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Vincent Casamayou; Bruno Bousquet; Justin Dillmann; Nathan Salin; Jean-Paul Guillet; Lionel Canioni; Martin Hachet – Discover Education, 2025
Practical work in optics is essential to understand complex abstract phenomena. Consequently, hands-on experiments are part of most physics' curricula, despite the fact that they can be hard to set up and maintain. In this article, we present a virtual laboratory tool, called SHIRE, which allows students to carry out optical experiments from a…
Descriptors: Hands on Science, Science Experiments, Science Curriculum, Physics
Bruno Bousquet; Martin Hachet; Vincent Casamayou; Erwan Normand; Jean-Paul Guillet; Lionel Canioni – Discover Education, 2024
HOBIT, which stands for "Hybrid Optical Bench for Innovative Teaching and learning" is an educational platform that leverages the combination of numerical simulation and physical manipulation to facilitate learning of complex phenomena and motivate users about wave optics in practical work. HOBIT operates in real time and is…
Descriptors: Physics, Scientific Concepts, Optics, Science Education
Zheng, Yuan; Huang, Zewei; Yang, Yanbin – Physics Teacher, 2021
As intriguing optical phenomena that occur in nature, mirages are widely known and often mentioned in physics classes when introducing the basics of optics. In the atmosphere, a mirage occurs under the condition of vertical variations in air density, which are usually caused by a temperature gradient. The light rays are continuously refracted and…
Descriptors: Physics, Science Instruction, Optics, Teaching Methods
Daniel Laumann; Paul Schlummer; Adrian Abazi; Rasmus Borkamp; Jonas Lauströer; Wolfram Pernice; Carsten Schuck; Reinhard Schulz-Schaeffer; Stefan Heusler – Journal of Science Education and Technology, 2024
For nearly two decades, augmented reality (AR) has found diverse applications in education, particularly in science education, where its efficacy has been supported by relevant theories and many empirical studies. However, previous studies have revealed the following research deficit: While AR technology appears to influence learning-related…
Descriptors: Computer Simulation, Physics, Science Laboratories, Science Experiments
Coramik, Mustafa; Özdemir, Erdogan – Physics Education, 2021
In this study, it is aimed to develop practical teaching activities that can be used in optics teaching. For this purpose, a virtual laboratory environment was created in RayLab which is an application for design and simulation of optics on the iPad/iPhone. In this context, the dispersion of white light in the prism, the relationship between the…
Descriptors: Science Instruction, Optics, Physics, Teaching Methods
Krumphals, Ingrid – Physics Education, 2019
The main objective of this paper is to provide an explanation on a conceptual level of how the Mirascope and the occurring image formation work. The physics behind a Mirascope--a well-known device consisting of two concave mirrors--is very complex. In literature, only either high level or very simplified and deficient explanations can be found.…
Descriptors: Physics, Measurement Equipment, Science Equipment, Optics
Teichrew, Albert; Erb, Roger – Physics Education, 2020
Real situations are overlaid with virtual information using augmented reality technology. In a learning environment, this technology could give everyday relevance to abstract concepts. In this paper, we will show how physical structures in typical experiments can be simply augmented by virtual objects in physics classes. This is achieved by…
Descriptors: Science Instruction, Computer Software, Educational Technology, Telecommunications
Richtberg, Stefan; Girwidz, Raimund – Physics Teacher, 2017
References to everyday life are important for teaching physics. Discussing polarization phenomena, liquid crystal displays (LCDs) and 3D cinemas provide such references. In this paper we describe experiments to support students' understanding of linearly polarized light as well as the phenomenon of inverted colors using a secret LCD screen.…
Descriptors: Physics, Science Instruction, Scientific Concepts, Science Experiments
Facao, M.; Lopes, A.; Silva, A. L.; Silva, P. – European Journal of Physics, 2011
We propose an undergraduate numerical project for simulating the results of the second-order correlation function as obtained by an intensity interference experiment for two kinds of light, namely bunched light with Gaussian or Lorentzian power density spectrum and antibunched light obtained from single-photon sources. While the algorithm for…
Descriptors: Computer Simulation, Optics, Mathematics, Quantum Mechanics
Ovalle, V.; Otomar, D. R.; Pereira, J. M.; Ferreira, N.; Pinho, R. R.; Santos A. C. F. – European Journal of Physics, 2008
This paper describes some computer-based activities to bring the study of charged particle optics to undergraduate students, to be performed as a part of a one-semester accelerator-based experimental course. The computational simulations were carried out using the commercially available SIMION program. The performance parameters, such as the focal…
Descriptors: Computer Simulation, Optics, College Science, Science Experiments
Sise, Omer; Manura, David J.; Dogan, Mevlut – European Journal of Physics, 2008
The interactive nature of computer simulation allows students to develop a deeper understanding of the laws of charged particle optics. Here, the use of commercially available optical design programs is described as a tool to aid in solving charged particle optics problems. We describe simple and practical demonstrations of basic electrostatic…
Descriptors: Computer Simulation, Optics, Science Instruction, Molecular Structure
Findley, T.; Yoshida, S.; Norwood, D. P. – European Journal of Physics, 2007
A three-dimensional pendulum, modelled after the Laser Interferometer Gravitational-Wave Observatory's suspended optics, was constructed to investigate the pendulum's dynamics due to suspension point motion. In particular, we were interested in studying the pendular-pitch energy coupling. Determination of the pendular's Q value (the quality factor…
Descriptors: Models, Optics, Laboratory Equipment, Motion
Cowley, Les; Laven, Philip; Vollmer, Michael – Physics Education, 2005
Atmospheric optical effects can teach much about physics and especially optics. Coronae--coloured rings around the sun or moon--are large-scale consequences of diffraction, which is often thought of as only a small effect confined to the laboratory. We describe coronae, how they are formed and experiments that can be conducted on ones in the sky.…
Descriptors: Optics, Laboratory Experiments, Science Experiments, Science Instruction

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