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Leung, Chloe Oi-Ying; Wong, Terry Tin-Yau – Journal of Educational Psychology, 2023
The current study investigated the relation between spatial ability and children's math performance, as well as the potential mechanisms underlying this relation including numerical magnitude knowledge, understanding of arithmetic operations, and word-problem representation. A sample of 221 Asian sixth graders (age 11, 129 boys) completed a series…
Descriptors: Spatial Ability, Mathematics Achievement, Knowledge Level, Arithmetic
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Braithwaite, David W.; Sprague, Lauren – Cognitive Science, 2021
When, how, and why students use conceptual knowledge during math problem solving is not well understood. We propose that when solving routine problems, students are more likely to recruit conceptual knowledge if their procedural knowledge is weak than if it is strong, and that in this context, metacognitive processes, specifically feelings of…
Descriptors: Concept Formation, Mathematical Concepts, Metacognition, Knowledge Level
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Bellon, Elien; Fias, Wim; De Smedt, Bert – Journal of Educational Psychology, 2021
Both mathematics anxiety and metacognitive monitoring have been identified as associated with or predictive of individual differences in arithmetic achievement in primary school children. Although there are various theoretical reasons for an association between mathematics anxiety and metacognitive monitoring, it is unclear at the empirical level…
Descriptors: Mathematics Anxiety, Metacognition, Arithmetic, Mathematics Achievement
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Siegler, Robert S. – Developmental Science, 2016
The integrated theory of numerical development posits that a central theme of numerical development from infancy to adulthood is progressive broadening of the types and ranges of numbers whose magnitudes are accurately represented. The process includes four overlapping trends: (1) representing increasingly precisely the magnitudes of non-symbolic…
Descriptors: Numbers, Theories, Individual Development, Symbols (Mathematics)
Siegler, Robert S. – Grantee Submission, 2016
The integrated theory of numerical development posits that a central theme of numerical development from infancy to adulthood is progressive broadening of the types and ranges of numbers whose magnitudes are accurately represented. The process includes four overlapping trends: 1) representing increasingly precisely the magnitudes of non-symbolic…
Descriptors: Numbers, Theories, Individual Development, Symbols (Mathematics)
Muckridge, Nicole A. – ProQuest LLC, 2017
The purpose of this study was to examine adult developmental mathematics (ADM) students' knowledge of fraction addition and subtraction as it relates to their demonstrated fraction schemes and ability to disembed in multiplicative contexts with whole numbers. The study was conducted using a mixed methods sequential explanatory design. In the first…
Descriptors: Adult Learning, Developmental Studies Programs, Mathematics Education, Knowledge Level
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Canobi, Katherine H.; Reeve, Robert A.; Pattison, Philippa E. – Developmental Psychology, 2003
Examined patterns of conceptual and procedural knowledge of addition in 5- to 8-year-olds. Found that children were more successful in noticing that addends had been reordered rather than decomposed and in noticing the decomposition of addends presented with objects rather than with symbols. Also found that profiles of procedural competence were…
Descriptors: Addition, Age Differences, Arithmetic, Children
Bayroff, Abram G.; Fuchs, Edmund F. – 1970
This study identified Army, Navy, and Air Force classification tests which were interchangeable in terms of abilities and aptitudes measured; and sought to develop shortened forms as an alternative interservice test battery which would not require over 2 1/2 hours. Comparability was determined from test intercorrelations in a consolidated sample…
Descriptors: Aptitude Tests, Arithmetic, Clerical Occupations, Correlation