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Showing 91 to 105 of 316 results Save | Export
Brey, Gary B. – Science, Technology and Society, 1985
Describes an elective undergraduate course that focuses on specific technologies' impact on society and the political system. Outlines the topic areas of computers, microelectronics, and genetic technology in terms of background information and political and public policy issues. A comprehensive reading list for the major technology areas is also…
Descriptors: Computers, Course Descriptions, Electromechanical Technology, Genetics
Melnick, Everett; DeKeyser, Raymond – School Shop, 1971
Descriptors: Construction (Process), Electromechanical Technology, Industrial Arts, Machine Tools
Peer reviewed Peer reviewed
Rose, David J. – Science, 1971
Presents the history, current concerns and potential developments of nuclear fusion as a major energy source. Controlled fusion research is summarized, technological feasibility is discussed and environmental factors are examined. Relationships of alternative energy sources as well as energy utilization are considered. (JM)
Descriptors: Electromechanical Technology, Energy, Environment, Environmental Influences
Peer reviewed Peer reviewed
Burwell, Calvin C. – Physics Teacher, 1971
Future use of nuclear energy to produce electricity and desalted water is outlined. Possible desalting processes are analyzed to show economic feasibility and the place in planning in world's economic growth. (DS)
Descriptors: Electricity, Electromechanical Technology, Engineering, Environment
Friedman, Sander B. – Technical Education, 1971
Discusses a new technique for training fluid control technicians. Technical Education is a bimonthly supplement to Industrial Arts and Vocational Education. (Editor/GB)
Descriptors: Design, Electromechanical Technology, Fluid Mechanics, Information Storage
Peer reviewed Peer reviewed
Jefimenko, Oleg; Walker, David K. – Physics Teacher, 1971
History, design, and evaluations are presented for electrostatic motors. Illustrations. Bibliography. (DS)
Descriptors: College Science, Electromechanical Technology, Physics, Science Experiments
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
Peer reviewed Peer reviewed
Lees, David; LePage, Pamela – International Journal of Rehabilitation Research, 1994
This article describes the current capabilities and future potential of robots designed as supplements or replacements for human assistants or as tools for education and rehabilitation of people with disabilities. Review of robots providing educational, vocational, or independent living assistance concludes that eventually effective, reliable…
Descriptors: Attendants, Disabilities, Electromechanical Technology, Futures (of Society)
Peer reviewed Peer reviewed
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Rodriguez, Armando A.; Metzger, Richard P.; Cifdaloz, Oguzhan; Dhirasakdanon, Thanate; Welfert, Bruno – International Journal of Mathematical Education in Science and Technology, 2004
This paper describes an interactive modelling, simulation, animation, and real-time control (MoSART) environment for a class of 'cart-pendulum' electromechanical systems that may be used to enhance learning within differential equations and linear algebra classes. The environment is useful for conveying fundamental mathematical/systems concepts…
Descriptors: Mathematics Instruction, Mathematical Models, Motion, Animation
Peer reviewed Peer reviewed
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Moses, James M.; Trout, K. P. – Physics Teacher, 2006
Communication through the modulation of electromagnetic radiation has become a foundational technique in modern technology. In this paper we discuss a modern day method of eavesdropping based upon the modulation of laser light reflected from a window pane. A simple and affordable classroom demonstration of a "laser microphone" is…
Descriptors: Demonstrations (Educational), Lasers, Audio Equipment, Electromechanical Technology
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Hemling, Melissa A.; Sammel, Lauren M.; Zenner, Greta; Payne, Amy C.; Crone, Wendy C. – Science Scope, 2006
Many traditional classroom science and technology activities often ask students to complete prepackaged labs that ensure that everyone arrives at the same "scientifically accurate" solution or theory, which ignores the important problem-solving and creative aspects of scientific research and technological design. Students rarely have the…
Descriptors: Scientific Principles, Scientific Research, Research Problems, Patients
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
Bureau of Naval Personnel, Washington, DC. – 1973
The manual is designed as a self-study text for use by personnel of the Navy and Naval Reserve who are preparing to meet professional requirements for advancement in the rating of Aviation Electronics Technician. The document opens with a review of leadership and qualifications for the Aviation Electronics Technician rating. Other chapters cover…
Descriptors: Aviation Mechanics, Aviation Technology, Electromechanical Technology, Electronic Equipment
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
Peer reviewed Peer reviewed
West, Charlene E. – Educational Research Quarterly, 1986
The purpose of this article is to discuss hardware issues and help educators assess their hardware needs in order to determine the best computer hardware for their school program. Good and bad features, flexibility, reliability, cost effectiveness, and optimum classroom configuration are given particular attention. (LMO)
Descriptors: Class Activities, Computer Assisted Instruction, Computers, Cost Effectiveness
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