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  • AusPass is a service dedicated to the acquisition, management, and distribution of passive seismological data in Australia. Extensive fieldwork projects are conducted across the country, organized in seismic arrays (i.e. groups of seismic stations). Australian Seismometers in Schools is a dual purpose seismic network. The program offers both education outreach and provides quality data for monitoring and research. We use Guralp CMG-6TD seismometers and stream data live data to the schools and Geoscience Australia as well as providing the data to IRIS and the Australian AusPass data server. AuSIS infrastructure is supported by AuScope Geophysical Observatory program.

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    125180m depth slice from the 3-D resistivity model derived from magnetotelluric (MT) data collected from 231 sites in the Curnamona and Delamerian Region. The resistivity model can be used to enhance the understanding of the geodynamics and mineral potential in the Curnamona Province and Delamerian Orogen.

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    1280m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    1620m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    8860m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    13460m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    19510m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    21060m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    28560m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.

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    53910m depth slice from the 3-D resistivity model derived from long-period magnetotelluric (MT) data collected from 162 sites in the western Queensland region. The data were collected for the Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP) under Geoscience Australia's Exploring for the Future (EFTF) program with contributions from the Geological Survey of Queensland. The resistivity model maps the electrical resistivity structures in the region and provides information about the lithospheric architecture and geodynamic processes, as well as valuable precompetitive data for resource exploration in this region.