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Samuel B. Gavitte; Milo D. Koretsky; Jeffrey A. Nason – Journal of Computing in Higher Education, 2025
Laboratory activities are central to undergraduate student learning in science and engineering. With advancements in computer technology, many laboratory activities have shifted from providing students experiments in a physical mode to providing them in a virtual mode. Further, physical and virtual modes can be combined to address a single topic,…
Descriptors: Affordances, Computer Simulation, Science Laboratories, Engineering Education
Ting-Ting Wu; Edi Sarwono; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Virtual laboratories are used to supplement or even replace physical laboratories in engineering education. Although these virtual laboratories allow students to learn foundational experimental skills, they do not provide the learners with the chance to develop higher-order thinking skills (HOTS). Computational thinking (CT) is an…
Descriptors: Computation, Thinking Skills, Computer Simulation, Laboratories
Simone Porcu; Alessandro Floris; Luigi Atzori – IEEE Transactions on Learning Technologies, 2025
In this article, we preliminarily discuss the limitations of current video conferencing platforms in online synchronous learning. Research has shown that while the involved technologies are appropriate for collaborative video calls, they often fail to replicate the rich nature of face-to-face interactions among students and between students and…
Descriptors: Computer Simulation, Electronic Learning, Synchronous Communication, Videoconferencing
Mohamad Iyad Al-Khiami; Martin Jaeger; Sayed Mohamad Soleimani; Abdulhadi Kazem – Journal of Computer Assisted Learning, 2024
Background Study: The research discusses the need for a paradigm shift in engineering education current practices to accommodate the digital native students. The paper emphasizes the importance of integrating disruptive technologies, namely Virtual Reality (VR) through Head Mounted Displays VR (HMD VR) and Desktop Based VR (DB VR) and comparing it…
Descriptors: Undergraduate Students, Engineering Education, Computer Simulation, Student Motivation
Linus Geewe; Mirela Vinerean; Ala Sarah Alaqra; John Sören Pettersson – International Journal for Technology in Mathematics Education, 2024
First-year engineering students show difficulties in connecting basic vector algebra with manipulations using the graphical representation. Experiencing vectors in real applications can improve the process of learning vectors. Thus, we introduce a unique approach for using digital technologies, namely augmented reality. We utilized a video…
Descriptors: College Freshmen, Engineering Education, Computer Simulation, Algebra
Radhika Kulkarni; Rajat Harne – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: The study seeks to utilize Augmented Reality (AR) in creating virtual laboratories for engineering education, focusing on enhancing teaching methodologies to facilitate student understanding of intricate and theoretical engineering principles while also assessing engineering students' acceptance of such laboratories. Background: AR, a…
Descriptors: Computer Simulation, Laboratory Experiments, Engineering Education, Educational Technology
Michael P. Howard; Symone L. M. Alexander – Chemical Engineering Education, 2024
Chemical engineers must learn to connect concepts across vastly different scales, spanning from molecular structures to industrial processes. Here, we explore the use of a virtual-reality simulation with a companion video of an experiment to help undergraduate students connect nanoscale fundamentals to macroscale engineering observations.
Descriptors: Chemical Engineering, Computer Simulation, Video Technology, Science Experiments
Hisao Fukumoto; Tomoki Kamio; Toshihiro Matsuo; Takayuki Nitta; Hideki Shimada; Masashi Ohchi; Hideaki Itoh – IEEE Transactions on Education, 2025
Contribution: A remote laboratory system for induction motors was developed in this study. By creating an original simulated induction motor, the structure of the motor can be observed, and the current and magnetic flux can be measured safely. Background: Electrical machinery has little appeal to young engineers. Such machinery deals with…
Descriptors: Engines, Laboratories, Distance Education, Computer Simulation
Ernesto Armando Pacheco-Velázquez; Virginia Rodés-Paragarino; Sergio Augusto Ramírez-Echeverri – Smart Learning Environments, 2025
The article discusses the efficacy of game-based learning (GBL) in logistics education, specifically through an empirical evaluation of the "Logistics Simulator LOST." Recognizing the complexities of evaluating serious games--interactive serious games platforms designed for educational, purpose--the article emphasizes the need for games…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Game Based Learning
Serkan Solmaz; Liesbeth Kester; Tom Van Gerven – Education and Information Technologies, 2024
Virtual reality has become a significant asset to diversify the existing toolkit supporting engineering education and training. The cognitive and behavioral advantages of virtual reality (VR) can help lecturers reduce entry barriers to concepts that students struggle with. Computational fluid dynamics (CFD) simulations are imperative tools…
Descriptors: Computer Simulation, Educational Environment, Engineering Education, Technology Uses in Education
Srecko Stamenkovic; Nenad Jovanovic – IEEE Transactions on Learning Technologies, 2024
Although we are witnessing the accelerated development of computer science, and the opening of new fields of study, compiler construction is still a very important field that is taught at most world universities. Because of a large number of algorithms and complex theoretical constructions, these topics represent a difficult and complex domain for…
Descriptors: Computer Science, Computer Software, Educational Technology, Computer Simulation
Musa Ndiaye; Chilala K. Bowa; Wezi N. Nyimbili; Kangwa A. Nkonde; Richard Onyancha; Mabvuto Mwanza; Musonda E. Kabaso; John Siame – European Journal of Engineering Education, 2024
COVID-19 has caused major disruptions in the way engineering education is conducted all over the world. The impact has been greater in developing countries that still lack the necessary tools for pandemic-based training. In this work, we carry out a survey on three public universities based in Zambia. The survey investigates the impact of COVID-19…
Descriptors: COVID-19, Pandemics, Engineering Education, State Universities
Iqbal, Arif; Singh, Girish Kumar – Journal on School Educational Technology, 2022
The educational system is presently undergoing a substantial change to improve the teaching-learning process of all engineering domains. This includes the utilization of user-friendly simulation tools as part of the laboratory for an enhanced practical experience on a virtual platform. Owing to the advantages of virtual experimentation,…
Descriptors: Laboratories, Computer Simulation, Engineering Education, Undergraduate Study
Elena Sereiviene; Xiaotong Ding; Rundong Jiang; Juan Zheng; Andriy Kashyrskyy; Dylan Bulseco; Charles Xie – Journal of College Science Teaching, 2024
First-year engineering students are often introduced to the engineering design process through project-based learning situated in a concrete design context. Design contexts like mechanical engineering are commonly used, but students and teachers may need more options. In this article, we show how sustainable building design can serve as an…
Descriptors: College Freshmen, Engineering Education, Engineering Technology, Computer Assisted Design
Ting-Ting Wu; Edi Sarwono; Yueh-Min Huang – Social Psychology of Education: An International Journal, 2025
Laboratories play a central role in engineering education. Current technology enables virtual experiences that challenge the traditional concept of teaching laboratories for undergraduate engineering students. Integrating technology, such as virtual laboratories, allows students to learn foundational experimental skills; however, it lacks…
Descriptors: Engineering Education, Laboratories, Computer Simulation, Undergraduate Students