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Branyan, Helen; Cooper, Elisheva; Shaki, Samuel; McCrink, Koleen – Journal of Cognition and Development, 2023
During the preschool years, children are simultaneously undergoing a reshaping of their mental number line and becoming increasingly sensitive to the social norms expressed by those around them. In the current study, 4- and 5-year-old American and Israeli children were given a task in which an experimenter laid out chips with numbers (1-5),…
Descriptors: Preschool Children, Memory, Spatial Ability, Number Concepts
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Ganayim, Deia; Ganayim, Shireen; Dowker, Ann; Olkun, Sinan – Journal of Cognitive Education and Psychology, 2021
The study focuses on the effect of the lexical-syntactic structure on the patterns of errors by Arab first graders in tasks involving reading two-digit number and writing two-digit numbers to dictation. Children made few change or omission errors, indicating that they had little problem with the lexical aspects of the counting system. However,…
Descriptors: Arabs, Grade 1, Elementary School Students, Syntax
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Shaki, Samuel; Fischer, Martin H. – Journal of Experimental Psychology: Human Perception and Performance, 2012
A recent cross-cultural comparison (Shaki, Fischer, & Petrusic, 2009) suggested that spatially consistent processing habits for words and numbers are a necessary condition for the spatial representation of numbers (Spatial-Numerical Association of Response Codes; SNARC effect). Here we reexamine the SNARC in Israelis who read text from right…
Descriptors: Cross Cultural Studies, Number Concepts, Numbers, Spatial Ability
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Rotem, Avital; Henik, Avishai – Journal of Learning Disabilities, 2015
The current study examined the development of two effects that have been found in single-digit multiplication errors: relatedness and distance. Typically achieving (TA) second, fourth, and sixth graders and adults, and sixth and eighth graders with a mathematics learning disability (MLD) performed a verification task. Relatedness was defined by a…
Descriptors: Foreign Countries, Mathematics Education, Learning Disabilities, Multiplication