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Showing 1 to 15 of 32 results Save | Export
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Wilkey, Eric D.; Shanley, Lina; Sabb, Fred; Ansari, Daniel; Cohen, Jason C.; Men, Virany; Heller, Nicole A.; Clarke, Ben – Developmental Science, 2022
Children's ability to discriminate nonsymbolic number (e.g., the number of items in a set) is a commonly studied predictor of later math skills. Number discrimination improves throughout development, but what drives this improvement is unclear. Competing theories suggest that it may be due to a sharpening numerical representation or an improved…
Descriptors: Numbers, Mathematics Skills, Predictor Variables, Number Concepts
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Wilkey, Eric D. – Mind, Brain, and Education, 2023
Attention and executive functions (EFs) play a critical role in academic skill development, including literacy and numeracy. Deficits in attention and EFs often accompany learning disorders, such as dyslexia and dyscalculia. Despite their well-established link, we lack a nuanced understanding of the specific neurobiological mechanisms that…
Descriptors: Attention, Executive Function, Neurology, Cognitive Processes
Wilkey, Eric D.; Shanley, Lina; Sabb, Fred; Ansari, Daniel; Cohen, Jason C.; Men, Virany; Heller, Nicole A.; Clarke, Ben – Grantee Submission, 2021
Children's ability to discriminate nonsymbolic number (e.g. the number of items in a set) is a commonly studied predictor of later math skills. Number discrimination improves throughout development, but what drives this improvement is unclear. Competing theories suggest it may be due to a sharpening numerical representation or an improved ability…
Descriptors: Numbers, Mathematics Skills, Predictor Variables, Number Concepts
Melissa Nieves Rivera – ProQuest LLC, 2022
The interpretation of numerals has been traditionally debated across disciplines including, but not limited to, Linguistics, Developmental Psychology, and Philosophy. A big portion of the debate concentrates on the ontology of numerals, i.e., their basic meaning, and the mechanisms by which (non) exact interpretations (e.g., at least) are derived.…
Descriptors: Number Systems, Linguistics, Morphemes, Linguistic Theory
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Malone, Stephanie A.; Burgoyne, Kelly; Hulme, Charles – Journal of Educational Psychology, 2020
We assessed a range of theoretically critical predictors (numerosity discrimination, number knowledge, counting, language, executive function and finger gnosis) of early arithmetic development in a large unselected sample of 569 children at school entry. Assessments were repeated 12 months later. Although all predictors (except finger gnosis) were…
Descriptors: Numbers, Number Systems, Arithmetic, Predictor Variables
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Courtney Pollack; Eric D. Wilkey; Gavin R. Price – Journal of Numerical Cognition, 2022
The ability to efficiently compare number symbols, such as digits, is associated with mathematics competence across the lifespan. Performance on symbolic number comparison tasks differ across age groups; young students who are developing fluency with digits improve on symbolic number comparison, and performance is better in adults than children.…
Descriptors: Predictor Variables, Mathematics Skills, Number Concepts, Symbols (Mathematics)
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Joswick, Candace; Clements, Douglas H.; Sarama, Julie; Banse, Holland W.; Day-Hess, Crystal A. – Teaching Children Mathematics, 2019
The teacher displayed counting cards that included both dots and numerals in order from one to five, as she counted them with her students. She then turned the cards facedown, keeping them in order, and began an identify-a-hidden-card activity with the class. This class was engaged in the third of three card activities that develop number sense…
Descriptors: Mathematics Activities, Instructional Materials, Mathematics Instruction, Executive Function
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Watanabe, Nobuki – International Electronic Journal of Mathematics Education, 2023
The role of executive function training in supporting child development has been increasingly studied. Executive function is largely related to the prefrontal cortex. The anterior portion of the prefrontal cortex, which is area 10 on the Brodmann map, is essential for the emergence of higher-order executive functions. Accumulating evidence…
Descriptors: Mathematics Instruction, Teaching Methods, Alphabets, Numbers
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Leib, Elena R.; Starr, Ariel; Younger, Jessica Wise; Bunge, Silvia A.; Uncapher, Melina R.; Rosenberg-Lee, Miriam – Developmental Psychology, 2023
The present study tests two predictions stemming from the hypothesis that a source of difficulty with rational numbers is interference from whole number magnitude knowledge. First, inhibitory control should be an independent predictor of fraction understanding, even after controlling for working memory. Second, if the source of interference is…
Descriptors: Inhibition, Fractions, Mathematical Concepts, Knowledge Level
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Scalise, Nicole R.; Ramani, Geetha B. – Journal of Cognition and Development, 2021
Young children's symbolic magnitude understanding, or knowledge of how written numerals and number words can be ordered and compared, is thought to play an important role in their mathematical development. There is consistent evidence that symbolic magnitude skills predict mathematical achievement in later childhood and adulthood. Yet less is…
Descriptors: Predictor Variables, Symbols (Mathematics), Mathematics Skills, Mathematics Achievement
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Scalise, Nicole R.; Purpura, David J. – Journal of Educational Psychology, 2022
There is evidence of a relation between the approximate number system (ANS) and later mathematics achievement. Researchers have proposed various mediators of this relation, including executive functioning (EF), numeral knowledge, and mathematical language. The goal of the present study was to determine which factors mediate the relation between…
Descriptors: Preschool Children, Number Systems, Mathematics Achievement, Correlation
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Fuhs, Mary Wagner; Tavassolie, Nadia; Wang, Yiqiao; Bartek, Victoria; Sheeks, Natalie A.; Gunderson, Elizabeth A. – Journal of Cognition and Development, 2021
Young children are sensitive to both numerical and spatial magnitude cues early in development, but many questions remain about how children's attention to magnitudes relates to their early math achievement. In two studies, we tested three hypotheses related to the flexible attention to magnitudes (FAM) account, which suggests that young…
Descriptors: Preschool Children, Mathematics Skills, Numeracy, Number Concepts
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Wilkey, Eric D.; Pollack, Courtney; Price, Gavin R. – Child Development, 2020
Deficits in numerical magnitude perception characterize the mathematics learning disability developmental dyscalculia (DD), but recent studies suggest the relation stems from inhibitory control demands from incongruent visual cues in the nonsymbolic number comparison task. This study investigated the relation among magnitude perception during…
Descriptors: Learning Disabilities, Mathematics Skills, Executive Function, Mathematics Achievement
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Scalise, Nicole R.; Daubert, Emily N.; Ramani, Geetha B. – Journal of Experimental Education, 2020
Low-income preschoolers have lower average performance on measures of early numerical skills than middle-income children. The present study examined the effectiveness of numerical card games in improving children's numerical and executive functioning skills. Low-income preschoolers (N = 76) were randomly assigned to play a numerical magnitude…
Descriptors: Early Intervention, Mathematics Skills, Teaching Methods, Educational Games
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vanMarle, Kristy; Chu, Felicia W.; Mou, Yi; Seok, Jin H.; Rouder, Jeffrey; Geary, David C. – Developmental Science, 2018
Children's understanding of the quantities represented by number words (i.e., cardinality) is a surprisingly protracted but foundational step in their learning of formal mathematics. The development of cardinal knowledge is related to one or two core, inherent systems--the approximate number system (ANS) and the object tracking system (OTS)--but…
Descriptors: Number Systems, Cognitive Mapping, Longitudinal Studies, Preschool Children
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