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Moon, Su Jin; Chen, Yu; Lee, Jiwon; Jung, Pyung Kang; Cho, Youngsaeng; Kim, Jung Bog – Physics Education, 2021
Students are well aware that when an electric current flows through a light bulb, it glows. As their grade increases, they have understood that electric current flows because electric charges move. Since the transfer of electric charges is not visible, students have many cognitive difficulties in understanding this process, and teaching materials…
Descriptors: Physics, Visualization, Energy, Light
Singh, I.; Khun, K. Khun; Kaur, B.; Kaur, H.; Singh, T. – Physics Education, 2021
This paper describes a way to simulate and visualise 3D representations of the resultant electric field vector propagation for plane, circular and elliptically polarised waves. These polarisation states are obtained by the superposition of two coherent linearly polarised waves oscillating in two mutually perpendicular directions. The required data…
Descriptors: Computer Simulation, Visualization, Physics, Scientific Concepts
Perea Martins, J. E. M. – Physics Education, 2021
This work presents two electronic systems experiments with resonance tubes, which generate automatically a sequence of several sound wave frequencies in a range defined by the user and then verifies the amplitude of each one in real-time, allowing for the immediate data visualization in a graph. Besides, they save all the frequency values and the…
Descriptors: Design, Electronics, Laboratory Experiments, Acoustics
Veith, Sonja Isabel; Friege, Gunnar – Physics Education, 2021
Sound is an interesting topic for physics lessons at all ages. However, it is difficult to illustrate this ubiquitous phenomenon and many models do not adequately represent the properties of sound and thus promote unwanted conceptions. The experiment presented here avoids this by visualising sound itself with the help of the schlieren technique.…
Descriptors: Acoustics, Visualization, Physics, Water
Oss, Stefano – Physics Education, 2021
An apparatus of the 70s for measuring thermal conductivity in different materials is used to visualize, through an infrared thermal imaging approach, temperature fields and the heat diffusion process. The observed temperature profiles also suggest solid grounds for a fair mathematical modelling of this phenomenon.
Descriptors: Science Equipment, Measurement Equipment, Heat, Visualization
Hughes, Theo; Kersting, Magdalena – Physics Education, 2021
Recently, the physics education community has taken a keen interest in modernising physics education. However, while topics in modern physics have great potential to engage students, these topics are abstract and hard-to-visualise. Therefore, many students hold mistaken pictures and misconceptions, which can impede learning. In this article, we…
Descriptors: Physics, Scientific Concepts, Time, Misconceptions
Stolzenberger, Christoph; Frank, Florian; Trefzger, Thomas – Physics Education, 2022
With the help of augmented reality apps objects and text can be added virtually to the physical world (e.g. physical experiments) in real time. The augmented reality (AR) app 'PUMA: "Spannungslabor"' enhances simple electric circuits experiments for students with virtual representations based on the electron gas analogy including…
Descriptors: Physics, Science Instruction, Energy, Artificial Intelligence
Acuña-Umaña, K.; Gómez-Quirós, Carla; Herrera-Sancho, Oscar Andrey – Physics Education, 2022
The implementation of theatre as a didactic tool for teaching science provides a new perspective on the importance of interdisciplinary approaches in the construction of meaningful learning experiences. Gamification and collaborative work are functional strategies to teach scientific concepts in a creative way. However, there are still conceptual…
Descriptors: Teaching Methods, Science Instruction, Theater Arts, Interdisciplinary Approach