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Eleftheriadi, Artemis; Lavidas, Konstantinos; Koustourakis, Gerasimos; Papadakis, Stamatis – Educational Process: International Journal, 2023
Background/purpose: Investigation into the misconceptions of preschool students in mathematics and their differences between the ages of 4-5 and 5-6 years old helps form appropriate developmental mathematics teaching programs. However, although several studies have been conducted examining preschoolers' previous knowledge and misconceptions about…
Descriptors: Misconceptions, Numbers, Arithmetic, Age Differences
Kallai, Arava Y.; Henik, Avishai – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2023
Given that both children and adults struggle with fractions in mathematics education, we investigated the processing of nonsymbolic fractions in a continuous form of part-of-the-whole. Continuous features of nonsymbolic numbers (e.g., the size of dots in an array) were found to influence numerosity judgment, but it should be noted that the…
Descriptors: Fractions, Mathematical Concepts, Numbers, Cognitive Processes
Yunji Park; Alexandria A. Viegut; Percival G. Matthews – Grantee Submission, 2021
Humans perceptually extract quantity information from our environments, be it from simple stimuli in isolation, or from relational magnitudes formed by taking ratios of pairs of simple stimuli. Some have proposed that these two types of magnitude are processed by a common system, whereas others have proposed separate systems. To test these…
Descriptors: Mathematics Skills, Thinking Skills, Preschool Children, Elementary School Students
Lyons, Ian M.; Price, Gavin R.; Vaessen, Anniek; Blomert, Leo; Ansari, Daniel – Developmental Science, 2014
Math relies on mastery and integration of a wide range of simpler numerical processes and concepts. Recent work has identified several numerical competencies that predict variation in math ability. We examined the unique relations between eight basic numerical skills and early arithmetic ability in a large sample (N = 1391) of children across…
Descriptors: Predictor Variables, Elementary School Students, Grade 1, Grade 2
Lourenco, Stella F.; Bonny, Justin W. – Developmental Science, 2017
A growing body of evidence suggests that non-symbolic representations of number, which humans share with nonhuman animals, are functionally related to uniquely human mathematical thought. Other research suggesting that numerical and non-numerical magnitudes not only share analog format but also form part of a general magnitude system raises…
Descriptors: Mathematics Skills, Skill Development, Correlation, Task Analysis
van Hoof, Jo; Verschaffel, Lieven; van Dooren, Wim – Educational Studies in Mathematics, 2015
The natural number bias is known to explain many difficulties learners have with understanding rational numbers. The research field distinguishes three aspects where natural number properties are sometimes inappropriately applied in rational number tasks: density, size, and operations. The overall goal of this study was to characterize the…
Descriptors: Numbers, Elementary Secondary Education, Bias, Numeracy
Olkun, Sinan; Altun, Arif; Sahin, Sakine Gocer – Online Submission, 2015
This study tested the hypothesis that subitizing ability may cause achievement differences in mathematics especially for students with mathematics learning disabilities. Students from 1st through 4th grade were applied to curriculum based math achievement tests (MAT). Based on MAT scores, they were divided into four groups as Mathematics Learning…
Descriptors: Mathematics Instruction, Mathematics Achievement, Academic Ability, Learning Disabilities
Kolkman, Meijke E.; Kroesbergen, Evelyn H.; Leseman, Paul P. M. – Learning and Instruction, 2013
For learning math, non-symbolic quantity skills, symbolic skills and the mapping between number symbols and non-symbolic quantities are all important precursors. Little is known, however, about the interrelated development of these skills. The current study focuses on numerical development by: (a) investigating the structure of non-symbolic,…
Descriptors: Child Development, Cognitive Development, Predictor Variables, Mathematics Education
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
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
HodnikCadez, Tatjana; Skrbec, Maja – EURASIA Journal of Mathematics, Science & Technology Education, 2011
In the Slovenian National Mathematics Curriculum the probability contents are first mentioned in the ninth grade of elementary school (at the age of 14), yet they are introduced informally, only in some first triad textbook sets. The researchers disagree as to the age of children at which they are able to deal with certain probability contents. In…
Descriptors: Mathematical Concepts, Age Differences, Number Concepts, Preschool Children
The Development of Internal Representations of Magnitude and Their Association with Arabic Numerals.

Rubinsten, Orly; Henik, Avishai; Berger, Andrea; Shahar-Shalev, Sharon – Journal of Experimental Child Psychology, 2002
Examined development of number concepts among participants from the beginning and end of first grade, third and fifth grades, and university. Found that the numerical distance effect appeared in all groups. Found size congruity effect began to appear at the end of first grade. Proposed a model of internal representation of magnitude asserting that…
Descriptors: Age Differences, Children, Individual Development, Mathematical Concepts

Graham, Theresa A. – Journal of Experimental Child Psychology, 1999
Examined role of spontaneous gesture in 2- to 4-year-olds' counting and assessment of counting accuracy. Found that correspondence of children's speech and gesture varied systematically across age. Children adhered to one-to-one correspondence principle in gesture prior to speech. Counting accuracy related to correspondence of speech and gesture,…
Descriptors: Age Differences, Child Language, Cognitive Development, Computation

Mix, Kelly S. – Journal of Experimental Child Psychology, 1999
Examined whether preschoolers could recognize numerical equivalence for comparisons involving sequentially presented sets. Found that children recognized numerical equivalence for static sets earlier than for sequential sets. Memory of the number of sequentially presented objects emerged earlier than memory for the number of sequential events.…
Descriptors: Age Differences, Cognitive Development, Computation, Mathematical Concepts

Sophian, Catherine – Developmental Psychology, 2000
Examined the impact of object boundaries on 3-, 4-, and 5-year-olds' quantitative reasoning. Asked subjects to choose between alternative collections that differed in number and size of cookies and in aggregate amount. Found that children were influenced by size of individual cookies at 3 years but were generally unsuccessful in aggregating size…
Descriptors: Age Differences, Cognitive Development, Mathematical Concepts, Number Concepts
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