Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 11 |
Since 2016 (last 10 years) | 25 |
Since 2006 (last 20 years) | 52 |
Descriptor
Lasers | 246 |
Physics | 246 |
College Science | 135 |
Optics | 116 |
Science Education | 114 |
Higher Education | 90 |
Light | 87 |
Science Experiments | 74 |
Science Activities | 66 |
Science Equipment | 66 |
Science Instruction | 62 |
More ▼ |
Source
Author
Publication Type
Education Level
Higher Education | 19 |
Postsecondary Education | 8 |
High Schools | 4 |
Secondary Education | 4 |
Elementary Education | 2 |
Elementary Secondary Education | 1 |
Audience
Practitioners | 58 |
Teachers | 36 |
Students | 6 |
Researchers | 3 |
Community | 1 |
Location
United Kingdom | 3 |
Turkey | 2 |
Australia | 1 |
Italy | 1 |
Minnesota | 1 |
Morocco | 1 |
Portugal (Lisbon) | 1 |
Sweden | 1 |
United Kingdom (Great Britain) | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
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
Pal, Arnab; Panchadhyayee, Pradipta; Sahu, Kriti R.; Syam, Debapriyo – Physics Teacher, 2022
The refractive index is a number that governs how light changes its direction of propagation as it enters one material medium from another. This phenomenon is known as refraction and the angles of incidence and refraction of light, referred to the normal to the interface of the two media at the point of incidence, are related by Snell's law. The…
Descriptors: Science Instruction, Physics, Light, Scientific Concepts
Ratanavis, Amarin – Physics Education, 2022
A single-slit diffraction experiment in an introductory physics laboratory is generally comprised of a rectangular slit and a laser source. The laser beam is sent to the slit producing the well-known diffraction pattern on the screen. This paper proposes a simple modification of the single-slit diffraction experiment to increase student attention…
Descriptors: Science Instruction, Science Laboratories, Physics, Lasers
Harnish, Peter – Physics Teacher, 2021
Possibly the greatest irony of physics education is the difficulty of demonstrating optics in a visible way. The two most common solutions to this conundrum are to either use "all-inclusive" optical apparatuses, like a large-format camera, or to rely on classic ray-tracing diagrams. While the former looks elegant while demonstrating the…
Descriptors: Physics, Science Instruction, Optics, Visual Aids
Ludwig-Petsch, Kim; Hirth, Michael; Kuhn, Jochen – Physics Teacher, 2022
The typical sound of George Lucas' laser blaster in the "Star Wars" series is well known. What does a laser blaster in "Star Wars" sound like, and why? Here we show a simple way to produce this sound by using low-cost lab material, like a spring or a Slinky. Building on the work of Crawford, who analyzed the sound of a Slinky…
Descriptors: Science Instruction, Physics, Lasers, Acoustics
Chen, Yu; Kim, Hee Ra; Ahn, Yu Jin; Kim, Jung Bog – Physics Teacher, 2022
The laser pointer has been widely used to demonstrate some simple optics phenomena, like reflection, refraction, total reflection, and diffraction. However, the rays of laser light cannot be seen in the air because the scattered light is too weak. Many physics teachers use milk or smoke to visualize rays of laser light in physics labs, but it is…
Descriptors: Science Experiments, Physics, Optics, Light
Avvari, Ravi Kant – Physics Teacher, 2020
A diffraction grating is a plane surface having a large number of closely spaced slits running in parallel. When light of appropriate wavelength is incident on a diffraction grating it functions as a spectrometer, able to separate the light into its spectral components. Physical examples of interest for diffraction in the real world are…
Descriptors: Clothing, Light, Lasers, Science Instruction
Goev, Gosho; Velinov, Tzvetan – Physics Education, 2022
In this paper, we propose a simple yet generic and versatile method to measure the position of a moving body as a function of time. Apart from very basic equipment such as carts and wheels, only a laser pointer or a similar device and a smartphone are necessary. By attaching a source of light to a cart and video filming its movement on a…
Descriptors: Measurement Techniques, Science Instruction, Motion, Physics
Kaushal, Neerav; Nemiroff, Robert J. – Physics Education, 2019
A popular physics legend holds that scissors can cut paper with a speed faster than light. Here this counter-intuitive myth is investigated theoretically using four simple examples of scissors. For simplicity, all cases will involve a static lower scissors blade that remains horizontal just under the paper. In the first case, the upper blade will…
Descriptors: Physics, Misconceptions, Science Instruction, Geometry
Hughes, Stephen; Gurung, Som – Physics Education, 2021
Huygens' principle in which every point on a propagating wave acts like a point source of radiation is a foundation principle of physics. Normally, Huygens' principle is demonstrated by passing a wave, for example a water or light wave through an aperture comparable in size to the wavelength. In this paper, an experiment is described in which a…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Chiang, Chun-Ming; Cheng, Han-Yang – Physics Teacher, 2019
This study aims to measure Brewster's angle of glass and acrylic brick with an easy-to-obtain mobile application (app) by changing the tungsten light source to a red laser. The popularization of the smartphone has inspired many to use its various built-in sensors to carry out general physics experiments. Many others have adopted both a laser and a…
Descriptors: Physics, Science Instruction, Measurement, Telecommunications
Hachmi, Ali; El Hadi, Mohammed; Essaadaoui, Rachid; Mommadi, Omar; Ouariach, Abdelaziz; El Moussaouy, Abdelaziz – Physics Education, 2022
The Arduino board and its communication with several sensors are becoming more and more popular in the physical science community. They offer inspiring possibilities for learning different physical concepts. In this article, we focused on creating a very practical educational system for experimenting with diffraction of laser light and graphically…
Descriptors: Electronic Equipment, Physics, Science Instruction, Teaching Methods
Lincoln, James – Physics Teacher, 2018
The author has acquired a yellow laser with the specific wavelength of 589 nm. Because this is the first time such a laser has been discussed in this journal, I feel it is appropriate to provide a discussion of its function and capabilities. Normal laser safety should be employed, such as not pointing it into eyes or at people, and using eye…
Descriptors: Physics, Science Instruction, Lasers, Safety
Birriel, Jennifer J.; King, Damon – Physics Teacher, 2018
Fluorescence spectra excited by laser pointers have been the subject of several papers in "TPT". These papers all describe a fluorescence phenomenon in which the reflected laser light undergoes a change in color: this color change results from the combination of some partially reflected laser light and additional colors generated by…
Descriptors: Light, Radiation, Color, Lasers
Krulj, Ivana; Nešic, Ljubiša – Physics Education, 2019
Students often have difficulties comprehending situations in which wave characteristics of light are manifested. After teaching wave optics, we studied the level of understanding of reflective diffraction of light with a group of secondary school students, and the phenomenon of diffraction in general. We analysed the possibility of using…
Descriptors: Physics, Science Instruction, Reflection, High School Students