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Megan Rojo; Sarah G. King; Jenna Gersib; Christian T. Doabler – Learning Disability Quarterly, 2025
Competence with rational numbers is essential for mathematics proficiency in secondary mathematics. However, many students struggle with rational number concepts, and students with mathematics difficulties struggle even more. The purpose of this study was to examine the effects of an intervention that incorporated the use of explicit instruction…
Descriptors: Mathematics Instruction, Intervention, Direct Instruction, Models
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Bofferding, Laura, Ed.; Wessman-Enzinger, Nicole, Ed. – Research in Mathematics Education, 2018
Over the past few decades there has been increased interest in how students and teachers think and learn about negative numbers from a variety of perspectives. In particular, there has been debate about when integers should be taught and how to teach them to best support students' learning. This book brings together recent work from researchers to…
Descriptors: Addition, Subtraction, Numeracy, Thinking Skills
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Huber, Stefan; Cornelsen, Sonja; Moeller, Korbinian; Nuerk, Hans-Christoph – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2015
In this article, we propose and evaluate a new model framework of parallel componential multi-symbol number processing, generalizing the idea of parallel componential processing of multi-digit numbers to the case of negative numbers by considering the polarity signs similar to single digits. In a first step, we evaluated this account by defining…
Descriptors: Numeracy, Number Concepts, Cognitive Processes, Eye Movements
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Andrews, Paul; Sayers, Judy – Early Childhood Education Journal, 2015
It is known that an appropriately developed foundational number sense (FONS), or the ability to operate flexibly with number and quantity, is a powerful predictor of young children's later mathematical achievement. However, until now not only has FONS been definitionally elusive but instruments for identifying opportunities for children to acquire…
Descriptors: Primary Education, Grade 1, Elementary School Students, Elementary School Mathematics
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Pittalis, Marios; Pitta-Pantazi, Demetra; Christou, Constantinos – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
The present study revalidated a measurement model describing the nature of early number sense. Number sense was shown to be composed of elementary number sense, conventional arithmetic and algebraic arithmetic. Algebraic arithmetic was conceptualized as synthesis of number patterns, restrictions and functions. Two hundred and four 1st grade…
Descriptors: Algebra, Arithmetic, Prediction, Teaching Methods
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Hannula-Sormunen, Minna M.; Lehtinen, Erno; Räsänen, Pekka – Mathematical Thinking and Learning: An International Journal, 2015
This seven-year longitudinal study examined how children's spontaneous focusing on numerosity (SFON), subitizing based enumeration, and counting skills assessed at five or six years predict their school mathematics achievement at 12 years. The participants were 36 Finnish children without diagnosed neurological disorders. The results, based on…
Descriptors: Preschool Children, Arithmetic, Mathematics Skills, Foreign Countries
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Kim, Dongil; Shin, Jaehyun; Lee, Kijyung – Asia Pacific Education Review, 2013
The purpose of this study was to explore latent class based on growth rates in number sense ability by using latent growth class modeling (LGCM). LGCM is one of the noteworthy methods for identifying growth patterns of the progress monitoring within the response to intervention framework in that it enables us to analyze latent sub-groups based not…
Descriptors: Measures (Individuals), Models, Numeracy, Numbers
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Cavey, Laurie O.; Kinzel, Margaret T. – Teaching Children Mathematics, 2014
Teachers report that engaging students in solving contextual problems is an important part of supporting student understanding of algorithms for fraction division. Meaning for whole-number operations is a crucial part of making sense of contextual problems involving rational numbers. The authors present a developed instructional sequence to…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Secondary School Mathematics, Preservice Teacher Education
Shumway, Jessica – Stenhouse Publishers, 2011
Just as athletes stretch their muscles before every game and musicians play scales to keep their technique in tune, mathematical thinkers and problem solvers can benefit from daily warm-up exercises. Jessica Shumway has developed a series of routines designed to help young students internalize and deepen their facility with numbers. The daily use…
Descriptors: Number Systems, Problem Solving, Mathematics Instruction, Number Concepts
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Piantadosi, Steven T.; Tenenbaum, Joshua B.; Goodman, Noah D. – Cognition, 2012
In acquiring number words, children exhibit a qualitative leap in which they transition from understanding a few number words, to possessing a rich system of interrelated numerical concepts. We present a computational framework for understanding this inductive leap as the consequence of statistical inference over a sufficiently powerful…
Descriptors: Statistical Inference, Number Concepts, Models, Computation
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Barth, Hilary C.; Paladino, Annie M. – Developmental Science, 2011
How do our mental representations of number change over development? The dominant view holds that children (and adults) possess multiple representations of number, and that age and experience lead to a shift from greater reliance upon logarithmically organized number representations to greater reliance upon more accurate, linear representations.…
Descriptors: Children, Numeracy, Developmental Stages, Computation
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Young-Loveridge, Jennifer – Teachers and Curriculum, 2011
This paper challenges the emphasis on counting in New Zealand's Numeracy Development Project (NDP), arguing that subitizing provides an alternative pathway to quantification. Longitudinal data is presented showing that children's subitizing skills at the age of five years were a strong predictor of their later success in mathematics at the age of…
Descriptors: Computation, Mathematics Instruction, Foreign Countries, Numeracy
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Chen, Qi; Verguts, Tom – Cognitive Psychology, 2010
It is commonly assumed that there is an interaction between the representations of number and space (e.g., [Dehaene et al., 1993] and [Walsh, 2003]), typically ascribed to a mental number line. The exact nature of this interaction has remained elusive, however. Here we propose that spatial aspects are not inherent to number representations, but…
Descriptors: Numeracy, Interaction, Cultural Influences, Spatial Ability
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Gough, John – Australian Primary Mathematics Classroom, 2007
Children's natural curiosity about numbers, big and small can lead to exploring place-value ideas. But how can these abstract concepts be experienced more concretely? This article presents some practical approaches for conceptualising very small numbers using linear models, area models, volume models, and diagrams.
Descriptors: Numbers, Discovery Learning, Numeracy, Number Concepts
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Ansari, Daniel – Learning and Individual Differences, 2010
The present paper provides a critical overview of how adult neuropsychological models have been applied to the study of the atypical development of numerical cognition. Specifically, the following three assumptions are challenged: 1. Profiles of strength and weaknesses do not change over developmental time. 2. Similar neuronal structures are…
Descriptors: Number Concepts, Neuropsychology, Schemata (Cognition), Numeracy
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