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Jarreau, Joseph A. – Florida Vocational Journal, 1981
Using welding as an example, this article describes how microelectronic devices, in conjunction with human supervision, help alleviate the problems of decreasing levels of productivity. (LRA)
Descriptors: Efficiency, Electromechanical Technology, Electronic Control, Man Machine Systems

Tzafestas, Spyros – European Journal of Engineering Education, 1989
Presented is an overview of the status of robotics education with information about activities and curricula for several European institutions. Some thoughts concerning the structure of a separate robotics curriculum at the university level are included. (Author/YP)
Descriptors: College Science, Electromechanical Technology, Electronic Control, Electronics
Warnat, Winifred I. – 1983
New technologies will produce a radical restructuring of work, including a devaluation of current work skills and the creation of new ones at an ever-increasing rate. The robotics industry provides a prototype for the impact of technology on society, and a context for examining the relevancy of schooling in preparing individuals to function within…
Descriptors: Educational Change, Educational Needs, Electromechanical Technology, Electronic Control

Sharp, Robert L.; And Others – Analytical Chemistry, 1988
Discusses the use of robotics in the analytical chemistry laboratory. Suggests using a modular setup to best use robots and laboratory space. Proposes a sample preparation system which can perform aliquot measurement, dilution, mixing, separation, and sample transfer. Recognizes attributes and shortcomings. (ML)
Descriptors: Automation, Biochemistry, Chemistry, College Science
Campbell, Rob, Comp. – 1992
This document consists of teacher's and student's guides for approximately 10 days of instruction that introduces robotics. The teacher's guide contains the following: an introduction; a daily lesson plan outline; a pretest; answers to the pretest and posttest; a list of student competencies; unit objectives and terms; definitions of terms;…
Descriptors: Behavioral Objectives, Competency Based Education, Computer Assisted Manufacturing, Electromechanical Technology
Besancon, Francis E. – 1984
A curriculum was developed to provide the electromechanical skills necessary to operate and repair industrial robots to students at the secondary and adult vocational levels. To determine requirements for entry-level positions in the robotics industry, manufacturers and employers of industrial robots were contacted. No particular entry-level…
Descriptors: Adult Vocational Education, Behavioral Objectives, Computer Science, Course Descriptions
Mullen, Frank – 1984
This curriculum outline consists of instructional materials and information concerning resources for use in teaching a course in robotics. Addressed in the individual sections of the outline are the following topics: the nature of an industrial robot; the parts of an industrial robot (the manipulator, the power structure, and the control system);…
Descriptors: Annotated Bibliographies, Audiovisual Aids, Automation, Cost Effectiveness
Mississippi Research and Curriculum Unit for Vocational and Technical Education, State College. – 1995
This document, which is intended for use by community and junior colleges throughout Mississippi, contains curriculum frameworks for the following eight programs in the electricity/electronics/related engineering technology cluster: automated manufacturing technology; communications electronics repair technology; computer servicing technology;…
Descriptors: Academic Education, Behavioral Objectives, Community Colleges, Competence