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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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North America
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Appalachians
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Central Appalachians (1)
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United States
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Virginia (1)
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West Virginia (1)
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geologic age
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Paleozoic
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Carboniferous
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Mississippian
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Lower Mississippian
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Pocono Formation (1)
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Upper Mississippian
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Greenbrier Limestone (1)
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Mauch Chunk Formation (1)
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Ordovician
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Upper Ordovician
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Juniata Formation (1)
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Reedsville Formation (1)
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Silurian
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Lower Silurian
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Tuscarora Formation (1)
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Primary terms
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geomorphology (1)
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North America
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Appalachians
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Central Appalachians (1)
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Paleozoic
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Carboniferous
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Mississippian
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Lower Mississippian
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Pocono Formation (1)
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Upper Mississippian
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Greenbrier Limestone (1)
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Mauch Chunk Formation (1)
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Ordovician
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Upper Ordovician
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Juniata Formation (1)
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Reedsville Formation (1)
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Silurian
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Lower Silurian
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Tuscarora Formation (1)
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sedimentary rocks
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carbonate rocks
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limestone (1)
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clastic rocks
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sandstone (1)
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shale (1)
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sediments
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clastic sediments
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colluvium (1)
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residuum (1)
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United States
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Virginia (1)
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West Virginia (1)
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sedimentary rocks
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sedimentary rocks
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carbonate rocks
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limestone (1)
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clastic rocks
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sandstone (1)
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shale (1)
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sediments
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sediments
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clastic sediments
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colluvium (1)
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residuum (1)
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Slope movements triggered by heavy rainfall, November 3–5, 1985, in Virginia and West Virginia, U.S.A.
Study of slope movements triggered by the storm of November 3–5, 1985, in the central Appalachian Mountains, U.S.A., has helped to define the meteorologic conditions leading to slope movements and the relative importance of land cover, bedrock, surficial geology, and geomorphology in slope movement location. This long-duration rainfall at moderate intensities triggered more than 1,000 slope movements in a 1,040-km 2 study area. Most were shallow slips and slip-flows in thin colluvium and residuum on shale slopes. Locations of these failures were sensitive to land cover and slope aspect but were relatively insensitive to topographic setting. A few shallow slope movements were triggered by the same rainfall on interbedded limestone, shale, and sandstone. Several large debris slide-avalanches were triggered in sandstone regolith high on ridges in areas of the highest measured rainfall. Most of these sites were on slopes that dip 30 to 35° and lie parallel to bedding planes, presumably the sites of least stability.