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Holz, Christoph; Pusch, Alexander – Physics Education, 2020
Powerbanks differ in the amount of energy they can store. Usually this capacity (in a colloquial sense) of the powerbanks is stated in the form of charge in mAh for effective advertising. From a physical point of view, shouldn't the energy that a powerbank can provide be of interest? For students, charging smartphones with power banks is…
Descriptors: Power Technology, Energy, Physics, Computer Uses in Education
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Adodo, S. O.; Adewole, Timothy – Journal on School Educational Technology, 2013
This study investigated acquired and required competencies in interactive computer technology (ICT) in labour data were collected from employers' and employees'. The study is a descriptive research of the survey type. The population of the study consisted of unemployed graduates, employed graduates and various parastatal where graduates seek for…
Descriptors: Employers, Labor Market, Information Technology, Foreign Countries
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Shahnia, Farhad; Moghbel, Moayed; Yengejeh, Hadi Hosseinian – IEEE Transactions on Education, 2016
This paper presents several methods for motivating students taking a power system protection (PSP) course. The paper reviews the laboratory activities developed for the PSP course at Curtin University, Australia; these methods are applicable and can be used for PSP course instruction at any institution. These activities were developed to improve…
Descriptors: Student Motivation, Engineering Education, Power Technology, Undergraduate Students
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Choi, Sanghun; Saeedifard, M. – IEEE Transactions on Education, 2012
This paper describes a new educational power electronics laboratory that was developed primarily to reinforce experimentally the fundamental concepts presented in a power electronics course. The developed laboratory combines theoretical design, simulation studies, digital control, fabrication, and verification of power-electronic circuits based on…
Descriptors: Electronics, Power Technology, Laboratories, Engineering Education