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Stier, Kenneth; Laingen, Mark – Technology and Engineering Teacher, 2010
Today's engineers and technologists are more frequently thrust into the role of problem solver. Some would argue that, if this is the case, then using simulation is a more acceptable way to educate students for the work environment they will enter. The authors wanted to introduce entry-level university students to advanced engineering concepts…
Descriptors: Sequential Learning, Engineering Technology, Technology Education, Concept Teaching
Kotru, Sushma; Burkett, Susan L.; Jackson, David Jeff – Journal of General Education, 2010
Active and collaborative learning instruments were introduced into an introductory electrical and computer engineering course. These instruments were designed to assess specific learning objectives and program outcomes. Results show that students developed an understanding comparable to that of more advanced students assessed later in the…
Descriptors: Advanced Students, Computer Assisted Instruction, Engineering, Cooperative Learning
Streitwieser, Bernhard; Light, Gregory; Pazos, Pilar – Change: The Magazine of Higher Learning, 2010
This article describes the Science Research Workshop Program (SRW) and discusses how it provides students a legitimate science experience. SRW, which is funded by the National Science Foundation, is an apprenticeship-style program in which students write proposals requesting resources to research an original question. The program creates a…
Descriptors: Science Activities, Scientific Concepts, Workshops, Models
Robelen, Erik W. – Education Digest: Essential Readings Condensed for Quick Review, 2010
As part of a national effort to produce "next generation" science standards for K-12 education, a panel of experts convened by the National Research Council (NRC) has issued a draft of a conceptual framework designed to guide the standards and "move science education toward a more coherent vision." One key goal of the effort is to focus science…
Descriptors: Space Sciences, Elementary Secondary Education, Physical Sciences, Biological Sciences
Habash, Riadh W. Y.; Suurtamm, Christine – IEEE Transactions on Education, 2010
If we aim to enhance the interest of students in engineering and therefore produce the best engineers, it is essential to strengthen the pipeline to high school education. This paper discusses several outreach activities undertaken by the Faculty of Engineering and Faculty of Education, University of Ottawa (UO), Ottawa, ON, Canada, to help the…
Descriptors: Foreign Countries, Engineering Education, Outreach Programs, College School Cooperation
Yilmaz, Muhittin; Ren, Jianhong; Custer, Sheryl; Coleman, Joyce – IEEE Transactions on Education, 2010
This paper explains the organization and execution of a summer engineering outreach camp designed to attract and motivate high school students as well as increase their awareness of various engineering fields. The camp curriculum included hands-on, competitive design-oriented engineering projects from several disciplines: the electrical,…
Descriptors: Summer Programs, Day Camp Programs, Engineering Education, Secondary School Students
Aziz, Syed Mahfuzul; Sicard, Etienne; Ben Dhia, Sonia – IEEE Transactions on Education, 2010
This paper presents the strategies used for effective teaching and skill development in integrated circuit (IC) design using project-based learning (PBL) methodologies. It presents the contexts in which these strategies are applied to IC design courses at the University of South Australia, Adelaide, Australia, and the National Institute of Applied…
Descriptors: Science Activities, Student Projects, Teacher Effectiveness, Lifelong Learning
Kelley, Todd – Journal of Technology Studies, 2010
There are a number of examples in technology education history of multidisciplinary and interdisciplinary efforts linking technology education with other disciplines; however, there has never been a time in technology education where multidisciplinary and interdisciplinary efforts are not only promising but also may be essential for the prosperity…
Descriptors: Technology Education, STEM Education, Engineering Education, Mathematics Education
Jansson, P. M.; Ramachandran, R. P.; Schmalzel, J. L.; Mandayam, S. A. – IEEE Transactions on Education, 2010
To keep up with rapidly advancing technology, numerous innovations to the electrical and computer engineering (ECE) curriculum, learning methods and pedagogy have been envisioned, tested, and implemented. It is safe to say that no single approach will work for all of the diverse ECE technologies and every type of learner. However, a few key…
Descriptors: Engineering Education, Computer Science Education, Undergraduate Students, Student Projects
Le, Tam; Gardner, Susan K. – Journal of College Student Development, 2010
In this study, we explored the experience of Asian international doctoral students in the Science, Technology, Engineering, and Mathematics (STEM) fields at one research-extensive university. We found that Asian international doctoral students in the STEM fields at this institution were often isolated from their peers and faculty, faced an array…
Descriptors: Foreign Students, Educational Experience, Student Experience, Asians
Harms, Henry; Janosz, David A., Jr.; Maietta, Steve – Technology Teacher, 2010
This article describes the Systems and Global Engineering (SAGE) Project in which students collaborate with others from around the world to model solutions to some of today's most significant global problems. Stevens Institute of Technology and the New Jersey Technology Education Association (NJTEA) have teamed up to develop innovative…
Descriptors: Water Quality, Instructional Materials, Technology Education, Material Development
Hyslop, Alisha – Techniques: Connecting Education and Careers (J1), 2010
For the last several years, concern has been brewing about America's underinvestment and underperformance in science, technology, engineering and mathematics--the fields collectively known as STEM. STEM can be described as an initiative for securing America's leadership in science, technology, engineering and mathematics fields and identifying…
Descriptors: Vocational Education, Science Education, Technology Education, Engineering Education
Jiang, Xiaoli; Di Napoli, Roberto; Borg, Michaela; Maunder, Rachel; Fry, Heather; Walsh, Elaine – Studies in Higher Education, 2010
This article reports on an interview study investigating the experiences of academic acculturation (a process of mutual influence and enrichment with regard to academic practice) of a group of Chinese academic staff in two research-intensive UK universities. Following a systematic content-based analysis, three major themes emerged as salient,…
Descriptors: Acculturation, Foreign Countries, Research Universities, Interviews
Thomas, Jerald; Williams, Corinne – Roeper Review, 2010
The creation of specialized Science, Technology, Engineering, and Mathematics (STEM) schools over the past decades has largely been related to economic, political, and educational concerns. The recent America COMPETES Act (2007), for example, intends to strengthen public secondary educational opportunities in science, technology, and mathematics…
Descriptors: High Schools, Gifted, Public Education, Educational History
Kyei-Blankson, Lydia, Ed.; Ntuli, Esther, Ed. – IGI Global, 2014
Learning environments continue to change considerably and is no longer confined to the face-to-face classroom setting. As learning options have evolved, educators must adopt a variety of pedagogical strategies and innovative technologies to enable learning. "Practical Applications and Experiences in K-20 Blended Learning Environments"…
Descriptors: Blended Learning, Educational Environment, Elementary Secondary Education, Higher Education

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