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Busch, Hauke – Physics Teacher, 2022
Although teaching of environmental physics and energy-related topics has increased in the last several years, only a small portion of that has been for non-science majors. Environmental physical science can be used to teach physics to non-science majors by applying learned physics concepts to current issues of interest such as climate change,…
Descriptors: Physics, Science Instruction, Climate, Energy
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Carroll, Ryan; Lincoln, James – Physics Teacher, 2020
The phyphox app has demonstrated itself to be useful and impressive for physics teaching. The app is free to download and has so many features that it seems it may be particularly helpful in this time of distance learning. Phyphox (pronounced to sound like "physics") works for Android and Apple phones, and there are many experiments…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Software
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Xiong-Skiba, P.; Buckner, S.; Little, C.; Kovalskiy, A. – Physics Teacher, 2020
This paper reports our work on replacing lab report grading by post-online lab quizzes using Desire2Learn (D2L, an online course management software), specifically, how we circumvent some of the limitations imposed by D2L and the outcomes.
Descriptors: Grading, Physics, Science Tests, Computer Assisted Testing
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Allen, Thomas; Chally, Alex; Moser, Bradley; Widenhorn, Ralf – Physics Teacher, 2019
The labs presented here build on a simple speed of sound activity and models medical ultrasound imaging by demonstrating how multiple reflections propagate in a closed system. A short sound pulse is emitted into a pipe that is closed at one end and contains one or more partially reflecting surfaces within the pipe. The variety of reflections and…
Descriptors: Physics, Science Instruction, Acoustics, Diagnostic Tests
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Hughes, Ciaran; Isaacson, Joshua; Turner, Jessica; Perry, Anastasia; Sun, Ranbel – Physics Teacher, 2022
Quantum computing is a growing field at the intersection of physics and computer science. The goal of this article is to highlight a successfully trialled quantum computing course for high school students between the ages of 15 and 18 years old. This course was designed to bridge the gap between popular science articles and advanced undergraduate…
Descriptors: Teaching Methods, Physics, Science Instruction, Quantum Mechanics
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Bozzo, G. – Physics Teacher, 2020
As soon as children can see, they observe that objects fall freely. From a young age, we spontaneously construct interpretative models to understand this everyday phenomenon. Over the last three decades, numerous experiments have been developed to help students understand physics concepts regarding free fall. Although there are many…
Descriptors: Secondary School Science, Science Instruction, Physics, Teaching Methods
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Moya, Antonio A. – Physics Teacher, 2019
Asensor of the type BMP180, together with Arduino, is used to easily measure atmospheric pressure and temperature at schools. The open source Arduino microcontroller board presents countless teaching applications in science and engineering projects. It allows students to implant their creativity into a friendly environment and take ownership of…
Descriptors: Physics, Science Instruction, Scientific Concepts, Teaching Methods
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Greene, Nathaniel R.; Gill, Tom; Eyerly, Stephen – Physics Teacher, 2016
Force probes are versatile tools in the physics lab, but their internal workings can introduce artifacts when measuring rapidly changing forces. The Dual-Range Force Sensor by Vernier uses strain gage technology to measure force, based on the bending of a beam. Strain gages along the length of the beam change resistance as the beam bends. The…
Descriptors: Motion, Physics, Science Instruction, Laboratory Experiments
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Pathare, Shirish Rajan; Raghavendra, M. K.; Huli, Saurabhee – Physics Teacher, 2017
Recently devices such as the optical mouse of a computer, webcams, Wii remote, and digital cameras have been used to record and analyze different physical phenomena quantitatively. Devices like tablets and smartphones are also becoming popular. Different scientific applications available at Google Play (Android devices) or the App Store (iOS…
Descriptors: Physics, Laboratory Experiments, Telecommunications, Handheld Devices
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Bates, Alan – Physics Teacher, 2015
Instruments or digital meters with data values visible on a seven-segment display can easily be found in the physics lab. Examples include multimeters, sound level meters, Geiger-Müller counters and electromagnetic field meters, where the display is used to show numerical data. Such instruments, without the ability to connect to computers or data…
Descriptors: Science Instruction, Science Laboratories, Physics, Laboratory Equipment
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Kraftmakher, Yaakov – Physics Teacher, 2014
Nowadays, the use of data-acquisition systems in undergraduate laboratories is routine. Many computer-assisted experiments became possible with the PASCO scientific data-acquisition system based on the 750 Interface and DataStudio software. A new data-acquisition system developed by PASCO includes the 850 Universal Interface and Capstone software.…
Descriptors: Demonstrations (Educational), Undergraduate Students, Computer Oriented Programs, Computer Software
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Hack, William Nathan; Baird, William H. – Physics Teacher, 2012
The speed of sound is a physical property that can be measured easily in the lab. However, finding an inexpensive and intuitive way for students to determine this speed has been more involved. The introduction of affordable consumer-grade high-speed cameras (such as the Exilim EX-FC100) makes conceptually simple experiments feasible. Since the…
Descriptors: Video Technology, Photography, Motion, Physics
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Perry, Helene F.; Weigman, Bernard J. – Physics Teacher, 1989
Discussed is a method of measuring the coefficient of linear expansion of a solid. Getting many data points, using a computer program using the least square fit technique, and modifying the apparatus are described. (YP)
Descriptors: College Science, Computer Interfaces, Computer Software, Computer Uses in Education
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Collings, Peter J.; Greenslade, Thomas B., Jr. – Physics Teacher, 1989
Reports experiences during a two-year period in introducing the computer to the laboratory and students to the computer as a laboratory instrument. Describes a working philosophy, data acquisition system, and experiments. Summarizes the laboratory procedures of nine experiments, covering mechanics, heat, electromagnetism, and optics. (YP)
Descriptors: College Science, Computer Assisted Instruction, Computer Interfaces, Computer Software