Results for 'Susan Carey'

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  1. 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 (...)
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  2. Conceptual Differences Between Children and Adults.Susan Carey - 1988 - Mind and Language 3 (3):167-181.
  3.  81
    Infants' knowledge of objects: beyond object files and object tracking.Susan Carey & Fei Xu - 2001 - Cognition 80 (1-2):179-213.
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  4.  75
    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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  5.  73
    Knowledge acquisition: Enrichment or conceptual change.Susan Carey - 1999 - In Eric Margolis & Stephen Laurence (eds.), Concepts: Core Readings. MIT Press. pp. 459--487.
  6.  12
    A Meta-Analysis of Changes in Brain Activity in Clinical Depression.Susan M. Palmer, Sheila G. Crewther & Leeanne M. Carey - 2014 - Frontiers in Human Neuroscience 8.
  7. Précis of the origin of concepts.Susan Carey - 2011 - Behavioral and Brain Sciences 34 (3):113-124.
    A theory of conceptual development must specify the innate representational primitives, must characterize the ways in which the initial state differs from the adult state, and must characterize the processes through which one is transformed into the other. The Origin of Concepts (henceforth TOOC) defends three theses. With respect to the initial state, the innate stock of primitives is not limited to sensory, perceptual, or sensorimotor representations; rather, there are also innate conceptual representations. With respect to developmental change, conceptual development (...)
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  8. Science and Core Knowledge.Susan Carey & Elizabeth Spelke - 1996 - Philosophy of Science 63 (4):515 - 533.
    While endorsing Gopnik's proposal that studies of the emergence and modification of scientific theories and studies of cognitive development in children are mutually illuminating, we offer a different picture of the beginning points of cognitive development from Gopnik's picture of "theories all the way down." Human infants are endowed with several distinct core systems of knowledge which are theory-like in some, but not all, important ways. The existence of these core systems of knowledge has implications for the joint research program (...)
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  9. Where our number concepts come from.Susan Carey - 2009 - Journal of Philosophy 106 (4):220-254.
  10.  77
    On Learning New Primitives in the Language of Thought: Reply to Rey.Susan Carey - 2014 - Mind and Language 29 (2):133-166.
    A theory of conceptual development must provide an account of the innate representational repertoire, must characterize how these initial representations differ from the adult state, and must provide an account of the processes that transform the initial into mature representations. In Carey, 2009 (The Origin of Concepts), I defend three theses: 1) the initial state includes rich conceptual representations, 2) nonetheless, there are radical discontinuities between early and later developing conceptual systems, 3) Quinean bootstrapping is one learning mechanism that (...)
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  11.  12
    Infants' knowledge of objects: beyond object files and object tracking.Susan Carey & Fei Xu - 2001 - Cognition 80 (1-2):179-213.
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  12.  19
    Do analog number representations underlie the meanings of young children’s verbal numerals?Susan Carey, Anna Shusterman, Paul Haward & Rebecca Distefano - 2017 - Cognition 168 (C):243-255.
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  13.  15
    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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  14. The origin and evolution of everyday concepts.Susan Carey - 1992 - In R. Giere & H. Feigl (eds.), Cognitive Models of Science. University of Minnesota Press. pp. 15--89.
  15.  70
    Functional explanation and the function of explanation.Tania Lombrozo & Susan Carey - 2006 - Cognition 99 (2):167-204.
    Teleological explanations (TEs) account for the existence or properties of an entity in terms of a function: we have hearts because they pump blood, and telephones for communication. While many teleological explanations seem appropriate, others are clearly not warranted-for example, that rain exists for plants to grow. Five experiments explore the theoretical commitments that underlie teleological explanations. With the analysis of [Wright, L. (1976). Teleological Explanations. Berkeley, CA: University of California Press] from philosophy as a point of departure, we examine (...)
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  16.  56
    One, two, three, four, nothing more: An investigation of the conceptual sources of the verbal counting principles.Mathieu Le Corre & Susan Carey - 2007 - Cognition 105 (2):395-438.
  17.  45
    Why Theories of Concepts Should Not Ignore the Problem of Acquisition.Susan Carey - 2015 - Disputatio 7 (41):113-163.
    Why Theories of Concepts Should Not Ignore the Problem of Acquisition.
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  18.  10
    Speaking of objects, as such.Susan Carey - 1993 - In George A. Miller & Gilbert Harman (eds.), Conceptions of the Human Mind: Essays in Honor of George A. Miller. L. Erlbaum Associates. pp. 139.
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  19.  41
    Infants' ability to use object kind information for object individuation.Fei Xu, Susan Carey & Jenny Welch - 1999 - Cognition 70 (2):137-166.
  20.  23
    Perception, ontology, and word meaning.Susan Carey & Elizabeth S. Spelke - 1992 - Cognition 45 (1):101-107.
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  21.  54
    The emergence of reasoning by the disjunctive syllogism in early childhood.Shilpa Mody & Susan Carey - 2016 - Cognition 154 (C):40-48.
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  22.  49
    Individuation of objects and events: a developmental study.Laura Wagner & Susan Carey - 2003 - Cognition 90 (2):163-191.
  23.  20
    Do nonlinguistic creatures deploy mental symbols for logical connectives in reasoning?Susan Carey - 2023 - Behavioral and Brain Sciences 46:e267.
    Some nonlinguistic systems of representation display some of the six features of a language-of-thought (LoT) delineated by Quilty-Dunn et al. But they conjecture something stronger: That all six features cooccur homeostatically in nonlinguistic thought. Here I argue that there is no good evidence for nonlinguistic deductive reasoning involving the disjunctive syllogism. Animals and prelinguistic children probably do not make logical inferences.
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  24.  38
    How counting represents number: What children must learn and when they learn it.Barbara W. Sarnecka & Susan Carey - 2008 - Cognition 108 (3):662-674.
  25.  33
    On differentiation: A case study of the development of the concepts of size, weight, and density.Carol Smith, Susan Carey & Marianne Wiser - 1985 - Cognition 21 (3):177-237.
  26.  11
    Zafimaniry: An Understanding of What Is Passed on from Parents to Children: A Cross-Cultural Investigation.Maurice Bloch, Susan Carey & Gregg Solomon - 2001 - Journal of Cognition and Culture 1 (1):43-68.
    Children and adults from a remote Zafimaniry village in eastern Madagascar were probed for their intuitive understanding of the biological inheritance of bodily features. They were told a story about a baby adopted at birth, and were asked whether, when grown, he would be more likely to resemble his birth parents or his adoptive parents in bodily traits, beliefs, preferences, temperaments, and skills. In spite of the fact that the Zafimaniry, like other Southeast Asian and Malagasy peoples, profess explicit beliefs (...)
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  27. Concept innateness, concept continuity, and bootstrapping.Susan Carey - 2011 - Behavioral and Brain Sciences 34 (3):152.
    The commentators raised issues relevant to all three important theses of The Origin of Concepts (henceforth TOOC). Some questioned the very existence of innate representational primitives, and others questioned my claims about their richness and whether they should be thought of as concepts. Some questioned the existence of conceptual discontinuity in the course of knowledge acquisition and others argued that discontinuity is much more common than was portrayed in TOOC. Some raised issues with my characterization of Quinian bootstrapping, and others (...)
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  28.  40
    Developmental changes within the core of artifact concepts.Adee Matan & Susan Carey - 2001 - Cognition 78 (1):1-26.
  29.  48
    On the limits of infants' quantification of small object arrays.Lisa Feigenson & Susan Carey - 2005 - Cognition 97 (3):295-313.
  30.  32
    Ontological categories guide young children's inductions of word meaning: Object terms and substance terms.Nancy N. Soja, Susan Carey & Elizabeth S. Spelke - 1991 - Cognition 38 (2):179-211.
  31.  38
    You cannot find what you are not looking for: Population differences in relational reasoning are sometimes differences in inductive biases alone.Ivan G. Kroupin & Susan E. Carey - 2022 - Cognition 222 (C):105007.
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  32. Infants' representations of material entities.Rebecca Rosenberg & Carey & Susan - 2009 - In Bruce M. Hood & Laurie Santos (eds.), The origins of object knowledge. Oxford: Oxford University Press.
  33.  22
    Language of Thought: A Case Study of the Evolution and Development of Representational Resources.Susan Carey - 2001 - In João Branquinho (ed.), The Foundations of Cognitive Science. Oxford: Clarendon Press. pp. 23.
  34.  21
    The making of an abstract concept: Natural number.Susan Carey - 2010 - In Denis Mareschal, Paul Quinn & Stephen E. G. Lea (eds.), The Making of Human Concepts. Oxford University Press. pp. 265.
  35. The representation of number in natural language syntax and in language of thought: A case study of the evolution and development of representational resources.Susan Carey - 2001 - In João Branquinho (ed.), The Foundations of Cognitive Science. Oxford: Clarendon Press. pp. 23--53.
  36. The Origin of Concepts, chapter.Susan Carey - manuscript
     
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  37.  27
    The emergence of kind concepts: a rejoinder to Needham and Baillargeon.Fei Xu & Susan Carey - 2000 - Cognition 74 (3):285-301.
  38.  52
    Grey parrot number acquisition: The inference of cardinal value from ordinal position on the numeral list.Irene M. Pepperberg & Susan Carey - 2012 - Cognition 125 (2):219-232.
  39.  29
    The emergence of kind concepts: a rejoinder to Needham and Baillargeon.Fei Xu & Susan Carey - 2000 - Cognition 74 (3):285-301.
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  40.  38
    Objects are individuals but stuff doesn't count: perceived rigidity and cohesiveness influence infants' representations of small groups of discrete entities.Gavin Huntley-Fenner, Susan Carey & Andrea Solimando - 2002 - Cognition 85 (3):203-221.
  41.  36
    Reasoning about ‘irrational’ actions: When intentional movements cannot be explained, the movements themselves are seen as the goal.Adena Schachner & Susan Carey - 2013 - Cognition 129 (2):309-327.
  42.  25
    The long and the short of it: On the nature and origin of functional overlap between representations of space and time.Mahesh Srinivasan & Susan Carey - 2010 - Cognition 116 (2):217-241.
  43.  33
    Infants learn a rule predicated on the relation same but fail to simultaneously learn a rule predicated on the relation different.Jean-Rémy Hochmann, Susan Carey & Jacques Mehler - 2018 - Cognition 177 (C):49-57.
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  44. The essence of artifacts: Developing the design stance.Deborah Kelemen & Susan Carey - 2007 - In Eric Margolis & Stephen Laurence (eds.), Creations of the Mind: Theories of Artifacts and Their Representaion. Oxford University Press. pp. 212--230.
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  45. One, two, three, four, nothing more: How numerals are mapped onto core knowledge of number in the construction of the counting principles.Matthew Le Corre & Susan Carey - 2007 - Cognition 105 (2):395-438.
     
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  46.  31
    The role of inferences about referential intent in word learning: Evidence from autism.Melissa Allen Preissler & Susan Carey - 2005 - Cognition 97 (1):B13-B23.
  47.  41
    Executive function depletion in children and its impact on theory of mind.Lindsey J. Powell & Susan Carey - 2017 - Cognition 164 (C):150-162.
  48.  43
    The development of principled connections and kind representations.Paul Haward, Laura Wagner, Susan Carey & Sandeep Prasada - 2018 - Cognition 176 (C):255-268.
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  49.  71
    Math schemata and the origins of number representations.Susan Carey - 2008 - Behavioral and Brain Sciences 31 (6):645-646.
    The contrast Rips et al. draw between and approaches to understanding the origin of the capacity for representing natural number is a false dichotomy. Its plausibility depends upon the sketchiness of the authors' own proposal. At least some of the proposals they characterize as bottom-up are worked-out versions of the very top-down position they advocate. Finally, they deny that the structures that these putative bottom-up proposals consider to be sources of natural number are even precursors of concepts of natural number. (...)
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  50.  11
    Specifying the domain-general resources that contribute to conceptual construction: Evidence from the child’s acquisition of vitalist biology.Nathan Tardiff, Igor Bascandziev, Susan Carey & Deborah Zaitchik - 2020 - Cognition 195 (C):104090.
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