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  1. Le langage et la pensée chez l'enfant.Jean Piaget, J. Rousseau, Mme Piaget, Mlles Deslex, Guex & Ed Claparéde - 1925 - Revue Philosophique de la France Et de l'Etranger 99:148-150.
     
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  • Structure‐Mapping: A Theoretical Framework for Analogy.Dedre Gentner - 1983 - Cognitive Science 7 (2):155-170.
    A theory of analogy must describe how the meaning of an analogy is derived from the meanings of its parts. In the structure‐mapping theory, the interpretation rules are characterized as implicit rules for mapping knowledge about a base domain into a target domain. Two important features of the theory are (a) the rules depend only on syntactic properties of the knowledge representation, and not on the specific content of the domains; and (b) the theoretical framework allows analogies to be distinguished (...)
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  • Rules and representations.Noam Chomsky (ed.) - 1980 - New York: Columbia University Press.
    In Rules and Representations, first published in 1980, Noam Chomsky lays out many of the concepts that have made his approach to linguistics and human cognition so instrumental to our understanding of language.Chomsky arrives at his well-known position that there is a universal grammar, structured in the human mind and common to all human languages. Based on Chomsky's 1978 Woodbridge Lectures, this edition contains revised versions of the lectures and two new essays.
  • Methodological solipsism considered as a research strategy in cognitive psychology.Jerry A. Fodor - 1979 - Behavioral and Brain Sciences 3 (1):63-73.
    The paper explores the distinction between two doctrines, both of which inform theory construction in much of modern cognitive psychology: the representational theory of mind and the computational theory of mind. According to the former, propositional attitudes are to be construed as relations that organisms bear to mental representations. According to the latter, mental processes have access only to formal (nonsemantic) properties of the mental representations over which they are defined.The following claims are defended: (1) That the traditional dispute between (...)
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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 book proposes a theory of human cognitive evolution, drawing from paleontology, linguistics, anthropology, cognitive science, and especially neuropsychology. The properties of humankind's brain, culture, and cognition have coevolved in a tight iterative loop; the main event in human evolution has occurred at the cognitive level, however, mediating change at the anatomical and cultural levels. During the past two million years humans have passed through three major cognitive transitions, each of which has left the human mind with a new way (...)
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  • Toward a theory of instruction.Jerome Seymour Bruner - 1966 - Cambridge, Mass.,: Belknap Press of Harvard University.
    Closely related to this is Mr. Bruner's "evolutionary instrumentalism," his conception of instruction as the means of transmitting the tools and skills of a ...
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  • The Language of Thought.Jerry A. Fodor - 1975 - Harvard University Press.
    INTRODUCTION: TWO KINDS OF RLDUCTIONISM The man who laughs is the one who has not yet heard the terrible news. BERTHOLD BRECHT I propose, in this book, ...
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  • Logique et connaissance scientifique..Jean Piaget (ed.) - 1967 - Paris,: Gallimard.
    Sommaire :- L'épistémologie et ses variétés - Logique - Épistémologie des mathématiques - Épistémologie de la physique - Épistémologie de la biologie - Épistémologie des sciences humaines - Classification des sciences et principaux courants épistémologiques contemporains. Ouvrage collectif complété d'un index et d'une table analytique.
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  • The Varieties of Reference.Gareth Evans - 1982 - Oxford: Oxford University Press. Edited by John Henry McDowell.
  • Children's understanding of counting.Karen Wynn - 1990 - Cognition 36 (2):155-193.
  • The mind and its depths.Richard Wollheim - 1993 - Cambridge, Mass.: Harvard University Press.
    This book brings together Wollheim's broad and abiding concerns to illuminate human thought at its furthest reaches of introspection and expression.
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  • A dynamic systems model of cognitive and language growth.Paul van Geert - 1991 - Psychological Review 98 (1):3-53.
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  • Conceptual Differences Between Children and Adults.Susan Carey - 1988 - Mind and Language 3 (3):167-181.
  • Précis of Relevance: Communication and Cognition.Dan Sperber & Deirdre Wilson - 1987 - Behavioral and Brain Sciences 10 (4):697.
  • Principles of object perception.Elizabeth S. Spelke - 1990 - Cognitive Science 14 (1):29--56.
    Research on human infants has begun to shed light on early-developing processes for segmenting perceptual arrays into objects. Infants appear to perceive objects by analyzing three-dimensional surface arrangements and motions. Their perception does not accord with a general tendency to maximize figural goodness or to attend to nonaccidental geometric relations in visual arrays. Object perception does accord with principles governing the motions of material bodies: Infants divide perceptual arrays into units that move as connected wholes, that move separately from one (...)
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  • On the proper treatment of connectionism.Paul Smolensky - 1988 - Behavioral and Brain Sciences 11 (1):1-23.
    A set of hypotheses is formulated for a connectionist approach to cognitive modeling. These hypotheses are shown to be incompatible with the hypotheses underlying traditional cognitive models. The connectionist models considered are massively parallel numerical computational systems that are a kind of continuous dynamical system. The numerical variables in the system correspond semantically to fine-grained features below the level of the concepts consciously used to describe the task domain. The level of analysis is intermediate between those of symbolic cognitive models (...)
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  • A new abstract code or the new possibility of multiple codes?Annette Karmiloff Smith - 1983 - Behavioral and Brain Sciences 6 (1):149-150.
  • Science and Human Behavior.Burrhus Frederic Skinner - 1963 - New York: Free Press.
    A detailed study of scientific theories of human nature and the possible ways in which human behavior can be predicted and controlled.
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  • From simple associations to systematic reasoning: A connectionist representation of rules, variables, and dynamic binding using temporal synchrony.Lokendra Shastri & Venkat Ajjanagadde - 1993 - Behavioral and Brain Sciences 16 (3):417-51.
    Human agents draw a variety of inferences effortlessly, spontaneously, and with remarkable efficiency – as though these inferences were a reflexive response of their cognitive apparatus. Furthermore, these inferences are drawn with reference to a large body of background knowledge. This remarkable human ability seems paradoxical given the complexity of reasoning reported by researchers in artificial intelligence. It also poses a challenge for cognitive science and computational neuroscience: How can a system of simple and slow neuronlike elements represent a large (...)
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  • Characteristics of dissociable human learning systems.David R. Shanks & Mark F. St John - 1994 - Behavioral and Brain Sciences 17 (3):367-447.
    A number of ways of taxonomizing human learning have been proposed. We examine the evidence for one such proposal, namely, that there exist independent explicit and implicit learning systems. This combines two further distinctions, (1) between learning that takes place with versus without concurrent awareness, and (2) between learning that involves the encoding of instances (or fragments) versus the induction of abstract rules or hypotheses. Implicit learning is assumed to involve unconscious rule learning. We examine the evidence for implicit learning (...)
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  • Characteristics of dissociable human learning systems.David R. Shanks & Mark F. St John - 1994 - Behavioral and Brain Sciences 17 (3):367-395.
    A number of ways of taxonomizing human learning have been proposed. We examine the evidence for one such proposal, namely, that there exist independent explicit and implicit learning systems. This combines two further distinctions, between learning that takes place with versus without concurrent awareness, and between learning that involves the encoding of instances versus the induction of abstract rules or hypotheses. Implicit learning is assumed to involve unconscious rule learning. We examine the evidence for implicit learning derived from subliminal learning, (...)
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  • Intentionality: An Essay in the Philosophy of Mind.John R. Searle - 1983 - New York: Cambridge University Press.
    John Searle's Speech Acts and Expression and Meaning developed a highly original and influential approach to the study of language. But behind both works lay the assumption that the philosophy of language is in the end a branch of the philosophy of the mind: speech acts are forms of human action and represent just one example of the mind's capacity to relate the human organism to the world. The present book is concerned with these biologically fundamental capacities, and, though third (...)
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  • Intentionality and information processing: An alternative model for cognitive science.Kenneth M. Sayre - 1986 - Behavioral and Brain Sciences 9 (1):121-38.
    This article responds to two unresolved and crucial problems of cognitive science: (1) What is actually accomplished by functions of the nervous system that we ordinarily describe in the intentional idiom? and (2) What makes the information processing involved in these functions semantic? It is argued that, contrary to the assumptions of many cognitive theorists, the computational approach does not provide coherent answers to these problems, and that a more promising start would be to fall back on mathematical communication theory (...)
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  • The ability to manipulate speech sounds depends on knowing alphabetic writing.Charles Read, Zhang Yun-Fei, Nie Hong-Yin & Ding Bao-Qing - 1986 - Cognition 24 (1-2):31-44.
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  • Neural networks, nativism, and the plausibility of constructivism.Steven R. Quartz - 1993 - Cognition 48 (3):223-242.
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  • Gavagai!: Or, the Future History of the Animal Language Controversy.David Premack - 1986 - MIT Press.
    In this witty and fascinating book, Premack examines arguments over whether humans are unique because we can talk.
  • U-shaped learning and frequency effects in a multi-layered perception: Implications for child language acquisition.Kim Plunkett & Virginia Marchman - 1991 - Cognition 38 (1):43-102.
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  • Introduction.Steven Pinker & Jacques Mehler - 1988 - Cognition 28 (1-2):1-2.
  • Connectionism and the Mind: an Introduction to Parallel Processing in Networks.David Pickles, William Bechtel & Adele Abrahamson - 1992 - Philosophical Quarterly 42 (166):101.
  • The Child's Conception of Number.J. Piaget - 1953 - British Journal of Educational Studies 1 (2):183-184.
  • Evolution, selection, and cognition: From learning to parameter setting in biology and in the study of language.Massimo Piattelli-Palmarini - 1989 - Cognition 31 (1):1-44.
    Most biologists and some cognitive scientists have independently reached the conclusion that there is no such thing as learning in the traditional “instructive‘ sense. This is, admittedly, a somewhat extreme thesis, but I defend it herein the light of data and theories jointly extracted from biology, especially from evolutionary theory and immunology, and from modern generative grammar. I also point out that the general demise of learning is uncontroversial in the biological sciences, while a similar consensus has not yet been (...)
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  • Problems And Paradigms: Metaphors and the role of genes in development.H. F. Nijhout - 1990 - Bioessays 12 (9):441-446.
    In describing the flawless regularity of developmental processes and the correlation between changes at certain genetic loci and changes in morphology, biologists frequently employ two metaphors: that genes ‘control’ development, and that genomes embody ‘programs’ for development. Although these metaphors have an admirable sharpness and punch, they lead, when taken literally, to highly distorted pictures of developmental processes. A more balanced, and useful, view of the role of genes in development is that they act as suppliers of the material needs (...)
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  • The knowledge level.Allen Newell - 1982 - Artificial Intelligence 18 (1):81-132.
  • Literacy training and speech segmentation.José Morais, Paul Bertelson, Luz Cary & Jesus Alegria - 1986 - Cognition 24 (1-2):45-64.
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  • Multiple perspectives on modularity.J. Marshall - 1984 - Cognition 17 (3):209-242.
  • How to build a baby: II. Conceptual primitives.Jean M. Mandler - 1992 - Psychological Review 99 (4):587-604.
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  • Pretense and representation: The origins of "theory of mind.".Alan M. Leslie - 1987 - Psychological Review 94 (4):412-426.
  • Scientific Discovery: Computational Explorations of the Creative Process. Pat Langley, Herbert A. Simon, Gary L. Bradshaw, Jan M. Zytkow.Malcolm R. Forster - 1990 - Philosophy of Science 57 (2):336-338.
  • Scientific Discovery: Computational Explorations of the Creative Processes.Malcolm R. Forster - 1987 - MIT Press (MA).
    Scientific discovery is often regarded as romantic and creative - and hence unanalyzable - whereas the everyday process of verifying discoveries is sober and more suited to analysis. Yet this fascinating exploration of how scientific work proceeds argues that however sudden the moment of discovery may seem, the discovery process can be described and modeled. Using the methods and concepts of contemporary information-processing psychology (or cognitive science) the authors develop a series of artificial-intelligence programs that can simulate the human thought (...)
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  • Giving up instincts in psychology.Zing Yang Kuo - 1921 - Journal of Philosophy 18 (24):645-664.
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  • A psychology without heredity.Z. Y. Kuo - 1924 - Psychological Review 31 (6):427-448.
  • Dual Space Search During Scientific Reasoning.David Klahr & Kevin Dunbar - 1988 - Cognitive Science 12 (1):1-48.
    The purpose of the two studies reported here was to develop an integrated model of the scientific reasoning process. Subjects were placed in a simulated scientific discovery context by first teaching them how to use an electronic device and then asking them to discover how a hitherto unencountered function worked. To do this task, subjects had to formulate hypotheses based on their prior knowledge, conduct experiments, and evaluate the results of their experiments. In the first study, using 20 adult subjects, (...)
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  • Today the earwig, tomorrow man?David Kirsh - 1991 - Artificial Intelligence 47 (1-3):161-184.
    A startling amount of intelligent activity can be controlled without reasoning or thought. By tuning the perceptual system to task relevant properties a creature can cope with relatively sophisticated environments without concepts. There is a limit, however, to how far a creature without concepts can go. Rod Brooks, like many ecologically oriented scientists, argues that the vast majority of intelligent behaviour is concept-free. To evaluate this position I consider what special benefits accrue to concept-using creatures. Concepts are either necessary for (...)
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  • Micro‐ and Macrodevelopmental Changes in Language Acquisition and Other Representational Systems.Annette Karmiloff-Smith - 1979 - Cognitive Science 3 (2):91-118.
    In this paper, it will be argued that each time a procedure in a representational system is functioning adequately and automatically, the child steps up to a metaprocedural level and considers the procedure as a unit in its own right. Data will be drawn from microdevelopment in children's creation of external memory devices (i.e., changes in representation of a spatial task during a one hour's session) as well as from macrodevelopment in language acquisition (i.e., changes occurring over age in a (...)
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  • Getting developmental differences or studying child development?Annette Karmiloff-Smith - 1981 - Cognition 10 (1-3):151-158.
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  • From meta-processes to conscious access: Evidence from children's metalinguistic and repair data.Annette Karmiloff-Smith - 1986 - Cognition 23 (2):95-147.
  • Evidence Against Empiricist Accounts of the Origins of Numerical Knowledge.Karen Wynn - 1992 - Mind and Language 7 (4):315-332.
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  • Critique of Pure Reason.Wolfgang Schwarz - 1966 - Philosophy and Phenomenological Research 26 (3):449-451.
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  • Critique of pure reason.Immanuel Kant - 1781/1998 - In Elizabeth Schmidt Radcliffe, Richard McCarty, Fritz Allhoff & Anand Vaidya (eds.), Philosophy and Phenomenological Research. Blackwell. pp. 449-451.
    One of the cornerstone books of Western philosophy, Critique of Pure Reason is Kant's seminal treatise, where he seeks to define the nature of reason itself and builds his own unique system of philosophical thought with an approach known as transcendental idealism. He argues that human knowledge is limited by the capacity for perception and attempts a logical designation of two varieties of knowledge: a posteriori, the knowledge acquired through experience; and a priori, knowledge not derived through experience. This accurate (...)
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  • Looking for'Constraints'in Infants'Perceptual-Cognitive Development.Julie C. Rutkowska - 1991 - Mind and Language 6 (3):215-238.