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Kye, Hannah – Science and Children, 2019
In this article, second graders learn the basics of engineering through an exploration of magnetic levitation (maglev) technology. The author designed and taught the lessons to a class of 26 students enrolled in a month-long summer science program. The maglev lessons took place over three mornings (15 minutes for the first lesson and 40 minutes…
Descriptors: Grade 2, Engineering Education, Magnets, Summer Science Programs
Corbett, Lisa; Maklad, Rania; Dunne, Mick; Grace, Pierre – Primary Science, 2014
During a final seminar with BA year 4 science specialist trainee teachers, the authors posed a question about the difficulties associated with understanding magnetism. The ensuing discussion focused on a number of concerns commonly identified by students, which may also be of interest to classroom teachers teaching magnetism. Issues raised…
Descriptors: Science Instruction, Elementary School Science, Magnets, Scientific Concepts
Leonov, A. B. – European Journal of Physics, 2012
It is known that observers comoving with a uniformly accelerated point charge detect the electromagnetic field of a charge as a static electric field. We show that one can find a similar family of observers, which detect the field of a charge as a static electric field, in the general case of arbitrary point-charge motion. We find the velocities…
Descriptors: Energy, Graduate Students, College Science, Science Instruction
Yochum, Hank; Vinion-Dubiel, Arlene; Granger, Jill; Lindsay, Lynne; Maass, Teresa; Mayhew, Sarah – Science and Children, 2013
Engaging children in authentic investigation opens the doors for them to gain deep conceptual understanding in science. As students engage in investigation, they experience the practices employed by scientists and engineers, as highlighted in the Next Generation Science Standards (Achieve Inc. 2013). They also begin to understand the nature of…
Descriptors: Science Instruction, Magnets, Energy, Scientific Concepts
Kholmetskii, Alexander L.; Missevitch, Oleg V.; Yarman, T. – European Journal of Physics, 2011
We analyse the force acting on a moving dipole due to an external electromagnetic field and show that the expression derived in Vekstein (1997 "Eur. J. Phys." 18 113) is erroneous and suggest the correct equation for the description of this force. We also discuss the physical meaning of the relativistic transformation of current for a closed…
Descriptors: Physics, Magnets, Energy, Motion
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
Boohan, Richard – School Science Review, 2011
Over the last few decades, smart materials have become increasingly important in the design of products. Essentially, a smart material is one that has been designed to respond to a stimulus, such as a change in temperature or magnetic field, in a particular and useful way. This article looks at a range of smart materials that are relatively…
Descriptors: Technology, Stimuli, Heat, Mechanics (Physics)
Ladera, Celso L.; Donoso, Guillermo – European Journal of Physics, 2011
A short conducting pipe that hangs from a weak spring is forced to oscillate by the magnetic field of a surrounding coaxial coil that has been excited by a low-frequency current source in the presence of an additional static magnetic field. Induced oscillating currents appear in the pipe. The pipe motion becomes damped by the dragging forces…
Descriptors: Science Activities, Student Projects, Motion, College Science
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
Chittasirinuwat, O.; Kruatong, T.; Paosawatyanyong, B. – Physics Education, 2011
The magnetic gun was chosen as a hands-on activity for our high school students. When conducting this activity in the classroom, we found some interesting points were raised following difficulties encountered by the students. Some students proposed that during the collision, the magnet changed its pole then it pushed the last ball out of the…
Descriptors: Weapons, Kinetics, Physics, Energy
Naab, Laurie; Henry, David – Science and Children, 2009
Using Wiggins and McTighe's (1998) concept of Big Ideas, the authors planned and designed an electricity investigation to address common student misconceptions about static electricity. With Styrofoam plates and transparent tape, elementary students investigated many properties of electrically charged and uncharged objects in a 5E learning cycle…
Descriptors: Science Activities, Investigations, Misconceptions, Energy
Baylie, M.; Ford, P. J.; Mathlin, G. P.; Palmer, C. – Physics Education, 2009
The jumping ring experiment has become central to liquid nitrogen shows given as part of the outreach and open day activities carried out within the University of Bath. The basic principles of the experiment are described as well as the effect of changing the geometry of the rings and their metallurgical state. In general, aluminium rings are…
Descriptors: Chemistry, Science Activities, Foreign Countries, Science Instruction
Phillips, Jeffrey A.; Sanny, Jeff – Physics Teacher, 2008
In this paper, we discuss a simple apparatus and accompanying class activity that we have developed to illustrate the Biot-Savart law. Since students in introductory electricity and magnetism courses often find this law a mathematical mystery, we feel that a simple experiment such as this will provide the students a better understanding of the…
Descriptors: Energy, Science Instruction, Laboratory Equipment, Science Activities
Barry, Reno – Physics Teacher, 2008
Electric Motorboat Drag Racing is a culminating high school physics project designed to apply and bring to life many content standards for physics. Students need to be given several weeks at home to design and build their model-sized electric motorboats for the 5-meter drag racing competition down rain gutters. In the process, they are discussing…
Descriptors: Physics, Hands on Science, Science Activities, Student Motivation
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
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