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Showing 1 to 15 of 168 results Save | Export
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Sofie Otto; Stine Ejsing-Duun; Euan Lindsay – Education and Information Technologies, 2025
This study explores the arrival of Generative Artificial Intelligence (GenAI) technologies in a collaborative Problem-Based Learning (PBL) environment from the perspective of students. It examines the emerging practices students develop individually and in groups as well as the tensions they navigate in response to GenAI's sudden arrival, its…
Descriptors: Student Attitudes, Artificial Intelligence, Technology Uses in Education, Problem Based Learning
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Min Liu; Songhee Han; Peixia Shao; Ying Cai – Educational Technology Research and Development, 2025
To help young students succeed in problem-based learning (PBL), researchers suggested investigating students' need for cognition (NFC), one's inclination to exert mental effort during learning. How one puts mental effort into a learning task is related to motivation. If motivated, students are more likely to engage in challenging tasks, put in…
Descriptors: Cognitive Processes, Middle School Students, Learning Motivation, Technology Uses in Education
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Ying-Lien Lin; Wei-Tsong Wang – Education and Information Technologies, 2024
Understandability and completeness are essential in modern collaborative digital platforms and their learning systems. These platforms have shaken up the traditional education setting, particularly in leveraging the coauthoring approach in problem-solving and streamlining the learning behavior of cowriting or corevising. Such a learning context…
Descriptors: Electronic Learning, Cooperative Learning, Problem Based Learning, Authors
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Thiyaporn Kantathanawat; Anyamanee Ussarn; Mai Charoentham; Paitoon Pimdee – Educational Process: International Journal, 2025
Background/purpose: The increasing integration of digital technology in education underscores the need for instructional models that support personalized, skill-based, and problem-solving focused learning. While traditional pedagogies often fail to address these needs comprehensively, this study proposes that the Mastery Adaptive Problem-Solving…
Descriptors: Educational Technology, Technology Uses in Education, Problem Solving, Mastery Learning
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Shoukat Ali Arain; Shahid Akhtar Akhund; Muhammad Abrar Barakzai; Sultan Ayoub Meo – Advances in Physiology Education, 2025
The alignment of learning materials with learning objectives (LOs) is critical for successfully implementing the problem-based learning (PBL) curriculum. This study investigated the capabilities of Gemini Advanced, a large language model (LLM), in creating clinical vignettes that align with LOs and comprehensive tutor guides. This study used a…
Descriptors: Medical Education, Educational Change, Artificial Intelligence, Technology Uses in Education
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Neda Haj-Hosseini; Hanna Jonasson; Magnus Stridsman; Lars Carlsson – Education and Information Technologies, 2024
To enable interactive remote education on electrical safety in biomedical engineering, a real-life problem-based laboratory module is proposed, implemented and evaluated. The laboratory module was implemented in a freestanding distance course in hospital safety for three consecutive years and was based on electrical safety for medical devices,…
Descriptors: Distance Education, Energy, Safety, Biomedicine
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Chenyu Hou; Gaoxia Zhu; Vidya Sudarshan – British Journal of Educational Technology, 2025
There is a heightened concern over undergraduate students being over-reliant on Generative AI and using it recklessly. Reliance behaviours describe the frequencies and ways that people use AI tools for tasks such as problem-solving, influenced by individual factors such as trust and AI literacy. One way to conceptualise reliance is that reliance…
Descriptors: Undergraduate Students, Artificial Intelligence, Student Behavior, Incidence
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Linda N. Laursen; Thomas Ryberg – European Journal of Engineering Education, 2025
This paper contributes to current discussions of digital teaching and technology within the field of engineering design education. We enter this dialogue by analysing a hybrid digital learning design for a 15-ECTS engineering design course. The course design pedagogically integrates principles from networked learning research, Problem-Based…
Descriptors: Design, Engineering Education, Blended Learning, Accountability
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Cucuk Wawan Budiyanto; Muhamad Nur Azmi Wahyudi; Indah Widiastuti; Rizka Latifah – Educational Process: International Journal, 2025
Background/purpose: Computational Thinking (CT) has gained widespread attention in education as a core cognitive skill essential for solving complex problems in both academic and real-world contexts. While Indonesian educators have actively adopted CT as part of national educational reforms, questions remain about how closely current practices…
Descriptors: Foreign Countries, Computation, Thinking Skills, Educational Research
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Minji Jeon; Kathleen Jantaraweragul; Anne Ottenbreit-Leftwich; Cindy Hmelo-Silver; Krista Glazewski; Bradford Mott; James Lester; Cathy Ringstaff – International Journal of Designs for Learning, 2024
The PrimaryAI project focuses on developing an upper elementary integrated curriculum that covers life science, artificial intelligence (AI), and computer science concepts. The PrimaryAI curriculum uses both problem-based learning (PBL) and game-based learning (GBL) to engage students and situates the curriculum in a real-world context. The…
Descriptors: Inquiry, Artificial Intelligence, Technology Uses in Education, Elementary School Students
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Fauziah Rasyid; Jumadi Jumadi; Proki Karandja Hawur – Journal of Science Learning, 2025
This study aims to explore the literature on learning interventions that can enhance students' multiple representation skills and identify indicators for assessing multiple representation abilities in physics education. Following the PRISMA procedure, the research is a systematic literature review using qualitative content analysis techniques. The…
Descriptors: Physics, Science Instruction, Science Process Skills, Intervention
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Hsbollah, Hafizah Mohamad; Hassan, Haslinda – Malaysian Journal of Learning and Instruction, 2022
Purpose: Previous studies have documented the positive effect of problem-based learning (PBL) on learners, especially in the medical discipline. However, such effect on learners in a specific course of Systems Analysis and Design (SAD) and how the PBL implementation in this course could contribute to meaningful learning are still under-researched.…
Descriptors: Learning Experience, Active Learning, Technology Uses in Education, Problem Based Learning
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Putri Amanda Revalestina; Hadi Suwono – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
The 21st century represents a time of worldwide interconnectedness that demands every individual to have digital knowledge and literacy. Science learning activities are important to help students learn and understand science and students' digital literacy. Learning that actively involves students will encourage students to find ideas. This study…
Descriptors: Biological Sciences, Computer Simulation, Technology Uses in Education, Technological Literacy
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James B. Howell; Lamont E. Maddox – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2024
Inquiry-based learning is not common in secondary geography classrooms in the United States. The goal of this initial foray into design-based research was to maximize the potential of online video-case technology to disrupt this trend and support geography teachers in enacting high-quality problem-based geographic inquiry (PBGI). Informed by…
Descriptors: Secondary School Teachers, Secondary School Students, Problem Based Learning, Geography Instruction
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Hidayatullah; Budi Setiawan – Cogent Education, 2024
This present study aims to elaborate on the use of the problem-based method as an instructional strategy to produce an engaging online program that can facilitate the student's learning achievement. Since the students must interact actively with lecturers, other students, and course content, it is necessary that online learning involves the use of…
Descriptors: Student Empowerment, Cooperation, Sustainability, Problem Based Learning
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