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Showing 1 to 15 of 172 results Save | Export
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Lingefjärd, Thomas; Ahmet, Guner – Physics Teacher, 2022
The subject of mathematics is important for many other subjects, including physics. The questions we ask in physics often need a mathematical translation to be graphically interpreted and transformed. Students learn physics when interacting with physical questions; questions from physics also give insights and discoveries in mathematical problems.…
Descriptors: Science Instruction, Teaching Methods, Physics, Computer Oriented Programs
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Michael K. Bogdos; Bill Morandi – Journal of Chemical Education, 2023
Potential energy diagrams have been central tools for chemistry teaching and research for over 50 years. We present an application, EveRplot, which is accessible by web browser (including mobile devices) and can be used to create energy versus reaction coordinate plots quickly and easily. Through three case studies, we illustrate the use of the…
Descriptors: Web Sites, Computer Oriented Programs, Energy, Scientific Concepts
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Jablonka, Kevin Maik; Patiny, Luc; Smit, Berend – Journal of Chemical Education, 2022
Infrared spectroscopy (IR) is a staple structural elucidation and characterization technique because of its ability to identify functional groups and its ease of use. Interestingly, it allows the capture of electronic effects via their influence on the bond strength of "probes", such as the carbonyl group and also offers a wealth of…
Descriptors: Spectroscopy, Molecular Structure, Science Instruction, Discovery Learning
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Jordheim, Lars Petter; Denuzie`re, Anne; Machon, Christelle; Zeinyeh, Wael – Journal of Chemical Education, 2021
The understanding of the basic principles of chromatography is of high importance for chemistry, pharmacy, and biology students. In this paper, we present a free web application which can be used as a teaching tool to introduce chromatography to undergraduate students, using one of the simplest chromatography models: the plate theory.
Descriptors: Chemistry, Laboratory Procedures, Computer Oriented Programs, Science Instruction
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Larnder, Chris I. – Physics Teacher, 2021
Today's students are increasingly immersed in a landscape of screens and handheld digital devices through which a good deal of their interactions with the world around them are mediated. Physics educators, meanwhile, continue to rely on traditional human interactions with the physical world, such as sliding down a ramp or throwing a baseball, in…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Peripherals
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Vieyra, Rebecca; Vieyra, Chrystian; Pendrill, Ann-Marie; Xu, Benjamin – Physics Education, 2020
This article describes the development and deployment of Physics Toolbox Play, a gamified component of the "Android Physics Toolbox Sensor Suite" app, that can introduce young children through adults to fundamental physics principles. The app was used successfully in a variety of contexts, including STEM fairs with primary and secondary…
Descriptors: Educational Games, Physics, Science Instruction, Science Education
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Shakur, Asif; Valliant, Benjamin – Physics Teacher, 2020
The use of smartphones in experimental physics is by now widely accepted and documented. PASCO scientific's smart cart, in combination with student-owned smartphones and free apps, has opened up a new universe of low-cost experiments that have traditionally required cumbersome and expensive equipment. In this paper we demonstrate the simplicity,…
Descriptors: Science Instruction, Physics, Telecommunications, Handheld Devices
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Freeman, Felicity S. H. B.; Chechik, Lova; Todd, Iain – Physics Education, 2020
3D printing (additive manufacturing) is an emerging technology with the ability to make complex, free-form shapes from materials including plastics, metals and ceramics. While additive manufacturing has many advantages over more traditional processes, it can be difficult to control, which can then lead to defects in the finished part. Closed-loop…
Descriptors: Manufacturing, Simulation, Metallurgy, Photography
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Pierratos, Theodoros; Polatoglou, Hariton M. – Physics Education, 2020
In this work, we propose an interesting combination of the Atwood machine and Galileo's inclined plane to study quantitatively kinematics with a smartphone and the phyphox app. For this purpose, we use the optical stopwatch function, based on the photosensor of the smartphone. The choice of phyphox app has some advantages for presenting the…
Descriptors: Science Instruction, Physics, Telecommunications, Handheld Devices
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Lincoln, James – Physics Teacher, 2018
There are already several articles describing ways to teach physics using smartphone apps, but what are some experiments you can perform immediately without downloading any additional software? In the spirit of increasing the amount of hands-on activities each of us is doing, and to give us backup activities when you have a few extra minutes of…
Descriptors: Telecommunications, Handheld Devices, Physics, Science Instruction
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Aristov, Michael M.; Moore, John W.; Berry, John F. – Journal of Chemical Education, 2021
Through the implementation of the free website/smartphone application Sketchfab, we have found a simple means to introduce 3D visual tools into the chemistry classroom. Sketchfab stores 3D models and animations with free cross-platform accessibility. Blender is a free 3D modeling tool that has been used to prepare models and animations for…
Descriptors: Chemistry, Science Instruction, Educational Technology, Technology Uses in Education
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Thoms, Lars-Jochen; Colicchia, Giuseppe; Girwidz, Raimund – Physics Teacher, 2018
Smartphones have evolved into all-purpose computing machines with exceptional capabilities. They are becoming increasingly powerful, with modern audio "codec" (coder/decoder) chips that provide recorded audio of high quality. Smartphone developers now offer many sound applications (apps) using both the devices' built-in microphone and…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Computer Oriented Programs
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Ruiz, Michael J. – Physics Teacher, 2018
The frequency ratios for the just diatonic scale are obtained by identifying musical intervals corresponding to Lissajous figures. The demonstration integrates the engineering physics of Lissajous patterns with the recognition of musical intervals through simple ear training. A free HTML5 app has been developed for this class activity and the…
Descriptors: Music, Physics, Science Instruction, Computer Oriented Programs
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Reißer, Sabine; Prock, Sebastian; Heinzmann, Hartmut; Ulrich, Anne S. – Biochemistry and Molecular Biology Education, 2018
Protein ORIGAMI (http://ibg.kit.edu/protein_origami) is a browser-based web application that allows the user to create straightforward 3D paper models of folded peptides for research, teaching and presentations. An amino acid sequence can be turned into a-helices, ß-strands and random coils that can be printed out and folded into properly scaled…
Descriptors: Educational Technology, Technology Uses in Education, Models, Science Instruction
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Pendrill, Ann-Marie; Modig, Conny – Physics Education, 2018
An amusement park is full of examples that can be made into challenging problems for students, combining mathematical modelling with video analysis, as well as measurements in the rides. Traditional amusement ride related textbook problems include free-fall, circular motion, pendula and energy conservation in roller coasters, where the moving…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
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