{
    "count": 59,
    "next": null,
    "previous": null,
    "results": [
        {
            "id": 2666,
            "url": "https://svs.gsfc.nasa.gov/2666/",
            "result_type": "Visualization",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom Mosaic - Zoom In",
            "description": "This is a mosaic of zooms into 20 different locations prepared to support a paper given at IEEE Visualization 2002. The locations are: Long Beach, CA; New York City, NY; San Fransisco, CA; NASA-Goddard, Boston, MA; New Orleans, LA, Salt Lake City, UT; Sabie River, Africa; Park City, UT, Chicago, IL; Mongu, Africa; Salt Lake City, UT; Amazon, Brazil; Los Angeles, CA; Baltimore, MD; Snwo Basin, UT; Atlanta, GA; Washington, DC; Orlando, FL; and Seattle, WA. Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 11
        },
        {
            "id": 2667,
            "url": "https://svs.gsfc.nasa.gov/2667/",
            "result_type": "Visualization",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom Mosaic - Zoom Out",
            "description": "This is a mosaic of zooms out of 20 different locations prepared to support a paper given at IEEE Visualization 2002. The locations are: Long Beach, CA; New York City, NY; San Fransisco, CA; NASA-Goddard, Boston, MA; New Orleans, LA, Salt Lake City, UT; Sabie River, Africa; Park City, UT, Chicago, IL; Mongu, Africa; Salt Lake City, UT; Amazon, Brazil; Los Angeles, CA; Baltimore, MD; Snwo Basin, UT; Atlanta, GA; Washington, DC; Orlando, FL; and Seattle, WA.Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique  characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 28
        },
        {
            "id": 2668,
            "url": "https://svs.gsfc.nasa.gov/2668/",
            "result_type": "B-Roll",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom into New Orleans, LA: The Louisiana Superdome (b-roll)",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground.This zoom was created to support a paper given at IEEE Vis 2002. || ",
            "hits": 6
        },
        {
            "id": 2669,
            "url": "https://svs.gsfc.nasa.gov/2669/",
            "result_type": "B-Roll",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom out of New Orleans, LA: The Louisiana Superdome (b-roll)",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground.This zoom was created to support a paper given at IEEE Vis 2002. || ",
            "hits": 8
        },
        {
            "id": 2670,
            "url": "https://svs.gsfc.nasa.gov/2670/",
            "result_type": "Visualization",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom into New Orleans, LA: The Louisiana Superdome (masks visible)",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground.This zoom was created to support a paper given at IEEE Vis 2002. || ",
            "hits": 8
        },
        {
            "id": 2671,
            "url": "https://svs.gsfc.nasa.gov/2671/",
            "result_type": "Visualization",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom out from New Orleans, LA: The Louisiana Superdome (masks visible)",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground.This zoom was created to support a paper given at IEEE Vis 2002. || ",
            "hits": 1
        },
        {
            "id": 2672,
            "url": "https://svs.gsfc.nasa.gov/2672/",
            "result_type": "Visualization",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom into Boston, MA: Park Plaza Hotel",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground.This zoom was created to support a paper given at IEEE Vis 2002. || ",
            "hits": 6
        },
        {
            "id": 2673,
            "url": "https://svs.gsfc.nasa.gov/2673/",
            "result_type": "Visualization",
            "release_date": "2003-01-14T12:00:00-05:00",
            "title": "Great Zoom out from Boston, MA: Park Plaza Hotel",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground.This zoom was created to support a paper given at IEEE Vis 2002. || ",
            "hits": 7
        },
        {
            "id": 2395,
            "url": "https://svs.gsfc.nasa.gov/2395/",
            "result_type": "Visualization",
            "release_date": "2002-03-05T12:00:00-05:00",
            "title": "Pulse of the Planet",
            "description": "Akin to a living creature, Earth's land, air, oceans, ice, and life fit together into a complex, interlocking system.  Space affords a unique vantage point from which to observe the daily, seasonal, and annual changes in Earth's systems. Using data from advanced satellites, NASA visualizations portray a majestic, and sometimes violent, natural world and also capture the influences humans have on the planet.Over 80 NASA-related earth science animations created over the past 8 years implementing realtime and non-realtime techniques have been used on this visual journey.  Tools used included IDL, Lightwave3D, Final Cut Pro, Performer, Vis5D, and custom software. || ",
            "hits": 66
        },
        {
            "id": 2329,
            "url": "https://svs.gsfc.nasa.gov/2329/",
            "result_type": "Visualization",
            "release_date": "2001-12-01T12:00:00-05:00",
            "title": "Great Zoom into Greenbelt, MD: NASA Goddard Space Flight Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection ofAmerican cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 6
        },
        {
            "id": 2330,
            "url": "https://svs.gsfc.nasa.gov/2330/",
            "result_type": "Visualization",
            "release_date": "2001-12-01T12:00:00-05:00",
            "title": "Great Zoom out of Greenbelt, MD: NASA Goddard Space Flight Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 46
        },
        {
            "id": 2331,
            "url": "https://svs.gsfc.nasa.gov/2331/",
            "result_type": "Visualization",
            "release_date": "2001-12-01T12:00:00-05:00",
            "title": "Great Zoom into Beltsville, MD: Beltsville Agricultural Research Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 9
        },
        {
            "id": 2332,
            "url": "https://svs.gsfc.nasa.gov/2332/",
            "result_type": "Visualization",
            "release_date": "2001-12-01T12:00:00-05:00",
            "title": "Great Zoom out of Beltsville, MD: Beltsville Agricultural Research Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 14
        },
        {
            "id": 2261,
            "url": "https://svs.gsfc.nasa.gov/2261/",
            "result_type": "Visualization",
            "release_date": "2001-09-07T12:00:00-04:00",
            "title": "Global Twenty Year Rainmap",
            "description": "This is a monthly global rainmap from January, 1979 to January, 2001. The movie correlates 22 years of data from a combination of remote sensing data and ground based sources. || ",
            "hits": 20
        },
        {
            "id": 2216,
            "url": "https://svs.gsfc.nasa.gov/2216/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Daily Erythemal Index over the United States for July 2001",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 6
        },
        {
            "id": 2217,
            "url": "https://svs.gsfc.nasa.gov/2217/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Daily Erythemal Index over the United States for July 2001 (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 15
        },
        {
            "id": 2218,
            "url": "https://svs.gsfc.nasa.gov/2218/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Zoom to North America (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 2
        },
        {
            "id": 2219,
            "url": "https://svs.gsfc.nasa.gov/2219/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Slow Zoom to North America (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 7
        },
        {
            "id": 2220,
            "url": "https://svs.gsfc.nasa.gov/2220/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Rotating Globe (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 5
        },
        {
            "id": 2221,
            "url": "https://svs.gsfc.nasa.gov/2221/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Slow Rotating Globe (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 4
        },
        {
            "id": 2222,
            "url": "https://svs.gsfc.nasa.gov/2222/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Full Earth",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 9
        },
        {
            "id": 2223,
            "url": "https://svs.gsfc.nasa.gov/2223/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Full Earth (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 12
        },
        {
            "id": 2224,
            "url": "https://svs.gsfc.nasa.gov/2224/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: North and South America",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 9
        },
        {
            "id": 2225,
            "url": "https://svs.gsfc.nasa.gov/2225/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: North and South America (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 15
        },
        {
            "id": 2226,
            "url": "https://svs.gsfc.nasa.gov/2226/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Europe and Africa",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 5
        },
        {
            "id": 2227,
            "url": "https://svs.gsfc.nasa.gov/2227/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Europe and Africa (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 3
        },
        {
            "id": 2228,
            "url": "https://svs.gsfc.nasa.gov/2228/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Australia and Asia",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 5
        },
        {
            "id": 2229,
            "url": "https://svs.gsfc.nasa.gov/2229/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Australia and Asia (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 10
        },
        {
            "id": 2256,
            "url": "https://svs.gsfc.nasa.gov/2256/",
            "result_type": "Visualization",
            "release_date": "2001-08-08T12:00:00-04:00",
            "title": "Erythemal Index for August 2000 through July 2001: Rotating Globe",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 3
        },
        {
            "id": 2196,
            "url": "https://svs.gsfc.nasa.gov/2196/",
            "result_type": "Visualization",
            "release_date": "2001-07-02T12:00:00-04:00",
            "title": "Erythemal Index 2000: Push-in to the United States",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 7
        },
        {
            "id": 2197,
            "url": "https://svs.gsfc.nasa.gov/2197/",
            "result_type": "Visualization",
            "release_date": "2001-07-02T12:00:00-04:00",
            "title": "Erythemal Index 2000: Push-in to the United States (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 9
        },
        {
            "id": 2198,
            "url": "https://svs.gsfc.nasa.gov/2198/",
            "result_type": "Visualization",
            "release_date": "2001-07-02T12:00:00-04:00",
            "title": "Erythemal Index 2000: Full Globe Loop",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 2853
        },
        {
            "id": 2199,
            "url": "https://svs.gsfc.nasa.gov/2199/",
            "result_type": "Visualization",
            "release_date": "2001-07-02T12:00:00-04:00",
            "title": "Erythemal Index 2000: Full Globe Loop (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 5
        },
        {
            "id": 2200,
            "url": "https://svs.gsfc.nasa.gov/2200/",
            "result_type": "Visualization",
            "release_date": "2001-07-02T12:00:00-04:00",
            "title": "Erythemal Index 2000: United States Loop",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 8
        },
        {
            "id": 2201,
            "url": "https://svs.gsfc.nasa.gov/2201/",
            "result_type": "Visualization",
            "release_date": "2001-07-02T12:00:00-04:00",
            "title": "Erythemal Index 2000: United States Loop (With Dates)",
            "description": "The Erythemal Index is a measure of ultraviolet radiation (UV) at ground level on the Earth. UV exists to the left of the visible spectrum and is divided into three components (UV-A, UV-B and UV-C). UV-B (290-320 wavelengths) is the most dangerous form of UV radiation that can reach ground level. Atmospheric ozone shields life at the surface from most of the harmful components of solar radiation. Chemical processes in the atmosphere can effect the level of protection provided by the ozone in the upper atmosphere. This thinning of the atmospheric ozone in the stratosphere leads to elevated levels of UV-B at ground level and increases the risks of DNA damage in living organisms. || ",
            "hits": 12
        },
        {
            "id": 2185,
            "url": "https://svs.gsfc.nasa.gov/2185/",
            "result_type": "Visualization",
            "release_date": "2001-06-15T12:00:00-04:00",
            "title": "Great Zoom into Greenbelt, MD: NASA Goddard Space Flight Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 23
        },
        {
            "id": 2186,
            "url": "https://svs.gsfc.nasa.gov/2186/",
            "result_type": "Visualization",
            "release_date": "2001-06-15T12:00:00-04:00",
            "title": "Great Zoom out of Greenbelt, MD: NASA Goddard Space Flight Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 19
        },
        {
            "id": 2187,
            "url": "https://svs.gsfc.nasa.gov/2187/",
            "result_type": "Visualization",
            "release_date": "2001-06-15T12:00:00-04:00",
            "title": "Great Zoom into Greenbelt, MD: Eleanor Roosevelt High School",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 10
        },
        {
            "id": 2188,
            "url": "https://svs.gsfc.nasa.gov/2188/",
            "result_type": "Visualization",
            "release_date": "2001-06-15T12:00:00-04:00",
            "title": "Great Zoom out of Greenbelt, MD: Eleanor Roosevelt High School",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 17
        },
        {
            "id": 2189,
            "url": "https://svs.gsfc.nasa.gov/2189/",
            "result_type": "Visualization",
            "release_date": "2001-06-15T12:00:00-04:00",
            "title": "Great Zoom into Cambridge, MA: Massachusetts Institute of Technology Kresge Auditorium",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 6
        },
        {
            "id": 2190,
            "url": "https://svs.gsfc.nasa.gov/2190/",
            "result_type": "Visualization",
            "release_date": "2001-06-15T12:00:00-04:00",
            "title": "Great Zoom out of Cambridge, MA: Massachusetts Institute of Technology Kresge Auditorium",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 4
        },
        {
            "id": 2257,
            "url": "https://svs.gsfc.nasa.gov/2257/",
            "result_type": "Visualization",
            "release_date": "2001-06-14T12:00:00-04:00",
            "title": "Aerosols from Nimbus 7 TOMS: Transatlantic Dust Event in 1983",
            "description": "Saharan dust storms raise dust that is carried in the upper atmosphere across the Atlantic Ocean. That dust can land as far west as the Caribbean and the Americas. This dust can carry potentially hazardous bacteria and fungi. || ",
            "hits": 17
        },
        {
            "id": 2258,
            "url": "https://svs.gsfc.nasa.gov/2258/",
            "result_type": "Visualization",
            "release_date": "2001-06-14T12:00:00-04:00",
            "title": "Aerosols from Nimbus 7 TOMS: Transatlantic Dust Event in 1983 (with Dates)",
            "description": "Saharan dust storms raise dust that is carried in the upper atmosphere across the Atlantic Ocean. That dust can land as far west as the Caribbean and the Americas. This dust can carry potentially hazardous bacteria and fungi. || ",
            "hits": 19
        },
        {
            "id": 2259,
            "url": "https://svs.gsfc.nasa.gov/2259/",
            "result_type": "Visualization",
            "release_date": "2001-06-14T12:00:00-04:00",
            "title": "Aerosols from Earth Probe TOMS: Transatlantic Dust Event in July 2000",
            "description": "Saharan dust storms raise dust that is carried in the upper atmosphere across the Atlantic Ocean. That dust can land as far west as the Caribbean and the Americas. This dust can carry potentially hazardous bacteria and fungi. || ",
            "hits": 8
        },
        {
            "id": 2260,
            "url": "https://svs.gsfc.nasa.gov/2260/",
            "result_type": "Visualization",
            "release_date": "2001-06-14T12:00:00-04:00",
            "title": "Aerosols from Earth Probe TOMS: Transatlantic Dust Event in July 2000 (with Dates)",
            "description": "Saharan dust storms raise dust that is carried in the upper atmosphere across the Atlantic Ocean. That dust can land as far west as the Caribbean and the Americas. This dust can carry potentially hazardous bacteria and fungi. || ",
            "hits": 11
        },
        {
            "id": 2193,
            "url": "https://svs.gsfc.nasa.gov/2193/",
            "result_type": "Visualization",
            "release_date": "2001-06-12T12:00:00-04:00",
            "title": "Mt. Pinatubo 10th Anniversary Perspective",
            "description": "This recent false color Landsat-7 image, from January 2001, shows Mt. Pinatubo as it stands today. The caldera is seen in the middle of the image, underneath clouds.Ten years after the blast, vegetation is re-growing on the slopes of the mountain (in green.) Streams of mud, called lahars, (resulting from ash from the eruption mixing with water- seen as the lighter sediment) continue to flow down the sides of the mountains, as well as channels of water (darker streams).  However, as vegetation grows back, the ash becomes more stabilized and less likely to form the destructive lahars. || ",
            "hits": 16
        },
        {
            "id": 2194,
            "url": "https://svs.gsfc.nasa.gov/2194/",
            "result_type": "Visualization",
            "release_date": "2001-06-12T12:00:00-04:00",
            "title": "Mt. Pinatubo 10th Anniversary Perspective (Stills)",
            "description": "This recent false color Landsat-7 image, from January 2001, shows Mt. Pinatubo as it stands today. The caldera is seen in the middle of the image, underneath clouds. Ten years after the blast, vegetation is re-growing on the slopes of the mountain (in green). Streams of mud, called lahars, (resulting from ash from the eruption mixing with water- seen as the lighter sediment) continue to flow down the sides of the mountains, as well as channels of water (darker streams). However, as vegetation grows back, the ash becomes more stabilized and less likely to form the destructive lahars. || ",
            "hits": 22
        },
        {
            "id": 2133,
            "url": "https://svs.gsfc.nasa.gov/2133/",
            "result_type": "Visualization",
            "release_date": "2001-05-08T12:00:00-04:00",
            "title": "Capitol Zoom - SIGGRAPH 2001 Final Submission",
            "description": "Capital Zoom is a seamless, cloudless zoom-in from a global view down to the nation's Capitol building that is composed entirely of satellite data.  This data includes IKONOS 1 meter data, Landsat-7 15/30 meter data, Terra/MODIS 250 meter data, and Terra/MODIS 8 kilometer data.  The visualization first zoomsin seamlessly, then zooms out/in showing where the different data set layers reside.This visualization has been accepted to SIGGRAPH 2001.  It includes narration.  This visualization was created using Maya for motion control, Renderman forrendering, IDL for pre-processing of the data, Imagine for image registration, and Photoshop for color matching. || ",
            "hits": 17
        },
        {
            "id": 2107,
            "url": "https://svs.gsfc.nasa.gov/2107/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom into Washington, DC: the U.S. Capitol",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 39
        },
        {
            "id": 2112,
            "url": "https://svs.gsfc.nasa.gov/2112/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom into San Francisco, CA: Fisherman's Wharf",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 26
        },
        {
            "id": 2113,
            "url": "https://svs.gsfc.nasa.gov/2113/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom into New York, NY: The World Trade Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 51
        },
        {
            "id": 2121,
            "url": "https://svs.gsfc.nasa.gov/2121/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom into Boston, MA: The Bunker Hill Monument",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 5
        },
        {
            "id": 2122,
            "url": "https://svs.gsfc.nasa.gov/2122/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom out of Washington, DC: The US Capitol Building",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 21
        },
        {
            "id": 2127,
            "url": "https://svs.gsfc.nasa.gov/2127/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom out of San Francisco, CA: Fisherman's Wharf",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 11
        },
        {
            "id": 2128,
            "url": "https://svs.gsfc.nasa.gov/2128/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom out of New York, NY: The World Trade Center",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 2681
        },
        {
            "id": 2130,
            "url": "https://svs.gsfc.nasa.gov/2130/",
            "result_type": "Visualization",
            "release_date": "2001-04-13T12:00:00-04:00",
            "title": "Great Zoom out of Boston, MA: The Bunker Hill Monument",
            "description": "Using data from different spacecraft and some powerful computer technology, visualizers at the Goddard Space Flight Center present you with a collection of American cities in a way you have never seen them before. Starting with our camera high above the Earth, we rush in towards the surface at what would be an impossible speed for any known vehicle. Passing though layers of atmosphere, the colors of our destinations shimmer with their own unique characteristics, and suddenly we find ourselves floating in virtual space just above the ground. || ",
            "hits": 11
        },
        {
            "id": 1324,
            "url": "https://svs.gsfc.nasa.gov/1324/",
            "result_type": "Visualization",
            "release_date": "2000-09-14T12:00:00-04:00",
            "title": "DC Pan and Zoomout Animation",
            "description": "This spectacular image of the Mall area was acquired on Saturday, April 1, 2000 by Space Imaging's IKONOS sensor. Here we are moving across the Mall, from west to east and we will pause over the Capitol Building. Let's just sit back for a few seconds and enjoy the view. We will then gradually pull back from this highly localized view from space, to obtain a more regional perspective provided by Landsat 7. This regional view permits us to follow the entire length of the Potomac River, from its headwaters in the Shenandoahs, until it flows into the Chesapeake Bay.  We can also see the full extent of the Chesapeake and Delaware Bays as they flow into the Atlantic. We will continue to pull back farther to obtain more continental and global views of the Earth as provided by a new instrument known as MODIS, or the Moderate Resolution Imaging Spectroradiometer, the primary instrument on the Terra spacecraft.   Finally, we rotate the Earth so as to see a representation of the Earth's stable light sources, as derived from DMSP satellites.  (Note: This animation is a precursor to the Great Zooms.  It is based on the same concept and data sources, but is somewhat less polished, particularly in the area of color matching.) || ",
            "hits": 10
        },
        {
            "id": 1165,
            "url": "https://svs.gsfc.nasa.gov/1165/",
            "result_type": "Visualization",
            "release_date": "2000-08-03T12:00:00-04:00",
            "title": "Western Fires From Terra/MODIS",
            "description": "Zooming down to imagery and thermal data of fires in Montana as seen by MODIS in August 2000 || a001165.00005_print.png (720x480) [561.4 KB] || a001165_thm.png (80x40) [6.5 KB] || a001165_pre.jpg (320x242) [12.2 KB] || a001165_pre_searchweb.jpg (320x180) [77.8 KB] || a001165.webmhd.webm (960x540) [2.7 MB] || a001165.dv (720x480) [43.7 MB] || a001165.mp4 (640x480) [2.4 MB] || a001165.mpg (352x240) [1.5 MB] || ",
            "hits": 6
        },
        {
            "id": 1325,
            "url": "https://svs.gsfc.nasa.gov/1325/",
            "result_type": "Visualization",
            "release_date": "2000-07-28T12:00:00-04:00",
            "title": "Zoom to Montana Fires Showing SeaWiFS Data and the Landsat-7 Thermal Channel",
            "description": "This animation shows the western fires burning in Montana. The initial frame is a SeaWiFS image showing the smoke plume stretching clear across the country. The camera zooms into the source of the fires, flying through the smoke plume, and revealing a composite image of visible and thermal Landsat7 data. || ",
            "hits": 13
        }
    ]
}