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1,787 results for “coweeta”
Landsat Enhanced Thematic Mapper image data for Coweeta LTER collected on 2011-09-28
This LTER Remote Sensing spatial raster dataset consists of Landsat Enhanced Thematic Mapper image data for Coweeta LTER, on 2011-09-28 (15:54:26.5250560Z). Data were collected by Landsat 5, row 36, path 18. Cloud cover was 35.33 percent. These are reference data from the USGS EROS archive, not data generated by Coweeta LTER. This product was created by the U.S. Geological Survey (USGS) and contains Landsat data files in Geographic Tagged Image-File Format (GeoTIFF). NASA Landsat Program, 2009, Landsat TM LT50180362011271GNC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-21T06:29:56Z.
Landsat Enhanced Thematic Mapper image data for Coweeta LTER collected on 2011-10-14
This LTER Remote Sensing spatial raster dataset consists of Landsat Enhanced Thematic Mapper image data for Coweeta LTER, on 2011-10-14 (15:54:12.6550000Z). Data were collected by Landsat 5, row 36, path 18. Cloud cover was 0.22 percent. These are reference data from the USGS EROS archive, not data generated by Coweeta LTER. This product was created by the U.S. Geological Survey (USGS) and contains Landsat data files in Geographic Tagged Image-File Format (GeoTIFF). NASA Landsat Program, 2009, Landsat TM LT50180362011287EDC00, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-21T06:29:49Z.
Landsat Enhanced Thematic Mapper image data for Coweeta LTER collected on 2011-10-30
This LTER Remote Sensing spatial raster dataset consists of Landsat Enhanced Thematic Mapper image data for Coweeta LTER, on 2011-10-30 (15:54:01.9080810Z). Data were collected by Landsat 5, row 36, path 18. Cloud cover was 0.15 percent. These are reference data from the USGS EROS archive, not data generated by Coweeta LTER. This product was created by the U.S. Geological Survey (USGS) and contains Landsat data files in Geographic Tagged Image-File Format (GeoTIFF). NASA Landsat Program, 2009, Landsat TM LT50180362011303GNC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-21T06:31:22Z.
Diatom Community Data from Coweeta LTER, 2005-2019
Diatom community data from eight first-fourth order stream reaches at the Coweeta LTER/Coweeta Hydrologic Lab. Samples were collected in September 2005, January 2006, September 2018, and January 2019. For each stream, three replicate samples were collected over a 100 m stream reach from rock substrates. Diatoms were enumerated from permanent slides to the species level. For each sample, community data include relative cell densities and relative cell biovolumes. This data package is completed.
Bird Species Commonly Present at Coweeta LTER
Patterns of biodiversity, such as the increase toward the tropics and the peaked curve during ecological succession, are fundamental phenomena for ecology. Such patterns have multiple, interacting causes, but temperature emerges as a dominant factor across organisms from microbes to trees and mammals, and across terrestrial, marine, and freshwater environments. However, there is little consensus on the underlying mechanisms, even as global temperatures increase and the need to predict their effects becomes more pressing. The purpose of this project is to generate and test theory for how temperature impacts biodiversity through its effect on biochemical processes and metabolic rate. A combination of standardized surveys in the field and controlled experiments in the field and laboratory measure diversity of three taxa -- trees, invertebrates, and microbes -- and key biogeochemical processes of decomposition in seven forests distributed along a geographic gradient of increasing temperature from cold temperate to warm tropical. This list of bird species at Coweeta LTER, North Carolina, was retrieved from http://coweeta.uga.edu/species/speciesII.php on 10/17/2013 as part of a macrosystems biodiversity and latitude project supported by the National Science Foundation under Cooperative Agreement DEB#1065836.
Mammal Species Commonly Present at Coweeta LTER
Patterns of biodiversity, such as the increase toward the tropics and the peaked curve during ecological succession, are fundamental phenomena for ecology. Such patterns have multiple, interacting causes, but temperature emerges as a dominant factor across organisms from microbes to trees and mammals, and across terrestrial, marine, and freshwater environments. However, there is little consensus on the underlying mechanisms, even as global temperatures increase and the need to predict their effects becomes more pressing. The purpose of this project is to generate and test theory for how temperature impacts biodiversity through its effect on biochemical processes and metabolic rate. A combination of standardized surveys in the field and controlled experiments in the field and laboratory measure diversity of three taxa -- trees, invertebrates, and microbes -- and key biogeochemical processes of decomposition in seven forests distributed along a geographic gradient of increasing temperature from cold temperate to warm tropical. This list of mammal species at Coweeta LTER, North Carolina, was retrieved from http://coweeta.uga.edu/species/speciesII.php on 10/30/2013 as part of a macrosystems biodiversity and latitude project supported by the National Science Foundation under Cooperative Agreement DEB#1065836.
Coweeta LTER Precipitation Measured at Climate Station 01 1937-2012
Patterns of biodiversity, such as the increase toward the tropics and the peaked curve during ecological succession, are fundamental phenomena for ecology. Such patterns have multiple, interacting causes, but temperature emerges as a dominant factor across organisms from microbes to trees and mammals, and across terrestrial, marine, and freshwater environments. However, there is little consensus on the underlying mechanisms, even as global temperatures increase and the need to predict their effects becomes more pressing. The purpose of this project is to generate and test theory for how temperature impacts biodiversity through its effect on biochemical processes and metabolic rate. A combination of standardized surveys in the field and controlled experiments in the field and laboratory measure diversity of three taxa -- trees, invertebrates, and microbes -- and key biogeochemical processes of decomposition in seven forests distributed along a geographic gradient of increasing temperature from cold temperate to warm tropical. This daily precipitation data from Coweeta LTER site, 1937-2012, recorded at Climate Station 01 meteorological station, was retrieved from the CLIMDB/HYDRODB data base at http://www.fsl.orst.edu/climhy/ as part of a macrosystems biodiversity and latitude project supported by the National Science Foundation under Cooperative Agreement DEB#1065836.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.