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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
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F. Lozano-Galant; R. Porras; B. Mobaraki; F. Calderón; J. Gonzalez-Arteaga; J. A. Lozano-Galant – Journal of Civil Engineering Education, 2024
Traditionally, civil engineering infrastructures have been represented through two-dimensional (2D) drawings, which can lead to interpretation errors and jeopardize engineers' understanding of complex projects. However, with the development of building information modeling (BIM) methodology, civil engineering projects can now be virtually modeled…
Descriptors: Civil Engineering, Physical Environment, Simulated Environment, Synthesis
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Josef Kundrát; Karel Recka; Martina Litschmannová; Adéla Vrtková; František Baumgartner; Tereza Benešová; Karel Paulík; Lenka Skanderová; Tomáš Fabián; Helena Beranová; Dominika Ullmannová – Education and Information Technologies, 2024
We have developed a new interactive instrument that uses psychological distance (represented by visual distance) together with the metaphors of size and temperature to assess liking and influence among primary school students. To test its concurrent validity, we compare its results with an established sociometric instrument. Furthermore, we…
Descriptors: Foreign Countries, Elementary School Students, Measurement Equipment, Figurative Language
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Mikko Hyttinen; Jarkko Suhonen – International Journal of Technology in Education and Science, 2023
This case study outlines the development and utilization of a Mobile Augmented Reality (MAR) application to teach an asynchronous online lesson on e-commerce. The MAR technology was leveraged primarily to enhance the presentation of online learning materials, add interactivity to the learning process, and enable students to access the lesson from…
Descriptors: Electronic Learning, Asynchronous Communication, Physical Environment, Simulated Environment
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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
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Haas, Ben; Kreis, Yves; Lavicza, Zsolt – International Journal for Technology in Mathematics Education, 2021
This paper reports on a case study of two elementary school students with mathematical learning disabilities (MLD) (ages 10 and 11) using augmented reality (AR), digital and physical modelling in mathematics class. MLD students worked on modelling geometric shapes (cubes, cuboids, squared pyramids, and octahedrons) and forms (polygons) by…
Descriptors: Foreign Countries, Computer Simulation, Simulated Environment, Elementary School Students
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Karmakar, Subrata – IEEE Transactions on Education, 2017
Online monitoring of high-voltage (HV) equipment is a vital tool for early detection of insulation failure. Most insulation failures are caused by partial discharges (PDs) inside the HV equipment. Because of the very high cost of establishing HV equipment facility and the limitations of electromagnetic interference-screened laboratories, only a…
Descriptors: Equipment, Laboratories, Experiential Learning, Industry
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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
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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
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Arantes do Amaral, João Alberto; Hess, Aurélio – International Journal of Instruction, 2018
In this article, we discuss the ripple effects of the WEBSIM FISHBANKS Simulation Laboratory held at Federal University of Sao Paulo (UNIFESP) in 2014, held as a result of a partnership between the Sloan School of Management of the Massachusetts Institute of Technology, the UNIFESP, and the Brazilian Chapter of the System Dynamics Society of…
Descriptors: Foreign Countries, Computer Simulation, Simulated Environment, Laboratories
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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
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Barata, Pebertli Nils Alho; Filho, Manoel Ribeiro; Nunes, Marcus V. Alves – IEEE Transactions on Education, 2015
Within the field of electric power systems, the study of electrical equipment can be frustrating and demotivating because of the lack of a clear vision of how this equipment functions and operates in a real environment. The use of virtual reality can provide a more concrete representation for students, who rarely have the opportunity to visit a…
Descriptors: Energy, Simulated Environment, Educational Technology, Technology Uses in Education
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Corbi, Alberto; Burgos, Daniel – Electronic Journal of e-Learning, 2017
This paper presents how virtual containers enhance the implementation of STEAM (science, technology, engineering, arts, and math) subjects as Open Educational Resources (OER). The publication initially summarizes the limitations of delivering open rich learning contents and corresponding assignments to students in college level STEAM areas. The…
Descriptors: STEM Education, Art Education, Resource Units, Computer Uses in Education
Federley, Maija; Sorsa, Timo; Paavilainen, Janne; Boissonnier, Kimo; Seisto, Anu – International Association for Development of the Information Society, 2014
This position paper presents the first results of an on-going project, in which we explore rapid prototyping method to efficiently produce digital learning solutions that are commercially viable. In this first phase, rapid game prototyping and an iterative approach was tested as a quick and efficient way to create learning games and to evaluate…
Descriptors: Models, Telecommunications, Educational Games, Simulated Environment
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Burgos, Daniel; Corbí, Alberto – Distance Education, 2018
Transgenic learning is a disruptive approach in education. It encourages modification of moving parts of the educational chain. This article provides a view of transgenic learning focused on the delivery of enriched learning contents in STEAM areas. It discusses the mutagenic role that the virtual containers may play in current distance education.…
Descriptors: Foreign Countries, STEM Education, Art Education, Resource Units
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