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Stavros, Demo A. – Engineering Education, 1984
Discusses the use of laboratory courses as an invaluable teaching aid to assist in meeting both social and technical objectives. The use of laboratories in conjunction with technical theory courses, as well as in making students aware of their responsibilities to themselves, their teams, and to the instructor are described. (BC)
Descriptors: Engineering, Engineering Technology, Higher Education, Laboratories
Rowe, Donald R.; Russell, John P. – Engineering Education, 1975
Describes the first bachelor of science program in environmental engineering technology, with objectives of providing adequate training in the control of air, water, and land pollution. Includes a four-year curriculum plan. (MLH)
Descriptors: Bachelors Degrees, Curriculum, Engineering, Engineering Education
Defore, Jesse J. – Engineering Education, 1974
Presents contemporary thinking on the mathematics requirements in the engineering technology curriculum. Includes a discussion of institutional practices in mathematics instruction pointing out similarities in content, quantity, scope, and nature of mathematical offerings. (GS)
Descriptors: Accreditation (Institutions), College Mathematics, Curriculum, Engineering Education
Defore, Jesse J. – Engineering Education, 1975
Surveys the course requirements in the humanities and social sciences for 100 two and four year technology programs. For some associate programs, only one or two courses are required; in 40 percent of the cases studied, the requirement is for three courses, or nine semester hours credit. (MLH)
Descriptors: Curriculum, Degree Requirements, Engineering Education, Engineering Technology
Mehrhoff, Joseph – Engineering Education, 1975
Describes the evaluation of engineering technology programs and the problems faced by the engineering technology graduate. Asserts that the "identity crisis" developing in the engineering community between the engineer and the engineering technologist could be averted if positive steps are taken to spell out the differences between the two. (MLH)
Descriptors: College Science, Engineering, Engineering Education, Engineering Technicians
Forman, James D. – Engineering Education, 1975
Describes co-operative programs which provide baccalaureate degrees to electrical, mechanical, and civil engineering technology students who have just completed a two-year associate degree program. The co-operative programs are two or three years in length, with alternating quarters of coursework and job assignments. (MLH)
Descriptors: Bachelors Degrees, Cooperative Programs, Engineering, Engineering Education
Phelps, Richard R. – Engineering Education, 1975
Describes a baccalaureate program in engineering technology at the University of North Carolina at Charlotte, which is a "plus two" or upper-division-only curriculum, serving as a receiving unit for the graduates of two-year engineering technology programs. (MLH)
Descriptors: Associate Degrees, Bachelors Degrees, Engineering, Engineering Education
Wolf, Lawrence J. – Engineering Education, 1977
Reports results of a survey concerning the opportunities for graduates of engineering technology programs to transfer into regular engineering programs. Career opportunities are also considered. (SL)
Descriptors: Career Opportunities, Careers, College Science, Engineering Education
Gourley, Frank A., Jr.; Fountain, Benjamin E., Jr. – Engineering Education, 1975
Describes the engineering technology programs of the North Carolina Community College System. The 16 curricula classified as engineering technologies are offered in 34 institutions for a total of more than 100 separate programs. (MLH)
Descriptors: Associate Degrees, Community Colleges, Engineering, Engineering Education
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
Engineering Education, 1989
This volume includes 303 entries of programs on engineering and engineering technology; 239 entries on engineering programs, and 64 entries on engineering technology programs. The information includes the school name and address; school profile; admission information including student expenses and financial aid; graduation requirements; and…
Descriptors: College Admission, College Choice, College Instruction, College Programs
Ernst, Edward W. – Engineering Education, 1989
Discusses the Undergraduate Curriculum Development in Engineering program. Provides a short history of the program. Describes 10 curriculum projects ranging from engineering design to industry participation. Each program is encouraged to develop: analytical ability, ability to innovate and synthesize, integrating ability, and contextual…
Descriptors: College Science, Curriculum Design, Curriculum Development, Engineering