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Showing 1 to 15 of 57 results Save | Export
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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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Laski, Elida V.; Siegler, Robert S. – Child Development, 2007
This study examined the generality of the logarithmic to linear transition in children's representations of numerical magnitudes and the role of subjective categorization of numbers in the acquisition of more advanced understanding. Experiment 1 (49 girls and 41 boys, ages 5-8 years) suggested parallel transitions from kindergarten to second grade…
Descriptors: Females, Individual Differences, Classification, Elementary Education
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Thornton, E. B. C. – Mathematics in School, 1975
Mathematical concepts and experiences are recalled and organized in a flow chart format. The power of unifying ideas in mathematics often causes this sequence to be forgotten or assigned less importance than it should be. (SD)
Descriptors: Cognitive Development, Elementary Education, Elementary School Mathematics, Flow Charts
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Mpiangu, Benayame Dinzau; Gentile, J. Ronald – Journal for Research in Mathematics Education, 1975
Children were grouped according to ability to conserve number and then randomly assigned to training on arithmetic concepts or playing a game. The research hypothesis that there would be an interaction effect between conservation and effect of treatment was not confirmed. (SD)
Descriptors: Cognitive Development, Conservation (Concept), Elementary Education, Elementary School Mathematics
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Wittmann, Erich – Educational Studies in Mathematics, 1975
The author interprets several mathematical concepts as groupings using Piaget's definition. He also discusses (briefly) the implications for primary education. (SD)
Descriptors: Cognitive Development, Elementary Education, Elementary School Mathematics, Mathematical Concepts
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Steffe, Leslie P. – Educational Studies in Mathematics, 1983
Six seven-year-old children were interviewed to investigate the quality of their solutions to whole-number tasks. Detailed analyses are provided of interviews with a girl who displayed an operative counting scheme (numerical extension) and a boy with a figurative counting scheme (intuitive extension). (MNS)
Descriptors: Cognitive Development, Cognitive Processes, Educational Research, Elementary Education
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Hunting, Robert P. – Journal for Research in Mathematics Education, 1983
A nine-year-old's conception of fractions was compared with his knowledge of units. He had effective schemes for solving some partition problems but did not consistently use units of different sizes in interpreting fractions. His solutions to equivalence problems showed no coherent method of verification. (MNS)
Descriptors: Case Studies, Cognitive Development, Computation, Elementary Education
Hutton, Joyce – Mathematics Teaching, 1978
The development of numeracy is discussed as being an important aspect of the learning process. (MP)
Descriptors: Cognitive Development, Concept Formation, Elementary Education, Elementary School Mathematics
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Grobecker, Betsey – Learning Disability Quarterly, 1997
Comparison of elementary grade students with (N=42) or without (N=42) learning disabilities (LD) on their logical-mathematical structures of thought found that, though both groups generated grouping relationships, children with LD tendered to generate solutions showing less coordinated structures of thought. For both groups, scores on the…
Descriptors: Abstract Reasoning, Cognitive Development, Educational Testing, Elementary Education
Maksimov, L. K. – Focus on Learning Problems in Mathematics, 1993
Describes a method of teaching the order of mathematical operations based upon the psychological theory of conceptual generalization. (MDH)
Descriptors: Cognitive Development, Computation, Concept Formation, Elementary Education
Hooten, Joseph R., Ed.; And Others – 1975
This is one of a series that is a collection of translations from the extensive Soviet literature of the past 25 years on research in the psychology of mathematics instruction. It also includes works on methods of teaching mathematics directly influenced by the psychological research. Selected papers and books considered to be of value to the…
Descriptors: Cognitive Development, Computation, Elementary Education, Elementary School Mathematics
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Schmittau, Jean – Journal of Mathematical Behavior, 1993
Based on the cognitive psychological theories of Vygotsky and Davydov, discusses the establishment of connections between mathematical elements, and the algorithmic rules that govern them, and children's spontaneous mathematical concepts. Presents examples that establish connections involving addition and subtraction, comparing numerical…
Descriptors: Addition, Cognitive Development, Cognitive Processes, Elementary Education
Keranto, Tapio – 1983
This report, written in Finnish with a 10-page summary in English, concerns research on the interrelationship between Piagetian operations, various aspects of information processing capacity and mathematical thought processes and strategies related to number and measurement. In a theoretical discussion, Piaget's research on mathematico-logical…
Descriptors: Cognitive Development, Cognitive Processes, Correlation, Elementary Education
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Beeson, Lenon; Ward, Murray – Mathematics in School, 1975
Preservice teachers observed the performance of primary children (age 8) doing a variety of concrete mathematical tasks. (SD)
Descriptors: Cognitive Development, Elementary Education, Elementary School Mathematics, Experiential Learning
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Griffin, Elizabeth A.; Morrison, Frederick J. – Early Child Development and Care, 1997
Evaluated the psychometric utility of a home literacy environment measure. Examined the measure's accuracy in predicting unique variance in children's performance on academic achievement measures after accounting for other important sources of variance, such as IQ and maternal education. Claims that this measure is psychometrically strong and…
Descriptors: Academic Achievement, Cognitive Development, Cognitive Measurement, Educational Environment
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