{
    "Conventions": "CF-1.6, COARDS, ACDD-1.3",
    "acknowledgment": "This deployment is supported by funding from Mid Atlantic Regional Association Coastal Ocean Observing System.",
    "cdm_data_type": "Trajectory", 
    "comment": "Glider deployed by Caroline Wiernicki, Caroline Bowers, Matthew Oliver, and boat captain Chip Haldeman aboard the R/V Rutgers out of Tuckerton, NJ.",
    "contributor_name": "Matt Oliver,Grant Voirol,Caroline Wiernicki,Jerome Pinti,John Kerfoot,Laura Nazzaro,Lori Garzio",
    "contributor_role": "Principal Investigator,Pilot,Pilot,Pilot,Data Management,Data Management,Data Management",
    "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", 
    "gts_ingest": "True",
    "history": " ", 
    "id": " ", 
    "infoUrl": "https://www.udel.edu/academics/colleges/ceoe/,https://rucool.marine.rutgers.edu,https://maracoos.org",
    "institution": "University of Delaware",
    "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 time-series dataset from the native data file format. No quality control provided.", 
    "product_version": "1.0", 
    "program": "MARACOOS",
    "project": "MARACOOS",
    "publisher_email": "kerfoot@marine.rutgers.edu", 
    "publisher_institution": "Rutgers University",
    "references": "https://maracoos.org,https://sites.udel.edu/ceoe-moliver/,https://www.udel.edu/academics/colleges/ceoe/departments/smsp/,https://rucool.marine.rutgers.edu",
    "sea_name": "Mid-Atlantic Bight",
    "source": " ", 
    "standard_name_vocabulary": "CF Standard Name Table v27", 
    "summary": "This project supports the deployment and real-time data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential regional ocean features. The goal of the project is to provide realtime, baseline data on the thermal structure of the Mid-Atlantic Bight shelf waters. The glider will be deployed out of Tuckerton, NJ and will transect in a “W” pattern offshore to the shelf break and back inshore, while traveling southward toward Chincoteague, VA.",
    "time_coverage_duration": " ", 
    "time_coverage_end": " ", 
    "time_coverage_resolution": " ", 
    "time_coverage_start": " ", 
    "title": " "
}
