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Lindsay, Georgia; Cole, Laura B.; Akturk, Aysegul; Akin, Heather – Applied Environmental Education and Communication, 2021
When museums commission green buildings, those buildings are often covered in the press. To understand the educational potential of green building press coverage, we qualitatively analyzed 96 articles about eight U.S. green science museums. We found that journalists who cover green buildings highlight green roofs, material choices,…
Descriptors: Museums, Sustainable Development, Buildings, Building Design
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Clarke, Linda; Sahin-Dikmen, Melahat; Winch, Christopher – Oxford Review of Education, 2020
Vocational education and training (VET) can play a transformative role in reducing CO[subscript 2] emissions and improving the energy efficiency of buildings across Europe. Nearly zero energy building (NZEB) requires an energy literate workforce, with broader and deeper theoretical knowledge, higher technical and precision skills,…
Descriptors: Foreign Countries, Vocational Education, Climate, Climate Control
Harney, John O. – New England Journal of Higher Education, 2014
More than 250 higher education leaders from campuses across the U.S. met last week in Boston for the 2014 Presidential Summit on Climate Leadership. The summit was organized by Second Nature, the supporting organization for the American College & University Presidents' Climate Commitment (ACUPCC). Almost 700 colleges and universities have…
Descriptors: Climate Control, Climate, College Administration, College Presidents
Ron Cox – American School & University, 2010
Air filters perform an important function in commercial and institutional facilities. Because indoor air typically is two to five times more polluted than outdoor air, air filters are needed to remove respirable particles such as microorganisms, dust and allergens from the breathing air. In fact, air filters provide the primary defense for…
Descriptors: Energy Conservation, Performance Factors, Pollution, Climate Control
Department of Energy, Washington, DC. Office of State and Local Programs. – 1978
This workbook provides a fill-in-the-blanks approach to an energy conservation program for schools which lack full-time engineering personnel. The generalized approach given here is not as detailed as an energy audit, but it allows school administrators, maintenance personnel, or building operators to analyze energy uses and to determine energy…
Descriptors: Administration, Building Operation, Building Systems, Climate
Rankins, William H., III; Wilson, David A. – 1976
This publication is a handbook for the do-it-yourselfer or anyone else interested in solar space and water heating. Described are methods for calculating sun angles, available energy, heating requirements, and solar heat storage. Also described are collector and system designs with mention of some design problems to avoid. Climatological data for…
Descriptors: Climate, Climate Control, Energy, Energy Conservation
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Brubaker, C. William – CEFP Journal, 1976
Buildings can be designed in harmony with the natural environment, and new techniques of "active" solar design exist to collect and use solar energy for space heating and cooling. Preservation and reuse of existing buildings and neighborhoods are other ways to conserve energy. (Author/MLF)
Descriptors: Building Conversion, Building Design, Climate, Climate Control
Jacobs, Madeleine; Petersen, Stephen R. – 1975
This pamphlet is a homeowner's guide to home weatherization. It provides a step-by-step energy audit that anyone can use to help determine the insulation needs of their home. This is not a "how-to-do-it" booklet, but is a guide by which homeowners can determine the best combination of improvements for their house, climate, and fuel…
Descriptors: Climate, Climate Control, Consumer Education, Economic Factors
Hill, Richard C.; And Others – 1975
This kit contains materials for an eight hour course on home weatherization. This course is designed for: (1) work-crew supervisors; (2) secondary or post secondary vocational-technical students; and (3) adults wishing to improve their vocational-technical skills. Contained in this kit are: (1) a teacher's guide; (2) charts for an overhead…
Descriptors: Adult Vocational Education, Climate, Climate Control, Design Requirements
Eccli, Eugene; And Others – 1977
This publication is a collection of inexpensive energy saving tips and home improvements for home owners, particularly in low-income areas or in older homes. Section titles are: (1) Keeping Warm; (2) Getting Heat Where You Need It; (3) Using the Sun; (4) Furnaces, Stoves, and Fireplaces; (5) Insulation and Other Energy Needs; (6) Do-It-Yourself…
Descriptors: Climate, Climate Control, Community Action, Economic Factors
Massachusetts Univ., Amherst. Cooperative Extension Service. – 1978
This document is the Massachusetts Energy Extension Service training manual for Residential Energy Auditors. This manual is part of a four-week program to train persons to perform home energy audits and was developed under the Energy Conservation Analysis Project (ECAP) at the University of Massachusetts. The chapter titles include: (1) Project…
Descriptors: Building Conversion, Building Systems, Climate, Climate Control
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
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
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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
Brown, Lester R. – 1978
The purpose of this book is to examine the interaction of the world's ecological, economic, and social systems. It is divided into 12 chapters, with the first chapter providing an introduction and overview. Chapter two assesses the dimensions of the ecological stresses being put on the environment, specifically, the world's oceans, forests,…
Descriptors: Birth Rate, Climate, Climate Control, Conservation (Environment)