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Showing 1 to 15 of 36 results Save | Export
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Billingsley, Brianna R.; Christenson, Cory W. – Physics Teacher, 2022
A popular introductory physics laboratory experiment is one focusing on Snell's law. This is straightforward to complete with lasers and prisms, but here we present an alternative version that guides the students through some of the major historical developments, recreating and analyzing significant experiments. The discovery of Snell's law has a…
Descriptors: Physics, Science Laboratories, Laboratory Experiments, Scientific Principles
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Ekkens, Tom – Physics Teacher, 2022
In many introductory physics classes, diffraction of light is introduced first, then more advanced diffraction topics such as x-ray diffraction, Bragg's law, and crystallography are covered. Since using x-rays raises safety concerns and atomic spacing in a crystal is not easy to change, microwaves with macroscopic crystals have been used to study…
Descriptors: Data Collection, Physics, Science Education, Introductory Courses
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Niu, Zeyu Jason; Luo, Duanbin – Physics Teacher, 2022
In recent years, with the more powerful functions of smartphones, the use of sensors integrated by mobile phones as an auxiliary tool for physical experiment teaching has become more popular. Combined with the related mobile phone apps, people easily can develop and expand the physical experiment contents of mechanics, optics, acoustic phenomena,…
Descriptors: Measurement, Science Instruction, Physics, Acoustics
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Singh, Sushil Kumar; Kashyap, Jaya Shivangani; Rajwani, Priyanka; Kaur, Savinda – Physics Education, 2019
Understanding reflection and refraction are an integral part of school and college learning. In nature even birds and fish (Archer fish) very skillfully use refraction to strike down prey present above or below the water surface. Fermat's principle allows one to look beyond the reasons behind the laws governing the reflection and refraction. A…
Descriptors: Scientific Concepts, Scientific Principles, Computer Assisted Instruction, Science Experiments
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Ceuppens, S.; Deprez, J.; Dehaene, W.; De Cock, M. – Physics Education, 2018
To improve the teaching and learning materials for a curriculum it is important to incorporate the findings from educational research. In light of this, we present creative exercises and experiments to elicit, confront and resolve misconceptions in geometrical optics. Since ray diagrams can be both the cause and the solution for many…
Descriptors: Misconceptions, Optics, Creative Activities, Science Experiments
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Semay, Claude; Lo Bue, Francesco; Mélin, Soizic; Michel, Francis – Physics Education, 2018
In 1849, Hippolyte Fizeau determined the speed of light in a famous experiment. The idea was to measure the time taken for a pulse of light to travel between an intense light source and a mirror about 8 km away. A rotating cogwheel with 720 notches, that could be rotated at a variable speed, was used to chop the light beam and determine the flight…
Descriptors: Physics, Measurement, Scientific Principles, Light
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Grusche, Sascha – Physics Education, 2017
Lens imaging is a classic topic in physics education. To guide students from their holistic viewpoint to the scientists' analytic viewpoint, an image-based approach to lens imaging has recently been proposed. To study the effect of the image-based approach on undergraduate students' ideas, teaching experiments are performed and evaluated using…
Descriptors: Physics, Undergraduate Students, Science Experiments, Qualitative Research
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Ziegler, Max; Priemer, Burkhard – Physics Education, 2015
We demonstrate how the form of a plano-convex lens and a derivation of the thin lens equation can be understood through simple physical considerations. The basic principle is the extension of the pinhole camera using additional holes. The resulting images are brought into coincidence through the deflection of light with an arrangement of prisms.…
Descriptors: Optics, Scientific Concepts, Scientific Methodology, Scientific Principles
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D'Anna, Michele; Corridoni, Tommaso – Physics Teacher, 2015
Thin film interference manifests itself in a wide range of visually pleasing situations in everyday life (in the colored effects caused by a drop of oil on water, in soap bubbles, etc.) and is also involved in important technical applications (semi-reflecting mirrors, anti-reflection lenses, etc.). Yet, despite its familiarity, high school…
Descriptors: Science Experiments, Science Activities, High School Students, Scientific Concepts
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Mayer, V. V.; Varaksina, E. I. – Physics Education, 2014
Students form a more exact idea of the action of optical mirrors if they can observe the wave field being formed during reflection. For this purpose it is possible to organize model experiments with flexural waves propagating in thin elastic plates. The direct and round edges of the plates are used as models of plane, convex and concave mirrors.…
Descriptors: Optics, Acoustics, Models, Science Experiments
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Florian, Gabriel; Trocaru, Sorin; Florian, Aurelia-Daniela; Bâna, Alexandru-Dumitru – Acta Didactica Napocensia, 2015
The aim of the present article is to focus on the operational aspects referring to the actions--strategies and on the defined modalities of establishing educational objectives/competences. In the achievement of our work a special attention has been paid to the operational aspects of the learning process of the optical phenomena. There were carried…
Descriptors: Geometric Concepts, Geometry, Optics, Creative Activities
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Rodrigues, M.; Carvalho, P. Simeão – Physics Education, 2014
Since the invention and dissemination of domestic laser pointers, observing optical phenomena is a relatively easy task. Any student can buy a laser and experience at home, in a qualitative way, the reflection, refraction and even diffraction phenomena of light. However, quantitative experiments need instruments of high precision that have a…
Descriptors: Optics, Concept Teaching, Video Technology, Computer Software
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Riveros, H. G.; Rosenberger, Franz – Physics Education, 2012
This article discusses two "magic tricks" in terms of underlying optical principles. The first trick is new and produces a "ghost" in the air, and the second is the classical real image produced with two parabolic mirrors. (Contains 2 figure and 6 photos.)
Descriptors: Optics, Physics, Scientific Principles, Science Instruction
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Paleiov, Orr; Pupko, Ofir; Lipson, S. G. – Physics Education, 2011
We demonstrate Fermat's principle in optics by a simple experiment using reflection from an arbitrarily shaped one-dimensional reflector. We investigated a range of possible light paths from a lamp to a fixed slit by reflection in a curved reflector and showed by direct measurement that the paths along which light is concentrated have either…
Descriptors: Optics, Science Instruction, Science Experiments, Light
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Kawalec, Tomasz; Bartoszek-Bober, Dobroslawa – European Journal of Physics, 2012
An experimental setup allowing the observation of two-laser interference by the naked eye is described. The key concept is the use of an electronic phase lock between two external cavity diode lasers. The experiment is suitable both for undergraduate and graduate students, mainly in atomic physics laboratories. It gives an opportunity for…
Descriptors: Graduate Students, Optics, Laboratories, Lasers
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