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Essiane, Salome Ndjakomo; Essama, Bedel Giscard Onana – Physics Education, 2022
The goal of this work is to build a low cost pedagogical device able to improve the comprehension of weather phenomena for African students in particular and in general for students across the world. This experimental and didactic device can be seen as an easy teaching tool to measure meteorological and climatic data. This structure is called a…
Descriptors: Weather, Science Instruction, Measurement Equipment, Climate
Ristanto, Sigit; Nugroho, Waskito; Sulistya, Eko; Suparta, Gede B. – Physics Education, 2022
Measuring the 3D position at any time of a given object in real-time automatically and well documented to understand a physical phenomenon is essential. Exploring a stereo camera in developing 3D images is very intriguing since a 3D image perception generated by a stereo image may be reprojected back to generate a 3D object position at a specific…
Descriptors: Science Instruction, Science Laboratories, Photography, Measurement Techniques
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
Chou, Naomi; Hsu, Chen-Chia; Shen, Ji-Lin – Physics Education, 2021
We show that the gravitational acceleration g near Earth's surface can be easily determined with high accuracy by conducting the usual free fall experiment in high school or college physics laboratories. Unlike the conventional method of data analysis that uses formulas without taking air resistance into account, we consider the effect of air drag…
Descriptors: Science Instruction, Science Experiments, Physics, Scientific Concepts
Bouquet, F.; Bobroff, J.; Kolli, A.; Organtini, G. – Physics Education, 2021
We created an introductory physics activity for undergraduate students, consisting of measuring the same physical quantity by different methods. This allows us to confront students with questions of uncertainty, precision, and model versus theory. The aim was to measure the height of a building using only a smartphone and everyday low-cost…
Descriptors: Physics, College Science, Undergraduate Study, Measurement Techniques
Huangqing, Liu; Yanping, Xiao – Physics Education, 2021
In the epidemic period, online teaching has become the most important teaching form. On the basis of questions-centred massive open online courses (MOOCs) teaching, the online teaching mode of college physics was studied and discussed using the Tencent classroom, WeChat/QQ and Wisdom Tree Platform. MOOCs before class, Tencent classroom during…
Descriptors: Online Courses, Educational Technology, Technology Uses in Education, College Science
Onorato, Pasquale; Rosi, Tommaso; Tufino, Eugenio; Caprara, Caterina; Malgieri, Massimiliano – Physics Education, 2021
In times of the explosion of distance learning, because of emergency due to the pandemic, smartphone sensors and cameras are extremely valuable for teachers as they allow students to perform significant experimental activities in their own homes. The open-source software Tracker can be used in combination with the smartphone camera to perform…
Descriptors: Photography, Handheld Devices, Telecommunications, Light
Hinrichsen, Peter F. – Physics Education, 2020
MEMs gyros, such as those in smartphones allow the angular velocity of pendulums to be precisely measured at large angles, and phase plots of the angular acceleration versus the angular displacement confirm that [double dot][phi] = -[omega][superscript 2][subscript o] sin[phi] even for the non-sinusoidal motion at amplitude [phi][subscript o]…
Descriptors: Physics, Science Instruction, Motion, Scientific Concepts
Aoki, Yuki; Ujihara, Shingo; Saito, Takanori; Yuminaka, Yasushi – Physics Education, 2020
We developed a three-dimensional motion tracking system that displays trajectories as augmented reality in real time on a tablet device. The features of this system are as follows: (1) the three-dimensional trajectory can be observed from any direction. (2) Velocity and acceleration can be visualized as augmented reality. The device consists of an…
Descriptors: Computer Simulation, Scientific Concepts, Motion, Science Instruction
Aoki, Yuki; Ujihara, Shingo; Saito, Takanori; Yuminaka, Yasushi – Physics Education, 2021
This study developed an online observable augmented reality dynamics experimental system that can be used in the current COVID-19 pandemic, where face-to-face experiments are difficult to conduct. The developed system enables the broadcast of mass point and rigid body measurements using an online depth camera, and remote observation using mobile…
Descriptors: COVID-19, Pandemics, School Closing, Educational Technology
Kulmala, Kimmo; Kokkonen, Tommi; Kontro, Inkeri – Physics Education, 2021
Active learning yields better learning outcomes than traditional, lecture-based teaching. Common approaches in large lecture courses are activating elements during the lectures and warm-up activities using online learning environments. However, implementing warm-up exercises, on which students work on by themselves makes formative feedback…
Descriptors: Feedback (Response), Active Learning, Physics, Science Instruction
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
Ferrer-Roca, Chantal – Physics Education, 2018
Waves are a relevant part of physics that students find difficult to grasp, even in those cases in which wave propagation kinematics can be visualized. This may hinder a proper understanding of sound, light or quantum physics phenomena that are explained using a wave model. So-called "human" waves, choreographed by people, have proved to…
Descriptors: Physics, Science Instruction, Video Technology, Teaching Methods
Kaps, A.; Splith, T.; Stallmach, F. – Physics Education, 2021
A concept for undergraduate mechanics courses at universities is introduced where traditional pencil-paper based exercises are partially replaced by experimental exercises, in which smartphones are used as measurement devices. A detailed guidance for practical realization and implementation of these tasks formats into the course is presented.…
Descriptors: Undergraduate Study, Science Instruction, Mechanics (Physics), Teaching Methods
Herrera-Suárez, H. J.; Morales-Aranguren, H. L.; Muñoz, J. H.; Ossa-Novoa, J. – Physics Education, 2022
The oscillations of one mass "m" suspended between two different springs, assuming a friction force proportional to the velocity [minuscule], have been studied. For this purpose, an assembly for this system has been made. The movement of the mass is recorded with a smartphone and analysed with "Tracker." It is obtained that the…
Descriptors: Mechanics (Physics), Motion, Energy, Science Instruction