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    "page_type": "Visualization",
    "title": "2021 Annular Solar Eclipse",
    "description": "A visualization of the Moon's shadow during the June 10, 2021 annular solar eclipse showing the antumbra (black oval), penumbra (concentric shaded ovals), and path of annularity (red). Images of the Sun show its appearance in a number of locations, each oriented to the local horizon.Also available on the NASA SVS YouTube channel.Coming soon to our YouTube channel. || path_suns.1065_print.jpg (1024x576) [138.5 KB] || path_suns.1065_searchweb.png (320x180) [64.1 KB] || path_suns.1065_thm.png (80x40) [5.5 KB] || eclipse_202106_1080p30.mp4 (1920x1080) [20.9 MB] || eclipse_202106_720p30.mp4 (1280x720) [11.3 MB] || tif (1920x1080) [0 Item(s)] || exr (1920x1080) [0 Item(s)] || eclipse_202106_720p30.webm (1280x720) [7.1 MB] || eclipse_202106_360p30.mp4 (640x360) [4.3 MB] || captions_silent.31263.en_US.srt [43 bytes] || eclipse_202106_1080p30.mp4.hwshow [188 bytes] || ",
    "release_date": "2021-06-01T16:00:00-04:00",
    "update_date": "2025-01-06T00:18:54.016612-05:00",
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                "employer": "USRA"
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            "description": "A visualization of the Moon's shadow during the June 10, 2021 annular solar eclipse showing the antumbra (black oval), penumbra (concentric shaded ovals), and path of annularity (red). Images of the Sun show its appearance in a number of locations, each oriented to the local horizon.<p><b>Also available on the <a href=\"https://www.youtube.com/watch?v=IaBt5Zau3ng\">NASA SVS YouTube channel</a>.</b><br><br>Coming soon to our YouTube channel.<br>",
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                        "alt_text": "A visualization of the Moon's shadow during the June 10, 2021 annular solar eclipse showing the antumbra (black oval), penumbra (concentric shaded ovals), and path of annularity (red). Images of the Sun show its appearance in a number of locations, each oriented to the local horizon.Also available on the NASA SVS YouTube channel.Coming soon to our YouTube channel.",
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            "description": "On Thursday, June 10, 2021, the Moon passes in front of the Sun, casting its shadow across Canada and the Arctic.<br><br>This is an annular (<q>ring</q>) eclipse — not to be confused with <q>annual.</q> At the time of the eclipse, the Moon is too far away from the Earth, and therefore too small in the sky, to completely cover the Sun. The central part of the shadow, where the silhouette of the Moon is completely surrounded by a ring of sunlight, is called the <b>antumbra</b>. The part of the shadow outside the antumbra, where observers see a partial eclipse, is the <b>penumbra</b>.<br><br>In the animation, the antumbra is the small black oval. The streak it leaves in its wake is the <b>path of annularity</b>. Anyone within this path will see the annular ring effect when the antumbra passes over them. Steps in the shading denote different percentages of Sun coverage (obscuration), at levels of 80%, 60%, 40% and 20%. The images of the Sun show its appearance at a number of locations during the eclipse, each oriented to the local horizon.<br><br>The numbers in the lower left corner give the latitude and longitude of the center of the antumbra as it moves, along with the altitude of the Sun above the horizon at that point. Also shown is the duration of annularity: for anyone standing at the center point, this is how long the ring effect will last. When these numbers are missing, the center of the shadow cone isn't touching the Earth.<br><br>",
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            "description": "A global map of the shadow path for the June 10, 2021 annular solar eclipse. Times are in Coordinated Universal Time (UTC).",
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                        "alt_text": "A global map of the shadow path for the June 10, 2021 annular solar eclipse. Times are in Coordinated Universal Time (UTC).",
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                        "alt_text": "A global map of the shadow path for the June 10, 2021 annular solar eclipse. Times are in Coordinated Universal Time (UTC).",
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                        "alt_text": "A global map of the shadow path for the June 10, 2021 annular solar eclipse. Times are in Coordinated Universal Time (UTC).",
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        {
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            "widget": "Basic text with HTML",
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            "description": "The map shows the global extent of the shadow during the eclipse. The antumbra is drawn at 10-minute intervals. The elongated shape is caused by the glancing angle of the Moon's shadow during this eclipse. The green lines (<b>isochrons</b>) are an indication of where the shadow is at different times. Everyone on those lines is experiencing their local maximum eclipse at the indicated times.<br><br>The following table lists some of the constants and data used to create these media items.<br><br><table><tbody><tr><th style=\"text-align:right;padding-right:1em;\">Earth radius</th><td>6378.137 km</td></tr><tr><th style=\"text-align:right;padding-right:1em;\">Earth flattening</th><td>1 / 298.257 (the WGS 84 ellipsoid)</td></tr><tr><th style=\"text-align:right;padding-right:1em;\">Moon radius</th><td>1737.4 km (k = 0.2723993)</td></tr><tr><th style=\"text-align:right;padding-right:1em;\">Sun radius</th><td>696,000 km (959.634 arcsec at 1 AU)</td></tr><tr><th style=\"text-align:right;padding-right:1em;\">Ephemeris</th><td><a href=\"http://ipnpr.jpl.nasa.gov/progress_report/42-178/178C.pdf\">DE 421</a></td></tr><tr><th style=\"text-align:right;padding-right:1em;\">Earth orientation</th><td><a href=\"http://www.iausofa.org/\">SOFA library</a> <code>iauC2t06a()</code></td></tr><tr><th style=\"text-align:right;padding-right:1em;\">Delta UTC</th><td>69.184 seconds  (TT – TAI + 37 leap seconds)</td></tr><tr><th style=\"text-align:right;padding-right:1em;\">ΔT</th><td>69.363 seconds</td></tr></tbody></table><br>A number of sources explain <a href=\"https://en.wikipedia.org/wiki/Besselian_elements\">Bessel’s method</a> of solar eclipse calculation, including chapter 9 of <a href=\"http://www.springer.com/us/book/9783540672210\"><em>Astronomy on the Personal Computer</em></a> by Oliver Montenbruck and Thomas Pflager and the eclipses chapter of <a href=\"http://aa.usno.navy.mil/publications/docs/exp_supp.php\"><em>The Explanatory Supplement to the Astronomical Almanac</em></a>. The method was adapted to the routines available in NAIF's <a href=\"http://naif.jpl.nasa.gov/naif/toolkit.html\">SPICE</a> software library.",
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        {
            "id": 317237,
            "url": "https://svs.gsfc.nasa.gov/4910/#media_group_317237",
            "widget": "Basic text",
            "title": "For More Information",
            "caption": "",
            "description": "See [https://www.nasa.gov/content/june-10-2021-eclipse](https://www.nasa.gov/content/june-10-2021-eclipse)",
            "items": [],
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        {
            "role": "Visualizer",
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                {
                    "name": "Ernie Wright",
                    "employer": "USRA"
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        {
            "role": "Producer",
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                {
                    "name": "Sarah Frazier",
                    "employer": "SGT"
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            ]
        },
        {
            "role": "Technical support",
            "people": [
                {
                    "name": "Laurence Schuler",
                    "employer": "ADNET Systems, Inc."
                },
                {
                    "name": "Ian Jones",
                    "employer": "ADNET Systems, Inc."
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    "datasets": [
        {
            "name": "Blue Marble: Next Generation",
            "common_name": "BMNG",
            "platform": "Terra and Aqua",
            "sensor": "MODIS",
            "type": "Other",
            "organizations": [],
            "description": "",
            "credit": "The Blue Marble data is courtesy of Reto Stockli (NASA/GSFC).",
            "url": "http://earthobservatory.nasa.gov/Newsroom/BlueMarble/",
            "date_range": null
        },
        {
            "name": "JPL DE421",
            "common_name": "DE421",
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            "type": "Ephemeris",
            "organizations": [
                "NASA/JPL"
            ],
            "description": "Planetary ephemerides",
            "credit": "",
            "url": "http://ssd.jpl.nasa.gov/?ephemerides#planets",
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    "related": [
        {
            "id": 4711,
            "url": "https://svs.gsfc.nasa.gov/4711/",
            "page_type": "Visualization",
            "title": "2019 Total Solar Eclipse",
            "description": "(Ver esto en español.) || ",
            "release_date": "2019-04-30T12:00:00-04:00",
            "update_date": "2025-01-06T00:14:02.702805-05:00",
            "main_image": {
                "id": 396483,
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                "filename": "path_suns.1300_print.jpg",
                "media_type": "Image",
                "alt_text": "A view of the Moon's shadow during the July 2, 2019 total solar eclipse showing the umbra (black oval), penumbra (concentric shaded ovals), and path of totality (red). Images of the Sun show its appearance in a number of locations, each oriented to the local horizon.",
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    "products": [
        {
            "id": 13891,
            "url": "https://svs.gsfc.nasa.gov/13891/",
            "page_type": "Produced Video",
            "title": "An EPIC View of the Moon’s Shadow During the June 10 Solar Eclipse",
            "description": "NASA’s EPIC, Earth Polychromatic Imaging Camera (EPIC), sits aboard NOAA’s Deep Space Climate Observatory Satellite (DSCOVR). EPIC provides high quality, color images of Earth, which are useful for monitoring factors like the planet’s vegetation, cloud height, and ozone. And every once in a while –– most recently, June 10, 2021 –– it has the opportunity to capture a solar eclipse.A solar eclipse occurs when the Moon is positioned between the Sun and Earth, leading the Moon’s shadow to be projected onto Earth. During a total solar eclipse, the Moon completely blocks the Sun. During an annular solar eclipse, like the one on June 10, the Moon is near its farthest point from Earth and appears smaller than the Sun in the sky. As the two align, the Sun appears as a ring of fire surrounding the dark disk of the Moon. On June 10, viewers in parts of Canada, Greenland, and Russia were treated to a full annular eclipse. People in a handful of other locations, including parts of the Caribbean, Asia, Europe, eastern United States, Alaska, and northern Africa, were able to catch a partial solar eclipse, where only part of the Sun is blocked by the Moon, leaving behind a crescent-shaped piece of Sun. EPIC didn’t have too bad a view, either.You can find more photos and videos from EPIC, including a few lunar photobombs, here. || ",
            "release_date": "2021-07-21T11:00:00-04:00",
            "update_date": "2023-05-03T13:44:04.206651-04:00",
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                "media_type": "Image",
                "alt_text": "Music: “Cherry on Top” by Ben Beiny [PRS] from Universal Production MusicComplete transcript available.",
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                "height": 576,
                "pixels": 589824
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