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Sri Rahayuningsih; Wan Marzuki Bin Wan Jaafar; Nurzatulshima Kamarudin; Muhammad Gazali – International Electronic Journal of Elementary Education, 2025
This study sought to understand how students activate number sense in determining the position of fractions on a number line and identify how the natural number bias and number sense influences students' thinking processes. The study utilized the Cognitive Task Analysis (CTA), involving four fifth-grade elementary students as the research…
Descriptors: Elementary School Students, Grade 5, Cognitive Processes, Mathematical Logic
Amelia M. Farid – ProQuest LLC, 2022
Mathematical definitions are central to learning and doing mathematics. Research has uncovered significant differences between how mathematicians and non-mathematicians construct, reason about, and refine mathematical definitions. Various strands of research provide insight into the development of definitional practices, yet an integrated approach…
Descriptors: Undergraduate Students, Definitions, College Mathematics, Humanities
Sprenger, Priska; Benz, Christiane – ZDM: The International Journal on Mathematics Education, 2020
The ability to perceive structures in sets and to use them to determine cardinality is one important basis for arithmetical learning. This study is based on a theoretical model that distinguishes between the two processes of perception and determination. A total of 95 5-year-old children were interviewed individually to find out whether and how…
Descriptors: Preschool Children, Mathematics Education, Mathematics Skills, Cognitive Processes
Obersteiner, Andreas; Dresler, Thomas; Bieck, Silke M.; Moeller, Korbinian – Research in Mathematics Education, 2019
Many students face difficulties with fractions. Research in mathematics education and cognitive psychology aims at understanding where and why students struggle with fractions and how to make teaching of fractions more effective. Additionally, neuroscience research is beginning to explore how the human brain processes fractions. Yet, attempts to…
Descriptors: Fractions, Cognitive Psychology, Neurosciences, Barriers
Norton, Anderson; Ulrich, Catherine; Kerrigan, Sarah – North American Chapter of the International Group for the Psychology of Mathematics Education, 2020
We introduce a methodology for diagramming the ways students use sequences of mental actions to solve mathematical tasks. We studied 12 pre-service teachers as they solved a set of fractions tasks, ranked by cognitive demand. We present the unit transformation graphs for one of those pre-service teachers, to illustrate how she experienced and met…
Descriptors: Mathematics Education, Problem Solving, Preservice Teachers, Preservice Teacher Education
Looi, Chung Yen; Thompson, Jacqueline; Krause, Beatrix; Kadosh, Roi Cohen – OECD Publishing, 2016
The synergistic potential of cognitive neuroscience and education for efficient learning has attracted considerable interest from the general public, teachers, parents, academics and policymakers alike. This review is aimed at providing 1) an accessible and general overview of the research progress made in cognitive neuroscience research in…
Descriptors: Neurosciences, Mathematics Education, Cognitive Processes, Literature Reviews
Lubin, Amélie; Simon, Grégory; Houdé, Olivier; De Neys, Wim – ZDM: The International Journal on Mathematics Education, 2015
The acquisition of number conservation is a critical step in children's numerical and mathematical development. Classic developmental studies have established that children's number conservation is often biased by misleading intuitions. However, the precise nature of these conservation errors is not clear. A key question is whether conservation…
Descriptors: Mathematics Education, Inhibition, Numeracy, Number Concepts
Zetriuslita; Wahyudin; Jarnawi – International Education Studies, 2017
This research aims to describe and analyze result of applying Problem-Based Learning and Cognitive Conflict Strategy (PBLCCS) in increasing students' Mathematical Critical Thinking (MCT) ability and Mathematical Curiosity Attitude (MCA). Adopting a quasi-experimental method with pretest-posttest control group design and using mixed method with…
Descriptors: Mathematical Logic, Critical Thinking, Personality Traits, Problem Based Learning
Seethaler, Pamela M.; Fuchs, Lynn S.; Star, Jon R.; Bryant, Joan – Learning and Individual Differences, 2011
The purpose of the present study was to explore the 3rd-grade cognitive predictors of 5th-grade computational skill with rational numbers and how those are similar to and different from the cognitive predictors of whole-number computational skill. Students (n=688) were assessed on incoming whole-number calculation skill, language, nonverbal…
Descriptors: Numbers, Short Term Memory, Concept Formation, Grade 5
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
Wagner, Jennifer B.; Johnson, Susan C. – Cognition, 2011
The preschool years are a time of great advances in children's numerical thinking, most notably as they master verbal counting. The present research assessed the relation between analog magnitude representations and cardinal number knowledge in preschool-aged children to ask two questions: (1) Is there a relationship between acuity in the analog…
Descriptors: Logical Thinking, Number Concepts, Mathematics Education, Preschool Children
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
Wood, Marcy B., Ed.; Turner, Erin E., Ed.; Civil, Marta, Ed.; Eli, Jennifer A., Ed. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2016
The theme of this year's conference is "Sin Fronteras: Questioning Borders with(in) Mathematics Education." This theme is intended to encourage research presentations, discussion, and reflection on the variety of borders within mathematics education, as well as those that might be probed, challenged, explained, enhanced and/or…
Descriptors: Mathematics Education, Mathematics Curriculum, Numbers, Mathematical Concepts
Nemirovsky, Ricardo; Rasmussen, Chris; Sweeney, George; Wawro, Megan – Journal of the Learning Sciences, 2012
In this article we contribute a perspective on mathematical embodied cognition consistent with a phenomenological understanding of perception and body motion. It is based on the analysis of 4 selected episodes in 1 session of an undergraduate mathematics class. The theme of this particular class session was the geometric interpretation of the…
Descriptors: Cognitive Processes, Mathematics Education, Perception, Mobility
Chan, Becky Mee-yin; Ho, Connie Suk-han – Journal of Experimental Child Psychology, 2010
This study examined how four domain-specific skills (arithmetic procedural skills, number fact retrieval, place value concept, and number sense) and two domain-general processing skills (working memory and processing speed) may account for Chinese children's mathematics learning difficulties. Children with mathematics difficulties (MD) of two age…
Descriptors: Learning Problems, Mathematics Education, Short Term Memory, Number Concepts

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