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Sherif Adel Gaber – Journal of Education and e-Learning Research, 2024
Augmented reality (AR) has been shown to have a positive impact on children with autism spectrum disorder (ASD) because it can effectively simulate the real environment through interactive experiences created by the integration of digital elements with the outside world. This research aimed to verify the effectiveness of a training program based…
Descriptors: Autism Spectrum Disorders, Simulated Environment, Behavior Modification, Educational Technology
Zoran Sevarac; Jelena Jovanovic; Vladan Devedzic; Bojan Tomic – Interactive Learning Environments, 2023
The paper proposes EXPLODE, a new model of exploratory learning environment for teaching and learning neural networks. The EXPLODE model is about pedagogically instrumenting a software development environment to transform it into an exploratory learning environment for neural networks. Such an environment is particularly aimed for students who are…
Descriptors: Models, Discovery Learning, Artificial Intelligence, Computer Simulation
Garcia-Bonete, Maria-Jose; Jensen, Maja; Katona, Gergely – Biochemistry and Molecular Biology Education, 2019
Although virtual and augmented reality (VR and AR) techniques have been used extensively in specialized laboratories, only recently did they become affordable, reaching wider consumer markets. With increased availability, it is timely to examine the roles that VR and AR may play in teaching structural biology and in experiencing complex data sets…
Descriptors: Biology, Science Instruction, Teaching Methods, Simulated Environment
Ilic, Milena P.; Paun, Dan; Popovic Ševic, Nevenka; Hadžic, Aleksandra; Jianu, Anca – Education Sciences, 2021
Higher education in the Republic of Serbia needs to be reformed. This paper presents a performance analysis of the changes that the authors assume are mandatory, presenting the research problem this article addresses. Cabinet research, performed by analyzing the theoretical building blocks of available knowledge and experience, is underway.…
Descriptors: Foreign Countries, Higher Education, Needs Assessment, Educational Change
Parong, Jocelyn; Mayer, Richard E. – Journal of Educational Psychology, 2018
The goals of the study were (a) to compare the instructional effectiveness of immersive virtual reality (VR) versus a desktop slideshow as media for teaching scientific knowledge, and (b) to examine the efficacy of adding a generative learning strategy to a VR lesson. In Experiment 1, college students viewed a biology lesson about how the human…
Descriptors: Science Instruction, Simulated Environment, Computer Simulation, Educational Technology
Alvarez, Anthony M. – ProQuest LLC, 2018
This dissertation is the product of several individual multi-disciplinary investigations that cover a variety of topics in mathematics, physics, geology, and geoscience education. The first chapter formulates a better understanding of the timings, magma source, and relationships between dikes and associated magmatic bodies of the Red Bluff…
Descriptors: Mathematics Education, Science Education, Physics, Geology
Lau, Kung Wong; Kan, Chi Wai; Lee, Pui Yuen – International Journal of Information and Learning Technology, 2017
Purpose: The purpose of this paper is to discuss the use of stereoscopic virtual technology in textile and fashion studies in particular to the area of chemical experiment. The development of a designed virtual platform, called Stereoscopic Chemical Laboratory (SCL), is introduced. Design/methodology/approach: To implement the suggested…
Descriptors: Educational Technology, Technology Uses in Education, Chemistry, Simulated Environment
Menorath, Darren; Antonczak, Laurent – International Association for Development of the Information Society, 2017
This paper examines the state of the art of mobile Augmented Reality (AR) and mobile Virtual Reality (VR) in relation to collaboration and professional practices in a creative digital environment and higher education. To support their discussion, the authors use a recent design-based research project named "Juxtapose," which explores…
Descriptors: Telecommunications, Handheld Devices, Simulated Environment, Teaching Methods
Tan, Qing; Chang, William; Kinshuk – Electronic Journal of e-Learning, 2015
AR technology can be considered as mainly consisting of two aspects: identification of real-world object and display of computer-generated digital contents related the identified real-world object. The technical challenge of mobile AR is to identify the real-world object that mobile device's camera aim at. In this paper, we will present a…
Descriptors: Educational Technology, Telecommunications, Simulated Environment, Computer Simulation
Peña, Adriana; Rangel, Nora; Muñoz, Mirna; Mejia, Jezreel; Lara, Graciela – Educational Technology & Society, 2016
While a person's internal state might not be easily inferred through an automatic computer system, within a group, people express themselves through their interaction with others. The group members' interaction can be then helpful to understand, to certain extent, its members' affective behavior in any case toward the task at hand. In this…
Descriptors: Affective Behavior, Nonverbal Communication, Computer Mediated Communication, Simulated Environment
Rodriguez-Gil, Luis; García-Zubia, Javier; Orduña, Pablo; López-de-Ipiña, Diego – IEEE Transactions on Learning Technologies, 2017
Online laboratories have traditionally been split between virtual labs, with simulated components; and remote labs, with real components. The former tend to provide less realism but to be easily scalable and less expensive to maintain, while the latter are fully real but tend to require a higher maintenance effort and be more error-prone. This…
Descriptors: Educational Technology, Technology Uses in Education, Laboratories, Simulated Environment
Gunn, Therese; Jones, Lee; Bridge, Pete; Rowntree, Pam; Nissen, Lisa – Interactive Learning Environments, 2018
In recent years, simulation has increasingly underpinned the acquisition of pre-clinical skills by undergraduate medical imaging (diagnostic radiography) students. This project aimed to evaluate the impact of an innovative virtual reality (VR) learning environment on the development of technical proficiency by students. The study assessed the…
Descriptors: Computer Simulation, Medical Students, Simulated Environment, Educational Technology
Chacón, Jesús; Vargas, Hector; Farias, Gonzalo; Sanchez, José; Dormido, Sebastián – IEEE Transactions on Learning Technologies, 2015
Designing and developing web-enabled remote laboratories for pedagogical purposes is not an easy task. Often, developers (generally, educators who know the subjects they teach but lack of the technical and programming skills required to build Internet-based educational applications) end up discarding the idea of exploring these new teaching and…
Descriptors: Laboratories, Simulated Environment, Computer Simulation, Teaching Methods
Brady, Corey; Holbert, Nathan; Soylu, Firat; Novak, Michael; Wilensky, Uri – Journal of Science Education and Technology, 2015
In this article, we introduce a class of constructionist learning environments that we call "Emergent Systems Sandboxes" ("ESSs"), which have served as a centerpiece of our recent work in developing curriculum to support scalable model-based learning in classroom settings. ESSs are a carefully specified form of virtual…
Descriptors: Science Instruction, Models, Educational Technology, Simulated Environment
Huang, Hsiu-Mei; Liaw, Shu-Sheng; Lai, Chung-Min – Interactive Learning Environments, 2016
Advanced technologies have been widely applied in medical education, including human-patient simulators, immersive virtual reality Cave Automatic Virtual Environment systems, and video conferencing. Evaluating learner acceptance of such virtual reality (VR) learning environments is a critical issue for ensuring that such technologies are used to…
Descriptors: Educational Technology, Technology Uses in Education, Computer Simulation, Simulated Environment