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Ruiz, Michael J. – Physics Education, 2018
An online HTML5 Fourier synthesizer app is provided that allows students to manipulate sixteen harmonics and construct periodic waves. Students can set the amplitudes and phases for each harmonic, seeing the resulting waveforms and hearing the sounds. Five waveform presets are included: sine, triangle, square, ramp (sawtooth), and pulse train. The…
Descriptors: Physics, Scientific Concepts, Scientific Principles, Scientific Methodology
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Dilek, Ufuk; Erol, Mustafa – Physics Education, 2018
ARKit is a framework which allows developers to create augmented reality apps for the iPhone and iPad. In a previous study, we had shown that it could be used to detect position in educational physics experiments and emphasized that the ability to provide position data in real-time was one of the prominent features of this newly emerging…
Descriptors: Graphs, Physics, Science Experiments, Computer Graphics
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Dilek, Ufuk; Erol, Mustafa – Physics Education, 2018
Developed by using ARKit, a novel app which can be used to detect position in physics experiments was introduced. The ARKit relies on a new technique. The result of the experiment presented in this study was satisfactory, suggesting that the new technique can be employed in position detection experiments/demonstrations that are conducted using…
Descriptors: Physics, Science Experiments, Courseware, Instructional Materials
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Kinchin, John – Physics Education, 2016
Simple harmonic motion (SHM) is a common topic for many students to study. Using the free, though versatile, motion tracking software; "Tracker", we can extend the students experience and show that the general equation for SHM does lead to the correct period of a simple pendulum.
Descriptors: Motion, Equations (Mathematics), Courseware, Mathematical Logic
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Yavuz, Ahmet; Temiz, Burak Kagan – Physics Education, 2016
In this paper, we propose an experiment for analysing harmonic motion using an iPhone's (or iPad's) magnetometer. This experiment consists of the detection of magnetic field variations obtained from an iPhone's magnetometer sensor. A graph of harmonic motion is directly displayed on the iPhone's screen using the "Sensor Kinetics"…
Descriptors: Motion, Handheld Devices, Magnets, Computer Graphics
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Dias, Marco Adriano; Carvalho, Paulo Simeão; Rodrigues, Marcelo – Physics Education, 2016
Image modelling is a recent technique in physics education that includes digital tools for image treatment and analysis, such as digital stroboscopic photography (DSP) and video analysis software. It is commonly used to analyse the motion of objects. In this work we show how to determine the position of the centre of mass (CM) of objects with…
Descriptors: Physics, Motion, Video Technology, Teaching Methods
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Igoe, D. P.; Parisi, A. V. – Physics Education, 2015
Solar current is an increasingly important aspect of modern life and will be even more so crucial in the students' future. Encouraging students to be the "toolmakers" allows students to take ownership of scientific investigations, as well as forcing them to refine their research questions and hypothesis, including the design and…
Descriptors: Physics, Student Developed Materials, Courseware, Class Activities
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Celeda, Tomáš – Physics Education, 2013
An application was created to encourage students' practical knowledge of gravitational fields, the law of conservation of energy and other phenomena, such as gravitational slingshots. The educational software simulates the flight of a solar sail spacecraft between two planets of the Solar System using the laws of gravity and radiation…
Descriptors: Computer Simulation, Scientific Concepts, Physics, Astronomy
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Rodríguez, Y.; Santana, A.; Mendoza, L. M. – Physics Education, 2013
Recently, with the development of more powerful and accurate computational tools, the inclusion of new didactic materials in the classroom is known to have increased. However, the form in which these materials can be used to enhance the learning process is still under debate. Many different methodologies have been suggested for constructing new…
Descriptors: Physics, Optics, Computation, Technology Uses in Education
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Meuldermans, Raoul; And Others – Physics Education, 1996
Descriptors: Acoustics, Computer Interfaces, Courseware, Educational Technology
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Firth, L. D. – Physics Education, 1984
A college physics department has been operating a "computer games station" in a corridor, with unrestricted access. The design of this station and summary of programs used are described. Program focuses on acceleration, rotating vectors, Maxwell's demonstration, wave display, and Fourier synthesis. (JN)
Descriptors: Acceleration (Physics), College Science, Computer Oriented Programs, Courseware
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Kirkup, L. – Physics Education, 1986
Describes the implementation of a trajectory-plotting program for a microcomputer; shows how it may be used to demonstrate the focusing effect of a simple electrostatic lens. The computer program is listed and diagrams are included that show comparisons of trajectories of negative charges in the vicinity of positive charges. (TW)
Descriptors: College Science, Computer Assisted Instruction, Computer Uses in Education, Courseware
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Bligh, P. H.; And Others – Physics Education, 1987
Describes a heat capacity experiment designed to provide an interactive environment between the student, the experiment, and the computer. Discusses computer software that has been developed so that the entire interaction can be coordinated from the computer keyboard. (TW)
Descriptors: College Science, Computer Assisted Instruction, Computer Simulation, Computer Uses in Education
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Baxter, Martin W. – Physics Education, 1987
Describes an accurate system for measuring speeds and frequencies with a microcomputer. Explains how the system can give a reasonable graphical representation of velocity and acceleration against time. Gives examples of graphs produced by the program and provides an address to obtain the software for their application. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Graphics, Courseware
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Sperandeo-Mineo, R. M.; Tripi, G. – Physics Education, 1987
Describes some simple computer programs designed to simulate the molecular dynamics of two-dimensional systems with a Lennard-Jones interaction potential. Discusses the use of the software in introductory physics courses at the high school and college level. (TW)
Descriptors: College Science, Computer Assisted Instruction, Computer Simulation, Computer Uses in Education
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