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Showing 1 to 15 of 193 results Save | Export
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Ronneau, C. – Journal of Chemical Education, 1990
Discussed is misinformation people have on the subject of radiation. The importance of comparing artificial source levels of radiation to natural levels is emphasized. Measurements of radioactivity, its consequences, and comparisons between the risks induced by radiation in the environment and from artificial sources are included. (KR)
Descriptors: Chemistry, College Science, Higher Education, Misconceptions
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Shallcross, Dudley E.; Harrison, Tim G. – Physics Education, 2007
The newly revised specifications for GCSE science involve greater consideration of climate change. This topic appears in either the chemistry or biology section, depending on the examination board, and is a good example of "How Science Works." It is therefore timely that students are given an opportunity to conduct some simple climate modelling.…
Descriptors: Climate, Prediction, Models, Chemistry
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Sartori, Leo – Physics Today, 1983
Fundamental principles governing nuclear explosions and their effects are discussed, including three components of a nuclear explosion (thermal radiation, shock wave, nuclear radiation). Describes how effects of these components depend on the weapon's yield, its height of burst, and distance of detonation point. Includes effects of three…
Descriptors: Higher Education, Nuclear Energy, Nuclear Physics, Nuclear Warfare
Harvard Univ., Cambridge, MA. Harvard Project Physics. – 1968
Nuclear physics fundamentals are presented in this sixth unit of the Project Physics text for use by senior high students. Included are discussions of radioactivity, taking into account Bacquerel's discovery, radioactive elements, properties of radiations, radioactive transformations, decay series, and half-lives. Isotopes are analyzed in…
Descriptors: Instructional Materials, Nuclear Physics, Physics, Radiation
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Merril, Judith – Social Education, 1973
Topic 7, Atomic Bombs and Radiation, from a theme issue on Teaching World History Through Science Fiction, stimulates discussion on mutation and radiation effects. (JB)
Descriptors: Genetics, Nuclear Weapons, Radiation Biology, Radiation Effects
Phelps, William; And Others – 1973
This student text and laboratory manual is designed primarily for the non-college bound high school student. It can be adapted, however, to a wide range of abilities. It begins with an examination of the properties of nuclear radiation, develops an understanding of the fundamentals of nucleonics, and ends with an investigation of careers in areas…
Descriptors: Laboratory Manuals, Laboratory Procedures, Nuclear Physics, Physics
Phelps, William; And Others – 1973
This collection of laboratory lessons is designed primarily for the non-college bound high school student. It can be adapted, however, to a wide range of abilities. It begins with an examination of the properties of nuclear radiation, develops an understanding of the fundamentals of nucleonics, and ends with an investigation of careers in areas…
Descriptors: Laboratory Manuals, Laboratory Procedures, Nuclear Physics, Physics
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Mak, Se-yuen – Physics Teacher, 1999
Describes the use of potassium chloride in quantitative project investigations into radioactivity. (WRM)
Descriptors: Higher Education, Nuclear Physics, Physics, Radiation
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McAllister, Karlene – Science Teacher, 1981
Examines microwave and radio wave radiation in terms of government regulations, harmful effects, existing studies, definitions, and the need for further research. (DS)
Descriptors: College Science, Higher Education, Legislation, Radiation
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Riland, Carson A. – Physics Teacher, 1996
Reports that environmental radioactivity levels vary with temperature and precipitation and these effects are due to radon. Discusses the measurement of this environmental radioactivity and the theory behind it. (JRH)
Descriptors: Higher Education, Physics, Radiation, Secondary Education
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Moore, Pam – Tech Directions, 2007
Solar power (also known as solar energy) is solar radiation emitted from the sun. Large panels that absorb the sun's energy as the sun beats down on them gather solar power. The energy in the rays can be used for heat (solar thermal energy) or converted to electricity (photovoltaic energy). Each solar energy project, from conception to…
Descriptors: Metal Working, Radiation, Energy, Career Development
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Social Education, 1982
Contains a poster dealing with energy uses for use in secondary-level classes. On the reverse side of the poster, there is a discussion of alternative energy resources. Activities in which students calculate the operating costs of solar-powered cars and the size of solar collectors needed to heat water are included. (AM)
Descriptors: Energy Conservation, Learning Activities, Secondary Education, Solar Radiation
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Bartels, Richard; Loxsom, Fred – Physics Teacher, 1995
Discusses factors that determine whether or not a sunburn is possible under glass, including the spectral dependence of the skin's sensitivity to sunburn, the ground-level spectrum of solar radiation, and the wavelength dependence of the transmission for the particular piece of glass. Concludes that it is possible to get sunburned through glass.…
Descriptors: Higher Education, Light, Physics, Radiation
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O'Day, Thomas; Williams, Robert W. – NASSP Bulletin, 1978
Describes an energy education program in a New York high school that involves the staff, the students, and the school community. (Author/MLF)
Descriptors: Curriculum Development, Energy Conservation, School Maintenance, Secondary Education
Ring, Susan – American School and University, 1978
The solar heating system at St. Charles High School in Illinois, will be completed in January and is expected to fulfill between 40 and 80 percent of the building's heating requirements. (Author/ MLF)
Descriptors: Cost Effectiveness, Educational Facilities Design, Heating, Secondary Education
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