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Kiemeneij, Wilbert; de Putter, Lesley; Koopman, Maaike – Physics Education, 2023
Physics education in secondary schools can include biophysics topics as electives. An open simulation based on a simulation like Minecraft for learning the workings of the action potential in human cells was designed and tested for students in upper secondary physics education. In small design and test cycles both the simulation engine and the…
Descriptors: Science Education, Secondary School Science, Biophysics, Engines
Aydin, Mirac; Ozcan, Ibrahim – Physics Education, 2022
Advancements in mobile technologies have accelerated mobile Augmented Reality (AR), and many applications have been developed and presented in online stores. This study aims to evaluate the accuracy of the AR model of the Solar System simulated in mobile AR applications located in the Google Play Store. The applications were examined in the store…
Descriptors: Educational Technology, Computer Simulation, Astronomy, Telecommunications
Singh, I.; Khun Khun, K.; Kaur, B. – Physics Education, 2018
Excel spreadsheets are used as an excellent tool in physics laboratory experiments related to wave optics. This paper presents a simple way to simulate diffraction of waves through a slit using Excel spreadsheets without any tedious programming. These simulations are used to visualize the effect of variation of different parameters such as number…
Descriptors: Physics, Science Education, Spreadsheets, Computer Software
Wee, Loo Kang; Lee, Tat Leong; Chew, Charles; Wong, Darren; Tan, Samuel – Physics Education, 2015
This paper reports a computer model simulation created using Easy Java Simulation (EJS) for learners to visualize how the steady-state amplitude of a driven oscillating system varies with the frequency of the periodic driving force. The simulation shows (N = 100) identical spring-mass systems being subjected to (1) a periodic driving force of…
Descriptors: Foreign Countries, Computer Simulation, Physics, Motion
Bryan, J. A.; Slough, S. W. – Physics Education, 2009
While computer technology continues to enhance the teaching and learning of all science disciplines, computer simulations, in particular, have become exceptionally beneficial in physics education. In addition to the manner in which physics instructors integrate computer simulations into their instructional practices, the design of a simulation may…
Descriptors: Physics, Prediction, Computers, Teaching Methods
Gagnon, Michel – Physics Education, 2011
The close relationship between charged particles and electromagnetic fields has been well known since the 19th century, thanks to James Clerk Maxwell's brilliant unified theory of electricity and magnetism. Today, electromagnetism is recognized as an essential aspect of human activity and has consequently become a major component of senior…
Descriptors: Physics, Computer Software, Motion, High Schools
Hatzikraniotis, E.; Kallery, M.; Molohidis, A.; Psillos, D. – Physics Education, 2010
This article examines secondary students' design of experiments after engagement in an innovative and inquiry-oriented module on heat transfer. The module consists of an integration of hands-on experiments, simulated experiments and microscopic model simulations, includes a structured series of guided investigative tasks and was implemented for a…
Descriptors: Science Activities, Compulsory Education, Research Methodology, Heat

Kirkup, L. – Physics Education, 1986
Describes the implementation of a computer simulation of magnetic field lines. Discusses properties of magnetic fields and the calculation of magnetic fields at points. Provides a program listing (additional programs and teaching notes available from the author) and gives examples of several field plots. (JM)
Descriptors: College Science, Computer Simulation, Computer Software, Computers

Clark, Paul M.; And Others – Physics Education, 1974
The characteristic features of the Maxwell-Botzmann energy distribution function and its variation with temperature are demonstrated using visual displays and simple counting techniques. (DT)
Descriptors: College Science, Instruction, Mechanics (Physics), Physics

Field, Richard – Physics Education, 1995
Describes a spreadsheet that can be used to show the changes in intensity of Fraunhofer diffraction patterns produced by a single and double slits arrangement. Discusses a practical demonstration of diffraction that allows data to be logged and entered into the spreadsheet. (DDR)
Descriptors: Computer Simulation, Demonstrations (Science), Optics, Physics

Harland, D. B. – Physics Education, 1975
Descriptors: Analog Computers, Force, Motion, Physics

Kirkup, L. – Physics Education, 1985
Describes a computer program which plots electric field line plots. Includes program listing, sample diagrams produced on a BBC model B microcomputer (which could be produced on other microcomputers by modifying the program), and a discussion of the properties of field lines. (JN)
Descriptors: College Science, Computer Simulation, Computer Software, Electricity

Kinsella, I. A.; Hannaidh, P. B. O. – Physics Education, 1978
Describes a simulation method for measurement of errors that requires calculators and tables of random digits. Each student simulates the random behaviour of the component variables in the function and by combining the results of all students, the outline of the sampling distribution of the function can be obtained. (GA)
Descriptors: College Science, Computation, Higher Education, Instruction

Humberston, J. W.; And Others – Physics Education, 1983
A computer program was written for a model system in quantum mechanics (particle in a one-dimensional finite square well potential). Described is a major extension of the single-well program to treat problem of a particle in a double/triple finite square potential well. Technical/educational features of the program are considered. (Author/JN)
Descriptors: College Science, Computer Programs, Higher Education, Physics

Ogborn, Jon; Wong, Denis – Physics Education, 1984
Presents a system that permits students to engage directly in the process of modelling and to learn some important lessons about models and classes of models. The system described currently runs on RML 380Z and 480Z, Apple II and IIe, and BBC model B microcomputers. (JN)
Descriptors: Computer Simulation, Computer Software, High Schools, Microcomputers