Anthropology and Philosophy 9 (1-2):42-57.
    In this paper I will analyse the relationship between metaphor and imagination. This issue has been recently studied by cognitive linguists who appreciate its importance, while other semantic perspectives neglect it. I will analyse the thesis which affirms that metaphors are based on cognitive components which are not logical-propositional but imaginative: the “image schemata” are recurrent models of corporeal experiences, centres of knowledge organization which structure – in a non-propositional form – an amount of salient information. This information emerges from (...)
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  • Chunks, Schemata, and Retrieval Structures: Past and Current Computational Models.Fernand Gobet, Peter C. R. Lane & Martyn Lloyd-Kelly - 2015 - Frontiers in Psychology 6.
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  • On agent-based modeling and computational social science.Rosaria Conte & Mario Paolucci - 2014 - Frontiers in Psychology 5.
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  • Embodiment in Cognitive Systems: on the Mutual Dependence of Cognition & Robotics.David Vernon, Giorgio Metta & Giulio Sandini - unknown
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  • Case-by-case problem solving.Pei Wang - 2009 - In B. Goertzel, P. Hitzler & M. Hutter (eds.), Proceedings of the Second Conference on Artificial General Intelligence. Atlantis Press. pp. 180--185.
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  • Physics of brain-mind interaction.John C. Eccles - 1990 - Behavioral and Brain Sciences 13 (4):662-663.
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  • Author's Response.John Haugeland - 1979 - Behavioral and Brain Sciences 2 (4):634-635.
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  • Human decision making & the symbolic search space paradigm in AI.Derek Partridge - 1987 - AI and Society 1 (2):103-114.
    In this paper I shall describe the symbolic search space paradigm which is the dominant model for most of AI. Coupled with the mechanisms of logic it yields the predominant methodology underlying expert systems which are the most successful application of AI technology to date. Human decision making, more precisely, expert human decision making is the function that expert systems aspire to emulate, if not surpass.Expert systems technology has not yet proved to be a decisive success — it appears to (...)
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  • Expertise and Error in Diagnostic Reasoning.Paul E. Johnson, Alica S. Duran, Frank Hassebrock, James Moller, Michael Prietula, Paul J. Feltovich & David B. Swanson - 1981 - Cognitive Science 5 (3):235-283.
    An investigation is presented in which a computer simulation model (DIAGNOSER) is used to develop and test predictions for behavior of subjects in a task of medical diagnosis. The first experiment employed a process‐tracing methodology in order to compare hypothesis generation and evaluation behavior of DIAGNOSER with individuals at different levels of expertise (students, trainees, experts). A second experiment performed with only DIAGNOSER identified conditions under which errors in reasoning in the first experiment could be related to interpretation of specific (...)
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  • (1 other version)Intencionalidade: mecanismo e interacção.Porfírio Silva - 2010 - Principia: An International Journal of Epistemology 14 (2):255-278.
    In this essay we try an answer to the question has intentionality to be reduced to anything? We propose that it is possible to reduce any variety of intentionality to a specification of mechanisms (internal organization of the items involved in a given intentional phenomenon) and a historical pattern of interaction (structure of mutual significant relations historically acquired by different items involved in the same intentional phenomenon). We first clarify the meaning of this proposal having recourse to the Ruth Millikan’s (...)
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  • Auditory expectation: The information dynamics of music perception and cognition.Marcus T. Pearce & Geraint A. Wiggins - 2012 - Topics in Cognitive Science 4 (4):625-652.
    Following in a psychological and musicological tradition beginning with Leonard Meyer, and continuing through David Huron, we present a functional, cognitive account of the phenomenon of expectation in music, grounded in computational, probabilistic modeling. We summarize a range of evidence for this approach, from psychology, neuroscience, musicology, linguistics, and creativity studies, and argue that simulating expectation is an important part of understanding a broad range of human faculties, in music and beyond.
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  • Why minds cannot be received, but are created by brains.Włodzisław Duch - 2017 - Scientia et Fides 5 (2):171-198.
    There is no controversy in psychology or brain sciences that brains create mind and consciousness. Doubts and opinions to the contrary are quite frequently expressed in non-scientific publications. In particular the idea that conscious mind is received, rather than created by the brain, is quite often used against “materialistic” understanding of consciousness. I summarize here arguments against such position, show that neuroscience gives coherent view of mind and consciousness, and that this view is intrinsically non-materialistic.
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  • Time scales in motor learning and development.Karl M. Newell, Yeou-Teh Liu & Gottfried Mayer-Kress - 2001 - Psychological Review 108 (1):57-82.
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  • The conceptual range of “cognitivism”.Joseph R. Royce - 1979 - Behavioral and Brain Sciences 2 (4):634-634.
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  • Language and embodiment.Claudia Scorolli & Anna Borghi - 2008 - Anthropology and Philosophy 9 (1-2):7-23.
    The paper focuses on the embodied view of cognition applied to language. First we discuss what we intend when we say that concepts are “embodied”. Then we briefly explain the notion of simulation, addressing also its neuro-physiological basis. In the main part of the paper we will focus on concepts mediated by language, presenting behavioral and neuro-physiological evidence of the action/perception systems activation during words and sentences comprehension.
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  • (1 other version)Ist Simulation Erklärung? Cognitive Science — wissenschaftstheoretisch betrachtet.Gisela Loeck - 1986 - Zeitschrift Für Allgemeine Wissenschaftstheorie 17 (1):14-39.
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  • Remembering without storing: beyond archival models in the science and philosophy of human memory.Ian O'Loughlin - 2014 - Dissertation,
    Models of memory in cognitive science and philosophy have traditionally explained human remembering in terms of storage and retrieval. This tendency has been entrenched by reliance on computationalist explanations over the course of the twentieth century; even research programs that eschew computationalism in name, or attempt the revision of traditional models, demonstrate tacit commitment to computationalist assumptions. It is assumed that memory must be stored by means of an isomorphic trace, that memory processes must divide into conceptually distinct systems and (...)
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  • Book review. [REVIEW]René Jorna - 1994 - Knowledge, Technology & Policy 7 (2):81-86.
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  • (1 other version)Quantum physical symbol systems.Kathryn Blackmond Laskey - 2006 - Journal of Logic, Language and Information 15 (1-2):109-154.
    Because intelligent agents employ physically embodied cognitive systems to reason about the world, their cognitive abilities are constrained by the laws of physics. Scientists have used digital computers to develop and validate theories of physically embodied cognition. Computational theories of intelligence have advanced our understanding of the nature of intelligence and have yielded practically useful systems exhibiting some degree of intelligence. However, the view of cognition as algorithms running on digital computers rests on implicit assumptions about the physical world that (...)
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  • Cuatro problemas irresolubles de la IA simbólica.Manuel Carabantes López - 2015 - Revista de Filosofía (Madrid) 40 (1):81-104.
    Within the strong branch of artificial intelligence, which is aimed at creating thinking machines with intellectual powers like those of man, the most explored research program is symbolic aI, defined as the attempt to use electronic computers to replicate the human mind, either assuming a structural and functional similarity between them, or trying to replicate the behavior produced by the human mind through computational processes that also have an intentional structure but are only instrumentally equivalent. In this paper we show (...)
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