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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
Motejlek, Jiri; Alpay, Esat – European Journal of Engineering Education, 2023
The use of VR in engineering education provides a means for contextualising learning through authentic and engaging scenarios, e.g. the touring and operation of a chemical plant. This paper presents the design of an immersive VR simulation of an existing pilot plant in the School and its evaluation through a randomised non-inferiority trial to…
Descriptors: Retention (Psychology), Computer Simulation, Engineering Education, Simulation
Rona Riantini; Mochamad Hariadi; Supeno Mardi Susiki Nugroho; Diah Puspito Wulandari; Wahyu Suci Rohqani – IEEE Transactions on Education, 2025
Contribution: This article proposes the systematic integration of embedded systems into training hardware to bridge the gap in structured troubleshooting education. Traditional methods often rely on manual explanations, virtual simulations, or on-the-job training, which lack structured learning experiences. The proof-of-work module, developed…
Descriptors: Engineering Education, Troubleshooting, Engineering, Experiential Learning
Cumber, Peter – International Journal of Mathematical Education in Science and Technology, 2023
The dynamics of a simple pendulum are often presented to undergraduate engineering students in introductory courses in dynamics. It is usually the first dynamic system considered by students that is modelled by a differential equation. This paper presents the standard material given to students. It is fair to say that students are accepting this…
Descriptors: Motion, Scientific Concepts, Undergraduate Students, Engineering Education
Joseph Alan Lyon – ProQuest LLC, 2022
The concept of computational thinking (CT) has become more prevalent across the engineering education research and teaching landscape. Yet much of the research to date has been more definitional and has not offered many ways to convert CT theory to practice. One prominent set of tools used across engineering disciplines is modeling and simulation,…
Descriptors: Thinking Skills, Computation, Models, Simulation
García-Segura, Tatiana; Montalbán-Domingo, Laura; Sanz-Benlloch, Amalia; Domingo, Alberto; Catalá, Joaquín; Pellicer, Eugenio – Journal of Civil Engineering Education, 2023
This paper describes a teaching innovation project that adopts the project-based learning approach to introduce civil engineering students to their future professional roles and tasks throughout the infrastructure life cycle. The successful development of the whole process and completion of the infrastructure in the best technical and sustainable…
Descriptors: Civil Engineering, Engineering Education, Active Learning, Student Projects
Dickerson, Samuel J.; Clark, Renee M. – IEEE Transactions on Education, 2022
Contribution: Reflection is a critical skill because it involves thinking about and reviewing one's work. It contributes to self-regulatory, metacognitive behaviors when practiced regularly. In this research, a unique approach to promote reflection via SPICE simulation after quizzes in a microelectronics course was studied. Background: This study…
Descriptors: Engineering Education, Reflection, Tests, Student Attitudes
Jiang, Yang; Brockway, Debra; Moon, Jung Aa – Journal of Research in Science Teaching, 2023
The interrelationship of science and engineering and the recent inclusion of engineering in K-12 science standards have promoted the incorporation of engineering design in science classrooms. However, empirical studies on the impacts of engineering design on science learning show mixed findings and indicate that factors such as the complexity of…
Descriptors: Engineering Education, Science Education, Simulation, Learning Activities
Avilés-Cruz Carlos; Zúñiga-López Arturo; Benavides-Alvarez Cesar; Ferreyra-Ramírez Andrés; Aguilar-Sánchez Miriam – Discover Education, 2025
Distance learning has become a necessity and a common practice, using electronic devices and the Internet to facilitate online classes and exams. One course in undergraduate electrical engineering is the Digital Signal Processing (DSP) course, which requires exposure to theoretical concepts as well as simulations. In this paper, we propose a…
Descriptors: Engineering, Undergraduate Students, Teacher Improvement, Engineering Education
Klaasjan Visscher – European Journal of Engineering Education, 2024
This paper presents and evaluates a role-play simulation called 'Theatrical Technology Assessment', in which students learn about complex stakeholder dynamics around emerging technologies. This role-play combines insights from Constructive Technology Assessment, improvisational theatre and educational role-play designs. It was implemented in an…
Descriptors: Stakeholders, Technological Advancement, Role Playing, Simulation
Cipparrone, Flavio A. M.; Consonni, Denise – IEEE Transactions on Education, 2022
Contribution: Two general rules for calculating, in the time domain, step discontinuities of voltages and currents in electric circuits, combining physical principles and basic mathematical treatment. The two general rules, resulting from a formal method of analysis, provide a straightforward way to update the states of a circuit, immediately…
Descriptors: Computation, Electronic Equipment, Time, Simulation
English, Niall J. – Chemical Engineering Education, 2022
Molecular-, fluid- and field-dynamics simulation are becoming more mainstream tools for practicing process engineers; here, the academic community needs to pay close attention to "upskilling" demands from industry, where remote working/training emphasizes the need for sophisticated computational-engineering design tools with molecular…
Descriptors: Engineering Education, Skill Development, Computation, Design
Pallavi Singh – ProQuest LLC, 2024
As the engineering education system continuously evolves to meet the demands of modern industry and society, there is a need for a methodology that would manage and resolve the complexities inherent in engineering educational systems. Model-based Systems Engineering (MBSE) is a structured approach to system design that utilizes models across all…
Descriptors: Engineering Education, Models, Learning Analytics, Higher Education
Al-Olimat, Khalid S. – IEEE Transactions on Education, 2022
Contribution: Project-based learning is a widely used learning approach that has proven itself effective in engineering education. This article describes a generalized model to teach undergraduate students the concepts of dc electric motors using project-based learning through a complete module that consists of modeling and simulation, and…
Descriptors: Engineering Education, Active Learning, Student Projects, Models
Bale, Shivkumar; Singh, Ramesh – Interactive Learning Environments, 2023
This paper introduces a novel virtual method to conduct continuous distillation experiment in an undergraduate unit operation laboratory with the help of SPM 700 Distillation Column, one of the modules available in Simtronics, a commercial process operation simulator. Simtronics simulator is a powerful tool to teach process industry skills and it…
Descriptors: Engineering Education, Teaching Methods, Undergraduate Students, Laboratory Experiments