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Morris, Steven L. – Physics Teacher, 2022
It is difficult for an instructor to just make up valid numbers for B[subscript x], B[subscript y], B[subscript z], E[subscript x], E[subscript y], and E[subscript z] in the creation of homework problems and test questions calculating the Poynting vector. In this paper, 25 examples are given of the electric and magnetic fields of electromagnetic…
Descriptors: Science Instruction, Physics, Energy, Magnets
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Hernandez, Eder; Campos, Esmeralda; Barniol, Pablo; Zavala, Genaro – Physical Review Physics Education Research, 2023
Electricity and magnetism are closely related phenomena with a well-known symmetry found in Maxwell equations. An essential part of any electricity and magnetism course includes the analysis of different field source distributions through Gauss's and Ampere's laws to compute and interpret different physical quantities, such as electric flux,…
Descriptors: Energy, Magnets, Science Instruction, Scientific Concepts
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Taylor, Richard – Physics Teacher, 2021
Science and engineering students in the second semester of a calculus-based physics sequence typically study and measure the on-axis magnetic field for a multiple, circular turn coil. There are four benefits to this approach: 1) an analytical solution is easily obtained, 2) the coil is easily constructed using tightly wound, high-gauge wire where…
Descriptors: Science Instruction, Engineering Education, Physics, Magnets
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Lincoln, James – Physics Teacher, 2019
There have been a few methods described in this journal and elsewhere for measuring the wavelength of the standing electromagnetic waves in a microwave oven. Typically, these involve melting chocolate, cheese, or some other substance on a plate that is prevented from rotating. In this article I describe a more dynamic and colorful technique that…
Descriptors: Physics, Science Instruction, Visualization, Scientific Concepts
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Campos, Esmeralda; Hernandez, Eder; Barniol, Pablo; Zavala, Genaro – Physical Review Physics Education Research, 2023
Identifying students' difficulties in understanding Gauss's and Ampere's laws is important for developing educational strategies that promote an expertlike understanding of the field concept and Maxwell's equations of electromagnetic phenomena. This study aims to analyze and compare students' understanding of symmetry when applying Gauss's and…
Descriptors: Scientific Principles, Teaching Methods, Scientific Concepts, Concept Formation
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Nogueira, J. Robert; Alves, Ricardo; Marques, P. Carmona – Education Sciences, 2019
In this study we have attempted, firstly, to describe programming protocols developed for the teaching of an Electromagnetism course in the university degrees of Electrical Engineering and Energy Engineering, and secondly, to evaluate students' satisfaction with the simulation practices through MATLAB® programming. The main objective of the…
Descriptors: Computation, Programming, Teaching Methods, Scientific Concepts
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Bollen, Laurens; van Kampen, Paul; Baily, Charles; De Cock, Mieke – Physical Review Physics Education Research, 2016
Many students struggle with the use of mathematics in physics courses. Although typically well trained in rote mathematical calculation, they often lack the ability to apply their acquired skills to physical contexts. Such student difficulties are particularly apparent in undergraduate electrodynamics, which relies heavily on the use of vector…
Descriptors: Science Instruction, Magnets, Energy, Semi Structured Interviews
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Abdul-Razzaq, Wathiq; Biller, R. Dale; Wilson, Thomas H. – Physics Education, 2015
There is no doubt that integrated concepts inspire students and take learning to a new level. As we fly, we fly through the magnetic field of the Earth. We used the concepts involved in flying to develop an exercise that bonds geology, physics and life sciences.
Descriptors: Science Instruction, Scientific Concepts, Magnets, Physics
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Buschauer, Robert – Physics Teacher, 2014
In undergraduate E&M courses the magnetic field due to a finite length, current-carrying wire can be calculated using the Biot-Savart law. However, to the author's knowledge, no textbook presents the calculation of this field using the Ampere-Maxwell law: ?B [multiplied by] dl = µ[subscript 0] (I + e[subscript 0] dF/dt) [multiplied by] 1
Descriptors: Science Instruction, College Science, Undergraduate Study, Magnets
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Ismail, Yilmaz – International Journal of Educational Administration and Policy Studies, 2016
This study aims to develop a semiotic declarative knowledge model, which is a positive constructive behavior model that systematically facilitates understanding in order to ensure that learners think accurately and ask the right questions about a topic. The data used to develop the experimental model were obtained using four measurement tools…
Descriptors: Science Instruction, Semiotics, Grade 1, Elementary School Science
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Pritchard, Benjamin P.; Simpson, Scott; Zurek, Eva; Autschbach, Jochen – Journal of Chemical Education, 2014
A computational experiment investigating the [superscript 1]H and [superscript 13]C nuclear magnetic resonance (NMR) chemical shifts of molecules with unpaired electrons has been developed and implemented. This experiment is appropriate for an upper-level undergraduate laboratory course in computational, physical, or inorganic chemistry. The…
Descriptors: Science Instruction, College Science, Undergraduate Study, Molecular Structure
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Taylor, Stephen; Leus, Vladimir – European Journal of Physics, 2012
The magneto-kinematic effect has been previously observed for the case of a rotating permanent magnet. Using this effect, this paper presents a novel method for calculation of the induced electromotive force (EMF) in a conductor for the case of rectilinear motion of a 25.4 mm diameter permanently magnetized sphere (magnetic dipole) past the…
Descriptors: Physics, Computation, Magnets, Energy
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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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Fan, Yale – European Journal of Physics, 2011
We examine a generalization of the one-dimensional Ising model involving interactions among neighbourhoods of "k" adjacent spins. The model is solved by exploiting a connection to an interesting computational problem that we call ""k"-SAT on a ring", and is shown to be equivalent to the nearest-neighbour Ising model in the absence of an external…
Descriptors: Models, Science Instruction, College Science, Computation
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Cid-Vidal, Xabier; Cid, Ramon – Physics Education, 2011
Proton beams have been colliding at 7 TeV in the Large Hadron Collider (LHC) since 30 March 2010, meaning that the LHC research programme is underway. Particle physicists around the world are looking forward to using the data from these collisions, as the LHC is running at an energy three and a half times higher than previously achieved at any…
Descriptors: Physics, Astronomy, Science Instruction, Energy
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