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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA Dumbleyung Nyabing Merge Elevation Grid Geodetic is elevation data for the Dumbleyung-Nyabing-Coblinine merge, 2002-2005. This survey was acquired under the project No. 1328 for the geological survey of WA. The grid has a cell size of 0.00021 degrees (approximately 21m). This grid contains the ground elevation relative to the geoid for the Dumbleyung-Nyabing-Coblinine merge, 2002-2005. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA Kellerberrin Southern Cross Boorabbin Hyden Lake Johnston Elevation Merged Grid Geodetic is elevation data for the Kellerberrin-Southern Cross-Boorabbin-Hyden-Lake Johnston merge, 2004-2005. This survey was acquired under the project No. 1330 for the geological survey of WA. The grid has a cell size of 0.00083 degrees (approximately 86m). This grid contains the ground elevation relative to the geoid for the Kellerberrin-Southern Cross-Boorabbin-Hyden-Lake Johnston merge, 2004-2005. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA Boorabbin Lake Johnston Elevation Grid Geodetic is elevation data for the Boorabbin-Lake Johnston merge, 1987-2005. This survey was acquired under the project No. 1331 for the geological survey of WA. The grid has a cell size of 0.0005 degrees (approximately 51m). This grid contains the ground elevation relative to the geoid for the Boorabbin-Lake Johnston merge, 1987-2005. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA Complete South Yilgarn Elevation Merged Grid Geodetic is elevation data for the Complete Southern Yilgarn merge, 2004-2005. This survey was acquired under the project No. 1339 for the geological survey of WA. The grid has a cell size of 0.00083 degrees (approximately 85m). This grid contains the ground elevation relative to the geoid for the Complete Southern Yilgarn merge, 2004-2005. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA Central Canning GA Onshore Canning Elevation Grid Geodetic is elevation data for the GSWA Central Canning, GA Onshore Canning merge, 2007-2009. This survey was acquired under the project No. 1334 for the geological survey of WA. The grid has a cell size of 0.00083 degrees (approximately 89m). This grid contains the ground elevation relative to the geoid for the GSWA Central Canning, GA Onshore Canning merge, 2007-2009. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA Newdegate Ravensthorpe Bremer Bay Merge Elevation Grid Geodetic is elevation data for the Newdegate-Ravensthorpe-Bremer Bay merge, 1999-2005. This survey was acquired under the project No. 1332 for the geological survey of WA. The grid has a cell size of 0.00083 degrees (approximately 85m). This grid contains the ground elevation relative to the geoid for the Newdegate-Ravensthorpe-Bremer Bay merge, 1999-2005. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This GSWA North Paterson Anketell Merge elevation grid geodetic is elevation data for the North Paterson-Anketell merge, 2002-2005. This survey was acquired under the project No. 1333 for the geological survey of WA. The grid has a cell size of 0.00083 degrees (approximately 90m). This grid contains the ground elevation relative to the geoid for the North Paterson-Anketell merge, 2002-2005. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This Spencer - ground elevation geoid grid (laser) is elevation data for the Spencer Airborne Magnetic Radiometric and DEM survey, SA, 2018. This survey was acquired under the project No. 1310 for the geological survey of SA. The grid has a cell size of 0.0004 degrees (approximately 41m). This grid contains the ground elevation relative to the geoid for the Spencer Airborne Magnetic Radiometric and DEM survey, SA, 2018. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This Kingoonya - ground elevation geoid grid (laser) is elevation data for the Kingoonya Airborne Magnetic Radiometric and DEM survey, SA, 2018. This survey was acquired under the project No. 1311 for the geological survey of SA. The grid has a cell size of 0.0004 degrees (approximately 41m). This grid contains the ground elevation relative to the geoid for the Kingoonya Airborne Magnetic Radiometric and DEM survey, SA, 2018. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.

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    Digital Elevation data record the terrain height variations from the processed point- or line-located data recorded during a geophysical survey. This Kingoonya - ground elevation geoid grid (radar) is elevation data for the Kingoonya Airborne Magnetic Radiometric and DEM survey, SA, 2018. This survey was acquired under the project No. 1311 for the geological survey of SA. The grid has a cell size of 0.0004 degrees (approximately 41m). This grid contains the ground elevation relative to the geoid for the Kingoonya Airborne Magnetic Radiometric and DEM survey, SA, 2018. It represents the vertical distance from a location on the Earth's surface to the geoid. The data are given in units of meters. The processed data is checked for quality by GA geophysicists to ensure that the final data released by GA are fit-for-purpose.