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Engineering Education, 1977
Presents a listing of industrial members of the American Society for Engineering Education (ASEE). Listings include industry name, address, and representatives. (SL)
Descriptors: Engineering, Engineering Education, Engineering Technology, Industry
Engineering Education, 1972
Inventories the past and current national effort in programs of two to four years duration in engineering technology education, assesses the strengths and weaknesses of current educational practice in this domain, and suggests directions for future effort. Statistical data, a bibliography and an index are appended. (Author/TS)
Descriptors: Associate Degrees, Curriculum, Degrees (Academic), Engineering Education
Rader, Louis T. – Engineering Education, 1970
Engineering faculty and students must have more exposure to business and industry considerations. (IR)
Descriptors: Communication Problems, Curriculum Development, Educational Change, Educational Trends
Moore, Joseph H. – Engineering Education, 1975
A survey of the graduates from bachelor of technology programs at one institution indicates that they were adequately trained for their technical positions in industry. Their job assignments were very similar to those of B.S. graduates in engineering, and very different from those of the associate degree graduates. (MLH)
Descriptors: Associate Degrees, Bachelors Degrees, Employment Experience, Engineering
Forrester, Jay W. – Eng Educ, 1970
The kind of engineer most needed can harness the resources of the world for results most beneficial to society; can couple science, economics and human organizations. (Editor)
Descriptors: Bureaucracy, Educational Change, Educational Improvement, Educational Strategies
Moore, Joseph H. – Engineering Education, 1977
Attempts to identify the positions available to Bachelor of Engineering Technology (B.E.T.) graduates. A survey of B.E.T. graduates showed that they are being employed in responsible positions by industry and that most are receiving job assignments comparable to those given engineering graduates. Surveys by other institutions are suggested. (MA)
Descriptors: Employment Potential, Engineering Education, Engineering Technology, Higher Education
Gershon, J. J. – Engineering Education, 1977
Summarizes curriculum guidelines for the following engineering technologies: chemical, industrial, mining, petroleum, nuclear, civil, mechanical, electrical, automotive, and manufacturing. In a few years, these Engineering Council for Professional Development committee guidelines are intended to become the criteria by which programs will be judged…
Descriptors: Curriculum Design, Curriculum Development, Engineering Education, Engineering Technology
Ahrens, Fred; Mistry, Rajendra – Journal of STEM Education: Innovations and Research, 2005
In product engineering there often arise design analysis problems for which a commercial software package is either unavailable or cost prohibitive. Further, these calculations often require successive iterations that can be time intensive when performed by hand, thus development of a software application is indicated. This case relates to the…
Descriptors: Engineering Education, Engineering Technology, Manufacturing, Industry
Grayson, Lawrence P., Ed.; Biedenbach, Joseph M., Ed. – 1979
These proceedings contain the complete papers presented at a world conference convened in Mexico City, April 1979, to discuss the topic of continuing education (CE) for engineers. Additional papers in the proceedings are intended to give a fuller set of ideas on a given topic and provide a basis for discussions with their authors. The report is…
Descriptors: Adult Education, Engineering, Engineering Education, Engineering Technology
Schon, James F. – Engineering Education, 1977
The lack of consistency and uniformity throughout California concerning program and course objectives, titles and content, prompted the study reported in this article. Community colleges statewide were included in the study. Curricular characteristics of engineering technology and industrial technology programs were recommended and definitions…
Descriptors: Community Colleges, Curriculum Development, Curriculum Evaluation, Curriculum Problems
Brown, Donald V. – Engineering Education, 1977
Describes the educational programs at the Institute Technologico de Costa Rica. The engineering technology curriculum is based on the results of a nationwide study to identify critical areas of industrial need. The programs are designed for six semesters with scheduled work experiences within the school year. (MA)
Descriptors: College Curriculum, Engineering Education, Engineering Technology, Higher Education
Konon, Walter – Engineering Education, 1977
Bachelor of engineering technology (B.E.T.) programs were created in response to the need for graduates who are ready for productive industrial jobs, not for graduate school. It is suggested that there should be communication between the engineering technology and the traditional engineering faculties to provide strong educational programs. (MA)
Descriptors: Curriculum Evaluation, Engineering Education, Engineering Technology, Higher Education
Rath, Gerald A. – Engineering Education, 1981
Discusses an industrial advisory committee as a means for continuing frequent and relevant interaction between engineering technology faculty and the industrial community. Organizational details are described. (CS)
Descriptors: Engineering, Engineering Education, Engineering Technology, Higher Education
Peer reviewedRobinson, Arthur L. – Science, 1980
Discusses the problem of the shortage of engineers capable of designing advanced integrated circuits (IC) and presents some suggestions for increasing the number of IC designers in universities and semiconductor companies. (HM)
Descriptors: Electric Circuits, Electronics Industry, Engineering Education, Engineering Technology
Peer reviewedReid, S. A. – European Journal of Engineering Education, 1987
Presents a rationale for the teaching of materials in engineering degree courses. Reviews the requirements established by various professional engineering bodies in the United Kingdom for accredited engineering degree courses. Discusses the aims of the course as well as instructional concerns. (ML)
Descriptors: College Science, Course Descriptions, Developed Nations, Engineering Education
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