{
    "Conventions": "CF-1.6, COARDS, ACDD-1.3",
    "acknowledgment": "This deployment supported by National Science Foundation.",
    "cdm_data_type": "Trajectory", 
    "comment": "Deployed by Chip Haldeman, Nicole Waite, Marissa Guzik, Elijah and Liza Wright-Fairbanks on the R/V Rutgers",
    "contributor_name": "Grace Saba, Travis Miles, Dave Aragon, Nicole Waite, Chip Haldeman, John Kerfoot, Laura Nazzaro",
    "contributor_role": "Principal Investigator, Principal Investigator, Glider Pilot, Glider Pilot, Glider Pilot, Data Manager, Data Manager",
    "creator_email": "kerfoot@marine.rutgers.edu", 
    "creator_institution": "Rutgers University",
    "creator_name": "John Kerfoot", 
    "creator_type": "person", 
    "creator_url": "https://rucool.marine.rutgers.edu",
    "date_created": " ", 
    "date_issued": " ", 
    "date_metadata_modified": " ", 
    "date_modified": " ", 
    "featureType": "Trajectory", 
    "geospatial_bounds": " ", 
    "geospatial_bounds_crs": "EPSG:4326", 
    "geospatial_bounds_vertical_crs": "EPSG:5831", 
    "geospatial_lat_max": " ", 
    "geospatial_lat_min": " ", 
    "geospatial_lat_resolution": "0.00001 degree", 
    "geospatial_lat_units": "degree_north", 
    "geospatial_lon_max": " ", 
    "geospatial_lon_min": " ", 
    "geospatial_lon_resolution": "0.00001 degree", 
    "geospatial_lon_units": "degree_east", 
    "geospatial_vertical_max": " ", 
    "geospatial_vertical_min": " ", 
    "geospatial_vertical_positive": "down", 
    "geospatial_vertical_resolution": " ", 
    "geospatial_vertical_units": "EPSG:5831", 
    "history": " ", 
    "id": " ", 
    "infoUrl": "https://rucool.marine.rutgers.edu",
    "institution": "Rutgers University",
    "instrument": "In Situ/Laboratory Instruments > Profilers/Sounders > CTD", 
    "instrument_vocabulary": "NASA/GCMD Instrument Keywords Version 8.5", 
    "keywords": "Oceans > Ocean Pressure > Water Pressure, Oceans > Ocean Temperature > Water Temperature, Oceans > Salinity/Density > Conductivity, Oceans > Salinity/Density > Density, Oceans > Salinity/Density > Salinity", 
    "keywords_vocabulary": "NASA/GCMD Earth Sciences Keywords Version 8.5", 
    "license": "This data may be redistributed and used without restriction.  Data provided as is with no expressed or implied assurance of quality assurance or quality control",
    "metadata_link": " ", 
    "naming_authority": "edu.rutgers.rucool",
    "ncei_template_version": "NCEI_NetCDF_Trajectory_Template_v2.0", 
    "platform": "In Situ Ocean-based Platforms > AUVS > Autonomous Underwater Vehicles", 
    "platform_type": "Slocum Glider", 
    "platform_vocabulary": "NASA/GCMD Platforms Keywords Version 8.5", 
    "processing_level": "Raw Slocum glider dataset from the native data file format. No quality control provided.", 
    "product_version": "1.0", 
    "program": "Collaborative Research: Developing a profiling glider pH sensor for high resolution coastal ocean acidification monitoring",
    "project": "NSF OTIC pH Glider",
    "publisher_email": "kerfoot@marine.rutgers.edu", 
    "publisher_institution": "Rutgers University",
    "references": " ",
    "sea_name": "Mid-Atlantic Bight",
    "source": " ", 
    "standard_name_vocabulary": "CF Standard Name Table v27", 
    "summary": "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. This approximately 15 to 30 day deployment near Sandy Hook, NJ, and is running a cross-shelf transect to the shelf break north of Hudson Canyon to sample in Atlantic sea scallop habitat. Then the glider will turn and fly back to shore in a west-southwest direction to cover more sea scallop and Atlantic surfclam habitat with possible recovery targeted for Barneget, NJ. However, if pH data are still stable after 15 days (no increased time lag response due to biofouling), the glider will turn southeast and head back to the shelf break then fly back inshore toward Atlantic City.",
    "time_coverage_duration": " ", 
    "time_coverage_end": " ", 
    "time_coverage_resolution": " ", 
    "time_coverage_start": " ", 
    "title": " "
}
