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Shahnia, Farhad; Yengejeh, Hadi Hosseinian – IEEE Transactions on Education, 2019
Contribution: This paper introduces the real-world limitations and non-technical aspects of power electronics (PEs) projects to students through innovative tutorial activities. Background: Many electrical engineering curricula offer a PE courses (PECs) for third- or fourth-year undergraduate students. Prior research on PEs education mainly focused…
Descriptors: Power Technology, Engineering Education, Undergraduate Students, Electronics
Harrison, Mark – Physics Education, 2017
Earth wires and fuses work together in UK mains circuits to keep users safe from electric shocks and are taught in many school contexts. The subject can be quite abstract and difficult for pupils to grasp, and a simple but visually clear and direct demonstration is described which would be easy for most physics departments to build and which can…
Descriptors: Demonstrations (Educational), Electronics, Energy Education, Power Technology
Cheng, Ka Wai Eric; Chan, Chung Lun – Education Sciences, 2019
A remote-controlled experiment for power electronics was developed for a virtual laboratory. Power converter experiments were set up, allowing students to conduct a remote-controlled experiment with special hardware and electric power. Students can activate parameter controls, connect wires, and tune electric load conditions with preset electronic…
Descriptors: Electronics, Engineering Education, Virtual Classrooms, Undergraduate Students
Hosseinzadeh, N.; Hesamzadeh, M. R. – IEEE Transactions on Education, 2012
Project-based learning (PBL), a learning environment in which projects drive learning, has been successfully used in various courses in the educational programs of different disciplines. However, concerns have been raised as to the breadth of the content covered and, in particular, whether PBL can be applied to specialized subjects without…
Descriptors: Foreign Countries, Instructional Design, Followup Studies, Electronics
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
Manitoba Dept. of Education, Winnipeg. – 1983
This guide for industrial arts grades 7-9 provides teachers with a curriculum for the subject cluster of power/energy. An "Overview" section presents the rationale, discusses how the content of the program is related to the developmental stages of the adolescent, describes the structure of the industrial arts program, and lists program goals and…
Descriptors: Behavioral Objectives, Curriculum Guides, Electricity, Electronics
Alberta Learning, Edmonton. Apprenticeship and Industry Training. – 2002
This document presents information about the apprenticeship training program of Alberta, Canada, in general and the communication technician program in particular. The first part of the document discusses the following items: Alberta's apprenticeship and industry training system; the apprenticeship and industry training committee structure; local…
Descriptors: Apprenticeships, Computer Networks, Course Content, Electricity