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Gingl, Zoltan; Mingesz, Robert; Makan, Gergely; Mellar, Janos – Physics Education, 2019
The Arduino is a popular and useful tool in STEM and physics education. Teacher demonstrations, laboratory and home work are supported by an incredibly wide range of application examples for a low cost. Since the heart of the Arduino board is an industrial microcontroller, it is a good chance to teach the basics of the related rules, standards and…
Descriptors: Physics, Science Instruction, Programming, STEM Education
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Pratidhina, Elisabeth; Rosana, Dadan; Kuswanto, Heru; Dwandaru, Wipsar Sunu Brams – Physics Education, 2021
Distance learning in physics is still facing challenges, mainly due to the difficult access to a laboratory for practical work. Practical work is an essential part of the physics classroom because it allows students to interact with authentic physics phenomena and develop their scientific abilities. In this paper, we propose alternative…
Descriptors: Physics, Distance Education, Science Experiments, Programming Languages
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Lindén, Johan – Physics Education, 2020
A glass of water covered with a disk with a hole in it can be turned upside down without spilling the water in the glass, provided the hole is small enough and the disk is pressed against the rim of the glass. A quasistatic numerical simulation based on hydrostatic pressure and surface tension of water was used calculate the critical hole diameter…
Descriptors: Physics, Science Instruction, Water, Teaching Methods
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Gojkovic, Ljubomir; Malijevic, Stefan; Armakovic, Stevan – Physics Education, 2020
In this work three examples of textbook circuits (resistor-capacitor, resistor-inductor and resistor-inductor-capacitor) have been modeled by employing the Euler method for the approximate solution of differential equations using algorithms implemented in the "Python" programming language. The aim of this work was to demonstrate how…
Descriptors: Science Instruction, Programming Languages, Teaching Methods, Mathematics
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Balaton, M. C.; Da Silva, L. F.; Carvalho, P. S. – Physics Education, 2020
In this paper, we aim to show strategies for improving graph interpretation skills at middle and high school students using OZOBOT® BIT, a small and relatively low-cost programmable robot which had been used to teach programming to young children. OZOBOT's speed can be controlled by drawing lines with colour codes, as well as through a visual…
Descriptors: Middle School Students, High School Students, Skill Development, Graphs
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Solvang, Lorena; Haglund, Jesper – Physics Education, 2021
Recently, GeoGebra, a mathematics education software, has entered the scene of physics education; however, research on how the software can be used to support teaching and learning physics is limited and scattered. The aim of this article is to present a review of the current literature on how GeoGebra can be used to support physics education in…
Descriptors: Physics, Computer Software, Mathematics Instruction, Secondary School Students
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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
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Keegans, James D.; Stancliffe, Richard J.; Bilton, Lawrence E.; Cashmore, Claire R.; Gibson, Brad K.; Kristensen, Mikkel Theiss; Lawson, Thomas V.; Pignatari, Marco; Vaezzadeh, Iraj; Côté, Benoit; Chongchitnan, Siri – Physics Education, 2021
We present our outreach program, the "Thailand-UK Python+Astronomy Summer School" (ThaiPASS), a collaborative project comprising UK and Thai institutions and assess its impact and possible application to schools in the United Kingdom. Since its inception in 2018, the annual ThaiPASS has trained around 60 Thai high-school students in…
Descriptors: International Programs, Program Effectiveness, Outreach Programs, High School Students
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Teiermayer, Attila – Physics Education, 2019
The BBC Micro:bit is a great device to encourage students to get involved in Computer Science and to create their own digital projects. However, the design of the single-board computer (including the built-in sensors) makes it possible to use it in Physics lessons or in Physics related activities, too. Those students who are keen to take up…
Descriptors: Science Instruction, Physics, Computer Science Education, Computers
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Lopez, Victor; Hernandez, Maria Isabel – Physics Education, 2015
The Scratch online authoring tool, which features a simple programming language that has been adapted to primary and secondary students, is being used more and more in schools as it offers students and teachers the opportunity to use a tool to build scientific models and evaluate their behaviour, just as can be done with computational modelling…
Descriptors: Science Instruction, Physics, Secondary School Science, Elementary School Science
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Brake, Mark; Griffiths, Martin – Physics Education, 2009
Radio broadcasting offers a unique opportunity to reach the public and facilitate their entertainment and education. In this vein, a series of high profile lectures in honour of Sir John Reith was initiated by the BBC in 1948 as a way of introducing the public to some of the greatest scientists of the age, enabling such thinkers to spread a…
Descriptors: Radio, Programming (Broadcast), Scientists, Science History
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Andrews, D. G. H. – Physics Education, 2009
A computer model of the decay of a radioactive series, written in Visual Basic in Excel[TM], is presented. The model is based on the random selection of cells in an array. The results compare well with the theoretical equations. The model is a useful tool in teaching this aspect of radioactivity. (Contains 4 figures.)
Descriptors: Radiation, Structural Equation Models, Programming, Mathematical Models
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Prayaga, Chandra – Physics Education, 2008
A simple interface between VPython and Microsoft (MS) Office products such as Word and Excel, controlled by Visual Basic for Applications, is described. The interface allows the preparation of content-rich, interactive learning environments by taking advantage of the three-dimensional (3D) visualization capabilities of VPython and the GUI…
Descriptors: Computer Assisted Instruction, Visualization, Scientific Concepts, Computer Software