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dc.contributor.authorTester, Jefferson W.en_US
dc.contributor.authorDrake, Elizabeth Mertzen_US
dc.contributor.authorGolay, M.en_US
dc.contributor.authorKern, Edward C.en_US
dc.coverage.temporalSpring 2003en_US
dc.date.issued2003-06
dc.identifier10.391J-Spring2003
dc.identifierlocal: 10.391J
dc.identifierlocal: 1.818J
dc.identifierlocal: 2.65J
dc.identifierlocal: 3.564J
dc.identifierlocal: 11.371J
dc.identifierlocal: 22.811J
dc.identifierlocal: ESD.166J
dc.identifierlocal: IMSCP-MD5-67635f0a16315387310494c4b6337e71
dc.identifier.urihttp://hdl.handle.net/1721.1/35788
dc.description.abstractAssessment of current and potential energy systems, covering extraction, conversion and end-use, with emphasis on meeting regional and global energy needs in the 21st century in a sustainable manner. Examination of energy technologies in each fuel cycle stage for fossil (oil, gas, synthetic), solar, biomass, wind, hydro, nuclear, and geothermal energy types, along with storage, transmission, and conservation issues. Focus on evaluation and analysis of energy technology systems in the context of political, social, economic, and environmental goals. Open to upper-class undergraduates.en_US
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dc.languageen-USen_US
dc.rights.uriUsage Restrictions: This site (c) Massachusetts Institute of Technology 2003. Content within individual courses is (c) by the individual authors unless otherwise noted. The Massachusetts Institute of Technology is providing this Work (as defined below) under the terms of this Creative Commons public license ("CCPL" or "license"). The Work is protected by copyright and/or other applicable law. Any use of the work other than as authorized under this license is prohibited. By exercising any of the rights to the Work provided here, You (as defined below) accept and agree to be bound by the terms of this license. The Licensor, the Massachusetts Institute of Technology, grants You the rights contained here in consideration of Your acceptance of such terms and conditions.en_US
dc.subjectrenewable energyen_US
dc.subjectconservationen_US
dc.subjectalternative poweren_US
dc.subjectthermodynamicsen_US
dc.subjectefficiencyen_US
dc.subjectsystem analysisen_US
dc.subjectgreenhouseen_US
dc.subjectconsumptionen_US
dc.subjectfuelen_US
dc.subjectresource allocationen_US
dc.subject10.391Jen_US
dc.subject1.818Jen_US
dc.subject2.65Jen_US
dc.subject3.564Jen_US
dc.subject11.371Jen_US
dc.subject22.811Jen_US
dc.subjectESD.166Jen_US
dc.subject10.391en_US
dc.subject1.818en_US
dc.subject2.65en_US
dc.subject3.564en_US
dc.subject11.371en_US
dc.subject22.811en_US
dc.subjectESD.166en_US
dc.subjectEnergy conservationen_US
dc.title10.391J / 1.818J / 2.65J / 3.564J / 11.371J / 22.811J / ESD.166J Sustainable Energy, Spring 2003en_US
dc.title.alternativeSustainable Energyen_US


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