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  1. A critical period for second language acquisition: Evidence from 2/3 million English speakers.Joshua K. Hartshorne, Joshua B. Tenenbaum & Steven Pinker - 2018 - Cognition 177 (C):263-277.
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  • Human infants’ understanding of social imitation: Inferences of affiliation from third party observations.Lindsey J. Powell & Elizabeth S. Spelke - 2018 - Cognition 170 (C):31-48.
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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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  • A precursor of language acquisition in young infants.Jacques Mehler, Peter Jusczyk, Ghislaine Lambertz, Nilofar Halsted, Josiane Bertoncini & Claudine Amiel-Tison - 1988 - Cognition 29 (2):143-178.
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  • From communication to language—a psychological perspective.J. S. Bruner - 1974 - Cognition 3 (3):255-287.
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  • Taking the intentional stance at 12 months of age.György Gergely, Zoltán Nádasdy, Gergely Csibra & Szilvia Bíró - 1995 - Cognition 56 (2):165-193.
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  • Bootstrapping in a language of thought: A formal model of numerical concept learning.Steven T. Piantadosi, Joshua B. Tenenbaum & Noah D. Goodman - 2012 - Cognition 123 (2):199-217.
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  • The acquisition of abstract words by young infants.Elika Bergelson & Daniel Swingley - 2013 - Cognition 127 (3):391-397.
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  • Large number discrimination in 6-month-old infants.Fei Xu & Elizabeth S. Spelke - 2000 - Cognition 74 (1):1-11.
    Six-month-old infants discriminate between large sets of objects on the basis of numerosity when other extraneous variables are controlled, provided that the sets to be discriminated differ by a large ratio (8 vs. 16 but not 8 vs. 12). The capacities to represent approximate numerosity found in adult animals and humans evidently develop in human infants prior to language and symbolic counting.
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  • (1 other version)Computing machinery and intelligence.Alan Turing - 1950 - Mind 59 (236):433-60.
    I propose to consider the question, "Can machines think?" This should begin with definitions of the meaning of the terms "machine" and "think." The definitions might be framed so as to reflect so far as possible the normal use of the words, but this attitude is dangerous, If the meaning of the words "machine" and "think" are to be found by examining how they are commonly used it is difficult to escape the conclusion that the meaning and the answer to (...)
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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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  • The cradle of social knowledge: Infants’ reasoning about caregiving and affiliation.Annie C. Spokes & Elizabeth S. Spelke - 2017 - Cognition 159 (C):102-116.
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  • Prosodic Cues to Word Order: What Level of Representation?Carline Bernard & Judit Gervain - 2012 - Frontiers in Psychology 3.
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  • Objects and attention: the state of the art.Brian J. Scholl - 2001 - Cognition 80 (1-2):1-46.
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  • Intuitions about consciousness: Experimental studies.Joshua Knobe & Jesse Prinz - 2008 - Phenomenology and the Cognitive Sciences 7 (1):67-83.
    When people are trying to determine whether an entity is capable of having certain kinds of mental states, they can proceed either by thinking about the entity from a *functional* standpoint or by thinking about the entity from a *physical* standpoint. We conducted a series of studies to determine how each of these standpoints impact people’s mental state ascriptions. The results point to a striking asymmetry. It appears that ascriptions of states involving phenomenal consciousness are sensitive to physical factors in (...)
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  • Dimensions of mind perception.Heather Gray, Kurt Gray & Daniel Wegner - 2007 - Science 315 (5812):619.
    Participants compared the mental capacities of various human and nonhuman characters via online surveys. Factor analysis revealed two dimensions of mind perception, Experience and Agency. The dimensions predicted different moral judgments but were both related to valuing of mind.
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  • Newborn infants’ sensitivity to perceptual cues to lexical and grammatical words.Rushen Shi, Janet F. Werker & James L. Morgan - 1999 - Cognition 72 (2):B11-B21.
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  • Brief non-symbolic, approximate number practice enhances subsequent exact symbolic arithmetic in children.Daniel C. Hyde, Saeeda Khanum & Elizabeth S. Spelke - 2014 - Cognition 131 (1):92-107.
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  • Navigation as a source of geometric knowledge: Young children’s use of length, angle, distance, and direction in a reorientation task.Sang Ah Lee, Valeria A. Sovrano & Elizabeth S. Spelke - 2012 - Cognition 123 (1):144-161.
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  • Update on “What” and “Where” in Spatial Language: A New Division of Labor for Spatial Terms.Barbara Landau - 2017 - Cognitive Science 41 (S2):321-350.
    In this article, I revisit Landau and Jackendoff's () paper, “What and where in spatial language and spatial cognition,” proposing a friendly amendment and reformulation. The original paper emphasized the distinct geometries that are engaged when objects are represented as members of object kinds, versus when they are represented as figure and ground in spatial expressions. We provided empirical and theoretical arguments for the link between these distinct representations in spatial language and their accompanying nonlinguistic neural representations, emphasizing the “what” (...)
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  • Consistent (but not variable) names as invitations to form object categories: new evidence from 12-month-old infants.Sandra R. Waxman & Irena Braun - 2005 - Cognition 95 (3):B59-B68.
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  • The role of language in acquiring object kind concepts in infancy.Fei Xu - 2002 - Cognition 85 (3):223-250.
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  • Modularity and development: the case of spatial reorientation.Linda Hermer & Elizabeth Spelke - 1996 - Cognition 61 (3):195-232.
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  • Infants selectively encode the goal object of an actor's reach.A. Woodward - 1998 - Cognition 69 (1):1-34.
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  • Action experience alters 3-month-old infants' perception of others' actions.Jessica A. Sommerville, Amanda L. Woodward & Amy Needham - 2005 - Cognition 96 (1):B1-B11.
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  • Spatial knowledge in a young blind child.B. Landau - 1984 - Cognition 16 (3):225-260.
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  • The effect of training on absolute estimation of distance over the ground.Eleanor J. Gibson & Richard Bergman - 1954 - Journal of Experimental Psychology 48 (6):473.
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  • Development of Knowledge of Visual-Tactual Affordances of Substance.Eleanor J. Gibson & Arlene S. Walker - 1984 - Child Development 55 (2):453-460.
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  • A purely geometric module in the rat's spatial representation.Ken Cheng - 1986 - Cognition 23 (2):149-178.
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  • An Odyssey in Learning and Perception.Eleanor J. Gibson - 1994 - Behavior and Philosophy 22 (1):79-83.
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