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Teng, Chin-Hung; Chen, Jr-Yi; Chen, Zhi-Hong – Journal of Educational Computing Research, 2018
Although the learning of programming language is critical in science and technology education, it might be difficult for some students, especially novices. One possible reason might be the fact that programming language, especially for three-dimensional (3D) applications, is too complex and abstract for these students to understand. Programming…
Descriptors: Computer Simulation, Simulated Environment, Programming, Computer Science Education
Bautista-Mesa, Rafael; Molina Sánchez, Horacio; Ramírez Sobrino, Jesús Nicolás – Accounting Education, 2018
This paper describes an audit workplace simulation and investigates its effects on students' perceptions of competences, required as important in the auditing industry. Within the competence-based teaching framework, this training activity involves cooperative learning as it combines first-undergraduate and senior students within one team. First,…
Descriptors: Accounting, Audits (Verification), Undergraduate Students, Competence
Özcan, Mehmet Fatih; Özkan, Âdem; Sahin, Nurullah – Universal Journal of Educational Research, 2017
The use of Augmented Reality Technologies, which has been developed in order to enrich the environment of education and training and provide permanent learning, has been increasing day by day. In this sense, it is important to analyze the use of augmented applications in education and training environments. In this study, we have aimed to…
Descriptors: Foreign Countries, Educational Technology, Technology Uses in Education, Simulated Environment
Wu, Po-Han; Hwang, Gwo-Jen; Yang, Mei-Ling; Chen, Chih-Hung – Interactive Learning Environments, 2018
Augmented reality (AR) offers potential advantages for intensifying environmental context awareness and augmenting students' experiences in real-world environments by dynamically overlapping digital materials with a real-world environment. However, some challenges to AR learning environments have been described, such as participants' cognitive…
Descriptors: Simulated Environment, Teaching Methods, Computer Simulation, Elementary School Students
Ijaz, Kiran; Bogdanovych, Anton; Trescak, Tomas – Interactive Learning Environments, 2017
In this paper, we investigate an application of virtual reality and artificial intelligence (AI) as a technological combination that has a potential to improve the learning experience and engage with the modern generation of students. To address this need, we have created a virtual reality replica of one of humanity's first cities, the city of…
Descriptors: Educational Technology, Technology Uses in Education, History Instruction, Simulated Environment
Sirakaya, Mustafa; Cakmak, Ebru Kilic – International Journal for Research in Vocational Education and Training, 2018
This study aimed to test the impact of augmented reality (AR) use on student achievement and self-efficacy in vocational education and training. For this purpose, a marker-based AR application, called HardwareAR, was developed. HardwareAR provides information about characteristics of hardware components, ports and assembly. The research design was…
Descriptors: Simulated Environment, Educational Technology, Technology Uses in Education, Academic Achievement
Takala, Tuukka M.; Malmi, Lauri; Pugliese, Roberto; Takala, Tapio – Informatics in Education, 2016
In this paper we present our experiences of teaching an annually organized virtual reality (VR) capstone course. We review three iterations of the course, during which a total of 45 students completed the course and 16 VR applications were implemented. Our comparative analysis describes the students' evaluation of the course, the applications…
Descriptors: Curriculum, Simulated Environment, Computer Simulation, Educational Technology
Liou, Hsin-Hun; Yang, Stephen J. H.; Chen, Sherry Y.; Tarng, Wernhuar – Educational Technology & Society, 2017
Virtual reality (VR) learning environments can provide students with concepts of the simulated phenomena, but users are not allowed to interact with real elements. Conversely, augmented reality (AR) learning environments blend real-world environments so AR could enhance the effects of computer simulation and promote students' realistic experience.…
Descriptors: Educational Technology, Technology Uses in Education, Simulated Environment, Teaching Methods
Gavish, Nirit; Gutiérrez, Teresa; Webel, Sabine; Rodríguez, Jorge; Peveri, Matteo; Bockholt, Uli; Tecchia, Franco – Interactive Learning Environments, 2015
The current study evaluated the use of virtual reality (VR) and augmented reality (AR) platforms, developed within the scope of the SKILLS Integrated Project, for industrial maintenance and assembly (IMA) tasks training. VR and AR systems are now widely regarded as promising training platforms for complex and highly demanding IMA tasks. However,…
Descriptors: Simulated Environment, Technology Uses in Education, Industry, Maintenance
Slussareff, Michaela; Bohácková, Petra – Digital Education Review, 2016
This paper compares two kinds of educational treatment within location-based game approach; learning by playing a location-based game and learning by designing a location-based game. Two parallel elementary school classes were included in our study (N = 27; age 14-15). The "designers" class took part in the whole process of game design…
Descriptors: Design, Video Games, Elementary School Students, Student Participation
Pellas, Nikolaos; Boumpa, Anna – Journal of Educational Computing Research, 2016
A considerable interest in using three-dimensional multi-user virtual worlds for different educational disciplines has been widely observed. Despite the potential benefits of this technology, many questions still remain open, as far as the design of appropriate activities in well-defined instructional design frameworks and their effectiveness on…
Descriptors: Preservice Teachers, Language Teachers, Professional Continuing Education, Comparative Analysis
Chang, Rong-Chi; Chung, Liang-Yi; Huang, Yong-Ming – Interactive Learning Environments, 2016
The learning of plants has garnered considerable attention in recent years, but students often lack the motivation to learn about the process of plant growth. Also, students are not able to apply what they have learned in class in the form of observation, since plant growth takes a long time. In this study, we use augmented reality (AR) technology…
Descriptors: Plants (Botany), Teaching Methods, Student Motivation, Simulated Environment
Lahav, Orly; Schloerb, David W.; Srinivasan, Mandayam A. – Journal of Visual Impairment & Blindness, 2015
Introduction: The BlindAid, a virtual system developed for orientation and mobility (O&M) training of people who are blind or have low vision, allows interaction with different virtual components (structures and objects) via auditory and haptic feedback. This research examined if and how the BlindAid that was integrated within an O&M…
Descriptors: Visual Impairments, Visually Impaired Mobility, Simulated Environment, Qualitative Research
Adams, Deanne M.; Pilegard, Celeste; Mayer, Richard E. – Journal of Educational Computing Research, 2016
Learning physics often requires overcoming common misconceptions based on naïve interpretations of observations in the everyday world. One proposed way to help learners build appropriate physics intuitions is to expose them to computer simulations in which motion is based on Newtonian principles. In addition, playing video games that require…
Descriptors: Video Games, Teaching Methods, Technology Uses in Education, Simulated Environment
Kalansooriya, Pradeep; Marasinghe, Ashu; Bandara, K. M. D. N. – IAFOR Journal of Education, 2015
Distance learning has provided an excellent platform for students in geographically remote locations while enabling them to learn at their own pace and convenience. A number of technologies are currently being utilized to conceptualize, design, enhance and foster distance learning. Teleconferences, electronic field trips, podcasts, webinars, video…
Descriptors: Distance Education, Educational Technology, Computer Simulation, Engineering Education
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