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Robinson, Ian; Robinson, Saul; Robinson, Nathan – Physics Education, 2020
Described here is a well established opensource geophysics project to monitor atmospheric infrasound 24/7. It employs a modern digital, I[superscript 2]C enabled differential pressure sensor--unlike the older analog devices more commonly used. Python software automatically uploads plots whilst data is stored in standard ".mseed" format…
Descriptors: Science Instruction, Geophysics, Educational Technology, Technology Uses in Education
Pierratos, Theodoros – Physics Education, 2021
Due to the conditions imposed worldwide by the pandemic, students' access to school laboratories is limited, if not impossible. To provide students with raw experimental data to assess, analyse and reason out, we have filmed experiments that can be used in a flipped classroom. This paper presents an experiment which makes use of an array of six…
Descriptors: Science Instruction, Physics, Flipped Classroom, Science Laboratories
Wisman, Raymond F.; Spahn, Gabriel; Forinash, Kyle – Physics Education, 2018
Data collection is a fundamental skill in science education, one that students generally practice in a controlled setting using equipment only available in the classroom laboratory. However, using smartphones with their built-in sensors and often free apps, many fundamental experiments can be performed outside the laboratory. Taking advantage of…
Descriptors: Science Instruction, Science Process Skills, Data Collection, Telecommunications
Briggle, Justin – Physics Education, 2013
We describe the use of Apple's iPod touch/iPhone, acting as the pendulum bob, as a means of measuring pendulum period, making use of the device's three-axis digital accelerometer and the freely available SPARKvue app from PASCO scientific. The method can be readily incorporated into an introductory physics laboratory experiment.…
Descriptors: Motion, Mechanics (Physics), Science Instruction, Handheld Devices
Maurer, L. – Physics Education, 2013
Studies have shown that standard lectures and instructional laboratory
experiments are not effective at teaching interference and diffraction. In
response, the author created an interactive computer program that simulates
interference and diffraction effects using the finite difference time domain
method. The software allows students to easily…
Descriptors: Science Instruction, Physics, Science Laboratories, Scientific Concepts
LoPresto, Michael C. – Physics Education, 2012
What follows are several investigations involving string musical instruments developed for and used in a "Science of Sound & Light" course. The experiments make use of a guitar, orchestral string instruments and data collection and graphing software. They are designed to provide students with concrete examples of how mathematical formulae, when…
Descriptors: Musical Instruments, Science Instruction, Physics, Data Collection
Mungan, Carl E. – Physics Education, 2012
A pair of objects on an inclined plane are connected together by a string. The upper object is then connected to a fixed post via a spring. The situation is first analysed as a classroom exercise in using free-body diagrams to solve Newton's second law for a system of objects upon which many different kinds of force are acting (string tension,…
Descriptors: Physics, Science Instruction, Science Laboratories, Motion
Andrews, David; Carlton, Kevin; Lisgarten, David – Physics Education, 2010
This article describes a technique for measuring the magnetic field inside a long solenoid using computer data logging. This is a new approach to a standard student practical. The design and construction of the sensors is described; they significantly reduce the cost of the apparatus. The approach of the practical is for the students to…
Descriptors: Energy, Data Collection, Magnets, Science Instruction
Wee, Loo Kang – Physics Education, 2012
We develop an Easy Java Simulation (EJS) model for students to experience the physics of idealized one-dimensional collision carts. The physics model is described and simulated by both continuous dynamics and discrete transition during collision. In designing the simulations, we discuss briefly three pedagogical considerations namely (1) a…
Descriptors: Physics, College Science, Experiential Learning, Feedback (Response)