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Showing 1 to 15 of 49 results Save | Export
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Cervantes Juárez, Erika; Sánchez Guzmán, Daniel – Physics Education, 2023
In many science and engineering undergraduate programmes, physics courses are fundamental and can be seen as a potential place where students can develop complementary abilities such as the computational thinking process. The present work proposes and describes the learning science and engineering with electronic spreadsheets cycle (LSEESC)…
Descriptors: Engineering Education, Spreadsheets, Science Education, Physics
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Kopasz, Katalin; Makra, Péter; Gingl, Zoltán – Acta Didactica Napocensia, 2013
Experiments, as we all know, are especially important in science education. However, their impact on improving thinking could be even greater when applied together with the methods of inquiry-based learning (IBL). In this paper we present our observations of a high-school laboratory class where students used computers to carry out and analyse real…
Descriptors: Science Education, Science Experiments, Active Learning, Inquiry
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Pasko, Alexander; Adzhiev, Valery; Malikova, Evgeniya; Pilyugin, Victor – Journal of Information Technology Education: Innovations in Practice, 2013
Modern education technologies are destined to reflect the realities of a modern digital age. The juxtaposition of real and synthetic (computer-generated) worlds as well as a greater emphasis on visual dimension are especially important characteristics that have to be taken into account in learning and teaching. We describe the ways in which an…
Descriptors: Educational Technology, Computer Uses in Education, Models, Visual Aids
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Henderson, Giles – American Journal of Physics, 1980
Uses computer graphics and nonstationary, superposition wave functions to reveal the dynamic quantum trajectories of several molecular and electronic transitions. These methods are then coupled with classical electromagnetic theory to provide a conceptually clear picture of the emission process and emitted radiation localized in time and space.…
Descriptors: College Science, Computer Graphics, Higher Education, Nuclear Physics
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Beeman, D.; Boswell, Jonathan – American Journal of Physics, 1975
Descriptors: College Science, Computer Assisted Instruction, Computer Graphics, Geometric Concepts
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Frank, Michael T.; Kluk, Edward – Physics Teacher, 1990
Presented is an example of this use of spreadsheet software. The basic case is considered with an extension and suggestions for other applications. Emphasized is the use of this method at the introductory level. (CW)
Descriptors: College Science, Computation, Computer Graphics, Computer Software
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Zheng, T. F.; And Others – Physics Teacher, 1994
Emphasizes two aspects for a calculus-based physics course: applying calculus and numerical integral methods to determine the theoretical period of a pendulum with nonlinear motion, and achieving theoretical and experimental results by using "MathCad" software and a microcomputer-based laboratory (MBL) system. (MVL)
Descriptors: Computer Graphics, Computer Interfaces, Computer Uses in Education, Higher Education
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Fernandez, J. Maria Vega; And Others – American Journal of Physics, 1981
A method is presented for teaching some topics of kinematics. It involves the use of electronic equipment, which allows active student participation, the systematic analysis and solution of problems, and the use of a quick feedback loop for training. (Author/SK)
Descriptors: College Science, Computer Graphics, Computer Oriented Programs, Computers
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Risley, John, Ed. – Physics Teacher, 1988
Compares the features of the sonic rangers available from HRM Software, MICROMEASUREMENTS, NAGAWTIS Software Research, and PASCO Scientific for demonstrations and experiments in mechanics. Presents the advantages of the sonic rangers and the typical graphics displayed by each software package. (YP)
Descriptors: Acceleration (Physics), College Science, Computer Graphics, Computer Software Reviews
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Smith, P. A.; And Others – American Journal of Physics, 1981
Describes a procedure for determining the coefficient of restitution using a microcomputer which collects and sends data to a large computer where analysis is done and graphical output is generated. The data collection hardware and software are described, and results are illustrated. (Author/SK)
Descriptors: College Science, Computer Assisted Instruction, Computer Graphics, Computer Oriented Programs
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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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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
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McKenzie, J. – Physics Education, 1982
A computer program, making use of interactive computer graphics, has been developed to help students become fluent in the mathematical procedures needed to understand concepts of addition of waves. Background theory, use of the program, and technical and educational features of the program (written in Fortran) are discussed. (Author/JN)
Descriptors: College Science, Computer Assisted Instruction, Computer Graphics, Computer Oriented Programs
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Saiz, David – Science Teacher, 1994
Describes the use of C programming language for creating simple programs to teach about pendulums, waves, and frequency. (PR)
Descriptors: Computer Graphics, Computer Uses in Education, Educational Technology, High Schools
Jolls, Kenneth R.; And Others – 1976
A technique is described for the generation of perspective views of three-dimensional models using computer graphics. The technique is applied to models of familiar thermodynamic phase diagrams and the results are presented for the ideal gas and van der Waals equations of state as well as the properties of liquid water and steam from the Steam…
Descriptors: Chemistry, Computer Graphics, Computers, Engineering
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