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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
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Taleyarkhan, Manaz; Dasgupta, Chandan; Garcia, John Mendoza; Magana, Alejandra J. – Journal of Science Education and Technology, 2018
Engineering design thinking is hard to teach and still harder to learn by novices primarily due to the undetermined nature of engineering problems that often results in multiple solutions. In this paper, we investigate the effect of teaching engineering design thinking to freshmen students by using a computer-aided Design (CAD) simulation…
Descriptors: Design, Educational Technology, Engineering Education, Engineering Technology
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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
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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
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Mateo Sanguino, T. J.; Serrano Lopez, C.; Marquez Hernandez, F. A. – IEEE Transactions on Education, 2013
A new educational simulation tool designed for the generic study of wireless networks, the Wireless Fidelity Simulator (WiFiSim), is presented in this paper. The goal of this work was to create and implement a didactic tool to improve the teaching and learning of computer networks by means of two complementary strategies: simulating the behavior…
Descriptors: Computer Simulation, Telecommunications, Information Networks, Computer Science Education
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Potkonjak, Veljko; Jovanovic, Kosta; Holland, Owen; Uhomoibhi, James – Multicultural Education & Technology Journal, 2013
Purpose: The purpose of this paper is to present an improved concept of software-based laboratory exercises, namely a Virtual Laboratory for Engineering Sciences (VLES). Design/methodology/approach: The implementation of distance learning and e-learning in engineering sciences (such as Mechanical and Electrical Engineering) is still far behind…
Descriptors: Electronic Learning, Distance Education, Computer Simulation, Skill Development
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Mitts, Charles R. – Technology and Engineering Teacher, 2013
This design/problem-solving activity challenges students to design a replacement bridge for one that has been designated as either structurally deficient or functionally obsolete. The Aycock MS Technology/STEM Magnet Program Virtual Bridge Design Challenge is an authentic introduction to the engineering design process. It is a socially relevant…
Descriptors: Problem Solving, Facility Planning, Design, Engineering Education
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Bauer, P.; Rompelman, O. – European Journal of Engineering Education, 2005
Present engineering has to deal with increasingly complex systems. In particular, this is the case in electrical engineering. Though this is obvious in microelectronics, also in the field of power systems engineers have to design, operate and maintain highly complex systems such as power grids, energy converters and electrical drives. This is…
Descriptors: Animation, Engineering Education, Engineering, Engineering Technology