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Showing 16 to 30 of 71 results Save | Export
Thomas, Charles R. – Engineering Education, 1985
Discusses programming projects in applied technology courses, examining documentation, formal reports, and implementation. Includes recommendations based on experience with a sophomore machine elements course which provided computers for problem solving exercises. (DH)
Descriptors: Computer Oriented Programs, Curriculum Development, Engineering, Engineering Education
Kellie, Andrew C.; And Others – Engineering Education, 1984
Describes how computers have been integrated into the engineering technology curriculum at Murray State University, focusing on their use in instructional programs, required programming, simulation, and computational projects. Also focuses on computer assisted instructional formats. Indicates no restructuring of course content, expansion of…
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Curriculum Development, Engineering
Irwin, Armond – Technical Education News, 1973
Descriptors: Curriculum Design, Curriculum Development, Engineering Technology, Integrated Curriculum
Morgan, Robert P. – Eng Educ, 1969
Main focus of the Center is "the application of science and technology to the solution of problems faced by people in less-developed areas of the world. Adapted from paper presented at ASEE Annual Meeting, The Pennsylvania State University, June, 1969. (Author/WM)
Descriptors: Cross Cultural Training, Curriculum Development, Developing Nations, Engineering Technology
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
Randall, George A. – American Vocational Journal, 1975
The author recognizes a body of basic knowledge in nuclear power plant technoogy that can be taught in school programs, and lists the various courses, aiming to fill the anticipated need for nuclear-trained manpower--persons holding an associate degree in engineering technology. (Author/BP)
Descriptors: Curriculum Development, Educational Needs, Employment Opportunities, Employment Qualifications
Clum, James A.; Loper, Carl R., Jr. – 1975
This paper describes the content of a seminar-type engineering course dealing with materials reutilization (recycling). The course, consisting of lecture and discussion by various faculty and outside experts as well as student presentations of research papers on recycling topics, is intended to investigate current areas in which recycling of…
Descriptors: College Science, Curriculum Development, Engineering Education, Engineering Technology
Peer reviewed Peer reviewed
Wiens, 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
Sharples, Kent – Engineering Education, 1977
Briefly reports on the structure and evaluation of an individually-paced, two year civil engineering technology curriculum sponsored by a National Science Foundation grant. The written modules progress linearly with support media presentations. Students in the self-paced program generally outperformed lecture-based students on cognitive…
Descriptors: Civil Engineering, Curriculum Development, Curriculum Evaluation, Engineering Education
Larson, Milton E.; Valentine, Ivan E. – School Shop, 1976
Speaks to the role of vocational education in providing massive training programs to prepare technicians and other service personnel to perform installation and service functions necessary to support architects and engineers designing and developing solar energy systems. (HD)
Descriptors: Curriculum Development, Developmental Programs, Educational Needs, Educational Planning
Rosenstein, Allen B. – Eng Educ, 1970
Article describes the findings of a twelve-year study by the Engineering Department of UCLA, known as the Educational Development Program. (IR)
Descriptors: Administrative Principles, Curriculum Development, Engineering Education, Engineering Technology
Schallert, William F. – 1974
Florissant Valley Community College has integrated Engineering Technology education into a comprehensive community college setting. Problems of implementation and some of this institution's means of solving them are presented as a case study. The history of the institution is presented to include information about the staff and the initial…
Descriptors: Community Colleges, Curriculum Development, Engineering, Engineering Education
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Bauch, Klaus Dieter – 1976
The study was designed to investigate the effects of Numerical Control Technology and Computer-Aided Manufacturing (NC/CAM) in American industry on industrial education and engineering technology education. The specific purpose was to identify a data base and rationale for curriculum development in NC/CAM through a comparison of views by…
Descriptors: Curriculum Development, Engineering Technology, Industrial Education, Manufacturing
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
Williams, John A.; Venezian, Giulio – Eng Educ, 1969
Describes new program leading to Master's degree in Ocean Engineering. Established in 1966, program is third of its kind in the U.S. (WM)
Descriptors: Curriculum Development, Engineering Education, Engineering Technology, Environmental Education
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