Item talk:Q54714: Difference between revisions

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(Updated person data cache with ORCID information)
(Updated item talk page content)
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usgs_staff_profile:
usgs_staff_profile:
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   meta:
    url: https://www.usgs.gov/staff-profiles/marina-metes
    timestamp: '2024-01-31T03:58:16.580671'
     status_code: 200
     status_code: 200
    timestamp: '2023-09-30T17:20:19.190242'
    url: https://www.usgs.gov/staff-profiles/marina-metes
   profile:
   profile:
     abstracts: []
     name: Marina Metes
     affiliations: []
     name_qualifier: null
     education:
     titles:
     - B.S. Earth Science from Michigan State University in 2012
     - Physical Scientist
    - M.S. Geography and Environmental Systems from the University of Maryland, Baltimore
    organizations:
      County in 2018
    - !!python/tuple
      - Maryland-Delaware-D.C. Water Science Center
      - https://www.usgs.gov/centers/md-de-dc-water
     email: mmetes@usgs.gov
     email: mmetes@usgs.gov
    orcid: 0000-0002-6797-9837
    intro_statements:
    - Marina Metes is a Physical Scientist at the USG S MD-DE-DC Water Science Center.
     expertise_terms:
     expertise_terms:
     - geomorphology
     - geomorphology
Line 499: Line 504:
     - geographic information systems
     - geographic information systems
     - land use change
     - land use change
    professional_experience: []
    education:
    - B.S. Earth Science from Michigan State University in 2012
    - M.S. Geography and Environmental Systems from the University of Maryland, Baltimore
      County in 2018
    affiliations: []
     honors: []
     honors: []
     intro_statements:
     abstracts: []
    - Marina Metes is a Physical Scientist at the USG S MD-DE-DC Water Science Center.
    name: Marina Metes
    name_qualifier: null
    orcid: 0000-0002-6797-9837
    organization_link: https://www.usgs.gov/centers/md-de-dc-water
    organization_name: Maryland-Delaware-D.C. Water Science Center
     personal_statement: Marina's work focuses heavily on using GIS and spatial analysis
     personal_statement: Marina's work focuses heavily on using GIS and spatial analysis
       to answer questions related to hydrology and fluvial geomorphology. Her research
       to answer questions related to hydrology and fluvial geomorphology. Her research
Line 515: Line 520:
       at the watershed scale to better infer rates of streambank erosion and floodplain
       at the watershed scale to better infer rates of streambank erosion and floodplain
       sediment deposition.
       sediment deposition.
    professional_experience: []
    title: Physical Scientist

Revision as of 10:58, 31 January 2024

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usgs_staff_profile:

 meta:
   url: https://www.usgs.gov/staff-profiles/marina-metes
   timestamp: '2024-01-31T03:58:16.580671'
   status_code: 200
 profile:
   name: Marina Metes
   name_qualifier: null
   titles:
   - Physical Scientist
   organizations:
   - !!python/tuple
     - Maryland-Delaware-D.C. Water Science Center
     - https://www.usgs.gov/centers/md-de-dc-water
   email: mmetes@usgs.gov
   orcid: 0000-0002-6797-9837
   intro_statements:
   - Marina Metes is a Physical Scientist at the USG S MD-DE-DC Water Science Center.
   expertise_terms:
   - geomorphology
   - lidar
   - remote sensing
   - geographic information systems
   - land use change
   professional_experience: []
   education:
   - B.S. Earth Science from Michigan State University in 2012
   - M.S. Geography and Environmental Systems from the University of Maryland, Baltimore
     County in 2018
   affiliations: []
   honors: []
   abstracts: []
   personal_statement: Marina's work focuses heavily on using GIS and spatial analysis
     to answer questions related to hydrology and fluvial geomorphology. Her research
     involves using remotely sensed data, primarily lidar, to map and investigate
     fluvial geomorphic features, processes, and land use change. This has included
     developing new methods for locating headwater streams and incised channels,
     and applying geospatial tools to extract stream and floodplain characteristics
     at the watershed scale to better infer rates of streambank erosion and floodplain
     sediment deposition.