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		<Name>WMS</Name>
		<Title>Zeehan MP Seabed Morphology and Geomorphology</Title>
		<Abstract>This WMS features seabed morphology and geomorphology layers for a subset area of Zeehan Marine Park, described in data product: Seabed Morphology and Geomorphology of Zeehan Marine Park, south-eastern Australia, version 1 (https://pid.geoscience.gov.au/dataset/ga/148620).</Abstract>
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			<Keyword>Seabed</Keyword>
			<Keyword>Morphology</Keyword>
			<Keyword>Geomorphology</Keyword>
			<Keyword>Zeehan Marine Park</Keyword>
		</KeywordList>
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				<ContactOrganization>Geoscience Australia</ContactOrganization>
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				<AddressType>Postal</AddressType>
				<Address>GPO Box 378</Address>
				<City>Canberra</City>
				<StateOrProvince>ACT</StateOrProvince>
				<PostCode>2601</PostCode>
				<Country>Australia</Country>
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			<ContactVoiceTelephone>+61 2 6249 9111</ContactVoiceTelephone>
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			<ContactElectronicMailAddress>clientservices@ga.gov.au</ContactElectronicMailAddress>
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		<Fees>NONE</Fees>
		<AccessConstraints>© Commonwealth of Australia (Geoscience Australia) 2023. This product is released under the Creative Commons Attribution 4.0 International Licence. http://creativecommons.org/licenses/by/4.0/legalcode</AccessConstraints>
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				<Name>AustralianProvince_2008_Zeehan</Name>
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									<SPAN>This feature layer is derived from the GeomorphologyOfTheAustralianMargin (Heap &amp; Harris 2008), clipped to the extent of the Zeehan Marine Park mapped area</SPAN>
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				<Name>GEOMORPHIC_SETTING</Name>
				<Title>GEOMORPHIC SETTING</Title>
				<Abstract/>
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					<Abstract>
						<DIV STYLE="text-align:Left;">
							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
									<P>
										<SPAN/>
									</P>
								</DIV>
							</DIV>
						</DIV>
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					<Abstract>
						<DIV STYLE="text-align:Left;">
							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
								</DIV>
							</DIV>
						</DIV>
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					<Abstract>
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							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
									<P>
										<SPAN/>
									</P>
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					<Abstract>
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							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
								</DIV>
							</DIV>
						</DIV>
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					<Abstract>
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							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
									<P>
										<SPAN/>
									</P>
								</DIV>
							</DIV>
						</DIV>
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							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
								</DIV>
							</DIV>
						</DIV>
					</Abstract>
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					<Abstract>
						<DIV STYLE="text-align:Left;">
							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
									<P>
										<SPAN/>
									</P>
								</DIV>
							</DIV>
						</DIV>
					</Abstract>
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					<Abstract>
						<DIV STYLE="text-align:Left;">
							<DIV>
								<DIV>
									<P>
										<SPAN>This data product contains geospatial seabed morphology and geomorphology information for a subset area of Zeehan Marine Park. These seabed feature map layers are intended for use by marine park managers, regulators, the general public and other stakeholders. A nationally consistent seabed geomorphology classification scheme was used to map and classify the distribution of key seabed features. </SPAN>
									</P>
									<P>
										<SPAN>Semi-automated GIS mapping tools (GA-SaMMT; Huang et al., 2022; eCat Record 146832) were applied to a bathymetry digital elevation model (DEM) in a GIS environment (ESRI ArcGIS Pro) to map polygon extents (topographic high, low, and planar) and to quantitatively characterise polygon geometries. Geometric attributes were then used to classify each shape into discrete Morphology Feature types (Dove et al., 2020; eCat Record 144305). Seabed geomorphology features  were interpreted by applying additional datasets and domain knowledge to inform their geomorphic characterisation (Nanson et al., 2023; eCat Record 147818). Where available, backscatter intensity, seabed imagery, seabed sediment samples and sub-bottom profiles supplemented the bathymetry DEM and morphology classifications to inform the geomorphic interpretations.</SPAN>
									</P>
									<P>
										<SPAN>The Zeehan Marine Park seabed morphology and geomorphology maps were derived from a 2 m horizontal resolution bathymetry DEM compiled from a multibeam survey undertaken for Parks Australia by the University of Tasmania.</SPAN>
									</P>
									<P>
										<SPAN>The data product and classification schema are fully described in the accompanying Data Product Specification. </SPAN>
									</P>
								</DIV>
							</DIV>
						</DIV>
					</Abstract>
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						<DIV>
							<DIV>
								<P>
									<SPAN>Hillshade raster derived from a 2 m horizontal resolution multibeam bathymetry DEM acquired for Parks Australia by the University of Tasmania. Multidirectional hillshade with x8 vertical exaggeration.</SPAN>
								</P>
							</DIV>
						</DIV>
					</DIV>
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