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Berland, Leema K. – Journal of Pre-College Engineering Education Research, 2013
We are increasingly seeing an emphasis on STEM integration in high school classrooms such that students will learn and apply relevant math and science content while simultaneously developing engineering habits of mind. However, research in both science education and engineering education suggests that this goal of truly integrating STEM is rife…
Descriptors: Integrated Curriculum, Curriculum Design, Instructional Design, STEM Education
Cagiltay, N. E.; Aydin, E.; Aydin, C. C.; Kara, A.; Alexandru, M. – IEEE Transactions on Education, 2011
This paper discusses the results of a study of the requirements for developing a remote radio frequency (RF) laboratory for electrical engineering students. It investigates students' preferred usage of the technical content of a state-of-the-art RF laboratory. The results of this study are compared to previous findings, which dealt with other user…
Descriptors: Engineering Education, Instructional Design, Case Studies, Scientific Principles
Schunn, Christian – National Center for Engineering and Technology Education, 2011
At the University of Pittsburgh, the author and his colleagues have been exploring a range of approaches to design challenges for implementation in high school science classrooms. In general, their approach has always involved students working during class time over the course of many weeks. So, their understanding of what works must be…
Descriptors: Engineering Education, Engineering Technology, Scientific Principles, Learning Experience
Elias, Erasto – European Journal of Engineering Education, 2006
Design methodology (DM) is defined by the procedural path, expressed in design models, and techniques or methods used to untangle the various activities within a design model. Design education in universities is mainly based on descriptive design models. Much knowledge and organization have been built into DM to facilitate design teaching.…
Descriptors: Models, Teaching Methods, Instructional Design, Classroom Techniques
Todd, Robert H.; Magleby, Spencer P. – European Journal of Engineering Education, 2005
One of the principal objectives of engineering education is to prepare graduates for the practice of engineering in industry. Industry involvement in the educational process can be very helpful in devising programs to meet this objective. Yet, engineering education has a number of other stakeholders including students, faculty, academic…
Descriptors: Engineering Education, Industry, Educational Objectives, Engineering