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Showing 1 to 15 of 40 results Save | Export
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Hughes, Stephen; Wegener, Margaret; Gurung, Som – Physics Education, 2022
In this paper, a simple method is described for visually demonstrating that the wavelength of light reduces when entering a medium of higher refractive index. When a violet laser (405 nm) is reflected off the surface of a Blu-ray disc (track spacing 320 nm) diffraction cannot occur since the wavelength is greater than the track spacing. However,…
Descriptors: Science Instruction, Physics, Light, Lasers
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Bestari, L. F.; Sarwanto; Pujayanto; Syam, W. P.; Harjunowibowo, D. – Physics Education, 2022
Light spectrum dispersion is an exciting subject in science because of its beautiful atmospheric colour phenomenon which attracts students. However, to see the phenomenon is not easy since it needs a spectrometer, which is commonly expensive. Therefore, the present study aims to describe a low-cost spectrometer for investigating lighting spectrum…
Descriptors: Light, Lighting, Computer Software, Measurement
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Listiaji, Prasetyo – Physics Education, 2022
The current pandemic era demands distance learning, including physics experiments on the topic of optics. One of the optical phenomena that needs to be explained in optic courses is fluorescence. This study offers a simple home experiment regarding the application of fluorescence, namely to identify the purity of olive oil using simple…
Descriptors: Science Instruction, Science Experiments, Physics, Optics
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Hughes, Stephen; Alkhazraji, Sultan; Zhang, Xiangyu; Nadarajah, Helen; Goodwin, Candice Michelle; Leisemann, Scott; Evason, Chris; Potter, Darryl – Physics Education, 2021
Diffraction is an important phenomenon in physics. This paper describes using a scanning electron microscope (SEM) to produce cross-sectional images of iridescent seashells. When seashell cross-sections are viewed in a SEM, regular structure is seen. Seashells are a good example of a biocomposite material and good natural objects for introducing…
Descriptors: Physics, Science Instruction, Teaching Methods, Case Studies
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Silveira, M. V.; Barthem, R. B.; Santos, A. C. F. – Physics Education, 2020
This work presents an experiment that seeks to simulate human color vision through electronic components in an attempt to build, together with the students, a cybernetic 'eye'. The limitation of the cybernetic eye developed here in relation to the standard human chromatic vision, which makes it a 'colorblind eye', is an argument to be explored by…
Descriptors: Science Experiments, Color, Vision, Genetic Disorders
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Malisorn, Khemchira; Wicharn, Surawut; Plaipichit, Suwan; Pipatpanukul, Chinnawut; Houngkamhang, Nongluck; Puttharugsa, Chokchai – Physics Education, 2020
This paper demonstrates the use of smartphones in an experiment of light absorption and light scattering. The LED display and camera of the smartphone are used as the light source and as the detector, respectively. The color wheel is used to choose the color of the light source to be shone through the sample for analysis. The detector directly…
Descriptors: Light, Scientific Concepts, Telecommunications, Handheld Devices
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Ermis, Ferhat; Karaman, Ibrahim – Physics Education, 2020
This study provides information about the formation of colours with an experimental activity based on the reflection of coloured lights from pigments. The activity shows the formation of colour in a simple and entertaining way. The lights are reflected by being changed by different coloured pigments. This activity provides an opportunity to…
Descriptors: Color, Light, Science Instruction, Scientific Concepts
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Yurumezoglu, Kemal – Physics Education, 2020
In this article, a consecutive series of four hands-on experiments are recommended to teach the colors of paint/pigment and their mixtures. These activities, which are effective in learning about how to make a simple observation and help to build argument-based knowledge about colors, offer an integrated and innovative way of teaching colors of…
Descriptors: Physics, Hands on Science, Educational Innovation, Light
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Vollmer, Michael; Mustard, Alexander – Physics Education, 2019
Water can exhibit many different colors due to a variety of physical properties. Here, we focus on some observable colors within very pure freshwater. We only treat the absorption of light due to electronic and ro-vibrational excitations and scattering due to refractive index fluctuations of the water and the respective consequences for the…
Descriptors: Science Instruction, Color, Light, Scientific Concepts
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Theilmann, Florian – Physics Education, 2022
Ever since Newton's groundbreaking work on the composed nature of light, additive colour mixing (and its laws) are subject to the interest of physicists as well as other sciences. In this paper, we present a setup for simple lab or home experiments on additive colour mixing and the laws of colour mixing. Students use the screen of a laptop or…
Descriptors: Science Instruction, Science Experiments, Hands on Science, Physics
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Puttharugsa, Chokchai; Srikhirin, Toemsak; Pipatpanukul, Chinnawut; Houngkamhang, Nongluck – Physics Education, 2021
This paper demonstrates the use of a smartphone as a low-cost multi-channel optical fibre spectrophotometer suitable for physics laboratory classes. A custom-designed cradle and structure support were fabricated using 3D printing. The plastic optical fibres were arranged and inserted into the hole of the cradle to guide the light to the rear…
Descriptors: Telecommunications, Handheld Devices, Educational Technology, Technology Uses in Education
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Hughes, Stephen; Evason, Chris; Baldwin, Shelley; Nadarajah, Helen; Leisemann, Scott; Wright, Susan – Physics Education, 2020
STEM is about the integration of science, technology, engineering and mathematics. To teach STEM effectively, students need practical examples of subject integration. A good example is the use of an electron microscope in teaching physics and biology. An electron microscope is an instrument in which the operation depends on electromagnetism and…
Descriptors: STEM Education, Laboratory Equipment, Physics, Biology
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Yurumezoglu, Kemal; Karabey, Burak; Koyunkaya, Melike Yigit – Physics Education, 2017
Full shadows, partial shadows and multilayer shadows are explained based on the phenomenon of the linear dispersion of light. This paper focuses on progressing the understanding of shadows from physical and mathematical perspectives. A significant relationship between light and color pigments is demonstrated with the help of the concept of sets.…
Descriptors: Physics, Science Instruction, Scientific Concepts, Light
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Petit, Matthieu; Michez, Lisa; Raimundo, Jean-Manuel; Dumas, Philippe – Physics Education, 2016
Semiconductor materials are at the core of electronics. Most electronic devices are made of semiconductors. The operation of these components is well described by quantum physics which is often a difficult concept for students to understand. One of the intrinsic parameters of semiconductors is their bandgap energy E[subscript g]. In the case of…
Descriptors: Science Instruction, Physics, Mechanics (Physics), Quantum Mechanics
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Karabey, Burak; Koyunkaya, Melike Yigit; Enginoglu, Turan; Yurumezoglu, Kemal – Physics Education, 2018
This study explored the theory and applications of complementary colors using a technology-based activity designed from the perspective of STEAM education. Complementary colors and their areas of use were examined from the perspective of physics, mathematics and art, respectively. The study, which benefits from technology, makes the theory of…
Descriptors: Physics, Science Instruction, Color, Educational Technology
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