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Showing 31 to 45 of 64 results Save | Export
Wilson, Maurice J. – Actual Specifying Engineer, 1963
There are many reasons for air-conditioning schools and among them are--(1) the improvement of learning and teaching efficiency, (2) effective use of the educational plant for a greater part of the year, and (3) more efficient use of space through compact building design. Five climate control techniques are cited as providing optimum…
Descriptors: Air Conditioning, Air Conditioning Equipment, Classrooms, Climate Control
Baas, Alan M. – 1973
This review surveys documents and journal articles previously announced in RIE and CIJE that deal with climate control, integrated thermal and luminous systems, total energy systems, and current trends in school air conditioning. The literature cited indicates that selection of thermal systems must take into account longterm operating costs in…
Descriptors: Air Conditioning, Classroom Environment, Climate Control, Controlled Environment
Brown, G. Z. – Journal of Architectural Education, 1980
A growing awareness of environmental problems and energy scarcity has led architects and engineers to reevaluate their approaches to building design. Three approaches to combining environmental control systems with design in the Department of Architecture at the University of Oregon are discussed. (MLW)
Descriptors: Architectural Education, Building Design, Climate Control, Design
Meckler, Gershon – 1967
Comments on the need for integrated design of lighting, heating, and cooling systems. In order to eliminate the penalty of refrigerating the lighting heat, minimize the building non-usable space, and optimize the total energy input, a "systems approach" is recommended. This system would employ heat-recovery techniques based on the…
Descriptors: Air Conditioning, Building Design, Climate Control, Controlled Environment
Harmon, Darell Boyd – 1953
The classroom environment is a working surround in which children, through participating in organized experiences, can grow and develop in an optimum manner. Classroom design requires organization of principles of environmental control in order to assure efficient and successful performance. This control cannot be left to chance. In considering…
Descriptors: Classroom Environment, Climate Control, Controlled Environment, Design Requirements
State Univ. of New York, Ithaca. Coll. of Human Ecology at Cornell Univ. – 1977
This cooperative extension publication from Cornell University is a guide for energy conservation in homes, apartments, and transportation. Written in non-technical language, this guide provides the layperson with information about weatherization, home appliance use, recreation and transportation practices to conserve energy and, thus, save money.…
Descriptors: Climate Control, Conservation Education, Economic Factors, Energy
Florida State Dept. of Education, Tallahassee. School Plant Management Section. – 1965
Intended as a manual to provide school custodians with some understanding of basic functions of heating, ventilating, and air conditioning equipment for safe, efficient operation. Contains general rules and specifications for providing custodians with a more complete awareness of their equipment and the field of "Climate Control" within the…
Descriptors: Air Conditioning, Climate Control, Custodian Training, Equipment Maintenance
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
Mason, Ellsworth – Library Journal, 1967
Quality, not intensity, is the keystone to good library lighting. The single most important problem in lighting is glare caused by extremely intense centers of light. Multiple interfiling of light rays is a factor required in library lighting. A fixture that diffuses light well is basic when light emerges from the fixture. It scatters widely,…
Descriptors: Air Conditioning, Building Design, Climate Control, Controlled Environment
Peer reviewed Peer reviewed
Powers, Michael H.; Hull, Stacey E. – Journal of Computers in Mathematics and Science Teaching, 1988
Explains the operation of five relative humidity sensors: psychrometer, hair hygrometer, resistance hygrometer, capacitance hygrometer, and resistance-capacitance hygrometer. Outlines the theory behind the electronic sensors and gives computer interfacing information. Lists sensor responses for calibration. (MVL)
Descriptors: Climate, Climate Control, Computer Uses in Education, Humidity
Hartman, Robert R. – 1968
Contains a selected and annotated listing of source material concerning the thermal environment in school facilities. It is directed toward the school planner, architect, or administrator concerned with developing a more functional classroom environment. Topical coverage includes--(1) The Thermal Environment and Learning, (2) Physiological Factors…
Descriptors: Air Conditioning, Annotated Bibliographies, Climate Control, Controlled Environment
Peer reviewed Peer reviewed
Burke, Stanley; Stewart, Bob R. – Journal of the American Association of Teacher Educators in Agriculture, 1980
A study of the effects of temperature and protective clothing upon task completion time, work quality, and student attitude toward learning revealed that students can be exposed to temperatures as low as 50 degrees Fahrenheit for up to forty minutes without adversely affecting their work quality. (LRA)
Descriptors: Academic Achievement, Agricultural Education, Agricultural Engineering, Classroom Environment
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
Gattone, Felix – 1965
Twenty-eight chapters and numerous drawings provide information for instructors and students of air conditioning and heating technology. Chapter 1 lists the occupational opportunities in the field. Chapter 2 covers the background or development of the industry of air conditioning and heating technology. Chapter 3 includes some of the principle…
Descriptors: Air Conditioning, Climate Control, Construction Needs, Engineering Technology
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