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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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Nora McDonald; Aaron Massey; Foad Hamidi – Journal of Problem Based Learning in Higher Education, 2023
Efforts to include people with disabilities in design education are difficult to scale, and dynamics of participation need to be carefully planned to avoid putting unnecessary burdens on users. However, given the scale of emerging AI-enhanced technologies and their potential for creating new vulnerabilities for marginalized populations, new…
Descriptors: Empathy, Artificial Intelligence, Assistive Technology, Sustainability
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Yong Zhao – ECNU Review of Education, 2025
Purpose: The purpose is to stimulate imagination of artificial intelligence (AI) and education beyond current schooling. Design/Approach/Methods: The approach this article took is a broad review of literature on learning, teaching, schooling, and technological development and evidence-based reasoning about the possible future of education in the…
Descriptors: Artificial Intelligence, Computer Software, Technology Integration, Problem Based Learning
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Mark Frydenberg; Anqi Xu; Jennifer Xu – Information Systems Education Journal, 2025
This study explores student perceptions of learning to code by evaluating AI-generated Python code. In an experimental exercise given to students in an introductory Python course at a business university, students wrote their own solutions to a Python program and then compared their solutions with AI-generated code. They evaluated both solutions…
Descriptors: Student Attitudes, Programming, Computer Software, Quality Assurance
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Joalise Janse van Rensburg – Discover Education, 2024
The ability to think critically is an important and valuable skill that students should develop to successfully solve problems. The process of writing requires critical thinking (CT), and the subsequent piece of text can be viewed as a product of CT. One of the strategies educators may use to develop CT is modelling. Given ChatGPT's ability to…
Descriptors: Critical Thinking, Writing Instruction, Computer Software, Artificial Intelligence
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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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Andrew Wiss; Mary Showstark; Kyle Dobbeck; Jennifer Pattershall-Geide; Elke Zschaebitz; Dawn Joosten-Hagye; Kirsten Potter; Erin Embry – Online Learning, 2025
This article highlights the foundational challenge of rapid interprofessional student team formation and the potential challenges that groupthink poses for newly formed teams participating in collaborative problem based learning activities. This article describes a mixed-methods study that addresses groupthink by introducing a generative…
Descriptors: Artificial Intelligence, Computer Uses in Education, Cooperative Learning, Problem Based Learning
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Bae, Haesol; Feng, Chen; Glazewski, Krista; Hmelo-Silver, Cindy E.; Chen, Yuxin; Mott, Bradford W.; Lee, Seung Y.; Lester, James C. – TechTrends: Linking Research and Practice to Improve Learning, 2023
Because implementing and orchestrating collaborative problem-based learning (PBL) in K-12 classrooms requires teachers to manage multiple activities and access various teaching resources at the same time, this is an exceptionally complex task for designers to develop tools for orchestration support as well as for teachers to coordinate. The aim of…
Descriptors: Cooperative Learning, Problem Based Learning, Elementary Secondary Education, Teacher Attitudes
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Golnoush Haddadian; Prajwal Panzade; Daniel Takabi; Min Kyu Kim – International Journal of Technology in Education, 2025
In response to the demand for Artificial Intelligence (AI) experts, this study introduced a curriculum development initiative. The aim was to design and implement a Private AI curriculum to understand the computer science (CS) students' evaluations of the curricular activities and their levels of interest and motivation. Twenty-five students, a…
Descriptors: Computer Science Education, Artificial Intelligence, Curriculum Development, Curriculum Implementation
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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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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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Nadziroh; Sunarso; Suyato – Educational Process: International Journal, 2025
Background/Purpose: This study investigates the effectiveness of integrating Artificial Intelligence (AI) with Problem-Based Learning (PBL) to enhance high school students' conflict resolution skills within the context of civic education. The initiative responds to the increasing need for pedagogical models that simultaneously foster ethical…
Descriptors: Conflict Resolution, Artificial Intelligence, Problem Based Learning, Citizenship Education
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Oscar Yecid Aparicio-Gómez; Olga Lucia Ostos-Ortiz; Constanza Abadía-García – Journal of Technology and Science Education, 2024
In today's educational environment, the convergence of emerging technologies and active methodologies has become a fundamental driver of change in university education. Emerging technologies, such as artificial intelligence, virtual reality, machine learning, and data analytics, are redefining the dynamics of higher education. Active…
Descriptors: Technological Advancement, Technology Uses in Education, Higher Education, Problem Based Learning
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Raweewarn Rattanakha; Pinanta Chatwattana; Pallop Piriyasurawong – Higher Education Studies, 2025
This research is intended to study the outcomes of analytical thinking and curiosity derived from the virtual smart classroom using the cooperative problem-based learning; thereby the said virtual smart classroom is a research tool initiated from the integration of the problem-based learning and the cooperative learning coupled with the aid of…
Descriptors: Problem Based Learning, Virtual Classrooms, Cooperative Learning, Technology Uses in Education
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Laila Badriyatul Habibah; I. Ibrohim; Herawati Susilo – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
Education 4.0 has emerged as a response to the Industrial Revolution 4.0, focusing on integrating technology into learning to support digital transformation and enhancing 21st-century skills, such as critical thinking, creative thinking, communication, and collaboration. While technology provides convenience, it also challenges students to develop…
Descriptors: Problem Based Learning, Student Projects, Active Learning, Technology Integration
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