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Showing 1 to 15 of 108 results Save | Export
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Wallington, Timothy J.; Anderson, James E.; Siegel, Donald J.; Tamor, Michael A.; Mueller, Sherry A.; Winkler, Sandra L.; Nielsen, Ole J. – Journal of Chemical Education, 2013
Providing sustainable mobility is a major challenge that will require new vehicle and fuel technologies. Alternative and future fuels are the subject of considerable research and public interest. A simple approach is presented that can be used in science education lectures at the high school or undergraduate level to provide students with an…
Descriptors: Science Instruction, College Science, Undergraduate Study, Scientific Principles
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Bartkovich, Kevin G. – Mathematics Teacher, 2013
The standard for measuring fuel efficiency in the U.S. has been miles per gallon (mpg). However, the Environmental Protection Agency's (EPA) switch in rating fuel efficiency from miles per gallon to gallons per hundred miles with the 2013 model-year cars leads to interesting and relevant mathematics with real-world connections. By modeling…
Descriptors: Efficiency, Fuels, Energy Education, Fuel Consumption
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Barto, D.; Cziraky, J.; Geerts, S.; Hack, J.; Langford, S.; Nesbitt, R.; Park, S.; Willie, N.; Xu, J.; Grogan, P. – Journal of Natural Resources and Life Sciences Education, 2009
Consumers are constantly being presented with choices that have economic, environmental, and lifestyle/social dimensions. For example, is an energy-efficient hybrid car (with regenerative braking) a better choice than a regular petroleum-only vehicle when considered from all three dimensions? Surprisingly, although each and all of these dimensions…
Descriptors: Undergraduate Students, Fuels, Fuel Consumption, Heat
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Healey, Gerard; Bunting, Andrea – Bulletin of Science, Technology & Society, 2008
Until recently, Australia had little installed wind capacity, although there had been many investigations into its potential during the preceding decades. Formerly, state-owned monopoly utilities showed only token interest in wind power and could dictate the terms of energy debates. This situation changed in the late 1990s: Installed wind capacity…
Descriptors: Industry, Foreign Countries, Energy, Natural Resources
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Fowler, John M.; And Others – Environment, 1978
This article attempts to clarify power plant performance to the non-specialists by presenting data on nuclear and coal power plants. (MR)
Descriptors: Electricity, Energy, Energy Conservation, Fuel Consumption
Fallon, Irving – American School and University, 1978
As part of an overall energy management program, the central steam plant at the University of Connecticut at Storrs has a fuel contract method in which vendors bid on a specification based on heating value as opposed to just volume. (Author/MLF)
Descriptors: Energy Conservation, Fuel Consumption, Fuels, Higher Education
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Walters, Edward A.; Wewerka, Eugene M. – Journal of Chemical Education, 1975
Concludes that coal will be the major U.S. energy source in the near future despite the significant problems associated with an increase in coal consumption. Provides advantages and disadvantages for the four major long-term energy sources: nuclear fission, nuclear fusion, geothermal sources, and solar energy. (MLH)
Descriptors: Energy, Energy Conservation, Fuel Consumption, Fuels
National Wildlife, 1974
This article is a brief overview of the energy problems of today and of the future. Energy sources, factors contributing to fossil fuel shortage, energy conservation, energy demands and uses in the United States, and the advantages and disadvantages of alternative fuels are discussed. (TK)
Descriptors: Conservation Education, Energy, Energy Conservation, Environment
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Miller, Stanton S. – Environmental Science and Technology, 1979
The National Academy of Engineering's annual meeting focused on the promise and problems of synthetic fuels development. (BB)
Descriptors: Energy Conservation, Engineering, Fuel Consumption, Fuels
Solar Age, 1980
This directory is intended as a guide to organizations, publications, and other information concerning biomass fuels. Major sections of the directory include: (1) Organizations and Publications (General); (2) Overview (generic information on biomass fuels); (3) Thermal Conversion; (4) Gaseous Fuels; and (5) Alcohol Fuels. Each entry in the…
Descriptors: Agriculture, Biology, Energy, Energy Conservation
Stephan, Ed – American School and University, 1979
Describes Atmospheric Fluidized Bed (AFB) combustion that many persons believe to be a way to burn coal cleanly and efficiently and is especially significant for colleges and universities. (Author)
Descriptors: Energy Conservation, Fuel Consumption, Fuels, Heating
Abrahams, A. L. – School Business Affairs, 1976
Describes results of a study that used CV 100, a fuel additive for use in oil-fired heating systems, on a trial basis in 12 Ontario schools. The test showed an average 12 percent reduction in fuel costs in the schools using CV 100. (JG)
Descriptors: Climate Control, Cost Estimates, Elementary Secondary Education, Energy Conservation
Franklin, Ben A. – Appalachia, 1978
The recent trend in using wood for energy is examined with new developments for gaining greater efficiency from an old source. The threat of deforestation is acknowledged and discussed, particularly in relation to Appalachia. (KR)
Descriptors: Conservation (Environment), Energy Conservation, Fuel Consumption, Fuels
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Musgrove, P. – Physics Education, 1978
Explores the possibility of installing offshore windmills to provide electricity and to save fuel for the United Kingdom. Favors their deployment in clusters to facilitate supervision and minimize cost. Discusses the power output and the cost involved and urges their quick development. (GA)
Descriptors: Depleted Resources, Ecology, Electricity, Energy
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Cowking, A.; And Others – Physics Education, 1978
Explains the function of a central heating system and calculates the total heat energy required to heat a house. Estimates annual heat requirement and amount of fuel needed. Gives detailed calculation of heat required for a particular house as an example. (G A)
Descriptors: Costs, Design Requirements, Energy, Energy Conservation
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