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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Himalayas
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Zanskar Range (1)
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Indian Peninsula
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India
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Srinagar India (1)
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Jammu and Kashmir
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Kashmir (4)
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minerals
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Primary terms
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Asia
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Himalayas
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Zanskar Range (1)
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Indian Peninsula
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India
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Srinagar India (1)
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Jammu and Kashmir
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Kashmir (4)
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Kashmir Valley (13)
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Srinagar India (1)
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Main Central Thrust (1)
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carbon
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Kashmir Valley
Site response analysis beneath the Kashmir basin (NW Himalaya) using ambient noise
The Last Glacial Maximum to Holocene Palaeoenvironment of the Kashmir Valley, Western Himalayas
Spatio-temporal Patterns of Land Use Land Cover Changes over a District in Northern India and their Impact on Environment and Society
The Great Flood and its Aftermath in Kashmir Valley: Impact, Consequences and Vulnerability Assessment
Environmental Risk Assessment of Lake Surface Sediments Using Trace Elements: A Case Study, the Wular Lake
Crustal Structure beneath the Kashmir Basin Adjoining the Western Himalayan Syntaxis
Diatoms, Spatial Distribution and Physicochemical Characteristics of the Wular Lake Sediments, Kashmir Valley, Jammu and Kashmir
Geochemistry of Manasbal Lake Sediments, Kashmir: Weathering, Provenance and Tectonic Setting
Remote Sensing and GIS Based Groundwater Potential Mapping for Sustainable Water Resource Management of Lidder Catchment in Kashmir Valley, India
The Kashmir Basin fault and its influence on fluvial flooding in the Kashmir Basin, NW Himalaya
Out-of-sequence thrust faulting in the Himalaya poses a great challenge to our understanding of the slip distribution on faults, in particular those that are active. The Kashmir Basin in the NW Himalaya is a classic example of out-of-sequence faulting where the geomorphic analysis of tectonic landforms was possible because of a variety of readily available satellite data, including Shuttle Radar Topography, Google Maps, Global Earth, and Global Multi-Resolution Topography. This was augmented with geologic, seismologic, geodetic, and historical earthquake and flood data. The results show the NW extension of the previously mapped SE-dipping Kashmir Basin fault, where newly mapped discontinuous fault traces are freshly broken and back-tilted, and they preserve warped fluvial surfaces in the Quaternary to Holocene succession. The morphology of the basin suggests that it is rising along an active NE-dipping thrust fault. Importantly, two traces of this fault system cut through the course of the Jhelum River, the only river that drains the Kashmir Basin, and movement on the fault has modified its path. Recent movement on the fault potentially caused damming of this river that resulted in flooding of the Kashmir valley during major earthquakes around A.D. 1505 and/or 1886. Such movement likely caused historical drainage reversals, impoundments, and SE tilting, which were previously attributed to some unknown structures under the Pir Panjal Ranges.