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Kelsey J. MacKay; Filip Germeys; Wim Van Dooren; Lieven Verschaffel; Koen Luwel – Educational Studies in Mathematics, 2025
Rational numbers, such as fractions and decimals, are harder to understand than natural numbers. Moreover, individuals struggle with fractions more than with decimals. The present study sought to disentangle the extent to which two potential sources of difficulty affect secondary-school students' numerical magnitude understanding: number type…
Descriptors: Number Concepts, Numeracy, Secondary School Mathematics, Secondary School Students
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Kong, Michelle Nga Ki; Chan, Winnie Wai Lan – European Journal of Developmental Psychology, 2021
This study explored whether kindergarteners who had yet to learn about multi-digit numbers at school could automatically process the underlying magnitudes, i.e., place-values, represented by the digits in a multi-digit number. A place-value Stroop task showed a pair of price tags in each trial. Each price tag contained a three-digit number, of…
Descriptors: Kindergarten, Cognitive Processes, Numeracy, Mathematics Skills
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Ratcliff, Roger; McKoon, Gail – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
Two experiments are presented that use tasks common in research in numerical cognition with young adults and older adults as subjects. In these tasks, one or two arrays of dots are displayed, and subjects decide whether there are more or fewer dots of one kind than another. Results show that older adults, relative to young adults, tend to rely…
Descriptors: Aging (Individuals), Older Adults, Numeracy, Accuracy
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Matthews, Percival G.; Lewis, Mark R. – Cognitive Science, 2017
Although many researchers theorize that primitive numerosity processing abilities may lay the foundation for whole number concepts, other classes of numbers, like fractions, are sometimes assumed to be inaccessible to primitive architectures. This research presents evidence that the automatic processing of nonsymbolic magnitudes affects processing…
Descriptors: Numbers, Numeracy, Color, Interference (Learning)
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Huber, Stefan; Cornelsen, Sonja; Moeller, Korbinian; Nuerk, Hans-Christoph – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2015
In this article, we propose and evaluate a new model framework of parallel componential multi-symbol number processing, generalizing the idea of parallel componential processing of multi-digit numbers to the case of negative numbers by considering the polarity signs similar to single digits. In a first step, we evaluated this account by defining…
Descriptors: Numeracy, Number Concepts, Cognitive Processes, Eye Movements
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Soltesz, Fruzsina; Goswami, Usha; White, Sonia; Szucs, Denes – Learning and Individual Differences, 2011
Most research on numerical development in children is behavioural, focusing on accuracy and response time in different problem formats. However, Temple and Posner (1998) used ERPs and the numerical distance task with 5-year-olds to show that the development of numerical representations is difficult to disentangle from the development of the…
Descriptors: Cognitive Processes, Numeracy, Young Children, Reaction Time
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Simon, T. J.; Takarae, Y.; DeBoer, T.; McDonald-McGinn, D. M.; Zackai, E. H.; Ross, J. L. – Neuropsychologia, 2008
Children with one of two genetic disorders (chromosome 22q11.2 deletion syndrome and Turner syndrome) as well typically developing controls, participated in three cognitive processing experiments. Two experiments were designed to test cognitive processes involved in basic aspects numerical cognition. The third was a test of simple manual motor…
Descriptors: Genetic Disorders, Reaction Time, Genetics, Cognitive Processes
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Holloway, Ian D.; Ansari, Daniel – Developmental Science, 2008
The numerical distance effect (inverse relationship between numerical distance and reaction time in relative number comparison tasks) has frequently been used to characterize the mental representation of number. The size of the distance effect decreases over developmental time. However, it is unclear whether this reduction simply reflects…
Descriptors: Reaction Time, Cognitive Processes, Comparative Analysis, Young Children
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Berch, Daniel B.; Foley, Elizabeth J.; Hill, Rebecca J.; Ryan, Patricia McDonough – Journal of Experimental Child Psychology, 1999
Children from grades 2, 3, 4, 6, and 8 made speeded, bimanual parity (odd/even) judgments of numerals. Response times indicated that from fourth grade on, parity information was retrieved directly from memory. By grade 3, children represented magnitude information as a left-to-right number line which was accessed obligatorily and, by grades 6 and…
Descriptors: Age Differences, Cognitive Processes, Comparative Analysis, Elementary Education