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            <Value value="Argo reference table 2"/>
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            <Value value="quality flag"/>
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        <Attribute name="units" type="String">
            <Value value="m-1"/>
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            <Value value="9.999999747378752E-6"/>
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            <Value value="Argo reference table 2"/>
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            <Value value="%.5f"/>
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    <Float32 name="CDOM">
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            <Value value="F.4f"/>
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        <Attribute name="C_format" type="String">
            <Value value="%.4f"/>
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            <Value value="Concentration of coloured dissolved organic matter in sea water"/>
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            <Value value="Argo reference table 2"/>
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            <Value value="quality flag"/>
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        <Dim name="/N_PROF"/>
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            <Value value="F.4f"/>
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        <Attribute name="_FillValue" type="Float32">
            <Value value="99999.0"/>
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        <Attribute name="units" type="String">
            <Value value="ppb"/>
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        <Attribute name="resolution" type="Float32">
            <Value value="9.999999747378752E-5"/>
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        <Attribute name="C_format" type="String">
            <Value value="%.4f"/>
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        <Attribute name="long_name" type="String">
            <Value value="Concentration of coloured dissolved organic matter in sea water"/>
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        <Dim name="/N_LEVELS"/>
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            <Value value=" "/>
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        <Attribute name="conventions" type="String">
            <Value value="Argo reference table 2"/>
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        <Attribute name="long_name" type="String">
            <Value value="quality flag"/>
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    <Float32 name="CDOM_ADJUSTED_ERROR">
        <Dim name="/N_PROF"/>
        <Dim name="/N_LEVELS"/>
        <Attribute name="FORTRAN_format" type="String">
            <Value value="F.4f"/>
        </Attribute>
        <Attribute name="_FillValue" type="Float32">
            <Value value="99999.0"/>
        </Attribute>
        <Attribute name="units" type="String">
            <Value value="ppb"/>
        </Attribute>
        <Attribute name="resolution" type="Float32">
            <Value value="9.999999747378752E-5"/>
        </Attribute>
        <Attribute name="C_format" type="String">
            <Value value="%.4f"/>
        </Attribute>
        <Attribute name="long_name" type="String">
            <Value value="Contains the error on the adjusted values as determined by the delayed mode QC process"/>
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    <Char name="PARAMETER">
        <Dim name="/N_PROF"/>
        <Dim name="/N_CALIB"/>
        <Dim name="/N_PARAM"/>
        <Dim name="/STRING64"/>
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            <Value value=" "/>
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        <Attribute name="conventions" type="String">
            <Value value="Argo reference table 3"/>
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        <Attribute name="long_name" type="String">
            <Value value="List of parameters with calibration information"/>
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        <Dim name="/N_CALIB"/>
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            <Value value=" "/>
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            <Value value="Calibration equation for this parameter"/>
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    <Char name="SCIENTIFIC_CALIB_COEFFICIENT">
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            <Value value="Calibration coefficients for this equation"/>
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    <Char name="SCIENTIFIC_CALIB_COMMENT">
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        <Dim name="/N_CALIB"/>
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            <Value value="Comment applying to this parameter calibration"/>
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        <Dim name="/N_CALIB"/>
        <Dim name="/N_PARAM"/>
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        <Attribute name="conventions" type="String">
            <Value value="YYYYMMDDHHMISS"/>
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            <Value value="Date of calibration"/>
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            <Value value="Institution which performed action"/>
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            <Value value="Argo reference table 12"/>
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        <Attribute name="long_name" type="String">
            <Value value="Step in data processing"/>
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            <Value value="Name of software which performed action"/>
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            <Value value="Institution dependent"/>
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            <Value value="Version/release of software which performed action"/>
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        <Attribute name="conventions" type="String">
            <Value value="Institution dependent"/>
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        <Attribute name="long_name" type="String">
            <Value value="Reference of database"/>
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            <Value value="YYYYMMDDHHMISS"/>
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            <Value value="Date the history record was created"/>
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            <Value value="Argo reference table 7"/>
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            <Value value="Write tests performed when ACTION=QCP$; tests failed when ACTION=QCF$"/>
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            <Value value="Relative julian days with decimal part (as parts of day)"/>
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            <Value value="days since 1950-01-01 00:00:00 UTC"/>
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            <Value value="1.1574E-5"/>
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            <Value value="Julian day (UTC) of the station relative to REFERENCE_DATE_TIME"/>
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    <Attribute name="user_manual_version" type="String">
        <Value value="3.1"/>
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    <Attribute name="institution" type="String">
        <Value value="CSIO"/>
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        <Value value="Argo-3.1 CF-1.6"/>
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    <Attribute name="references" type="String">
        <Value value="http://www.argodatamgt.org/Documentation"/>
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        <Value value="trajectoryProfile"/>
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    <Attribute name="comment" type="String">
        <Value value="free text"/>
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        <Value value="Argo float"/>
    </Attribute>
    <Attribute name="history" type="String">
        <Value value="2022-01-23T16:01:30Z creation; 2026-04-20T03:00:56Z last update"/>
    </Attribute>
    <Attribute name="title" type="String">
        <Value value="Argo float vertical profile"/>
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    <Attribute name="_DAP4_Little_Endian" type="UInt8">
        <Value value="1"/>
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</Dataset>
  B-Argo profile                  3.1 1.2 1950010100000020220123160130202604200300562902824 2902824 PROVOR                          PROVOR                          CHINA ARGO PROJECT                                              CHINA ARGO PROJECT                                              FEI CHAI                                                        FEI CHAI                                                        PRES                                                                                                                                                                                                                                                                                                                                                                                                                                                            PRES                                                            FLUORESCENCE_CHLA                                               BETA_BACKSCATTERING700                                          FLUORESCENCE_CDOM                                               CHLA                                                            BBP700                                                          CDOM                                                            }   }   AAHZHZ0496_siobio005_125              0496_siobio005_125              2B  2B  R      RRRRARRRAP41305-17CH003                  P41305-17CH003                  V3.01                           V3.01                           841 841 11 d%@ d%@*@*@H܀c@H܀c@11GPS     GPS            A B  Primary sampling: averaged []                                                                                                                                                                                                                                   Secondary sampling: mixed []                                                                                                                                                                                                                                             ?  ?ff&@  `@33@̬@  @  @  AA333AffNA  pA  A  A  A  A  A  A  A  AffBffBffBB#B  ,B  4B<BffDBKB  TBff\BcB  lBsB|B́B33BffB̍B̑BffB  B  B  B̥B  B  ḆB  B  B  B  B  B  B  B  B33B33B33BBB  BBB  B33B  B  CCC  C	CCfC  CfC  C  C  C  C  C  CfC  !C#C  %C  'Cf(C  +C  -C  /C1C3Cf4C  7Cf8C  ;C=C?C  AC  CC  EC  GC  IC  KC  MC  OC  QCSC  UCWCYC[C]C  _C  aCcCeC  gC  iC  kCflC  oC  qCfrC  uC  wC  yC{C  }C  C C͌C C C C C C3sC C C͌C C͌C C C3sC3sC3sC C3sC C CffC C͌CffCffCffC C͌CC C3sC CC C3sCC͌CfCC3sC C D @D3D @D
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C!C "C#C3$C%C&CL'C'C(C)Cf)Cff*C+C3+Cff,C-C  .Cf.C/C30C1C32C33Cf4Cf5C7C  8CL9Cff:C3;Cf<C33>Cff?C@C3ACfBC  DCLECLFCGCHC  JCffKCffLC3MCNC  PCQCffRCSCTC  VCLWCffXCYCZC33\C33]Cff^C33_C`C3`CaCffbCcC  dC3dC eCLfC33gC  hC  iCiC3jCkC3lC mC3nC3oCpC3qCfrCtC  uCLvCffwC3xC  zC {C3|C~C33CLCـCC33CfC C @C̄C CC C3sCC3C @C3C CCC @C CLCC  CLC3CC3sC̏C @CfCC͌C3C3sCْCYC33CffC3CfCffCf&C  C33CffCffC͌CfC33CLC3CCCCffC3CCf& D  DDD3SD3DffDfDffD3D DDfD3s"D9%D3(D3*D,D3.Df0D  3D3S5D7D33:D3<D9?DAD3SDDFD3SID3KD3SND PDffSDUD3sXDf[D3]Dff`D9cDffD3gD3iD3lD @nD3pD  sD uDxD |DOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOG  PB  TB  TB  PB  TB  LB  LB  TB  PB  TB  PB  LB  PB  PB  PB  TB  LB  TB  LB  PB  TB  PB  LB  PB  HB  PB  LB  PB  TB  LB  TB  PB  LB  LB  LB  PB  PB  TB  TB  TB  PB  PB  PB  LB  PB  PB  TB  PB  PB  XB  PB  PB  LB  PB  TB  PB  LB  HB  PB  PB  PB  TB  PB  PB  HB  LB  LB  TB  TB  TB  PB  PB  LB  TB  LB  TB  TB  PB  XB  LB  PB  TB  PB  TB  PB  TB  XB  TB  TB  XB  TB  \B  XB  XB  \B  \B  \B  XB  XB  `B  hB  \B  dB  XB  `B  \B  dB  `B  hB  hB  pB  hB  lB  hB  hB  hB  pB  tB  lB  tB  pB  lB  lB  pB  tB  lB  lB  pB  lB  pB  pB  pB  pB  pB  lB  pB  xB  tB  tB  xB  lB  xB  |B  B  B  B  xB  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  tB  |B  tB  |B  |B  xB  |B  pB  tB  tB  lB  hB  lB  hB  hB  hB  lB  hB  dB  hB  \B  XB  \B  XB  \B  XB  XB  TB  XB  PB  PB  LB  TB  LB  LB  HB  PB  PB  HB  LB  HB  LB  LB  LB  LB  HB  HB  HB  HB  LB  HB  LB  HB  LB  HB  HB  HB  HB  HB  LB  HB  HB  HB  HB  LB  HB  HB  HB  HB  LB  HB  HB  LB  HB  LB  HB  LB  LB  HB  LB  LB  HB  HB  HB  LB  HB  HB  HB  LB  HB  HB  LB  HB  LB  HB  LB  LB  LB  HB  HB  TB  HB  HB  LB  PB  LB  PB  PB  TB  PB  PB  TB  PB  TB  PB  PB  PB  LB  PB  TB  PB  LB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  PB  LB  PB  PB  PB  PB  PB  PB  HB  PB  LB  LB  PB  HB  HB  HB  PB  LB  PB  LB  PB  PB  HB  PB  PB  LB  LB  PB  PB  PB  PB  TB  PB  LB                                                                                                                                                                                                                                                                                                                                                                                                                             00000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000OGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOG  +C C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  C  B                                                                                                                                                                                                                                                                                                                                                                                                                             00000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000OGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOG  XB  B  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  XB  \B  \B  XB  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  \B  `B  \B  \B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  `B  dB  dB  dB  `B  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  dB  hB  hB  hB  dB  dB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  hB  lB  lB  hB  hB  hB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  pB  pB  pB  pB  lB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  lB  pB  pB  pB  pB  pB  pB  lB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB 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                                                                                                                                                                                                                                                                                                                                                                                                                                                           PRES                                                            FLUORESCENCE_CHLA                                               BETA_BACKSCATTERING700                                          FLUORESCENCE_CDOM                                               CHLA                                                            BBP700                                                          CDOM                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                            CHLA_ADJUSTED = CHLA_NPQ for PRES in [0,ZMaxFluo], CHLA_ADJUSTED = ((FLUORESCENCE_CHLA-MEDIAN(PRELIM_DARK_CHLA))*SCALE_CHLA)/PHYSIO_RATIO otherwise                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                             CHLA_NPQ = [], ZMaxFluo = [], PRELIM_DARK_CHLA = [49,50,50,50,50], SCALE_CHLA = 0.0073, PHYSIO_RATIO = 1.87                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                     CHLA real time adjustment (specified in http://dx.doi.org/10.13155/35385 and computed with MLD_LIMIT = 0.03, and following recommendations of Roesler et al., 2017 (https://doi.org/10.1002/lom3.10185))                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                  20260420030056                            HZ  HZ  HZ  HZ  HZ  HZ  ARFMARFMARGQARGQARGQARGQ                                                                                                                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