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Shakur, Asif; Binz, Steven – Physics Teacher, 2021
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 a new universe of low-cost experiments that have traditionally required cumbersome and expensive equipment. In this paper, we demonstrate the simplicity,…
Descriptors: Handheld Devices, Science Experiments, Physics, Computer Oriented Programs
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
Macho-Stadler, Erica; Elejalde-Garcia, Maria Jesus – Physics Teacher, 2020
The interest in achieving improved acoustical conditions in classrooms has increased in the last years. Some experiments on acoustics phenomena using smartphone applications appear in the recent bibliography. In this paper, we present a proposal for active learning about room acoustics for high school and undergraduate students. Students work on…
Descriptors: Measurement, Acoustics, Classroom Environment, Handheld Devices
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
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
Florea, Catalin – Physics Teacher, 2019
In almost any given day, one will stumble upon sounds that are out of the ordinary, distinct enough to capture one's attention. Ordinary sounds in a home are represented by the white-noise-like background created by speaking, moving around, household appliances running, and so forth. The out of the ordinary is the sparkling sound of a knife blade…
Descriptors: Telecommunications, Handheld Devices, Acoustics, Science Instruction
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
Hawley, Scott H.; McClain, Robert E., Jr. – Physics Teacher, 2018
When Yang-Hann Kim received the Rossing Prize in Acoustics Education at the 2015 meeting of the Acoustical Society of America, he stressed the importance of offering visual depictions of sound fields when teaching acoustics. Often visualization methods require specialized equipment such as microphone arrays or scanning apparatus. We present a…
Descriptors: Physics, Acoustics, Visualization, Telecommunications
Hergemöller, Timo; Laumann, Daniel – Physics Teacher, 2017
Today smartphones and tablets do not merely pervade our daily life, but also play a major role in STEM education in general, and in experimental investigations in particular. Enabling teachers and students to make use of these new techniques in physics lessons requires supplying capable and affordable applications. Our article presents the…
Descriptors: Handheld Devices, Telecommunications, Visual Aids, Laboratory Equipment
Underwood, Bret; Zhai, Yunxiao – Physics Teacher, 2016
Smartphones and tablets are packed with sensors that allow us to take experimental data, essentially making them mobile physics labs. Apps exist that make it easy to capture and analyze data from these sensors, allowing users to study diverse phenomena such as free fall acceleration, the speed of sound,radioactivity, and many others. Commonly, the…
Descriptors: Handheld Devices, Computer Oriented Programs, Physics, Time
Oss, Stefano; Rosi, Tommaso – Physics Teacher, 2015
We have developed an app for iOS-based smart-phones/tablets that allows a 3-D, complex phase-based colorful visualization of hydrogen atom wave functions. Several important features of the quantum behavior of atomic orbitals can easily be made evident, thus making this app a useful companion in introductory modern physics classes. There are many…
Descriptors: Computer Oriented Programs, Handheld Devices, Visual Aids, Science Instruction
Hechter, Richard P. – Physics Teacher, 2013
With the increased availability of modern technology and handheld probeware for classrooms, the iPad and the Video Physics application developed by Vernier are used to capture and analyze the motion of an ice hockey puck within secondary-level physics education. Students collect, analyze, and generate digital modes of representation of physics…
Descriptors: Physics, Science Instruction, Handheld Devices, Computer Oriented Programs