Application of at-site peak-streamflow frequency analyses for very low annual exceedance probabilities (Q58095): Difference between revisions

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sir20175038
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Asquith, W.H., Kiang, J.E., and Cohn, T.A., 2017, Application of at-site peak-streamflow frequency analyses for very low annual exceedance probabilities: U.S. Geological Survey Scientific Investigation Report 2017–5038, 93 p., https://doi.org/10.3...
USGS Numbered Series published by U.S. Geological Survey in 2017
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Property / instance of: USGS Scientific Investigations Report / rank
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Property / instance of: USGS Scientific Investigations Report / reference
 
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2017
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Property / publication date: 2017 / rank
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Property / publication date: 2017 / reference
 
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Property / content URL: https://pubs.usgs.gov/sir/2017/5038/sir20175038.pdf / rank
 
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Property / content URL: https://pubs.usgs.gov/sir/2017/5038/sir20175038.pdf / reference
 
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Property / GDDID: 5d9fb954998e17af8252e8e9 / rank
 
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Property / instance of: USGS Open-File Report / rank
 
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15 July 2017
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Property / owner: Office of Science Quality and Integrity / rank
 
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Property / addresses subject: Global Drought Monitoring and Assessment / rank
 
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Property / addresses subject: Global Drought Monitoring and Assessment / reference
 
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Property / addresses subject: Hydrological Modeling and Water Resource Management / rank
 
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Property / addresses subject: Hydrological Modeling and Water Resource Management / reference
 
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Property / addresses subject: Numerical Weather Prediction Models / rank
 
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Property / addresses subject: Numerical Weather Prediction Models / reference
 
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Property / OpenAlex ID: W2735319833 / rank
 
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Latest revision as of 22:37, 11 September 2024

USGS Numbered Series published by U.S. Geological Survey in 2017
  • sir20175038
Language Label Description Also known as
English
Application of at-site peak-streamflow frequency analyses for very low annual exceedance probabilities
USGS Numbered Series published by U.S. Geological Survey in 2017
  • sir20175038

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