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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
Clarissa A. Thompson; Marta K. Mielicki; Ferdinand Rivera; Charles J. Fitzsimmons; Daniel A. Scheibe; Pooja G. Sidney; Jennifer M. Taber; Erika A. Waters – Grantee Submission, 2023
Rational numbers (i.e., fractions, percentages, decimals, and whole-number frequencies) are notoriously difficult mathematical constructs. Yet correctly interpreting rational numbers is imperative for understanding health statistics, such as gauging the likelihood of side effects from a medication. Several pernicious biases affect health…
Descriptors: Mathematics Skills, Health, Numeracy, Cognitive Processes
Di Giorgio, Elisa; Lunghi, Marco; Rugani, Rosa; Regolin, Lucia; Dalla Barba, Beatrice; Vallortigara, Giorgio; Simion, Francesca – Developmental Science, 2019
Humans represent numbers on a mental number line with smaller numbers on the left and larger numbers on the right side. A left-to-right oriented spatial-numerical association, (SNA), has been demonstrated in animals and infants. However, the possibility that SNA is learnt by early exposure to caregivers' directional biases is still open. We…
Descriptors: Numbers, Cognitive Processes, Spatial Ability, Neonates
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
Majerus, Steve; Oberauer, Klaus – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
The processing of ordinally organized information is a characteristic of both serial-order working memory and numerical cognition. Serial positions of items presented within a list follow an ordinal organization when stored in working memory, whereas numbers are based on an ordinal structure stored in long-term memory. We tested the hypothesis…
Descriptors: Short Term Memory, Serial Ordering, Numeracy, Numbers
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
Huo, Shuting; Zhang, Xiao; Law, Yin Kum – Journal of Educational Psychology, 2021
Drawing on Geary's (1995) evolution-based model of cognitive and academic development, this study investigated the relation between biologically primary skills (vocabulary, executive functions, and visual-spatial processing) and subsequent word reading and calculation. It also examined the extent to which these relations were mediated by…
Descriptors: Foreign Countries, Kindergarten, Socioeconomic Status, Vocabulary Development
Matthews, Percival G.; Lewis, Mark R. – Cognitive Science, 2017
Although many researchers theorize that primitive numerosity processing abilities may lay the foundation for whole number concepts, other classes of numbers, like fractions, are sometimes assumed to be inaccessible to primitive architectures. This research presents evidence that the automatic processing of nonsymbolic magnitudes affects processing…
Descriptors: Numbers, Numeracy, Color, Interference (Learning)
Träff, Ulf; Olsson, Linda; Skagerlund, Kenny; Östergren, Rickard – Journal of Educational Psychology, 2020
This study examined cognitive precursors of hierarchical mathematical development. Six-year-old children (n = 258) were assessed on number skills, cognitive skills, and arithmetic 1 year prior to school entry. Skills in advanced arithmetic and advanced mathematics were assessed in Grades 3 and 6, respectively. Path analyses were computed and…
Descriptors: Young Children, Numeracy, Numbers, Mathematics Skills
Brez, Caitlin C.; Miller, Angela D.; Ramirez, Erin M. – Journal of Cognition and Development, 2016
Numerical estimation has been used to study how children mentally represent numbers for many years (e.g., Siegler & Opfer, 2003). However, these studies have always presented children with positive numbers and positive number lines. Children's mental representation of negative numbers has never been addressed. The present study tested children…
Descriptors: Cognitive Processes, Numeracy, Numbers, Grade 2
Bofferding, Laura – Teaching Children Mathematics, 2014
As students progress from working with whole numbers to working with integers, they must wrestle with the big ideas of number values and order. Using objects to show positive quantities is easy, but no physical negative quantities exist. Therefore, when talking about integers, the author refers to number values instead of number quantities. The…
Descriptors: Mathematics Instruction, Teaching Methods, Grade 1, Elementary School Mathematics
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
Davidse, N. J.; De Jong, M. T.; Bus, A. G. – Reading and Writing: An Interdisciplinary Journal, 2014
How can it be explained that early literacy and numeracy share variance? We specifically tested whether the correlation between four early literacy skills (rhyming, letter knowledge, emergent writing, and orthographic knowledge) and simple sums (non-symbolic and story condition) reduced after taking into account preschool attention control,…
Descriptors: Emergent Literacy, Numeracy, Correlation, Rhyme
Hodgen, Jeremy; Foster, Colin; Marks, Rachel; Brown, Margaret – Education Endowment Foundation, 2018
This document presents a review of evidence commissioned by the Education Endowment Foundation to inform the guidance document "Improving Mathematics in Key Stages Two and Three" (Education Endowment Foundation, 2017). The review draws on a substantial parallel study by the same research team, funded by the Nuffield Foundation, which…
Descriptors: Mathematics Instruction, Foreign Countries, Mathematics Skills, Feedback (Response)
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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