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Showing 1 to 15 of 29 results Save | Export
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Shafigh, Amir Abbas Eslami – Physics Education, 2021
In the transition from classical to modern physics, the idea of taking some certain quantities as distinct or bounded values and keeping the rest continuous has proved useful in dealing with many problems. In this paper we assume an upper bound on the velocity of classical particles and indicate that applying this assumption to electromagnetism…
Descriptors: Physics, Magnets, Motion, Introductory Courses
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Soares, A. A.; Reis, T. O. – Physics Education, 2019
Here we present an inexpensive proposal to experimentally study Faraday's law of induction. The experiment uses low-cost materials, a computer with a sound card and a smartphone, both running free software. A value proportional to the induced electromotive force is measured with the computer's sound card and the data related to the magnetic field…
Descriptors: Science Instruction, Scientific Principles, Magnets, Energy
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Bryant, Wesley; Baker, Blane – Physics Education, 2016
The concept of reactance in AC electrical circuits is often non-intuitive and difficult for students to grasp. In order to address this lack of conceptual understanding, classroom exercises compare the predicted resistance of a power tool, based on electrical specifications, to measured resistance. Once students discover that measured resistance…
Descriptors: Electronic Equipment, Class Activities, Scientific Concepts, Scientific Principles
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Cheng, Meng-Fei; Cheng, Yufang; Hung, Shuo-Hsien – Teaching Science, 2014
Based on our experience of teaching physics in middle and senior secondary school, we have found that students have difficulty in reasoning at the microscopic level. Their reasoning is limited to the observational level so they have problems in developing scientific models of magnetism. Here, we suggest several practical activities and the use of…
Descriptors: Thinking Skills, Magnets, Science Education, Computer Simulation
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Esposito, S. – Physics Education, 2011
This article comes from a question asked by a student of mine: if the Sun radiates energy in the form of electromagnetic waves, could they shift the Earth from its current orbit on a suitable timescale? The answer to such a question is apparently obvious and trivial. Nevertheless, it requires an instructive reasoning and interesting estimates of…
Descriptors: Scientific Principles, Science Instruction, Astronomy, Scientific Concepts
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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
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Kraftmakher, Yaakov – Physics Teacher, 2011
The "LCR" circuit is an important topic in the course of electricity and magnetism. Papers in this field consider mainly the forced oscillations and resonance. Our aim is to show how to demonstrate the free and self-excited oscillations in an "LCR" circuit. (Contains 4 figures.)
Descriptors: Demonstrations (Educational), Science Instruction, Electronics, Energy
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Baird, William H.; Hack, W. Nathan; Tran, Kiet; Vira, Zeeshan; Pickett, Matthew – Physics Teacher, 2011
A light-emitting diode (LED) and operational amplifier can be used as an affordable method to provide a digital output indicating detection of an intense light source such as a laser beam or high-output LED. When coupled with a microcontroller, the combination can be used as a multiple photogate and timer for under $50. A similar circuit is used…
Descriptors: Science Activities, Science Instruction, Light, Scientific Principles
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Taylor, Ken – Physics Teacher, 2011
Resonance effects are among the most intriguing phenomena in physics and engineering. The classical case of a mass-spring oscillator driven at its resonant frequency is one of the earliest examples that students encounter. Perhaps the most commonly depicted method of driving the vibrating system is mechanical. An alternative approach presented in…
Descriptors: Science Activities, Science Instruction, Scientific Principles, Magnets
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Feldman, Gerald – Physics Teacher, 2011
An operational understanding of Newton's third law is often elusive for students. Typical examples of this concept are given for contact forces that are closer to the students' everyday experience. While this is a good thing in general, the reaction force can sometimes be taken for granted, and the students can miss the opportunity to really think…
Descriptors: Scientific Principles, Science Instruction, Physics, Scientific Concepts
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Wong, Darren; Lee, Paul; Foong, See Kit – Physics Education, 2010
We investigate the electromagnetic induction phenomenon for a "falling," "oscillating" and "swinging" magnet and a coil, with the help of a datalogger. For each situation, we discuss the salient aspects of the phenomenon, with the aid of diagrams, and relate the motion of the magnet to its mathematical and graphical representations. Using various…
Descriptors: Thinking Skills, Energy, Magnets, Science Instruction
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Preti, Giovanni; de Felice, Fernando; Masiero, Luca – European Journal of Physics, 2009
When asked to explain the Galilean non-invariance of classical electromagnetism on the basis of pre-relativistic considerations alone, students--and sometimes their teachers too--may face an impasse. Indeed, they often argue that a pre-relativistic physicist could most obviously have provided the explanation "at a glance", on the basis of the…
Descriptors: Physics, Motion, Energy, Magnets
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Kraftmakher, Yaakov – European Journal of Physics, 2010
Experiments with an electric motor provide good opportunity to demonstrate some basic laws of electricity and magnetism. The aim of the experiments with a low-power dc motor is to show how the motor approaches its steady rotation and how its torque, mechanical power and efficiency depend on the rotation velocity. The tight relationship between the…
Descriptors: Engines, Energy, Science Experiments, Motion
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Sinacore, J.; Takai, H. – Physics Teacher, 2010
The simple pendulum has long been used to measure "g", the acceleration due to gravity, with a precision of a few percent. Achieving agreement with the accepted value of less than 1% is feasible in the high school laboratory, though it requires some care. The precision of the measurement is bound by how accurately the period and the pendulum…
Descriptors: High Schools, Laboratory Equipment, Telecommunications, Science Instruction
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Riveros, Hector G.; Betancourt, Julian – Physics Teacher, 2009
The use of multiple compasses to map and visualize magnetic fields is well-known. The magnetic field exerts a torque on the compasses aligning them along the lines of force. Some science museums show the field of a magnet using a table with many compasses in a closely packed arrangement. However, the very interesting interactions that occur…
Descriptors: Physics, Measurement Equipment, Science Instruction, Magnets
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