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Navarro Coll., Corsicana, TX. – 1979
This module is the ninth in a series of eleven modules in an energy conservation curriculum for secondary and postsecondary vocational students. It is designed for use by itself or as part of a sequence of four modules on energy conservation in building construction and operation (see also modules 8, 10, and 11). The objective of this module is to…
Descriptors: Building Operation, Climate, Climate Control, Conservation Education

Reynolds, John S. – 1974
Data presented in this report indicate that solar space and water heating are possible in the Pacific Northwest. The first section of the report contains solar records from several stations in the region illustrating space heating needs that could be met, on an average daily basis, by solar energy. The data are summarized, and some preliminary…
Descriptors: Architectural Research, Bibliographies, Climate, Energy
Purnell, Ken; Sinclair, Mark; Gralton, Anna – Australian Journal of Environmental Education, 2004
Promoting efficient energy use in schools that consequently reduces greenhouse gas emissions is the purpose of a residential Energy Efficiency in Schools (EEIS) program reported on in this paper. Research on this program aligns with one of the "key "overarching" sustainability issues", set out in the "Learning for…
Descriptors: Foreign Countries, Energy, Efficiency, Sustainable Development
Webster, Andrea, Comp.; Dautremont-Smith, Julian, Comp. – Association for the Advancement of Sustainability in Higher Education, 2008
This paper includes over 800 stories about higher education institutions that are leading the way to a sustainable future. It is organized into 24 chapters spanning education, research, campus operations, administration, and finance. [Funding for this paper was provided by Mithun and PortionPac. For 2006 report, see ED538257.]
Descriptors: Sustainable Development, Sustainability, Higher Education, Outreach Programs
New York State Education Dept., Albany. Div. of Research. – 1978
This study, the third in a series of reports, is limited to an analysis of the energy use and cost implications of nine school calendars proposed by the New York State Department of Education. These calendars are characterized as (1) traditional; (2) ten-month school year; (3) mid-August start, two semesters; (4) four-day week; (5) four-day, 7.5…
Descriptors: Climate, Computer Programs, Elementary Education, Energy Conservation
Davis, Albert J.; Schubert, Robert P. – 1977
This publication provides a discussion of various energy conserving building systems and design alternatives. The information presented here covers alternative space and water heating systems, and energy conserving building designs incorporating these systems and other energy conserving techniques. Besides water, wind, solar, and bio conversion…
Descriptors: Alternative Energy Sources, Building Design, Building Systems, Climate

Lindsay, Richard H. – Physics Teacher, 1983
Describes student projects on applications of solar energy optics to home design. Project criterion (requiring sketches and detailed calculations of time rate of energy flow/production) is that half the heat for the heating season be taken from the solar resource; calculations must be based on meteorological data for a specific location. (JM)
Descriptors: Building Design, Climate, Climate Control, College Science
Kennedy, Mike – American School & University, 2005
As energy costs rise and resources dwindle, schools and universities can benefit greatly by taking an environmentally sensitive approach to construction, renovation and maintenance of facilities. Administrators free up needed budget resources by operating facilities more efficiently. Using sustainable-design strategies can set a good example for…
Descriptors: Energy Conservation, Energy Management, Educational Facilities Improvement, Conservation (Environment)
Dautremont-Smith, Julian, Comp. – Association for the Advancement of Sustainability in Higher Education, 2006
This paper includes almost 250 stories about higher education institutions that are leading the way to a sustainable future. It is organized into 8 chapters covering: Institutional Change; Education & Outreach; Social Responsibility; Green Building; Energy & Climate; Food & Agriculture; Transportation; Waste, Water, Procurement, and Landscaping.…
Descriptors: Organizational Change, Social Responsibility, Sustainability, Colleges
Writers' Development Trust, Toronto (Ontario). – 1976
This handbook is intended as a guide for engineers, architects, and individuals familiar with heating and ventilating applications who wish to design a solar heating system for a residential or small commercial building in the Pacific Coast Region. The climate of the region is discussed by selected cities in terms of the effect of climate on solar…
Descriptors: Climate, Computer Science, Cost Effectiveness, Design Requirements
Department of Energy, Washington, DC. Office of Energy Efficiency and Renewable Energy. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
National Renewable Energy Lab. (DOE), Golden, CO. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
National Renewable Energy Lab. (DOE), Golden, CO. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
National Renewable Energy Lab. (DOE), Golden, CO. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
Department of Energy, Washington, DC. Office of Energy Efficiency and Renewable Energy. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements