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Karen Murcia; Emma Cross; Geoffrey Lowe – Australian Educational Researcher, 2025
The importance of incorporating digital technologies into early childhood education is now widely accepted to help position children as creative producers and not just consumers of technology. Early childhood educators in turn have a key role to play in developing technology-related skills and competencies such as coding and computational thinking…
Descriptors: Young Children, Computation, Thinking Skills, Play
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Benjaporn Laowongsee; Angkana Tungkasamit; Khemmanat Mingsiritham – Journal of Education and Learning, 2025
This study examines the needs assessment of design thinking to enhance innovative design competency in preservice teachers' learning management in Thailand. The research aimed to assess teaching performance and identify key areas for developing innovative design competency. A total of 346 pre-service teachers from universities across four regions…
Descriptors: Design, Thinking Skills, Needs Assessment, Skill Development
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Nurul Fadilah; S. Suhartini; Suyitno Aloysius – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
The growing awareness of the increasingly complex environmental changes requires an educational approach that fosters critical thinking. Through the implementation of PBL, students will gain a deeper understanding and develop an attitude of environmental care, particularly towards their surroundings. This study aims to evaluate the effectiveness…
Descriptors: Critical Thinking, Problem Based Learning, Worksheets, Environmental Education
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Huang Ham; Bonan Zhao; Thomas L. Griffiths; Natalia Vélez – Cognitive Science, 2025
A hallmark of effective teaching is that it grants learners not just a collection of facts about the world, but also a toolkit of abstractions that can be applied to solve new problems. How do humans teach abstractions from examples? Here, we applied Bayesian models of pedagogy to a necklace-building task where teachers create necklaces to teach a…
Descriptors: Teaching Methods, Instructional Effectiveness, Skill Development, Problem Solving
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Dewi Ekaputri Pitorini; Suciati; Harlita – Journal of Educators Online, 2025
Critical thinking skills are needed to face the challenges of living in the 21st century. Education must be able to foster students' critical thinking and enable them to think independently. This study aims to investigate the development of students' critical thinking skills during the learning process using an e-module based on problem-based…
Descriptors: Electronic Learning, Problem Based Learning, Dialogs (Language), Questioning Techniques
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Tarattakan Pachumwon; Thada Jantakoon; Rukthin Laoha – Higher Education Studies, 2025
This study introduces CAILE, a design thinking-driven conceptual framework for a Creative AI Learning Environment, designed to enhance programming skills. Evaluates clarity, appropriateness, and feasibility through expert judgment. Phase 1 synthesized 34 peer-reviewed studies (2019-2025) to articulate CAILE's structure across three layers: Inputs…
Descriptors: Creativity, Artificial Intelligence, Technology Uses in Education, Programming
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Mohammad A. Tashtoush; Aida B. Al-Qasimi; Nawal A. Shirawia; Noha M. Rasheed – European Journal of STEM Education, 2024
This study aims to prepare an educational program based on integrating Science, Technology, Engineering and Mathematics (STEM) to develop students' mathematical thinking skills. It also aims to provide proposals that could have a major role in rebuilding some of the general features on which mathematics curricula can be built according to the STEM…
Descriptors: STEM Education, Calculus, Mathematics Instruction, Thinking Skills
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Tekkumru-Kisa, Miray; Akcil-Okan, Ozlem; Kisa, Zahid; Southerland, Sherry – Journal of Research in Science Teaching, 2023
Recent instructional reforms in science education aim to change the way students engage in learning in the discipline, as they describe that students are to engage with disciplinary core ideas, crosscutting concepts, and the practices of science to make sense of phenomena (NRC, 2012). For such sensemaking to become a reality, there is a need to…
Descriptors: Science Instruction, Teaching Methods, Educational Change, Thinking Skills
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Fu, Chanjuan; Hao, Xiaoxin; Shi, Donglin; Wang, Lin; Geng, Fengji – Education and Information Technologies, 2023
Coding learning can promote the development of computational thinking (CT) in young children. The effect of coding learning on CT may vary between different cultures. However, it lacks studies to evaluate the effect of coding learning on the various dimensions of CT in young Chinese children. To provide insight into this question, we recruited…
Descriptors: Foreign Countries, Young Children, Computation, Thinking Skills
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Lilian Anthonysamy; Poovilashini Sugendran; Lim Ooi Wei; Teoh Sian Hoon – Education and Information Technologies, 2024
Enhancing students' analytical thinking skills holds great promise for bolstering a nation's economic growth, fostering a dynamic learning culture, and nurturing human capital development. It is especially critical in today's rapidly changing landscape, where the demand for skilled, adaptable graduates is high. Achieving and sustaining these…
Descriptors: Metacognition, Competence, Logical Thinking, College Students
Collette Marie Lere' London – ProQuest LLC, 2024
The purpose of this quantitative, quasi-experimental study was to determine if, and to extent, there is a statistically significant difference between pre and posttest critical thinking scores of U.S. Navy Operations Specialist A-school participants in an adaptive technology training environment and those in the traditional learning environment.…
Descriptors: Military Training, Armed Forces, Critical Thinking, Skill Development
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Yun Dai – Education and Information Technologies, 2025
There is a growing consensus that AI literacy requires a holistic lens, including not only technical knowledge and skills but also social and ethical considerations. Yet, providing holistic AI education for upper-primary students remains challenging due to the abstract and complex nature of AI and a lack of pedagogical experiences in schools.…
Descriptors: Integrated Activities, Holistic Approach, Artificial Intelligence, Computer Science Education
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Romain Quentin; Lison Fanuel; Mariann Kiss; Marine Vernet; Teodóra Vékony; Karolina Janacsek; Leonardo G. Cohen; Dezso Nemeth – npj Science of Learning, 2021
Knowing when the brain learns is crucial for both the comprehension of memory formation and consolidation and for developing new training and neurorehabilitation strategies in healthy and patient populations. Recently, a rapid form of offline learning developing during short rest periods has been shown to account for most of procedural learning,…
Descriptors: Statistics Education, Learning Processes, Intervals, Thinking Skills
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Nugteren, Michelle L.; Jarodzka, Halszka; Kester, Liesbeth; Van Merriënboer, Jeroen J. G. – Interactive Learning Environments, 2023
Secondary school students often learn new cognitive skills by practicing with tasks that vary in difficulty, amount of support and/or content. Occasionally, they have to select these tasks themselves. Studies on task-selection guidance investigated either procedural guidance (specific rules for selecting tasks) or strategic guidance (general rules…
Descriptors: Foreign Countries, Secondary School Students, Guidance, Task Analysis
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María Dolores Soto-González; Ramona Rodríguez-López – Journal of Technology and Science Education, 2025
This study presents a transdisciplinary techno-artistic experience conducted with students of the degree in Preschool Education from the University of Valencia. The experience seeks to promote the use of technologies with a contemporary approach through new creative forms such as sound-visual cartographies. The objective is to understand the…
Descriptors: Interdisciplinary Approach, Educational Technology, Preservice Teachers, Preschool Teachers
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