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Siddiq, Nur Abdillah – Physics Education, 2021
The COVID-19 pandemic has forced educational institutions to adjust their learning process to distance education or online learning. This paper explains how to teach optics during the COVID-19 pandemic by implementing project-based learning that can be supervised online. Students are instructed to design, characterize, and optimize droplet lenses…
Descriptors: COVID-19, Pandemics, School Closing, Distance Education
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Kittiravechote, Aungtinee – European Journal of Physics Education, 2020
Hands-on projects have been widely used as alternative approaches for teaching and learning of science with direct practical experience on doing to promote students' development of 21st-century skills. Here, we present an implementation of hands-on projects into teaching and learning of magnetic field topic that corresponds with indicators and…
Descriptors: Hands on Science, Experiential Learning, Science Experiments, Instructional Effectiveness
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Langbeheim, Elon – Physics Education, 2015
Research has shown that project-based learning promotes student interest in science and improves understanding of scientific content. Fostering student motivation is particularly important in accelerated science and technology programmes for talented students, which are often demanding and time-consuming. Current texts provide little guidance on…
Descriptors: Science Instruction, Scientific Principles, Junior High School Students, Physics
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Ganci, Salvatore – Physics Education, 2011
This paper describes a set of simple experiments with a very low cost using a notebook as a measuring instrument without external hardware. The major purpose is to provide demonstration experiments for schools with very low budgets. (Contains 6 figures.)
Descriptors: Measurement Objectives, Measurement Techniques, Science Experiments, Motion
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Davidhazy, Andrew – Tech Directions, 2012
Sir Isaac Newton determined that the acceleration constant for gravity was 32 ft./per/sec/sec. This is a fact that most students become familiar with over time and through various means. This article describes how this can be demonstrated in a technology classroom using simple photographic equipment. (Contains 5 figures.)
Descriptors: Program Descriptions, Scientific Concepts, Photography, Physics
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Taylor, Harold E. – Physics Teacher, 1976
Discusses a project in which college students equipped a house with three different types of solar energy collectors and two vertical axis windmills. (MLH)
Descriptors: College Science, Energy, Higher Education, Physics
Rankins, William H., III; Wilson, David A. – 1978
This publication describes in detail projects for using solar energy; five major projects and five mini-projects. The major projects are: (1) Parabolic reflectors, both cylindrical and spherical; (2) Solar oven; (3) Hot water heater; (4) House heating; and (5) Conversion to electricity. Mini-projects investigate: (1) Solar computers; (2) Fresnel…
Descriptors: Energy, Energy Conservation, Environmental Education, Heating
Walker, Jearl – Scientific American, 1979
Describes a student investigation of a reverse flame in a atmosphere of methane that won second place in the physics division of the International Science and Engineering Fair. Includes a discussion of falling and fracturing behavior, specifically dealing with chimneys, trees, pencil point, stirring rods, and chalk. (BT)
Descriptors: Instruction, Kinetics, Laboratory Experiments, Motion
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Johansson, K. E.; Malmgren, T. G. M. – Physics Education, 1999
Describes an educational project primarily aimed at teachers and 15 to 18-year-old students that describes the essential features of a modern high-energy physics experiment. (Author/CCM)
Descriptors: High Schools, Inservice Teacher Education, Internet, Matter
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Blythe, John – Physics Teacher, 1980
Described are 15 events that take place during a physics olympics at a Michigan high school. These events are planned with the idea of involving the older students in designing and presenting projects to ninth graders, and involving the latter in a day of outdoor participation. (SA)
Descriptors: Physics, Puzzles, Science Activities, Science Education
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Hastings, R. B. – Science Activities, 1974
Describes two experiments in physics, using the same inexpensive apparatus, that may be performed as projects by high ability secondary science students. (JR)
Descriptors: Laboratory Experiments, Laboratory Procedures, Physical Sciences, Physics
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Jones, J.; Sikwese, F. H. – Physics Education, 1973
Descriptors: College Science, Instructional Materials, Laboratory Equipment, Laboratory Experiments
Showalter, Victor M.; Slesnick, Irwin L. – 1968
This is a collection of reports of student award winning science projects that have appeared in "The Science Teacher." Grade levels 7-12 are represented with projects categorized as follows: biology, chemistry and physics, earth-space science, and miscellaneous. In each section the abstracts are arranged in order of increasing complexity…
Descriptors: Biology, Chemistry, Earth Science, High School Students
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Leung, W. P.; And Others – Physics Education, 1980
Describes a project on the application of the laser which aims to stimulate the interest of undergraduate students in applied physics and to demonstrate the interaction between light and ultrasonic waves by building a simple laser communication system. (SK)
Descriptors: College Science, Electronics, Engineering Education, Higher Education
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Hudson, Reggie L.; Pendley, Bradford D. – Journal of Chemical Education, 1988
Describes an advanced NMR project that can be done with a 60-MHz continuous-wave proton spectrometer. Points out the main purposes are to give students experience in second-order NMR analysis, the simplification of spectra by raising the frequency, and the effect of non-hydrogen nuclei on proton resonances. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Inorganic Chemistry
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