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Showing 1 to 15 of 43 results Save | Export
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Kristy L. Armitage; Sam J. Gilbert – Child Development Perspectives, 2025
Humans routinely use external thinking tools, like pencil and paper, maps, and calculators, to solve cognitive problems that would have once been solved internally. As many youth face unprecedented exposure to increasingly capable technological aids, there is a growing pressure to understand children's cognitive offloading capacities and…
Descriptors: Cognitive Processes, Cognitive Ability, Children, Problem Solving
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William Campillay-Llanos; Noemí Cárcamo-Mansilla – Discover Education, 2025
Nowadays, it is essential to promote an interdisciplinary approach in classrooms, integrating disciplines such as biology and mathematics. This necessitates familiarity with specific problem-solving practices employed by the expert community, such as mathematical modelling. This perspective piece explores a mathematical modelling practice to…
Descriptors: Interdisciplinary Approach, Biology, Mathematics, Mathematical Models
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Geneviève Barabé – For the Learning of Mathematics, 2025
This article examines what constitutes a 'good' mathematical problem and proposes to conceptualize the notion of "collective mathematical problems" as phenomena that arise through and by way of the inter-actions enabled by the collective itself. The author examines how these collective mathematical problems can emerge in the classroom…
Descriptors: Mathematical Applications, Cooperation, Mathematics Activities, Group Activities
Catherine Underwood – Australian Council for Educational Research, 2025
Mathematical self-efficacy refers to an individual's belief in their ability to successfully perform tasks and solve problems in mathematics. This Snapshot examines gender differences in mathematical self-efficacy and the levels of confidence that students feel in doing a range of formal and applied mathematics tasks. It also examines the extent…
Descriptors: Mathematics Skills, Self Efficacy, Gender Differences, Problem Solving
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Purnima Mondal; R. Vijaykumar – Learning: Research and Practice, 2025
Cutting-edge technology enhances the teaching-learning process, with Multimedia-Based Instruction (MMBI) emerging as a powerful tool to achieve educational goals. MMBI creates visually engaging, resource-rich materials that support students in understanding abstract mathematical concepts, boosting interest and curiosity. According to Mayer (2001),…
Descriptors: Multimedia Instruction, Mathematics Instruction, Mathematics Anxiety, Problem Solving
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Nicolas J. Tanchuk – Educational Theory, 2025
Artificial intelligence companies and researchers are currently working to create Artificial Superintelligence (ASI): AI systems that significantly exceed human problem-solving speed, power, and precision across the full range of human solvable problems. Some have claimed that achieving ASI -- for better or worse -- would be the most significant…
Descriptors: Artificial Intelligence, Problem Solving, Accuracy, Digital Literacy
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Elizabeth A. Davis; James P. Spillane; Christa Haverly; Donald J. Peurach – Elementary School Journal, 2025
Within elementary science reform, time is a crucial consideration, yet conceptions of time in education research are undertheorized. To address this gap, we use sociological literature to identify three conceptions of time that help us understand and interpret leaders' and teachers' sensemaking and decision making about time in their efforts to…
Descriptors: Elementary School Science, Educational Research, Educational Change, Time
Sarah Podwinski; Iroise Dumontheil – Mathematics Education Research Group of Australasia, 2025
Mathematical problem-solving places heavy demands on children's developing working memory capacity. This review examines how offloading numerical information using embodied (e.g. finger counting) or external tools (e.g. manipulatives) can reduce cognitive load and improve mathematical task performance. Strategic offloading emerges in childhood;…
Descriptors: Problem Solving, Short Term Memory, Numbers, Cognitive Processes
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Giorgia Adorni; Alberto Piatti; Engin Bumbacher; Lucio Negrini; Francesco Mondada; Dorit Assaf; Francesca Mangili; Luca Maria Gambardella – Technology, Knowledge and Learning, 2025
In recent years, the emphasis on computational thinking (CT) has intensified as an effect of accelerated digitalisation. While most researchers are concentrating on defining CT and developing tools for its instruction and assessment, we focus on the characteristics of computational thinking problems (CTPs) -- activities requiring CT to be…
Descriptors: Computation, Thinking Skills, Problem Solving, Learning Activities
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Daniel Neyland; Sveta Milyaeva – Learning, Media and Technology, 2025
In this paper, we engage with the Research Excellence Framework (REF) -- the UK government's national policy tool for competitive allocation of scarce research funding. Success on the terms of the REF provides guaranteed income for UK Universities for a 6- or 7-year period -- and as a result, we suggest that the REF operates as an asset-like…
Descriptors: Problem Solving, Foreign Countries, Resource Allocation, Public Policy
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Spencer P. Greenhalgh – Journal of Computing in Higher Education, 2025
Jacques Ellul, a 20th century French academic, is best known for his writing on "technique," understood as both individual means to ends and an all-encompassing system that prioritizes efficient solutions to problems. While Ellul's terminology is not necessarily familiar in contemporary educational technology research, it represents…
Descriptors: Educational Technology, Technology Uses in Education, Higher Education, Philosophy
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Liesbeth Noordegraaf-Eelens – Higher Education Research and Development, 2025
Driven by the desire to address wicked problems and contribute to societal transitions, positive societal impact is on the agenda of higher education institutions. This article explores how the repositioning of education can take shape by redefining wicked problems as matters of concern. Problems presuppose solutions; concerns reflect ambiguities,…
Descriptors: Problem Solving, Social Change, Caring, Higher Education
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William R. Dardick; Jeffrey R. Harring – Journal of Educational and Behavioral Statistics, 2025
Simulation studies are the basic tools of quantitative methodologists used to obtain empirical solutions to statistical problems that may be impossible to derive through direct mathematical computations. The successful execution of many simulation studies relies on the accurate generation of correlated multivariate data that adhere to a particular…
Descriptors: Statistics, Statistics Education, Problem Solving, Multivariate Analysis
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Amber Beisly; Anne Moffitt – Early Childhood Education Journal, 2025
When children engage in play, they develop essential skills like creativity, flexibility, imagination, and problem-solving. Children who engage in STEAM (Science, Technology, Engineering, Arts, and Math) activities also build similar skills. Both play and STEAM enable children to ask questions, try different solutions, and develop explanations for…
Descriptors: STEM Education, Art Activities, Creative Development, Creativity
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Jolene B. Reed; Melinda M. Miller – Reading Teacher, 2025
Some readers thrive more than others because they are more actively involved in their learning. All students can become active participants in their learning through quality teacher prompting. In this article, teachers will learn how to promote emergent learners' active participation as they decode and comprehend, while problem-solving unknown…
Descriptors: Teacher Student Relationship, Reading Instruction, Teaching Methods, Prompting
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