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Denitza Dramkin; Darko Odic – Developmental Science, 2024
As adults, we represent and think about number, space, and time in at least two ways: our intuitive--but imprecise--perceptual representations, and the slowly learned--but precise--number words. With development, these representational formats interface, allowing us to use precise number words to estimate imprecise perceptual experiences. We test…
Descriptors: Child Development, Numbers, Vocabulary Development, Numeracy
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Wolf, Sharon; McCoy, Dana Charles – Developmental Science, 2019
The majority of evidence on the interplay between academic and non-academic skills comes from high-income countries. The aim of this study was to examine the bidirectional associations between Ghanaian children's executive function, social-emotional, literacy, and numeracy skills longitudinally. Children (N = 3,862; M age = 5.2 years at time 1)…
Descriptors: Executive Function, Young Children, Literacy, Numeracy
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Bathelt, Joe; Gathercole, Susan E.; Butterfield, Sally; Astle, Duncan E. – Developmental Science, 2018
Literacy and numeracy are important skills that are typically learned during childhood, a time that coincides with considerable shifts in large-scale brain organization. However, most studies emphasize focal brain contributions to literacy and numeracy development by employing case-control designs and voxel-by-voxel statistical comparisons. This…
Descriptors: Brain Hemisphere Functions, Academic Achievement, Learning Problems, Literacy
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Chernyak, Nadia; Harris, Paul L.; Cordes, Sara – Developmental Science, 2019
Recent work has documented that despite preschool-aged children's understanding of social norms surrounding sharing, they fail to share their resources equally in many contexts. Here we explored two hypotheses for this failure: an "insufficient motivation hypothesis" and an "insufficient cognitive resources hypothesis." With…
Descriptors: Moral Values, Preschool Education, Schemata (Cognition), Age Differences
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van Marle, Kristy; Chu, Felicia W.; Li, Yaoran; Geary, David C. – Developmental Science, 2014
The study assessed the relations among acuity of the inherent approximate number system (ANS), performance on measures of symbolic quantitative knowledge, and mathematics achievement for a sample of 138 (64 boys) preschoolers. The Weber fraction (a measure of ANS acuity) and associated task accuracy were significantly correlated with mathematics…
Descriptors: Preschool Children, Child Development, Number Systems, Numeracy
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Cordes, Sara; Brannon, Elizabeth M. – Developmental Science, 2008
We review recently published papers that have contributed to our understanding of how the preverbal infant represents number, area and time. We review evidence that infants rely on two distinct systems to represent number nonverbally and highlight the similarities in the ratio-dependent discrimination of number, time and area. Contrary to earlier…
Descriptors: Infants, Competence, Concept Formation, Time
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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
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Holloway, Ian D.; Ansari, Daniel – Developmental Science, 2008
The numerical distance effect (inverse relationship between numerical distance and reaction time in relative number comparison tasks) has frequently been used to characterize the mental representation of number. The size of the distance effect decreases over developmental time. However, it is unclear whether this reduction simply reflects…
Descriptors: Reaction Time, Cognitive Processes, Comparative Analysis, Young Children
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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
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Van Herwegen, Jo; Ansari, Daniel; Xu, Fei; Karmiloff-Smith, Annette – Developmental Science, 2008
Previous studies have suggested that typically developing 6-month-old infants are able to discriminate between small and large numerosities. However, discrimination between small numerosities in young infants is only possible when variables continuous with number (e.g. area or circumference) are confounded. In contrast, large number discrimination…
Descriptors: Toddlers, Infants, Number Concepts, Numeracy
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Wood, Justin N.; Spelke, Elizabeth S. – Developmental Science, 2005
Are abstract representations of number--representations that are independent of the particular type of entities that are enumerated--a product of human language or culture, or do they trace back to human infancy? To address this question, four experiments investigated whether human infants discriminate between sequences of actions (jumps of a…
Descriptors: Numeracy, Infants, Numbers, Visual Stimuli
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Xu, Fei; Spelke, Elizabeth S.; Goddard, Sydney – Developmental Science, 2005
Four experiments used a preferential looking method to investigate 6-month-old infants' capacity to represent numerosity in visual-spatial displays. Building on previous findings that such infants discriminate between arrays of eight versus 16 discs, but not eight versus 12 discs (Xu & Spelke, 2000), Experiments 1 and 2 investigated whether…
Descriptors: Infants, Numeracy, Visual Stimuli, Task Analysis