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Showing 1 to 15 of 23 results Save | Export
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Nirit Yuviler-Gavish; Omer Muati; Bar Hodya Gabbay – Interactive Learning Environments, 2024
The fourth industrial revolution and the rise of collaborative robots (cobots) in industrial assembly lines are changing the traditional role of human operators in assembly tasks from following a sequence of operations to working together with a cobot and being able to intervene at different stages of the assembly process. Hence, it is important…
Descriptors: Cognitive Processes, Cooperation, Robotics, Manufacturing
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Lin Zhong – Interactive Learning Environments, 2024
Being efficient learners is important in the modern workforce, but improved performance and cognitive load do not imply that students are efficient learners. This study investigated the effectiveness of a personalized role-playing game in students' learning efficiency (LE) and mental efficiency. Results showed that students in the personalized…
Descriptors: Role Playing, Game Based Learning, Program Effectiveness, Learning Processes
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Kai-Yi Chin; Ching-Sheng Wang – Interactive Learning Environments, 2024
This study developed a VR-based mobile learning system to simulate the natural environment of a geopark for university students to learn geological knowledge. This learning method used a Google cardboard equipped with smartphones, where students can watch stereoscopic scenes and experience virtual environments as if visiting the geopark. In order…
Descriptors: Foreign Countries, Computer Simulation, Handheld Devices, Geology
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Dongyu Yu; Xing Yao; Kaidi Yu; Dandan Du; Jinyi Zhi; Chunhui Jing – Interactive Learning Environments, 2024
The objective of this study was to determine the differential effects of the presentation position of the augmented reality--head worn display (AR-HWD) interface and the audiovisual-dominant multimodal learning material on learning performance and cognitive load across different learning tasks in training for high-speed train driving. We selected…
Descriptors: Artificial Intelligence, Computer Simulation, Computer Peripherals, Computer Interfaces
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Lin, Peng-Chun; Hou, Huei-Tse; Chang, Kuo-En – Interactive Learning Environments, 2022
The development of students' practical operation and their collaborative problem solving (CPS) ability are emphasized in higher education nowadays. Providing students a simulation learning tool and an social networking environment can improve the students' learning in CPS activities. This can be a potential learning environment for the students…
Descriptors: Cooperative Learning, Problem Solving, Educational Environment, Scaffolding (Teaching Technique)
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Jon-Chao Hong; Jhen-Ni Ye; Jian-Hong Ye; Ling-Wen Kung – Interactive Learning Environments, 2024
Attentional control theory indicates that concentration is considered an important variable that contributes to learning. There are some devices for players to practice their concentration, but there are few virtual reality (VR) designs which can increase the level of difficulty for students to discipline their mental concentration with…
Descriptors: Attention Control, Predictor Variables, Cognitive Processes, Difficulty Level
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Wei-Sheng Wang; Margus Pedaste; Chia-Ju Lin; Hsin-Yu Lee; Yueh-Min Huang; Ting-Ting Wu – Interactive Learning Environments, 2024
Virtual reality (VR) provides a unique platform for interactive learning experiences, enhancing learning, particularly in hands-on courses. However, the visual load of VR and the lack of guidance and interaction from physical teachers or peers can pose challenges for learners in self-regulated learning (SRL) and learning motivation. This study…
Descriptors: Feedback (Response), Self Management, Student Motivation, Computer Simulation
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Bian Wu; Xinyu Chang; Yiling Hu – Interactive Learning Environments, 2024
Recent years have seen an increase number of studies on spherical video-based virtual reality (SVVR) in education.However, the impact of SVVR on learning performance remains unclear and cannot be simply generalized from traditional VR-based education. The purpose of this study was to examine the overall effects of SVVR on cognitive and…
Descriptors: Video Technology, Computer Simulation, Cognitive Processes, Outcomes of Education
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Ilana Dubovi – Interactive Learning Environments, 2023
As virtual reality (VR) technologies have been increasingly adopted in the educational field, careful consideration and evaluation of instructional modes to support learning with VR are needed. This study focuses on evaluation of two instructional modes: direct interaction and manipulation of the VR learning environment; and the vicarious approach…
Descriptors: Computer Simulation, Simulated Environment, Educational Environment, Interaction
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Zhong, Baichang; Zheng, Jijun; Zhan, Zehui – Interactive Learning Environments, 2023
This study examined the effects of virtual and physical robots (VPR) using in different learning stages (simple session/complex session) in a robotics programming course. A quasi-experimental design was implemented with 84 junior high school students from two classes. One class with 44 students used combination of VPR strategy for learning,…
Descriptors: Robotics, Programming, Junior High School Students, Educational Technology
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Hou, Huei-Tse; Fang, Ying-Sang; Tang, Joni Tzuchen – Interactive Learning Environments, 2023
Logical thinking and reasoning of geometric space are among the key abilities of science and technology education. This research developed a framework of an alternate reality-based board game incorporating augmented reality (AR) exploration with multi-dimensional scaffolding, including "cognitive scaffolding," "metacognitive…
Descriptors: Educational Games, Computer Simulation, Scaffolding (Teaching Technique), Spatial Ability
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Wu, Wei-Long; Hsu, Yen; Yang, Qi-Fan; Chen, Jiang-Jie; Jong, Morris Siu-Yung – Interactive Learning Environments, 2023
In recent years, several researchers have introduced spherical video-based virtual reality (SVVR) into classroom teaching to help students learn different subjects. In SVVR learning, learners are typically presented with great autonomy over their learning process. Therefore, learners should engage in self-regulated strategy (SRS) learning in order…
Descriptors: Learning Strategies, Video Technology, Computer Simulation, Academic Achievement
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Xiao-Fan Lin; Gwo-Jen Hwang; Jing Wang; Yue Zhou; Wenyi Li; Jiachun Liu; Zhong-Mei Liang – Interactive Learning Environments, 2023
Augmented reality (AR) can represent a contextualised scientific inquiry environment in which students may explore the real world and develop science process skills via interacting with rich information from virtual systems. However, it remains a challenge for most students to complete scientific inquiry tasks without proper support. Research…
Descriptors: Computer Simulation, Active Learning, Inquiry, Behavior Patterns
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Lin, Hota Chia-Sheng; Yu, Shih-Jou; Sun, Jerry Chih-Yuan; Jong, Morris Siu Yung – Interactive Learning Environments, 2021
This study aimed to investigate differences in students' situational interest (exploration intention, instant enjoyment, novelty, attention demand, challenge, and total interest) and cognitive load (intrinsic, extraneous, and germane) of VR-guide and map-guide groups in a university library. The VR-guide group used wearable spherical video-based…
Descriptors: College Students, Library Instruction, Student Interests, Cognitive Processes
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Obeid, Samah; Demirkan, Halime – Interactive Learning Environments, 2023
With the recent advancements in digital technologies, the design studios are transformed to virtual environments that offer both to design students and instructors a broader perspective in understanding the design process. As an integral part of design process, the supporting virtual tools enhance creativity in basic design studios. This study…
Descriptors: Creativity, Design, Teaching Methods, Computer Simulation
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