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Libertus, Melissa E.; Feigenson, Lisa; Halberda, Justin; Landau, Barbara – Developmental Science, 2014
All numerate humans have access to two systems of number representation: an exact system that is argued to be based on language and that supports formal mathematics, and an Approximate Number System (ANS) that is present at birth and appears independent of language. Here we examine the interaction between these two systems by comparing the…
Descriptors: Congenital Impairments, Genetic Disorders, Mental Retardation, Number Systems
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Odic, Darko; Pietroski, Paul; Hunter, Tim; Lidz, Jeffrey; Halberda, Justin – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2013
The psychology supporting the use of quantifier words (e.g., "some," "most," "more") is of interest to both scientists studying quantity representation (e.g., number, area) and to scientists and linguists studying the syntax and semantics of these terms. Understanding quantifiers requires both a mastery of the…
Descriptors: Mathematical Concepts, Fundamental Concepts, Scientific Concepts, Semantics
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Halberda, Justin; Feigenson, Lisa – Developmental Psychology, 2008
Behavioral, neuropsychological, and brain imaging research points to a dedicated system for processing number that is shared across development and across species. This foundational Approximate Number System (ANS) operates over multiple modalities, forming representations of the number of objects, sounds, or events in a scene. This system is…
Descriptors: Number Systems, Neurology, Child Development, Children