{
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    "page_type": "Visualization",
    "title": "Instantaneous Incoming Solar Flux (WMS)",
    "description": "The Earth's climate is determined by energy transfer from the sun to the Earth's land, oceans, and atmosphere. As the Earth rotates, the sun lights up only part of the Earth at a time, and some of that incoming solar energy is reflected and some is absorbed, depending on type of area it lights. The amount of reflection and absorption is critical to the climate. An instrument named CERES orbits the Earth every 99 minutes and measures the reflected solar energy. This animation shows the incoming solar radiation within view of CERES during 29 orbits on June 20 and 21 of 2003. Because this is incoming solar flux, its magnitude only depends on the position of the sun, and, because the orbit is synchronized with the sun, the orbit crosses the equator in the daylight at about 1:30 PM local time on every orbit. This data is not actually measured from CERES, but is calculated to compare with the outgoing radiation that CERES does measure. || ",
    "release_date": "2005-02-01T12:00:00-05:00",
    "update_date": "2023-05-03T13:56:20.546493-04:00",
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        "alt_text": "This animation shows incoming solar flux corresponding\nto 29 orbits (2 days) of CERES measurements, from June 20-21, 2003.  This data\nis calculated using data from SORCE for the flux magnitude at the Earths orbit,\ncoupled with solar incidence angles based on CERES measurement locations and\ntimes.This product is available through our Web Map Service.",
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        "alt_text": "This animation shows incoming solar flux corresponding\nto 29 orbits (2 days) of CERES measurements, from June 20-21, 2003.  This data\nis calculated using data from SORCE for the flux magnitude at the Earths orbit,\ncoupled with solar incidence angles based on CERES measurement locations and\ntimes.This product is available through our Web Map Service.",
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    "main_credits": {
        "Visualizations by": [
            {
                "name": "Horace Mitchell",
                "employer": "NASA/GSFC"
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    "progress": "Complete",
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            "description": "The Earth's climate is determined by energy transfer from the sun to the Earth's land, oceans, and atmosphere. As the Earth rotates, the sun lights up only part of the Earth at a time, and some of that incoming solar energy is reflected and some is absorbed, depending on type of area it lights. The amount of reflection and absorption is critical to the climate. An instrument named CERES orbits the Earth every 99 minutes and measures the reflected solar energy. This animation shows the incoming solar radiation within view of CERES during 29 orbits on June 20 and 21 of 2003. Because this is incoming solar flux, its magnitude only depends on the position of the sun, and, because the orbit is synchronized with the sun, the orbit crosses the equator in the daylight at about 1:30 PM local time on every orbit. This data is not actually measured from CERES, but is calculated to compare with the outgoing radiation that CERES does measure.",
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            "description": "This animation shows incoming solar flux corresponding\nto 29 orbits (2 days) of CERES measurements, from June 20-21, 2003.  This data\nis calculated using data from SORCE for the flux magnitude at the Earths orbit,\ncoupled with solar incidence angles based on CERES measurement locations and\ntimes.<br><br>This <a href='/vis/a000000/a003100/a003105/wms_product_description_3105_20926.html'>product is available through our Web Map Service</a>.",
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            "description": "This is the legend for the Incoming Solar Flux\nanimation, indicating the magnitudes of incident energy flux.",
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                        "alt_text": "This is the legend for the Incoming Solar Flux\nanimation, indicating the magnitudes of incident energy flux.",
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            "title": "For More Information",
            "caption": "",
            "description": "See [http://asd-www.larc.nasa.gov/ceres/ASDceres.html](http://asd-www.larc.nasa.gov/ceres/ASDceres.html)",
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    "studio": "svs",
    "funding_sources": [
        "Learning Technologies"
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    "credits": [
        {
            "role": "Animator",
            "people": [
                {
                    "name": "Horace Mitchell",
                    "employer": "NASA/GSFC"
                },
                {
                    "name": "Eric Sokolowsky",
                    "employer": "Global Science and Technology, Inc."
                }
            ]
        },
        {
            "role": "Scientist",
            "people": [
                {
                    "name": "Bruce A. Wielicki",
                    "employer": "NASA/LaRC"
                }
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        }
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    "missions": [
        "Solar Radiation and Climate Experiment (SORCE)"
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    "series": [
        "WMS"
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    "papers": [],
    "datasets": [
        {
            "name": "",
            "common_name": "",
            "platform": "SORCE",
            "sensor": "TIM",
            "type": "Other",
            "organizations": [],
            "description": "",
            "credit": "",
            "url": "",
            "date_range": "2003/06/20-2003/06/21"
        },
        {
            "name": "Incoming Solar Radiation",
            "common_name": "",
            "platform": "Aqua",
            "sensor": "CERES",
            "type": "Other",
            "organizations": [],
            "description": "Data from SORCE for the flux magnitude at the Earth's orbit, coupled with solar incidence angles based on CERES measurement locations and times",
            "credit": "",
            "url": "",
            "date_range": "2003/06/20-2003/06/21"
        }
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    "nasa_science_categories": [
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    "keywords": [
        "Atmosphere",
        "Atmospheric Radiation",
        "CERES",
        "Earth Science",
        "Incoming Solar Radiation",
        "Solar Activity",
        "solar irradiance",
        "Sun-earth Interactions"
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    "recommended_pages": [],
    "related": [],
    "sources": [],
    "products": [],
    "newer_versions": [],
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    "alternate_versions": []
}