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Anveshna Srivastava; Vihang Vaidya; Sahana Murthy; Chandan Dasgupta – British Journal of Educational Technology, 2024
Spatial perspective-taking (SPT) ability positively influences performance in STEM fields. While limited research studies have been done with school students, they have yielded inconclusive findings and, hence, here we report findings from our study with an augmented reality (AR) enhanced learning environment (ARELE), GeoSolvAR, on middle-school…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Orna Levin; Rivi Frei-Landau; Heidi Flavian; Erez C. Miller – European Journal of Teacher Education, 2025
Clinical simulation is recognised as an authentic approach that relies on practice through simulations of real situations. The development of scenarios for evidence-based simulations is an important stage in planning simulations. Yet, in teacher education there is a paucity of research on the subject of simulation scenarios. The goal of the…
Descriptors: Inservice Teacher Education, Teacher Workshops, Computer Simulation, Electronic Libraries
Delfi Eliza; Trisna Mulyeni; Yulsyofriend; Nenny Mahyuddin; Yeni Erita; Muhammad Dhanil – Journal of Baltic Science Education, 2025
Improving scientific literacy is crucial for early childhood development, yet limited studies necessitate a thorough analysis to identify effective solutions. This study aims to analyze the implementation of project-based learning in early childhood education to improve scientific literacy. The study followed the identification, screening,…
Descriptors: Scientific Literacy, Early Childhood Education, Active Learning, Student Projects
Wen, Yun; Wu, Longkai; He, Sujin; Ng, Nathanael Hsien-Ern; Teo, Beng Chong; Looi, Chee Kit; Cai, Yiyu – Educational Technology Research and Development, 2023
Notwithstanding the advantages of incorporating Augmented Reality (AR) in education, AR's concrete uses as compared to other technologies are not fully recognised. Moreover, many of the existing studies have neglected to examine the impact of pedagogy and its corresponding instructional models, whilst implementing AR in teaching and learning. In…
Descriptors: Elementary School Students, Science Instruction, Active Learning, Inquiry
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
Zhang, Cheng; Chen, Bing – Higher Education Studies, 2019
It is important for students in the built environment related disciplines to acquire subject-based knowledge and skills from reflecting on their experience. In return, the learning-by-doing approach has been widely adopted in the academic cluster of built environment. To further strengthen this, this paper proposes a Virtual Reality (VR) based…
Descriptors: Engineering Education, Building Design, Cooperative Learning, Physical Environment
Xinyi Wang; Mohd Nazri Bin Abdul Rahman; Mohd Shahril Nizam Shaharom – Cogent Education, 2024
Augmented reality (AR) technology is increasingly utilized in cognitive development and education of preschoolers. The Augmented Reality Integrated STEM Preschooler (ARISP) module combines AR technology with STEM (Science, Technology, Engineering, and Mathematics) in teaching and learning activity. This study aims to assess the impacts of the…
Descriptors: Foreign Countries, Preschool Education, STEM Education, Learning Activities
Bumbacher, Engin; Salehi, Shima; Wieman, Carl; Blikstein, Paulo – Journal of Science Education and Technology, 2018
Manipulative environments play a fundamental role in inquiry-based science learning, yet how they impact learning is not fully understood. In a series of two studies, we develop the argument that manipulative environments (MEs) influence the kind of inquiry behaviors students engage in, and that this influence realizes through the affordances of…
Descriptors: Manipulative Materials, Active Learning, Inquiry, Science Education
Marquardson, Jim; Gomillion, David L. – Information Systems Education Journal, 2019
Simulated environments can provide a convenient, effective way to teach skills. Simulations have been used for decades to teach skills such as piloting aircraft. As technology has improved, it has become feasible to simulate many other tasks. Recent advances in virtual and augmented reality provide new avenues for expanding training using…
Descriptors: Computer Simulation, Teaching Methods, Transfer of Training, Introductory Courses
Kong, Seng Yeap; Yaacob, Naziaty Mohd; Ariffin, Ati Rosemary Mohd – Asia Pacific Journal of Education, 2015
The use of the physical environment as a three-dimensional (3-D) textbook is not a common practice in educational facilities design. Previous researches documented that little progress has been made to incorporate environmental education (EE) into architecture, especially among the conventional designers who are often constrained by the budget and…
Descriptors: Foreign Countries, Physical Environment, Computer Simulation, Textbooks
Chrastil, Elizabeth R.; Warren, William H. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2013
It seems intuitively obvious that active exploration of a new environment would lead to better spatial learning than would passive visual exposure. It is unclear, however, which components of active learning contribute to spatial knowledge, and previous literature is decidedly mixed. This experiment tests the contributions of 4 components to…
Descriptors: Spatial Ability, Navigation, Video Technology, Decision Making