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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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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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Skagerlund, Kenny; Träff, Ulf – Journal of Learning Disabilities, 2016
This study investigated if developmental dyscalculia (DD) in children with different profiles of mathematical deficits has the same or different cognitive origins. The defective approximate number system hypothesis and the access deficit hypothesis were tested using two different groups of children with DD (11-13 years old): a group with…
Descriptors: Learning Disabilities, Cognitive Ability, Number Concepts, Mathematics Skills
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Laski, Elida V.; Dulaney, Alana – Journal of Educational Psychology, 2015
The present study tested the "interference hypothesis"-that learning and using more advanced representations and strategies requires the inhibition of prior, less advanced ones. Specifically, it examined the relation between inhibitory control and number line estimation performance. Experiment 1 compared the accuracy of adults' (N = 53)…
Descriptors: Prior Learning, Learning Processes, Inhibition, Interference (Learning)
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Girelli, Luisa; Lucangeli, Daniela; Butterworth, Brian – Journal of Experimental Child Psychology, 2000
Traced developmental changes in automatic and intentional processing of Arabic numerals using numerical-Stroop paradigm in two studies. In numerical comparison task, found that congruent physical sizes facilitated and incongruent sizes interfered with numerical comparison at all ages relative to neutral control. In physical comparison task, found…
Descriptors: Adults, Age Differences, Children, Cognitive Development