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Chin, Kai-Yi; Wang, Ching-Sheng; Chen, Yen-Lin – Interactive Learning Environments, 2019
Although Augmented Reality (AR) technology has already been adopted into mobile learning environments, additional effort must be put towards providing strong evidence that AR-based mobile systems are excellent educational tools that make a positive impact in or outside of the classroom. Our study utilized a similar AR-based mobile learning system…
Descriptors: Computer Simulation, Simulated Environment, Telecommunications, Educational Technology
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Bhagat, Kaushal Kumar; Liou, Wei-Kai; Michael Spector, J.; Chang, Chun-Yen – Interactive Learning Environments, 2019
Augmented reality (AR) is growing in popularity in teaching and learning due in part to powerful new technologies. What has yet to be well established is when and with which learners and learning tasks AR is an effective approach. Therefore, the aim of this study was to examine the effectiveness of using AR-based formative assessment for improving…
Descriptors: Formative Evaluation, Information Technology, Feedback (Response), Academic Achievement
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Chen, Yu-Hsuan; Wang, Chang-Hwa – Interactive Learning Environments, 2018
Although research has indicated that augmented reality (AR)-facilitated instruction improves learning performance, further investigation of the usefulness of AR from a psychological perspective has been recommended. Researchers consider presence a major psychological effect when users are immersed in virtual reality environments. However, most…
Descriptors: Simulated Environment, Educational Technology, Technology Uses in Education, Psychological Patterns
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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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Wang, Sheng-Yuan; Chang, Shao-Chen; Hwang, Gwo-Jen; Chen, Pei-Ying – Interactive Learning Environments, 2018
In traditional teacher-centered mathematics instruction, students might show low learning motivation owing to the lack of applied contexts. Game-based learning has been recognized as a potential approach to addressing this issue; however, without proper alignment between the gaming and math-applied contexts, the benefits of game-based learning…
Descriptors: Mathematics Instruction, Role Playing, Teaching Methods, Educational Games
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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
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Shih, Ju-Ling; Jheng, Shun-Cian; Tseng, Jia-Jiun – Interactive Learning Environments, 2015
This research attempted to create the historical context of Southern Taiwan in the late nineteenth century based on the martial art novel "Xiao-Mao" (Pussy) by designing a role-play digital game "Taiwan Epic Game" about the war time; in which, Taiwanese history, geography, and culture are presented in an innovative way with…
Descriptors: Foreign Countries, Simulated Environment, Educational Games, History Instruction
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Wu, Pai-Hsing; Wu, Hsin-Kai; Kuo, Che-Yu; Hsu, Ying-Shao – Interactive Learning Environments, 2015
Computer-based learning tools include design features to enhance learning but learners may not always perceive the existence of these features and use them in desirable ways. There might be a gap between what the tool features are designed to offer (intended affordance) and what they are actually used (actual affordance). This study thus aims at…
Descriptors: Science Instruction, Computer Uses in Education, Educational Technology, High School Students
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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
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Lin, Hao-Chiang Koong; Chen, Mei-Chi; Chang, Chih-Kai – Interactive Learning Environments, 2015
This study integrates augmented reality (AR) technology into teaching activities to design a learning system that assists junior high-school students in learning solid geometry. The following issues are addressed: (1) the relationship between achievements in mathematics and performance in spatial perception; (2) whether system-assisted learning…
Descriptors: Geometry, Secondary School Mathematics, Instructional Effectiveness, Mathematics Instruction
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Hwang, Gwo-Jen; Wu, Po-Han; Chen, Chi-Chang; Tu, Nien-Ting – Interactive Learning Environments, 2016
Augmented reality (AR) has been recognized as a potential technology to help students link what they are observing in the real world to their prior knowledge. One of the most challenging issues of AR-based learning is the provision of effective strategy to help students focus on what they need to observe in the field. In this study, a competitive…
Descriptors: Foreign Countries, Simulated Environment, Educational Technology, Computer Games