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Anni Silvola; Anu Kajamaa; Joonas Merikko; Hanni Muukkonen – British Journal of Educational Technology, 2025
Despite a proliferation of research on generative artificial intelligence (GenAI) and its applications in higher education (HE), our understanding of the transformative processes where students create productive and ethically grounded uses of GenAI and how AI mediates students' sensemaking is still limited. Based on an empirical investigation of…
Descriptors: Artificial Intelligence, Technology Uses in Education, College Students, Learning Processes
Katie D. Lewis – Journal of Advanced Academics, 2025
The potential of Generative Artificial Intelligence (GenAI) to support teachers in providing a more equitable, inclusive, comprehensive, rigorous advanced academics cannot be ignored. GenAI alone is not enough to sustain learning, but when it is guided by a human teacher who knows each student's learning profiles, then realization of potential…
Descriptors: Artificial Intelligence, Technology Uses in Education, Teacher Education Programs, Gifted Education
David Ernesto Salinas-Navarro; Eliseo Vilalta-Perdomo; Rosario Michel-Villarreal; Luis Montesinos – Interactive Technology and Smart Education, 2024
Purpose: This article investigates the application of generative artificial intelligence (GenAI) in experiential learning for authentic assessment in higher education. Recognized for its human-like content generation, GenAI has garnered widespread interest, raising concerns regarding its reliability, ethical considerations and overall impact. The…
Descriptors: Experiential Learning, Learning Activities, Performance Based Assessment, Artificial Intelligence
Herb Turner; Annette Turner – Technology, Knowledge and Learning, 2024
Reading comprehension is among the most challenging and complex skills to teach and research. Doing both well is critical to improving the reading comprehension proficiency of 67% of grade 4 students in U.S. public schools who scored below basic on the 2022 National Assessment of Educational Progress. This Chapter presents Knowledge Acquisition…
Descriptors: Reading Comprehension, Elementary Education, Educational Improvement, Knowledge Level
Muhammad Farrukh Shahzad; Shuo Xu; Xin An; Muhammad Asif – SAGE Open, 2025
Generative AI is revolutionizing education by enhancing personalized learning, fostering innovation, and transforming traditional teaching methodologies, making it a critical tool for the future of education. This study aims to explore the impact of generative AI (Gen-AI) technologies, focusing on academic and learning performance, publication…
Descriptors: Artificial Intelligence, Technology Uses in Education, Transformative Learning, Publications
Ali Ceyhun Muftuoglu – ProQuest LLC, 2024
This study investigates the role of Immersive Virtual Reality (IVR) in facilitating Transformative Experiences (TE) and enhancing everyday engagement with learning. Using the Teaching for Transformative Experiences in Science (TTES) model, this research integrates IVR's unique affordances--presence and agency--to examine how immersive learning…
Descriptors: Computer Simulation, Transformative Learning, Learner Engagement, Science Education
Serap Ugur; Gokhan Deniz Dincer; Didem Pasaoglu Bas – Turkish Online Journal of Distance Education, 2024
This article examines the effects of technology in the field of education and management and focuses especially on the effects of technologies used in distance education activities on transformation processes. Based on research conducted, the article explains how technological developments affect education and management processes, according to…
Descriptors: Open Education, Influence of Technology, Technology Uses in Education, Distance Education
Neil Kramm; Sioux McKenna – Teaching in Higher Education, 2023
The dominant response within higher education to the emergence of free online text- and graphic-generating software has been a concern with identifying AI usage in students' work. We argue that this is both a waste of time and neglects our educational responsibilities. A police-catch-punish approach to AI, as with the use of this process in…
Descriptors: Artificial Intelligence, Higher Education, Plagiarism, Learning Experience
Camille Kandiko Howson; Martyn Kingsbury – Teaching in Higher Education, 2023
Through an evaluation of an institution-wide curriculum change process, this paper analyses how strategic policy is variously enacted in departmental communities. Linguistic ethnography of public, institutional and internal policy documents illuminates departments' engagement with the change process. With curriculum change positioned as a…
Descriptors: Foreign Countries, Active Learning, Curriculum Development, Inclusion
Jaime Alexa Monteforte – ProQuest LLC, 2024
The number of adults who are returning to the classroom to further their education is higher than ever before. Technology, especially in the education world, has been advancing at an exponential rate. This narrative study was based on the following problem, there is little understanding of how technology incorporated in an education setting…
Descriptors: Nontraditional Students, Student Attitudes, Adult Students, College Students
Rebecca Marrone; Samuel Fowler; Abhinava Bathakur; Shane Dawson; George Siemens; Chanvi Singh – School Leadership & Management, 2025
The integration of AI in education has the potential to significantly transform teaching and learning. However, the successful adoption of AI is heavily reliant on the actions and perspectives of school leaders. As schools increasingly incorporate AI into their classrooms, it is essential to understand how education leaders perceive this…
Descriptors: Artificial Intelligence, Technology Uses in Education, Administrator Attitudes, Transformative Learning
Vaibhav Verma – Journal of Interdisciplinary Studies in Education, 2025
This study explores the evolution and significance of heutagogical learning in professional development using a bibliometric analysis of literature published between 2010 and 2024. Heutagogy, emphasizing learner autonomy, has emerged as a transformative educational paradigm, particularly in workforce training and lifelong learning. The research…
Descriptors: Student Centered Learning, Personal Autonomy, Professional Development, Transformative Learning
Tapas Sudan; Arjun Hans; Rashi Taggar – Interactive Technology and Smart Education, 2024
Purpose: The intricate dynamics of ChatGPT adoption among Indian students are discussed while exploring the factors outlined by Unified Theory of Acceptance and Use of Technology 2 (UTAUT2). By assessing these factors, this study aims to unravel their impact on the behavioral intention to use ChatGPT. Design/methodology/approach: While evaluating…
Descriptors: Transformative Learning, Technology Uses in Education, Artificial Intelligence, Computer Software
Rebecca Heaton; Joo Hong Low; Vernon Chen – Pedagogies: An International Journal, 2024
With growing interest in the role and integration of Artificial Intelligence (AI) and AI pedagogies in transformative art education this paper voices the pedagogic reflections of three art educators in Singapore who have engaged AI in their art provision. It discusses and exemplifies the advantages (intelligent), like interdisciplinary…
Descriptors: Foreign Countries, Artificial Intelligence, Art Education, Art Teachers
Ashraf Alam; Atasi Mohanty – Cogent Education, 2024
The researchers developed an Integrated Constructive Robotics in Education (ICRE) model that represents a pioneering framework designed to revolutionize educational landscapes by integrating robotics into pedagogical settings. This research introduces the ICRE model, elucidating its multifaceted dimensions and envisioning its profound impact on…
Descriptors: Technology Integration, Technology Uses in Education, Robotics, Models

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