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Christoph Hoyer; Raimund Girwidz – Physical Review Physics Education Research, 2024
Vector fields are a highly abstract physical concept that is often taught using visualizations. Although vector representations are particularly suitable for visualizing quantitative data, they are often confusing, especially when describing real fields such as magnetic and electric fields, as the vector arrows can overlap. The present study…
Descriptors: Science Instruction, Teaching Methods, Physics, Scientific Concepts
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
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
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
Richards, A. J. – Physics Teacher, 2020
As students learn physics, they are often required to reason about the behavior of macroscopic and microscopic phenomena, and to synthesize prior knowledge from several different areas of physics to construct understanding of new ideas. This can be a tremendously difficult cognitive task for novice students, especially when the unfamiliar…
Descriptors: Science Instruction, Physics, Visualization, Science Process Skills
Rinaldi, R. Gustav; Fauzi, Ahmad – Physics Education, 2020
The recent works of oscillators are mainly focused on underdamped oscillation. Therefore, the writer proposes an experimental apparatus to demonstrate all types of damped harmonic oscillation. The apparatus utilizes an Arduino for data acquisition and an Excel spreadsheet for data analysis. By using this apparatus, the type of damped harmonic…
Descriptors: Science Instruction, Science Experiments, Measurement Techniques, Physics
Martinez-Maldonado, Roberto; Schulte, Jurgen; Echeverria, Vanessa; Gopalan, Yuveena; Shum, Simon Buckingham – Journal of Computer Assisted Learning, 2020
The term "Classroom Proxemics" refers to how teachers and students use classroom space, and the impact of this and the spatial design on learning and teaching. This study addresses the divide between, on the one hand, substantial work on proxemics based on classroom observations and, on the other hand, emerging work to design automated…
Descriptors: Space Utilization, Classroom Design, Learning Analytics, Visualization
Weiler, David; Bewersdorff, Arne – Physics Teacher, 2019
The Metapendulum is a combination of both the simple gravity pendulum and the spring pendulum. Both excite each another and, therefore, can be used as an example of mechanical resonance phenomena. The data of a smartphone's accelerometer can be used to record the acceleration of the pendulum during the oscillation movement. With that, the…
Descriptors: Visualization, Handheld Devices, Telecommunications, Physics
Lincoln, James – Physics Teacher, 2019
There have been a few methods described in this journal and elsewhere for measuring the wavelength of the standing electromagnetic waves in a microwave oven. Typically, these involve melting chocolate, cheese, or some other substance on a plate that is prevented from rotating. In this article I describe a more dynamic and colorful technique that…
Descriptors: Physics, Science Instruction, Visualization, Scientific Concepts
Davidovic, Milena D.; Markovic-Topalovic, Tatjana; Sliško, Josip; Božic, Mirjana – Physics Teacher, 2020
In the same chapter of his book "Opera Geometrica," Torricelli published two discoveries: 1) initial velocity of a jet from a container increases with the square root of the depth of the hole; 2) he drew the pattern of jets from three openings at the wall of a container filled with water to constant level "H" and determined the…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
Semilarski, Helen; Soobard, Regina; Holbrook, Jack; Rannikmäe, Miia – International Journal of STEM Education, 2022
Background: The goal of this research was to determine students' perceived self-efficacy in science classes through involving students in expanding disciplinary core idea (DCI) and interdisciplinary core idea (ICI) maps, as a method to visualize knowledge (utilizing mind mapping and concept mapping) to support students to integrate…
Descriptors: Self Efficacy, Science Education, Interdisciplinary Approach, Concept Mapping
Gearhart, Bradley; MacIsaac, Dan – Physics Teacher, 2020
Light rays refract when passing through pockets of transparent fluids with different indices of refraction such as ordinary air pockets of varying temperature. This phenomenon makes night stars twinkle, distorts views above hot asphalt roads and hot barbeque grills, and provides an opportunity for visualizing the normally invisible movement of…
Descriptors: Light, Physics, Science Instruction, Visualization
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
Richards, A. J. – Physics Teacher, 2019
As students learn physics, they are often required to reason about the behavior of macroscopic and microscopic phenomena, and to synthesize prior knowledge from several different areas of physics to construct understanding of new ideas. This can be a tremendously difficult cognitive task for novice students, especially when the unfamiliar…
Descriptors: Physics, Science Instruction, Teaching Methods, Visualization
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2020
To study the absorption of ultrasound in plexiglas we propose to use gadgets that are available to each student: an ultrasound humidifier, a liquid crystal display of a pad, a polaroid analyzer, a digital camera, a multimeter with thermocouple, and a stopwatch. These devices allow us to visualize a region in plexiglas where ultrasound is absorbed…
Descriptors: Science Instruction, Physics, Science Laboratories, Scientific Concepts