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Showing 1 to 15 of 24 results Save | Export
Hynes-Berry, Mary; Chen, Jie-Qi; Abel, Barbara – Teachers College Press, 2021
This groundbreaking book looks at the development of mathematical thinking in infants and toddlers, with an emphasis on the earliest stage, from zero to three, when mathematical thinking and problem solving first emerge as natural instincts. The text explores the four precursor math concepts--attribute, comparison, change, and pattern--with an…
Descriptors: Infants, Toddlers, Mathematics Skills, Mathematical Concepts
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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
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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Hawera, Ngarewa; Taylor, Merilyn – Australian Primary Mathematics Classroom, 2011
Developing critical numeracy is important in a society where mathematics plays a particular and significant role. One way of helping learners to develop the level of numeracy required to participate in society is by exploring ideas embedded in rich, accessible tasks. These can be linked to contexts that have relevance in their lives. One…
Descriptors: Teacher Role, Numeracy, Marketing, Mathematics Education
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Sarama, Julie; Clements, Douglas H. – American Journal of Play, 2009
The authors explore how children's play can support the development of the foundations of mathematics learning and how adults can support children's representation of--and thus the "mathematization" of--their play. The authors review research about the amount and nature of mathematics found in the free play of children. They briefly…
Descriptors: Play, Cognitive Development, Child Development, Mathematics Skills
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Reyna, Valerie F.; Brainerd, Charles J. – Learning and Individual Differences, 2007
Mathematics achievement is important in its own right, and is increasingly recognized as crucial to the nation's economy [National Mathematics Panel, 2006. "National Mathematics Advisory Panel: Strengthening Math Education Through Research." Accessed September 29, 2006 from http://www.ed.gov/about/bdscomm/list/mathpanel/factsheet.html.; National…
Descriptors: Mathematics Achievement, Numeracy, National Surveys, Probability
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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
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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
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Stavridou, Fotini; Kakana, Domna – Educational Research, 2008
Background: The study investigated a small range of cognitive abilities, related to visual-spatial intelligence, in adolescents. This specific range of cognitive abilities was termed "graphic abilities" and defined as a range of abilities to visualise and think in three dimensions, originating in the domain of visual-spatial…
Descriptors: Intelligence, Adolescents, Visual Perception, Foreign Countries
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Miura, Irene T.; Okamoto, Yukari; Vlahovic-Stetic, Vesna; Kim, Chungsoon C.; Han, John Hye – Journal of Experimental Child Psychology, 1999
This study compared 6- to 7-year-olds' knowledge of numerical fractions prior to school instruction in Croatia, Korea, and United States. Results suggested that the Korean vocabulary of fractions may influence the meaning children ascribe to numerical fractions and that this results in children being able to associated numerical fractions with…
Descriptors: Cognitive Development, Elementary School Students, Foreign Countries, Fractions
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Sophian, Catherine; McCorgray, Patricia – Cognition and Instruction, 1994
Two experiments examined the development of children's understanding of part-whole relations. Found that five- and six-year olds evidenced understanding of part-whole relations, but four-year olds did not. Results support the conclusion that an understanding of the relationship between a superordinate set and the basic-level sets that comprise it…
Descriptors: Age Differences, Cognitive Development, Developmental Stages, Mathematical Concepts
Campbell, Patricia F. – 1999
Noting that assumptions about the teaching and learning of early childhood mathematics have changed substantially since the 1970s, this chapter examines recent research that may inform curriculum development in early childhood mathematics. The chapter begins with a consideration of the theoretical perspectives for defining an appropriate…
Descriptors: Cognitive Development, Curriculum Development, Elementary Education, Elementary School Curriculum
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Butterworth, Brian – Journal of Child Psychology and Psychiatry, 2005
Background: Arithmetical skills are essential to the effective exercise of citizenship in a numerate society. How these skills are acquired, or fail to be acquired, is of great importance not only to individual children but to the organisation of formal education and its role in society. Method: The evidence on the normal and abnormal…
Descriptors: Evidence, Neurology, Genetics, Arithmetic
Copley, Juanita V., Ed. – 1999
Noting that young children are capable of surprisingly complex forms of mathematical thinking and learning, this book presents a collection of articles depicting children discovering mathematical ideas, teachers fostering students' informal mathematical knowledge, adults asking questions and listening to answers, and researchers examining…
Descriptors: Administrator Attitudes, Arithmetic, Books, Childrens Literature
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