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Schröder, Elin; Gredebäck, Gustaf; Forssman, Linda; Lindskog, Marcus – Developmental Science, 2022
How do children construct a concept of natural numbers? Past research addressing this question has mainly focused on understanding how children come to acquire the cardinality principle. However, at that point children already understand the first number words and have a rudimentary natural number concept in place. The question therefore remains;…
Descriptors: Child Development, Numbers, Number Concepts, Concept Formation
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Zehra E. Ünal; Züleyha Terzi; Beyzanur Yalvaç; David C. Geary – Developmental Science, 2024
Understanding the magnitudes represented by numerals is a core component of early mathematical development and is often assessed by accuracy in situating numerals and fractions on a number line. Performance on these measures is consistently related to performance in other mathematics domains, but the strength of these relations may be…
Descriptors: Number Concepts, Mathematics Achievement, Mathematics Education, Meta Analysis
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David Muñez; Josetxu Orrantia; Rosario Sanchez; Verónica Carreton; Laura Matilla – Journal of Cognition and Development, 2024
This study investigates how the approximate number system (ANS) and young children's symbolic skills jointly develop and interact. Specifically, the study aims at disentangling the directionality of the association between ANS acuity and a wide range of symbolic skills that reflect 4- to 5-year-olds' symbolic quantitative knowledge (enumeration…
Descriptors: Number Systems, Numeracy, Symbols (Mathematics), Young Children
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Mononen, Riikka; Niemivirta, Markku – European Journal of Psychology of Education, 2023
Although the roles of symbolic numerical magnitude processing (SNMP) and working memory (WM) in mathematics performance are well acknowledged, studies examining their joint effects are few. Here, we investigated the profiles of SNMP (1- and 2-digit comparison) and WM (verbal, visual and central executive) among Norwegian first graders (N = 256),…
Descriptors: Foreign Countries, Mathematics Achievement, Grade 1, Elementary School Students
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Zimpel, André Frank; Rieckmann, Torben – International Journal of Disability, Development and Education, 2022
Empirical evidence suggests a phonological loop deficit associated with Down syndrome. A trisomy 21 may be associated with a narrowing of visual attention to fewer than four objects at a time too. In a study with computer tachistoscopy, the hypothesis was confirmed in all 194 persons with trisomy 21. The subitising limit of persons with trisomy 21…
Descriptors: Down Syndrome, Genetic Disorders, Visual Perception, Learning Disabilities
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Dotan, Dror; Brutman, Nadin – Cognitive Research: Principles and Implications, 2022
Representing the base-10 structure of numbers is a challenging cognitive ability, unique to humans, but it is yet unknown how precisely this is done. Here, we examined whether and how literate adults represent a number's full syntactic structure. In 5 experiments, participants repeated number-word sequences and we systematically varied the order…
Descriptors: Syntax, Phrase Structure, Cognitive Ability, Numbers
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Xueyan Li; Jiaxi Li; Sijia Zhao; Yini Liao; Liqi Zhu; Yi Mou – Autism: The International Journal of Research and Practice, 2024
The mathematical abilities of children with autism spectrum condition have been understudied. Magnitude representation is a fundamental numerical ability that emerges early in development and is linked to children's learning of formal mathematics. It remains unclear about whether children with autism spectrum condition differ from their peers…
Descriptors: Preschool Children, Autism Spectrum Disorders, Mathematics Skills, Number Concepts
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Bakker, Merel; Pelgrims, Elise; Torbeyns, Joke; Verschaffel, Lieven; De Smedt, Bert – Journal of Numerical Cognition, 2023
While symbolic number processing is an important correlate for typical and low mathematics achievement, it remains to be determined whether children with high mathematics achievement also have excellent symbolic number processing abilities. We investigated this question in 64 children (aged 8 to 10), i.e., 32 children with persistent high…
Descriptors: Cognitive Processes, Numbers, High Achievement, Mathematics Achievement
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Träff, Ulf; Skagerlund, Kenny; Östergren, Rickard; Skagenholt, Mikael – British Journal of Educational Psychology, 2023
Background: Children's numerical and arithmetic skills differ greatly already at an early age. Although research focusing on accounting for these large individual differences clearly demonstrates that mathematical performance draws upon several cognitive abilities, our knowledge concerning key abilities underlying mathematical skill development is…
Descriptors: Arithmetic, Numbers, Mathematics Skills, Young Children
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Majerus, Steve; Oberauer, Klaus – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
The processing of ordinally organized information is a characteristic of both serial-order working memory and numerical cognition. Serial positions of items presented within a list follow an ordinal organization when stored in working memory, whereas numbers are based on an ordinal structure stored in long-term memory. We tested the hypothesis…
Descriptors: Short Term Memory, Serial Ordering, Numeracy, Numbers
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Nurit Paz-Baruch – Educational Studies, 2024
The study identified the cognitive mechanisms that underly individual differences in mathematics and reading. There is little systematic evidence regarding the connections between cognitive capabilities, mathematics and reading among high-school students with typical development. Moreover, the study aimed to examine whether or not gender is…
Descriptors: Gender Differences, Cognitive Processes, Mathematics Achievement, Reading Achievement
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Xu, Chang; LeFevre, Jo-Anne; Di Lonardo Burr, Sabrina; Maloney, Erin A.; Wylie, Judith; Simms, Victoria; Skwarchuk, Sheri-Lynn; Osana, Helena P. – Journal of Numerical Cognition, 2023
Children's knowledge of the ordinal relations among number symbols is related to their mathematical learning. Ordinal knowledge has been measured using judgment (i.e., decide whether a sequence of three digits is in order) and ordering tasks (i.e., order three digits from smallest to largest). However, the question remains whether performance on…
Descriptors: Young Children, Numeracy, Number Concepts, Serial Ordering
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Lo, Steson; Andrews, Sally – Journal of Numerical Cognition, 2022
In Asia, some children are taught a calculation technique known as the 'mental abacus'. Previous research indicated that mental abacus experts can perform extraordinary feats of mental arithmetic, but it disagrees as to whether the technique improves working memory. The present study extended and clarified these findings by contrasting performance…
Descriptors: Mental Computation, Expertise, Short Term Memory, Schemata (Cognition)
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Wang, Jinjing; Feigenson, Lisa – Developmental Science, 2019
Children do not understand the meanings of count words like "two" and "three" until the preschool years. But even before knowing the meanings of these individual words, might they recognize that counting is "about" the dimension of number? Here in five experiments, we asked whether infants already associate counting…
Descriptors: Infants, Numeracy, Computation, Numbers
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Chernyak, Nadia; Harris, Paul L.; Cordes, Sara – Child Development, 2022
Recent work has probed the developmental mechanisms that promote fair sharing. This work investigated 2.5- to 5.5-year-olds' (N = 316; 52% female; 79% White; data collected 2016-2018) sharing behavior in relation to three cognitive correlates: number knowledge, working memory, and cognitive control. In contrast to working memory and cognitive…
Descriptors: Computation, Preschool Children, Number Concepts, Short Term Memory
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