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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
Elliott, Leslie Atkins; Bolliou, André; Irving, Hanna; Jackson, Douglas – Physics Teacher, 2019
The Gaussian gun is an arrangement of magnets and ball bearings (pictured in Fig. 1) such that--when the leftmost ball is released--the rightmost ball is ejected at high speeds. The device has been described in several articles on energy education. The sudden appearance of kinetic energy offers a productive context for considering a range of…
Descriptors: Physics, Magnets, Energy, Kinetics
Becker, Sebastian; Thees, Michael; Kuhn, Jochen – Physics Teacher, 2018
A magnetic linear accelerator (or Gauss accelerator) is a device that uses the conversion of magnetic energy into kinetic energy to launch an object with high velocity. A simple experimental implementation consists of a line of steel spheres in which the first one is a permanent magnetic sphere. If another steel ball collides with the magnetic…
Descriptors: Equipment, Magnets, Energy, Kinetics
Temiz, Burak Kagan; Yavuz, Ahmet – Physics Education, 2016
This paper presents a method to measure the movement of an object from specific locations on a straight line using an iPhone's magnetometer. In this method, called "magnetogate," an iPhone is placed on a moving object (in this case a toy car) and small neodymium magnets are arranged at equal intervals on one side of a straight line. The…
Descriptors: Handheld Devices, Telecommunications, Magnets, Motion
Brown, D. S. – Physics Education, 2009
The Sun's atmosphere is a highly structured but dynamic place, dominated by the solar magnetic field. Hot charged gas (plasma) is trapped on lines of magnetic force that can snap like an elastic band, propelling giant clouds of material out into space. A range of ground-based and space-based solar telescopes observe these eruptions, particularly…
Descriptors: Physics, Science Instruction, Astronomy, Scientific Principles
Hecking, Patrick C. – Physics Teacher, 2007
In electric or mixed electric-mechanic systems, the distinction between potential and kinetic energy is not as clear as in purely mechanical systems. A solution for the motion of an inductively loaded rail generator is presented. In this case, the magnetic field energy (1/2)Li[superscript 2] can be written "formally" in terms of a potential…
Descriptors: Science Instruction, Motion, Magnets, Scientific Principles
Mader, Jan; Winn, Mary – AAPT Press (BK), 2008
This book is designed to be a quick and easy resource for anyone teaching physics for the first time. Written after extensive research, this book is filled with reliable labs, demos and activities that work well in the classroom. Also included are lesson plans, diagrams, and teacher notes for every activity. The book is not the end--it is just a…
Descriptors: Optics, Motion, Physics, Science Instruction
Peer reviewedRossing, Thomas D.; Hull, John R. – Physics Teacher, 1991
Discusses the principles of magnetic levitation presented in the physics classroom and applied to transportation systems. Topics discussed include three classroom demonstrations to illustrate magnetic levitation, the concept of eddy currents, lift and drag forces on a moving magnet, magnetic levitation vehicles, levitation with permanent magnets…
Descriptors: Electricity, High Schools, Kinetics, Magnets

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