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Flaherty, Molly; Senghas, Ann – Cognition, 2011
What abilities are entailed in being numerate? Certainly, one is the ability to hold the exact quantity of a set in mind, even as it changes, and even after its members can no longer be perceived. Is counting language necessary to track and reproduce exact quantities? Previous work with speakers of languages that lack number words involved…
Descriptors: Deafness, Computation, Sign Language, Adults
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Santens, Seppe; Verguts, Tom – Cognition, 2011
When comparing digits of different physical sizes, numerical and physical size interact. For example, in a numerical comparison task, people are faster to compare two digits when their numerical size (the relevant dimension) and physical size (the irrelevant dimension) are congruent than when they are incongruent. Two main accounts have been put…
Descriptors: Children, Cognitive Processes, Comparative Analysis, Task Analysis
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Lovett, Andrew; Forbus, Kenneth – Cognition, 2011
A fundamental question in human cognition is how people reason about space. We use a computational model to explore cross-cultural commonalities and differences in spatial cognition. Our model is based upon two hypotheses: (1) the structure-mapping model of analogy can explain the visual comparisons used in spatial reasoning; and (2) qualitative,…
Descriptors: Cultural Differences, Spatial Ability, Geometric Concepts, North Americans
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Domahs, Frank; Moeller, Korbinian; Huber, Stefan; Willmes, Klaus; Nuerk, Hans-Christoph – Cognition, 2010
In recent years, a strong functional relationship between finger counting and number processing has been suggested. Developmental studies have shown specific effects of the structure of the individual finger counting system on arithmetic abilities. Moreover, the orientation of the mental quantity representation ("number line") seems to be…
Descriptors: Number Concepts, Computation, German, Mathematics Instruction
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Opfer, John E.; DeVries, Jeffrey M. – Cognition, 2008
Development of estimation has been ascribed to two sources: (1) a change from logarithmic to linear representations of number and (2) development of general mathematical skills. To test the representational change hypothesis, we gave children and adults a task in which an automatic, linear representation is less adaptive than the logarithmic…
Descriptors: Young Children, Problem Solving, Computation, Adults
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Wagner, Laura; Carey, Susan – Cognition, 2003
This study investigates children's ability to use language to guide their choice of individuation criterion in the domains of objects and events. Previous work (Shipley, E. F., & Shepperson, B. (1990). Countable entities: developmental changes. "Cognition," 34, 109-136.) has shown that children have a strong bias to use a spatio-temporal…
Descriptors: Linguistics, Children, Language Usage, Cognitive Processes