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National Academy of Engineering, Washington, DC. Commission on Education. – 1970
This report is the result of a study, funded by the National Science Foundation, of a group constituted as the COSINE Task Force on Undergraduate Education in Computer Engineering in 1969. The group was formed in response to the growing demand for education in computer engineering and the limited opportunities for study in this area. Computer…
Descriptors: College Science, Computer Science, Computer Science Education, Curriculum Development
Peer reviewedWiens, A. Emerson – Journal of Epsilon Pi Tau, 1987
Reviews development of technological literacy in liberal arts curriculum, especially efforts of Sloan Foundation. Observes that few general education courses with technology content are taught by industrial educators; focus of the new liberal arts is on understanding how technology works; quantitative skills are vital; and social and human…
Descriptors: Curriculum Development, Engineering Technology, Higher Education, Industrial Arts
Peer reviewedVinther, Ole – European Journal of Engineering Education, 1986
Identifies the social events which created the need for a course linking technology to societal values. Assesses possible responses and outlines course content. (JM)
Descriptors: College Science, Curriculum Development, Engineering Education, Foreign Countries
Galza, Ma. Lourdes LL. – Skillstech, 1985
Describes the work of the Don Bosco Educational Association of the Philippines, which operates trade schools for boys. The article focuses on the Don Bosco College's engineering technology and general engineering science programs and the development of Industrial Technician Centers. Other programs operated by the Salesians are also described. (CT)
Descriptors: Apprenticeships, Colleges, Curriculum Development, Engineering
Devon, Richard F. – Engineering Education, 1984
Analyzes the relationship between precollege and college microcomputer use, focusing on equity (who gets access to microcomputers) and on curricular policy (how engineering colleges adapt to the advent of popular microcomputing). Computer hardware, instructional issues, and educational objectives are also considered. (Author/JN)
Descriptors: Computer Literacy, Computer Oriented Programs, Curriculum Development, Curriculum Problems
Wohlers, Terry – Technological Horizons in Education, 1984
Describes the outstanding results obtained when a department of industrial sciences used special software on microcomputers to teach computer-aided design (CAD) as an alternative to much more expensive equipment. The systems used and prospects for the future are also considered. (JN)
Descriptors: Computer Oriented Programs, Computer Software, Course Content, Curriculum Development
Brawner, Catherine E.; Serow, Robert C. – 1998
The SUCCEED coalition, one of the NSF Engineering Education Coalitions, was founded on a vision in which all engineering graduates will possess not only highly developed technical skills, but also the attitudes and awareness needed to prosper in the contemporary workplace. This vision manifested itself within SUCCEED by the development of…
Descriptors: Curriculum Development, Educational Change, Engineering Education, Higher Education
Bailey, Thomas R.; Matsuzuka, Yukari; Jacobs, James; Morest, Vanessa Smith; Hughes, Katherine L. – Community College Research Center, 2004
In response to the 1992 Scientific and Advanced Technology Act (SATA), the National Science Foundation (NSF) initiated the Advanced Technological Education (ATE) program to promote systemic reform of the nation's science, technology, engineering, and mathematics (STEM) education. The Act gave community colleges the central role for the…
Descriptors: Technology Education, Articulation (Education), Instructional Materials, College Faculty
Peer reviewedOxtoby, Robert – Journal of Curriculum Studies, 1972
Descriptors: Curriculum Development, Curriculum Evaluation, Educational Change, Educational Objectives
Sherren, David C. – Journal of Engineering Education, 1972
Descriptors: College Science, Course Descriptions, Course Evaluation, Curriculum Development
Manasse, Fred K. – Journal of Engineering Education, 1971
Descriptors: College Students, Curriculum Development, Engineering Education, Program Descriptions
McFarland, D. E.; Craig, A. J. – Journal of Engineering Education, 1971
This ccourse for non-engineers is designed to lead the student through an awareness of the many areas in which technological advances affect his daily life to the recognition of the broader social implications of that same technology. (Author/TS)
Descriptors: College Science, Course Descriptions, Curriculum Development, Engineering Education
Shivler, James F., Jr. – Professional Engineer, 1980
Outlines the difficulties in establishing a minimum consensus level of engineering education. Analyzes the current and future role of the engineer and their implications for engineering preparation and lists six major issues for engineering education in the 1980s. (GS)
Descriptors: Curriculum Development, Curriculum Problems, Educational Policy, Engineering Education
Hodges, Michael P.; Lichter, Barry D. – Engineering Education, 1980
Provides a viewpoint regarding the failure in engineering education to realize the most fundamental goals of liberal studies. These authors develop the theme of "transcendental engineering," a conception that bridges the gap between theoretical disciplines of the liberal arts college and practical studies of the engineering schools. (CS)
Descriptors: College Science, Curriculum Development, Engineering Education, General Education
Nesin, Dan; And Others – Engineering Education, 1980
Describes a student-directed computer system revival project in the Electrical and Computer Engineering department at California State Polytechnic University, which originated when an obsolete computer was donated to the department. Discusses resulting effects in undergraduate course offerings, in student extracurricular activities, and in…
Descriptors: College Science, Computers, Curriculum Development, Engineering Education


