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Aitor Ruiz de la Torre Acha; Rosa María Rio Belver; Javier Fernandez Aguirrebeña; Christophe Merlo – Education & Training, 2024
Purpose: This study explores the impact of new technologies, such as simulation and virtual reality, on the pedagogy and learning of engineering students. It aims to compare the effectiveness of these digital tools against traditional teaching methods in enhancing student learning experiences. Design/methodology/approach: Utilizing a quantitative…
Descriptors: Computer Simulation, Information Technology, Engineering Education, Learning Processes
Papakostas, Christos; Troussas, Christos; Krouska, Akrivi; Sgouropoulou, Cleo – Informatics in Education, 2021
This review paper presents a systematic literature review on the use of Augmented Reality (AR) in engineering education, and specifically in student's spatial ability training, for the last decade. Researchers have explored the benefits of AR, and its application has been of increasing interest in all levels of education. Engineering students tend…
Descriptors: Computer Simulation, Spatial Ability, Visualization, Educational Technology
Katzis, Konstantinos; Dimopoulos, Christos; Meletiou-Mavrotheris, Maria; Lasica, Ilona-Elefteryja – Education Sciences, 2018
The recent phenomenon of worldwide declining enrolments in engineering-related degrees has led to the gradual decrease in the number of engineering graduates. This decrease occurs at a time of increasing demand in the labour market for highly qualified engineers, who are necessary for the implementation of fundamental societal functions. This…
Descriptors: Engineering Education, Educational Environment, Distance Education, Engineering
Tirado-Morueta, Ramón; Sánchez-Herrera, Reyes; Márquez-Sánchez, Marco A.; Mejías-Borrero, Andrés; Andujar-Márquez, José Manuel – European Journal of Engineering Education, 2018
Remote lab experiences are proliferating in higher education, although there are still few studies that manage to build a theoretical framework for educational assessment and design of this technology. In order to explore to what extent the use of facilitators of proximity to the laboratory and the autonomy of the experiment makes remote…
Descriptors: Laboratories, Engineering Education, Energy, Undergraduate Students
Roca-González, Cristina; Martin-Gutierrez, Jorge; García-Dominguez, Melchor; Carrodeguas, Mª del Carmen Mato – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The present study assessed a short training experiment to improve spatial abilities using two tools based on virtual technologies: one focused on manipulation of specific geometric virtual pieces, and the other consisting of virtual orienteering game. The two tools can help improve spatial abilities required for many engineering problem-solving…
Descriptors: Engineering Education, Spatial Ability, Computer Uses in Education, Computer Simulation
Gil, Arturo; Peidró, Adrián; Reinoso, Óscar; Marín, José María – IEEE Transactions on Education, 2017
This paper presents a tool, LABEL, oriented to the teaching of parallel robotics. The application, organized as a set of tools developed using Easy Java Simulations, enables the study of the kinematics of parallel robotics. A set of classical parallel structures was implemented such that LABEL can solve the inverse and direct kinematic problem of…
Descriptors: Virtual Classrooms, Laboratory Experiments, Laboratory Equipment, Robotics
Ruano, Ildefonso; Gamez, Javier; Dormido, Sebastian; Gomez, Juan – IEEE Transactions on Learning Technologies, 2016
Online laboratories are useful and valuable resources in high education, especially in engineering studies. This work presents a methodology to create effective laboratories for learning that interact with a Learning Management System (LMS) to achieve advanced integration. It is based on pedagogical aspects and considers not only the laboratory…
Descriptors: Management Systems, Laboratories, Teaching Methods, Computer Simulation
Frances, J.; Perez-Molina, M.; Bleda, S.; Fernandez, E.; Neipp, C.; Belendez, A. – IEEE Transactions on Education, 2012
Interference and diffraction of light are elementary topics in optics. The aim of the work presented here is to develop an accurate and cheap optical-system simulation software that provides a virtual laboratory for studying the effects of propagation in both time and space for the near- and far-field regions. In laboratory sessions, this software…
Descriptors: Engineering Education, Optics, Computer Software, Computer Simulation
Gras, Anna; Cañadas, Juan Carlos; Ginovart, Marta – Journal of Technology and Science Education, 2013
This work addresses and aims to fulfill a very clear need in teaching biosystem engineering. When introducing students to the complexity of soil processes, one of the frustrations that teachers often experience is the impossibility to demonstrate practically, in the lab, some of the concepts and processes discussed in class. Either the experiments…
Descriptors: Computer Simulation, Engineering Education, Science Experiments, Soil Science
Tawfik, M.; Sancristobal, E.; Martin, S.; Gil, R.; Diaz, G.; Colmenar, A.; Peire, J.; Castro, M.; Nilsson, K.; Zackrisson, J.; Hakansson, L.; Gustavsson, I. – IEEE Transactions on Learning Technologies, 2013
This paper reports on a state-of-the-art remote laboratory project called Virtual Instrument Systems in Reality (VISIR). VISIR allows wiring and measuring of electronic circuits remotely on a virtual workbench that replicates physical circuit breadboards. The wiring mechanism is developed by means of a relay switching matrix connected to a PCI…
Descriptors: Electronics, Laboratories, Distance Education, Computer Simulation
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
Garcia, J.; Hernandez, A. – IEEE Transactions on Education, 2010
This paper presents the results of a one-year experiment in incorporating active methodologies in a Queueing Systems course as part of the Telecommunication Engineering degree at the University of Zaragoza, Spain, during the period of adaptation to the European Higher Education Area. A problem-based learning methodology has been introduced, and…
Descriptors: Foreign Countries, Active Learning, Teaching Methods, Engineering Education
Vargas, Hector; Sanchez Moreno, J.; Jara, Carlos A.; Candelas, F. A.; Torres, Fernando; Dormido, Sebastian – IEEE Transactions on Learning Technologies, 2011
This article presents an innovative project in the context of remote experimentation applied to control engineering education. Specifically, the authors describe their experience regarding the analysis, design, development, and exploitation of web-based technologies within the scope of automatic control. This work is part of an inter-university…
Descriptors: Foreign Countries, Web Based Instruction, Internet, Distance Education
Duran, Mario J.; Gallardo, Sergio; Toral, Sergio L.; Martinez-Torres, Rocio; Barrero, Federico J. – International Journal of Technology and Design Education, 2007
Learner-centred approaches follow the prevailing tendency in modern University reforms which are primarily concerned about "how people learn". The methodologies can be learner-centred in the sense of placing the student as the main actor of the teaching-learning process by increasing his interactivity and participation, but also…
Descriptors: Computer Software, Factor Analysis, Engineering Education, Foreign Countries
Mendez, Empar; Casadesus, Marti; De Ciurana, Quim – Innovations in Education and Teaching International, 2006
This article describes the Gironacel[R] project--a virtual learning environment produced by the University of Girona. The purpose of this tool is to make it easier for students studying quality management courses within engineering schools to understand what the "quality culture" is and how to implement the ISO 9001:2000 standard in a…
Descriptors: Engineering Education, Standards, Total Quality Management, Educational Environment
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