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Official QGIS Training Manual, Release 3.4

CSV file containing the global distribution of hydrothermal vent fields in WGS84 coordinate system.

CSV file containing species richness values and mapping parameters for marine species (with a probability of occurrence > 0.5) derived from AquaMaps. A total of 33,512 species were used in the generation of this file.
Coordinate system is WGS84 (ESPG 4326) with coordinates expressed in longitude and latitude.

Fields in this file are:
C-Square Code: unique identifier for grid
Longitude: longitude in decimal degrees
Latitude: latitude in decimal degrees
Species Count: number of species modeled at given point

Raster data representing the mean levels of calcite in µmol/m3 for the surface water layer. The data are available for global-scale applications at a spatial resolution of 5 arcmin (approximately 9.2 km at the equator).

Marine data layers for present conditions were produced with climate data describing monthly averages for the period 2000–2014, obtained from pre-processed global ocean re-analyses combining satellite and in situ observations at regular two- and three-dimensional spatial grids.

Raster data representing the mean levels of current velocities in meters/second for the surface water layer. The data are available for global-scale applications at a spatial resolution of 5 arcmin (approximately 9.2 km at the equator).

Marine data layers for present conditions were produced with climate data describing monthly averages for the period 2000–2014, obtained from pre-processed global ocean re-analyses combining satellite and in situ observations at regular two- and three-dimensional spatial grids.

Raster data representing the mean levels of iron in µmol/m3 for the surface water layer. The data are available for global-scale applications at a spatial resolution of 5 arcmin (approximately 9.2 km at the equator).

Marine data layers for present conditions were produced with climate data describing monthly averages for the period 2000–2014, obtained from pre-processed global ocean re-analyses combining satellite and in situ observations at regular two- and three-dimensional spatial grids.

Raster data representing the mean levels of pH for the surface water layer. The data are available for global-scale applications at a spatial resolution of 5 arcmin (approximately 9.2 km at the equator).

Marine data layers for present conditions were produced with climate data describing monthly averages for the period 2000–2014, obtained from pre-processed global ocean re-analyses combining satellite and in situ observations at regular two- and three-dimensional spatial grids.

Raster data representing the mean levels of photosynthetically active radiation (PAR) in E/m2/year for the surface water layer. The data are available for global-scale applications at a spatial resolution of 5 arcmin (approximately 9.2 km at the equator).

Marine data layers for present conditions were produced with climate data describing monthly averages for the period 2000–2014, obtained from pre-processed global ocean re-analyses combining satellite and in situ observations at regular two- and three-dimensional spatial grids.

vegetation types within the mainland coastal region provinces

vegetation types for the provinces in the PNG highlands region

Each value represents the number of dumping events observed on fishing vessels during the period 2003-2015

Pacific Vision is for a region of peace, harmony, security, social inclusion, and prosperity, so that all Pacific people can lead free, healthy, and productive lives.

Summary table for the SPREP core national environment indicators. Includes theme and indicator definition, purpose and desired outcome.

This research was carried out at NOAA Pacific Marine Environmental Laboratory with support from the NOAA Climate Program Office, at the Joint Institute for the Study of the Atmosphere and Ocean (JISAO) under NOAA Cooperative Agreement

Suggestions are made in this report for restoring particular islands; searches should be made to identify those islands where it appears feasible to restore and maintain indigenous vegetation and wildlife.

This manual adopts a simplistic approach by beginning with a clear management question, followed by a discussion of survey design and selection of fisheries-independent survey methodologies to use, and the basic analytical techniques for indicating stock health. This manual does not make suggestions on ‘how to manage’, but focuses on how to attain a useful and repeatable measure of resource stock condition for the sustainable management of invertebrate resources.