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Chandra A. P., Jagadeesh; Samuel, R. D. Sudhaker – International Journal of Distance Education Technologies, 2010
Attaining excellence in technical education is a worthy challenge to any life goal. Distance learning opportunities make these goals easier to reach with added quality. Distance learning in engineering education is possible only through successful implementations of remote laboratories in a learning-by-doing environment. This paper presents one…
Descriptors: Electronic Learning, Engineering Education, Distance Education, Technical Education
RONEY, MAURICE W. – 1966
A FIELD STUDY OF THE ELECTOMECHANICAL TECHNICIAN OCCUPATION WAS CONDUCTED IN TWO STAGES. IN THE FIRST PHASE, PERSONAL INTERVIEWS WERE CONDUCTED IN 26 INDUSTRIAL ORGANIZATIONS SELECTED BY SIZE, PRINCIPAL ACTIVITY, AND GEOPGRAPHICAL DISTRIBUTION. IN THE SECOND PHASE, A BRIEF QUESTIONNAIRE WAS USED TO OBTAIN A BROAD SAMPLE OF THE QUANTITATIVE NEED…
Descriptors: Curriculum Development, Electromechanical Technology, Interviews, Occupations
Industrial Electronics; Glossary of Key Words. Vocational Reading Power Project, Title III, E.S.E.A.
Furnari, Michael; Schelter, Frederick – 1972
The glossary is one of twenty in various subject areas of vocational education designed to assist the student in vocabulary mastery for particular vocational education courses. They are part of the Vocational Reading Power Project, Title III, E.S.E.A. This glossary is for a course in industrial electronics. It is divided into two parts: one…
Descriptors: Definitions, Electromechanical Technology, Electronics Industry, Glossaries
Fellows, Douglas M. – Tech Educ News, 1969
Descriptors: Curriculum, Electromechanical Technology, Electronic Technicians, Institutional Cooperation
Fellows, Douglas M. – Tech Educ News, 1969
Descriptors: Curriculum, Electromechanical Technology, Electronic Technicians, Institutional Cooperation
Lescarbeau, Roland F.; And Others – 1968
This suggested curriculum guide represents the consensus of opinion by the representatives of seven schools comprising the Technical Education Consortium, with advice of industrial experts concerning the essential educational needs of the technicians they would employ. It will serve as a guide to schools planning to institute a program applicable…
Descriptors: Computer Science Education, Curriculum, Curriculum Guides, Electrical Occupations
Tinnell, Richard W. – Tech Educ, 1969
Bimonthly Supplement to Ind Arts Vocat Educ; v58 n9 Nov 1969
Descriptors: Concept Formation, Curriculum Development, Curriculum Guides, Electromechanical Technology
Heiserman, Russell L. – 1985
The microcomputer troubleshooter is regarded as a technically knowledgeable member of the team and is more active in equipment selection, site preparation, site supervision and preventive maintenance, and on-site training of operators, maintenance people, and programmers. Microcomputer troubleshooting can be incorporated into an electronics…
Descriptors: Electromechanical Technology, Electronic Technicians, Electronics, Equipment Maintenance
Florida State Dept. of Education, Tallahassee. Div. of Vocational, Technical and Adult Education. – 1969
Educators and industrial representatives developed these guidelines for school officials, instructors in technical education, and program and facility planners to use in planning a high school program in technical electromechanics. Designed to train students for entry into industry in applied electromechanics, the program includes electricity,…
Descriptors: Administrator Guides, Educational Facilities, Electrical Occupations, Electromechanical Technology
Anderson, Hugh M.; Whitehead, Charles O. – VocEd, 1983
The State Technical Institute at Memphis, Tennessee, is part of a nationwide group of postsecondary institutions that are contracted to provide technical instructor services to Naval personnel. (SK)
Descriptors: Aviation Technology, Contracts, Electricity, Electromechanical Technology
Gottlieb, Philip – American Vocational Journal, 1978
The author discusses the level of mathematics needed in biomedical technology programs. Technical institutes and community colleges across the country have varying math requirements, from first-year college algebra on into calculus. He suggests a study to determine the reasons for the variance, leading eventually to uniform quality. (MF)
Descriptors: Biomedical Equipment, Educational Needs, Electromechanical Technology, Electronic Technicians
Air Univ., Gunter AFS, Ala. Extension Course Inst. – 1984
This course is intended to train Air Force personnel to become electronic computer and switching systems specialists. One part of the course consists of a three-volume career development course. Topics are maintenance orientation (15 hours), electronic principles and digital techniques (87 hours), and systems maintenance (51 hours). Each volume…
Descriptors: Adult Education, Computers, Electromechanical Technology, Electronic Technicians
McQuay, Paul L. – 1984
A description is provided of the Automated Manufacturing/Robotics program to be offered at Delaware County Community College beginning in September 1984. Section I provides information on the use of reprogramable industrial robots in manufacturing and the rapid changes in production that can be effected through the application of automated…
Descriptors: Automation, Course Descriptions, Course Objectives, Curriculum Development
Oklahoma State Univ., Stillwater. – 1966
The first stage of this research project consisted of (1) an in-plant study of electro-mechanical technician operations to determine what skills and knowledge combinations are required, (2) in-depth interviews with administrative and supervisory personnel in 26 selected industrial organizations geographically distributed from New England to…
Descriptors: Curriculum, Curriculum Design, Curriculum Research, Educational Needs

Gosling, W. – Physics Education, 1979
Reviewed is a brief history of electronics technology, from the early beginnings of vacuum devices to development of solid state devices, silicon fabrication in the use of transistors, and integrated circuits. Educational needs at the university or polytechnic level are discussed. (CS)
Descriptors: College Science, Electromechanical Technology, Electronics, Higher Education