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Elizalde-Torres, J.; González-Cardel, M.; Vega-Murguía, E. J.; Castillo-González, I.; Rodríguez-Nava, M. – Physics Education, 2015
This paper presents the development of a conductive gel that can be used to measure the electrical potential differences on its surface, and has enough consistency to plot equipotential lines. It has a gelation time of less than 10 min, and is suitable for implementing learning experiences in a physics teaching laboratory in a 90 min session. To…
Descriptors: Science Instruction, Science Experiments, Physics, Energy
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Métioui, Abdeljalil; MacWillie, Mireille Baulu; Trudel, Louis – European Journal of Science and Mathematics Education, 2016
Qualitative research conducted with 237 pupils from Canada, France, and Morocco, between 10 and 12 years of age, on the setting and functioning of simple electric circuits, demonstrates that similar explanatory systems of the students. For this, we had given them a paper and pencil questionnaire of a sixty minutes duration. The first question was…
Descriptors: Science Education, Science Instruction, Elementary School Students, Elementary School Science
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Beate Reinertsen, Anne – Global Studies of Childhood, 2016
This is a sciencepoetical essay combining neurodidactics as an interdisciplinary research field representing an interface between neuroscience, didactics, and educational sciences with the potentials "in" and "with" recent post-constructivist and/or post-humanism, compostist, and multiparadigmatic theories of embodiment and…
Descriptors: Neurosciences, Interdisciplinary Approach, Research Methodology, Children
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Wang, Yi Hsuan – Educational Technology & Society, 2020
The study integrated learning technology and various e-learning materials to assist teachers in conducting project-based learning for a science course. The activities were designed for learning science concepts such as circuits and the symbols of electricity firstly, and then for applying the concepts to produce a scientific toy. The study…
Descriptors: Games, Books, Electronic Publishing, Computer Simulation
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Adam, Gina C.; Harlow, Danielle B.; Lord, Susan M.; Kautz, Christian H. – IEEE Transactions on Education, 2017
The concept of electric current is fundamental in the study of electrical engineering (EE). Students are often exposed to this concept in their daily lives and early in middle school education. Lower-division university courses are usually limited to the study of passive electronic devices and simple electric circuits. Semiconductor physics is an…
Descriptors: Engineering Education, Electronics, Scientific Concepts, Misconceptions
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Tsutsumanova, Gichka; Russev, Stoyan – European Journal of Physics Education, 2013
A simple experiment demonstrating the excitation of a standing wave in a metal string is presented here. Several tasks using the set-up are considered, which help the students to better understand the standing waves, the interaction between electric current and magnetic field and the resonance phenomena. This can serve also as a good lecture…
Descriptors: Science Experiments, Scientific Concepts, Physics, Demonstrations (Educational)
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Dvorak, L. – Physics Education, 2012
A simple charge indicator with bipolar transistors is described that can be used in various electrostatic experiments. Its behaviour enables us to elucidate links between 'static electricity' and electric currents. In addition it allows us to relate the sign of static charges to the sign of the terminals of an ordinary battery. (Contains 7 figures…
Descriptors: Energy, Science Instruction, Science Experiments, Measurement Equipment
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Planinšic, Gorazd; Etkina, Eugenia – Physics Teacher, 2014
LEDs, or light-emitting diodes, are cheap, easy to purchase, and thus commonly used in physics instruction as indicators of electric current or as sources of light (Fig. 1). In our opinion LEDs represent a unique piece of equipment that can be used to collect experimental evidence, and construct and test new ideas in almost every unit of a general…
Descriptors: Science Instruction, Physics, Light, Energy
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Greenslade, Thomas B., Jr. – Physics Teacher, 2011
Recently I wrote about the standard Weston meter movement, that is at the heart of all modern analogue current measurements. Now I will discuss other techniques used to measure electric current that, despite being based on valid physical principles, are largely lost in technological history.
Descriptors: Energy, Measurement Techniques, Science Instruction, Scientific Principles
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Koutandos, Spyridon – European Journal of Physics Education, 2013
In this article we examine cases of more classical and less classical nature compared to results found by quantum mechanics and attribute a form of Free Energy discontinuity for each case within a boundary layer. The concept of a boundary layer is broadened as to include areas of first or second variations of the Gibbs free energy. It is…
Descriptors: Science Instruction, Quantum Mechanics, Mechanics (Physics), Energy
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de Almeida, Maria José B. M.; Salvador, Andreia; Costa, Maria Margarida R. R. – Physical Review Special Topics - Physics Education Research, 2014
Aiming at a deep understanding of some basic concepts of electric circuits in lower secondary schools, this work introduces an analogy between the behavior of children playing in a school yard with a central lake, subject to different conditions, rules, and stimuli, and Drude's free electron model of metals. Using this analogy from the first…
Descriptors: Electronics, Secondary School Science, Scientific Concepts, Models
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Koponen, Ismo T.; Huttunen, Laura – Science & Education, 2013
In learning conceptual knowledge in physics, a common problem is the development and differentiation of concepts in the learning process. An important part of this development process is the re-organisation or re-structuring process in which students' conceptual knowledge and concepts change. This study proposes a new view of concept…
Descriptors: Science Instruction, Physics, Energy, Scientific Concepts
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Gupta, Ayush; Elby, Andrew; Conlin, Luke D. – Physical Review Special Topics - Physics Education Research, 2014
Many science education researchers have argued that learners' commitment to a substance (matter-based) ontology impedes the learning of scientific concepts that scientists typically conceptualize as processes or interactions, such as force, electric current, and heat. By this account, students' tendency to classify these entities as…
Descriptors: Physics, Elementary School Teachers, Elementary School Science, Science Instruction
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Lima, Fabio M. S. – Physics Teacher, 2015
When all parts of an electric circuit are at the same potential, no electric current flows and it is said to be in "equilibrium." Otherwise, a current will flow from the higher potential parts to the lower ones, as when we make contact between the plates of a charged capacitor. The resulting discharging process towards equilibrium is a…
Descriptors: Physics, Teaching Methods, Educational Practices, Scientific Concepts
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Koponen, Ismo T.; Kokkonen, Tommi – Frontline Learning Research, 2014
In learning conceptual knowledge in physics, a common problem is the incompleteness of a learning process, where students' personal, often undifferentiated concepts take on more scientific and differentiated form. With regard to such concept learning and differentiation, this study proposes a systemic view in which concepts are considered as…
Descriptors: Scientific Concepts, Physics, Prediction, Models
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