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David W. Braithwaite; Anna N. Rafferty – Cognitive Science, 2025
Math problem solving frequently involves choices among alternative strategies. Strategy choices, and effects of problem features on strategy choices, both vary among individuals. We propose that individual differences in strategy choices can be well characterized in terms of parametric variation in three types of influence: global bias, relevant…
Descriptors: Individual Differences, Fractions, Arithmetic, Problem Solving
Powell, Sarah R.; Nelson, Gena – Psychology in the Schools, 2021
To understand misconceptions with rational numbers (i.e., fractions, decimals, and percentages), we administered an assessment of rational numbers to 331 undergraduate students from a 4-year university. The assessment included 41 items categorized as measuring foundational understanding, calculations, or word problems. We coded each student's…
Descriptors: Undergraduate Students, Misconceptions, Number Concepts, Numbers
Karl W. Kosko; Enrico Gandolfi; Temitope Egbedeyi – Journal of Technology and Teacher Education, 2024
This study used traditional and holographic video, along with eye-tracking technology, to examine how preservice teachers' physical act of looking is associated with how they attend to and assess students' fraction reasoning. Findings revealed that, although viewing of holograms may have influenced more focus on students' work area, there was…
Descriptors: Preservice Teachers, Observation, Video Technology, Visual Aids
A Cross-National Comparison of Fourth and Eighth Grade Students' Understanding of Fraction Magnitude
Ayieko, Rachel Angela; Moreano, Giovanna; Harter, Lauren – International Electronic Journal of Mathematics Education, 2022
Without a conceptual understanding of fraction magnitude, students have difficulties understanding more advanced mathematics in high school and beyond. The purpose of this study is to highlight 4th and 8th grade students' misconceptions in fraction magnitude using the Trends in International Mathematics and Science Study 2015 data. The study is…
Descriptors: Elementary School Students, Middle School Students, Mathematical Concepts, Fractions
Bowen, Brian – Issues in the Undergraduate Mathematics Preparation of School Teachers, 2021
Implementation of the Common Core Mathematical Standards and Practices (CCSS) has emphasized the importance of instruction that develops both procedural knowledge and conceptual understanding. Novice teachers have experienced the implementation of the CCSS during their PreK-12 experience, as well as within their teacher preparation program. It may…
Descriptors: Fractions, Mathematics Instruction, Teacher Education Programs, Pedagogical Content Knowledge
Tian, Jing; Siegler, Robert S. – Grantee Submission, 2017
Many children and adults have difficulty gaining a comprehensive understanding of rational numbers. Although fractions are taught before decimals and percentages in many countries, including the USA, a number of researchers have argued that decimals are easier to learn than fractions and therefore teaching them first might mitigate children's…
Descriptors: Mathematics Instruction, Numbers, Numeracy, Fractions
Shin, Mikyung; Bryant, Diane P. – Remedial and Special Education, 2017
Students with mathematics learning disabilities (MLD) have a weak understanding of fraction concepts and skills, which are foundations of algebra. Such students might benefit from computer-assisted instruction that utilizes evidence-based instructional components (cognitive strategies, feedback, virtual manipulatives). As a pilot study using a…
Descriptors: Mathematics Instruction, Learning Disabilities, Mathematical Concepts, Fractions
Chick, Helen – Mathematics Education Research Group of Australasia, 2015
Mathematical knowledge in classrooms is mediated through the use of both technical and informal language. This paper is a report of a study of the language use of teachers as they examine students' work and discuss teaching for the topic of fraction operations. This provides a window on their pedagogical content knowledge and also on the way in…
Descriptors: Pedagogical Content Knowledge, Mathematics Achievement, Language Usage, Fractions
Geary, David C.; Nicholas, Alan; Li, Yaoran; Sun, Jianguo – Journal of Educational Psychology, 2017
The contributions of domain-general abilities and domain-specific knowledge to subsequent mathematics achievement were longitudinally assessed (n = 167) through 8th grade. First grade intelligence and working memory and prior grade reading achievement indexed domain-general effects, and domain-specific effects were indexed by prior grade…
Descriptors: Longitudinal Studies, Mathematics Achievement, Knowledge Level, Developmental Stages
Morley, Patricia – Mathematics Education Research Group of Australasia, 2014
Large-scale numeracy assessments are intended to facilitate the improvement of educational outcomes; however, it is not clear exactly how this is to be achieved. To move towards the goal of numeracy for all, it is necessary to systematically address issues that are known to be difficult, pervasive and persistent. This paper includes an analysis of…
Descriptors: Addition, Fractions, Problem Solving, Numeracy
Southeast Comprehensive Center, 2018
The Alabama State Department of Education (ALSDE) was grappling with several issues including: (1) A respectable rate of growth in student achievement for both fourth- and eighth-grade math in the state of Alabama, as measured by the National Assessment of Educational Progress (NAEP), but below the national average; and (2) A growing concern about…
Descriptors: Mathematics Achievement, Grade 4, Grade 8, National Competency Tests