Metadata | Start Date | End Date | Comment |
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RS03AXPS-SF03A-4A-NUTNRA301 |
The deployments 1 and 2 .nc files are missing the pressure coordinate. By Lori Garzio, on 12/11/19 |
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RS03AXPS-SF03A-4A-NUTNRA301 Deployment: 1 |
69% of nitrate_concentration and 14% of salinity_corrected_nitrate values are outside of global ranges for this deployment. By Lori Garzio, on 12/11/19 |
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RS03AXPS-SF03A-4A-NUTNRA301 Deployment: 3 |
13% of nitrate_concentration and nutnr_nitrogen_in_nitrate values are outside of global ranges for this deployment. By Lori Garzio, on 12/11/19 |
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RS03AXPS-SF03A-4F-PCO2WA301 Deployment: 1 |
The deployment 1 .nc files are missing the 'pressure' coordinate By Lori Garzio, on 12/11/19 |
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RS03AXPS-SF03A-4F-PCO2WA301 Deployment: 3 |
The missing data at the end of deployment 3 should be annotated. By Lori Garzio, on 12/11/19 |
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RS01SLBS-LJ01A-05-HPIESA101 |
The .nc files for deployments 1-3 are missing the coordinates pressure, lat and lon. By Lori Garzio, on 12/13/19 |
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RS03AXBS-LJ03A-05-HPIESA301 |
The .nc files for deployments 1-3 are missing the coordinates pressure, lat and lon. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-05-HPIESA101 |
There are no global ranges in the system for hpies_pressure_L1 By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-05-HPIESA101 |
Global ranges for hpies_bliley_frequency are 4-200, however the description for this variable states "Send alert if not within 200 Hz of 4 MHz". The global ranges should be reviewed. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-05-HPIESA101 Deployment: 3 |
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RS03AXBS-LJ03A-05-HPIESA301 |
There are no global ranges in the system for hpies_pressure_L1 By Lori Garzio, on 12/13/19 |
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RS03AXBS-LJ03A-05-HPIESA301 |
Global ranges for hpies_bliley_frequency are 4-200, however the description for this variable states "Send alert if not within 200 Hz of 4 MHz". The global ranges should be reviewed. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-11-OPTAAC103 |
According to Roesler and Barnard (Optical proxy for phytoplankton biomass in the absence of photophysiology: Rethinking the absorption line height, Methods in Oceanography, 2013), “absorption meters are highly prone to biofouling, particularly biofilms which not only attenuate the collimated beam but also impact the scattering properties of the optical surfaces and tubes. In productive coastal waters biofouling can have significant impacts (i.e. 10% of the signal) within one to two weeks”. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-11-OPTAAC103 |
Missing data at the end of deployments 2 and 3 should be annotated. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-11-OPTAAC103 |
The .nc files for deployments 1-4 are missing the coordinates pressure, lat and lon. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-11-OPTAAC103 |
There is no pressure variable in the .nc files. This should be a coordinate. By Lori Garzio, on 12/13/19 |
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RS01SLBS-LJ01A-11-OPTAAC103 Deployment: 2 |
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RS01SLBS-LJ01A-11-OPTAAC103 Deployment: 3 |
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RS03AXBS-LJ03A-11-OPTAAC303 |
According to Roesler and Barnard (Optical proxy for phytoplankton biomass in the absence of photophysiology: Rethinking the absorption line height, Methods in Oceanography, 2013), “absorption meters are highly prone to biofouling, particularly biofilms which not only attenuate the collimated beam but also impact the scattering properties of the optical surfaces and tubes. In productive coastal waters biofouling can have significant impacts (i.e. 10% of the signal) within one to two weeks”. By Lori Garzio, on 12/13/19 |
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RS03AXBS-LJ03A-11-OPTAAC303 |
The .nc files for deployments 1-4 are missing the coordinates pressure, lat and lon. By Lori Garzio, on 12/13/19 |