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Yunji Park; Yuan Zhang; Hyesang Chang; Vinod Menon – Developmental Science, 2024
Number sense is fundamental to the development of numerical problem-solving skills. In early childhood, children establish associations between non-symbolic (e.g., a set of dots) and symbolic (e.g., Arabic numerals) representations of quantity. The developmental estrangement theory proposes that the relationship between non-symbolic and symbolic…
Descriptors: Number Concepts, Mathematics Skills, Arithmetic, Training
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Matejko, Anna A.; Lozano, Melanie; Schlosberg, Nicole; McKay, Cameron; Core, Lucy; Revsine, Cambria; Davis, Shelby N.; Eden, Guinevere F. – Developmental Science, 2023
Phonological processing skills have not only been shown to be important for reading skills, but also for arithmetic skills. Specifically, previous research in typically developing children has suggested that phonological processing skills may be more closely related to arithmetic problems that are solved through fact retrieval (e.g., remembering…
Descriptors: Phonological Awareness, Arithmetic, Mathematics Skills, Students with Disabilities
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Haman, Maciej; Lipowska, Katarzyna – Developmental Science, 2023
In numerical cognition research, the operational momentum (OM) phenomenon (tendency to overestimate the results of addition and/or binding addition to the right side and underestimating subtraction and/or binding it to the left side) can help illuminate the most basic representations and processes of mental arithmetic and their development. This…
Descriptors: Preschool Children, Prior Learning, Mathematics Education, Number Concepts
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Haman, Maciej; Lipowska, Katarzyna – Developmental Science, 2021
People tend to underestimate subtraction and overestimate addition outcomes and to associate subtraction with the left side and addition with the right side. These two phenomena are collectively labeled 'operational momentum' (OM) and thought to have their origins in the same mechanism of 'moving attention along the mental number line'. OM in…
Descriptors: Preschool Children, Arithmetic, Attention, Spatial Ability
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Geary, David C.; Scofield, John E.; Hoard, Mary K.; Nugent, Lara – Developmental Science, 2021
The study tested the hypotheses that boys will have an advantage learning the fractions number line and this advantage will be mediated by spatial abilities. Fractions number line and, as a contrast, fractions arithmetic performance were assessed for 342 adolescents, as was their intelligence, working memory, and various spatial abilities. Boys…
Descriptors: Males, Fractions, Spatial Ability, Attention
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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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Schwartz, Flora; Zhang, Yuan; Chang, Hyesang; Karraker, Shelby; Kang, Julia Boram; Menon, Vinod – Developmental Science, 2021
Mathematical knowledge is constructed hierarchically from basic understanding of quantities and the symbols that denote them. Discrimination of numerical quantity in both symbolic and non-symbolic formats has been linked to mathematical problem-solving abilities. However, little is known of the extent to which overlap in quantity representations…
Descriptors: Arithmetic, Mathematics Skills, Elementary School Students, Young Adults
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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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Cheng, Dazhi; Xiao, Qing; Cui, Jiaxin; Chen, Chuansheng; Zeng, Jieying; Chen, Qian; Zhou, Xinlin – Developmental Science, 2020
Studies have shown that numerosity-based arithmetic training can promote arithmetic learning in typically developing children as well as children with developmental dyscalculia (DD), but the cognitive mechanism underlying this training effect remains unclear. The main aim of the current study was to examine the role of visual form perception in…
Descriptors: Foreign Countries, Short Term Memory, Mathematics Education, Arithmetic
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West, Gillian; Vadillo, Miguel A.; Shanks, David R.; Hulme, Charles – Developmental Science, 2018
Impaired procedural learning has been suggested as a possible cause of developmental dyslexia (DD) and specific language impairment (SLI). This study examined the relationship between measures of verbal and non-verbal implicit and explicit learning and measures of language, literacy and arithmetic attainment in a large sample of 7 to 8-year-old…
Descriptors: Dyslexia, Language Impairments, Young Children, Verbal Learning
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Sasanguie, Delphine; Vos, Helene – Developmental Science, 2018
Digit comparison is strongly related to individual differences in children's arithmetic ability. Why this is the case, however, remains unclear to date. Therefore, we investigated the relative contribution of three possible cognitive mechanisms in first and second graders' digit comparison performance: digit identification, digit--number word…
Descriptors: Elementary School Mathematics, Elementary School Students, Grade 1, Grade 2
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Kibbe, Melissa M.; Feigenson, Lisa – Developmental Science, 2015
The Approximate Number System (ANS) supports basic arithmetic computation in early childhood, but it is unclear whether the ANS also supports the more complex computations introduced later in formal education. "Solving for x" in addend-unknown problems is notoriously difficult for children, who often struggle with these types of problems…
Descriptors: Young Children, Problem Solving, Numbers, Mathematics Skills
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Braithwaite, David W.; Tian, Jing; Siegler, Robert S. – Developmental Science, 2018
Many children fail to master fraction arithmetic even after years of instruction. A recent theory of fraction arithmetic (Braithwaite, Pyke, & Siegler, 2017) hypothesized that this poor learning of fraction arithmetic procedures reflects poor conceptual understanding of them. To test this hypothesis, we performed three experiments examining…
Descriptors: Fractions, Addition, Arithmetic, Hypothesis Testing
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Xenidou-Dervou, Iro; Van Luit, Johannes E. H.; Kroesbergen, Evelyn H.; Friso-van den Bos, Ilona; Jonkman, Lisa M.; van der Schoot, Menno; van Lieshout, Ernest C. D. M. – Developmental Science, 2018
Research has identified various domain-general and domain-specific cognitive abilities as predictors of children's individual differences in mathematics achievement. However, research into the predictors of children's individual growth rates, namely between-person differences in within-person change in mathematics achievement is scarce. We…
Descriptors: Predictor Variables, Structural Equation Models, Cognitive Ability, Mathematics Instruction
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De Visscher, Alice; Noël, Marie-Pascale – Developmental Science, 2014
Dyscalculia, or mathematics learning disorders, is currently known to be heterogeneous (Wilson & Dehaene, 2007). While various profiles of dyscalculia coexist, a general and persistent hallmark of this math learning disability is the difficulty in memorizing arithmetic facts (Geary, Hoard & Hamson, 1999; Jordan & Montani, 1997; Slade…
Descriptors: Arithmetic, Learning Disabilities, Memory, Interference (Learning)
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