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Leppavirta, J.; Kettunen, H.; Sihvola, A. – IEEE Transactions on Education, 2011
Complex multistep problem exercises are one way to enhance engineering students' learning of electromagnetics (EM). This study investigates whether exposure to complex problem exercises during an introductory EM course improves students' conceptual and procedural knowledge. The performance in complex problem exercises is compared to prior success…
Descriptors: Regression (Statistics), Concept Formation, Foreign Countries, Electromechanical Technology
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
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Gray, C. G. – American Journal of Physics, 1978
Provides an introduction to Debye potentials and simplified derivations of the multipole expansions of electrodynamic fields. (SL)
Descriptors: College Science, Electromechanical Technology, Higher Education, Instructional Materials
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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
Allen, John A.; Hays, Robert T. – 1984
A study focused on answering questions about fidelity levels of maintenance training simulators in a relatively simple electromechanical troubleshooting task. Two aspects of simulator fidelity were manipulated: physical fidelity and functional fidelity. The paid participants in the study were 100 male and female college undergraduates at George…
Descriptors: Adult Education, Adult Vocational Education, Armed Forces, Electromechanical Technology
Hamilton, Howard B. – 1970
This publication was developed as a portion of a two-semester sequence commencing at either the sixth or seventh term of the undergraduate program in electrical engineering at the University of Pittsburgh. The materials of the two courses, produced by a National Science Foundation grant, are concerned with power conversion systems comprising power…
Descriptors: College Science, Curriculum Development, Electricity, Electromechanical Technology
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide offers information and procedures necessary to train electromechanical engineering technicians. Discussed first are the rationale and objectives of the curriculum. The occupational field of electromechanical engineering technology is described. Next, a curriculum model is set forth that contains information on the standard…
Descriptors: Classroom Techniques, Course Content, Course Descriptions, Curriculum Development
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide offers information and procedures necessary to train mechanical engineering technicians. Discussed first are the rationale and objectives of the curriculum. The occupational field of mechanical engineering technology is described. Next, a curriculum model is set forth that contains information on the standard mechanical engineering…
Descriptors: Classroom Techniques, Computer Oriented Programs, Course Content, Course Descriptions
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide outlines the rationale, content, and methodology of a three-part high technology program that was developed in Georgia to provide secondary school students with training in the areas of electronics and electromechanical and mechanical technologies. Discussed first are the Georgia Initiative, the impact of high technology and the role of…
Descriptors: Associate Degrees, Career Choice, Computer Oriented Programs, Cooperative Planning
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Electronic Industries Foundation, Washington, DC. – 1994
This manual identifies the standard skills required of a work-ready, entry-level electronics technician. It provides a valuable resource for these groups: students considering careers as electronics technicians; for counselors, educators, and administrators; and for employers. An introduction discusses use of the standards and includes two lists…
Descriptors: Basic Skills, Communications, Competence, Competency Based Education
Electronic Industries Foundation, Washington, DC. – 1994
This supplement to "Raising the Standard" details the knowledge and skills required to successfully achieve competence in each of the tasks identified in the standards manual. It is divided into five sections that correspond to the five skill categories for entry-level electronics technician: additional skills, desirable behavior and work habits,…
Descriptors: Basic Skills, Communications, Competence, Competency Based Education
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide offers information and procedures necessary to train electronics engineering technicians. Discussed first are the rationale and objectives of the curriculum. The occupational field of electronics engineering technology is described. Next, a curriculum model is set forth that contains information on the standard electronics engineering…
Descriptors: Classroom Techniques, Computer Oriented Programs, Course Content, Course Descriptions