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International Space Station (ISS) SERVIR Environmental Research and Visualization System Photos: 2013-2014
'The ISS SERVIR Environmental Research and Visualization System (ISERV) acquired images of the Earth\'s surface from the International Space Station (ISS). The goal was to improve automatic image capturing and data transfer. ISERV\'s main component was the optical assembly which consisted of a 9.25 inch Schmidt-Cassegrain telescope, a focal reducer (field of view enlarger), a digital single lens reflex camera, and a high precision focusing mechanism. A motorized 2-axis pointing mount allowed pointing at targets approximately 23 degrees from nadir in both along- and across-track directions. '
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International Space Station (ISS) SERVIR Environmental Research and Visualization System Photos: 2013-2014
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'The ISS SERVIR Environmental Research and Visualization System (ISERV) acquired images of the Earth\'s surface from the International Space Station (ISS). The goal was to improve automatic image capturing and data transfer. ISERV\'s main component was the optical assembly which consisted of a 9.25 inch Schmidt-Cassegrain telescope, a focal reducer (field of view enlarger), a digital single lens reflex camera, and a high precision focusing mechanism. A motorized 2-axis pointing mount allowed pointing at targets approximately 23 degrees from nadir in both along- and across-track directions. '
Shuttle Imaging Radar Survey Mission C
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'Spaceborne Imaging Radar-C (SIR-C) was part of an imaging radar system that was flown on board two Space Shuttle flights (9 - 20 April, 1994 and 30 September - 11 October, 1994). The U.S. Geological Survey (USGS) Earth Resources Observation and Science (EROS) Center distributes the C-band (5.8 cm) and L-band (23.5 cm) Survey Data. A total of about 50 hours of data, corresponding to roughly 50 million square kilometers of ground coverage, were collected during each mission. The ground swath width varies from 15 to 90 kilometers depending on the imaging mode and incidence angles of the radar beams. All science data were processed into Survey products. The Survey product is intended as a \"quick look\" browsing tool for viewing the areas imaged by SIR-C. This product is not designed to be used for quantitative scientific analysis. Survey Data consists of a frame image of a data segment, which represents a subset of the data swath. Resolution is approximately 100 meters, processed to a 50-meter pixel spacing. Additional information on SIR-C is available at: http://southport.jpl.nasa.gov.'
Shuttle Imaging Radar Survey Mission C
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'Spaceborne Imaging Radar-C (SIR-C) was part of an imaging radar system that was flown on board two Space Shuttle flights (9 - 20 April, 1994 and 30 September - 11 October, 1994). The U.S. Geological Survey (USGS) Earth Resources Observation and Science (EROS) Center distributes the C-band (5.8 cm) and L-band (23.5 cm) Survey Data. A total of about 50 hours of data, corresponding to roughly 50 million square kilometers of ground coverage, were collected during each mission. The ground swath width varies from 15 to 90 kilometers depending on the imaging mode and incidence angles of the radar beams. All science data were processed into Survey products. The Survey product is intended as a \"quick look\" browsing tool for viewing the areas imaged by SIR-C. This product is not designed to be used for quantitative scientific analysis. Survey Data consists of a frame image of a data segment, which represents a subset of the data swath. Resolution is approximately 100 meters, processed to a 50-meter pixel spacing. Additional information on SIR-C is available at: http://southport.jpl.nasa.gov.'
Earth Resources Observation and Science (EROS) Center's Earth as Art Image Gallery 2
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The Earth Resources Observation and Science (EROS) Center manages this collection of forty-five new scenes developed for their aesthetic beauty, rather than for scientific value. The artists of this collection come from three sensors aboard satellites orbiting the Earth - Landsat 7, ASTER, and MODIS.
NASA Earth Observatory Images
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The Earth Observatory is part of the EOS Project Science Office located at NASA Goddard Space Flight Center.
우주항공청 우주환경센터 이천 지구자기장 관측자료
공공데이터포털
이 OpenAPI는 이천 지역에서 실시간 관측되는 지구 자기장 성분(X, Y, Z) 및 전체 자기장 세기 정보를 JSON 형식으로 제공합니다. 주요 컬럼은 관측일시, X성분 지구자기장(관측값), Y성분 지구자기장(관측값), Z성분 지구자기장(관측값), 및 지구자기장 크기(관측값) 등으로 구성됩니다. 제공 데이터는 지자기장 변동성을 실시간으로 감시, 태양입자 폭풍이나 자기폭풍 이벤트 시 지자기 반응 분석, 통신·전력·항공 시스템에 대한 위험 예보 및 대응체계, 뿐만 아니라 지구 자기권 변화 연구 등 다양한 공학적·과학적 목적으로 활용할 수 있는 정밀하고 시의성 높은 관측 데이터셋입니다.
Earth Observing-1 Advanced Land Imager: 2001-Present
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'The Earth Observing-1(EO-1) satellite was launched on November 21, 2000 by the U.S. Geological Survey (USGS) and the National Aeronautics and Space Administration (NASA) as a one-year technology demonstration mission to evaluate the performance of advanced capabilities for future space missions. The EO-1 mission validated highly integrated multispectral data from the Advanced Land Imager (ALI) sensor and hyperspectral imaging data from the Hyperion sensor. After the initial technology mission was accomplished, NASA and the USGS agreed to continue the EO-1 program due to high interest in the specialized data from scientific communities. EO-1 Data products consist of imagery collected during the original one-year mission, as well as more recent Data Acquisition Requests (DARs) from the EO-1 Extended Mission. EO-1 scenes are processed to Level 1Gst (L1Gst) and images with adequate ground control points are processed to Level 1T (L1T). L1Gst and L1T products are provided in GeoTIFF format. Scenes that have been processed to L1T are also available as Full Resolution Browse and GIS Ready Bundle products in JPEG format. Level 1R (L1R) products in HDF format are only available for Hyperion data.'
NASA 3D Models: International Space Station
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Model of the ISS. Polygons: 6628 Vertices: 7239
GOES Space Environment Monitor, X-ray Sensor
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Solar x-ray flux data.