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Student performance, MOOC logs, knowledge tracing, standardized tests, learning analytics
15,316 datasets
AURORA hyperspectral imaging system collected 72 ten-nanometer spectral bands in the visible and near-infrared range for coral reef analysis. This data was a cooperative project involving NOAA, the University of Hawaii, and Analytical Laboratories of Hawaii. The imagery has a 3-meter pixel resolution and was processed to optimize feature detection in shallow and deep water.
AURORA hyperspectral imaging system collected 72 spectral bands in the visible and near-infrared range for coral reef mapping. This data supports the development of methods to compare benthic habitat maps from aerial photography and satellite imagery. The project was a cooperative effort led by NOAA and partners, with data processed around the year 2000.
72 spectral bands in the visible and near-infrared range were collected by the AURORA hyperspectral imaging system for the Hawaiian island of Lanai. This dataset was created for developing coral reef mapping methods by a collaboration between NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii. The data was processed and published around the year 2000.
72 ten-nanometer spectral bands in the visible and near-infrared range were collected by the AURORA hyperspectral imaging system at 3-meter pixel resolution. This dataset was developed for coral reef mapping and benthic habitat analysis through a collaboration between NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii. The project aimed to compare mapping methods using hyperspectral, IKONOS satellite, and aerial photography imagery.
NOAA and University of Hawaii project provides hyperspectral imagery for coral reef mapping across the eight main Hawaiian Islands. The AURORA system collected 72 spectral bands in the visible and near-infrared range with 3-meter pixel resolution. Data was processed in 2000 to optimize feature detection for shallow and deep water habitats.
Hyperspectral data captures 72 ten-nanometer bands in the visible and near-infrared range for coral reef analysis. The imagery, with a 3-meter pixel resolution, was collected by the AURORA system for mapping benthic habitats around the eight main Hawaiian Islands. This cooperative project involved NOAA, the University of Hawaii, and Analytical Laboratories of Hawaii, with data processed around the year 2000.
72 spectral bands in the visible and near-infrared range were collected by the AURORA hyperspectral imaging system at a 3-meter pixel resolution. This data was developed by NOAA, the University of Hawaii, and Analytical Laboratories of Hawaii to create and compare coral reef habitat maps. The project was conducted around the year 2000.
2000 hyperspectral imagery data for the main eight Hawaiian Islands, collected to develop coral reef mapping methods. The project was a cooperative effort by NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii. Data includes 72 ten-nanometer bands in the visible and near-infrared range with 3-meter pixel resolution.
Hyperspectral imagery of the main eight Hawaiian Islands was collected for coral reef and benthic habitat mapping. The project was a cooperative effort by NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii. Data collection and processing occurred around the year 2000.
72 ten-nanometer spectral bands in the visible and near-infrared range were collected by the AURORA hyperspectral imaging system at a 3-meter pixel resolution. The project, a cooperative effort among NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii, aimed to develop and compare coral reef mapping methods. Data collection and processing were completed around the year 2000.
Hyperspectral imagery of the main eight Hawaiian Islands was collected for coral reef and benthic habitat mapping. The project was a cooperative effort by NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii. Data collection and processing occurred around the year 2000.
NOAA's project provides hyperspectral imagery for mapping coral reefs and benthic habitats across the eight main Hawaiian Islands. Data was collected using the AURORA system, capturing 72 spectral bands at 3-meter pixel resolution. The collaborative effort involved NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii, with data processed around the year 2000.
Hyperspectral imagery data was collected for the main eight Hawaiian Islands to develop and compare coral reef mapping methods. The project was a cooperative effort involving NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii, LLC. Data collection and processing occurred around the year 2000.
AURORA hyperspectral imaging captured 72 spectral bands at 3-meter resolution for coral reef analysis. This project developed methods to map benthic habitats by interpreting aerial photos, hyperspectral, and IKONOS satellite imagery. The cooperative effort involved NOAA, the University of Hawaii, and Analytical Laboratories of Hawaii, with data processed around the year 2000.
Multispectral IKONOS satellite imagery at four-meter pixel resolution supports coral reef and benthic habitat mapping for the main eight Hawaiian Islands. The dataset was produced through a cooperative effort involving NOAA's National Centers for Coastal Ocean Science, the University of Hawaii, and Analytical Laboratories of Hawaii. It was collected and processed around the year 2000 to compare mapping methods using different imagery sources.
NOAA/WDS Paleoclimatology archives the Brown University Foraminiferal Database, a paleoceanography study. It contains parameters for the Global Ocean covering the period from 100 to -50 calendar years before present. The data is maintained by NOAA National Centers for Environmental Information.