N: 90 S: -90 E: 180 W: -180
Description
The Atmospheric Infrared Sounder (AIRS) is a grating spectrometer (R = 1200) aboard the second Earth Observing System (EOS) polar-orbiting platform, EOS Aqua. The AIRS Level 3 Daily Gridded Product contains standard retrieval means, standard deviations and input counts. Each file covers a temporal period of 24 hours for either the descending (equatorial crossing North to South at 1:30 AM local time) or ascending (equatorial crossing South to North at 1:30 PM local time) orbit. The data starts at the international dateline and progresses westward (as do the subsequent orbits of the satellite) so that neighboring gridded cells of data are no more than a swath of time apart (about 90 minutes). The two parts of a scan line crossing the dateline are included in separate L3 files, according to the date, so that data points in a grid box are always coincident in time. The edge of the AIRS Level 3 gridded cells is at the date line (the 180E/W longitude boundary). When plotted, this produces a map with 0 degrees longitude in the center of the image unless the bins are reordered. This method is preferred because the left (West) side of the image and the right (East) side of the image contain data farthest apart in time. The gridding scheme used by AIRS is the same as used by TOVS Pathfinder to create Level 3 products. The daily Level 3 products have gores between satellite paths where there is no coverage for that day. The geophysical parameters have been averaged and binned into 1 x 1 deg grid cells, from -180.0 to +180.0 deg longitude and from -90.0 to +90.0 deg latitude. For each grid map of 4-byte floating-point mean values there is a corresponding 4-byte floating-point map of standard deviation and a 2-byte integer grid map of counts. The counts map provides the user with the number of points per bin that were included in the mean and can be used to generate custom multi-day maps from the daily gridded products. The thermodynamic parameters are: Skin Temperature (land and sea surface), Air Temperature at the surface, Profiles of Air Temperature and Water Vapor, Tropopause Characteristics, Column Precipitable Water, Cloud Amount/Frequency, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Reflectance, Emissivity, Surface Pressure, Cloud Vertical Distribution. The trace gases parameters are: Total Amounts and Vertical Profiles of Carbon Monoxide, Methane, and Ozone. The actual names of the variables in the data files should be inferred from the Processing File Description document.
The value for each grid box is the sum of the values that fall within the 1x1 area divided by the number of points in the
box.
Product Summary
Citation
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Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Lightning Enhancement in Moist Convection with Smokeladen Air Advected from Australian Wildfires | Liu, Y., Williams, E., Li, Z., Guha, A., Lapierre, J., Stock, M., Heckman, S., Zhang, Y., DiGangi, E. | Carbon Monoxide, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Air Temperature, Upper Air Temperature, Humidity, Total Precipitable Water, Water Vapor, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Skin Temperature, Sea Surface Temperature | |
| Spatial Variation in Humidity and the Onset of Seasonal Influenza Across the Contiguous United States | Serman, E., Thrastarson, H. Th., Franklin, M., Teixeira, J. | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Understanding the Trend of NO2, SO2 and CO over East Africa from 2005 to | Opio, Ronald, Mugume, Isaac, Nakatumba-Nabende, Joyce | Carbon Monoxide, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Air Temperature, Upper Air Temperature, Humidity, Total Precipitable Water, Water Vapor, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Skin Temperature, Sea Surface Temperature, Land Surface Temperature | |
| The flowering of Atlantic Forest Pleroma trees | Wagner, Fabien H. | Carbon Monoxide, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Air Temperature, Upper Air Temperature, Humidity, Total Precipitable Water, Water Vapor, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Skin Temperature, Sea Surface Temperature | |
| Variability in Sea Ice Melt Onset in the Arctic Northeast Passage: Seesaw of the Laptev Sea and the East Siberian Sea | Liang, Hongjie, Su, Jie | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Changes in Atmospheric, Meteorological, and Ocean Parameters Associated | Jing, Feng, Chauhan, Akshansha, P Singh, Ramesh, Dash, Prasanjit | Sulfur Dioxide, Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Crime is in the air: The contemporaneous relationship between air pollution and crime | Bondy, Malvina, Roth, Sefi, Sager, Lutz | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Comparisons of upper air ozone at a coastal and urban site and the impacts of non-controllable ozone sources | Gore, Chloe, Chiao, Sen | Geopotential Height, Altitude, Surface Temperature, Skin Temperature, Upper Air Temperature, Dew Point Temperature, Air Temperature, Cloud Top Temperature, Atmospheric Winds, Surface Winds, U/V Wind Components, Upper Level Winds, U/V Wind Components, Vertical Wind Velocity/Speed, Atmospheric Pressure, Sea Level Pressure, Cloud Top Pressure, Sea Level Pressure, Surface Pressure, Specific Humidity, Total Precipitable Water, Cloud Liquid Water/Ice, Atmospheric Water Vapor, Atmospheric Ozone, Oxygen Compounds, Boundary Layer Winds, Total Ozone, Skin Temperature, Tropopause, Water Vapor, Cloud Height, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Carbon Monoxide, Humidity, Water Vapor Profiles, Outgoing Longwave Radiation, Methane | |
| Variations in water vapor from AIRS and MODIS in response to Arctic sea ice change in December 2002November 2016 | Chang, Liang, Gao, Guoping, Li, Yangdong, Zhang, Yu, Zhang, Chunling, Zhang, Yang, Feng, Guiping | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Impact of Deadly Dust Storms (May 2018) on Air Quality, Meteorological | Sarkar, Sudipta, Chauhan, Akshansha, Kumar, Rajesh, Singh, Ramesh P. | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone, Aerosol Optical Depth/Thickness, Atmospheric Ozone, Reflectance, Aerosol Extinction, Aerosol Optical Depth/Thickness, Aerosol Optical Depth/Thickness | |
| Enhancement of carbon monoxide concentration in atmosphere due to large | Thakur, Jaya, Thever, Prajesh, Gharai, Biswadip, Sesha Sai, MVR, Pamaraju, VNRao | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Estimating the effect of air pollution on road safety using atmospheric temperature inversions | Sager, Lutz | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone, Sea Level Pressure, Pressure Thickness, U/V Wind Components, U/V Wind Components, Potential Vorticity, Vertical Wind Velocity/Speed, Vertical Profiles, Relative Humidity, Specific Humidity, Atmospheric Water Vapor, Cloud Fraction, Altitude, Ozone Profiles | |
| Onset of summer monsoon in Northeast India is preceded by enhanced transpiration | Pradhan, Rohit, Singh, Nimisha, Singh, Raghavendra P. | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone, Land Use/Land Cover Classification, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Long-range-transported Canadian smoke plumes in the lower stratosphere over northern France | Hu, Qiaoyun, Goloub, Philippe, Veselovskii, Igor, Bravo-Aranda, Juan-Antonio, Popovici, Ioana Elisabeta, Podvin, Thierry, Haeffelin, Martial, Lopatin, Anton, Dubovik, Oleg, Pietras, Christophe, Huang, Xin, Torres, Benjamin, Chen, Cheng | Atmospheric Ozone, Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane | |
| Characterization of the varying flux of atmospheric muons measured with the Large Volume Detector for 24 years | Agafonova, N. Yu., Aglietta, M., Antonioli, P., Ashikhmin, V. V., Bari, G., Bruno, G., Dobrynina, E. A., Enikeev, R. I., Fulgione, W., Galeotti, P., Garbini, M., Ghia, P. L., Giusti, P., Kemp, E., Malgin, A. S., Molinario, A., Persiani, R., Pless, I. A., Rubinetti, S., Ryazhskaya, O. G., Sartorelli, G., Shakiryanova, I. R., Selvi, M., Taricco, C., Trinchero, G. C., Vigorito, C. F., Yakushev, V. F., Zichichi, A. | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Profiling of CH4 background mixing ratio in the lower troposphere with Raman lidar: a feasibility experiment | Veselovskii, Igor, Goloub, Philippe, Hu, Qiaoyun, Podvin, Thierry, Whiteman, David N., Korenskiy, Mikhael, Landulfo, Eduardo | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Global prediction of photovoltaic field performance differences using open-source satellite data | Peters, Ian Marius, Liu, Haohui, Reindl, Thomas, Buonassisi, Tonio | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Crop Residue Burning in Northern India: Increasing Threat to Greater | Sarkar, S., Singh, R. P., Chauhan, A. | Aerosols, Aerosol Extinction, Aerosol Optical Depth/Thickness, Angstrom Exponent, Aerosol Particle Properties, Carbonaceous Aerosols, Dust/Ash/Smoke, Organic Particles, Sulfate Particles, Sulfur Oxides, Sulfur Compounds, Sulfate, Sulfur Dioxide, Sulfur Oxides, Particulate Matter, Dimethyl Sulfide, Black Carbon, Sea Salt, PARTICULATE MATTER (PM 2.5), PARTICULATE MATTER (PM 10), PARTICULATE MATTER (PM 1.0), Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone, Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES | |
| Seasonal variation and potential source regions of PM2. 5-bound PAHs in the megacity Beijing, China: Impact of regional transport | Zhang, Yuepeng, Chen, Jing, Yang, Hainan, Li, Rongjia, Yu, Qing | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Retrieval and analysis of precipitable water vapour based on GNSS, AIRS, and reanalysis models over Nigeria | Isioye, Olalekan Adekunle, Combrinck, Ludwig, Botai, Joel Ondego | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | |
| Stratospheric ozone intrusion events and their impacts on tropospheric ozone in the Southern Hemisphere | Greenslade, Jesse W., Alexander, Simon P., Schofield, Robyn, Fisher, Jenny A., Klekociuk, Andrew K. | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone |
Variables
The table below lists the variables contained within a single granule for this dataset. Variables often contain observed or derived geophysical measurements collected from a variety of sources, including remote sensing instruments on satellite and airborne platforms, field campaigns, in situ measurements, and model outputs. The terms variable, parameter, scientific data set, layer, and band have been used across NASA’s Earth science disciplines; however, variable is the designated nomenclature in NASA’s Common Metadata Repository (CMR). Variable metadata attributes such as Name, Description, Units, Data Type, Fill Value, Valid Range, and Scale Factor allow users to efficiently process and analyze the data. The full range of attributes may not be applicable to all variables. Additional information on variable attributes is typically available in the data, user guide, and/or other product documentation.
For questions on a specific variable, please use the Earthdata Forum.
| Name Sort descending | Description | Units | Data Type | Fill Value | Valid Range | Scale Factor | Offset |
|---|---|---|---|---|---|---|---|
| ascending_MW_only/Data_Fields/TotalCounts_MW_A | ascending_MW_only/Data_Fields/TotalCounts_MW_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_MW_only/Data_Fields/TotCldLiqH2O_MW_A | ascending_MW_only/Data_Fields/TotCldLiqH2O_MW_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_MW_only/Data_Fields/TotCldLiqH2O_MW_A_ct | ascending_MW_only/Data_Fields/TotCldLiqH2O_MW_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_MW_only/Data_Fields/TotCldLiqH2O_MW_A_sdev | ascending_MW_only/Data_Fields/TotCldLiqH2O_MW_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_MW_only/Data_Fields/TotH2OVap_MW_A | ascending_MW_only/Data_Fields/TotH2OVap_MW_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_MW_only/Data_Fields/TotH2OVap_MW_A_ct | ascending_MW_only/Data_Fields/TotH2OVap_MW_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_MW_only/Data_Fields/TotH2OVap_MW_A_sdev | ascending_MW_only/Data_Fields/TotH2OVap_MW_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CH4_VMR_TqJ_A | ascending_TqJoint/Data_Fields/CH4_VMR_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CH4_VMR_TqJ_A_ct | ascending_TqJoint/Data_Fields/CH4_VMR_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CH4_VMR_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CH4_VMR_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudFrc_TqJ_A | ascending_TqJoint/Data_Fields/CloudFrc_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudFrc_TqJ_A_ct | ascending_TqJoint/Data_Fields/CloudFrc_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudFrc_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CloudFrc_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudTopPres_TqJ_A | ascending_TqJoint/Data_Fields/CloudTopPres_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudTopPres_TqJ_A_ct | ascending_TqJoint/Data_Fields/CloudTopPres_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudTopPres_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CloudTopPres_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudTopTemp_TqJ_A | ascending_TqJoint/Data_Fields/CloudTopTemp_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudTopTemp_TqJ_A_ct | ascending_TqJoint/Data_Fields/CloudTopTemp_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CloudTopTemp_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CloudTopTemp_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/ClrOLR_TqJ_A | ascending_TqJoint/Data_Fields/ClrOLR_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/ClrOLR_TqJ_A_ct | ascending_TqJoint/Data_Fields/ClrOLR_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/ClrOLR_TqJ_A_sdev | ascending_TqJoint/Data_Fields/ClrOLR_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudFrc_TqJ_A | ascending_TqJoint/Data_Fields/CoarseCloudFrc_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudFrc_TqJ_A_ct | ascending_TqJoint/Data_Fields/CoarseCloudFrc_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudFrc_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CoarseCloudFrc_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudPres_TqJ_A | ascending_TqJoint/Data_Fields/CoarseCloudPres_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudPres_TqJ_A_ct | ascending_TqJoint/Data_Fields/CoarseCloudPres_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudPres_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CoarseCloudPres_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudTemp_TqJ_A | ascending_TqJoint/Data_Fields/CoarseCloudTemp_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudTemp_TqJ_A_ct | ascending_TqJoint/Data_Fields/CoarseCloudTemp_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CoarseCloudTemp_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CoarseCloudTemp_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CO_VMR_TqJ_A | ascending_TqJoint/Data_Fields/CO_VMR_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CO_VMR_TqJ_A_ct | ascending_TqJoint/Data_Fields/CO_VMR_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/CO_VMR_TqJ_A_sdev | ascending_TqJoint/Data_Fields/CO_VMR_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/EmisIR_TqJ_A | ascending_TqJoint/Data_Fields/EmisIR_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/EmisIR_TqJ_A_ct | ascending_TqJoint/Data_Fields/EmisIR_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/EmisIR_TqJ_A_sdev | ascending_TqJoint/Data_Fields/EmisIR_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/FineCloudFrc_TqJ_A | ascending_TqJoint/Data_Fields/FineCloudFrc_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/FineCloudFrc_TqJ_A_ct | ascending_TqJoint/Data_Fields/FineCloudFrc_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/FineCloudFrc_TqJ_A_sdev | ascending_TqJoint/Data_Fields/FineCloudFrc_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/GPHeight_TqJ_A | ascending_TqJoint/Data_Fields/GPHeight_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/GPHeight_TqJ_A_ct | ascending_TqJoint/Data_Fields/GPHeight_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/GPHeight_TqJ_A_sdev | ascending_TqJoint/Data_Fields/GPHeight_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_Lyr_TqJ_A | ascending_TqJoint/Data_Fields/H2O_MMR_Lyr_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_Lyr_TqJ_A_ct | ascending_TqJoint/Data_Fields/H2O_MMR_Lyr_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_Lyr_TqJ_A_sdev | ascending_TqJoint/Data_Fields/H2O_MMR_Lyr_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_Surf_TqJ_A | ascending_TqJoint/Data_Fields/H2O_MMR_Surf_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_Surf_TqJ_A_ct | ascending_TqJoint/Data_Fields/H2O_MMR_Surf_TqJ_A_ct | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_Surf_TqJ_A_sdev | ascending_TqJoint/Data_Fields/H2O_MMR_Surf_TqJ_A_sdev | N/A | float32 | -9999 | N/A | N/A | N/A |
| ascending_TqJoint/Data_Fields/H2O_MMR_TqJ_A | ascending_TqJoint/Data_Fields/H2O_MMR_TqJ_A | N/A | float32 | -9999 | N/A | N/A | N/A |