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  1. The Effects of Feature-Label-Order and Their Implications for Symbolic Learning.Michael Ramscar, Daniel Yarlett, Melody Dye, Katie Denny & Kirsten Thorpe - 2010 - Cognitive Science 34 (6):909-957.
    Symbols enable people to organize and communicate about the world. However, the ways in which symbolic knowledge is learned and then represented in the mind are poorly understood. We present a formal analysis of symbolic learning—in particular, word learning—in terms of prediction and cue competition, and we consider two possible ways in which symbols might be learned: by learning to predict a label from the features of objects and events in the world, and by learning to predict features from a (...)
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  • Language as shaped by the brain.Morten H. Christiansen & Nick Chater - 2008 - Behavioral and Brain Sciences 31 (5):489-509.
    It is widely assumed that human learning and the structure of human languages are intimately related. This relationship is frequently suggested to derive from a language-specific biological endowment, which encodes universal, but communicatively arbitrary, principles of language structure (a Universal Grammar or UG). How might such a UG have evolved? We argue that UG could not have arisen either by biological adaptation or non-adaptationist genetic processes, resulting in a logical problem of language evolution. Specifically, as the processes of language change (...)
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  • (1 other version)Against compositionality: The case of adjectives.Ran Lahav - 1989 - Philosophical Studies 57 (3):261 - 279.
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  • Achieving incremental semantic interpretation through contextual representation.Julie C. Sedivy, Michael K. Tanenhaus, Craig G. Chambers & Gregory N. Carlson - 1999 - Cognition 71 (2):109-147.
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  • Learning biases predict a word order universal.Jennifer Culbertson, Paul Smolensky & Géraldine Legendre - 2012 - Cognition 122 (3):306-329.
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  • The myth of language universals: Language diversity and its importance for cognitive science.Nicholas Evans & Stephen C. Levinson - 2009 - Behavioral and Brain Sciences 32 (5):429-448.
    Talk of linguistic universals has given cognitive scientists the impression that languages are all built to a common pattern. In fact, there are vanishingly few universals of language in the direct sense that all languages exhibit them. Instead, diversity can be found at almost every level of linguistic organization. This fundamentally changes the object of enquiry from a cognitive science perspective. This target article summarizes decades of cross-linguistic work by typologists and descriptive linguists, showing just how few and unprofound the (...)
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • The Compositionality Papers.Zoltán Gendler Szabó - 2004 - Mind 113 (450):340-344.
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  • (1 other version)Prototype theory and compositionality.H. Kamp & B. Partee - 1995 - Cognition 57 (2):129-191.
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  • Social interaction and the development of definite descriptions.Werner Deutsch & Thomas Pechmann - 1982 - Cognition 11 (2):159-184.
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  • Principles of categorization [Електронний ресурс]/Eleonora Rosch.E. Rosch - 1978 - In Eleanor Rosch & Barbara Bloom Lloyd (eds.), Cognition and Categorization. Lawrence Elbaum Associates.
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  • Semantic Analysis.Virgil C. Aldrich - 1962 - Philosophical Review 71 (2):243.
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  • Sociolinguistic Patterns.William Labov - 1975 - Foundations of Language 13 (2):251-265.
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  • (1 other version)Prototype theory and compositionality.H. Kamp - 1995 - Cognition 57 (2):129-191.
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  • (2 other versions)Semantic Analysis.Paul Benacerraf - 1960 - Journal of Symbolic Logic 29 (4):193-194.
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  • Universals of Language.J. H. GREENBERG - 1963
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  • Grammatical number processing and anticipatory eye movements are not tightly coordinated in English spoken language comprehension.Brian Riordan, Melody Dye & Michael N. Jones - 2015 - Frontiers in Psychology 6.
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