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Samsonau, Sergey V. – Physics Education, 2018
This paper presents a set of laboratory classes to be taught as a part of a 1 year calculus-based physics class. It is composed of 7 modules designed to bring together experiments and computer simulations. Each module uses both simulations and experiments to address a phenomenon under study, and lasts for 3 weeks (21 weeks total for the whole…
Descriptors: Physics, Science Instruction, Science Laboratories, Learning Modules
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Serway, Raymond A.; And Others – Physics Teacher, 1995
Presents the theory behind the mechanics demonstration that involves projecting a ball vertically upward from a ballistic cart moving along an inclined plane. The measured overshoot is believed to be due, in part, to the presence of rolling friction and the inertial properties of the cart wheels. (JRH)
Descriptors: Computer Simulation, Demonstrations (Science), Mechanics (Physics), Motion
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Chee, Chia Teck; Hong, Chia Yee – Physics Education, 1999
Experiments in an accelerating frame are hard to perform. Illustrates how simple computer software allows sufficiently rapid and accurate measurements to be made on an arrangement of weights and pulleys known as Atwood's machine. (Author/CCM)
Descriptors: Acceleration (Physics), Computer Simulation, Experiments, Higher Education
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do Couto Tavares, Milton; And Others – Physics Education, 1991
A mechanical analogy between the microscopic motion of a charged carrier in an ordinary resistor and the macroscopic motion of a ball falling along a slanted board covered with a lattice of nails is introduced. The Drude model is also introduced to include the case of inelastic collisions. Computer simulation of the motion is described. (KR)
Descriptors: Computer Simulation, Electricity, Laboratory Procedures, Misconceptions
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Mallinckrodt, A. John – Physics Teacher, 1999
Offers a relatively simple analysis of the asymmetrical "sticking" and rolling behavior of two balls, one steel and one rubber, on an incline. Describes an Interactive Physics (TM) simulation designed to study the problem and gives rough experimental results. (WRM)
Descriptors: Computer Simulation, Force, Higher Education, Mechanics (Physics)
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Pagonis, Vasilis; Drake, Russel; Morgan, Michael; Peters, Todd; Riddle, Chris; Rollins, Karen – Physics Teacher, 1999
Presents five models of the human body as a mechanical system which can be used in introductory physics courses: human arms as levers, humans falling from small heights, a model of the human back, collisions during football, and the rotating gymnast. Gives ideas for discussions and activities, including Interactive Physics (TM) simulations. (WRM)
Descriptors: Biomechanics, Computer Simulation, Force, Higher Education
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Callender, J. T.; Jackson, R. – International Journal of Mathematical Education in Science and Technology, 1998
Analyzes the mathematics of rotational and translational motion and how one can influence the other in the context of cams and cranks. Describes how the individual components can be brought together to simulate a four-stroke engine and how the engine animates again using the same simple macro. (Author/ASK)
Descriptors: Computer Simulation, Computer Uses in Education, Educational Technology, Mathematical Models
Zahraee, Mohammad A.; And Others – 1991
This paper discusses two software packages used in kinematics courses at Purdue University, Calumet (Indiana) and some algorithms written by students for cam design. The first software package, 4BAR, requires the user to define the particular four bar linkage in terms of lengths of the individual links and the angle and distance to the coupler…
Descriptors: Acceleration (Physics), Computer Assisted Design, Computer Assisted Instruction, Computer Simulation
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Kolodiy, George Oleh – Physics Teacher, 1988
Describes experiences with turtle graphics to demonstrate motion in a constant gravitational field. Provides the computer program and typical diagrams. (YP)
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Simulation, Computer Software
2000
This CD-ROM consists of simulation software that allows students to conduct countless experiments using 20 Java simulators and curriculum units that explore light and color, forces and motion, sound and waves, static electricity and magnetism, current electricity, the nature of matter, and a unit on underpinnings. Setups can be designed by the…
Descriptors: Acoustics, Computer Simulation, Curriculum Development, Electricity
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Demana, Franklin; Waits, Bert K. – Mathematics Teacher, 1993
Discusses solutions to real-world linear particle-motion problems using graphing calculators to simulate the motion and traditional analytic methods of calculus. Applications include (1) changing circular or curvilinear motion into linear motion and (2) linear particle accelerators in physics. (MDH)
Descriptors: Acceleration (Physics), Calculus, Computer Assisted Instruction, Computer Simulation
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Kinderman, Jesusa Valdez – Physics Teacher, 1992
Describes a computer simulation of the Compton effect designed to lead students to discover (1) the relationship of the electron's final kinetic energy to its angle of scattering and (2) the relationship between the scattering angles of the outgoing electron and photon. (MDH)
Descriptors: Computer Assisted Instruction, Computer Simulation, Discovery Learning, Energy
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Song, Xueshu – Journal of Computers in Mathematics and Science Teaching, 1992
Suggests that intuition and visualization are effective methods of introducing engineering principles to pre-engineering students. Describes the development of computer simulation software as part of a "Pre-Engineering College On Disk" course. The computer game helps students visualize the relationship between shell trajectory and its…
Descriptors: Computer Assisted Instruction, Computer Games, Computer Simulation, Computer Software Development