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Krajcsi, Attila; Reynvoet, Bert – Developmental Science, 2024
Initial acquisition of the first symbolic numbers is measured with the Give a Number (GaN) task. According to the classic method, it is assumed that children who know only 1, 2, 3, or 4 in the GaN task, (termed separately one-, two-, three-, and four-knowers, or collectively subset-knowers) have only a limited conceptual understanding of numbers.…
Descriptors: Numbers, Number Concepts, Symbols (Mathematics), Children
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Cheung, Pierina; Toomey, Mary; Jiang, Yahao Harry; Stoop, Tawni B.; Shusterman, Anna – Developmental Science, 2022
Studies on children's understanding of counting examine when and how children acquire the cardinal principle: the idea that the last word in a counted set reflects the cardinal value of the set. Using Wynn's (1990) Give-N Task, researchers classify children who can count to generate large sets as having acquired the cardinal principle…
Descriptors: Computation, Performance, Number Concepts, Numeracy
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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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Serena Dolfi; Gisella Decarli; Maristella Lunardon; Michele De Filippo De Grazia; Silvia Gerola; Silvia Lanfranchi; Giuseppe Cossu; Francesco Sella; Alberto Testolin; Marco Zorzi – Developmental Science, 2024
Impaired numerosity perception in developmental dyscalculia (low "number acuity") has been interpreted as evidence of reduced representational precision in the neurocognitive system supporting non-symbolic number sense. However, recent studies suggest that poor numerosity judgments might stem from stronger interference from non-numerical…
Descriptors: Number Concepts, Learning Disabilities, Numeracy, Mathematics Skills
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Wagner, Katie; Chu, Junyi; Barner, David – Developmental Science, 2019
How do children acquire exact meanings for number words like three or forty-seven? In recent years, a lively debate has probed the cognitive systems that support learning, with some arguing that an evolutionarily ancient "approximate number system" drives early number word meanings, and others arguing that learning is supported chiefly…
Descriptors: Numbers, Number Concepts, Children, Semantics
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Aulet, Lauren S.; Lourenco, Stella F. – Developmental Science, 2023
Accumulating evidence suggests that there is a spontaneous preference for numerical, compared to non-numerical (e.g., cumulative surface area), information. However, given a paucity of research on the perception of non-numerical magnitudes, it is unclear whether this preference reflects a specific bias towards number, or a general bias towards the…
Descriptors: Number Concepts, Mathematics Skills, Discrimination Learning, Preferences
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Schneider, Rose M.; Pankonin, Ashlie; Schachner, Adena; Barner, David – Developmental Science, 2021
Although most U. S. children can accurately count sets by 4 years of age, many fail to understand the structural analogy between counting and number -- that adding 1 to a set corresponds to counting up 1 word in the count list. While children are theorized to establish this Structure Mapping coincident with learning how counting is used to…
Descriptors: Computation, Numbers, Children, Child Development
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Testolin, Alberto; Zou, Will Y.; McClelland, James L. – Developmental Science, 2020
Both humans and non-human animals exhibit sensitivity to the approximate number of items in a visual array, as indexed by their performance in numerosity discrimination tasks, and even neonates can detect changes in numerosity. These findings are often interpreted as evidence for an innate 'number sense'. However, recent simulation work has…
Descriptors: Numbers, Brain, Individual Development, Age Differences
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Prather, Richard – Developmental Science, 2021
Children's knowledge of arithmetic principles is a key aspect of early mathematics knowledge. Knowledge of arithmetic principles predicts how children approach solving arithmetic problems and the likelihood of their success. Prior work has begun to address how children might learn arithmetic principles in a classroom setting. Understanding of…
Descriptors: Attention, Number Concepts, Arithmetic, Children
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Lai, Maxine; Zax, Alexandra; Barth, Hilary – Developmental Science, 2018
Learning the meanings of Arabic numerals involves mapping the number symbols to mental representations of their corresponding, approximate numerical quantities. It is often assumed that performance on numerical tasks, such as number line estimation (NLE), is primarily driven by translating from a presented numeral to a mental representation of its…
Descriptors: Numbers, Computation, Children, Adults
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Odic, Darko – Developmental Science, 2018
Young children can quickly and intuitively represent the number of objects in a visual scene through the Approximate Number System (ANS). The precision of the ANS--indexed as the most difficult ratio of two numbers that children can reliably discriminate--is well known to improve with development: whereas infants require relatively large ratios to…
Descriptors: Correlation, Mathematics, Number Concepts, Comparative Analysis
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Jara-Ettinger, Julian; Piantadosi, Steve; Spelke, Elizabeth S.; Levy, Roger; Gibson, Edward – Developmental Science, 2017
To master the natural number system, children must understand both the concepts that number words capture and the counting procedure by which they are applied. These two types of knowledge develop in childhood, but their connection is poorly understood. Here we explore the relationship between the mastery of counting and the mastery of exact…
Descriptors: Mastery Learning, Arithmetic, Number Concepts, Computation
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Lussier, Courtney A.; Cantlon, Jessica F. – Developmental Science, 2017
Children and adults show behavioral evidence of psychological overlap between their early, non-symbolic numerical concepts and their later-developing symbolic numerical concepts. An open question is to what extent the common cognitive signatures observed between different numerical notations are coupled with physical overlap in neural processes.…
Descriptors: Bias, Children, Adults, Brain
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Park, Joonkoo; van den Berg, Berry; Chiang, Crystal; Woldorff, Marty G.; Brannon, Elizabeth M. – Developmental Science, 2018
Adult neuroimaging studies have demonstrated dissociable neural activation patterns in the visual cortex in response to letters (Latin alphabet) and numbers (Arabic numerals), which suggest a strong experiential influence of reading and mathematics on the human visual system. Here, developmental trajectories in the event-related potential (ERP)…
Descriptors: Visual Perception, Neurological Organization, Brain Hemisphere Functions, Alphabets
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Jara-Ettinger, Julian; Gibson, Edward; Kidd, Celeste; Piantadosi, Steve – Developmental Science, 2016
Cooperation often results in a final material resource that must be shared, but deciding how to distribute that resource is not straightforward. A distribution could count as fair if all members receive an equal reward ("egalitarian distributions"), or if each member's reward is proportional to their merit ("merit-based…
Descriptors: American Indians, Foreign Countries, Forestry, Geographic Regions
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