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Pratidhina, Elisabeth; Rosana, Dadan; Kuswanto, Heru; Dwandaru, Wipsar Sunu Brams – Physics Education, 2021
Distance learning in physics is still facing challenges, mainly due to the difficult access to a laboratory for practical work. Practical work is an essential part of the physics classroom because it allows students to interact with authentic physics phenomena and develop their scientific abilities. In this paper, we propose alternative…
Descriptors: Physics, Distance Education, Science Experiments, Programming Languages
Atkin, Keith – Physics Education, 2019
This paper was inspired by the work of a previous contributor on the subject of modelling plague epidemiology by comparing it to the physics of series radioactive decay, RC transients, and fluid dynamics. An Arduino-based experiment to illustrate the fluid-dynamical case is described. Attention is drawn to important differences between systems…
Descriptors: Epidemiology, Comparative Analysis, Physics, Radiation
Sokolowski, Andrzej – Physics Teacher, 2018
Traditional school laboratory exercises on a system of moving objects connected by strings involve deriving expressions for the system acceleration, a = (?F)/m, and sketching a graph of acceleration vs. force. While being in the form of rational functions, these expressions present great opportunities for broadening the scope of the analysis by…
Descriptors: Physics, Scientific Concepts, Inferences, Science Instruction
Ribeiro, Carla – School Science Review, 2017
The double-wall paper cup is an everyday object that can be used in the laboratory to study heat transfer. The experiment described here has been done by physics students aged 12-13 years; it can also be used in a different context to prompt debate about environmental issues.
Descriptors: Science Instruction, Physics, Science Laboratories, Science Experiments
Wong, Wing-Kwong; Chen, Kai-Ping; Lin, Jia-Wei – International Journal of Distance Education Technologies, 2020
The results of PISA 2015 indicate that Taiwanese students have excellent mathematical and scientific knowledge but are weak in applying such knowledge and in conducting practical experiments in the laboratory. To support students conducting practical experiments in physics laboratories, a real-time data logging system and an online tool for…
Descriptors: Foreign Countries, Physics, Science Instruction, Handheld Devices
Forrest, Doug; Whalen, Mary Battershell – Physics Teacher, 2012
Students entering physics courses in high school have seen graphs for years in math and science classes, but often do not have a deep understanding of the physical meaning of the graphs. This introductory activity is designed to allow students to collect data for a real world or physical situation (the height versus volume of water held in…
Descriptors: Physics, Science Instruction, Graphs, Introductory Courses
Molina-Bolivar, J. A.; Abella-Palacios, A. J. – European Journal of Physics, 2012
The aim of this paper is to introduce a simple and low-cost experimental setup that can be used to study the eddy current brake, which considers the motion of a sliding magnet on an inclined conducting plane in terms of basic physical principles. We present a set of quantitative experiments performed to study the influence of the geometrical and…
Descriptors: Physics, Science Instruction, College Science, Undergraduate Students
LoPresto, Michael C.; Jacobs, Diane A. – Physics Education, 2007
In this exercise the US Standard Atmosphere is used as "data" that a student is asked to model by deriving equations to reproduce it with the help of spreadsheet and graphing software. The exercise can be used as a laboratory or an independent study for a student of introductory physics to provide an introduction to scientific research…
Descriptors: Scientific Research, Physics, Independent Study, Models
Merrill, John R. – Amer J Phys, 1970
Describes three of many uses to which the desk-top computer has been put in the introductory physics laboratory. The three uses involve an AC circuit laboratory, an equipotential mapping experiment, and an N-slit diffraction experiment. Typical desk-top computer-produced theory plots are shown. (LC)
Descriptors: College Science, Computer Assisted Instruction, Electricity, Graphs

Corrado, L. C. – Physics Teacher, 1974
Describes an easily-implemented experiment in which a moderately complex relation between dependent and independent variables is involved. (Author/GS)
Descriptors: College Science, Energy, Graphs, Laboratory Experiments
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

Carpenter, R. Kennedy – Physics Teacher, 1974
Describes experiments that can be carried out by freshmen in general science courses. All experiments are prepared with inexpensive equipment and materials. Quantitative data are analyzed intuitively using graphical representations. (JP)
Descriptors: General Science, Graphs, Instruction, Instructional Materials

Turner, Warren A.; Ellis, Glenn W. – Physics Teacher, 1999
Presents a pre-lab exercise, an experimental setup, and discussion of computer-generated graphs that can be used to study the motion and energy of a bouncing ball. (WRM)
Descriptors: Energy, Graphs, Higher Education, Laboratory Experiments
Beichner, Robert J. – 1990
Research indicates that the educational effectiveness of Microcomputer-Based Laboratories (MBL) may be due to the real time nature of the experience. This article describes a study where kinesthetic feedback was completely removed by giving students only visual replications of a motion situation. If simultaneity of perception is the important…
Descriptors: College Science, Computer Assisted Instruction, Computer Interfaces, Graphs

Windelborn, Augden F. – Physics Teacher, 1999
Describes some adaptations made in a university physics laboratory course to accommodate a student with total visual impairment. (WRM)
Descriptors: Audio Equipment, Blindness, Disabilities, Graphs