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Ümmühan Avci; Hatice Yildiz Durak – Psychology in the Schools, 2025
Design thinking has become an important process in many fields to encourage innovation toward problem solving skills in various fields. In the field of education, design thinking has been incorporated into curriculums as it contributes both to higher order thinking skills and to the learning process with its flexible and dynamic nature. However,…
Descriptors: Design, Learning Activities, Thinking Skills, Problem Solving
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Lauren Margulieux; James Prather; Masoumeh Rahimi – Educational Psychology Review, 2025
Failure can be an effective tool for learning, but it comes with negative consequences. Educators and learners should practice strategies that leverage the benefits of failure while managing its negative consequences on learners' motivation and persistence. Towards that goal, this paper examines the biological effects of failure on learning to (1)…
Descriptors: Biology, Failure, Learning Processes, Priming
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Sangmin-Michelle Lee; Sung-Yeon Kim – British Journal of Educational Technology, 2025
Teachers who know what, how and why to teach are essential for successful student learning. However, many preservice teachers (PSTs) lack teaching experience and the ability to integrate theory and practice. To help bridge this gap, this study employed a learning-by-design project approach in which 22 Korean PSTs developed lesson plans for middle…
Descriptors: Preservice Teachers, Preservice Teacher Education, Learning Processes, Design
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Aidan Rowe – International Journal of Art & Design Education, 2025
Traditionally, design -- and by extension design education -- has focused on the creation of distinct outputs (forms, artefacts, and objects) that satisfy a specific purpose and need. Historically these needs -- and often the designed outputs themselves -- have been dictated not by the designer but by clients and also through established…
Descriptors: Design, Educational Change, Competency Based Education, Outcome Based Education
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Zeynep Gül Dertli; Bahadir Yildiz – Journal of Inquiry Based Activities, 2025
In STEM education, the engineering design process serves as a pedagogical strategy to connect science and mathematics concepts. While STEM approaches are increasingly favored in science courses, the role of mathematics in integrated STEM activities is often overlooked, despite its foundational importance across STEM disciplines. This manuscript…
Descriptors: Mathematics Instruction, Teaching Methods, Scientific Concepts, Mathematical Concepts
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Miroslava Petrova; Claas Kuhnen – Design and Technology Education, 2025
Integration of Artificial Intelligence (AI) in the design process is a growing area of research interest. Three years after its public launch in 2022, AI has already established itself as the most disruptive tool revolutionizing how designers conceptualize, iterate and innovate. As AI technologies continue to evolve, it is pertinent that design…
Descriptors: Artificial Intelligence, Computer Software, International Cooperation, Institutional Cooperation
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Giulia Cosentino; Jacqueline Anton; Kshitij Sharma; Mirko Gelsomini; Michail Giannakos; Dor Abrahamson – British Journal of Educational Technology, 2025
As AI increasingly enters classrooms, educational designers have begun investigating students' learning processes vis-à-vis simultaneous feedback from active sources--AI and the teacher. Nevertheless, there is a need to delve into a more comprehensive understanding of the orchestration of interactions between teachers and AI systems in educational…
Descriptors: Artificial Intelligence, Learning Processes, Instructional Design, Design
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Baichang Zhong; Xiaofan Liu; Shuiyan Huang – Technology, Pedagogy and Education, 2025
While pair learning (PL) is considered a potential method in STEM education including robotics education (RE), the question of how to pair students for superior learning effects remains. Current grouping strategies for PL in RE are constrained by fixed grouping (FG) and short of attention to dynamic grouping (DG). Therefore, this study aims to…
Descriptors: Robotics, Cooperative Learning, Comparative Analysis, Computer Science Education