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Roman, Harry T. – Technology and Engineering Teacher, 2013
This article invites teachers to let their students' imaginations soar as they become part of a team that will design a whole new kind of living technological museum, a facility that celebrates the world of infrastructure. In this activity, a new two-story building will be built, occupying a vacant corner parcel of land, approximately 150…
Descriptors: Museums, Imagination, Building Design, Structural Elements (Construction)
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Troyer, Steve; Griffis, Kurt; Shackelford, Ray – Tech Directions, 2005
In the field of construction, most structures are supported by several groups of truss systems working together synergistically. A "truss" is a group of centered and balanced elements combined to carry a common load (Warner, 2003). Trusses provide strength against loads and forces within a structure. Though a complex field of study, structural…
Descriptors: Building Design, Physics, Construction Materials, Science Activities
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Gerber, Brian L.; Marek, Edmund A. – Science Teacher, 1996
Presents an investigation that engages students in constructing models of houses to examine the dynamics of energy flow patterns. Uses the learning cycle procedure that allows students to experience the processes of science and to use higher level thinking skills. (JRH)
Descriptors: Architecture, Building Design, Energy Conservation, Learning Processes
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Science Scope, 2000
Presents a unit on designing and building a bridge. (YDS)
Descriptors: Building Design, Construction Materials, Junior High Schools, Middle Schools
Utrecht State Univ., (Netherlands). – 1984
Bridges and similar constructions are highlighted in this book of guided lessons and activities for secondary school physics students. This program was developed by the Physics Curriculum Development Project under the auspices of the Physics Curriculum Innovation Committee. Contents include: (1) "Introduction" (presenting a rationale for…
Descriptors: Building Design, Construction (Process), Physics, Science Activities
Roeder, Allen A.; Woodland, James A. – 1981
Recommended for grades 10-12 physical, earth, or general science classes, this 5-7 day unit is designed to give students a general understanding of solar energy and its use as a viable alternative to present energy sources. Along with this technology, students examine several factors of solar energy which influence the choice of solar home site…
Descriptors: Building Design, Construction Materials, Earth Science, Energy
American Geophysical Union, Washington, DC. – 1995
This teacher package for grades 7-12 takes a broad approach in preparing students for earthquakes. "Hands-on/minds-on", inquiry-driven activities are balanced by library research and visits with disaster planning officials. Emphasis is placed on cooperative learning and the constructivist approach to teaching. Students not only study the…
Descriptors: Building Design, Constructivism (Learning), Cooperative Learning, Design Requirements
Jones, Natalie; Hughes, Wyn – 1982
This unit, developed by the Third World Science Project, is designed to add a multicultural element to existing science syllabi (for students aged 11-16) in the United Kingdom. The project seeks to develop an appreciation of the: boundless fascination of the natural world; knowledge, skills, and expertise possessed by men/women everywhere;…
Descriptors: Building Design, Building Plans, Cultural Activities, Developing Nations
Indiana State Dept. of Public Instruction, Indianapolis. Div. of Curriculum. – 1982
Energy education units (consisting of a general teacher's guide and nine units containing a wide variety of energy lessons, resources, learning aids, and bibliography) were developed for the Indiana Energy Education Program from existing energy education materials. The units were designed to serve as an entire curriculum, resource document,…
Descriptors: Building Design, Conservation Education, Energy, Energy Conservation
Allen, Rodney F., Ed.; Farmer, Richard – 1982
Middle school energy skills (Enerskills) and activities (Eneractivities) are provided in seven sections. Areas addressed include: (1) locating energy information using telephone books, dictionaries, card catalogs, and readers' guides; (2) writing letters for energy information; (3) energy and food (food intake/human performance, calories/energy);…
Descriptors: Building Design, Conservation Education, Ecology, Elementary School Science