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<qgis version="3.10.2-A Coruña">
  <identifier>/vsicurl/https://rmbl-sdp.s3.us-east-2.amazonaws.com/data_products/released/release1/UER_landcover_1m_v4.tif</identifier>
  <parentidentifier></parentidentifier>
  <language>en</language>
  <type>dataset</type>
  <title>Basic Landcover Map for the Upper East River Derived from 2018 NEON AOP Data</title>
  <abstract>This is a landcover map derived from the 2018 NEON AOP dataset for the upper east river.

1=needle-leaf trees and shrubs
2=deciduous trees and shrubs
3=deciduous meadow and subshrub (&lt;0.5m)
4=bare rock, soil, gravel and asphalt
5=water
6=snow
7=buildings

Source data includes NEON LiDAR and imaging spectrometry products described in:

Goulden T ; Hass B ; Brodie E ; Chadwick K D ; Falco N ; Maher K ; Wainwright H ; Williams K (2020): NEON AOP Survey of Upper East River CO Watersheds: LAZ Files, LiDAR Surface Elevation, Terrain Elevation, and Canopy Height Rasters. Watershed Function SFA. DOI: 10.15485/1617203

Chadwick K D ; Brodrick P ; Grant K ; Henderson A ; Bill M ; Breckheimer I ; Williams C F R ; Goulden T ; Falco N ; McCormick M ; Musinsky J ; Pierce S ; Hastings Porro M ; Scott A ; Brodie E ; Hancher M ; Steltzer H ; Wainwright H ; Maher K W; undefined K M (2020): NEON AOP foliar trait maps, maps of model uncertainty estimates, and conifer map. A Multiscale Approach to Modeling Carbon and Nitrogen Cycling within a High Elevation Watershed. DOI: 10.15485/1618133</abstract>
  <keywords vocabulary="gmd:topicCategory">
    <keyword>Environment</keyword>
    <keyword>Geoscientific Information</keyword>
    <keyword>Inland Waters</keyword>
    <keyword>Society</keyword>
  </keywords>
  <contact>
    <name>Ian Breckheimer</name>
    <organization>Rocky Mountain Biological Laboratory</organization>
    <position>Research Scientist</position>
    <voice></voice>
    <fax></fax>
    <email>ikb@rmbl.org</email>
    <role>owner</role>
  </contact>
  <links>
    <link url="https://rmbl.org/data" name="URL" format="" size="" type="WWW:LINK" mimeType="" description="Spatial Data Platform Description"/>
  </links>
  <fees></fees>
  <license>Creative Commons Attribution 4.0</license>
  <encoding></encoding>
  <crs>
    <spatialrefsys>
      <wkt>PROJCRS["WGS 84 / UTM zone 13N",BASEGEOGCRS["WGS 84",DATUM["World Geodetic System 1984",ELLIPSOID["WGS 84",6378137,298.257223563,LENGTHUNIT["metre",1]]],PRIMEM["Greenwich",0,ANGLEUNIT["degree",0.0174532925199433]],ID["EPSG",4326]],CONVERSION["UTM zone 13N",METHOD["Transverse Mercator",ID["EPSG",9807]],PARAMETER["Latitude of natural origin",0,ANGLEUNIT["degree",0.0174532925199433],ID["EPSG",8801]],PARAMETER["Longitude of natural origin",-105,ANGLEUNIT["degree",0.0174532925199433],ID["EPSG",8802]],PARAMETER["Scale factor at natural origin",0.9996,SCALEUNIT["unity",1],ID["EPSG",8805]],PARAMETER["False easting",500000,LENGTHUNIT["metre",1],ID["EPSG",8806]],PARAMETER["False northing",0,LENGTHUNIT["metre",1],ID["EPSG",8807]]],CS[Cartesian,2],AXIS["(E)",east,ORDER[1],LENGTHUNIT["metre",1]],AXIS["(N)",north,ORDER[2],LENGTHUNIT["metre",1]],USAGE[SCOPE["unknown"],AREA["World - N hemisphere - 108°W to 102°W - by country"],BBOX[0,-108,84,-102]],ID["EPSG",32613]]</wkt>
      <proj4>+proj=utm +zone=13 +datum=WGS84 +units=m +no_defs</proj4>
      <srsid>3097</srsid>
      <srid>32613</srid>
      <authid>EPSG:32613</authid>
      <description>WGS 84 / UTM zone 13N</description>
      <projectionacronym>utm</projectionacronym>
      <ellipsoidacronym>EPSG:7030</ellipsoidacronym>
      <geographicflag>false</geographicflag>
    </spatialrefsys>
  </crs>
  <extent>
    <spatial dimensions="2" minx="315130" minz="0" maxx="337845" maxz="0" miny="4297480" maxy="4323209" crs="EPSG:32613"/>
    <temporal>
      <period>
        <start></start>
        <end></end>
      </period>
    </temporal>
  </extent>
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