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Euler, Elias; Prytz, Christopher; Gregorcic, Bor – Physics Education, 2020
In this paper, we present three types of activity that we have observed during students' free exploration of a software called "Algodoo," which allows students to explore a range of physics phenomena within the same digital learning environment. We discuss how, by responding to any of the three activity types we identify in the students'…
Descriptors: Physics, Educational Environment, Educational Technology, College Students
Spathopoulos, Vassilios McInnes – Physics Education, 2020
The ancient Greek astronomers devised ingenious methods for measuring the size and distances of the Earth, Moon and Sun. The concepts were beautifully simple and although in most cases could only yield approximate results, they have the advantage that they can be understood by anyone with a basic mathematical background. The emergence of…
Descriptors: Greek Civilization, Computer Simulation, Astronomy, Computer Software
Rodrigues, M.; Carvalho, P. Simeão – Physics Education, 2014
Since the invention and dissemination of domestic laser pointers, observing optical phenomena is a relatively easy task. Any student can buy a laser and experience at home, in a qualitative way, the reflection, refraction and even diffraction phenomena of light. However, quantitative experiments need instruments of high precision that have a…
Descriptors: Optics, Concept Teaching, Video Technology, Computer Software
Dean, J.; Allwood, D. A. – Physics Education, 2014
We describe a range of practical activities that allows students to investigate the properties and applications of magnets. The activities can be used in isolation or used together to build a rounded understanding of the subject area. The activities include simple demonstrations using common or inexpensive equipment, hands-on experiments for small…
Descriptors: Magnets, Integrated Activities, Science Activities, Investigations
Malgieri, Massimiliano; Onorato, Pasquale; Mascheretti, Paolo; De Ambrosis, Anna – Physics Education, 2014
In this paper we report on an activity sequence with a group of 29 pre-service physics teachers based on the reconstruction and analysis of a thought experiment that was crucial for Huygens' derivation of the formula for the centre of oscillation of a physical pendulum. The sequence starts with student teachers approaching the historical…
Descriptors: Preservice Teachers, Mechanics (Physics), Motion, Teacher Attitudes
Gingl, Z.; Kopasz, K. – Physics Education, 2011
A very low-cost, easy-to-make stopwatch is presented to support various experiments in mechanics. The high-resolution stopwatch is based on two photodetectors connected directly to the microphone input of a sound card. Dedicated free open-source software has been developed and made available to download. The efficiency is demonstrated by a free…
Descriptors: Science Activities, Science Instruction, Science Experiments, Mechanics (Physics)
Whyntie, T.; Parker, B. – Physics Education, 2013
The Timepix hybrid silicon pixel detector has been used to investigate the inverse square law of radiation from a point source as a demonstration of the CERN [at] school detector kit capabilities. The experiment described uses a Timepix detector to detect the gamma rays emitted by an [superscript 241]Am radioactive source at a number of different…
Descriptors: Science Instruction, Physics, Scientific Principles, Science Experiments
de Moraes, I. G.; Pereira, J. A. M. – Physics Education, 2009
The motion of the four Galilean moons of Jupiter is studied in this work. The moons had their positions with respect to the centre of the planet measured during one week of observation by means of telescopic charge coupled device images. It is shown that their movement can be well described as a simple harmonic motion. The revolution period and…
Descriptors: Astronomy, Motion, Science Activities, Science Education

Evans, J. G. – Physics Education, 2000
Explores the use of computer simulation/modeling programs for teaching a variety of science concepts. (Author/CCM)
Descriptors: Computer Simulation, Computer Software, Models, Physics

Bridges, Richard – Physics Education, 1995
Describes how to fit binocular observations of the planets to a theoretical model of circular orbits using a modern computer spreadsheet, from which fundamental data about the solar system may be deduced. (AIM)
Descriptors: Astronomy, Computer Software, Earth Science, Physics

Bridges, Richard – Physics Education, 1995
Describes how a spreadsheet is used to fit a circular orbit model to observations of Jupiter's moons made with a small telescope. Kepler's Third Law and the inverse square law of gravity are observed. (AIM)
Descriptors: Astronomy, Computer Software, Earth Science, Physics

Moore, Guy S. M. – Physics Education, 1988
Introduced is a unique generation method of Fourier series requiring simple mathematical skills and using computer programs. Discusses Fourier synthesis by microcomputer, and Fourier analysis with simple equipment. Shown are a circuit diagram, computer programs, monitor displays and tables of data. (YP)
Descriptors: Acoustics, College Science, Computer Graphics, Computer Software

Grafton, Teresa; Suggett, Martin – Physics Education, 1991
Resources that are available for teachers presenting astronomy in the National Curriculum are listed. Included are societies and organizations, resource centers and places to visit, planetaria, telescopes and binoculars, planispheres, star charts, night sky diaries, equipment, audiovisual materials, computer software, books, and magazines. (KR)
Descriptors: Astronomy, Audiovisual Aids, Books, British National Curriculum