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Simone Porcu; Alessandro Floris; Luigi Atzori – IEEE Transactions on Learning Technologies, 2025
In this article, we preliminarily discuss the limitations of current video conferencing platforms in online synchronous learning. Research has shown that while the involved technologies are appropriate for collaborative video calls, they often fail to replicate the rich nature of face-to-face interactions among students and between students and…
Descriptors: Computer Simulation, Electronic Learning, Synchronous Communication, Videoconferencing
Qingwen Chen – British Educational Research Journal, 2025
The current cross-cultural education still faces problems such as low awareness and ability in cross-cultural education, low cultural sensitivity, shallow awareness of cross-cultural differences and poor cross-cultural ability to cooperate with others. The significance of this study lies in enhancing awareness and abilities in cross-cultural…
Descriptors: Multicultural Education, Cultural Awareness, Intercultural Communication, Computer Simulation
Cynthia Y. Delgado; Richard E. Mayer – Journal of Educational Computing Research, 2025
This study examined whether answering focused explanative questions during pauses in an immersive virtual reality (IVR) lesson on pipetting procedures could enhance learning. The goal was to take a generative learning activity, known to be effective for declarative knowledge with conventional media, to the context of procedural knowledge with…
Descriptors: Computer Simulation, Computer Uses in Education, Laboratory Procedures, Learning Activities
Rustam Shadiev; Xuan Chen; Wayan Sintawati; Fahriye Altinay; Yan Li; Nurassyl Kerimbayev; Ahmed Tlili – Educational Technology & Society, 2025
Students are unable to view each other's VR content created with 360-degree video technology using head-mounted displays and discuss it in real-time. This limitation may confine the application of 360degree video technology in the field of intercultural learning to merely passive observation of cultural content on individual devices, thereby…
Descriptors: Video Technology, Technology Uses in Education, Computer Simulation, Cultural Awareness
Adam Dabrowski; Ayako Yokogawa – Vocabulary Learning and Instruction, 2025
Flow is described as a state in which people become so involved or engrossed in an activity that nothing else seems to matter (Csikszentmihalyi, 2009). This state of consciousness seems to occur when a person is involved in a task and seemingly unable to stop. Flow states are marked by (a) a perceived balance of skills and challenge, (b)…
Descriptors: Computer Simulation, Game Based Learning, Vocabulary, Attention
Rahmat Rizal; Irwan Muhammad Ridwan; Herni Yuniarti Suhendi; Ifa Rifatul Mahmudah – Journal of Teaching and Learning, 2025
Virtual Reality (VR) technology in learning activities assists in visualizing abstract phenomena of physics concepts. This technology supports the delivery of effective and meaningful learning experiences. The main objectives of this study, therefore, are to analyze the level of students' readiness to use VR technology in higher education, and to…
Descriptors: Computer Simulation, Educational Technology, Technology Uses in Education, Physics
Nicholas Ogbonna Onele; Theresa Chinyere Ogbuanya – Journal of Teaching and Learning, 2025
This study adopted a pre-test post-test quasi-experimental design. The sample size was 162 students from eight universities. The sample was categorized into two groups: Group I (n=79) and Group II (n=83). Electric VLab, provided the environment. A researcher-made achievement test, comprising multiple-choice, essay and practical questions was used…
Descriptors: Gender Differences, Teaching Methods, Academic Achievement, Computer Simulation
Hisao Fukumoto; Tomoki Kamio; Toshihiro Matsuo; Takayuki Nitta; Hideki Shimada; Masashi Ohchi; Hideaki Itoh – IEEE Transactions on Education, 2025
Contribution: A remote laboratory system for induction motors was developed in this study. By creating an original simulated induction motor, the structure of the motor can be observed, and the current and magnetic flux can be measured safely. Background: Electrical machinery has little appeal to young engineers. Such machinery deals with…
Descriptors: Engines, Laboratories, Distance Education, Computer Simulation
Biao Gao; Jun Yan; Ronghui Zhong – IEEE Transactions on Learning Technologies, 2025
Digital teachers represent an innovative fusion of media and artificial intelligence (AI) within online educational environments. However, the specific ways in which the appearance anthropomorphism of digital teachers influences the delivery of different knowledge types remain insufficiently understood. Drawing on Embodied Learning Theory and…
Descriptors: Online Courses, Educational Technology, Computer Simulation, Student Satisfaction
Ling Wu; Shuxin Wang – Education and Information Technologies, 2025
Contemporary technological advancements offer new possibilities for enhancing user creativity. We aimed to explore how technology can boost student creativity to meet the twenty-first century's demand for innovative talent. Based on the 4P model of creativity (person, process, product, and press) and constructivist theory, a virtual reality (VR)…
Descriptors: Computer Simulation, Brain, Biofeedback, Creativity
Mukarramah Mustari; Hartono; Sunyoto Eko Nugroho; Sugianto – Journal of Educators Online, 2025
This paper explores the development and evaluation of a MOOCs-based virtual physics measurement laboratory module designed to overcome common barriers in physics education, such as limited physical lab access, high costs, and safety concerns. Utilizing the Borg and Gall Research and Development model, this module integrates structured layouts,…
Descriptors: Physics, MOOCs, Science Education, Computer Simulation
Sadra Jafari Ghalehkohneh; Jared Arnell; Kaden Hart; Hillary Swanson; Boyd Edwards; John Edwards – Physical Review Physics Education Research, 2025
Digital simulations are powerful instructional tools for physics education. They are often designed to visualize canonical physical phenomena, with adjustable parameters for influencing the system. While this is sufficient for developing conceptual and qualitative intuitions, it does little to help physics students build connections between…
Descriptors: Physics, Computer Simulation, Science Education, Equations (Mathematics)
Elisabeth Bauer; Michael Sailer; Frank Niklas; Samuel Greiff; Sven Sarbu-Rothsching; Jan M. Zottmann; Jan Kiesewetter; Matthias Stadler; Martin R. Fischer; Tina Seidel; Detlef Urhahne; Maximilian Sailer; Frank Fischer – Journal of Computer Assisted Learning, 2025
Background: Artificial intelligence, particularly natural language processing (NLP), enables automating the formative assessment of written task solutions to provide adaptive feedback automatically. A laboratory study found that, compared with static feedback (an expert solution), adaptive feedback automated through artificial neural networks…
Descriptors: Artificial Intelligence, Feedback (Response), Computer Simulation, Natural Language Processing
Neil Francis Peirson – Research in Post-Compulsory Education, 2025
Virtual laboratories (VL) can provide students with learning experiences simulating practical experiments in a traditional laboratory. Evidence is presented that students believe in the truth of results from the VL as well as those from the traditional laboratory. The underlying reasons for these beliefs are explored, through Russell's description…
Descriptors: Computer Simulation, Science Laboratories, Student Attitudes, College Students
Feyzi Kaysi – International Journal of Technology in Education and Science, 2025
Due to the frequent utilization of technological applications in contemporary times, the quality of educational processes is rapidly evolving. This study examines students' experiences through simulation software applications. A mixed-method design is employed due to the combined use of qualitative and quantitative data collection methods.…
Descriptors: Computer Simulation, Computer Software, Learning Processes, Technology Uses in Education