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Showing 31 to 45 of 89 results Save | Export
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Vollmer, Michael; Möllmann, Klaus-Peter – Physics Education, 2018
There are many physics experiments with long time scales such that they are usually neither shown in the physics class room nor in student labs. However, they can be easily recorded with time-lapse cameras and the respective time-lapse videos allow qualitative and/or quantitative analysis of the underlying physics. Here, we present some examples…
Descriptors: Physics, Science Instruction, Video Technology, Scientific Principles
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Kvita, Jirí; Cermáková, Berenika; Matulová, Natálie; Poštulka, Jan; Staník, Daniel – Physics Education, 2019
We present several applications of the particle camera MX-10 in different radiation environments, leading to strikingly different observed patterns and consequently particle composition as well as recorded dose. We describe the measurements of the radiation background, cosmic muons direction analysis and the detection of alpha particles in a…
Descriptors: Physics, Science Instruction, Radiation, Scientific Concepts
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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
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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
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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
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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
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Ziegler, Max; Priemer, Burkhard – Physics Education, 2015
We demonstrate how the form of a plano-convex lens and a derivation of the thin lens equation can be understood through simple physical considerations. The basic principle is the extension of the pinhole camera using additional holes. The resulting images are brought into coincidence through the deflection of light with an arrangement of prisms.…
Descriptors: Optics, Scientific Concepts, Scientific Methodology, Scientific Principles
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Hughes, Stephen W.; Hosokawa, Kazuyuki; Carroll, Joshua; Sawell, David; Wilson, Colin – Physics Education, 2015
A technique is described for calculating the brightness of the atmosphere of the Earth that shines into the Earth's umbra during a total lunar eclipse making the Moon red. This "Rim of Fire" is due to refracted unscattered light from all the sunrises and sunsets rimming the Earth. In this article, a photograph of the totally eclipsed…
Descriptors: Astronomy, Space Sciences, Light, Measurement Techniques
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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
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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
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Cunnah, David – Physics Education, 2014
In this paper I propose a method of calculating the time between line captures in a standard complementary metal-oxide-semiconductor (CMOS) webcam using the rolling shutter effect when filming a guitar. The exercise links the concepts of wavelength and frequency, while outlining the basic operation of a CMOS camera through vertical line capture.
Descriptors: Video Technology, Scientific Concepts, Photography, Physics
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Vollmer, Michael; Shaw, Joseph A – Physics Education, 2013
Surprisingly colourful views are possible from sparkling white snow. It is well known that similarly colourful features can exist in the sky whenever appropriate ice crystals are around. However, the transition of light reflection and refraction from ice crystals in the air to reflection and refraction from those in snow on the ground is not…
Descriptors: Color, Science Instruction, Physics, Light
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Bochnícek, Zdenek – Physics Education, 2013
This paper describes a set of demonstration school experiments where infrared radiation is detected using thermal sensitive foils. The possibility of using standard glass lenses for infrared imaging is discussed in detail. It is shown that with optic components made from glass, infrared radiation up to 2.5 µm of wavelength can be detected. The…
Descriptors: Science Instruction, Science Experiments, Radiation, Thermodynamics
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Baird, William H.; Padgett, Clifford W.; Secrest, Jeffery A. – Physics Education, 2015
Google Earth has made a wealth of aerial imagery available online at no cost to users. We examine some of the potential uses of that data in illustrating basic physics and astronomy, such as finding the local magnetic declination, using landmarks such as the Washington Monument and Luxor Obelisk as gnomons, and showing how airport runways get…
Descriptors: Science Instruction, Educational Technology, Technology Uses in Education, Astronomy
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Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2012
The recent introduction of inexpensive high-speed cameras offers a new experimental approach to many simple but fast-occurring events in physics. In this paper, the authors present two simple demonstration experiments recorded with high-speed cameras in the fields of gas dynamics and thermal physics. The experiments feature vapour pressure effects…
Descriptors: Heat, Thermodynamics, Science Instruction, Scientific Principles
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