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  1. Linguistic and cognitive prominence in anaphor resolution: topic, contrastive focus and pronouns.H. Cowles, Matthew Walenski, Robert Kluender, Markus Knauff, Artur S. Davila Garcez, Dov M. Gabbay, Oliver Ray, John Woods, Robin Clark & Murray Grossman - 2007 - Topoi 26 (1):3-18.
    This paper examines the role that linguistic and cognitive prominence play in the resolution of anaphor–antecedent relationships. In two experiments, we found that pronouns are immediately sensitive to the cognitive prominence of potential antecedents when other antecedent selection cues are uninformative. In experiment 1, results suggest that despite their theoretical dissimilarities, topic and contrastive focus both serve to enhance cognitive prominence. Results from experiment 2 suggest that the contrastive prosody appropriate for focus constructions may also play an important role in (...)
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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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  • Essays in Logical Semantics.John Hawthorn - 1986 - Springer.
    Recent developments in the semantics of natural language seem to lead to a genuine synthesis of ideas from linguistics and logic, producing novel concepts and questions of interest to both parent disciplines. This book is a collection of essays on such new topics, which have arisen over the past few years. Taking a broad view, developments in formal semantics over the past decade can be seen as follows. At the beginning stands Montague's pioneering work, showing how a rigorous semantics can (...)
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  • The meaning of 'most': Semantics, numerosity and psychology.Paul Pietroski, Jeffrey Lidz, Tim Hunter & Justin Halberda - 2009 - Mind and Language 24 (5):554-585.
    The meaning of 'most' can be described in many ways. We offer a framework for distinguishing semantic descriptions, interpreted as psychological hypotheses that go beyond claims about sentential truth conditions, and an experiment that tells against an attractive idea: 'most' is understood in terms of one-to-one correspondence. Adults evaluated 'Most of the dots are yellow', as true or false, on many trials in which yellow dots and blue dots were displayed for 200 ms. Displays manipulated the ease of using a (...)
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  • On a generalization of quantifiers.Andrzej Mostowski - 1957 - Fundamenta Mathematicae 44 (2):12--36.
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  • A semantic characterization of natural language determiners.Edward L. Keenan & Jonathan Stavi - 1986 - Linguistics and Philosophy 9 (3):253 - 326.
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  • Boolean Semantics for Natural Language.Lawrence S. Moss - 1987 - Journal of Symbolic Logic 52 (2):554-555.
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  • Preverbal and verbal counting and computation.C. R. Gallistel & Rochel Gelman - 1992 - Cognition 44 (1-2):43-74.
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  • Core systems of number.Stanislas Dehaene, Elizabeth Spelke & Lisa Feigenson - 2004 - Trends in Cognitive Sciences 8 (7):307-314.
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  • Number sense and quantifier interpretation.Robin Clark & Murray Grossman - 2007 - Topoi 26 (1):51--62.
    We consider connections between number sense—the ability to judge number—and the interpretation of natural language quantifiers. In particular, we present empirical evidence concerning the neuroanatomical underpinnings of number sense and quantifier interpretation. We show, further, that impairment of number sense in patients can result in the impairment of the ability to interpret sentences containing quantifiers. This result demonstrates that number sense supports some aspects of the language faculty.
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  • Generalized quantifiers and natural language.John Barwise & Robin Cooper - 1981 - Linguistics and Philosophy 4 (2):159--219.
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  • Generalized Quantifiers and Natural Language.Jon Barwise - 1980 - Linguistics and Philosophy 4:159.
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  • Primate Cognition.Amanda Seed & Michael Tomasello - 2010 - Topics in Cognitive Science 2 (3):407-419.
    As the cognitive revolution was slow to come to the study of animal behavior, the vast majority of what we know about primate cognition has been discovered in the last 30 years. Building on the recognition that the physical and social worlds of humans and their living primate relatives pose many of the same evolutionary challenges, programs of research have established that the most basic cognitive skills and mental representations that humans use to navigate those worlds are already possessed by (...)
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  • Quantifiers in Language and Logic.Stanley Peters & Dag Westerståhl - 2006 - Oxford, England: Clarendon Press.
    Quantification is a topic which brings together linguistics, logic, and philosophy. Quantifiers are the essential tools with which, in language or logic, we refer to quantity of things or amount of stuff. In English they include such expressions as no, some, all, both, many. Peters and Westerstahl present the definitive interdisciplinary exploration of how they work - their syntax, semantics, and inferential role.
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  • Rethinking Linguistic Relativity.J. Gumperz & S. Levinson (eds.) - 1996 - Cambridge University Press.
    This book reexamines ideas about linguistic relativity in the light of new evidence and changes in theoretical climate.
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  • Language, Thought, and Reality: Selected Writings of Benjamin Lee Whorf.Benjamin Lee Whorf - 1956 - MIT Press. Edited by John B. Carroll.
    INTRODUCTION The career of Benjamin Lee Whorf might, on the one hand, be described as that of a businessman of specialized talents— one of those individuals ...
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  • D. Westerstå hl. Quantifiers in formal and natural languages.E. L. Keenan - 1997 - In Benthem & Meulen (eds.), Handbook of Logic and Language. MIT Press. pp. 837--893.
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  • The Proper Treatment of Quantification in Ordinary English.Richard Montague - 1974 - In Richmond H. Thomason (ed.), Formal Philosophy. Yale University Press.
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  • Exact and Approximate Arithmetic in an Amazonian Indigene Group.Pierre Pica, Cathy Lemer, Véronique Izard & Stanislas Dehaene - 2004 - Science 306 (5695):499-503.
    Is calculation possible without language? Or is the human ability for arithmetic dependent on the language faculty? To clarify the relation between language and arithmetic, we studied numerical cognition in speakers of Mundurukú, an Amazonian language with a very small lexicon of number words. Although the Mundurukú lack words for numbers beyond 5, they are able to compare and add large approximate numbers that are far beyond their naming range. However, they fail in exact arithmetic with numbers larger than 4 (...)
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  • Neural basis for generalized quantifiers comprehension.C. T. Mcmillan, R. Clark, P. Moore, C. Devita & M. Grossman - 2005 - Neuropsychologia 43:1729--1737.
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  • Quantifiers comprehension in corticobasal degeneration.C. T. Mcmillan, R. Clark, P. Moore & M. Grossman - 2006 - Brain and Cognition 65:250--260.
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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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  • From “thought and language” to “thinking for speaking”.Dan I. Slobin - 1996 - In J. Gumperz & S. Levinson (eds.), Rethinking Linguistic Relativity. Cambridge University Press. pp. 70--96.
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  • Language, Thought and Reality.Benjamin Lee Whorf, John B. Carroll & Stuart Chase - 1956 - Les Etudes Philosophiques 11 (4):695-695.
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  • Boolean Semantics for Natural Language.Edward L. Keenan & Leonard M. Faltz - 1987 - Studia Logica 46 (4):401-404.
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  • Essays in Logical Semantics.Johan van Benthem - 1988 - Studia Logica 47 (2):172-173.
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  • Formal Philosophy. [REVIEW]Richard Montague - 1975 - Canadian Journal of Philosophy 4 (3):573-578.
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