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Regester, Jeffrey – Physics Teacher, 2016
A bridge rectifier is a diamond-shaped configuration of diodes that serves to convert alternating current(AC) into direct current (DC). In our world of AC outlets and DC electronics, they are ubiquitous. Of course, most bridge rectifiers are built with regular diodes, not the light-emitting variety, because LEDs have a number of disadvantages. For…
Descriptors: Light, Lighting, Electronics, Science Experiments
Jensen, Bogi B.; Abrahamsen, Asger B.; Sorensen, Mads P.; Hansen, Jorn B. – Online Submission, 2013
In this paper, a course on applied superconductivity is described. The course structure is outlined and the learning objectives and the learning activities are described. The teaching was multidisciplinary given by four departments each contributing with their expertise. Being applied superconductivity, the focus was on an application, which could…
Descriptors: Foreign Countries, Teaching Methods, Curriculum Development, Class Activities
Enikov, E. T.; Campa, G. – IEEE Transactions on Education, 2012
This paper presents a low-cost hands-on experiment for a classical undergraduate controls course for non-electrical engineering majors. The setup consists of a small dc electrical motor attached to one of the ends of a light rod. The motor drives a 2-in propeller and allows the rod to swing. Angular position is measured by a potentiometer attached…
Descriptors: Computer Assisted Instruction, Synchronous Communication, Programming, Computer Science Education
Dallas, T.; Berg, J. M.; Gale, R. O. – IEEE Transactions on Education, 2012
This paper describes the goals, pedagogical system, and educational outcomes of a three-semester curriculum in microelectromechanical systems (MEMS). The sequence takes engineering students with no formal MEMS training and gives them the skills to participate in cutting-edge MEMS research and development. The evolution of the curriculum from…
Descriptors: Outcomes of Education, Competition, Curriculum Development, Manufacturing
Bauer, P.; Rompelman, O. – European Journal of Engineering Education, 2005
Present engineering has to deal with increasingly complex systems. In particular, this is the case in electrical engineering. Though this is obvious in microelectronics, also in the field of power systems engineers have to design, operate and maintain highly complex systems such as power grids, energy converters and electrical drives. This is…
Descriptors: Animation, Engineering Education, Engineering, Engineering Technology
Illinois Univ., Urbana. – 1971
The report describes in detail the Electronics Technology Curriculum Development Project, a two-year electronics technology program with six core courses (three in circuit analysis and three in fundamentals of electronics) and an introduction to electronics technology course. Two chapters present the operation, scope, and objectives of the project…
Descriptors: Audiovisual Aids, Computer Assisted Instruction, Computer Science, Curriculum Development
Lodahl, Dan – 1989
This learning module for a postsecondary electronics course in solid state circuits is designed to help teachers lead students through electronics troubleshooting. The module is intended to be used for a second-semester technical college course for electromechanical technology majors. The module introduces students to semiconductor devices and…
Descriptors: Behavioral Objectives, Classroom Techniques, Course Content, Electric Circuits
Cincinnati Public Schools, OH. – 1972
The career exploration program for grades 9 through 10, as part of a comprehensive K through 10 career development program, attempts to develop an awareness of and appreciation for work, extend knowledge of the variety of career opportunities, and provide experiences in career areas of individual interest. The document, a collection of materials…
Descriptors: Career Development, Career Education, Career Exploration, Curriculum Guides
Solanik, Chuck – 1984
This guide is intended to help teachers give preparatory instruction in the development of basic manipulative skills, safety practices, technical knowledge, and related industrial information in order to prepare students for useful employment in the field of electronics. This second-year guide contains 7 units organized into 21 lesson plans. Each…
Descriptors: Business Skills, Career Education, Classroom Techniques, Communications