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    "url": "https://svs.gsfc.nasa.gov/5150/",
    "page_type": "Visualization",
    "title": "GEOS-FP Near-Surface Humidity",
    "description": "Near-surface Humidity, also known as specific humidity (Q2M) from NASA’s GEOS-FP system. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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            "description": "Near-surface Humidity, also known as specific humidity (Q2M) from NASA’s GEOS-FP system. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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                        "alt_text": "Near-surface Humidity, also known as specific humidity (Q2M) from NASA’s GEOS-FP system. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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                        "alt_text": "Near-surface Humidity, also known as specific humidity (Q2M) from NASA’s GEOS-FP system. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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            "description": "This daily-updated visualization shows near-surface humidity data from the last two weeks through the present day. Weather models begin their forecasts by integrating observations from ground stations, aircraft, balloons, and a growing constellation of Earth observing satellites to estimate the most realistic atmospheric state. The Goddard Earth Observing System Forward Processing (GEOS-FP) system is a research model maintained by NASA’s Global Modeling and Assimilation Office to demonstrate innovative new ways to use satellite data to improve predictions of weather, air quality, and greenhouse gases and to help NASA collect new observations of our home planet. <br>\r\n<br>Near-surface humidity, also known as specific humidity (Q2M), measures the actual amount of water vapor present in the air near Earth's surface. This measurement tells us the exact mass of water vapor per unit of air mass, typically measured in grams per kilogram (g/kg). It is calculated using atmospheric temperature and pressure data and remains relatively constant even as temperature changes throughout the day. Near-surface Humidity patterns reveal how moisture moves through the atmosphere via weather systems, ocean evaporation, and land surface processes. Understanding near-surface humidity is crucial for predicting weather patterns, agricultural conditions, and air quality, as it directly influences cloud formation, precipitation development, and the transport of atmospheric pollutants.",
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            "caption": "Near-Surface Humidity (Q2M) colorbar.",
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            "title": "For More Information",
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            "description": "See [https://gmao.gsfc.nasa.gov/weather-analysis-prediction/](https://gmao.gsfc.nasa.gov/weather-analysis-prediction/)",
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    "datasets": [
        {
            "name": "GEOS-FP",
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            "platform": null,
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            "organizations": [
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            "description": "Documentation: Lucchesi, R., 2018: File Specification for GEOS FP. GMAO Office Note No. 4 (Version 1.2), 61 pp, available from [https://gmao.gsfc.nasa.gov/pubs/docs/Lucchesi1203.pdf](https://gmao.gsfc.nasa.gov/pubs/docs/Lucchesi1203.pdf)",
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            "url": "https://fluid.nccs.nasa.gov/weather/",
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            "title": "Science On A Sphere: Aerosols in the Air",
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            "description": "NASA utilizes satellite instruments and models to monitor sources of air pollutants and their movement through the atmosphere. This visualization shows concentrations of air pollutants, such as Particulate Matter (PM2.5, fine particles smaller than 2.5 micrometers), Ozone (O~3~), Carbon Monoxide (CO), and Nitrogen Oxides (NO~x~) as they are tracked from NASA's Goddard Earth Observing System Composition Forecasting (GEOS-CF) system.",
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            "title": "Science On A Sphere: Air Quality Model Runs",
            "description": "NASA utilizes satellite instruments and models to monitor sources of air pollutants and their movement through the atmosphere. This visualization shows concentrations of air pollutants, such as Particulate Matter (PM2.5, fine particles smaller than 2.5 micrometers), Ozone (O~3~), Carbon Monoxide (CO), and Nitrogen Oxides (NO~x~) as they are tracked from NASA's Goddard Earth Observing System Composition Forecasting (GEOS-CF) system.",
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            "id": 5147,
            "url": "https://svs.gsfc.nasa.gov/5147/",
            "page_type": "Visualization",
            "title": "GEOS-FP Near-Surface Temperature",
            "description": "Near-surface temperature is calculated by sampling 3-D atmospheric fields from NASA’s GEOS-FP system 3 meters above Earth’s surface. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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            "update_date": "2026-06-11T02:00:08.633477-04:00",
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                "alt_text": "Near surface temperature is calculated by sampling 3-D atmospheric fields from NASA’s GEOS-FP system 3 meters above Earth’s surface. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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            "url": "https://svs.gsfc.nasa.gov/5148/",
            "page_type": "Visualization",
            "title": "GEOS-FP Near-Surface Wind Speed",
            "description": "Near-surface wind speed is calculated by sampling 3-D atmospheric fields from NASA’s GEOS-FP system 10 meters above Earth’s surface. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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                "alt_text": "Near-surface wind speed is calculated by sampling 3-D atmospheric fields from NASA’s GEOS-FP system 10 meters above Earth’s surface. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions that are used to begin a forecast.",
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            "page_type": "Visualization",
            "title": "GEOS-FP Precipitation and Clouds",
            "description": "Precipitation and clouds are calculated using fields from NASA’s GEOS-FP system. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions, which can be used to estimate the formation of clouds along with rain and snowfall.",
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                "filename": "MC03_stage3_GMAO_precipitation_2048x1024_en.00001_print.jpg",
                "media_type": "Image",
                "alt_text": "Precipitation and clouds are calculated using fields from NASA’s GEOS-FP system. GEOS-FP combines millions of weather observations with a predictive model to create a global best estimate of weather conditions, which can be used to estimate the formation of clouds along with rain and snowfall.",
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        {
            "id": 5151,
            "url": "https://svs.gsfc.nasa.gov/5151/",
            "page_type": "Visualization",
            "title": "Particulate Matter (PM) 2.5",
            "description": "Near surface concentration of fine particular matter (PM2.5) estimated from NASA’s aerosol and weather fields produced by NASA’s GEOS-CF model.",
            "release_date": "2023-09-26T17:00:00-04:00",
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            "main_image": {
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                "media_type": "Image",
                "alt_text": "Near surface concentration of fine particular matter (PM2.5) estimated from NASA’s aerosol and weather fields produced by NASA’s GEOS-CF model.",
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            "id": 5152,
            "url": "https://svs.gsfc.nasa.gov/5152/",
            "page_type": "Visualization",
            "title": "Near surface Ozone (O3)",
            "description": "Near surface concentration of ozone (O3) estimated by NASA’s GEOS-CF model.",
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            "title": "Carbon Monoxide (CO)",
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            "main_image": {
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                "filename": "MC03_stage4_GMAO_CO_2048x1024_en.00001_print.jpg",
                "media_type": "Image",
                "alt_text": "Near surface concentration of carbon monoxide (CO) estimated by NASA’s GEOS-CF model.",
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            "id": 5154,
            "url": "https://svs.gsfc.nasa.gov/5154/",
            "page_type": "Visualization",
            "title": "Nitrogen Oxides (NOx)",
            "description": "Near surface concentration of Nitrogen Oxides (NOx) estimated from concentrations of nitrogen oxide and nitrogen dioxide produced by  NASA’s GEOS-CF model.",
            "release_date": "2023-09-26T17:00:00-04:00",
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                "filename": "MC04_stage4_GMAO_NO2_2048x1024_en.00001_print.jpg",
                "media_type": "Image",
                "alt_text": "Near surface concentration of Nitrogen Oxides (NOx) estimated from concentrations of nitrogen oxide and nitrogen dioxide produced by NASA’s GEOS-CF model.",
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