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Yan, Zixiang; Xia, Heming; Lan, Yueheng; Xiao, Jinghua – Physics Education, 2018
A cylinder rolling down an inclined board is a commonly seen and interesting object to study and it is also easy to experiment with and model. Following what has become a popular practice, we use smartphones to measure the angular acceleration of a cylinder rolling down a plane of different inclining angles. The friction force deviates from the…
Descriptors: Kinetics, Science Instruction, Models, Physics
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Spitznagel, Benjamin; Pritchett, Paige R.; Messina, Troy C.; Goadrich, Mark; Rodriguez, Juan – Biochemistry and Molecular Biology Education, 2016
Vision and Change [AAAS, 2011] outlines a blueprint for modernizing biology education by addressing conceptual understanding of key concepts, such as the relationship between structure and function. The document also highlights skills necessary for student success in 21st century Biology, such as the use of modeling and simulation. Here we…
Descriptors: Science Instruction, Biology, Undergraduate Study, Science Laboratories
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Langbeheim, Elon – Chemistry Education Research and Practice, 2015
The article, "Using Animations in Identifying General Chemistry Students' Misconceptions and Evaluating Their Knowledge Transfer Relating to Particle Position in Physical Changes" (Smith and Villarreal, 2015), reports that a substantial proportion of undergraduate students expressed misconceived ideas regarding the motion of particles in…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Chemistry
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Choopan, W.; Ketpichainarong, W.; Laosinchai, P.; Panijpan, B. – Physics Education, 2011
We constructed a simple demonstration setup to simulate an extrasolar planet and its star revolving around the system's centre of mass. Periodic dimming of light from the star by the transiting planet and the star's orbital revolution simulate the two major ways of deducing the presence of an exoplanet near a distant star. Apart from being a…
Descriptors: Visual Aids, Astronomy, Simulation, Science Instruction
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Tambade, Popat S. – European Journal of Physics Education, 2011
The objective of this article is to graphically illustrate to the students the physical phenomenon of motion of charged particle under the action of simultaneous electric and magnetic fields by simulating particle motion on a computer. Differential equations of motions are solved analytically and path of particle in three-dimensional space are…
Descriptors: Motion, Scientific Concepts, Science Instruction, Computer Uses in Education
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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)
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Ros, Rosa M. – Physics Education, 2009
By means of a simple device, made by students themselves, the movements of the Sun and the Moon can be studied at different latitudes. Using this device, it is easy to explain phenomena such as the midnight Sun, zenith pass and why the Moon "smiles". In this article, we show various photos of the Sun's movements, alongside their simulations on the…
Descriptors: Astronomy, Science Instruction, Physics, Simulation
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Baltz, A. J.; Machlup, S. – American Journal of Physics, 1971
Descriptors: Astronomy, College Science, Computer Assisted Instruction, Instructional Materials
Merrill, John R.; Morrow, Richard A. – Amer J Phys, 1970
Describes an introductory physics experiment concerned with scattering particles off various force centers. The experiment uses simulation techniques and a computer. The scattering is classical, and the student examines plots of computed particle trajectories. The results illustrate the concepts of differential corss-section, total cross-section,…
Descriptors: College Science, Computers, Force, Graphs
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Thomas, William E. – Physics Teacher, 1982
"Planetary Motion Simulations" is a system of programs designed for students to observe motions of a superior planet (one whose orbit lies outside the orbit of the earth). Programs run on the Apple II microcomputer and employ high-resolution graphics to present the motions of Saturn. (Author/JN)
Descriptors: Astronomy, College Science, Computer Graphics, Computer Programs
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Dowling, John, Jr. – American Journal of Physics, 1972
Discusses the use of a set of computer programs (FORTRAN IV) in an introductory mechanics course for science majors. One laboratory activity is described for determining the coefficient of restitution of a glider on an air track. A student evaluation for the lab is included in the appendix. (Author/TS)
Descriptors: College Science, Computer Oriented Programs, Computer Programs, Course Descriptions
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Journal of Computers in Mathematics and Science Teaching, 1983
A complete listing of a projectile motion program for the Apple II microcomputer is provided. A discussion of this computer simulation and a table with variables used in the program (as well as their meanings) can be found in SE 533 596. (JN)
Descriptors: College Science, Computer Programs, High Schools, Higher Education
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Weltner, Klaus – American Journal of Physics, 1979
Describes an elastic Foucault pendulum designed to demonstrate how the rotation of the plane of oscillation depends on geographical latitude, and shows that this rotation vanishes at the equator. (GA)
Descriptors: College Science, Demonstrations (Educational), Higher Education, Instructional Materials
Bork, Alfred M.; And Others – 1971
Two computer programs are described, with the development and implementation of the first program described in some detail. This is a student-computer dialogue for beginning or intermediate physics classes entitled "A Computer-Based Dialogue for Deriving Energy Conservation for Motion in One-Dimension." A portion of the flowchart is included,…
Descriptors: College Science, Computer Assisted Instruction, Computer Programs, Energy
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Sauer, G. – American Journal of Physics, 1981
Describes a one-dimensional model for an ideal gas to study development of disordered motion in Newtonian mechanics. A Monte Carlo procedure for simulation of the statistical ensemble of an ideal gas with fixed total energy is developed. Compares both approaches for a pseudoexperimental foundation of statistical mechanics. (Author/JN)
Descriptors: College Science, Computer Oriented Programs, Energy, Flow Charts
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