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          <Abstract>This layer contains a conductivity grid corresponding to a depth interval of 4.2 - 6.6m in the Upper Darling Floodplain.  The grid represents layer 3 of 30 AEM model layers generated from data acquired in the Upper Darling Floodplain, New South Wales, Airborne Electromagnetic Survey (https://dx.doi.org/10.26186/147267), an Exploring for the Future (EFTF) project jointly funded by Geoscience Australia and New South Wales Department of Planning and Environment (NSW DPE).  The AEM conductivity model delineates important subsurface features for assessing the groundwater system including lithological boundaries, palaeovalleys and hydrostatigraphy.</Abstract>
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          <Abstract>This layer contains a conductivity grid corresponding to a depth interval of 6.6 - 9.3m in the Upper Darling Floodplain.  The grid represents layer 4 of 30 AEM model layers generated from data acquired in the Upper Darling Floodplain, New South Wales, Airborne Electromagnetic Survey (https://dx.doi.org/10.26186/147267), an Exploring for the Future (EFTF) project jointly funded by Geoscience Australia and New South Wales Department of Planning and Environment (NSW DPE).  The AEM conductivity model delineates important subsurface features for assessing the groundwater system including lithological boundaries, palaeovalleys and hydrostatigraphy.</Abstract>
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            <Keyword>Groundwater</Keyword>
            <Keyword>Palaeovalleys</Keyword>
            <Keyword>Geophysical Inversion</Keyword>
            <Keyword>Conductivity</Keyword>
            <Keyword>EFTF - Exploring For The Future</Keyword>
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            <Title>Turbo colormap, 2%-98% clip</Title>
            <Abstract>Turbo colour ramp mapped to a linear histogram stretch with pixels below 2% and above 98% of the distribution clipped, for the Upper Darling Floodplain AEM conductivity depth interval grids.  Statistics were calculated using pixel values from all 30 depth interval grids.</Abstract>
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