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Albert Joseph Moore (4 September 1841 – 25 September 1893) was an English painter, known for his depictions of languorous female figures set against the luxury and decadence of the classical world. Life
Eaves must be designed for local wind speeds as the overhang can significantly increase the wind loading on the roof. [7] The line on the ground under the outer edge of the eaves is the eavesdrip, or dripline, and in typical building planning regulations defines the extent of the building and cannot oversail the property boundary.
Overhangs on two sides of Pennsylvania Dutch barns protect doors, windows, and other lower-level structures. Overhangs on all four sides of barns and larger, older farmhouses are common in Swiss architecture. An overhanging eave is the edge of a roof, protruding outwards from the side of the building, generally to provide weather protection.
Rear overhang may present a problem in large vehicles such as buses. Long rear overhang would require the driver to pay attention to nearby vehicles when turning at 90 degrees. Since the rear overhang is outside the wheelbase, it may hit a vehicle in the adjacent lane, especially when turning 90 degrees right (in a right-hand drive country).
Albert Joseph Moore (1841–1893), English painter Albert Moore (Medal of Honor) (1862–1916), US Marine Albert Moore (footballer, born 1863) (1863–?), English football player for Notts County
Demi Moore revealed in an interview on CBS’ “Sunday Morning” that she biked around 60 miles each day during the filming of her 1993 erotic thriller “Indecent Proposal” in order to lose ...
Tudor Revival houses are dissimilar to the timber-framed structures of the originals, in which the frame supported the whole weight of the house. Their modern counterparts consist of bricks or blocks of various materials, stucco, or even simple studwall framing, with a lookalike "frame" of thin boards added on the outside to mimic the earlier ...
Finally, the eaves have a practical function in a country where rain is a common event, because they protect the building by carrying the rain as far as possible from its walls. The roof's weight must however be supported by complex bracket systems called tokyō. [2] The further the eaves extend, the greater and more complex must the tokyō be.