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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Kings River (1)
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North America
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Rocky Mountains
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U. S. Rocky Mountains
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Sawatch Range (1)
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San Joaquin River (1)
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Sierra Nevada (1)
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United States
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California
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Feather River (1)
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Stanislaus County California (1)
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Tuolumne County California (1)
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Colorado
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Chaffee County Colorado (2)
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Sawatch Range (1)
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U. S. Rocky Mountains
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Sawatch Range (1)
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Yuba River (1)
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geologic age
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Cenozoic
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upper Cenozoic (1)
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Primary terms
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Cenozoic
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upper Cenozoic (1)
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geomorphology (3)
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North America
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Rocky Mountains
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U. S. Rocky Mountains
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Sawatch Range (1)
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slope stability (1)
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United States
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California
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Feather River (1)
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Stanislaus County California (1)
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Tuolumne County California (1)
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Colorado
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Chaffee County Colorado (2)
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Sawatch Range (1)
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U. S. Rocky Mountains
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Sawatch Range (1)
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sedimentary structures
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channels (2)
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Disequilibrium river networks dissecting the western slope of the Sierra Nevada, California, USA, record significant late Cenozoic tilting and associated surface uplift
RESEARCH FOCUS: Infrequent, large-magnitude debris flows are important agents of landscape change
Evolution of a natural debris flow: In situ measurements of flow dynamics, video imagery, and terrestrial laser scanning
Abstract Recent debris flow studies in Colorado indicate that the state is most susceptible to debris flows that initiate from surface-water runoff that erodes and entrains hillslope and channel sediment. These runoff-initiated debris flows grow in size by entraining sediment along travel paths, thereby increasing their destructive potential. Yet, the mechanics of initiation, erosion, and entrainment processes for runoff-initiated debris flows are poorly understood. The steep, bedrock-dominated flanks of the formerly glaciated Chalk Creek Valley near Nathrop, Colorado, generate an average of two runoff-initiated debris flows per year, making the valley an ideal natural laboratory for debris-flow research. This two-day field trip to the Chalk Creek Valley will examine debris-flow initiation areas, transport zones, deposits, and the impact of large pulses of debris-flow sediment on the morphology of Chalk Creek. On the first day, participants will hike into a particularly active basin at Chalk Cliffs where debris flows are being monitored by the U.S. Geological Survey, the University of Colorado, and East Carolina University. The second day will focus on debris-flow deposits in Chalk Creek and on recent debris flows in and near the community of Alpine in the central part of the valley.