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A geodesic dome is a hemispherical thin-shell structure (lattice-shell) based on a geodesic polyhedron. The rigid triangular elements of the dome distribute stress throughout the structure, making geodesic domes able to withstand very heavy loads for their size.
Stainless steel, bronze, copper, aluminum, titanium and tungsten elements are incorporated into the interior design. The original investment for the building and landscaping was $2.4 million. The semi-circular building, capped by a geodesic dome, symbolizes humanity’s mastery of metals and materials.
The architectural engineer of the geodesic dome was Buckminster Fuller. [38] The building originally formed an enclosed structure of steel and acrylic cells, 76 metres (249 ft) in diameter and 62 metres (203 ft) high. It is a double-layer dome in which the inner and outer layers are connected by a latticework of struts.
A domed city is a hypothetical structure that encloses a large urban area under a single roof. In most descriptions, the dome is airtight and pressurized, creating a habitat that can be controlled for air temperature, composition and quality, typically due to an external atmosphere (or lack thereof) that is inimical to habitation for one or more reasons.
Fuller began working with architect Shoji Sadao [33] in 1954, together designing a hypothetical Dome over Manhattan in 1960, and in 1964 they co-founded the architectural firm Fuller & Sadao Inc., whose first project was to design the large geodesic dome for the U.S. Pavilion at Expo 67 in Montreal. [33] This building is now the "Montreal ...
Stepan Center is a multi-purpose geodesic dome built in 1962 at the University of Notre Dame, and is located on the northeast corner of campus. The $350,000 to build Stepan Center was donated to the university by Alfred Stepan, the founder of Stepan Company , and his wife, Mary Louise. [ 1 ]
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