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Koster, Alexis – American Journal of Business Education, 2010
According to the Bureau of Labor Statistics, close to 1.8 million people, or 77% of all computer professionals, were working in the design, development, deployment, maintenance, and management of software in 2006. The ACM [Association for Computing Machinery] model curriculum for the BS in computer science proposes that about 42% of the core body…
Descriptors: Computer Science Education, Programming, Engineering Education, Engineering Technology
Henry, Holly R.; Tawfik, Andrew A.; Jonassen, David H.; Winholtz, Robert A.; Khanna, Sanjeev – Interdisciplinary Journal of Problem-based Learning, 2012
This qualitative case study examines the initial implementation of a problem-based version of an undergraduate course in materials science for the purpose of identifying areas of improvement to the curriculum prior to a planned second implementation. The course was designed around problems that students work in small teams to solve under the…
Descriptors: Undergraduate Students, Participant Satisfaction, Student Attitudes, Science Materials
Batcheller, Archer L. – ProQuest LLC, 2011
Software has an important role in supporting scientific work. This dissertation studies teams that build scientific software, focusing on the way that they determine what the software should do. These requirements engineering processes are investigated through three case studies of climate science software projects. The Earth System Modeling…
Descriptors: Feedback (Response), Computer Software, Design Requirements, Computer Science Education
Ssemakula, Mukasa; Liao, Gene; Ellis, Darin – Advances in Engineering Education, 2010
Industry has consistently identified lack of experience in manufacturing processes as one of the key competency gaps among new engineering graduates. This paper discusses a laboratory-based course that provides realistic hands-on manufacturing experiences to students. The course uses team-based projects that help students gain hands-on experience…
Descriptors: Engineering Education, Engineering Technology, Achievement Gap, Manufacturing
Cagle West, Marsha – ProQuest LLC, 2010
Software is a critical component of systems ranging from simple consumer appliances to complex health, nuclear, and flight control systems. The development of quality, reliable, and effective software solutions requires the incorporation of effective software engineering processes and leadership. Processes, approaches, and methodologies for…
Descriptors: Grounded Theory, Computer Software, Program Development, Leadership
Nursoy, Mustafa – Educational Sciences: Theory and Practice, 2008
The skills necessary for the training of technical staff during their training and education vary according to the viewpoint of the employees. Like the nature of the industry, the skills of the staff are evolving continuously. The conformity of training institutions to this evolution is always among current issues; however, the implementation is…
Descriptors: Foreign Countries, Developed Nations, Vocational Education, Training Methods
Redmond, Adrienne; Thomas, Julie; High, Karen; Scott, Margaret; Jordan, Pat; Dockers, Jean – School Science and Mathematics, 2011
This case study reviewed the collaborative efforts of university engineers, teacher educators, and middle school teachers to advance sixth- and seventh-grade students' learning through a series of project-based engineering activities. This two-year project enriched regular school curricula by introducing real-world applications of science and…
Descriptors: Engineering Education, Mentors, Problem Based Learning, Teaching Methods
Dobrovolny, Jerry S. – Tech Educ, 1969
Bimonthly Supplement to Ind Arts Vocat Educ; v58 n9 Nov 1969
Descriptors: Curriculum, Engineering Technology, Technical Education
Ariadurai, S. Anbahan; Manohanthan, Rajalingam – Online Submission, 2008
Faculty of Engineering Technology of the Open University of Sri Lanka has been offering engineering programmes at a distance for the last two decades or so. However, completion rates in Faculty of Engineering Technology are lower compared to the other faculties of the University. This paper investigates the reasons for low completion rates in the…
Descriptors: Open Universities, Eligibility, Distance Education, Engineering Technology
Pliskow, Tia – Tech Directions, 2008
Science educators face the challenge of piquing students' interest in subjects whose concepts are often entirely foreign to them. The author wanted to give her students a hands-on, "real world" experience rooted in scientific concepts. What evolved was an engineering design competition. The point of the project was two-fold: to work on real-world…
Descriptors: Design Requirements, Student Interests, Science Interests, Competition
Fisher, Diane – Technology Teacher, 2007
National Aeronautics and Space Administration (NASA) has already sent many technological instruments into outer space. All these instruments were designed and built especially to operate in harsh and alien environments. How do NASA engineers know what kinds of planetary instruments to develop in the first place? Well, they ask. Once engineers…
Descriptors: Space Sciences, Engineering Technology, Engineering Education, Science Process Skills
Peters, Basil – New Univ, 1970
Descriptors: Auto Mechanics, Engineering Technology, Motor Vehicles
Brain, James L. – Community Develop J, 1969
Descriptors: Community Development, Developing Nations, Engineering Technology
Osler, James E.; Hollowell, Gail P.; Nichols, Stacy M. – Journal of Educational Technology, 2012
Technology Engineering is an innovative component of a much larger arena of teaching that effectively uses interactive technology as a method of enhancing learning and the learning environment. Using this method to teach science and math content empowers the teacher and enhances the curriculum as the classroom becomes more efficient and effective.…
Descriptors: Science Education, Academic Achievement, Productivity, School Holding Power
Pardo, X. C.; Martin, M. J.; Sanjurjo, J.; Regueiro, C. V. – IEEE Transactions on Education, 2009
This paper describes a practical experience of adapting the teaching of a course in Computer Technology (CT) to the new demands of the European Higher Education Area (EHEA). CT is a core course taught in the first year of the degree program Technical Engineering in Management Computing in the Faculty of Computer Science at the University of A…
Descriptors: Educational Practices, Foreign Countries, Computer Science Education, Computer System Design

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