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Mezhennaya, Natalia M.; Pugachev, Oleg V. – Problems of Education in the 21st Century, 2019
This research presents the analysis of image of the popular program packages: CAS (Computer Algebra Systems) Matlab, Mathcad, Mathematica, and the spreadsheet 'Microsoft Excel' among students of engineering specializations studying in Bauman Moscow State Technical University (BMSTU). The research has explored perception of program packages by all…
Descriptors: Student Attitudes, Algebra, Computer Software, Engineering Education
Mota, José Miguel; Ruiz-Rube, Iván; Dodero, Juan Manuel; Figueiredo, Mauro – International Association for Development of the Information Society, 2016
Augmented Reality (AR) technology allows the inclusion of virtual elements on a vision of actual physical environment for the creation of a mixed reality in real time. This kind of technology can be used in educational settings. However, the current AR authoring tools present several drawbacks, such as, the lack of a mechanism for tracking the…
Descriptors: Virtual Classrooms, Computer System Design, Computer Software Evaluation, Computer Software
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Guevara-Cedeno, J. Y.; Palma-Behnke, R.; Uribe, R. – IEEE Transactions on Education, 2012
In the field of electricity markets, the development of training tools for engineers has been extremely useful. A novel experimental economics approach based on a computational Web platform of an electricity market is proposed here for the practical teaching of electrical engineering students. The approach is designed to diminish the gap that…
Descriptors: Foreign Countries, Theory Practice Relationship, Cooperative Learning, Teaching Methods
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Liu, Ming; Calvo, R. A.; Aditomo, A.; Pizzato, L. A. – IEEE Transactions on Learning Technologies, 2012
In this paper, we present a novel approach for semiautomatic question generation to support academic writing. Our system first extracts key phrases from students' literature review papers. Each key phrase is matched with a Wikipedia article and classified into one of five abstract concept categories: Research Field, Technology, System, Term, and…
Descriptors: Foreign Countries, Computer Assisted Instruction, Web 2.0 Technologies, Automation
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Garcia, Alfonsa; Garcia, Francisco; Rodriguez, Gerardo; de la Villa, Agustin – International Journal for Technology in Mathematics Education, 2011
In recent years, a considerable number of teachers in Spain have been using DERIVE to teach math subjects in High Schools and Universities. This software has been used by the authors of this work as a support tool in Mathematics courses for Engineering. Since Texas Instruments does not support DERIVE, we were faced with finding an alternative…
Descriptors: Foreign Countries, Engineering Education, Teaching Methods, Computer Software
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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
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Talon, Benedicte; Sagar, Mouldi; Kolski, Christophe – ACM Transactions on Computing Education, 2012
Training professionals to design and produce interactive systems requires the use of well thought-out training scenarios. Indeed, it is essential to consider pedagogical forms whose objective is providing learners with field experience. It is also necessary to motivate learners to learn about subjects that sometimes seem distant from their…
Descriptors: Foreign Countries, Computer Science Education, Computer System Design, Interaction
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Sowe, Sulayman K.; Stamelos, Ioannis G. – Journal of Information Systems Education, 2007
Anecdotal and research evidences show that the Free and Open Source Software (F/OSS) development model has produced a paradigm shift in the way we develop, support, and distribute software. This shift is not only redefining the software industry but also the way we teach and learn in our software engineering (SE) courses. But for many universities…
Descriptors: Computer Software, Curriculum Development, Teaching Methods, College Instruction