{
    "id": 10504,
    "url": "https://svs.gsfc.nasa.gov/10504/",
    "page_type": "Produced Video",
    "title": "Salt of the Earth",
    "description": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here. || Salt_of_the_Earth_640x480.00519_print.jpg (1024x576) [66.1 KB] || Salt_of_the_Earth_640x480_web.png (320x180) [106.1 KB] || Salt_of_the_Earth_640x480_thm.png (80x40) [12.6 KB] || Salt_of_the_Earth_appletv_1280x720.webmhd.webm (960x540) [65.9 MB] || Salt_of_the_Earth_H264_1280x720_30fps.mov (1280x720) [150.0 MB] || Salt_of_the_Earth_appletv_1280x720.m4v (960x540) [166.5 MB] || Salt_of_the_Earth_1280x720.mp4 (1280x720) [99.9 MB] || Salt_of_the_Earth_broll_prores.mov (1280x720) [4.7 GB] || Salt_of_the_Earth_Youtube_1280x720.mov (1280x720) [72.2 MB] || Salt_of_the_Earth_640x480.m4v (640x360) [55.1 MB] || GSFC_20091012_Aquarius_m10504_Salt.en_US.srt [6.0 KB] || GSFC_20091012_Aquarius_m10504_Salt.en_US.vtt [6.1 KB] || Salt_of_the_Earth_ipod_320x240.m4v (320x180) [23.1 MB] || Salt_of_the_Earth.wmv (346x260) [35.0 MB] || ",
    "release_date": "2009-10-12T00:00:00-04:00",
    "update_date": "2023-05-03T13:54:32.728732-04:00",
    "main_image": {
        "id": 495647,
        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_640x480.00519_print.jpg",
        "filename": "Salt_of_the_Earth_640x480.00519_print.jpg",
        "media_type": "Image",
        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
        "width": 1024,
        "height": 576,
        "pixels": 589824
    },
    "main_video": {
        "id": 495636,
        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_appletv_1280x720.webmhd.webm",
        "filename": "Salt_of_the_Earth_appletv_1280x720.webmhd.webm",
        "media_type": "Movie",
        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
        "width": 960,
        "height": 540,
        "pixels": 518400
    },
    "main_credits": {
        "Visualizations by": [
            {
                "name": "Helen-Nicole Kostis",
                "employer": "UMBC"
            }
        ]
    },
    "progress": "Complete",
    "media_groups": [
        {
            "id": 354099,
            "url": "https://svs.gsfc.nasa.gov/10504/#media_group_354099",
            "widget": "Video player",
            "title": "",
            "caption": "",
            "description": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.<p><p><p>For complete transcript, click <a href=\"/vis/a010000/a010500/a010504/Salt_of_the_Earth.htm\">here</a>.",
            "items": [
                {
                    "id": 340465,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495647,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_640x480.00519_print.jpg",
                        "filename": "Salt_of_the_Earth_640x480.00519_print.jpg",
                        "media_type": "Image",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 1024,
                        "height": 576,
                        "pixels": 589824
                    }
                },
                {
                    "id": 340463,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495645,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_640x480_web.png",
                        "filename": "Salt_of_the_Earth_640x480_web.png",
                        "media_type": "Image",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 320,
                        "height": 180,
                        "pixels": 57600
                    }
                },
                {
                    "id": 340464,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495646,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_640x480_thm.png",
                        "filename": "Salt_of_the_Earth_640x480_thm.png",
                        "media_type": "Image",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 80,
                        "height": 40,
                        "pixels": 3200
                    }
                },
                {
                    "id": 340454,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495636,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_appletv_1280x720.webmhd.webm",
                        "filename": "Salt_of_the_Earth_appletv_1280x720.webmhd.webm",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 960,
                        "height": 540,
                        "pixels": 518400
                    }
                },
                {
                    "id": 340456,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495638,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_H264_1280x720_30fps.mov",
                        "filename": "Salt_of_the_Earth_H264_1280x720_30fps.mov",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 1280,
                        "height": 720,
                        "pixels": 921600
                    }
                },
                {
                    "id": 340457,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495639,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_appletv_1280x720.m4v",
                        "filename": "Salt_of_the_Earth_appletv_1280x720.m4v",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 960,
                        "height": 540,
                        "pixels": 518400
                    }
                },
                {
                    "id": 340459,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495641,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_1280x720.mp4",
                        "filename": "Salt_of_the_Earth_1280x720.mp4",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 1280,
                        "height": 720,
                        "pixels": 921600
                    }
                },
                {
                    "id": 340460,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495642,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_broll_prores.mov",
                        "filename": "Salt_of_the_Earth_broll_prores.mov",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 1280,
                        "height": 720,
                        "pixels": 921600
                    }
                },
                {
                    "id": 340462,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495644,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_Youtube_1280x720.mov",
                        "filename": "Salt_of_the_Earth_Youtube_1280x720.mov",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 1280,
                        "height": 720,
                        "pixels": 921600
                    }
                },
                {
                    "id": 340455,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495637,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_640x480.m4v",
                        "filename": "Salt_of_the_Earth_640x480.m4v",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 640,
                        "height": 360,
                        "pixels": 230400
                    }
                },
                {
                    "id": 340466,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 854345,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/GSFC_20091012_Aquarius_m10504_Salt.en_US.srt",
                        "filename": "GSFC_20091012_Aquarius_m10504_Salt.en_US.srt",
                        "media_type": "Captions",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "label": "English",
                        "language_code": ""
                    }
                },
                {
                    "id": 340467,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 854346,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/GSFC_20091012_Aquarius_m10504_Salt.en_US.vtt",
                        "filename": "GSFC_20091012_Aquarius_m10504_Salt.en_US.vtt",
                        "media_type": "Captions",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "label": "English",
                        "language_code": ""
                    }
                },
                {
                    "id": 340458,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495640,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth_ipod_320x240.m4v",
                        "filename": "Salt_of_the_Earth_ipod_320x240.m4v",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 320,
                        "height": 180,
                        "pixels": 57600
                    }
                },
                {
                    "id": 340461,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 495643,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a010500/a010504/Salt_of_the_Earth.wmv",
                        "filename": "Salt_of_the_Earth.wmv",
                        "media_type": "Movie",
                        "alt_text": "Salinity plays a major role in how ocean waters circulate around the globe. Salinity changes can create ocean circulation changes that, in turn, may impact regional and global climates. The extent to which salinity impacts our global ocean circulation is still relatively unknown, but NASA's new Aquarius mission will help advance that understanding by painting a global picture of our planet's salty waters.For complete transcript, click here.",
                        "width": 346,
                        "height": 260,
                        "pixels": 89960
                    }
                }
            ],
            "extra_data": {}
        }
    ],
    "studio": "gms",
    "funding_sources": [
        "PAO"
    ],
    "credits": [
        {
            "role": "Animator",
            "people": [
                {
                    "name": "Helen-Nicole Kostis",
                    "employer": "UMBC"
                },
                {
                    "name": "Greg Shirah",
                    "employer": "NASA/GSFC"
                },
                {
                    "name": "Horace Mitchell",
                    "employer": "NASA/GSFC"
                },
                {
                    "name": "Cindy Starr",
                    "employer": "Global Science and Technology, Inc."
                },
                {
                    "name": "Susan Twardy",
                    "employer": "HTSI"
                },
                {
                    "name": "Chris Smith",
                    "employer": "HTSI"
                },
                {
                    "name": "Chris Meaney",
                    "employer": "HTSI"
                },
                {
                    "name": "Megan Willy",
                    "employer": "IRC/UMBC"
                }
            ]
        },
        {
            "role": "Video editor",
            "people": [
                {
                    "name": "Ryan Fitzgibbons",
                    "employer": "UMBC"
                }
            ]
        },
        {
            "role": "Interviewee",
            "people": [
                {
                    "name": "Jeff Halverson",
                    "employer": "JCET UMBC"
                },
                {
                    "name": "Susan Lozier",
                    "employer": "Duke University"
                }
            ]
        },
        {
            "role": "Narrator",
            "people": [
                {
                    "name": "Troy Cline",
                    "employer": "Raytheon/GSFC"
                }
            ]
        },
        {
            "role": "Producer",
            "people": [
                {
                    "name": "Ryan Fitzgibbons",
                    "employer": "UMBC"
                }
            ]
        },
        {
            "role": "Scientist",
            "people": [
                {
                    "name": "Jeff Halverson",
                    "employer": "JCET UMBC"
                },
                {
                    "name": "Susan Lozier",
                    "employer": "Duke University"
                }
            ]
        },
        {
            "role": "Videographer",
            "people": [
                {
                    "name": "Ryan Fitzgibbons",
                    "employer": "UMBC"
                }
            ]
        },
        {
            "role": "Writer",
            "people": [
                {
                    "name": "Ryan Fitzgibbons",
                    "employer": "UMBC"
                }
            ]
        }
    ],
    "missions": [
        "Aquarius"
    ],
    "series": [
        "Aquarius Pre-Launch",
        "Earth Science Week",
        "Goddard Shorts",
        "Narrated Movies"
    ],
    "tapes": [],
    "papers": [],
    "datasets": [],
    "nasa_science_categories": [
        "Earth"
    ],
    "keywords": [
        "Aquarius",
        "Climate Change",
        "Earth Science",
        "Earth Science Week",
        "Edited Feature",
        "HDTV",
        "Narrated",
        "ocean circulation",
        "Oceans",
        "Physical oceanography",
        "Salinity",
        "Salinity/Density",
        "Thermohaline Circulation",
        "Voice Over Talent"
    ],
    "recommended_pages": [],
    "related": [],
    "sources": [],
    "products": [],
    "newer_versions": [],
    "older_versions": [],
    "alternate_versions": []
}