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Rumbelow, Michael – For the Learning of Mathematics, 2021
"Where Mathematics Comes From" (Lakoff & Núñez 2000) proposed that mathematical concepts such as arithmetic and counting are constructed cognitively from embodied metaphors of actions on physical objects, and four actions, or 'grounding metaphors' in particular: collecting, stepping, constructing and measuring. This article argues…
Descriptors: Arithmetic, Mathematics Instruction, Mathematical Concepts, Figurative Language
Cheng, Zi-Juan – Journal of Mathematical Behavior, 2012
The ability to count has traditionally been considered an important milestone in children's development of number sense. However, using counting (e.g., counting on, counting all) strategies to solve addition problems is not the best way for children to achieve their full mathematical potential and to prepare them to develop more complex and…
Descriptors: Arithmetic, Young Children, Addition, Child Development
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
Newcombe, Nora S.; Levine, Susan C.; Mix, Kelly S. – Grantee Submission, 2015
There are many continuous quantitative dimensions in the physical world. Philosophical, psychological and neural work has focused mostly on space and number. However, there are other important continuous dimensions (e.g., time, mass). Moreover, space can be broken down into more specific dimensions (e.g., length, area, density) and number can be…
Descriptors: Correlation, Spatial Ability, Numbers, Teaching Methods
McCrink, Koleen; Wynn, Karen – Journal of Experimental Child Psychology, 2009
Recent studies on nonsymbolic arithmetic have illustrated that under conditions that prevent exact calculation, adults display a systematic tendency to overestimate the answers to addition problems and underestimate the answers to subtraction problems. It has been suggested that this "operational momentum" results from exposure to a…
Descriptors: Numbers, Infants, Developmental Continuity, Subtraction
Piazza, Manuela; Facoetti, Andrea; Trussardi, Anna Noemi; Berteletti, Ilaria; Conte, Stefano; Lucangeli, Daniela; Dehaene, Stanisalas; Zorzi, Marco – Cognition, 2010
Developmental dyscalculia is a learning disability that affects the acquisition of knowledge about numbers and arithmetic. It is widely assumed that numeracy is rooted on the "number sense", a core ability to grasp numerical quantities that humans share with other animals and deploy spontaneously at birth. To probe the links between number sense…
Descriptors: Mathematics Education, Learning Disabilities, Disability Identification, Numbers
Jordan, Julie-Ann; Mulhern, Gerry; Wylie, Judith – Journal of Experimental Child Psychology, 2009
The arithmetical performance of typically achieving 5- to 7-year-olds (N=29) was measured at four 6-month intervals. The same seven tasks were used at each time point: exact calculation, story problems, approximate arithmetic, place value, calculation principles, forced retrieval, and written problems. Although group analysis showed mostly linear…
Descriptors: Intervals, Individual Differences, Number Concepts, Computation
Landerl, Karin; Kolle, Christina – Journal of Experimental Child Psychology, 2009
Deficits in basic numerical processing have been identified as a central and potentially causal problem in developmental dyscalculia; however, so far not much is known about the typical and atypical development of such skills. This study assessed basic number skills cross-sectionally in 262 typically developing and 51 dyscalculic children in…
Descriptors: Numbers, Children, Grade 2, Arithmetic
Dowker, Ann – Developmental Science, 2008
This study investigated "individual differences" in different aspects of early number concepts in preschoolers. Eighty 4-year-olds from Oxford nursery classes took part. They were tested on accuracy of counting sets of objects; the cardinal word principle; the order irrelevance principle; and predicting the results of repeated addition…
Descriptors: Individual Differences, Number Concepts, Subtraction, Preschool Children
Iuculano, Teresa; Tang, Joey; Hall, Charles W. B.; Butterworth, Brian – Developmental Science, 2008
There are two different conceptions of the innate basis for numerical abilities. On the one hand, it is claimed that infants possess a "number module" that enables them to construct concepts of the exact numerosities of sets upon which arithmetic develops (e.g. Butterworth, 1999 ; Gelman & Gallistel, 1978). On the other hand, it has been proposed…
Descriptors: Number Concepts, Numeracy, Arithmetic, Information Processing
Language-Specific Effects on Number Computation in Toddlers: A European Cross-Linguistic Cartography
Lubin, Amelie; Pineau, Arlette; Hodent, Celia; Houde, Olivier – Cognitive Development, 2006
A fundamental question in developmental science is how brains with and without language compute numbers. Measuring young children's verbal reactions in Spain and Finland, we show that, although there is a general arithmetic ability for small numbers that is shared by monkeys and preverbal infants, the development of such initial knowledge in…
Descriptors: Foreign Countries, Cartography, Numbers, Computation

Wright, Bob – Australian Journal of Education, 1992
It is argued that Australian elementary mathematics curricula have been influenced by earlier British and United States educational movements and theories and are out of touch with current research emphasizing a constructivist approach. A new model of young children's numerical development is offered, and recommendations for improving mathematical…
Descriptors: Arithmetic, Child Development, Cognitive Processes, Comparative Education