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Marta K. Mielicki; Eric D. Wilkey; Daniel A. Scheibe; Charles J. Fitzsimmons; Pooja G. Sidney; Elien Bellon; Andrew D. Ribner; Mojtaba Soltanlou; Isabella Starling-Alves; Ilse Coolen; Daniel Ansari; Clarissa A. Thompson – Grantee Submission, 2023
Math performance is negatively related to math anxiety (MA), though MA may impact certain math skills more than others. We investigated whether the relation between MA and math performance is affected by task features, such as number type (e.g., fractions, whole numbers, percentages), number format (symbolic vs. nonsymbolic), and ratio component…
Descriptors: Mathematics Anxiety, Numbers, Number Concepts, Computation
Theresa Elise Wege; Camilla Gilmore; Matthew Inglis – Journal of Numerical Cognition, 2025
Children learn the cardinalities of the first numbers one, two, three and four before they learn how counting tracks cardinality for all numbers. It may be that when children start to understand counting, they also discover how numbers relate to one another in a structured number system. Do children who understand that the cardinality of a set is…
Descriptors: Numeracy, Number Concepts, Arithmetic, Mathematics Skills
Baroody, Arthur J.; Mix, Kelly S.; Kartal, Gamze; Lai, Meng-lung – Journal of Numerical Cognition, 2023
Number-recognition tasks, such as the how-many task, involve set-to-word mapping, and number-creation tasks, such as the give-n task, entail word-to-set mapping. The present study involved comparing sixty 3-year-olds' performance on the two tasks with collections of one to three items over three time points about 3 weeks apart. Inconsistent with…
Descriptors: Number Concepts, Recall (Psychology), Task Analysis, Preschool Children
Yousif, Sami R.; Alexandrov, Emma; Bennette, Elizabeth; Aslin, Richard N.; Keil, Frank C. – Developmental Science, 2022
A large and growing body of work has documented robust illusions of area perception in adults. To date, however, there has been surprisingly little in-depth investigation into children's area perception, despite the importance of this topic to the study of quantity perception more broadly (and to the many studies that have been devoted to studying…
Descriptors: Computation, Decision Making, Task Analysis, Heuristics
Watanabe, Nobuki – International Electronic Journal of Mathematics Education, 2023
The role of executive function training in supporting child development has been increasingly studied. Executive function is largely related to the prefrontal cortex. The anterior portion of the prefrontal cortex, which is area 10 on the Brodmann map, is essential for the emergence of higher-order executive functions. Accumulating evidence…
Descriptors: Mathematics Instruction, Teaching Methods, Alphabets, Numbers
Thompson, Clarissa A.; Morris, Bradley J.; Sidney, Pooja G. – Grantee Submission, 2017
Do children spontaneously represent spatial-numeric features of a task, even when it does not include printed numbers (Mix et al., 2016)? Sixty first grade students completed a novel spatial estimation task by seeking and finding pages in a 100-page book without printed page numbers. Children were shown pages 1 through 6 and 100, and then were…
Descriptors: Elementary School Students, Grade 6, Number Concepts, Spatial Ability
Finesilver, Carla – Mathematical Thinking and Learning: An International Journal, 2017
The move from additive to multiplicative thinking requires significant change in children's comprehension and manipulation of numerical relationships, involves various conceptual components, and can be a slow, multistage process for some. Unit arrays are a key visuospatial representation for supporting learning, but most research focuses on 2D…
Descriptors: Multiplication, Computation, Numeracy, Number Concepts
Vitale, Jonathan M.; Black, John B.; Swart, Michael I. – Journal of Educational Psychology, 2014
Do concrete learning materials promote strong learning outcomes, or do they simply make learning tasks more initially accessible? Although concrete materials may offer an intuitive foothold on a topic, research on desirable difficulties suggests that more challenging tasks facilitate greater retention and transfer. In the approach introduced here,…
Descriptors: Elementary School Mathematics, Elementary School Students, Numeracy, Number Concepts
Demeyere, Nele; Humphreys, Glyn W. – Journal of Experimental Psychology: Human Perception and Performance, 2012
Evidence is presented for the immediate apprehension of exact small quantities. Participants performed a quantification task (are the number of items greater or smaller than?), and carry-over effects were examined between numbers requiring the same response. Carry-over effects between small numbers were strongly affected by repeats of pattern and…
Descriptors: Evidence, Numbers, Pattern Recognition, Cultural Awareness
Griffiths, Martin – Mathematics Teaching, 2010
In "MT218" the author looked at the possibility of basing a classroom activity on a simple, though not totally transparent, number-theoretic result. In this article he considers another relatively straightforward idea from number theory that could be used either as a lesson starter or as the basis of a more substantial task, requiring students to…
Descriptors: Mathematics Education, Number Concepts, Problem Solving, Task Analysis
Longo, Matthew R.; Lourenco, Stella F. – Brain and Cognition, 2010
Much evidence suggests that common posterior parietal mechanisms underlie the orientation of attention in physical space and along the "mental number line." For example, the small leftward bias ("pseudoneglect") found in paper-and-pencil line bisection is also found when participants "bisect" number pairs, estimating (without calculating) the…
Descriptors: Computation, Number Concepts, Stimuli, Task Analysis
Domahs, Frank; Moeller, Korbinian; Huber, Stefan; Willmes, Klaus; Nuerk, Hans-Christoph – Cognition, 2010
In recent years, a strong functional relationship between finger counting and number processing has been suggested. Developmental studies have shown specific effects of the structure of the individual finger counting system on arithmetic abilities. Moreover, the orientation of the mental quantity representation ("number line") seems to be…
Descriptors: Number Concepts, Computation, German, Mathematics Instruction
Jordan, Julie-Ann; Mulhern, Gerry; Wylie, Judith – Journal of Experimental Child Psychology, 2009
The arithmetical performance of typically achieving 5- to 7-year-olds (N=29) was measured at four 6-month intervals. The same seven tasks were used at each time point: exact calculation, story problems, approximate arithmetic, place value, calculation principles, forced retrieval, and written problems. Although group analysis showed mostly linear…
Descriptors: Intervals, Individual Differences, Number Concepts, Computation
Barth, Hilary; Starr, Ariel; Sullivan, Jessica – Cognitive Development, 2009
Previous studies have suggested that children's learning of the relation between number words and approximate numerosities depends on their verbal counting ability, and that children exhibit no knowledge of mappings between number words and approximate numerical magnitudes for number words outside their productive verbal counting range. In the…
Descriptors: Numbers, Exhibits, Cognitive Mapping, Computation
Thompson, Clarissa A.; Opfer, John E. – Journal of Experimental Child Psychology, 2008
Studies have reported high correlations in accuracy across estimation contexts, robust transfer of estimation training to novel numerical contexts, and adults drawing mistaken analogies between numerical and fractional values. We hypothesized that these disparate findings may reflect the benefits and costs of learning linear representations of…
Descriptors: Age Differences, Costs, Correlation, Computation
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