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Malmqvist, Karin; Pendrill, Ann-Marie – Physics Education, 2022
Circular motion changes the perception of up and down. For a skater, the need to lean in towards the centre of an arc constitutes an embodiment of centripetal acceleration. This paper presents a discussion between a physicist and a high-school science teacher without previous physics studies at university level. The discussions started as part of…
Descriptors: Science Instruction, Mechanics (Physics), Motion, Athletics
Yasuhiro, Yusuke; Ishimura, Masachika; Kinugawa, Tohru – Physics Education, 2020
We have added two improvements to a self-luminous LED stroboscope (a flashing point-like projectile developed for introductory mechanics): downsizing by replacing heavy and risky batteries with a compact and safe capacitor of several Farads (a so-called Super-C) and wireless control via ordinary IR (infrared) communications. Consequently, the…
Descriptors: Mechanics (Physics), Science Equipment, Photography, Motion
Risk Mora, David Yamil; Durango Idarraga, Sebastian; Cardenas Montoya, Paulo Cesar – Physics Education, 2020
Collisions are a key topic in physics and engineering education. An experiment with multiple body one-dimensional collisions is presented, aiming to measure relevant physical quantities by tracking the motion of the system of particles during the collision. Relations between different physical quantities can be explored in the experiment, such as…
Descriptors: Video Technology, Physics, Science Instruction, Photography
Rosi, Tommaso; Perini, Marica; Onorato, Pasquale; Oss, Stefano – Physics Education, 2021
We designed and tested a 3D motion tracking system which displays acquired and derived data using augmented reality. This setup, based on a virtual reality headset and its controllers, is a relatively low-cost, high-precision, six degrees of freedom, high-speed, multiple-objects tracking device. This apparatus proves to be a very high-quality…
Descriptors: Physics, Computer Simulation, Educational Technology, Science Equipment
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
Pendrill, Ann-Marie – Physics Education, 2020
Your body is not a point particle. The nature and direction of the forces counteracting gravity influence your experience of uniform rectilinear motion--as does your own orientation in relation to the force of gravity. Sensors in smartphones or other devices can capture these forces, and help establish a connection between the personal experience…
Descriptors: Physics, Science Instruction, Telecommunications, Handheld Devices
Nuryadin, Bebeh Wahid – Physics Education, 2020
This research aims to develop a falling chain experiment apparatus using kitchen scales and digital cameras (smartphones). Digital cameras were used to observe and record changes in the mass of falling chains measured using kitchen scales. Video recordings from observations of falling chain masses were analysed using Tracker 5.1.1 software. The…
Descriptors: Physics, Science Instruction, Teaching Methods, Video Technology
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2017
We propose to attach a small stroboscopic light source to a moving object and connect the source to a pulse generator with the help of insulated thin flexible multi-cored wires. Students can assemble such a device independently in a school laboratory. The device can be used to obtain trajectories with time marks in students' research projects in…
Descriptors: Science Instruction, Science Experiments, Mechanics (Physics), Science Laboratories
De Luca, Roberto; Di Mauro, Marco; Naddeo, Adele; Onorato, Pasquale; Rosi, Tommaso – Physics Education, 2020
The difficulties students have in blending mathematics and physics are here analyzed, by focusing on the issue of a convergent series. We present an experimental and a theoretical analysis of some phenomena which can be investigated employing series, as the bouncing marble and Zeno's paradox of Achilles and the turtle. Measurements were carried…
Descriptors: Physics, Science Instruction, Mathematics Instruction, Metacognition
Dias, Marco Adriano; Carvalho, Paulo Simeão; Rodrigues, Marcelo – Physics Education, 2016
Image modelling is a recent technique in physics education that includes digital tools for image treatment and analysis, such as digital stroboscopic photography (DSP) and video analysis software. It is commonly used to analyse the motion of objects. In this work we show how to determine the position of the centre of mass (CM) of objects with…
Descriptors: Physics, Motion, Video Technology, Teaching Methods
Vollmer, Michael; Möllmann, Klaus-Peter – Physics Education, 2018
Video analysis with a 30 Hz frame rate is the standard tool in physics education. The development of affordable high-speed-cameras has extended the capabilities of the tool for much smaller time scales to the 1 ms range, using frame rates of typically up to 1000 frames s[superscript -1], allowing us to study transient physics phenomena happening…
Descriptors: Physics, Science Education, Motion, Time
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2015
A very old and well-known magical trick is the so-called tablecloth pull. A table is covered with a tablecloth, on top of which are certain objects. The task is to remove the tablecloth while the objects--which must not be touched--stay on top of the table. This article describes the physics behind the experiment, and presents examples recorded…
Descriptors: Science Instruction, Physics, Motion, Scientific Principles
Ng, Pun-hon; Chan, Kin-lok – Physics Education, 2015
In most secondary physics textbooks, waves are first introduced with examples of mechanical waves because they can be illustrated by drawings and photographs. However, these illustrations are static and cannot reflect the dynamic nature of waves. Although many mechanical waves (e.g. water waves and vibrating strings) can be easily shown using…
Descriptors: Scientific Concepts, Physics, Photography, Production Techniques
Gregorcic, Bor; Planinsic, Gorazd – Physics Education, 2012
This paper deals with effects that appear on photographs of rotating objects when taken by a photo finish camera, a rolling shutter camera or a computer scanner. These effects are very similar to Roget's palisade illusion. A simple quantitative analysis of the images is also provided. The effects are explored using a computer scanner in a way that…
Descriptors: Educational Technology, Photography, Science Instruction, Computer Uses in Education
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2012
We present fascinating simple demonstration experiments recorded with high-speed cameras in the field of fluid dynamics. Examples include oscillations of falling droplets, effects happening upon impact of a liquid droplet into a liquid, the disintegration of extremely large droplets in free fall and the consequences of incompressibility. (Contains…
Descriptors: Mechanics (Physics), Science Experiments, Photography, Science Instruction
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