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Tobacco Root Mountains
Geochemical, isotopic, and U–Pb zircon study of the central and southern portions of the 780 Ma Gunbarrel Large Igneous Province in western Laurentia
Foreland-directed propagation of high-grade tectonism in the deep roots of a Paleoproterozoic collisional orogen, SW Montana, USA
Geochronology and geochemistry of Precambrian gneisses, metabasites, and pegmatite from the Tobacco Root Mountains, northwestern Wyoming craton, Montana This article is one of a series of papers published in this Special Issue on the theme of Geochronology in honour of Tom Krogh. T.E. Krogh deceased April 2008.
Structural development of high-temperature mylonites in the Archean Wyoming province, northwestern Madison Range, Montana
Paleoproterozoic Metamorphism in the Northern Wyoming Province: Implications for the Assembly of Laurentia
Basement and Cover-Rock Deformation During Laramide Contraction in the Northern Madison Range (Montana) and Its Influence on Cenozoic Basin Formation
Structural control of lode gold deposits in the Pony mining district, Tobacco Root Mountains, Montana
The use of hornblende etching, clast weathering, and soils to date alpine glacial and periglacial deposits: A study from southwestern Montana
Age of the basement rocks of southwest Montana
Geology and structure of the southern part of the Tobacco Root Mountains, southwestern Montana: Map summary
Weathering products within microcracks in feldspars
The late Precambrian mafic dikes of the southern Tobacco Root Mountains, Montana: geochemistry, Rb–Sr geochronology and relationship to belt tectonics
Mineralogy and petrology of some metamorphic Precambrian iron-formations in southwestern Montana
Tertiary Stratigraphy, Structure, and Geologic History, Jefferson Basin, Montana
Structural Evolution of the Southwestern Tobacco Root Mountains, Montana
Pleistocene Niche Glaciers and Proto-Cirques, Cataract Creek Valley, Tobacco Root Mountains, Montana
In the valley of Cataract Creek in the Tobacco Root Mountains, Montana, two moraines were deposited by Pleistocene niche or slab glaciers that emanated from poorly developed cirques (proto-cirques) along the sides of the valley at elevations of less than 8000 feet (2438 m) rather than by valley glaciers that emanated from well-formed cirques at elevations of 9000 feet (2743 m). The niche or slab glaciers seem analogous to those occurring in presently glacierized proto-cirques in Spitsbergen, Norway, and Scotland. Proto-cirques were formed in hollows at elevations of less than 8000 feet (2438 m) in this valley because the hollows were hemmed in and orographically influenced by valley glaciers on the south and east and by the main divide of the mountains on the north and west. The two valley glaciers generated a locally cold microclimate in the hollows, and their nearness to the main divide resulted in the hollows’ being well-situated for the accumulation of snow drifting across the divide. The fortuitous position of these hollows during the late Pleistocene resulted in incipient glacier formation at elevations lower than would be expected.