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Saville, Jason Donald – ProQuest LLC, 2023
Virtual reality (VR) is increasingly being used for education and training, raising questions about how to assess the degree to which people feel competent learning through VR. In 2022, Saville and colleagues developed the Virtual Reality Learning Self-Efficacy Scale (VRLSE). The current experiment builds on their work. VR can be used for a wide…
Descriptors: Computer Simulation, Educational Technology, Training, Skill Development
António Faria – Journal of New Approaches in Educational Research, 2024
This study investigated the impact of two teaching strategies, conventional and drawing principle, associated with the use of Augmented Reality (AR), on the school performance of pupils in the 7th-year of primary school and the 10th-year of secondary school on volcanism learning. Compared to previous research, the novelty of this study lies in the…
Descriptors: Science Education, Grade 7, Grade 10, Physical Environment
Carisma Nel; Elma Marais – Reading & Writing: Journal of the Literacy Association of South Africa, 2023
Background: Concerns have been raised about the inconsistency and quality of pre-service teacher preparation, especially in reading literacy. Mixed-reality simulations can potentially revolutionise initial teacher education by offering realistic, risk-free practice opportunities to master reading practices. Objectives: This study explores…
Descriptors: Preservice Teachers, Computer Simulation, Reading Skills, Reading Instruction
Jones, Cindy; Khali, Daniel; Mander, Karanjot; Yeoh, Alexandra; Moro, Christian – Research in Learning Technology, 2022
Understanding the key physiology and anatomy of the brain, and the mechanisms underlying dementia, represents essential components within a medical curriculum. This study assessed the implementation feasibility of an augmented reality (AR) three-dimensional (3D) brain visualisation learning mode and the knowledge improvements in medical students…
Descriptors: Dementia, Computer Simulation, Brain Hemisphere Functions, Medical Students

Amy Adair – Grantee Submission, 2024
Developing models, using mathematics, and constructing explanations are three practices essential for science inquiry learning according to education reform efforts, such as the Next Generation Science Standards (NGSS Lead States, 2013). However, students struggle with these intersecting practices, especially when developing and interpreting…
Descriptors: Artificial Intelligence, Computer Software, Technology Integration, Scaffolding (Teaching Technique)
Richter, Juliane; Lachner, Andreas; Jacob, Leonie; Bilgenroth, Friederike; Scheiter, Katharina – Journal of Computer Assisted Learning, 2022
Background: Engaging students in computer-assisted guided inquiry learning has great potential to scaffold their scientific understanding: Students are expected to improve their scientific problem-solving skills, and at the same time gain a deep conceptual understanding of the subject-matter. Additional generative activities such as creating video…
Descriptors: Self Concept, Problem Solving, Video Technology, Computer Assisted Instruction
Davidsen, Jacob; Larsen, Dorthe Vinther; Paulsen, Lucas; Rasmussen, Sten – Journal of Problem Based Learning in Higher Education, 2022
In this paper, we present and discuss an explorative study on the use of a social 360° virtual reality (360VR) for supporting case-based Problem Based Learning (case-PBL) in clinical medical education. In the context of case-PBL, we argue that our social 360VR learning space extends the design and application of cases in medical education by…
Descriptors: Problem Based Learning, Medical Education, Teaching Methods, Comparative Analysis
Huang, Wen; Roscoe, Rod D.; Craig, Scotty D.; Johnson-Glenberg, Mina C. – Journal of Educational Computing Research, 2022
Virtual reality (VR) has a high potential to facilitate education. However, the design of many VR learning applications was criticized for lacking the guidance of explicit and appropriate learning theories. To advance the use of VR in effective instruction, this study proposed a model that extended the cognitive-affective theory of learning with…
Descriptors: Affective Behavior, Learning Theories, Computer Simulation, Teaching Methods
Leite, Walter L.; Kuang, Huan; Shen, Zuchao; Chakraborty, Nilanjana; Michailidis, George; D'Mello, Sidney; Xing, Wanli – Grantee Submission, 2022
Previous research has shown that providing video recommendations to students in virtual learning environments implemented at scale positively affects student achievement. However, it is also critical to evaluate whether the treatment effects are heterogeneous, and whether they depend on contextual variables such as disadvantaged student status and…
Descriptors: Algebra, Teaching Methods, Mathematics Instruction, COVID-19
Richardson, R. Thomas; Sammons, Dotty; Del-Parte, Donna – Journal of Interactive Learning Research, 2018
This study compared learning performance during and following AR and non-AR topographic map instruction and practice Two-way ANOVA testing indicated no significant differences on a posttest assessment between map type and spatial ability. Prior learning activity results revealed a significant performance difference between AR and non-AR treatment…
Descriptors: Teaching Methods, Educational Technology, Technology Uses in Education, Simulated Environment
Kantisa, Piyapan; Sitthitikul, Pragasit – PASAA: Journal of Language Teaching and Learning in Thailand, 2018
This article aims to provide an extensive review of web-based instruction (WBI), implemented within the realm of English language teaching (ELT). WBI is a teaching method that utilizes computer technology to promote learning experiences by leveraging the internet and web applications. It is suggested that educators carefully consider the related…
Descriptors: Web Based Instruction, Teaching Methods, English (Second Language), Second Language Learning
Hsu, Yuling; Gao, Yuan; Liu, Tzu-Chien; Sweller, John – Educational Technology & Society, 2015
Based on cognitive load theory, the effect of different levels of instructional detail and expertise in a simulation-based environment on learning about concepts of correlation was investigated. Separate versions of the learning environment were designed for the four experimental conditions which differed only with regard to the levels of written…
Descriptors: Foreign Countries, High School Students, Public Schools, Grade 10
Akinlofa, Olurotimi R.; Holt, Patrik O'Brian; Elyan, Eyad – British Journal of Educational Technology, 2013
Previous research into the effectiveness of dynamic versus static instructional design paradigms has reported divergent findings. Dynamic instructions have been shown to be more effective in teaching novel procedural skills. In contrast, the apparent benefit of dynamic over static instructions has been attributed in other studies to the cognitive…
Descriptors: Instructional Design, Teaching Methods, Skill Development, Novelty (Stimulus Dimension)
Stamenkovski, Sasha; Zajkov, Oliver – European Journal of Physics Education, 2014
This research is conducted among 65 seventh graders (12-14 years old) who attend introductory course on physics. Tests and interviews are used to trace the roots of the students' misconceptions about mass. Results from the research reveal serious weaknesses in students' understanding of concept of mass, and its confusion with concepts of density…
Descriptors: Grade 7, Introductory Courses, Physics, Science Instruction
Li, Zhong-Zheng; Cheng, Yuan-Bang; Liu, Chen-Chung – British Journal of Educational Technology, 2013
Game-like learning systems such as simulation games and digital toys are increasingly being applied to foster higher-level abilities in educational contexts, as they may facilitate an active learning experience. However, the effect of such game-like learning systems is not guaranteed because students may only be interested in the fantasy…
Descriptors: Active Learning, Instructional Design, Learning Strategies, Computer Simulation
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