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Cesin-AbouAtme, Tania; Lopez-Almeida, CelesteG.; Molina-Labastida, Geronimo; Ibanez, Jorge G. – Journal of Chemical Education, 2021
Due to social distancing constraints during the COVID-19 pandemic, several experiments were designed in the Fall 2020 and Spring 2021 semesters in our Electrochemistry and Corrosion elective course to demonstrate electrochemical phenomena and applications at the students' homes with a kit sent by the school. We report here a student-designed…
Descriptors: Light, Energy, Magnets, Science Experiments
Yan, Peizheng; Xia, Haojie; Li, Jianquan; Wang, Yonghong; Wei, Yongqing; Ji, Feng; Shu, Shuangbao – Physics Teacher, 2019
Light polarization, which is the direction of electromagnetic field oscillation, provides information that is highly different from that of spectral and intensity images and thus can enhance various fields of optical metrology. Polarization imaging can be also used by combining polarization and imaging, thereby providing polarization and spatial…
Descriptors: Telecommunications, Handheld Devices, Light, Energy
Rice, E. M.; Bradshaw, D. S.; Saadi, K.; Andrews, D. L. – European Journal of Physics, 2012
The spatial variation in phase and the propagating wave-front of plane wave electromagnetic radiation are widely familiar text-book territory. In contrast, the developing amplitude and phase of radiation emitted by a dipole or multipole source generally receive less attention, despite the prevalence of these systems. There is additional complexity…
Descriptors: Science Instruction, Radiation, Energy, Magnets
Robles, P.; Claro, F. – European Journal of Physics, 2012
Among the most startling experiences a student encounters is learning that, unlike electrons and other elementary particles, photons have no mass. Under certain circumstances, however, the light quantum behaves as if it did have a finite mass. Starting from Maxwell's equations, we discuss how this arises when light interacts with a charged plasma,…
Descriptors: Physics, Scientific Concepts, Science Instruction, Energy
Rudolph, Alexander L. – Astronomy Education Review, 2013
The increasing use of interactive learning [IL] strategies in Astro 101 classrooms has led some instructors to consider the usefulness of a textbook in such classes. These strategies provide students a learning modality very different from the traditional lecture supplemented by reading a textbook and homework and raise the question of whether the…
Descriptors: Science Instruction, Astronomy, Textbooks, Teaching Methods
Smith, Glenn S. – European Journal of Physics, 2011
Thought experiments involving a light clock are common in introductory treatments of special relativity, because they provide a simple way of demonstrating the non-intuitive phenomenon of time dilation. The properties of the ray or pulse of light that is continuously reflected between the parallel mirrors of the clock are often stated vaguely and…
Descriptors: Scientific Concepts, Energy, Magnets, Physics
Pujol, O.; Perez, J. P. – European Journal of Physics, 2007
The aim of this paper is to propose a synthetic approach to the transfer matrix method in classical and quantum physics. This method is an efficient tool to deal with complicated physical systems of practical importance in geometrical light or charged particle optics, classical electronics, mechanics, electromagnetics and quantum physics. Teaching…
Descriptors: Optics, Quantum Mechanics, Teaching Methods, Science Instruction
Peer reviewedNicklin, R. C., Ed. – American Journal of Physics, 1975
Descriptors: Astronomy, College Science, Electronics, Light
Peer reviewedAmerican Journal of Physics, 1978
Describes experiments demonstrating the Josephson effect, single-file diffusion in biological membranes, refractive index of beer, lines of magnetic fields, indexing diffraction patterns, Maxwell's equations, and spherical aberration. (SL)
Descriptors: College Science, Demonstrations (Educational), Diffusion, Higher Education
Peer reviewedSantarelli, Vincent – American Journal of Physics, 1979
Derives a familiar torque-angular momentum theorem for the electromagnetic field, and includes the intrinsic torques exerted by the fields on the polarized medium. This inclusion leads to the expressions for the intrinsic angular momentum carried by the radiation traveling through a charge-free medium. (Author/MA)
Descriptors: College Science, Electricity, Higher Education, Instructional Materials
Peer reviewedVan Heuvelen, Alan – Physics Teacher, 1983
In response to a question, "Why not use a magnetic or electric field to deflect light?," reviews the relation between electric charge and electric/magnetic fields. Discusses the Faraday effect, (describing matter as an intermediary in the rotation of the place of polarization) and other apparent interactions of light with electric/magnetic fields.…
Descriptors: College Science, Electricity, Force, High Schools
Trefil, James S. – 1983
This 12-chapter book examines different phenomena as viewed by those trained in physics. These views (or vistas) are promulgated to demonstrate that the infinite variety of things seen in the material world can be reduced to a handful of general laws and to share with the public the richness of the scientist's world view. The phenomena examined…
Descriptors: College Science, Electricity, Energy, Heat
Peer reviewedMinnix, Richard B.; Carpenter, D. Rae, Jr., Eds. – Physics Teacher, 1982
Thirteen demonstrations using a capacitor-start induction motor fitted with an aluminum disk are described. Demonstrations illustrate principles from mechanics, fluids (Bernoulli's principle), waves (chladni patterns and doppler effect), magnetism, electricity, and light (mechanical color mixing). In addition, the instrument can measure friction…
Descriptors: Acceleration (Physics), College Science, Demonstrations (Educational), Electricity

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