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    "next": null,
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    "results": [
        {
            "id": 5596,
            "url": "https://svs.gsfc.nasa.gov/5596/",
            "result_type": "Visualization",
            "release_date": "2026-01-27T17:00:00-05:00",
            "title": "Tracking Weather Extremes: December 2025 Pacific Northwest Flooding",
            "description": "Created with NASA's GEOS data, this visualization shows the December 2025 atmospheric river that brought extreme precipitation to the Pacific Northwest. The analysis displays total precipitable water from the Pacific Ocean and resulting precipitation across Washington, Oregon, British Columbia, and Montana. This Category 5 atmospheric river delivered up to 10 inches of rain and forced over 100,000 evacuations in Washington state.",
            "hits": 421
        },
        {
            "id": 5601,
            "url": "https://svs.gsfc.nasa.gov/5601/",
            "result_type": "Visualization",
            "release_date": "2026-01-02T12:27:00-05:00",
            "title": "Wyoming Red Canyon wildfire: 2025 Year in Review",
            "description": "Part of our 2025 Year in Review series examining major wildfire events, this analysis focuses on the August 2025 Red Canyon wildfire in Wyoming. Leveraging NASA's satellite data, advanced models, visualization capacity and computing power, we examine how weather conditions impacted this fire and how regional air quality affected surrounding communities.",
            "hits": 139
        },
        {
            "id": 5598,
            "url": "https://svs.gsfc.nasa.gov/5598/",
            "result_type": "Visualization",
            "release_date": "2025-12-31T11:26:00-05:00",
            "title": "Grand Canyon Dragon Bravo Megafire: 2025 Year in Review",
            "description": "Part of our 2025 Year in Review series examining major wildfire events, this analysis focuses on the July 2025 Dragon Bravo megafire at the North Rim of Grand Canyon National Park in Arizona. The analysis leverages NASA's satellite data, models, and computing power to reveal fire behavior and impacts. Five visualization assets show fire information, black carbon dispersal, air quality effects, weather conditions, and progression, demonstrating how technology helps understand wildfire dynamics.",
            "hits": 169
        },
        {
            "id": 5597,
            "url": "https://svs.gsfc.nasa.gov/5597/",
            "result_type": "Visualization",
            "release_date": "2025-12-30T17:18:00-05:00",
            "title": "Los Angeles Palisades and Eaton Wildfires: 2025 Year in Review",
            "description": "Part of our 2025 Year in Review series examining major wildfire events, this analysis of the January 2025 Los Angeles Palisades and Eaton wildfires leverages NASA's satellite data, models, and computing power to reveal fire behavior and impacts. Five visualization assets show fire information, black carbon dispersal, air quality effects, weather conditions, and progression, demonstrating how technology helps understand wildfire dynamics.",
            "hits": 469
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        {
            "id": 5557,
            "url": "https://svs.gsfc.nasa.gov/5557/",
            "result_type": "Visualization",
            "release_date": "2025-09-08T16:30:00-04:00",
            "title": "Daily Visualizations of the Largest Wildfires in the United States: 2025",
            "description": "Wildland fires pose significant threats to ecosystems, property, and human lives. Leveraging NASA’s satellite data, advanced models, visualization capacity and computing power, we analyze fire events, monitor how weather conditions impact fires and how regional air quality affects communities. Through this webpage we offer daily updated visualizations of the two largest active wildfires events in the continental United States throughout fire season.",
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        },
        {
            "id": 5572,
            "url": "https://svs.gsfc.nasa.gov/5572/",
            "result_type": "Visualization",
            "release_date": "2025-08-08T14:00:02-04:00",
            "title": "GEOS Aerosols",
            "description": "Aerosols are tiny solid or liquid particles that float in the atmosphere and can travel long distances, affecting air quality and visibility far from their sources. This visualization covers the period from August 1 to September 14, 2024, and is based on NASA's Goddard Earth Observing System (GEOS) model, which delivers realistic, high-resolution weather and aerosol data that enable customized environmental prediction and advances in AI research.",
            "hits": 532
        },
        {
            "id": 5552,
            "url": "https://svs.gsfc.nasa.gov/5552/",
            "result_type": "Visualization",
            "release_date": "2025-06-23T09:00:00-04:00",
            "title": "Science On A Sphere: Aerosols in the Air",
            "description": "NASA merges observations, advanced models and computing power to monitor aerosols in the atmosphere. Aerosols are tiny invisible solid or liquid particles that float in the atmosphere and can travel long distances affecting air quality and visibility far from their source. These particles come from natural and human sources and include black carbon (orange/red), sea salt (cyan), dust (magenta) and sulfates (green).",
            "hits": 950
        },
        {
            "id": 5423,
            "url": "https://svs.gsfc.nasa.gov/5423/",
            "result_type": "Visualization",
            "release_date": "2024-11-27T11:00:00-05:00",
            "title": "Gravity waves disturbing the stratospheric polar vortex",
            "description": "Animation 1: Changes in temperature and height on the surface of 850 Kelvin potential temperature. The mountain generated gravity waves create strong cooling  as the gravity waves propagate through the stratosphere, while the polar vortex (the cold blue ring) evolves to become colder. || stratospher850_039_T.02498_print.jpg (1024x576) [108.0 KB] || stratospher850_039_T.02498_searchweb.png (320x180) [50.4 KB] || stratospher850_039_T.02498_thm.png (80x40) [4.2 KB] || stratospher850_039_T_1080p30.mp4 (1920x1080) [52.0 MB] || stratospher850_039_T [0 Item(s)] || stratospher850_039_T.mp4 (3840x2160) [148.7 MB] || stratospher850_039_T.mp4.hwshow || ",
            "hits": 116
        },
        {
            "id": 5147,
            "url": "https://svs.gsfc.nasa.gov/5147/",
            "result_type": "Visualization",
            "release_date": "2023-09-26T17:00:00-04:00",
            "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.",
            "hits": 139
        },
        {
            "id": 5148,
            "url": "https://svs.gsfc.nasa.gov/5148/",
            "result_type": "Visualization",
            "release_date": "2023-09-26T17:00:00-04:00",
            "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.",
            "hits": 140
        },
        {
            "id": 5149,
            "url": "https://svs.gsfc.nasa.gov/5149/",
            "result_type": "Visualization",
            "release_date": "2023-09-26T17:00:00-04:00",
            "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.",
            "hits": 118
        },
        {
            "id": 5150,
            "url": "https://svs.gsfc.nasa.gov/5150/",
            "result_type": "Visualization",
            "release_date": "2023-09-26T17:00:00-04:00",
            "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.",
            "hits": 153
        }
    ]
}