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Marinelli, Melissa; Male, Sally A.; Valentine, Andrew; Guzzomi, Andrew; van der Veen, Tom; Hassan, Ghulam Mubashar – European Journal of Engineering Education, 2023
Access to interactive, simulated work environments through virtual reality (VR) has potential in teaching safety in design (SiD) to engineering students with reduced risk, cost and inconvenience. However, there is limited understanding of what students learn from immersive VR interventions, or the outcomes from specific learning activities. This…
Descriptors: Computer Simulation, Safety, Design, Engineering Education
May, Dominik; Morkos, Beshoy; Jackson, Andrew; Hunsu, Nathaniel J.; Ingalls, Amy; Beyette, Fred – European Journal of Engineering Education, 2023
The COVID-19 pandemic forced universities to suspend face-to-face instruction, prompting a rapid transition to online education. As many lab courses transitioned online, this provided a rare window of opportunity to learn about the challenges and affordances that the online lab experiences created for students and instructors. We present results…
Descriptors: Engineering Education, Laboratory Experiments, Teaching Methods, Comparative Analysis
Coleman, Philip; Hosein, Anesa – European Journal of Engineering Education, 2023
Laboratory tasks often focus on mechanical procedures leaving limited time and opportunities for students to build conceptual knowledge. We investigate to what extent introducing simulation tasks to preparation work can enable students to build their conceptual knowledge. We surveyed two cohorts of students taking an electronics module. Laboratory…
Descriptors: Learner Engagement, Engineering Education, Laboratory Experiments, Computer Simulation
Nikolic, Sasha; Ros, Montserrat; Jovanovic, Kosta; Stanisavljevic, Zarko – European Journal of Engineering Education, 2021
The laboratory is an integral component of engineering education, resulting in a multitude of studies. Generally, the research focus is on the laboratory innovation, rather than learning itself. It is observed that empirical evidence is strongly built around student perceptions of their learning or experience via survey instruments; and in some…
Descriptors: Engineering Education, Distance Education, Teaching Methods, Student Attitudes
Hamzeh, Farook; Theokaris, Christina; Rouhana, Carel; Abbas, Yara – European Journal of Engineering Education, 2017
While many construction companies claim substantial productivity and profit gains when applying lean construction principles, it remains a challenge to teach these principles in a classroom. Lean construction emphasises collaborative processes and integrated delivery practices. Consequently, new teaching methods that nurture such values should…
Descriptors: Classroom Techniques, Teaching Methods, Educational Games, Civil Engineering
Rossiter, J. A.; Pasik-Duncan, B.; Dormido, Sebastian; Vlacic, Ljubo; Jones, Bryn; Murray, Richard – European Journal of Engineering Education, 2018
This paper gives a focussed summary of good practice taken primarily from engineers who are responsible for teaching topics related to systems and control. This engineering specialisation allows the paper to give some degree of focus in the discussions around laboratories, software and assessment, although naturally many of the conclusions are…
Descriptors: Engineering Education, Specialization, Computer Software, Teaching Methods
Suwal, Sunil; Singh, Vishal – European Journal of Engineering Education, 2018
Building Information Modelling (BIM) tools and processes are increasingly adopted and implemented in the construction industry. Consequently, BIM education is considered increasingly important in Architecture, Engineering and Construction (AEC) education. While most of the research and literature on BIM education in engineering studies has focused…
Descriptors: Construction (Process), Construction Management, Student Evaluation, Student Attitudes
Pozzi, Rossella; Noè, Carlo; Rossi, Tommaso – European Journal of Engineering Education, 2015
According to the literature, in recent years, developing experiential learning has fulfilled the requirement of a deep understanding of lean philosophy by engineering students, demonstrating the advantages and disadvantages of some of the key principles of lean manufacturing. On the other hand, the literature evidences how some kinds of game-based…
Descriptors: Experiential Learning, Engineering Education, Manufacturing, Engineering Technology
Suvannatsiri, Ratchasak; Santichaianant, Kitidech; Murphy, Elizabeth – European Journal of Engineering Education, 2015
This paper reports on a project in which students designed, constructed and tested a model of an existing early warning system with simulation of debris flow in a context of a landslide. Students also assessed rural community members' knowledge of this system and subsequently taught them to estimate the time needed for evacuation of the community…
Descriptors: Undergraduate Students, Engineering Education, Student Improvement, Emergency Programs
Hockicko, Peter; Krišták, Luboš; Nemec, Miroslav – European Journal of Engineering Education, 2015
Video analysis, using the program Tracker (Open Source Physics), in the educational process introduces a new creative method of teaching physics and makes natural sciences more interesting for students. This way of exploring the laws of nature can amaze students because this illustrative and interactive educational software inspires them to think…
Descriptors: Video Technology, Teaching Methods, Science Instruction, Physics
Machet, Tania; Lowe, David; Gutl, Christian – European Journal of Engineering Education, 2012
This paper explores the hypothesis that embedding a laboratory activity into a virtual environment can provide a richer experimental context and hence improve the understanding of the relationship between a theoretical model and the real world, particularly in terms of the model's strengths and weaknesses. While an identified learning objective of…
Descriptors: Laboratory Experiments, Teaching Methods, Models, Theory Practice Relationship
Mayer, Igor; Warmelink, Harald; Bekebrede, Geertje – European Journal of Engineering Education, 2013
The authors define the requirements and a conceptual model for comparative evaluation research of simulation games and serious games (SGs) in a learning context. A first operationalisation of the model was used to comparatively evaluate a suite of 14 SGs on varying topics played between 2004 and 2009 in 13 institutes of higher education in the…
Descriptors: Higher Education, Educational Games, Educational Technology, Technology Uses in Education
Martin-Blas, Teresa; Seidel, Luis; Serrano-Fernandez, Ana – European Journal of Engineering Education, 2010
This work presents the results of a study whose aim is to detect systematic errors about the concept of force among freshmen students. The researchers analysed the results of the Force Concept Inventory test, which was administered to two different groups of students. The results show that, although there were significant performance variations…
Descriptors: Mechanics (Physics), Misconceptions, Scientific Concepts, Engineering Education
Shyr, Wen-Jye – European Journal of Engineering Education, 2010
This study develops a Multiprog virtual laboratory for a mechatronics education designed to teach how to programme a programmable logic controller (PLC). The study was carried out with 34 students in the Department of Industry Education and Technology at National Changhua University of Education in Taiwan. In total, 17 students were assigned to…
Descriptors: Laboratories, Programming, Foreign Countries, Higher Education
Fraser, Duncan; Linder, Cedric – European Journal of Engineering Education, 2009
Contemporary learning research and development that is embedded in primary and secondary schooling is increasingly acknowledging the significance of a variation approach for enhancing the possibility of learning. However, the variation approach has so far attracted very little attention in higher education, but where it has, the results have been…
Descriptors: Higher Education, Computer Simulation, Physics, Chemical Engineering
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