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Showing 1 to 15 of 20 results Save | Export
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Roy, George J.; Harbour, Kristin E.; Martin, Christie; Cunningham, Matthew – Mathematics Teacher: Learning and Teaching PK-12, 2022
One way to emphasize students' strengths when reasoning verbally is through number talks. During a number talk, a teacher facilitates a 5- to 15-minute conversation during which students have the opportunity to engage in mental mathematics and verbally explain and justify their reasoning regarding how they make sense of numerical computations.…
Descriptors: Teaching Methods, Mathematics Instruction, Fractions, Cognitive Processes
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Bernabini, Luca; Tobia, Valentina; Bonifacci, Paola – Journal of Cognition and Development, 2021
In this article, we analyze symbolic and non-symbolic numerical abilities of parents in order to understand whether these are predictors of children's numerical skills, considering basic symbolic, non-symbolic, and formal math skills (i.e., written calculation). A battery of cognitive and math tasks was administered to a sample of 83 children with…
Descriptors: Comparative Analysis, Numeracy, Parent Child Relationship, Predictor Variables
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Alibali, Martha W.; Norton, Anderson – Research in Mathematics Education, 2019
The overarching theme of this book can be simply stated: Building on a foundation of biologically based abilities, children construct number via sensorimotor and mental activity. In this chapter, we return to this theme, and we connect it to three additional themes that emerge across chapters: comparing competing models for conceptual change;…
Descriptors: Mathematics Instruction, Interdisciplinary Approach, Teaching Methods, Numbers
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Wong, Terry T.-Y.; Ho, Connie S.-H.; Tang, Joey – Journal of Learning Disabilities, 2017
Developmental dyscalculia (DD) is a specific learning disability in mathematics that affects around 6% of the population. Currently, the core deficit of DD remains unknown. While the number sense deficit hypothesis suggests that the core deficit of DD lies in the inability to represent nonsymbolic numerosity, the access deficit hypothesis suggests…
Descriptors: Learning Disabilities, Mathematics Skills, Numeracy, Low Achievement
Perin, Dolores, Ed. – John Wiley & Sons, Inc, 2019
This handbook presents a wide range of research on adults who have low literacy skills. It looks at the cognitive, affective, and motivational factors underlying adult literacy; adult literacy in different countries; and the educational approaches being taken to help improve adults' literacy skills. It includes not only adults enrolled in adult…
Descriptors: Guides, Adult Literacy, Reading Difficulties, Literacy Education
Bengtson, Barbara J. – ProQuest LLC, 2013
Understanding the linear relationship of numbers is essential for doing practical and abstract mathematics throughout education and everyday life. There is evidence that number line activities increase learners' number sense, improving the linearity of mental number line representations (Siegler & Ramani, 2009). Mental representations of…
Descriptors: Numbers, Mathematics Education, Numeracy, Cognitive Processes
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Brankaer, Carmen; Ghesquiere, Pol; De Smedt, Bert – Research in Developmental Disabilities: A Multidisciplinary Journal, 2011
The present study investigated numerical magnitude processing in children with mild intellectual disabilities (MID) and examined whether these children have difficulties in the ability to represent numerical magnitudes and/or difficulties in the ability to access numerical magnitudes from formal symbols. We compared the performance of 26 children…
Descriptors: Mild Mental Retardation, Thinking Skills, Mathematics Skills, Cognitive Processes
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Santens, Seppe; Verguts, Tom – Cognition, 2011
When comparing digits of different physical sizes, numerical and physical size interact. For example, in a numerical comparison task, people are faster to compare two digits when their numerical size (the relevant dimension) and physical size (the irrelevant dimension) are congruent than when they are incongruent. Two main accounts have been put…
Descriptors: Children, Cognitive Processes, Comparative Analysis, Task Analysis
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Cowan, Richard; Powell, Daisy – Journal of Educational Psychology, 2014
Explanations of the marked individual differences in elementary school mathematical achievement and mathematical learning disability (MLD or dyscalculia) have involved domain-general factors (working memory, reasoning, processing speed, and oral language) and numerical factors that include single-digit processing efficiency and multidigit skills…
Descriptors: Elementary School Mathematics, Mathematics Skills, Learning Disabilities, Elementary School Students
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Merten, Katharina; Nieder, Andreas – Journal of Cognitive Neuroscience, 2009
There is general agreement that nonverbal animals and humans endowed with language possess an evolutionary precursor system for representing and comparing numerical values. However, whether nonverbal numerical representations in human and nonhuman primates are quantitatively similar and whether linear or logarithmic coding underlies such magnitude…
Descriptors: Scaling, Animals, Brain, Comparative Analysis
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van Dijck, Jean-Philippe; Gevers, Wim; Fias, Wim – Cognition, 2009
In this study, we examined the nature of the spatial-numerical associations underlying the SNARC-effect by imposing a verbal or spatial working memory load during a parity judgment and a magnitude comparison task. The results showed a double dissociation between the type of working memory load and type of task. The SNARC-effect disappeared under…
Descriptors: Short Term Memory, Spatial Ability, Numbers, Numeracy
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Chan, Becky Mee-yin; Ho, Connie Suk-han – Journal of Experimental Child Psychology, 2010
This study examined how four domain-specific skills (arithmetic procedural skills, number fact retrieval, place value concept, and number sense) and two domain-general processing skills (working memory and processing speed) may account for Chinese children's mathematics learning difficulties. Children with mathematics difficulties (MD) of two age…
Descriptors: Learning Problems, Mathematics Education, Short Term Memory, Number Concepts
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Kaufmann, L.; Vogel, S. E.; Starke, M.; Kremser, C.; Schocke, M. – Cognitive Development, 2009
Ordinality is--beyond numerical magnitude (i.e., quantity)--an important characteristic of the number system. There is converging empirical evidence that (intra)parietal brain regions mediate number magnitude processing. Furthermore, recent findings suggest that the human intraparietal sulcus (IPS) supports magnitude and ordinality in a…
Descriptors: Number Systems, Learning Disabilities, Brain, Numeracy
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Simon, T. J.; Takarae, Y.; DeBoer, T.; McDonald-McGinn, D. M.; Zackai, E. H.; Ross, J. L. – Neuropsychologia, 2008
Children with one of two genetic disorders (chromosome 22q11.2 deletion syndrome and Turner syndrome) as well typically developing controls, participated in three cognitive processing experiments. Two experiments were designed to test cognitive processes involved in basic aspects numerical cognition. The third was a test of simple manual motor…
Descriptors: Genetic Disorders, Reaction Time, Genetics, Cognitive Processes
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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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