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dos Santos, César Frederico – Journal of Numerical Cognition, 2023
In the literature on numerical cognition, the presence of the capacity to distinguish between numerosities by attending to the number of items, rather than continuous properties of stimuli that correlate with it, is commonly taken as sufficient indication of numerical abilities in cognitive agents. However, this literature does not take into…
Descriptors: Number Concepts, Numeracy, Cognitive Ability, Mathematical Concepts
Smyth, Rachael E.; Ansari, Daniel – Developmental Science, 2020
Research demonstrating that infants discriminate between small (e.g., 1 vs. 3 dots) and large numerosities (e.g., 8 vs. 16 dots) is central to theories concerning the origins of human numerical abilities. To date, there has been no quantitative meta-analysis of the infant numerical competency data. Here, we quantitatively synthesize the evidential…
Descriptors: Infants, Visual Perception, Visual Stimuli, Numeracy
Viktorsson, Charlotte; Lindskog, Marcus; Li, Danyang; Tammimies, Kristiina; Taylor, Mark J.; Ronald, Angelica; Falck-Ytter, Terje – Developmental Science, 2023
The ability to perceive approximate numerosity is present in many animal species, and emerges early in human infants. Later in life, it is moderately heritable and associated with mathematical abilities, but the etiology of the Approximate Number System (ANS) and its degree of independence from other cognitive abilities in infancy is unknown.…
Descriptors: Infants, Numeracy, Genetics, Environmental Influences
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
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
Lafay, Anne; Osana, Helena P.; Levin, Joel R. – Learning Disability Quarterly, 2023
We investigated the effect of conceptual transparency in the physical structure of manipulatives on place-value understanding in typically developing children and those at risk for mathematics learning disabilities. Second graders were randomly assigned to one of three manipulatives conditions: (a) attachable beads that did not make the…
Descriptors: Manipulative Materials, Mathematics Instruction, Number Concepts, At Risk Students
Träff, Ulf; Olsson, Linda; Skagerlund, Kenny; Östergren, Rickard – Journal of Educational Psychology, 2020
This study examined cognitive precursors of hierarchical mathematical development. Six-year-old children (n = 258) were assessed on number skills, cognitive skills, and arithmetic 1 year prior to school entry. Skills in advanced arithmetic and advanced mathematics were assessed in Grades 3 and 6, respectively. Path analyses were computed and…
Descriptors: Young Children, Numeracy, Numbers, Mathematics Skills
Desoete, Annemie; Praet, Magda; Titeca, Daisy; Ceulemans, Annelies – Research in Developmental Disabilities: A Multidisciplinary Journal, 2013
The sensitivity of number sense as cognitive phenotype for mathematical learning disabilities (MLD) was assessed in siblings of children with MLD (n = 9) and age matched children without family members with MLD (n = 63). A number line estimation paradigm was used as a measure of children's early number sense. In line with the triple code model of…
Descriptors: Logical Thinking, Learning Disabilities, Arithmetic, Kindergarten
Geary, David C. – Mathematical Thinking and Learning: An International Journal, 2015
The collection of studies in this special issue make an important contribution to our understanding and measurement of the core cognitive and noncognitive factors that influence children's emerging quantitative competencies. The studies also illustrate how the field has matured, from a time when the quantitative competencies of infants and young…
Descriptors: Preschool Children, Statistical Analysis, Knowledge Level, Competence
Purpura, David J.; Logan, Jessica A. R. – Developmental Psychology, 2015
Both mathematical language and the approximate number system (ANS) have been identified as strong predictors of early mathematics performance. Yet, these relations may be different depending on a child's developmental level. The purpose of this study was to evaluate the relations between these domains across different levels of ability.…
Descriptors: Preschool Children, Child Development, Number Systems, Mathematics
Rodic, Maja; Zhou, Xinlin; Tikhomirova, Tatiana; Wei, Wei; Malykh, Sergei; Ismatulina, Victoria; Sabirova, Elena; Davidova, Yulia; Tosto, Maria Grazia; Lemelin, Jean-Pascal; Kovas, Yulia – Developmental Science, 2015
The present study evaluated 626 5-7-year-old children in the UK, China, Russia, and Kyrgyzstan on a cognitive test battery measuring: (1) general skills; (2) non-symbolic number sense; (3) symbolic number understanding; (4) simple arithmetic--operating with numbers; and (5) familiarity with numbers. Although most inter-population differences were…
Descriptors: Arithmetic, Mathematics Skills, Numeracy, Number Concepts
Kolkman, Meijke E.; Kroesbergen, Evelyn H.; Leseman, Paul P. M. – Infant and Child Development, 2014
The ability to connect numbers and magnitudes is an important prerequisite for math learning, here referred to as number-magnitude skills. It has been proposed that working memory plays an important role in constructing these connections. The aim of the current study was to examine if working memory accounts for constructing these connections by…
Descriptors: Number Concepts, Numeracy, Mathematics Skills, Short Term Memory
Peucker, Sabine; Weißhaupt, Steffi – South African Journal of Childhood Education, 2013
The development of numerical concepts is described from infancy to preschool age. Infants a few days old exhibit an early sensitivity for numerosities. In the course of development, nonverbal mental models allow for the exact representation of small quantities as well as changes in these quantities. Subitising, as the accurate recognition of small…
Descriptors: Number Concepts, Numeracy, Child Development, Infants
Rhodes, Katherine T.; Branum-Martin, Lee; Washington, Julie A.; Fuchs, Lynn S. – Journal of Educational Psychology, 2017
Using multitrait, multimethod data, and confirmatory factor analysis, the current study examined the effects of arithmetic item formatting and the possibility that across formats, abilities other than arithmetic may contribute to children's answers. Measurement hypotheses were guided by several leading theories of arithmetic cognition. With a…
Descriptors: Arithmetic, Mathematics Tests, Test Format, Psychometrics
Chan, Becky Mee-yin; Ho, Connie Suk-han – Journal of Experimental Child Psychology, 2010
This study examined how four domain-specific skills (arithmetic procedural skills, number fact retrieval, place value concept, and number sense) and two domain-general processing skills (working memory and processing speed) may account for Chinese children's mathematics learning difficulties. Children with mathematics difficulties (MD) of two age…
Descriptors: Learning Problems, Mathematics Education, Short Term Memory, Number Concepts
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