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Sebastian Stuppan; Markus Rehm; Tessa J. P. van Schijndel; Markus Wilhelm – International Journal of STEM Education, 2025
Background: In STEM education, tasks are essential for organizing and designing teaching-learning processes, as they give concrete form to curricular goals and content standards. Tasks that build on each other and initiate a learning process are particularly effective. Tasks are often specified according to their function (confrontation,…
Descriptors: STEM Education, Problem Solving, Learner Engagement, Epistemology
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Samantha Burns; Sumayya Saleem; Evelyn McMullen; Olesya Falenchuk; Linda White; Elizabeth Dhuey; Michal Perlman – Review of Education, 2025
This systematic review and meta-analysis synthesised evidence on teaching problem-solving skills to children in early childhood education and care settings (ECEC) in the domain of science, technology, engineering and mathematics (STEM). Given the foundational nature of early cognitive development and the growing emphasis on STEM competencies, this…
Descriptors: Teaching Methods, Problem Solving, Skill Development, Early Childhood Education
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Kristy L. Armitage; Alicia K. Jones; Jonathan Redshaw – Cognitive Science, 2025
With the rise of wearable technologies, mobile devices and artificial intelligence comes a growing pressure to understand downstream effects of cognitive offloading on children's future thinking and behavior. Here, we explored whether compelling children to use an indiscriminate cognitive offloading strategy affects their subsequent strategy…
Descriptors: Cognitive Processes, Cognitive Ability, Problem Solving, Learning Strategies
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Molly Griston; Bethany R. Wilcox – Physical Review Physics Education Research, 2025
Despite the recognition that reflection is an essential part of problem solving, it is often not emphasized in upper-division physics courses. In this paper, we discuss homework corrections (HWCs) as a pedagogical tool to motivate reflection on homework assignments. We focus on gaining a qualitative understanding of how students may engage with…
Descriptors: Physics, Science Education, Homework, Problem Solving
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Fadime Ulusoy; Musa Sadak; Lutfi Incikabi; Murat Pektas – Psychology in the Schools, 2025
This study explores gender-based differences in sixth-grade students' potential for mathematical creativity through the interrelated processes of problem solving (PS) and problem posing (PP), grounded in a multidimensional framework of creativity--encompassing fluency, flexibility, and originality. A total of 346 sixth graders from public schools…
Descriptors: Gender Differences, Grade 6, Creativity, Problem Solving
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Luca Szalay; Zoltán Tóth; Réka Borbás; István Füzesi – Journal of Turkish Science Education, 2025
The main objective of this four-year empirical research project has been to develop the experimental design skills of 12-16 year-old Hungarian pupils in Grades 7-10 of junior high school through guided inquiry, using six chemistry experiment worksheets each school year. Group 1 (control group) and Group 2 follow step-by-step instructions, but…
Descriptors: Chemistry, Problem Solving, Junior High School Students, Intervention
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Jeliana Intan Permata; Mega Teguh Budiarto; Yusuf Fuad – Educational Process: International Journal, 2025
Background/purpose. Self-efficacy plays a crucial role in enhancing performance in complex tasks such as mathematical modeling, yet its impact remains underexplored. This study examines whether there are influences on students' self-efficacy in modeling. Materials/methods. The research method employs a quantitative design, utilizing regression…
Descriptors: Middle School Students, Mathematical Models, Grade 8, Self Efficacy
Babawande Emmanuel Olawale; Saidat Adeniji; Zizipho Mabhoza – Mathematics Education Research Group of Australasia, 2025
This paper analyses learners' common errors in simplifying algebraic problems. 102 Grade 10 learners from three rural schools in South Africa participated in the study. Following a quantitative approach, content analysis of learners' responses to algebraic tests revealed that while learners commit several errors in algebraic problems, encoding and…
Descriptors: Algebra, Grade 10, High School Students, Secondary School Mathematics
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Emma Teresa Booth; Virginia J. Flood; Benedikt W. Harrer – Physical Review Physics Education Research, 2025
Embodied forms of representation like gesture have been shown to play an important role in how learners conceptualize phenomena in physics; however, we know little about how students use gesture to capture the idea of "instantaneity." Drawing on multimodal microanalysis of interaction, we examine how undergraduate physics students use…
Descriptors: Nonverbal Communication, Cooperative Learning, Problem Solving, Physics
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Xuemei Bai; Xiaoqing Gu – Australasian Journal of Educational Technology, 2025
Cognitive presence is essential for deep and meaningful learning, yet developing it poses challenges. Theoretically, peer-led teaching presence can enhance cognitive presence, but research on this facilitation is limited. This study used behavioural sequence analysis to investigate how peer-led teaching presence promotes cognitive presence…
Descriptors: Peer Teaching, Cognitive Processes, Applied Behavior Analysis, Cooperative Learning
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Girma Tessema; Kassa Michael; Solomon Areaya – Pedagogical Research, 2024
This study aimed to examine the application of a realist hands-on learning approach and its contributions to optimizing the solid geometry conceptual understanding and problem-solving skills of students. It employed a non-equivalent pre-/post-test quasi-experimental research design. The results showed that there was a statistically significant…
Descriptors: Geometry, Experiential Learning, Teaching Methods, Problem Solving
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Kelley E. Dugan; Erika A. Mosyjowski; Shanna R. Daly; Lisa R. Lattuca – Journal of Engineering Education, 2024
Background: To prepare engineers who can address complex sociotechnical problems, a deep understanding of engineers' complex problem-solving approaches is needed. Purpose/Hypothesis: This study operationalizes comprehensive systems thinking as an analysis framework that attends to aspects of engineering work and relationships among those aspects.…
Descriptors: Engineering, Engineering Education, Problem Solving, Knowledge Level
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Jessica Swenson; Emma Treadway; Krista Beranger – Journal of Engineering Education, 2024
Background: Real-world engineering problems are ill-defined and complex, and solving them may arouse negative epistemic affect (feelings experienced within problem-solving). These feelings fall into sequenced patterns (affective pathways). Over time, these patterns can alter students' attitudes toward engineering. Meta-affect (affect or cognition…
Descriptors: Engineering Education, Problem Solving, Student Attitudes, Affective Behavior
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M. Trigueros; E. Badillo; G. Sánchez-Matamoros; L. A. Hernández-Rebollar – ZDM: Mathematics Education, 2024
This study contributes to Action, Process, Object, Schema (APOS) theory research by showing two approaches used by advanced mathematics students to construct relations between higher-order derivatives to solve complex problems. We show evidence of students' ability to perform Actions on their graphing derivative Schema, that is, of its…
Descriptors: Educational Theories, College Students, College Mathematics, Mathematics Education
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Jamie Costley; Anna Gorbunova; Matthew Courtney; Ouhao Chen; Christopher Lange – European Journal of Psychology of Education, 2024
In terms of instructional sequencing and cognitive load research, it remains unclear what effect different instructional sequences have on cognitive load and how to use problem-solving support within instructional sequences to reduce cognitive load. The current study examines how instructional sequencing and problem-solving support interact with…
Descriptors: Problem Solving, Cognitive Processes, Difficulty Level, Academic Achievement
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