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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
Rickard Östergren; Ulf Träff; Jessica Elofsson; Hugo Hesser; Joakim Samuelsson – Scandinavian Journal of Educational Research, 2024
The study set out to explore different mathematical difficulties among 877 second-grade children and to test the effect of memorization versus conceptual practices with number combinations. It used a latent profile analysis of baseline measurements of digit writing speed, number combination fluency, multidigit calculation, and number sense skills…
Descriptors: Grade 2, Elementary School Mathematics, Difficulty Level, Mathematical Concepts
Tunahan Filiz; Gönül Günes – International Journal of Education and Literacy Studies, 2023
This study was undertaken to systematically analyze instructional interventions employed to enhance the mathematical performance of elementary school students with math learning difficulties (MLD). Over 20 years (2003-2023), 34 articles that met the inclusion criteria were included in the analysis. The articles in the study were analyzed in terms…
Descriptors: Intervention, Mathematics Instruction, Elementary School Students, Learning Problems
Kaup, Camilla Finsterbach; Pedersen, Pernille Ladegaard; Tvedebrink, Torben – Journal of Pedagogical Research, 2023
This study aimed to examine whether a computational thinking (CT) intervention related to (a) number knowledge and arithmetic (b) algebra, and (c) geometry impacts students' learning performance in primary schools. To this end, a quasi-experimental, nonequivalent group design was employed, with 61 students assigned to the experimental group and 47…
Descriptors: Foreign Countries, Elementary School Students, Control Groups, Grade 2
Björklund, Camilla; Ekdahl, Anna-Lena; Runesson Kempe, Ulla – Mathematical Thinking and Learning: An International Journal, 2021
We report here on an intervention implementing a structural approach to arithmetic problem-solving in relation to learning outcomes among preschoolers. Using the fundamental principles of the variation theory of learning for developing the intervention and as an analytical framework, we discuss teaching and learning in commensurable terms. The…
Descriptors: Preschool Education, Teaching Methods, Numbers, Intervention
Fuchs, Lynn S.; Bucka, Nicole; Clarke, Ben; Dougherty, Barbara; Jordan, Nancy C.; Karp, Karen S.; Woodward, John; Jayanthi, Madhavi; Gersten, Russell; Newman-Gonchar, Rebecca; Schumacher, Robin; Haymond, Kelly; Lyskawa, Julia; Keating, Betsy; Morgan, Seth – What Works Clearinghouse, 2021
Recent intervention research has demonstrated success in raising the achievement level of students who are struggling with mathematics. This practice guide, developed by the What Works Clearinghouse™ (WWC) in conjunction with an expert panel, distills this contemporary mathematics intervention research into six easily comprehensible and practical…
Descriptors: Elementary School Mathematics, Intervention, Mathematics Instruction, Numbers
Thompson, Clarissa A.; Taber, Jennifer M.; Fitzsimmons, Charles J.; Sidney, Pooja G. – Grantee Submission, 2021
People frequently encounter numeric information in medical and health contexts. In this paper, we investigated the math factors that are associated with decision-making accuracy in health and non-health contexts. This is an important endeavor given that there is relatively little cross-talk between math cognition researchers and those studying…
Descriptors: Decision Making, Numbers, Accuracy, Health
Siegler, Robert S.; Braithwaite, David W. – Grantee Submission, 2016
In this review, we attempt to integrate two crucial aspects of numerical development: learning the magnitudes of individual numbers and learning arithmetic. Numerical magnitude development involves gaining increasingly precise knowledge of increasing ranges and types of numbers: from non-symbolic to small symbolic numbers, from smaller to larger…
Descriptors: Numeracy, Numbers, Arithmetic, Fractions
Xin, Yan Ping – ZDM: The International Journal on Mathematics Education, 2019
Whole number arithmetic is the foundation of higher mathematics and a core part of elementary mathematics. Awareness of pattern and underlying problem structure promote the learning of whole number arithmetic. A growing consensus has emerged on the necessity to provide students with the opportunity to engage in algebraic reasoning earlier in their…
Descriptors: Addition, Mathematics Instruction, Word Problems (Mathematics), Problem Solving
Siegler, Robert S. – Developmental Science, 2016
The integrated theory of numerical development posits that a central theme of numerical development from infancy to adulthood is progressive broadening of the types and ranges of numbers whose magnitudes are accurately represented. The process includes four overlapping trends: (1) representing increasingly precisely the magnitudes of non-symbolic…
Descriptors: Numbers, Theories, Individual Development, Symbols (Mathematics)
Siegler, Robert S. – Grantee Submission, 2016
The integrated theory of numerical development posits that a central theme of numerical development from infancy to adulthood is progressive broadening of the types and ranges of numbers whose magnitudes are accurately represented. The process includes four overlapping trends: 1) representing increasingly precisely the magnitudes of non-symbolic…
Descriptors: Numbers, Theories, Individual Development, Symbols (Mathematics)
Brankaer, Carmen; Ghesquière, Pol; De Smedt, Bert – Mind, Brain, and Education, 2015
Children with mild intellectual disabilities (MID) appear to have particular problems in understanding the numerical meaning of Arabic digits. Therefore, we developed and evaluated a numerical domino game that specifically targeted the association between these digits and the numerical magnitudes they represent. Participants were 30 children with…
Descriptors: Mild Mental Retardation, Number Concepts, Numbers, Educational Games
Young-Loveridge, Jenny; Bicknell, Brenda – Mathematics Education Research Group of Australasia, 2014
This paper focuses on children's number fact knowledge from a study that explored the impact of using multiplication and division contexts for developing number understanding with 34 five- and six-year-old children from diverse cultural and linguistic backgrounds. After a series of focused lessons, children's knowledge of number facts, including…
Descriptors: Numbers, Number Concepts, Elementary School Students, Elementary School Mathematics
Obersteiner, Andreas; Reiss, Kristina; Ufer, Stefan – Learning and Instruction, 2013
Theories of psychology and mathematics education recommend two instructional approaches to develop students' mental representations of number: The "exact" approach focuses on the development of exact representations of organized dot patterns; the "approximate" approach focuses on the approximate representation of analogue magnitudes. This study…
Descriptors: Numbers, Arithmetic, Mathematics Skills, Grade 1
Van Luit, Johannes E. H.; Van der Molen, Mariet J. – Research in Developmental Disabilities: A Multidisciplinary Journal, 2011
Background: Children from Asian countries score higher on early years' arithmetic tests than children from Europe or the United States of America. An explanation for these differences may be the way numbers are named. A clear ten-structure like in the Korean language method leads to a better insight into numbers and arithmetic skills. This…
Descriptors: Numbers, Arithmetic, Korean, Students
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