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  <NumericalData>
    <ResourceID>spase://NASA/NumericalData/Wind/3DP/EM/PT3S</ResourceID>
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    <ResourceType>NumericalData</ResourceType>
    <ResourceHeader>
      <ResourceName>Wind 3DP Electron Plasma Moments</ResourceName>
      <DOI>https://doi.org/10.48322/bsy7-7789</DOI>
      <ReleaseDate>2025-12-04T13:32:48Z</ReleaseDate>
      <RevisionHistory>
        <RevisionEvent>
          <ReleaseDate>2021-05-31T12:34:56.789</ReleaseDate>
          <Note>Updated to SPASE Version 2.3.2 if needed, Applied quality control for DOI usage, LFB</Note>
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        <RevisionEvent>
          <ReleaseDate>2025-09-30T14:25:26Z</ReleaseDate>
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        <RevisionEvent>
          <ReleaseDate>2025-10-23T12:34:56.789</ReleaseDate>
          <Note>Revised ObservedRegion. JMW</Note>
        </RevisionEvent>
        <RevisionEvent>
          <ReleaseDate>2025-12-04T13:32:48Z</ReleaseDate>
          <Note>Added MetadataRightsList and RightsList(s). Updated to 2.7.1. ZCB</Note>
        </RevisionEvent>
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      <Description>Electron Plasma moments (computed on-board) (NOT CORRECTED FOR S/C POTENTIAL) @ 3 second (spin) resolution (version 3), EESA LOW, Wind 3DP - R. Lin (UC Berkeley)</Description>
      <Acknowledgement>Principle Investigators Robert Lin and Stuart Bale, the Wind 3DP team, and the Space Physics Data Facility (SPDF)/NASA GSFC</Acknowledgement>
      <PublicationInfo>
        <Authors>Lin, Robert P.; Bale, Stuart D.; &amp; Wilson III, Lynn B.</Authors>
        <PublicationDate>2021-01-01T00:00:00</PublicationDate>
        <PublishedBy>Space Physics Data Facility; University of California, Berkeley</PublishedBy>
      </PublicationInfo>
      <Contact>
        <PersonID>spase://SMWG/Person/Robert.P.Lin</PersonID>
        <Role>PrincipalInvestigator</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Stuart.D.Bale</PersonID>
        <Role>PrincipalInvestigator</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Robert.E.McGuire</PersonID>
        <Role>GeneralContact</Role>
      </Contact>
      <InformationURL>
        <Name>Caveats to the use of Wind 3DP data</Name>
        <URL>https://spdf.gsfc.nasa.gov/pub/data/wind/3dp/wind3dp_caveats.pdf</URL>
        <Description>Caveats for the correct use of Wind 3DP datasets</Description>
      </InformationURL>
      <InformationURL>
        <Name>Wind 3DP home page at UCB</Name>
        <URL>http://sprg.ssl.berkeley.edu/wind3dp/</URL>
        <Description>home page at UCB (with plotting and digital data)</Description>
      </InformationURL>
      <PriorID>spase://VSPO/NumericalData/Wind/3DP/EM/PT3S</PriorID>
    </ResourceHeader>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/NASA/GSFC/SPDF</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
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          <Note>CC0 1.0 Universal is the Creative Commons license applicable to all publicly available NASA Heliophysics data products</Note>
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      </RightsList>
      <AccessURL>
        <Name>FTPS from SPDF (not with most browsers)</Name>
        <URL>ftps://spdf.gsfc.nasa.gov/pub/data/wind/3dp/3dp_em/</URL>
        <Description>In CDF via ftp from SPDF</Description>
      </AccessURL>
      <AccessURL>
        <Name>HTTPS from SPDF</Name>
        <URL>https://spdf.gsfc.nasa.gov/pub/data/wind/3dp/3dp_em/</URL>
        <Description>In CDF via HTTP from SPDF</Description>
      </AccessURL>
      <Format>CDF</Format>
      <Acknowledgement>Please acknowledge the CDAWeb team at GSFC/SPDF.</Acknowledgement>
    </AccessInformation>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/NASA/GSFC/SPDF</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
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      <AccessURL>
        <Name>CDAWeb</Name>
        <URL>https://cdaweb.gsfc.nasa.gov/cgi-bin/eval2.cgi?dataset=WI_EM_3DP&amp;index=sp_phys</URL>
        <ProductKey>WI_EM_3DP</ProductKey>
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      <Format>Text</Format>
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    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/NASA/GSFC/SPDF</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
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          <Note>CC0 1.0 Universal is the Creative Commons license applicable to all publicly available NASA Heliophysics data products</Note>
        </Rights>
      </RightsList>
      <AccessURL>
        <Name>CDAWeb HAPI Server</Name>
        <URL>https://cdaweb.gsfc.nasa.gov/hapi</URL>
        <Style>HAPI</Style>
        <ProductKey>WI_EM_3DP</ProductKey>
        <Description>Web Service to this product using the HAPI interface.</Description>
      </AccessURL>
      <Format>CSV</Format>
    </AccessInformation>
    <InstrumentID>spase://SMWG/Instrument/Wind/3DP</InstrumentID>
    <MeasurementType>ThermalPlasma</MeasurementType>
    <TemporalDescription>
      <TimeSpan>
        <StartDate>1994-11-15T12:53:43.000Z</StartDate>
        <RelativeStopDate>-P30D</RelativeStopDate>
      </TimeSpan>
      <Cadence>PT3S</Cadence>
    </TemporalDescription>
    <ObservedRegion>Heliosphere</ObservedRegion>
    <ObservedRegion>Earth.NearSurface.Plasmasphere</ObservedRegion>
    <ObservedRegion>Earth.Magnetosphere</ObservedRegion>
    <ObservedRegion>Earth.Magnetosphere.Magnetotail</ObservedRegion>
    <ObservedRegion>Earth.Magnetosphere.Main</ObservedRegion>
    <ObservedRegion>Heliosphere.NearEarth</ObservedRegion>
    <ObservedRegion>Heliosphere.Inner</ObservedRegion>
    <ObservedRegion>Earth.Magnetosheath</ObservedRegion>
    <Parameter>
      <Name>Epoch</Name>
      <ParameterKey>Epoch</ParameterKey>
      <Description>Number of milliseconds since CDF_EPOCH: 0000-01-01T00:00:00.000.</Description>
      <Units>ms</Units>
      <UnitsConversion>1e-3&gt;s</UnitsConversion>
      <ValidMin>01-Jan-1956 00:00:00.000</ValidMin>
      <ValidMax>01-Jan-2083 00:00:00.000</ValidMax>
      <FillValue>-1.0E31</FillValue>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Unix Time</Name>
      <ParameterKey>TIME</ParameterKey>
      <Description>Time since 1970-01-01T00:00:00Z in seconds</Description>
      <Units>s</Units>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Electron Density</Name>
      <ParameterKey>E_DENS</ParameterKey>
      <Description>Electron number density.</Description>
      <Caveats>Per Lynn Wilson Jan2015: These results cannot take the spacecraft potential into account. Wind does not measure the spacecraft potential actively, so it cannot perform this correction onboard and the results have many uncertainties.</Caveats>
      <Units>1/cm^3</Units>
      <UnitsConversion>1e6-&gt;m^3</UnitsConversion>
      <Particle>
        <ParticleType>Electron</ParticleType>
        <Qualifier>Moment</Qualifier>
        <ParticleQuantity>NumberDensity</ParticleQuantity>
        <EnergyRange>
          <Low>3</Low>
          <High>30000</High>
          <Units>eV</Units>
        </EnergyRange>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Electron Velocity</Name>
      <ParameterKey>E_VELS</ParameterKey>
      <Description>Electron velocity vector GSE cartesian</Description>
      <Units>km/s</Units>
      <UnitsConversion>1e3&gt;m/s</UnitsConversion>
      <CoordinateSystem>
        <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
        <CoordinateSystemName>GSE</CoordinateSystemName>
      </CoordinateSystem>
      <Structure>
        <Size>3</Size>
        <Element>
          <Name>UNCOR_V_xGSE</Name>
          <Index>1</Index>
          <ValidMin>-4000</ValidMin>
          <ValidMax>4000</ValidMax>
        </Element>
        <Element>
          <Name>UNCOR_V_yGSE</Name>
          <Index>2</Index>
          <ValidMin>-4000</ValidMin>
          <ValidMax>4000</ValidMax>
        </Element>
        <Element>
          <Name>UNCOR_V_zGSE</Name>
          <Index>3</Index>
          <ValidMin>-4000</ValidMin>
          <ValidMax>4000</ValidMax>
        </Element>
      </Structure>
      <Particle>
        <ParticleType>Electron</ParticleType>
        <Qualifier>Moment</Qualifier>
        <ParticleQuantity>Velocity</ParticleQuantity>
        <EnergyRange>
          <Low>3</Low>
          <High>30000</High>
          <Units>eV</Units>
        </EnergyRange>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Residual Electron Velocity Variance</Name>
      <ParameterKey>E_TENS</ParameterKey>
      <Description>Residual Variance in Electron Velocity (6 components in instrument coords)</Description>
      <Caveats>Per Lynn Wilson Jan2015: This is in one of two units. It is calculated as the pressure tensor divided by the number density. In the decommutation source code, they say the units are (km/s)^2. In some of the other moment analysis software, the pressure is in units of [eV cm^(-3)].</Caveats>
      <Units>(km/s)^2</Units>
      <CoordinateSystem>
        <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
        <CoordinateSystemName>SC</CoordinateSystemName>
      </CoordinateSystem>
      <Structure>
        <Size>6</Size>
      </Structure>
      <Particle>
        <ParticleType>Electron</ParticleType>
        <Qualifier>Moment</Qualifier>
        <Qualifier>Tensor</Qualifier>
        <Qualifier>Variance</Qualifier>
        <ParticleQuantity>Velocity</ParticleQuantity>
        <EnergyRange>
          <Low>3</Low>
          <High>30000</High>
          <Units>eV</Units>
        </EnergyRange>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Electron Temperature</Name>
      <ParameterKey>E_TEMP</ParameterKey>
      <Description>Electron temperature</Description>
      <Units>eV</Units>
      <UnitsConversion>1.160445e4&gt;K</UnitsConversion>
      <Particle>
        <ParticleType>Electron</ParticleType>
        <Qualifier>Moment</Qualifier>
        <ParticleQuantity>Temperature</ParticleQuantity>
        <EnergyRange>
          <Low>3</Low>
          <High>30000</High>
          <Units>eV</Units>
        </EnergyRange>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Electron Heat Flux</Name>
      <ParameterKey>E_Q</ParameterKey>
      <Description>Electron Heat Flux (Q)</Description>
      <Caveats>Per Lynn Wilson Jan2015: This is the vector form of the electron heat flux. It should have units of either [(km/s)^3 cm^(-3)] or [eV km/s cm^(-3)] . I am guessing the former due to the .VV units used above, since this is usually given the structure tag .NVVV.</Caveats>
      <Units>(km/s)^3/cm^3</Units>
      <CoordinateSystem>
        <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
        <CoordinateSystemName>GSE</CoordinateSystemName>
      </CoordinateSystem>
      <Structure>
        <Size>3</Size>
        <Element>
          <Name>UNCOR_Q_xGSE</Name>
          <Index>1</Index>
          <ValidMin>-1.0E10</ValidMin>
          <ValidMax>1.0E10</ValidMax>
        </Element>
        <Element>
          <Name>UNCOR_Q_yGSE</Name>
          <Index>2</Index>
          <ValidMin>-1.0E10</ValidMin>
          <ValidMax>1.0E10</ValidMax>
        </Element>
        <Element>
          <Name>UNCOR_Q_zGSE</Name>
          <Index>3</Index>
          <ValidMin>-1.0E10</ValidMin>
          <ValidMax>1.0E10</ValidMax>
        </Element>
      </Structure>
      <Particle>
        <ParticleType>Electron</ParticleType>
        <Qualifier>Moment</Qualifier>
        <ParticleQuantity>HeatFlux</ParticleQuantity>
        <EnergyRange>
          <Low>3</Low>
          <High>30000</High>
          <Units>eV</Units>
        </EnergyRange>
      </Particle>
    </Parameter>
    <Parameter>
      <Name>Gap flag</Name>
      <ParameterKey>GAP</ParameterKey>
      <Description>Flag indicating whether data point is preceded by a data gap (0 = no gap, 1 = gap)</Description>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>Validity flag</Name>
      <ParameterKey>VALID</ParameterKey>
      <Description>Flag indicating whether data point is considered valid (0=bad, 1=good)</Description>
      <Support>
        <SupportQuantity>Other</SupportQuantity>
      </Support>
    </Parameter>
  </NumericalData>
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