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Showing 1 to 15 of 32 results Save | Export
Jorling, Thomas C. – New England Journal of Higher Education, 2021
Climate change is real and accelerating. It requires an urgent response that focuses all the strategies and tactics necessary to stabilize the Earth's temperature regime. According to Thomas Jorling, the objective to guide research, development and implementation is straightforward: Achieve an all-electric economy. Simply put, all sectors of…
Descriptors: Climate, Change, Energy, Energy Conservation
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Rubner, Isabel; Berry, Ashton J.; Grofe, Theodor; Oetken, Marco – Journal of Chemical Education, 2019
A significant challenge for the global community is the increasing demand for clean and renewable energy technologies. However, a lack of knowledge of these technologies threatens to impede their adoption. The development of cheap, effective, and easy-to-use chemical and electrochemical storage technologies is crucial if countries are to move away…
Descriptors: Energy Conservation, Science Instruction, Chemistry, Hands on Science
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Blatti, Jillian L.; Burkart, Michael D. – Journal of Chemical Education, 2012
Microalgae have emerged as an attractive feedstock for the mass production of renewable transportation fuels due to their fast growth rate, flexible habitat preferences, and substantial oil yields. As an educational tool, a laboratory was developed that mimics emerging algal biofuel technology, including the extraction of algal lipids and…
Descriptors: Chemistry, Fuels, Energy, Laboratory Experiments
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Patzek, Tad W. – Bulletin of Science, Technology & Society, 2009
A proper First Law energy balance of the soybean biodiesel cycle shows that the overall efficiency of biodiesel production is 0.18, i.e., only 1 in 5 parts of the solar energy sequestered as soya beans, plus the fossil energy inputs, becomes biodiesel. Soybean meal is produced with an overall energetic efficiency of 0.38, but it is not a fossil…
Descriptors: Fuels, Energy Conservation, Physics, Energy
Metz, Steve, Ed. – National Science Teachers Association (NJ3), 2011
The concept of energy is central to all the science disciplines, seamlessly connecting science, technology, and mathematics. For high school and upper middle school teachers, this compendium comprises inquiry-based activities, lesson plans, and case studies designed to help teach increased awareness of energy, environmental concepts, and the…
Descriptors: Energy Education, Science Education, Secondary School Science, Grade 9
Pelletier, Stephen G. – Trusteeship, 2010
Managers of university endowment funds are paying closer attention to investing in "green" industries, commonly bundled under the umbrella "cleantech." Cleantech offers the possibility of buying in while prices are low "and" making a "green" investment play, but it also harbors the risks inherent in any emerging industry. Cleantech has varying…
Descriptors: Higher Education, Endowment Funds, Investment, Trusts (Financial)
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Pearce, Joshua M. – International Journal of Sustainability in Higher Education, 2006
Purpose: The purpose of this paper is to explore the use of the purchase power of the higher education system to catalyze the economy of scale necessary to ensure market competitiveness for solar photovoltaic electricity. Design/methodology/approach: The approach used here was to first determine the demand necessary to construct "Solar City…
Descriptors: Fuels, Energy, Manufacturing, Energy Conservation
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Wilhelm, Erik; Fowler, Michael – Bulletin of Science, Technology and Society, 2006
Hydrogen energy systems are being developed to replace fossil fuels-based systems for transportation and stationary application. One of the challenges facing the widespread adoption of hydrogen as an energy vector is the lack of an efficient, economical, and sustainable method of hydrogen production. In the short term, hydrogen produced from…
Descriptors: Energy, Fuels, Fuel Consumption, Energy Management
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Duffie, John A.; Beckman, William A. – Science, 1976
Describes recent research that has made solar energy economically competitive with other energy sources. Includes solar energy building architecture, storage systems, and economic production data. (MLH)
Descriptors: Economic Factors, Energy, Fuels, Heating
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Van Koevering, Thomas E.; And Others – Journal of Chemical Education, 1987
Proposes that the production of alcohol from corn be used as a practical application of scientific principles that deal with energy transformations. Discusses the solar energy available for growth, examining the utilization of solar energy by plants. Describes the conversion of corn to alcohol, with suggestions for classroom and laboratory study.…
Descriptors: Alternative Energy Sources, Chemistry, College Science, Energy Conservation
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Antal, M. J., Jr. – Bulletin of the Atomic Scientists, 1976
This article examines the use of power tower technologies for the production of synthetic fuels. This process overcomes the limitations of other processes by using a solar furnace to drive endothermic fuel producing reactions and the resulting fuels serve as a medium for storing solar energy. (BT)
Descriptors: Chemical Reactions, Chemistry, Costs, Economic Research
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Green, C. Paul; Orsak, Charles G. – 1979
Undertaking of a systems approach to curriculum development for solar training led to (1) a feasibility study to determine the role of the community college in solar energy technology, (2) a market analysis to determine the manpower need, and (3) a task analysis for development of a curriculum for training solar energy technicians at Navarro…
Descriptors: College Role, Community Colleges, Conservation Education, Curriculum Development
Center for Occupational Research and Development, Inc., Waco, TX. – 1981
This course in energy production systems is one of 15 courses in the Energy Technology Series developed for an Energy Conservation-and-Use Technology curriculum. Intended for use in two-year postsecondary technical institutions to prepare technicians for employment, the courses are also useful in industry for updating employees in…
Descriptors: Adult Education, Behavioral Objectives, Course Descriptions, Courses
Flavin, Christopher; Lenssen, Nicholas – 1990
Alternatives to fossil fuels as energy resources are discussed. Energy from the sun and other renewable resources are cited as the alternatives. Constructed is a practical energy scenario for the year 2030 that involves a 55-percent cut in carbon dioxide emissions, greatly improved energy efficiency, and an energy production system that relies…
Descriptors: Alternative Energy Sources, Conservation (Environment), Depleted Resources, Energy Conservation
Fiester, Kenneth – Worklife, 1977
Describes various energy-related projects and legislation, with new job estimates, to improve or design buildings and methods to reduce the annual growth in energy consumption by reducing gasoline consumption, cutting oil imports, increasing coal production, insulating buildings, and installing solar energy devices. (MF)
Descriptors: Climate Control, Employment Opportunities, Employment Projections, Energy Conservation
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