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Zhicheng Dai; Junxia Xiong; Liang Zhao; Xiuling He – Interactive Learning Environments, 2024
Activity theory is of great importance in emphasizing the role of community and intermediary tools in the subject's internalization activities. From the perspective of activity theory, via systematically and comprehensively exploring kinds of different interactions between various elements (e.g. subject, community and tools) in classroom teaching,…
Descriptors: Engineering Education, Information Technology, Educational Theories, Classroom Communication
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T. Lee; Y. Wen; M. Y. Chan; A. B. Azam; C. K. Looi; S. Taib; C. H. Ooi; L. H. Huang; Y. Xie; Y. Cai – Interactive Learning Environments, 2024
This study investigates the use of virtual and augmented reality (VAR) in higher education on students' self-efficacy in science and engineering, and academic performance. An innovative VAR classroom is set up as an immersive and interactive learning environment at Nanyang Technological University for curriculum-based learning. This classroom is…
Descriptors: Computer Simulation, STEM Education, Universities, Physical Environment
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Álvarez-Marín, Alejandro; Velázquez-Iturbide, J. Ángel; Castillo-Vergara, Mauricio – Interactive Learning Environments, 2023
This study aims to determine if "technology optimism" and "technology innovativeness" can explain and predict the use of augmented reality in the scope of engineering education. An Augmented Reality app to analyze digital current (DC) in resistive circuits was developed was developed to enhance students' understanding of…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
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Xolani Nelson Skosana; Khumbulani Mpofu; John Trimble; Etienne A. van Wyk – Interactive Learning Environments, 2023
Higher Education Institutions are introducing Virtual-Reality (VR) development courses and divisions focussing on the development of Virtual Environments which are in high demand. Students without a programming background are not familiar with the processes of developing Virtual Assembly Training Systems (VATS), consequently, they learn through…
Descriptors: Computer Simulation, Educational Technology, Training, Technology Uses in Education
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Davy Tsz Kit Ng – Interactive Learning Environments, 2023
There is a strong need for educators to change the way they conduct aviation education to bring up future professionals in the industry. To cope with the COVID-19 challenge, creative online distance learning approaches become necessary. This article shows how an online lab approach offers social and cognitive support for engineering students to…
Descriptors: Laboratories, Electronic Learning, Aviation Education, Engineering Education
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Prit Kaur, Deepti; Mantri, Archana; Horan, Ben – Interactive Learning Environments, 2022
Augmented reality (AR) has tremendous potential as a teaching and learning tool in engineering education to enhance students' learning experience; it influences the students' spatial ability for real-time visualization. Furthermore, this helps to attain better concept comprehension pertaining to improved understanding of the topics. The present…
Descriptors: Computer Simulation, Interaction, Concept Formation, Engineering Education
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Nicholas O. Awuor; Cathy Weng; Isaac M. Matere; Jeng-Hu Chen; Dani Puspitasari; Khanh Nguyen Phuong Tran – Interactive Learning Environments, 2024
Engineering drawing is valuable in capturing geometric features, conveying engineering ideas, and creating a blueprint of the intended product. Engineering students usually perform orthographic projections, imagining a 3D situation and sketching its 2D representation. That requires imagination and mental visualization, determined by the learner's…
Descriptors: Foreign Countries, Vocational High Schools, High School Students, Engineering Education
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Pramod Abichandani; Deepan Lobo; Branislav Dimitrijevic; Ashish Borgaonkar; Jaskirat Sodhi; Smit Kabrawala; Daniel Brateris; Moshe Kam – Interactive Learning Environments, 2024
This paper presents a competition-based active learning approach that prepares undergraduate students for careers in the drone industry. The competition-based learning (CBL) approach focuses on preparing students for three key drone industry requirements (1) drone assembly, testing, and validation using commercial off-the-shelf (COTS) parts, (2)…
Descriptors: Active Learning, Competition, Undergraduate Students, Aviation Technology
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Liu, Yu-Hsin; Yu, Fu-Yun – Interactive Learning Environments, 2019
An online learning system in support of active learning and formative evaluation via a teaching-by-questioning strategy in classrooms was developed. Following a design-based research paradigm, the theoretical base, design principles, and associated spaces for the system were explicated. Its learning potential in terms of perceived usefulness, ease…
Descriptors: Active Learning, Formative Evaluation, Teaching Methods, Questioning Techniques
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Khalaf Alharbi – Interactive Learning Environments, 2024
This study focuses on developing specific vocabulary learning strategies to assist the receptive knowledge of English for Specific Purposes (ESP). It aims to provide a practical framework for teaching technical vocabulary. The study introduced the Multimedia Strategic Vocabulary Learning (MSVL) model and investigated its effects on teaching…
Descriptors: Vocabulary Development, English for Special Purposes, COVID-19, Pandemics
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Arenas-Gaitán, Jorge; Rondán-Cataluña, Francisco Javier; Ramírez-Correa, Patricio E. – Interactive Learning Environments, 2018
There is not a unique attitude towards the implementation of digital technology in educational sceneries. This paper aims to validate an adaptation of the DeLone and McLean information systems success model in the context of a learning management system. Furthermore, this study means to prove (1) the necessity of segmenting students in order to…
Descriptors: Integrated Learning Systems, Information Systems, Foreign Countries, Student Attitudes
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Jou, Min; Lin, Yen-Ting; Tsai, Hsieh-Chih – Interactive Learning Environments, 2016
Synthesis of Materials is regarded as an important core subject in engineering education. However, many concepts and knowledge in the material synthesis can be rather abstract and difficult to understand by the student learners. Experiments are limited in scope due to lack of equipment, control of toxic materials, and risks of chemical reactions,…
Descriptors: Engineering Education, Computer Oriented Programs, Educational Technology, Technology Uses in Education
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Liu, Chenchen; Sands-Meyer, Sarah; Audran, Jacques – Interactive Learning Environments, 2019
Flipped classes are well-known for reversing the typical in-class lecture and out-of-class homework structure by instructing students to learn by themselves from on-line learning materials and inviting them to ask questions based on their individual difficulties in class. Many attempts at integrating this teaching method into English as a foreign…
Descriptors: Instructional Effectiveness, English (Second Language), Second Language Learning, Second Language Instruction
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Park, Sung Youl; Kim, Soo-Wook; Cha, Seung-Bong; Nam, Min-Woo – Interactive Learning Environments, 2014
This study investigated the effectiveness of e-learning by comparing the learning outcomes in conventional face-to-face lectures and e-learning methods. Two video-based e-learning contents were developed based on the rapid prototyping model and loaded onto the learning management system (LMS), which was available at http://www.greenehrd.com.…
Descriptors: Electronic Learning, Video Technology, Lecture Method, Conventional Instruction
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Jou, Min; Liu, Chi-Chia – Interactive Learning Environments, 2012
This article describes an implementation of interactive virtual environments that have been designed for supporting the education of technical skills in material processing technology. The developed web-based systems provide the capability to train students in the technical skills of material processing technology without the need to work on…
Descriptors: Virtual Classrooms, Semantics, Internet, Web Based Instruction