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Showing 76 to 90 of 105 results Save | Export
Ohio State Univ., Columbus. National Center for Research in Vocational Education. – 1982
This plan of instruction, lesson plans, workbooks, study guides, and programmed texts for a secondary-postsecondary course for electricians comprise one of a number of military-developed curriculum packages selected for adaptation to vocational instruction and curriculum development in a civilian setting. It contains the first two blocks of a…
Descriptors: Alarm Systems, Behavioral Objectives, Course Descriptions, Curriculum Guides
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Singh, Vandana – Physics Teacher, 2010
Several misconceptions abound among college students taking their first general physics course, and to some extent pre-engineering physics students, regarding the physics and applications of electric circuits. Analogies used in textbooks, such as those that liken an electric circuit to a piped closed loop of water driven by a water pump, do not…
Descriptors: Physics, Energy, Misconceptions, Science Activities
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Rizhov, Alexander – Physics Education, 2011
There is a remarkable difference between formal knowledge and true understanding of the subject. While the former helps students earn top grades, the latter is crucial to the solution of real-world problems. An excellent example is the computation of capacitance, with which some students have difficulty. Also, most textbooks limit problem analysis…
Descriptors: World Problems, Problem Solving, Physics, Science Education
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Gibson, Frank – Primary Science Review, 1998
Describes two approaches to science, one that abandons hypothesis as a result of experiment, and one that remains faithful to an explanation in spite of all evidence to the contrary. Relates an experience in which the experimental evidence contradicted a physics principle. (CCM)
Descriptors: Higher Education, Misconceptions, Physics, Preservice Teachers
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Smaill, C. R.; Rowe, G. B.; Godfrey, E.; Paton, R. O. – IEEE Transactions on Education, 2012
In response to demands from industry and the profession for more graduates, first-year engineering numbers have grown considerably over the last decade, matched by an increasing diversity of academic backgrounds. In order to support first-year students effectively, and ensure the courses they take remain appropriately pitched, the academic…
Descriptors: Evidence, Investigations, Diagnostic Tests, Graduates
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Joglekar, Yogesh N.; Wolf, Stephen J. – European Journal of Physics, 2009
We present an introduction to and a tutorial on the properties of the recently discovered ideal circuit element, a memristor. By definition, a memristor M relates the charge "q" and the magnetic flux [phi] in a circuit and complements a resistor R, a capacitor C and an inductor L as an ingredient of ideal electrical circuits. The properties of…
Descriptors: Physics, Engineering, Energy, Electronics
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Mayer, Richard E.; Johnson, Cheryl I. – Journal of Educational Computing Research, 2010
Students learned about electrical circuits in an arcade-type game consisting of 10 levels. For example, in one level students saw two circuits consisting of various batteries and resistors connected in series or parallel, and had to indicate which one had a higher rate of moving current. On levels 1-9, all students received a correct tone and had…
Descriptors: Feedback (Response), Educational Games, Experiential Learning, Science Instruction
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Ucak, C.; Yegin, K. – European Journal of Physics, 2008
Infinite ladder circuits are often encountered in undergraduate electrical engineering and physics curricula when dealing with series and parallel combination of impedances, as a part of filter design or wave propagation on transmission lines. The input impedance of such infinite ladder circuits is derived by assuming that the input impedance does…
Descriptors: Engineering Education, Energy, Physics, Science Instruction
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Lietz, Martha – Physics Teacher, 2007
Teachers have been building mystery circuits or so-called "black box circuits" to use as a demonstration with their students for years. This paper presents an easy way to make simple mystery circuits using inexpensive light fixtures (see Fig. 1) available at almost any home improvement store. In a black box circuit, only the lightbulbs are visible…
Descriptors: Science Instruction, Light, Physics, Energy
Küçüközer, Hüseyin; Kocakülah, Sabri – Online Submission, 2007
The aim of this study is to reveal secondary school students' misconceptions about simple electric circuits and to define whether specific misconceptions peculiar to Turkish students exist within those identified. Data were obtained with a conceptual understanding test for simple electric circuits and semi-structured interviews. Conceptual…
Descriptors: Secondary School Students, Misconceptions, Electronic Equipment, Semi Structured Interviews
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Morse, Robert A. – Physics Teacher, 1993
Equipped with drinking straws and stirring straws, a teacher can help students understand how resistances in electric circuits combine in series and in parallel. Follow-up suggestions are provided. (ZWH)
Descriptors: Electric Circuits, Electricity, Physics, Science Activities
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Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This individualized learning module on parallel alternating current resistive-reaction circuits is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian…
Descriptors: Electric Circuits, Electricity, Electronics, Individualized Instruction
Schlenker, Richard M. – 1977
Presented is a secondary level physics unit which introduces students to electrical resistance in series and parallel combinations, use of the voltmeter and ammeter, wiring simple circuits, and writing scientific reports. (SL)
Descriptors: Electricity, Instructional Materials, Laboratory Experiments, Laboratory Procedures
Bureau of Naval Personnel, Washington, DC. – 1974
The Progress Check Booklet is designed to be used by the student working in the programed course to determine if he has mastered the concepts in the course booklets on: electrical current; voltage; resistance; measuring current and voltage in series circuits; relationships of current, voltage, and resistance; parellel circuits; combination…
Descriptors: Electricity, Electronics, Individual Testing, Individualized Instruction
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Ong, P. P. – Physics Teacher, 1983
Describes a method of network analysis that allows avoidance of Kirchoff's Laws (providing the network is symmetrical) by reduction to simple series/parallel resistances. The method can be extended to symmetrical alternating current, capacitance or inductance if corresponding theorems are used. Symmetric cubic network serves as an example. (JM)
Descriptors: College Science, Electric Circuits, Electricity, Electronics
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