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Showing 1 to 15 of 21 results Save | Export
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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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Bollin, Andreas; Hochmuller, Elke; Mittermeir, Roland; Samuelis, Ladislav – IEEE Conference on Software Engineering Education and Training, Proceedings (MS), 2012
Software Engineering education must account for a broad spectrum of knowledge and skills software engineers will be required to apply throughout their professional life. Covering all the topics in depth within a university setting is infeasible due to curricular constraints as well as due to the inherent differences between educational…
Descriptors: Engineering Education, Computer Software, Integrated Curriculum, Computer Simulation
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Canfield, Stephen L.; Ghafoor, Sheikh; Abdelrahman, Mohamed – Journal of STEM Education: Innovations and Research, 2012
This paper describes the redesign and implementation of the course, "Introduction to Programming for Engineers" using microcontroller (MCU) hardware as the programming target. The objective of this effort is to improve the programming competency for engineering students by more closely relating the initial programming experience to the student's…
Descriptors: Program Effectiveness, Engineering Education, Engineering, Hands on Science
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Swapp, Andy; Schreuders, Paul; Reeve, Edward – Technology and Engineering Teacher, 2011
Many people use wind to help meet their needs. Over the years, people have been able to harness or capture the wind in many different ways. More recently, people have seen the rebirth of electricity-generating wind turbines. Thus, the age-old argument about technology being either good or bad can also be applied to the wind. The wind can be a…
Descriptors: Engineering Education, Technology Education, Science Process Skills, Science Course Improvement Projects
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Herrero, Luis Carlos; Pardo, Fernando; Fernando, María Luisa; González, María Luisa – Journal of Technology and Science Education, 2011
We hereby present the main conclusions and perspectives obtained by the Group of Teaching Innovation in Electronics (Grupo de Innovación Docente en Electrónica, GIDEN) of the University of Valladolid (UVa) with regard to its main areas of work. This group comprises teachers of the "Specialty in Industrial Electronics" degree, and the…
Descriptors: Electronics, Teamwork, Engineering Education, Teaching Methods
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McSpadden, Moira; Kelley, Todd R. – Technology and Engineering Teacher, 2012
It is well documented that there is a disproportionate number of males pursuing engineering and technology careers when compared to their female counterparts (Milgram, 2011). Some recent articles have proposed methods to recruit more females into technology education (Milgram, 2011; Zywno, Gilbride, Hiscodes, Waalen, and Kennedy, 1999). However,…
Descriptors: Problem Based Learning, Engineering Education, Engineering Technology, Design
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Awang, Tuan Salwani; Zakaria, Effandi – Turkish Online Journal of Educational Technology - TOJET, 2012
Engineering technology students can attain a meaningful mathematics learning if they are allowed to actively participate in hands-on activities. However, the current dissemination of knowledge in the classroom still focuses on teacher-centered paradigm of teaching. A study to explore lecturers' views regarding a newly developed integral calculus…
Descriptors: Educational Technology, Calculus, Mathematics Education, Lesson Plans
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Alorda, B.; Suenaga, K.; Pons, P. – Computers & Education, 2011
This paper reports on the design, implementation and assessment of a new approach course structure based on the combination of three cooperative methodologies. The main goal is to reduce the percentage of non-passed students focusing the learning process on students by offering different alternatives and motivational activities based on working in…
Descriptors: Student Projects, Learning Strategies, Foreign Countries, Robotics
Prescott, David; El-Sakran, Tharwat; Albasha, Lutfi; Aloul, Fadi; Al-Assaf, Yousef – Online Submission, 2011
Well-developed professional communication skills, collaborative work practices, effective self-management and a clear understanding of social responsibility and ethical practices are essential for the new engineer who hopes to contribute to the profession and build a career. These attributes are in addition to the traditional sound knowledge of…
Descriptors: Engineering, Social Responsibility, Communication Skills, Communication Strategies
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Limniou, M.; Smith, M. – European Journal of Engineering Education, 2010
The aim of this investigation was to get an insight into how teachers and students responded to the use of virtual learning environments (VLE) in engineering education and what their expectations were from online courses. Teachers designed their online courses with the assistance of a support e-learning team and questionnaires were used for…
Descriptors: Electronic Learning, Engineering Education, Online Courses, Teaching Methods
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Koszalka, Tiffany A.; Wu, Yiyan – Quarterly Review of Distance Education, 2010
Changes in engineering practices have spawned changes in engineering education and prompted the use of distributed learning environments. A distributed collaborative engineering design (CED) course was designed to engage engineering students in learning about and solving engineering design problems. The CED incorporated an advanced interactive…
Descriptors: Engineering Education, Instructional Design, Design, Science Course Improvement Projects
Householder, Daniel L., Ed. – National Center for Engineering and Technology Education, 2011
Since its initial funding by the National Science Foundation in 2004, the National Center for Engineering and Technology Education (NCETE) has worked to understand the infusion of engineering design experiences into the high school setting. Over the years, an increasing number of educators and professional groups have participated in the expanding…
Descriptors: Engineering, Instructional Design, Technology Education, Science Curriculum
Symes, Mark; Ranmuthugala, Dev; Chin, Christopher; Carew, Anna – Online Submission, 2011
In the past, engineering programmes were developed with separate technical learning outcomes supplemented by generic attributes. The latter were in most cases a standalone set of attributes developed by academic institutions or professional societies overseeing engineering accreditation processes. Although the technical learning outcomes were well…
Descriptors: Problem Based Learning, Learning Processes, Engineering, Teaching Methods
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Stricker, David R. – Journal of STEM Teacher Education, 2011
This study was conducted to describe a high school engineering curriculum, identify teaching strategies used to increase math and science literacy, and discover challenges and constraints that occur during its development and delivery, as well as what strategies are used to overcome these obstacles. Semi-structured interviews were conducted with…
Descriptors: Curriculum Development, Interviews, Scientific Literacy, Teaching Methods
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Montero, E.; Gonzalez, M. J. – IEEE Transactions on Education, 2009
Problem-based learning has been at the core of significant developments in engineering education in recent years. This term refers to any learning environment in which the problem drives the learning, because it is posed in such a way that students realize they need to acquire new knowledge before the problem can be solved. This paper presents the…
Descriptors: Engineering Education, Problem Based Learning, Cooperative Learning, Heat
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