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Henry Matovu; Mihye Won; Roy Tasker; Mauro Mocerino; David Franklin Treagust; Dewi Ayu Kencana Ungu; Chin-Chung Tsai – Chemistry Education Research and Practice, 2025
Immersive Virtual Reality (iVR) can help students visualise and explore complex chemical concepts, such as protein enzyme structures and interactions. We designed a set of collaborative iVR-based learning tasks on the interaction between a protein enzyme and its substrate. We investigated how 18 pairs (36 students) in undergraduate chemistry…
Descriptors: Biochemistry, Science Education, Computer Simulation, Technology Uses in Education
Pauletta Irwin; Maree Crepinsek; Rosanne Coutts – Interactive Learning Environments, 2024
"Background": The adoption of technology in healthcare and higher education supports an opportunity for educators to harness the capacity of digital environments. This research contributes to discourse of industry acceptance regarding the educational value of virtual teaching and learning nursing skills, along with transferability to…
Descriptors: Nursing Education, Experiential Learning, Computer Simulation, Nursing Students
Marinelli, Melissa; Male, Sally A.; Valentine, Andrew; Guzzomi, Andrew; van der Veen, Tom; Hassan, Ghulam Mubashar – European Journal of Engineering Education, 2023
Access to interactive, simulated work environments through virtual reality (VR) has potential in teaching safety in design (SiD) to engineering students with reduced risk, cost and inconvenience. However, there is limited understanding of what students learn from immersive VR interventions, or the outcomes from specific learning activities. This…
Descriptors: Computer Simulation, Safety, Design, Engineering Education
Chloe Hurrell; Andreas Chai; Heather Green; Graham Bradley – Environmental Education Research, 2024
The pressing urgency of climate change calls for advancements in the way it is communicated. One communication option is the use of virtual reality (VR). The current research comprised two pilot studies to develop and test a virtual environment depicting proximal effects of climate change regarding the participant's location. In both studies, an…
Descriptors: Computer Simulation, Climate, Conservation (Environment), Intention
Matovu, Henry; Won, Mihye; Treagust, David Franklin; Ungu, Dewi Ayu Kencana; Mocerino, Mauro; Tsai, Chin-Chung; Tasker, Roy – Chemistry Education Research and Practice, 2023
In recent years, chemistry educators are increasingly adopting immersive virtual reality (IVR) technology to help learners visualise molecular interactions. However, educational studies on IVR mostly investigated its usability and user perceptions leaving out its impact on improving conceptual understanding. If they evaluated students' knowledge…
Descriptors: Science Education, Chemistry, Computer Simulation, Undergraduate Students
Kluge, Murielle G.; Maltby, Steven; Kuhne, Caroline; Evans, Darrell J. R.; Walker, Frederick Rohan – Education and Information Technologies, 2023
The use of extended reality (XR) technology in education offers many advantages for transferring knowledge and practical skills training at the higher education level. As a result, many Universities over the past 5 + years have undertaken pilot programs to both develop XR content and assess how to best implement it within existing teaching and…
Descriptors: Foreign Countries, Computer Simulation, Instructional Design, Computer Software
Erika Spray; Natasha Kett; Nate Rutherford; Tess Rendoth – Australasian Journal of Educational Technology, 2024
Simulated learning environments have rapidly evolved in recent years and are gaining traction as an effective tool in teacher education (Australian Institute for Teaching and School Leadership, 2023; Frei-Landau et al., 2023). This paper explores the use of virtual classroom simulation in initial teacher education at an Australian university. It…
Descriptors: Computer Simulation, Teacher Education, Foreign Countries, Alignment (Education)
Marks, Benjy; Thomas, Jacqueline – Education and Information Technologies, 2022
Virtual and augmented (VAR) technology is in the early stages of being adopted as a teaching platform in higher education. The technology can facilitate immersive learning in environments that are not usually physically accessible to students via 3D models and interactive 360° videos. To date, adoption rates of VAR technology for teaching have not…
Descriptors: Foreign Countries, Computer Simulation, Technology Uses in Education, Higher Education
Jia Liu; Avinash Kumar Singh; Anna Wunderlich; Klaus Gramann; Chin-Teng Lin – npj Science of Learning, 2022
Although beacon- and map-based spatial strategies are the default strategies for navigation activities, today's navigational aids mostly follow a beacon-based design where one is provided with turn-by-turn instructions. Recent research, however, shows that our reliance on these navigational aids is causing a decline in our spatial skills. We are…
Descriptors: Navigation, Physical Environment, Simulated Environment, Computer Simulation
Amanda J. Meyer; Jamie A. Chapman – Anatomical Sciences Education, 2024
Australia and Aotearoa New Zealand (AANZ) medical schools have been impacted by curricular changes and the introduction of virtual microscopy (VM). No survey has explicitly described the outcome of these events on histology education in AANZ. This study provides a cross-sectional overview of histology education in accredited medical schools across…
Descriptors: Foreign Countries, Medical Schools, Medical Education, Anatomy
Maurizio Costabile; Jasmina Turkanovic – Journal of Biological Education, 2024
The method for producing monoclonal antibodies (MAbs) was first published in 1975. MAbs have revolutionised research, diagnosis, and disease treatment approaches. While students need a good understanding of MAb production, teaching the key steps via traditional methods can be challenging. Numerous resources exist, but these focus on hybridoma…
Descriptors: Biology, Science Instruction, Undergraduate Students, Diseases
Mark E. Pickering; Ryan Jopp; Melissa A. Wheeler; Cheree Topple – Australasian Journal of Educational Technology, 2024
Advances in technology have significantly enhanced the quality of mixed-reality simulations, incorporating both real and virtual aspects. Mixed-reality simulations have been used to develop individual knowledge, skills and abilities in higher education; however, the use of such simulations to introduce authentic learning activities into higher…
Descriptors: Foreign Countries, Undergraduate Students, Business Administration Education, Computer Simulation
Kluge, Murielle G.; Maltby, Steven; Keynes, Angela; Nalivaiko, Eugene; Evans, Darrell J. R.; Walker, Frederick R. – SAGE Open, 2022
Extended reality (XR) technology is an emerging teaching tool within the higher education sector. Many institutions are currently running pilot projects, primarily assessing individual XR teaching tools typically being led by innovative/technology-driven teaching staff, which may introduce a self-selection bias and may not represent the general…
Descriptors: Higher Education, Educational Technology, Technology Uses in Education, Barriers
Liley, Tara; Ryan, Elaine; Lee, Kristal; Dimmock, Matthew; Robinson, John; Lewis, Sarah J. – Interactive Learning Environments, 2020
National professional capabilities for Australian Diagnostic Radiography (DR) graduates require computed tomography (CT) scanning competence. Clinical placements have varied success in achiveing CT learning experiences and dedicated simulation at university can aid development of clinical skills. This study explored DR undergraduate students'…
Descriptors: Student Attitudes, Radiology, Student Experience, Undergraduate Students
See, Zi Siang; Ledger, Susan; Goodman, Lizbeth L.; Matthews, Benjamin; Jones, Donovan; Fealy, Shanna; Ooi, Wooi Har; Amin, Manisha – Journal of Information Technology Education: Innovations in Practice, 2023
Aim/Purpose: This paper describes a technologies education model for introducing Simulation Learning and Extended Reality (XR) solution creation skills and knowledge to students at the tertiary education level, which is broadly applicable to higher education-based contexts of teaching and learning. Background: This work is made possible via the…
Descriptors: Technology Education, College Students, Models, Educational Technology