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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
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
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
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
Peer reviewed Peer reviewed
Friedman, Edward A. – Liberal Education, 1979
The impact of technology on higher education from increasingly complex computers and technological systems will cause higher education to include technological courses in the liberal arts curriculum, prepare liberal arts students for careers in nontraditional areas in which technology is an important component, and broaden the base of engineering…
Descriptors: Curriculum, Curriculum Design, Curriculum Development, Educational Change
Tinnell, Richard W., Ed. – 1978
The objective of this project was to develop and test a method of offering technical education to individuals employed in the electrical power industry. Representatives from industry were invited to an advisory council meeting where attention was focused on the needs of the industry. This information was used to define an extensive curriculum, and…
Descriptors: Adults, Continuing Education, Curriculum Development, Electricity
Peer reviewed Peer reviewed
Weathers, Pamela J. – Journal of Chemical Education, 1988
Explores a graduate level bioprocess engineering course in protein purification and downstream processing. Designed to provide students with hands-on training in the design and implementation of product processing for the biotechnology industry. Includes syllabus and plan of study. (MVL)
Descriptors: Biochemistry, College Science, Course Descriptions, Curriculum Design
Queensborough Community Coll., Bayside, NY. – 1976
This handbook is designed to assist teachers of technical mathematics in developing practically-oriented curricula for their students. The underlying assumption is that, while technology students are not a breed apart, their needs and orientation are to the concrete, rather than the abstract. It describes the nature, scope, and content of…
Descriptors: College Mathematics, Community Colleges, Curriculum Development, Engineering Technology
Coleman, Robert J. – 1989
The University of North Carolina's Electrical Engineering Department developed and delivered a course for undergraduate engineering students. The course integrated technical, social, and ethical perspectives on problems and issues faced in the world of practicing engineers. It achieved this integration by making use of professors in engineering,…
Descriptors: Course Descriptions, Course Evaluation, Curriculum Development, Engineering Education
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
Hancock, John C. – Engineering Education, 1979
This interim report of the American Society for Engineering Education is intended to keep members informed and encourage them to offer viewpoints on current issues. Recommendations given relate to lifelong education, programs and curricula, accreditation, teaching methods, supply and demand, communication with the public, society, certification,…
Descriptors: Accreditation (Institutions), Career Awareness, Career Planning, Curriculum Development