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Dorsel, Dominik; Staacks, Sebastian; Heinke, Heidrun; Stampfer, Christoph – Physics Teacher, 2022
As smartphones have become a part of our everyday life, their sensors have successfully been used to allow data acquisition with these readily available devices in a variety of different smartphone-based school experiments. Such experiments most commonly take advantage of the accelerometer and gyroscope. A less frequently used sensor in…
Descriptors: Handheld Devices, Measurement Equipment, Science Experiments, Navigation
Coelho, Ricardo – Physics Teacher, 2022
Atwood invented a machine in the 1780s that enabled him to observe the motion of a falling body as slowly as desired. This machine was equipped with the necessary means to measure the distance covered by the body and the time taken. With this data, it was possible, in addition to studying the falling motion, to calculate the local gravitational…
Descriptors: Science Experiments, Scientific Concepts, Motion, Measurement Equipment
Nalence, Eugene Edward – Physics Teacher, 2022
The measurement of the charge-to-mass ratio, e/m, of the electron is a fundamental part of any study of electricity and magnetism. It is possible to use an apparatus designed to measure e/m for other things, including investigations of electron flow through a near vacuum, measuring a work function, and even exploring some quantum mechanics…
Descriptors: Science Instruction, Science Experiments, Energy, Magnets
Pieter T. L. Beck; Ruby Cornand; Wannes De Turck; Mieke Adriaens – Science & Education, 2025
In this article, we discuss the replication of a forgotten chemical instrument in the context of undergraduate chemistry education. Together with students, we have attempted to replicate an eighteenth century "eudiometrical" procedure. Eudiometry was the practice of measuring the "goodness" of the air by looking at the volume…
Descriptors: Undergraduate Students, College Science, Science Education, Chemistry
Çoban, Atakan; Erol, Mustafa – Physics Education, 2022
The present study reports an Arduino-based STEM education material that resolves the kinematics of a moving object, specifically focusing on two dimensional motion of the object. Throughout the work, a sample application that can be prepared in a classroom where students are active and including the acquisitions of Technology, Engineering, Physics…
Descriptors: STEM Education, Motion, Science Instruction, Measurement Equipment
Kang, Eunju; Park, Jongho – Physics Education, 2022
The reflection and refraction of light are more familiar to students than the reflection and refraction of sound. Reflection and refraction that occur during the transmission of sound waves are common phenomena in everyday life but are often difficult to understand during actual learning. In this study, we developed a sound reflection and…
Descriptors: Physics, Science Experiments, Science Equipment, Acoustics
Ismail, Mahizah; Minawi, Farid; Mokhtar, Wan Zul Adli Wan; Rashid, Noraihan L. Abdul; Ariffin, Ahmad K. – Physics Education, 2023
Teaching alternating currents, ac or sound waves, is incomplete without an introduction to the oscilloscope. An oscilloscope is a tool that graphically displays electrical signals and shows their time dependence. However, due to the pandemic, triggered by the SARS-CoV-2 virus, many students do not have the opportunity to master the use of an…
Descriptors: Physics, Measurement Equipment, Acoustics, Science Experiments
Williams, Hollis – Physics Education, 2022
The Crookes radiometer (also known as a light mill) is a fascinating sunlight-powered device, in which a set of vanes is placed inside a glass bulb within which a partial vacuum has been pulled. The vanes then rotate when sunlight shines on the bulb. The reason for the turning of the vanes was subject to intense debate and many students still have…
Descriptors: Physics, Science Instruction, Light, Measurement Equipment
O'Donoghue, J.; Fitzsimmons, L. – Journal of Chemical Education, 2022
This work describes the design and testing of a low-cost light-emitting diode (LED)-based nephelometer for turbidity analysis. It also describes the use of this nephelometer for context-based learning (CBL) experiments designed for teaching laboratories. The LED nephelometer is simple, low-cost, and robust, providing similar results as a…
Descriptors: Chemistry, Science Instruction, Light, Measurement Equipment
Slaton, William V.; Jeffery, Elaine – Physics Teacher, 2021
A solar eclipse provides a well-characterized reduction in solar radiation. Solar radiation is a driving factor in meteorological and climate models. Hence, solar eclipses provide a unique opportunity to do large-scale meteorological experiments by measuring the effects on temperature, pressure, and wind while the atmospheric conditions stay…
Descriptors: Radiation, Astronomy, Measurement, Meteorology
Mulla, Rafiq; Rabinal, M. K. – Physics Education, 2021
In this paper, a very simple and low-cost setup design is described for the Seebeck coefficient measurement of the disc and rod-shaped specimens. The setup has been tested for its reliable working by measuring the Seebeck coefficients of standard samples; measured values match with the literature. The setup can be built with commonly available raw…
Descriptors: Physics, Science Instruction, Measurement Equipment, Science Experiments
Galeriu, Calin – Physics Teacher, 2022
The determination of the speed of sound in air is a classical experiment, usually performed with a resonance tube apparatus. The measured value can be checked against Eq. (1), which describes the temperature dependence of the speed of sound in dry air. A modern implementation of this speed of sound investigation uses an Arduino Uno microcontroller…
Descriptors: Acoustics, Physics, Measurement Equipment, Motion
Marranghello, Guilherme Frederico; Lucchese, Márcia Maria; da Rocha, Fábio Saraiva – Physics Teacher, 2022
Water rockets can be used in a variety of ways, from schools to planetariums, with very young kids or adults. We propose here simple forms to work with water rockets, going one step further than a simple launch. A smartphone can be used to film the launch and analyze its motion with video analysis or it can even be attached to the rocket, using…
Descriptors: Physics, Video Technology, Science Instruction, Water
Namchanthra, Witchayaporn; Puttharugsa, Chokchai – Physics Teacher, 2021
Nowadays, electronic devices (especially smartphones) are developed to use as an alternative tool for recording experimental data in physics experiments. This is because of the embedded sensors in a smartphone such as the accelerometer, gyroscope, magnetometer, camera, microphone, and speaker. These sensors were used in physics experiments, such…
Descriptors: Physics, Handheld Devices, Measurement Equipment, Motion
Dallal, Tamar A.; Miller, Jacob M.; Michelle Matten,; Schur, Ezra; Sears, Allen J.; Carr, Clarissa; Rosenberg, Jacob; Unterman, Nathan A.; Valsamis, Anthony; Adams, Mark – Physics Teacher, 2022
During the August 21, 2017, solar eclipse, high school students measured secondary cosmic ray flux using QuarkNet detectors. These students conducted experiments examining cosmic ray flux, shower, speed of muons, and muon lifetime using QuarkNet cosmic ray muon detectors (CRMDs). These detectors measure muon flux of momenta greater than ~2 GeV, a…
Descriptors: Astronomy, Measurement Equipment, Secondary School Science, High School Students