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  1. Induction, Conceptual Spaces and AI.Peter Gärdenfors - 1990 - Philosophy of Science 57 (1):78 - 95.
    A computational theory of induction must be able to identify the projectible predicates, that is to distinguish between which predicates can be used in inductive inferences and which cannot. The problems of projectibility are introduced by reviewing some of the stumbling blocks for the theory of induction that was developed by the logical empiricists. My diagnosis of these problems is that the traditional theory of induction, which started from a given (observational) language in relation to which all inductive rules are (...)
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  • Prototype classification and logical classification. The two systems.Eleanor Rosch - 1983 - In E. F. Scholnick (ed.), New Trends in Cognitive Representation. Erlbaum. pp. 73-86.
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  • The origin of concepts.Susan Carey - 2009 - New York: Oxford University Press.
    Only human beings have a rich conceptual repertoire with concepts like tort, entropy, Abelian group, mannerism, icon and deconstruction. How have humans constructed these concepts? And once they have been constructed by adults, how do children acquire them? While primarily focusing on the second question, in The Origin of Concepts , Susan Carey shows that the answers to both overlap substantially. Carey begins by characterizing the innate starting point for conceptual development, namely systems of core cognition. Representations of core cognition (...)
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  • The Principles of Psychology.William James - 1890 - London, England: Dover Publications.
    This first volume contains discussions of the brain, methods for analyzing behavior, thought, consciousness, attention, association, time, and memory.
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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  • (1 other version)The symbol grounding problem.Stevan Harnad - 1990 - Physica D 42:335-346.
    There has been much discussion recently about the scope and limits of purely symbolic models of the mind and about the proper role of connectionism in cognitive modeling. This paper describes the symbol grounding problem : How can the semantic interpretation of a formal symbol system be made intrinsic to the system, rather than just parasitic on the meanings in our heads? How can the meanings of the meaningless symbol tokens, manipulated solely on the basis of their shapes, be grounded (...)
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  • (2 other versions)The Principles of Psychology.William James - 1890 - Les Etudes Philosophiques 11 (3):506-507.
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  • (2 other versions)The Principles of Psychology.William James - 1890 - The Monist 1:284.
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  • (2 other versions)The Principles of Psychology.William James - 1891 - International Journal of Ethics 1 (2):143-169.
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  • Origins of knowledge.Elizabeth S. Spelke, Karen Breinlinger, Janet Macomber & Kristen Jacobson - 1992 - Psychological Review 99 (4):605-632.
    Experiments with young infants provide evidence for early-developing capacities to represent physical objects and to reason about object motion. Early physical reasoning accords with 2 constraints at the center of mature physical conceptions: continuity and solidity. It fails to accord with 2 constraints that may be peripheral to mature conceptions: gravity and inertia. These experiments suggest that cognition develops concurrently with perception and action and that development leads to the enrichment of conceptions around an unchanging core. The experiments challenge claims (...)
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  • The Construction of Reality in the Child.Jean Piaget - 1954 - Routledge.
    First published in 1999. Routledge is an imprint of Taylor & Francis, an informa company.
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  • Conceptual Spaces: The Geometry of Thought.Peter Gärdenfors - 2000 - Tijdschrift Voor Filosofie 64 (1):180-181.
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  • Observational Learning From Internal Feedback: A Simulation of an Adaptive Learning Method.Dorrit Billman & Evan Heit - 1988 - Cognitive Science 12 (4):587-625.
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  • How Homo Became Sapiens: On the Evolution of Thinking.Peter Gärdenfors - 2003 - Oxford University Press.
    In this entertaining work, Peter Grdenfors embarks on an evolutionary detective story to try and solve one of the big mysteries surrounding human existence - how has the modern human being's way of thinking come into existence. Immensely readable and full of humorous insights, the book will be valuable for students in psychology and biology, and accessible to readers of popular science.
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  • (1 other version)Core knowledge.Elizabeth S. Spelke - 2000 - American Psychologist 55 (11):1233-1243.
    Complex cognitive skills such as reading and calculation and complex cognitive achievements such as formal science and mathematics may depend on a set of building block systems that emerge early in human ontogeny and phylogeny. These core knowledge systems show characteristic limits of domain and task specificity: Each serves to represent a particular class of entities for a particular set of purposes. By combining representations from these systems, however human cognition may achieve extraordinary flexibility. Studies of cognition in human infants (...)
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  • Vision.David Marr - 1982 - W. H. Freeman.
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  • The Intelligent Eye.Richard Langton Gregory - 1970 - Mcgraw-Hill.
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  • Mind in Action: Action Representation and the Perception of Biological Motion.Paul Hemeren - 2008 - Dissertation, Lund University
    The ability to understand and communicate about the actions of others is a fundamental aspect of our daily activity. How can we talk about what others are doing? What qualities do different actions have such that they cause us to see them as being different or similar? What is the connection between what we see and the development of concepts and words or expressions for the things that we see? To what extent can two different people see and talk about (...)
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  • The Senses Considered as Perceptual Systems.D. W. Hamlyn & James J. Gibson - 1968 - Philosophical Review 77 (3):361.
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  • The Number Sense: How the Mind Creates Mathematics.Stanislas Dehaene - 1999 - British Journal of Educational Studies 47 (2):201-203.
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  • The Geometry of Meaning: Semantics Based on Conceptual Spaces.Peter Gärdenfors - 2014 - Cambridge, Massachusetts: MIT Press.
    A novel cognitive theory of semantics that proposes that the meanings of words can be described in terms of geometric structures.
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  • What is a domain? Dimensional structures versus meronomic relations.Peter Gärdenfors & Simone Löhndorf - 2013 - Cognitive Linguistics 24 (3).
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  • (1 other version)Action Alters Shape Categories.Linda B. Smith - 2005 - Cognitive Science 29 (4):665-679.
    Two experiments show that action alters the shape categories formed by 2-year-olds. Experiment 1 shows that moving an object horizontally (or vertically) defines the horizontal (or vertical) axis as the main axis of elongation and systematically changes the range of shapes seen as similar. Experiment 2 shows that moving an object symmetrically (or asymmetrically) also alters shape categories. Previous work has shown marked developmental changes in object recognition between 1 and 3 years of age. These results suggest a role for (...)
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  • (1 other version)Core knowledge.Elizabeth S. Spelke & Katherine D. Kinzler - 2007 - Developmental Science 10 (1):89-96.
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  • The Ecological Approach to Visual Perception.Marc H. Bornstein - 1980 - Journal of Aesthetics and Art Criticism 39 (2):203-206.
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  • Locative and Directional Prepositions in Conceptual Spaces: The Role of Polar Convexity.Joost Zwarts & Peter Gärdenfors - 2016 - Journal of Logic, Language and Information 25 (1):109-138.
    We approach the semantics of prepositions from the perspective of conceptual spaces. Focusing on purely spatial locative and directional prepositions, we analyze both types of prepositions in terms of polar coordinates instead of Cartesian coordinates. This makes it possible to demonstrate that the property of convexity holds quite generally in the domain of prepositions of location and direction, supporting the important role that this property plays in conceptual spaces.
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  • The Blank Slate: The Modern Denial of Human Nature.Steven Pinker - 2002 - Tijdschrift Voor Filosofie 66 (4):765-767.
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  • The Foundations of Mind: Origins of Conceptual Thought.Jean Matter Mandler - 2004 - Oup Usa.
    This book offers a theory of how human conceptual life begins, and shows how perceptual information becomes transformed into concepts. Drawing on extensive research, Mandler describes the development of preverbal concept formation, inductive inference, and recall, and explains how these processes form the conceptual basis for language and adult thought.
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  • Dynamics and the Perception of Causal Events.Phillip Wolff - 2006 - Understanding Events.
    We use our knowledge of causal relationships to imagine possible events. We also use these relationships to look deep into the past and infer events that were not witnessed or to infer what can not be directly seen in the present. Knowledge of causal relationships allows us to go beyond the here and now. This chapter introduces a new theoretical framework for how this very basic concept might be mentally represented. It proposes an epistemological theory of causation — that is, (...)
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  • Language Reflects “Core” Cognition: A New Theory About the Origin of Cross-Linguistic Regularities.Brent Strickland - 2017 - Cognitive Science 41 (1):70-101.
    The underlying structures that are common to the world's languages bear an intriguing connection with early emerging forms of “core knowledge” (Spelke & Kinzler, 2007), which are frequently studied by infant researchers. In particular, grammatical systems often incorporate distinctions (e.g., the mass/count distinction) that reflect those made in core knowledge (e.g., the non-verbal distinction between an object and a substance). Here, I argue that this connection occurs because non-verbal core knowledge systematically biases processes of language evolution. This account potentially explains (...)
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  • (1 other version)Inductive Inference and Its Natural Ground: An Essay in Naturalistic Epistemology.Hilary Kornblith - 1993 - MIT Press.
    An account of inductive inference is presented which addresses both its epistemological and metaphysical dimensions. It is argued that inductive knowledge is possible by virtue of the fit between our innate psychological capacities and the causal structure of the world.
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  • Inductive Inference and its Natural Ground-An Essay in Naturalistic Epistemology.Hilary Kornblith & N. Vassallo - 1996 - Epistemologia 19 (1):175-176.
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  • A History of the Mind.Nicholas Humphrey - 1993
    The mind-body problem is widely seen as the great remaining challenge to science and philosophy. Why and how did matter evolve to take on the quality of mind? The author takes the reader to the edges of current knowledge and back to the beginning of time, before mind existed, and in doing so constructs a history of consciousness.
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  • Adjectives really do modify nouns: the incremental and restricted nature of early adjective acquisition.T. Mintz - 2002 - Cognition 84 (3):267-293.
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  • Reuniting perception and conception.Robert L. Goldstone & Lawrence W. Barsalou - 1998 - Cognition 65 (2-3):231-262.
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  • A Dynamic Systems Approach to the Development of Cognition and Action.David Morris, E. Thelen & L. B. Smith - 1997 - International Studies in the Philosophy of Science 11 (2).
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  • Complex First? On the Evolutionary and Developmental Priority of Semantically Thick Words.Markus Werning - 2010 - Philosophy of Science 77 (5):1096-1108.
    The Complex-First Paradox consists in a set of collectively incompatible but individually well-confirmed propositions that regard the evolution, development, and cortical realization of the meanings of concrete nouns. Although these meanings are acquired earlier than those of other word classes, they are semantically more complex and their cortical realizations more widely distributed. For a neurally implemented syntaxsemantics interface, it should thus take more effort to establish a link between a concept and its lexical expression. However, in ontogeny and phylogeny, capabilities (...)
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  • Congitive representations of semantic categories.Eleanor Rosch - 1975 - Journal of Experimental Psychology 104 (3):192-233.
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  • Language Reflects “Core” Cognition: A New Theory About the Origin of Cross‐Linguistic Regularities.Brent Strickland - 2016 - Cognitive Science 40 (6):n/a-n/a.
    The underlying structures that are common to the world's languages bear an intriguing connection with early emerging forms of “core knowledge”, which are frequently studied by infant researchers. In particular, grammatical systems often incorporate distinctions that reflect those made in core knowledge. Here, I argue that this connection occurs because non-verbal core knowledge systematically biases processes of language evolution. This account potentially explains a wide range of cross-linguistic grammatical phenomena that currently lack an adequate explanation. Second, I suggest that developmental (...)
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  • (1 other version)Action Alters Shape Categories.Linda B. Smith - 2005 - Cognitive Science 29 (4):665-679.
    Two experiments show that action alters the shape categories formed by 2-year-olds. Experiment 1 shows that moving an object horizontally (or vertically) defines the horizontal (or vertical) axis as the main axis of elongation and systematically changes the range of shapes seen as similar. Experiment 2 shows that moving an object symmetrically (or asymmetrically) also alters shape categories. Previous work has shown marked developmental changes in object recognition between 1 and 3 years of age. These results suggest a role for (...)
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  • Event Cognition.Gabriel A. Radvansky & Jeffrey M. Zacks - 2014 - Oxford University Press USA.
    Much of our behavior is guided by our understanding of events. We perceive events when we observe the world unfolding around us, participate in events when we act on the world, simulate events that we hear or read about, and use our knowledge of events to solve problems. In this book, Gabriel A. Radvansky and Jeffrey M. Zacks provide the first integrated framework for event cognition and attempt to synthesize the available psychological and neuroscience data surrounding it. This synthesis leads (...)
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