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Nuryantini, Ade Yeti; Nuryadin, Bebeh Wahid – Physics Education, 2020
The vector of aircraft motion and analysis using FlightRadar24 and Tracker motion analysis has been investigated and studied. The straight, turning and circular aircraft motion were recorded from www.flightradar24.com using a commercial desktop video recording. Then, the video of the aircraft motion was analyzed using Tracker 5.1.1 to determine…
Descriptors: Motion, Science Instruction, Scientific Concepts, Air Transportation
Pierratos, Theodoros – Physics Education, 2021
Due to the conditions imposed worldwide by the pandemic, students' access to school laboratories is limited, if not impossible. To provide students with raw experimental data to assess, analyse and reason out, we have filmed experiments that can be used in a flipped classroom. This paper presents an experiment which makes use of an array of six…
Descriptors: Science Instruction, Physics, Flipped Classroom, Science Laboratories
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
de Oliveira, A. L.; de Jesus, V. L. B.; Sasaki, D. G. G. – Physics Education, 2021
The drag effect on a falling ball caused by air is a conventional subject in the most well-known textbooks of classical mechanics and fluid dynamics. Further, there are some papers that employ video analysis to track objects movements in the air making it possible to obtain position data as a function of time and its graphs. However, none of them…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
Cross, Rod – Physics Education, 2021
Points near the top end of a falling rod hinged at its bottom end can fall faster than g. If a rod falls on a frictionless surface then the bottom end slides backwards and the centre of mass falls vertically with acceleration less than g. The effect was simulated by mounting a rod on wheels and filming the result with a video camera. The…
Descriptors: Physics, Science Instruction, Teaching Methods, Video Technology
Kapucu, Serkan – Physics Education, 2021
This study aims to measure the angular velocity of a clock's second hand and the average angular velocity of a metronome using a smartphone. To determine the angular velocities, the ticking of clock's second hand and the metronome beats were recorded. The angle between the extreme left and right positions of the metronome's hand was also measured.…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Balaton, Mariana; Cavadas, Jorge; Carvalho, Paulo Simeão; Lima, J. J. G. – Physics Education, 2021
Experimental teaching is essential for a good understanding of science, especially on Physics. Practical activities play an important role for engaging students with science, mainly when they interact directly with equipment, collect experimental data with computers and/or use interactive software for data analysis. In this work, we present the…
Descriptors: Science Instruction, Physics, Robotics, Programming
Fidget Spinner and the Principle of Conservation of Angular Momentum: A 3D-Print Demonstration Model
de Almeida, Pamella Aline; Onisaki, Hadassa; de Almeida, Juarez Trindade; Costa, Lúcio Campos; Brockington, Guilherme – Physics Education, 2020
Principles of conservation are essential to the physical understanding of the universe. When thinking about its teaching, especially aimed at basic education, experimental activities can be great allies for its understanding. In this article, we present a demonstrative model using a fidget spinner arranged in a structure constructed using 3D…
Descriptors: Science Instruction, Scientific Principles, Motion, Physics
Ristanto, Sigit; Nugroho, Waskito; Sulistya, Eko; Suparta, Gede B. – Physics Education, 2022
We have developed a stereo vision system for observing real objects for experimental physics demonstration. The stereo vision observes objects from two different points of view. An observer can identify the distance and velocity of an object based on at least two different points of view. This paper demonstrates our comprehensive observation in a…
Descriptors: Science Instruction, Physics, Scientific Concepts, Motion
Kim, Soyeon; Lee, Soyeon; Moon, Su Jin; Kim, Kyuhwan; Kim, Jung Bog – Physics Education, 2022
Since the vibration of a single pendulum is very periodic, measuring its period is a very interesting topic. When students are asked to measure the period of a single vibration, they start and stop the stopwatch when the pendulum reaches the top point as a reference point. In this paper, we try to show that the error can be reduced more by using…
Descriptors: Science Instruction, Motion, Measurement Techniques, Error of Measurement
Aji, Mahardika Prasetya; Rahmawati, Ita; Imtinan, Nisrina; Wulandari, Yuvita Kiki; Yusmantoro; Priyanto, Aan – Physics Education, 2022
The momentum is often used to analyse the dynamics of the motion of an experimental interaction between objects. Meanwhile, the interaction force tends to be challenging to observe and obtain. In this study, a simple video-assisted experiment was used to observe the interaction forces during the interaction of two magnetic objects. The interaction…
Descriptors: Science Instruction, Mechanics (Physics), Motion, Science Experiments
Hinrichsen, Peter F. – Physics Education, 2021
The toppling motion of falling chimney stacks has been the subject of a number of studies which address the interesting phenomenon that brick chimneys usually break well before they hit the ground. Modern concrete chimneys, and wind generator towers, however, are strong enough to topple without breaking and many videos of their destruction are…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
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
Namchanthra, Witchayaporn; Khemmani, Supitch; Wicharn, Surawut; Plaipichit, Suwan; Pipatpanukul, Chinnawut; Puttharugsa, Chokchai – Physics Education, 2019
This paper describes the use of a smartphone's sensors to investigate the motion of a torsion pendulum to demonstrate energy conservation. The smartphone was placed on and attached to a metal disk hanging by a wire. The oscillation of the disk was measured using the smartphone's sensors to simultaneously record angular position, angular speed and…
Descriptors: Science Instruction, Physics, Motion, Energy Conservation
Santosa, I. E. – Physics Education, 2022
The image of free-falling bar has been recorded to study the effect of the motion on its observed length. This moving bar image is analysed using the Tracker software to determine its length and the end bar's position. An elongated appearance of the bar has been observed with movement. This effect relies on the speed and the exposure time during…
Descriptors: Science Instruction, Physics, Motion, Computer Software