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Ciara Loughland – Mathematics Education Research Group of Australasia, 2025
Research suggests that collaborative learning may enhance the benefits to learners when solving cognitively demanding tasks. However, there are concerns about how students with different achievement and engagement levels perceive these benefits. This study examines how students with varying achievement and engagement levels respond to…
Descriptors: Cooperative Learning, Problem Solving, Difficulty Level, Peer Teaching
Lorena S. Grundy; Milo D. Koretsky – Journal of Engineering Education, 2025
Background: Metacognitive processes have been linked to the development of conceptual knowledge in STEM courses, but previous work has centered on the regulatory aspects of metacognition. Purpose: We interrogated the relationship between epistemic metacognition and conceptual knowledge in engineering statics courses across six universities by…
Descriptors: Epistemology, Metacognition, Cognitive Processes, STEM Education
Jonathan W. Cooney – Journal of School Leadership, 2025
This grounded theory study identified and described eight leadership phases of the school consolidation process from the perspective of receiving school principals. The study was conducted during the 2023-2024 academic year in a large suburban district that was undergoing wide-ranging consolidation of elementary schools due to declining…
Descriptors: Principals, Elementary Schools, Leadership Styles, Consolidated Schools
Jakub Liptak – European Journal of Science and Mathematics Education, 2025
Word problems are frequently used math problems that aim to bridge the gap between school mathematics and real life. As real-life situations usually involve many factors, word problems should not be oversimplified by focusing only on the numerical information provided by word problem statements. Furthermore, students should be expected to solve…
Descriptors: Word Problems (Mathematics), Mathematics Instruction, Relevance (Education), Preservice Teachers
James Knutson; Kristen Stagg – International Journal of Education in Mathematics, Science and Technology, 2025
This research examines the integration of computational thinking in mathematics education, specifically examining its impact on students' algebraic reasoning. By teaching core computational concepts such as pattern recognition, decomposition, and algorithmic thinking, students develop a deeper understanding of algebraic structures and processes.…
Descriptors: Computation, Thinking Skills, Algebra, Mathematics Instruction
Gemma Sala-Sebastià; Adriana Breda; Vicenç Font – Education and Information Technologies, 2025
This article aims to characterise geometric and computational thinking of future Early Childhood Education teachers through participating in a robotic problem-solving activity for 5-year-old pupils using MatataBot, MatataLab's educational robot. The study, carried out during academic year 2022-2023, involved 42 early childhood education students…
Descriptors: Foreign Countries, Early Childhood Education, Preservice Teachers, Early Childhood Teachers
Michael Foster; Isabel White; Joanne Lobato – Journal of Computers in Mathematics and Science Teaching, 2025
Interest in using mathematics and science videos in educational settings has surged in recent years. Yet there remains a gap in researchers' understanding of the ways in which students make sense of the ideas expressed in the videos. In this study, thematic analysis was used to identify how eight high school students made sense of and engaged with…
Descriptors: Video Technology, Technology Uses in Education, High School Students, Mathematics Instruction
Ünal Çakiroglu; Emrah Mustuoglu – International Journal of Science and Mathematics Education, 2025
This study examines how Scratch can influence mathematical generalization in secondary school students. Real-life problems were adapted and presented to students as part of a problem-solving process. The study focused on the generalization process in terms of mathematization and verification. Data was collected through screen recordings and…
Descriptors: Programming Languages, Secondary School Students, Mathematics Education, Mathematics Instruction
Fengfeng Ke; Luke West; Chih-Pu Dai; Yanjun Pan; Jiabei Xu – Technology, Knowledge and Learning, 2025
In this qualitative inquiry, we explored teachers' experiences and sensemaking processes with digital mathematical task design (or tool-based math problem posing) in their natural form and context. A purposive sample of math teachers from three schools attended teacher workshops where they designed applied math problems using an architecture…
Descriptors: Teaching Experience, Mathematics Instruction, Educational Technology, Mathematics Teachers
Juhaina Awawdeh Shahbari; Laurie H. Rubel – International Journal of Science and Mathematics Education, 2025
This study examines whether and how Palestinian/Arab Israeli (P/AI) mathematics teachers attribute specific kinds of problem-solving strategies to gender. Using responses to a questionnaire from 359 secondary teachers, we investigated whether and how teachers associate gender with three types of solutions (algorithmic, creative, or…
Descriptors: Problem Solving, Mathematics Teachers, Teacher Attitudes, Mathematics Skills
Zhu, Yuxi; Ritter, Simone M.; Dijksterhuis, Ap – Journal of Creative Behavior, 2020
Creative idea selection--the selection of the most creative idea(s) from available ideas--is an important yet understudied topic. Creative idea selection can be performed by the idea generator (i.e., "intrapersonal" selection) or by another person (i.e., "interpersonal" selection). In the current research, we examined whether…
Descriptors: Creativity, Selection, Problem Solving
Moraes, Christopher; Blain-Moraes, Stefanie; Morell-Tomassoni, Sierra; Gorbet, Robert B. – International Journal of Technology and Design Education, 2021
Many design frameworks introduced to novices are not compatible with the behaviours and habits of mind of expert designers. This creates a barrier to effective practice, especially when novice designers tackle ill-defined, wicked problems. The W-model is a pedagogical framework that provides a prescriptive design model for novices, enabling them…
Descriptors: Design, Novices, Problem Solving, Models
Benmesbah, Ouissem; Lamia, Mahnane; Hafidi, Mohamed – Education and Information Technologies, 2021
Recently, the field of adaptive learning has significantly attracted researchers' interest. Learning path adaptation problem (LPA) is one of the most challenging problems within this field. It is also a well-known combinatorial optimization problem, its main target is the knowledge resources sequencing offered to a specific learner with a specific…
Descriptors: Learning Processes, Mathematics, Problem Solving, Heuristics
Lozada-Cruz, German – International Journal of Mathematical Education in Science and Technology, 2021
This note deals with some variants of the integral mean value theorem. Mainly a variant of Sahoo's theorem and a variant of Wayment's theorem were proved. Our approach is rather elementary and does not use advanced techniques from analysis. The simple auxiliary functions were used to prove the results.
Descriptors: Mathematics Instruction, Teaching Methods, Geometry, Problem Solving
Saban, Ahmet – Pegem Journal of Education and Instruction, 2021
Conducted based on the idea that there are similarities between "action research" and "curriculum development" processes, in this study, the aim was to develop a model that practitioners can use to understand and improve the practical curriculum. To this end, first, the phenomena of "curriculum", "curriculum…
Descriptors: Curriculum Development, Action Research, Models, Problem Solving

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