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    "related": [
        {
            "id": 14542,
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            "page_type": "Produced Video",
            "title": "EZIE – Electrojet Zeeman Imaging Explorer",
            "description": "Slated to launch in 2025, NASA’s Electrojet Zeeman Imaging Explorer (EZIE) will be the first mission to image the magnetic fingerprint of the auroral electrojets — intense electric currents flowing high above Earth’s poles that are central to the electrical circuit coupling the planet’s magnetosphere to its atmosphere.Led by the Johns Hopkins Applied Physics Laboratory (APL), EZIE will use a trio of small satellites to characterize and record the electrojets’ structure over space and time. It will fill gaps in our understanding of this space weather phenomenon and provide findings that scientists can apply to other magnetized planets, both within and outside our solar system.Learn more:https://science.nasa.gov/mission/ezie/ || ",
            "release_date": "2024-03-05T10:00:00-05:00",
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                "alt_text": "EZIE: The Mission to Explore Earth's Link to Space (OFFICIAL TRAILER)Developed and led for NASA by the Johns Hopkins Applied Physics Laboratory (APL) in Laurel, Maryland, EZIE is a mission to explore Earth’s electrojets — intense electric currents flowing high above Earth’s polar regions and the dayside equatorial region. EZIE will provide unprecedented measurements of these electrical currents to answer decades-old — and much debated — mysteries. Understanding these currents is key to scientists’ ability to develop capabilities for predicting hazardous space weather.Credit: NASA/Johns Hopkins APL",
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        },
        {
            "id": 13506,
            "url": "https://svs.gsfc.nasa.gov/13506/",
            "page_type": "Produced Video",
            "title": "Solar Wind Interacting with Earth's Magnetic Field",
            "description": "A conceptual animation showing solar wind interacting with Earth's magnetic field and causing atmospheric loss at the polar cusps. || YOUTUBE_1080_13506_Atmospheric_Escape_youtube_1080.00001_print.jpg (1024x576) [77.5 KB] || YOUTUBE_1080_13506_Atmospheric_Escape_youtube_1080.00001_searchweb.png (320x180) [74.4 KB] || YOUTUBE_1080_13506_Atmospheric_Escape_youtube_1080.00001_web.png (320x180) [74.4 KB] || YOUTUBE_1080_13506_Atmospheric_Escape_youtube_1080.00001_thm.png (80x40) [6.3 KB] || YOUTUBE_1080_13506_Atmospheric_Escape_youtube_1080.mp4 (1920x1080) [43.1 MB] || FACEBOOK_720_13506_Atmospheric_Escape_facebook_720.mp4 (1280x720) [32.8 MB] || TWITTER_720_13506_Atmospheric_Escape_twitter_720.mp4 (1280x720) [5.7 MB] || FACEBOOK_720_13506_Atmospheric_Escape_facebook_720.webm (1280x720) [3.0 MB] || PRORES_B-ROLL_13506_Atmospheric_Escape_prores_b-roll.mov (1280x720) [227.8 MB] || YOUTUBE_4K_13506_Atmospheric_Escape_youtube_4k.mp4 (3840x2160) [187.6 MB] || 13506_Atmospheric_Escape_Prores.mov (3840x2160) [2.4 GB] || ",
            "release_date": "2019-12-20T17:00:00-05:00",
            "update_date": "2023-05-03T13:45:18.835555-04:00",
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                "filename": "YOUTUBE_4K_13506_Cusp+Aurora_youtube_4k.00001_print.jpg",
                "media_type": "Image",
                "alt_text": "A conceptual animation showing Earth's polar cusps and the cusp aurora. ",
                "width": 1024,
                "height": 576,
                "pixels": 589824
            }
        },
        {
            "id": 13181,
            "url": "https://svs.gsfc.nasa.gov/13181/",
            "page_type": "Animation",
            "title": "Sounding Rocket Animations",
            "description": "A sounding rocket is able to carry science instruments between 30 - 300 miles above Earth's surface. These altitudes are typically too high for science balloons and too low for satellites to access safely making sounding rockets the only platforms that can carry out direct in situ measurements in these regions.This animation is annoted with the altitudes. || 13181_SoundingRocket_TEXT_Prores.00001_print.jpg (1024x576) [34.4 KB] || 13181_SoundingRocket_TEXT_Prores.00001_searchweb.png (320x180) [42.6 KB] || 13181_SoundingRocket_TEXT_Prores.00001_web.png (320x180) [42.6 KB] || 13181_SoundingRocket_TEXT_Prores.00001_thm.png (80x40) [3.8 KB] || 13181_SoundingRocket_TEXT_Prores.webm (3840x2160) [11.0 MB] || 13181_SoundingRocket_TEXT_Prores.mov (3840x2160) [3.9 GB] || ",
            "release_date": "2019-05-09T17:00:00-04:00",
            "update_date": "2023-05-03T13:45:58.010812-04:00",
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                "filename": "13181_SoundingRocket_TEXT_Prores.00001_print.jpg",
                "media_type": "Image",
                "alt_text": "A sounding rocket is able to carry science instruments between 30 - 300 miles above Earth's surface. These altitudes are typically too high for science balloons and too low for satellites to access safely making sounding rockets the only platforms that can carry out direct in situ measurements in these regions.This animation is annoted with the altitudes. ",
                "width": 1024,
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                "pixels": 589824
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        },
        {
            "id": 13167,
            "url": "https://svs.gsfc.nasa.gov/13167/",
            "page_type": "Produced Video",
            "title": "VISIONS-2 Aurora Imagery",
            "description": "Aurora in Ny-Ålesund, Svalbard on December 6, 2018. A GIF optimized for Twitter. || Aurora.gif (1920x1080) [13.3 MB] || Aurora in Ny-Ålesund, Svalbard on December 6, 2018.Credit: NASA/Joy Ng || Dec6_Aurora_JoyNg_print.jpg (1024x682) [455.2 KB] || Dec6_Aurora_JoyNg.jpg (4104x2736) [4.6 MB] || Dec6_Aurora_JoyNg_searchweb.png (320x180) [67.8 KB] || Dec6_Aurora_JoyNg_web.png (320x213) [82.2 KB] || Dec6_Aurora_JoyNg_thm.png (80x40) [4.6 KB] || ",
            "release_date": "2019-05-07T15:00:00-04:00",
            "update_date": "2019-05-10T09:47:04-04:00",
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                "id": 396547,
                "url": "https://svs.gsfc.nasa.gov/vis/a010000/a013100/a013167/Dec6_Aurora_JoyNg_print.jpg",
                "filename": "Dec6_Aurora_JoyNg_print.jpg",
                "media_type": "Image",
                "alt_text": "Aurora in Ny-Ålesund, Svalbard on December 6, 2018.Credit: NASA/Joy Ng",
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                "height": 682,
                "pixels": 698368
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        }
    ],
    "sources": [],
    "products": [
        {
            "id": 13430,
            "url": "https://svs.gsfc.nasa.gov/13430/",
            "page_type": "Produced Video",
            "title": "Why NASA is sending rockets into Earth’s leaky atmosphere",
            "description": "In the tiny Arctic town of Ny-Ålesund, where polar bears outnumber people, winter means three months without sunlight. The unending darkness is ideal for those who seek a strange breed of northern lights, normally obscured by daylight. When these unusual auroras shine, Earth’s atmosphere leaks into space.NASA scientists traveled to Ny-Ålesund to launch rockets through these auroras and witness oxygen particles right in the middle of their escape. Piercing these fleeting auroras, some 300 miles high, would require strategy, patience — and a fair bit of luck. This was NASA’s VISIONS-2 mission, and this is their story.VISIONS-2 was just the first of many. Over the coming months, rocket teams from all over the world will launch rockets into this region as part of the Grand Challenge Initiative—Cusp, an international collaboration to study the mysteries of the polar atmosphere. || ",
            "release_date": "2019-11-14T12:00:00-05:00",
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                "media_type": "Image",
                "alt_text": "Watch this video on the NASA Goddard YouTube channel.Complete transcript available.Music credits: “Journey to the Past”, “New Philosopher”, “Curiosity Cabinet”, “Buzzing Culture”, “Dusk Theories”, “At the Edge of the End” by Laurent Dury [SACEM]; “Strong Voices” by Tom Caffey [ASCAP]; “The Fortune Teller” by Phil Stevens [PRS]; “Shinobi’s Fight” by Benoit Malis [SACEM]; “Spring into Life” by Oliver Worth [PRS]",
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