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Aji, Mahardika Prasetya; Rahmawati, Ita; Imtinan, Nisrina; Wulandari, Yuvita Kiki; Yusmantoro; Priyanto, Aan – Physics Education, 2022
The momentum is often used to analyse the dynamics of the motion of an experimental interaction between objects. Meanwhile, the interaction force tends to be challenging to observe and obtain. In this study, a simple video-assisted experiment was used to observe the interaction forces during the interaction of two magnetic objects. The interaction…
Descriptors: Science Instruction, Mechanics (Physics), Motion, Science Experiments
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Pili, Unofre B. – Physics Education, 2020
Using Tracker, a popular video-based physics modeling tool, the position-time data of magnetically damped oscillations of a simple pendulum are acquired. Eddy currents are generated on an aluminum sheet as the magnetic pendulum bob passes over it and the induced magnetic field opposes that of the magnetic bob. This causes the damping. A…
Descriptors: Physics, Scientific Concepts, Motion, Magnets
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Alvarez, Gustavo; Schulte, Jurgen; Stockton, Geoffrey; Wheeler, David – Physics Education, 2018
The real power of calculus is revealed when it is applied to actual physical problems. In this paper, we present a calculus inspired physics experiment suitable for high school and undergraduate programs. A model for the theory of the terminal velocity of a falling body subject to a resistive force is developed and its validity tested in an…
Descriptors: Secondary School Science, Science Instruction, High Schools, Science Laboratories
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Erol, M.; Çolak, I. Ö. – Physics Education, 2018
This paper reports a simple magnetically driven oscillator, designed and resolved in order to achieve a better student understanding and to overcome certain instructional difficulties. The apparatus is mainly comprised of an ordinary spring pendulum with a neodymium magnet attached to the bottom, a coil placed in the same vertical direction, an…
Descriptors: Physics, Science Education, Scientific Concepts, Magnets
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Gaffney, Chris; Catching, Adam – Physics Teacher, 2016
The typical friction lab performed in introductory mechanics courses is usually not the favorite of either the student or the instructor. The measurements are not all that easy to make, and reproducibility is usually a troublesome issue. This paper describes the augmentation of such a friction lab with a study of the viscous drag on a magnet…
Descriptors: Magnets, Measurement Techniques, Science Instruction, Introductory Courses
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Kodejška, C.; Lepil, O.; Sedlácková, H. – Physics Education, 2018
This work deals with the experimental demonstration of coupled oscillators using simple tools in the form of mechanical coupled pendulums, magnetically coupled elastic strings or electromagnetic oscillators. For the evaluation of results the data logger Lab Quest Vernier and video analysis in the Tracker program were used. In the first part of…
Descriptors: Secondary School Science, High School Students, Mechanics (Physics), Motion
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Dib, Claudio – Physics Teacher, 2013
A major consequence of special relativity, expressed in the relation E[subscript 0] = mc[superscript 2], is that the total energy content of an object at rest, including its thermal motion and binding energy among its constituents, is a measure of its inertia, i.e., its mass. This relation was first stated by Einstein. He showed that, in order to…
Descriptors: Science Instruction, Scientific Concepts, Physics, Energy
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Kewei, Li; Jiahuang, Lin; Yang, Kang Zi; Liang, Samuel Yee Wei; Juan, Jeremias Wong Say – European Journal of Physics, 2011
The International Young Physicists' Tournament (IYPT) is a worldwide, annual competition for high school students. This paper is adapted from the winning solution to Problem 14, Magnetic Spring, as presented in the final round of the 23rd IYPT in Vienna, Austria. Two magnets were arranged on top of each other on a common axis. One was fixed, while…
Descriptors: Magnets, Motion, Mechanics (Physics), Science Instruction
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Wong, H. K. – Physics Teacher, 2009
The strong Nd[subscript 2]Fe[subscript 14]B permanent magnet has facilitated development of various fascinating yet simple homopolar motors. However, the physics of these devices is often not explained, or is explained incorrectly. A major concern is that Newton's third law was overlooked in some of the earlier articles. In this paper, I will…
Descriptors: Magnets, Motion, Physics, Science Instruction
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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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Andrews, David L.; Romero, Luciana C. Davila – European Journal of Physics, 2009
The dynamical behaviour of simple harmonic motion can be found in numerous natural phenomena. Within the quantum realm of atomic, molecular and optical systems, two main features are associated with harmonic oscillations: a finite ground-state energy and equally spaced quantum energy levels. Here it is shown that there is in fact a one-to-one…
Descriptors: Mechanics (Physics), Motion, Inferences, Quantum Mechanics
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Essen, Hanno – European Journal of Physics, 2009
The equations of motion for electromechanical systems are traced back to the fundamental Lagrangian of particles and electromagnetic fields, via the Darwin Lagrangian. When dissipative forces can be neglected the systems are conservative and one can study them in a Hamiltonian formalism. The central concepts of generalized capacitance and…
Descriptors: Motion, Magnets, Energy, Physics
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Gsponer, Andre – European Journal of Physics, 2009
The objective of this introduction to Colombeau algebras of generalized functions (in which distributions can be freely multiplied) is to explain in elementary terms the essential concepts necessary for their application to basic nonlinear problems in classical physics. Examples are given in hydrodynamics and electrodynamics. The problem of the…
Descriptors: Physics, Computation, Scientific Concepts, Science Instruction
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Brueningsen, Christopher A. – Physics Teacher, 1993
Studies magnetic oscillation using an air track. Ceramic magnets are attached to the cart and also are used as dampeners in place of the springs. The resulting oscillations are fairly sinusoidal and is a good example of simple harmonic motion. (MVL)
Descriptors: Computer Uses in Education, Magnets, Mechanics (Physics), Motion