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Artificial Intelligence: Its Scope and Limits

Kluwer Academic Publishers (1990)

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  1. Thought, Sign and Machine - the Idea of the Computer Reconsidered.Niels Ole Finnemann - 1999 - Copenhagen: Danish Original: Akademisk Forlag 1994. Tanke, Sprog og Maskine..
    Throughout what is now the more than 50-year history of the computer many theories have been advanced regarding the contribution this machine would make to changes both in the structure of society and in ways of thinking. Like other theories regarding the future, these should also be taken with a pinch of salt. The history of the development of computer technology contains many predictions which have failed to come true and many applications that have not been foreseen. While we must (...)
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  • Computers Are Syntax All the Way Down: Reply to Bozşahin.William J. Rapaport - 2019 - Minds and Machines 29 (2):227-237.
    A response to a recent critique by Cem Bozşahin of the theory of syntactic semantics as it applies to Helen Keller, and some applications of the theory to the philosophy of computer science.
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  • On a Cognitive Model of Semiosis.Piotr Konderak - 2015 - Studies in Logic, Grammar and Rhetoric 40 (1):129-144.
    What is the class of possible semiotic systems? What kinds of systems could count as such systems? The human mind is naturally considered the prototypical semiotic system. During years of research in semiotics the class has been broadened to include i.e. living systems like animals, or even plants. It is suggested in the literature on artificial intelligence that artificial agents are typical examples of symbol-processing entities. It also seems that semiotic processes are in fact cognitive processes. In consequence, it is (...)
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  • Creativity: A framework for research.Margaret A. Boden - 1994 - Behavioral and Brain Sciences 17 (3):558-570.
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  • Creativity, madness, and extra strong Al.K. W. M. Fulford - 1994 - Behavioral and Brain Sciences 17 (3):542-543.
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  • Précis of The creative mind: Myths and mechanisms.Margaret A. Boden - 1994 - Behavioral and Brain Sciences 17 (3):519-531.
    What is creativity? One new idea may be creative, whereas another is merely new: What's the difference? And how is creativity possible? These questions about human creativity can be answered, at least in outline, using computational concepts. There are two broad types of creativity, improbabilist and impossibilist. Improbabilist creativity involves novel combinations of familiar ideas. A deeper type involves METCS: the mapping, exploration, and transformation of conceptual spaces. It is impossibilist, in that ideas may be generated which – with respect (...)
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  • Disenshrining the Cartesian self.Barbara A. C. Saunders - 1993 - Behavioral and Brain Sciences 16 (1):77-78.
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  • Theories of mind: Some methodological/conceptual problems and an alternative approach.Sam S. Rakover - 1993 - Behavioral and Brain Sciences 16 (1):73-74.
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  • Representational development and theory-of-mind computations.David C. Plaut & Annette Karmiloff-Smith - 1993 - Behavioral and Brain Sciences 16 (1):70-71.
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  • Knowledge of the psychological states of self and others is not only theory-laden but also data-driven.Chris Moore & John Barresi - 1993 - Behavioral and Brain Sciences 16 (1):61-62.
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  • Even a theory-theory needs information processing: ToMM, an alternative theory-theory of the child's theory of mind.Alan M. Leslie, Tim P. German & Francesca G. Happé - 1993 - Behavioral and Brain Sciences 16 (1):56-57.
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  • Qualitative characteristics, type materialism and the circularity of analytic functionalism.Christopher S. Hill - 1993 - Behavioral and Brain Sciences 16 (1):50-51.
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  • The anthropology of folk psychology.Steven Daniel - 1993 - Behavioral and Brain Sciences 16 (1):38-39.
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  • Categorization, theories and folk psychology.Nick Chater - 1993 - Behavioral and Brain Sciences 16 (1):37-37.
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  • There's more to mental states than meets the inner “l”.Kimberly Wright Cassidy - 1993 - Behavioral and Brain Sciences 16 (1):34-35.
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  • The concept of intentionality: Invented or innate?Simon Baron-Cohen - 1993 - Behavioral and Brain Sciences 16 (1):29-30.
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  • How we know our minds: The illusion of first-person knowledge of intentionality.Alison Gopnik - 1993 - Behavioral and Brain Sciences 16 (1):1-14.
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  • On the evolution of representational capacities.Merlin Donald - 1993 - Behavioral and Brain Sciences 16 (4):775-791.
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  • Language, thought and consciousness in the modern mind.Evan Thompson - 1993 - Behavioral and Brain Sciences 16 (4):770-771.
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  • Archaeological evidence for mimetic mind and culture.Thomas Wynn - 1993 - Behavioral and Brain Sciences 16 (4):774-774.
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  • Correct data base: Wrong model?Alexander Marshack - 1993 - Behavioral and Brain Sciences 16 (4):767-768.
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  • Apes have mimetic culture.Robert W. Mitchell & H. Lyn Miles - 1993 - Behavioral and Brain Sciences 16 (4):768-768.
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  • Archaeology and the cognitive sciences in the study of human evolution.Philip G. Chase - 1993 - Behavioral and Brain Sciences 16 (4):752-753.
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  • The place of cognition in human evolution.Alan Costall - 1993 - Behavioral and Brain Sciences 16 (4):755-755.
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  • Putting cognitive carts before linguistic horses.Derek Bickerton - 1993 - Behavioral and Brain Sciences 16 (4):749-750.
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  • “Pop science” versus understanding the emergence of the modern mind.C. Loring Brace - 1993 - Behavioral and Brain Sciences 16 (4):750-751.
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  • Common sense, functional theories and knowledge of the mind.Max Velmans - 1993 - Behavioral and Brain Sciences 16 (1):85-86.
    A commentary on a target article by Alison Gopnik (1993) How we know our minds: the illusion of first-person knowledge of intentionality. Focusing on evidence of how children acquire a theory of mind, this commentary argues that there are internal inconsistencies in theories that both argue for the functional role of conscious experiences and the irreducibility of those experiences to third-person viewable information processing.
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  • Intentionality, theoreticity and innateness.Deborah Zaitchik & Jerry Samet - 1993 - Behavioral and Brain Sciences 16 (1):87-89.
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  • Where's the person?Michael Tomasello - 1993 - Behavioral and Brain Sciences 16 (1):84-85.
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  • Précis of Origins of the modern mind: Three stages in the evolution of culture and cognition.Merlin Donald - 1993 - Behavioral and Brain Sciences 16 (4):737-748.
    This bold and brilliant book asks the ultimate question of the life sciences: How did the human mind acquire its incomparable power? In seeking the answer, Merlin Donald traces the evolution of human culture and cognition from primitive apes to the era of artificial intelligence, and presents an original theory of how the human mind evolved from its presymbolic form. In the emergence of modern human culture, Donald proposes, there were three radical transitions. During the first, our bipedal but still (...)
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  • Semiotic Systems, Computers, and the Mind: How Cognition Could Be Computing.William J. Rapaport - 2012 - International Journal of Signs and Semiotic Systems 2 (1):32-71.
    In this reply to James H. Fetzer’s “Minds and Machines: Limits to Simulations of Thought and Action”, I argue that computationalism should not be the view that (human) cognition is computation, but that it should be the view that cognition (simpliciter) is computable. It follows that computationalism can be true even if (human) cognition is not the result of computations in the brain. I also argue that, if semiotic systems are systems that interpret signs, then both humans and computers are (...)
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  • Origins of the Qualitative Aspects of Consciousness: Evolutionary Answers to Chalmers' Hard Problem.Jonathan Y. Tsou - 2012 - In Liz Stillwaggon Swan (ed.), Origins of mind. New York: Springer. pp. 259--269.
    According to David Chalmers, the hard problem of consciousness consists of explaining how and why qualitative experience arises from physical states. Moreover, Chalmers argues that materialist and reductive explanations of mentality are incapable of addressing the hard problem. In this chapter, I suggest that Chalmers’ hard problem can be usefully distinguished into a ‘how question’ and ‘why question,’ and I argue that evolutionary biology has the resources to address the question of why qualitative experience arises from brain states. From this (...)
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  • The philosophy of computer science.Raymond Turner - 2013 - Stanford Encyclopedia of Philosophy.
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  • Intentionality, mind and folk psychology.Winand H. Dittrich & Stephen E. G. Lea - 1993 - Behavioral and Brain Sciences 16 (1):39-41.
    The comment addresses central issues of a "theory theory" approach as exemplified in Gopnik' and Goldman's BBS-articles. Gopnik, on the one hand, tries to demonstrate that empirical evidence from developmental psychology supports the view of a "theory theory" in which common sense beliefs are constructed to explain ourselves and others. Focusing the informational processing routes possibly involved we would like to argue that his main thesis (e.g. idea of intentionality as a cognitive construct) lacks support at least for two reasons: (...)
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  • William H. Calvin, how brains think: Evolving intelligence, then and now. [REVIEW]Charles E. M. Dunlop - 1999 - Minds and Machines 9 (2):276-280.
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  • The psychology of folk psychology.Alvin I. Goldman - 1993 - Behavioral and Brain Sciences 16 (1):15-28.
    The central mission of cognitive science is to reveal the real nature of the mind, however familiar or foreign that nature may be to naive preconceptions. The existence of naive conceptions is also important, however. Prescientific thought and language contain concepts of the mental, and these concepts deserve attention from cognitive science. Just as scientific psychology studies folk physics (McCloskey 1983, Hayes 1985), viz., the common understanding (or misunderstanding) of physical phenomena, so it must study folk psychology, the common understanding (...)
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  • Minds as connoting systems: Logic and the language of thought. [REVIEW]V. Rantala & Tere Vaden - 1997 - Erkenntnis 46 (3):315-334.
    The principal aim of this essay is to discuss some logical features of the so-called Classical model of cognitive architecture as it is advocated by J. Fodor and Z. Pylyshyn in their much discussed article 'Connectionism and Cognitive Architecture: A Critical Analysis'. It is pointed out that their structural assumptions have consequences of a logical kind which call into question the view that the Classical architecture (in their sense) can be employed to model human cognition. It seems that the consequences (...)
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  • Logical reasoning and domain specificity: A critique of the social exchange theory of reasoning.Paul Sheldon Davies, James H. Fetzer & Thomas R. Foster - 1995 - Biology and Philosophy 10 (1):1-37.
    The social exchange theory of reasoning, which is championed by Leda Cosmides and John Tooby, falls under the general rubric “evolutionary psychology” and asserts that human reasoning is governed by content-dependent, domain-specific, evolutionarily-derived algorithms. According to Cosmides and Tooby, the presumptive existence of what they call “cheater-detection” algorithms disconfirms the claim that we reason via general-purpose mechanisms or via inductively acquired principles. We contend that the Cosmides/Tooby arguments in favor of domain-specific algorithms or evolutionarily-derived mechanisms fail and that the notion (...)
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  • The creative mind versus the creative computer.Robert W. Weisberg - 1994 - Behavioral and Brain Sciences 17 (3):555-557.
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  • Qualities and relations in folk theories of mind.Lance J. Rips - 1993 - Behavioral and Brain Sciences 16 (1):75-76.
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  • Symbolic invention: The missing (computational) link?Andy Clark - 1993 - Behavioral and Brain Sciences 16 (4):753-754.
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  • From mimesis to synthesis.Jerome A. Feldman - 1993 - Behavioral and Brain Sciences 16 (4):759-759.
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  • The psychologist's fallacy.Philip David Zelazo & Douglas Frye - 1993 - Behavioral and Brain Sciences 16 (1):89-90.
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  • Remarks on intelligence as extended retrieval and its implications.Zhengxin Chen - 1992 - AI and Society 6 (4):367-373.
    The current understanding of the important role of information or knowledge retrieval to artificial intelligence is not adequate. In this article, three study areas related to retrieval are summarized and commented. The need for a more systematic and unified way of studying retrieval and intelligence is argued. A brief outline for future study is suggested, some philosophical and social implications of this study are also discussed.
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  • Thinking and computing: Computers as special kinds of signs. [REVIEW]James H. Fetzer - 1997 - Minds and Machines 7 (3):345-364.
    Cognitive science has been dominated by the computational conception that cognition is computation across representations. To the extent to which cognition as computation across representations is supposed to be a purposive, meaningful, algorithmic, problem-solving activity, however, computers appear to be incapable of cognition. They are devices that can facilitate computations on the basis of semantic grounding relations as special kinds of signs. Even their algorithmic, problem-solving character arises from their interpretation by human users. Strictly speaking, computers as such — apart (...)
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  • Self-ascription without qualia: A case study.David J. Chalmers - 1993 - Behavioral and Brain Sciences 16 (1):35-36.
    In Section 5 of his interesting article, Goldman suggests that the consideration of imaginary cases can be valuable in the analysis of our psychological concepts. In particular, he argues that we can imagine a system that is isomorphic to us under any functional description, but which lacks qualitative mental states, such as pains and color sensations. Whether or not such a being is empirically possible, it certainly seems to be logically possible, or conceptually coherent. Goldman argues from this possibility to (...)
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  • Creativity, combination, and cognition.Terry Dartnall - 1994 - Behavioral and Brain Sciences 17 (3):537-537.
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  • The birth of an idea.Liane M. Gabora - 1994 - Behavioral and Brain Sciences 17 (3):543-543.
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  • Conscious thought processes and creativity.Maria F. Ippolito - 1994 - Behavioral and Brain Sciences 17 (3):546-547.
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  • Three inferential temptations.Alexander Levine & Georg Schwarz - 1993 - Behavioral and Brain Sciences 16 (1):57-58.
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