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Behroozi, F. – Physics Teacher, 2018
With the wide availability of strong neodymium magnets, the slow and stately fall of a magnet through a conducting pipe has become a favorite classroom demo for teaching electromagnetic induction, Newton's third law, and Lenz's law. Since Lenz's law is conceptually difficult for some students, several authors have used this demo to explore in…
Descriptors: Magnets, Science Instruction, Scientific Principles, Energy
Papadouris, Nicos; Constantinou, Constantinos P. – International Journal of Science Education, 2017
Promoting facility with content knowledge is one of the most important objectives of science teaching. Conventionally, the focus for this objective is placed on the substantive side of content knowledge (e.g. science concepts/laws), whereas its epistemic or ontological aspects (e.g. why do we construct concepts?) rarely receive explicit attention.…
Descriptors: Science Teachers, Pedagogical Content Knowledge, Science Instruction, Epistemology
Buschauer, Robert – Physics Teacher, 2014
In undergraduate E&M courses the magnetic field due to a finite length, current-carrying wire can be calculated using the Biot-Savart law. However, to the author's knowledge, no textbook presents the calculation of this field using the Ampere-Maxwell law: ?B [multiplied by] dl = ยต[subscript 0] (I + e[subscript 0] dF/dt) [multiplied by] 1
Descriptors: Science Instruction, College Science, Undergraduate Study, Magnets
Jimenez, J. L.; Campos, I.; Lopez-Marino, M. A. – European Journal of Physics, 2011
We explore the consequences of a force density, [image omitted], studied by some authors, for the device designed by Lai (1980 "Am. J. Phys. 48" 658) to analyse which definition of electromagnetic momentum density, either Minkowski's or Abraham's, is consistent with mechanical torques that arise from the change in time of a magnetic field, which…
Descriptors: Science Instruction, Magnets, Physics, Scientific Principles
Chen, Zijun; Dahlberg, E. Dan – Physics Teacher, 2011
After the discovery that superconducting magnets could levitate diamagnetic objects, researchers became interested in measuring the repulsion of diamagnetic fluids in strong magnetic fields, which was given the name "The Moses Effect." Both for the levitation experiments and the quantitative studies on liquids, the large magnetic fields necessary…
Descriptors: Physics, Science Instruction, Water, Magnets
Featonby, David – Physics Education, 2010
This article examines several readily available "magic tricks" which base their "trickery" on physics principles, and questions the use of the word "magic" in the 21st century, both in popular children's science and in everyday language. (Contains 18 figures.)
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Donoso, G.; Ladera, C. L.; Martin, P. – European Journal of Physics, 2010
A system of two magnets hung from two vertical springs and oscillating in the hollows of a pair of coils connected in series is a new, interesting and useful example of coupled oscillators. The electromagnetically coupled oscillations of these oscillators are experimentally and theoretically studied. Its coupling is electromagnetic instead of…
Descriptors: Magnets, Physics, Science Instruction, Energy
Narjaikaew, Pattawan; Emarat, Narumon; Arayathanitkul, Kwan; Cowie, Bronwen – International Journal of Science and Mathematics Education, 2010
The study investigated the impact on student motivation and understanding of magnetism of teaching sequences based on an inductive approach. The study was conducted in large lecture classes. A pre- and post-Conceptual Survey of Electricity and Magnetism was conducted with just fewer than 700 Thai undergraduate science students, before and after…
Descriptors: Teaching Methods, Student Motivation, Magnets, Science Instruction
Browne, Kerry; Jackson, David P. – Physics Teacher, 2007
The principles of magnetism are a common topic in most introductory physics courses, yet curricular materials exploring the behavior of permanent magnets and magnetic materials are surprisingly rare in the literature. We reviewed the literature to see how magnetism is typically covered in introductory textbooks and curricula. We found that while…
Descriptors: Textbooks, Physics, Science Experiments, Magnets
Rowland, D. R. – European Journal of Physics, 2007
The physical analysis of a uniformly accelerating point charge provides a rich problem to explore in advanced courses in electrodynamics and relativity since it brings together fundamental concepts in relation to electromagnetic radiation, Einstein's equivalence principle and the inertial mass of field energy in ways that reveal subtleties in each…
Descriptors: Physics, Scientific Concepts, Advanced Courses, Science Activities
Guisasola, Jenaro; Almudi, Jose M.; Furio, Carlos – Science & Education, 2005
This study aims to analyse, based on common characteristics of the Nature of Science, how first year university Physics textbooks present the introduction of the concept and theories of magnetic field. It shows that despite the increasing number of studies into the Nature of Science in Science Education, Physics textbooks fail to adopt the results…
Descriptors: Textbooks, Scientific Principles, Physics, Science Instruction
Abiko, Seiya – Science & Education, 2005
Einstein, who had already developed the light-quantum theory, knew the inadequacy of Maxwell's theory in the microscopic sphere. Therefore, in writing his paper on special relativity, he had to set up the light-velocity postulate independently of the relativity postulate in order to make the electromagnetic foundation of physics compatible with…
Descriptors: Thermodynamics, Quantum Mechanics, Motion, Science Instruction

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