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Showing 1 to 15 of 38 results Save | Export
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Theresa Elise Wege; Camilla Gilmore; Matthew Inglis – Journal of Numerical Cognition, 2025
Children learn the cardinalities of the first numbers one, two, three and four before they learn how counting tracks cardinality for all numbers. It may be that when children start to understand counting, they also discover how numbers relate to one another in a structured number system. Do children who understand that the cardinality of a set is…
Descriptors: Numeracy, Number Concepts, Arithmetic, Mathematics Skills
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David Muñez; Josetxu Orrantia; Rosario Sanchez; Lieven Verschaffel; Laura Matilla – Journal of Cognition and Development, 2025
Previous research has demonstrated a link between children's ability to name canonical finger configurations and their mathematical abilities. This study aimed to investigate the nature of this association, specifically exploring whether the relationship is skill and handshape specific and identifying the underlying mechanisms involved.…
Descriptors: Foreign Countries, Elementary School Mathematics, Elementary School Students, Elementary School Teachers
Kim, Dan; Opfer, John E. – Grantee Submission, 2018
Young children's estimates of numerical magnitude increase approximately logarithmically with actual magnitude. The conventional interpretation of this finding is that children's estimates reflect an innate logarithmic encoding of number. A recent set of findings, however, suggests that logarithmic number-line estimates emerge via a dynamic…
Descriptors: Cognitive Development, Number Concepts, Concept Mapping, Numeracy
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Nelissen, Jo M. C. – Curriculum and Teaching, 2018
Historically there has always been a lively research discussion on whether the development of number concept should be considered as innate, or whether the catalyst for the development of the number concept -- and for counting -- is hearing number words combined with seeing concrete examples. One can recognize these theories as the nativist view…
Descriptors: Emergent Literacy, Numeracy, Number Concepts, Young Children
Qin, Jike; Kim, Dan; Opfer, John – Grantee Submission, 2017
There is an ongoing debate over the psychophysical functions that best fit human data from numerical estimation tasks. To test whether one psychophysical function could account for data across diverse tasks, we examined 40 kindergartners, 38 first graders, 40 second graders and 40 adults' estimates using two fully crossed 2 × 2 designs, crossing…
Descriptors: Mathematics Skills, Numeracy, Arithmetic, Cognitive Processes
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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
Clark, Colin Travis – ProQuest LLC, 2012
Young children must develop basic concepts of numeracy--one being that numbers have magnitudes that increase linearly--before they are able to succeed in mathematics. Children from low-income families have been found to be at a greater disadvantage in the development of numeracy, but this disadvantage can be overcome through the use of a simple…
Descriptors: Numeracy, Number Concepts, Young Children, Games
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Imbo, Ineke; De Brauwer, Jolien; Fias, Wim; Gevers, Wim – Journal of Experimental Child Psychology, 2012
In a recent study, Gevers and colleagues (2010, "Journal of Experimental Psychology: General," Vol. 139, pp. 180-190) showed that the SNARC (spatial numerical association of response codes) effect in adults results not only from spatial coding of magnitude (e.g., mental number line hypothesis) but also from verbal coding. Because children are…
Descriptors: Evidence, Experimental Psychology, Number Concepts, Numeracy
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Sasanguie, Delphine; De Smedt, Bert; Defever, Emmy; Reynvoet, Bert – British Journal of Developmental Psychology, 2012
Various measures have been used to investigate number processing in children, including a number comparison or a number line estimation task. The present study aimed to examine whether and to which extent these different measures of number representation are related to performance on a curriculum-based standardized mathematics achievement test in…
Descriptors: Mathematics Achievement, Number Concepts, Grade 6, Cognitive Development
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Ansari, Daniel – Learning and Individual Differences, 2010
The present paper provides a critical overview of how adult neuropsychological models have been applied to the study of the atypical development of numerical cognition. Specifically, the following three assumptions are challenged: 1. Profiles of strength and weaknesses do not change over developmental time. 2. Similar neuronal structures are…
Descriptors: Number Concepts, Neuropsychology, Schemata (Cognition), Numeracy
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van Galen, Mirte S.; Reitsma, Pieter – Journal of Experimental Child Psychology, 2008
The SNARC (spatial-numerical association of response codes) effect refers to the finding that small numbers facilitate left responses, whereas larger numbers facilitate right responses. The development of this spatial association was studied in 7-, 8-, and 9-year-olds, as well as in adults, using a task where number magnitude was essential to…
Descriptors: Number Concepts, Numeracy, Children, Adults
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Mix, Kelly S. – British Journal of Developmental Psychology, 2008
Previous research has reported that children's numerical equivalence judgments are affected by surface similarity and counting ability (e.g. Mix, Huttenlocher, & Levine, 1996; Siegel, 1973), a pattern that suggests categorization processes play a role in numerical development. However, because these studies involved memory for sets, large set…
Descriptors: Memory, Number Concepts, Numeracy, Comparative Analysis
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Van Herwegen, Jo; Ansari, Daniel; Xu, Fei; Karmiloff-Smith, Annette – Developmental Science, 2008
Previous studies have suggested that typically developing 6-month-old infants are able to discriminate between small and large numerosities. However, discrimination between small numerosities in young infants is only possible when variables continuous with number (e.g. area or circumference) are confounded. In contrast, large number discrimination…
Descriptors: Toddlers, Infants, Number Concepts, Numeracy
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Reyna, Valerie F.; Brainerd, Charles J. – Learning and Individual Differences, 2008
"Numeracy," so-called on analogy with literacy, is essential for making health and other social judgments in everyday life [Reyna, V. F., & Brainerd, C. J. (in press). The importance of mathematics in health and human judgment: Numeracy, risk communication, and medical decision making. "Learning and Individual Differences."]. Recent research on…
Descriptors: Numeracy, Recognition (Psychology), Probability, Cognitive Development
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Huntley-Fenner, Gavin – Cognition, 2001
Examined analog number representations in 5- to 7- year-olds. Found that subjects accurately estimated rapidly presented groups of 5 to 11 items. Children's data were qualitatively and to some degree quantitatively similar to adult data, with one exception. The ratio of the standard deviation of estimates to mean estimates decreased with age.…
Descriptors: Age Differences, Children, Cognitive Development, Estimation (Mathematics)
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