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  1. Jerry A. Fodor, Concepts: Where Cognitive Science Went Wrong. [REVIEW]Robert J. Stainton - 2000 - Synthese 123 (1):131-151.
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  • Children's understanding of counting.Karen Wynn - 1990 - Cognition 36 (2):155-193.
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  • Giving the boot to the bootstrap: How not to learn the natural numbers.Lance J. Rips, Jennifer Asmuth & Amber Bloomfield - 2006 - Cognition 101 (3):B51-B60.
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  • Indexing and the object concept: developing `what' and `where' systems.Alan M. Leslie, Fei Xu, Patrice D. Tremoulet & Brian J. Scholl - 1998 - Trends in Cognitive Sciences 2 (1):10-18.
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  • Indexing and the object concept:” what” and” where” in infancy.Alan M. Leslie, Fei Xu, Patrice D. Tremoulet & Brian J. Scholl - 1998 - Trends in Cognitive Sciences 2 (1):10-18.
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  • Number and natural language.Stephen Laurence & Eric Margolis - 2005 - In Peter Carruthers, Stephen Laurence & Stephen P. Stich (eds.), The Innate Mind: Structure and Contents. New York, US: Oxford University Press USA. pp. 1--216.
    One of the most important abilities we have as humans is the ability to think about number. In this chapter, we examine the question of whether there is an essential connection between language and number. We provide a careful examination of two prominent theories according to which concepts of the positive integers are dependent on language. The first of these claims that language creates the positive integers on the basis of an innate capacity to represent real numbers. The second claims (...)
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  • Wittgenstein on rules and private language: an elementary exposition.Saul A. Kripke - 1982 - Cambridge: Harvard University Press.
    In this book Saul Kripke brings his powerful philosophical intelligence to bear on Wittgenstein's analysis of the notion of following a rule.
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  • Wittgenstein on Rules and Private Language. [REVIEW]G. E. M. Anscombe - 1982 - Ethics 95 (2):342-352.
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  • Wittgenstein on Rules and Private Language.Paul Horwich - 1984 - Philosophy of Science 51 (1):163-171.
    Discussion of Wittgenstein's philosophy has suffered from a scarcity of commentators who understand his work well enough to explain it in their own words. Apart from certain notable exceptions, all too many advocates and critics alike have tended merely to repeat slogans, with approval or ridicule as the case may be. The result has been an unusual degree of polarization and acrimony—some philosophers abandoning normal critical standards, falling under the spell and becoming fanatical supporters; and others taking an equally extreme (...)
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  • Evidence Against Empiricist Accounts of the Origins of Numerical Knowledge.Karen Wynn - 1992 - Mind and Language 7 (4):315-332.
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  • Philosophies of mathematics.Alexander L. George & Daniel Velleman - 2002 - Malden, Mass.: Blackwell. Edited by Daniel J. Velleman.
    This book provides an accessible, critical introduction to the three main approaches that dominated work in the philosophy of mathematics during the twentieth century: logicism, intuitionism and formalism.
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  • Concepts: Where Cognitive Science Went Wrong.Jerry A. Fodor - 1998 - Oxford, GB: Oxford University Press.
    The renowned philosopher Jerry Fodor, a leading figure in the study of the mind for more than twenty years, presents a strikingly original theory on the basic constituents of thought. He suggests that the heart of cognitive science is its theory of concepts, and that cognitive scientists have gone badly wrong in many areas because their assumptions about concepts have been mistaken. Fodor argues compellingly for an atomistic theory of concepts, deals out witty and pugnacious demolitions of rival theories, and (...)
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  • Cross-linguistic regularities in the frequency of number words.S. Dehaene - 1992 - Cognition 43 (1):1-29.
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  • Cognitive Foundations of Arithmetic: Evolution and Ontogenisis.Susan Carey - 2002 - Mind and Language 16 (1):37-55.
    Dehaene (this volume) articulates a naturalistic approach to the cognitive foundations of mathematics. Further, he argues that the ‘number line’ (analog magnitude) system of representation is the evolutionary and ontogenetic foundation of numerical concepts. Here I endorse Dehaene’s naturalistic stance and also his characterization of analog magnitude number representations. Although analog magnitude representations are part of the evolutionary foundations of numerical concepts, I argue that they are unlikely to be part of the ontogenetic foundations of the capacity to represent natural (...)
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  • Cognitive Foundations of Arithmetic: Evolution and Ontogenisis.Susan Carey - 2002 - Mind and Language 16 (1):37-55.
    Dehaene (this volume) articulates a naturalistic approach to the cognitive foundations of mathematics. Further, he argues that the ‘number line’ (analog magnitude) system of representation is the evolutionary and ontogenetic foundation of numerical concepts. Here I endorse Dehaene’s naturalistic stance and also his characterization of analog magnitude number representations. Although analog magnitude representations are part of the evolutionary foundations of numerical concepts, I argue that they are unlikely to be part of the ontogenetic foundations of the capacity to represent natural (...)
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  • Wittgenstein on rules and private language.Saul A. Kripke - 1982 - Revue Philosophique de la France Et de l'Etranger 173 (4):496-499.
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  • Concepts: Where Cognitive Science Went Wrong, by Jerry A. Fodor. [REVIEW]R. De Clercq - 2000 - Tijdschrift Voor Filosofie 62 (3):609-612.
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  • Philosophies of Mathematics.Alexander George & Daniel J. Velleman - 2004 - Philosophical Quarterly 54 (214):194-196.
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  • What makes us Smart? Core knowledge and natural language.Elizabeth S. Spelke - 2003 - In Dedre Getner & Susan Goldin-Meadow (eds.), Language in Mind: Advances in the Study of Language and Thought. MIT Press. pp. 277--311.
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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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