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ru30-20190201T1712-delayed
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru30-20190201T1712-delayed
ru30-20190201T1712 Delayed Mode Science Profiles
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs BB2FL ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen. This cross shelf New Jersey glider deployment is occurring on the Rutgers E-line.
Modified:
ru30-20190227T1625
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs BB2FL ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru30-20190227T1625
ru30-20190227T1625 Delayed Mode Science Profiles
Data provided by National Oceanic and Atmospheric Administration
The deployment is a continuation of the ru30-20190201T1712 deployment, which was recovered early due to ballasting foam issues. Glider was re-ballasted and redeployed with the same goals as the earlier deployments. The oxygen optode was also replaced. See instrument_optode for instrument metadtaa. This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider.
Modified:
ru30-20190717T1812
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs BB2FL ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru30-20190717T1812
ru30-20190717T1812-delayed
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru30-20190717T1812-delayed
ru30-20190717T1812 Delayed Mode Science Profiles
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
ru30-20191015T1824
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs BB2FL ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru30-20191015T1824
ru30-20191015T1824-delayed
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru30-20191015T1824-delayed
ru30-20191015T1824 Delayed Mode Science Profiles
Data provided by National Oceanic and Atmospheric Administration
This project integrated a deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor, the Deep ISFET pH, into a Slocum Webb G2 glider. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified: