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    "description": "The SeaWiFS instrument aboard the Seastar satellite has been collecting ocean data since 1997. By monitoring the color of reflected light via satellite, scientists can determine how successfully plant life is photosynthesizing. A measurement of photosynthesis is essentially a measurement of successful growth, and growth means successful use of ambient carbon. This animation represents nearly a decade's worth of data taken by the SeaWiFS instrument, showing the abundance of life in the sea. Dark blue represents warmer areas where there is little life due to lack of nutrients, and greens and reds represent cooler nutrient-rich areas. The nutrient-rich areas include coastal regions where cold water rises from the sea floor bringing nutrients along and areas at the mouths of rivers where the rivers have brought nutrients into the ocean from the land. || ",
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    "studio": "svs",
    "funding_sources": [
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    ],
    "credits": [
        {
            "role": "Animator",
            "people": [
                {
                    "name": "Alex Kekesi",
                    "employer": "Global Science and Technology, Inc."
                }
            ]
        },
        {
            "role": "Scientist",
            "people": [
                {
                    "name": "Gene Feldman",
                    "employer": "NASA/GSFC"
                },
                {
                    "name": "Michael Behrenfeld",
                    "employer": "Oregon State University"
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    "missions": [],
    "series": [
        "Ocean Productivity"
    ],
    "tapes": [],
    "papers": [],
    "datasets": [
        {
            "name": "Global Biosphere",
            "common_name": "",
            "platform": "SeaStar",
            "sensor": "SeaWiFS",
            "type": "Other",
            "organizations": [],
            "description": "SeaWiFS Global Biosphere is a combination of the Land NDVI and Chlorophyll Concentration data sets. All SeaWiFS images and data presented on this web site are for research and educational use only.  All commercial use of SeaWiFS data must be coordinated with <a href=\"http://www.geoeye.com\">GeoEye</a>.",
            "credit": "NASA/Goddard Space Flight Center, The SeaWiFS Project and GeoEye, Scientific Visualization Studio.  NOTE: All SeaWiFS images and data presented on this web site are for research and educational use only.  All commercial use of SeaWiFS data must be coordinated with GeoEye (NOTE: In January 2013, DigitalGlobe and GeoEye combined to become one <a href=\"https://www.digitalglobe.com/\">DigitalGlobe.</a>).",
            "url": "http://oceancolor.gsfc.nasa.gov/PRODUCTS/",
            "date_range": "08/29/1997 - 10/23/2006"
        }
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        "Biosphere",
        "Chemical oceanography",
        "Chlorophyll",
        "Climate Indicators",
        "Earth Science",
        "Ecological Dynamics",
        "Ecology",
        "Environmental science",
        "Food-web Dynamics",
        "HDTV",
        "Hydrology",
        "Hydrosphere",
        "Hyperwall",
        "Microbiota",
        "Ocean Chemistry",
        "Oceans",
        "Physical oceanography",
        "Vegetation",
        "Vegetation Index",
        "Water Quality/Water Chemistry"
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    "related": [
        {
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            "page_type": "Produced Video",
            "title": "Super Blooms",
            "description": "Turbulent storms churn the ocean in winter, adding nutrients to sunlit waters near the surface. This sparks a feeding frenzy each spring that gives rise to massive blooms of phytoplankton. Tiny molecules found inside these microscopic plants harvest vital energy from sunlight through photosynthesis. The natural pigments, called chlorophyll, allow phytoplankton to thrive in Earth's oceans and enable scientists to monitor blooms from space. Satellites reveal the location and abundance of phytoplankton by detecting the amount of chlorophyll present in coastal and open waters—the higher the concentration, the larger the bloom. Observations show blooms typically last until late spring or early summer, when nutrient stocks are in decline and predatory zooplankton start to graze. The visualization below uses NASA SeaWiFS data to map bloom populations in the North Atlantic and North Pacific oceans from March 2003 to October 2006. || ",
            "release_date": "2012-05-08T00:00:00-04:00",
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                "alt_text": "Marine plants multiply and take over the seas.",
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