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Adams, Al – Physics Teacher, 2007
Permanent magnets have long been used in both traditional laboratory exercises and in inquiry-based learning activities. These pedagogical applications are typically timed to correspond to the early coverage of magnetism in the second-semester sequence of introductory physics. At the initial level the concepts relate to the magnetic field of the…
Descriptors: Physics, Magnets, Motion, Scientific Principles
Gsponer, Andre – European Journal of Physics, 2007
A general and rigorous method to deal with singularities at the origin of a polar coordinate system is presented. Its power derives from a clear distinction between the radial distance and the radial coordinate variable, which makes that all delta functions and their derivatives are automatically generated, and ensures that the Gauss theorem is…
Descriptors: Energy, Magnets, Mechanics (Physics), Science Instruction
Barsan, V.; Cojocaru, S. – European Journal of Physics, 2007
Applications of a simple approximation of Bessel functions of integer order, in terms of trigonometric functions, are discussed for several examples from electromagnetism and optics. The method may be applied in the intermediate regime, bridging the "small values regime" and the "asymptotic" one, and covering, in this way, an area of great…
Descriptors: Undergraduate Study, Numbers, Optics, Trigonometry
Peer reviewedGee, B. – Physics Education, 1970
Descriptors: Biographies, Electricity, Magnets, Physics
Peer reviewedNussbaum, A. – Physics Education, 1972
Descriptors: College Science, Electricity, Magnets, Physics
Peer reviewedMyers, Earl D. – Science Teacher, 1971
Descriptors: Equipment Evaluation, Laboratory Equipment, Magnets, Physics
Ashbrook, Peggy – Science and Children, 2005
This month, "The Early Years" is focusing on magnets. The predicting and testing students do in this month's activity also relate to "Science and Children's" theme this issue, teaching the nature of science. Magnets are typically included in early childhood science curriculums because they are irresistible to children. Also, understanding that…
Descriptors: Scientific Principles, Science Curriculum, Investigations, Play
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
Hare, Jonathan; McCallie, Ellen – Physics Education, 2005
Outlined is a simple design for a working wave-powered electrical generator based on one made on the BBC "Rough Science" TV series. The design has been kept deliberately simple to facilitate rapid pupil/student involvement and most importantly so that there is much scope for their own ingenuity and ideas. The generator works on the principle of…
Descriptors: Scientific Principles, Science Activities, Physics, Secondary School Students
Peer reviewedClack, Jhules A. M.; Toepker, Terrence P. – Physics Teacher, 1990
Describes an experiment demonstrating Lenz's law by measuring a magnet falling through a copper tube compared to a nonmagnet falling. Presents diagrams and pictures showing the apparatus. (YP)
Descriptors: Computer Interfaces, Laboratory Equipment, Laboratory Experiments, Laboratory Procedures
Peer reviewedMichaelis, M. M.; Haines, C. M. – Physics Education, 1989
Describes several ways to partially levitate permanent magnets. Computes field line geometries and oscillation frequencies. Provides several diagrams illustrating the mechanism of the oscillation. (YP)
Descriptors: Computation, Magnets, Mathematical Formulas, Physics
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
Kipnis, Nahum – Science & Education, 2005
Ignoring the role of chance in science distorts the nature of the scientific process. Teachers can address this issue by means of several in-depth historical case studies, such as the discovery of electromagnetism by Oersted. Oersted was led to his lecture experiment by logic (two new hypotheses), but its success from the first trial was largely…
Descriptors: Science History, Logical Thinking, Science Instruction, Magnets

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