Academic literature on the topic 'Capricorn Orogen'

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Journal articles on the topic "Capricorn Orogen"

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Fielding, Imogen, and Simon Johnson. "Gold metallogeny of the northern Capricorn Orogen." ASEG Extended Abstracts 2019, no. 1 (November 11, 2019): 1–6. http://dx.doi.org/10.1080/22020586.2019.12073049.

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Lampinen, Heta, Sandra Occhipinti, Mark Lindsay, and Carsten Laukamp. "Magnetic susceptibility of Edmund Basin, Capricorn Orogen, WA." ASEG Extended Abstracts 2016, no. 1 (December 2016): 1–8. http://dx.doi.org/10.1071/aseg2016ab254.

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Occhipinti, S. A., S. Sheppard, C. Passchier, I. M. Tyler, and D. R. Nelson. "Palaeoproterozoic crustal accretion and collision in the southern Capricorn Orogen: the Glenburgh Orogeny." Precambrian Research 128, no. 3-4 (January 2004): 237–55. http://dx.doi.org/10.1016/j.precamres.2003.09.002.

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Murdie, Ruth E., Huaiyu Yuan, Michael Dentith, and Xioabing Xu. "Passive seismic studies of the Capricorn Orogen, Western Australia." ASEG Extended Abstracts 2019, no. 1 (November 11, 2019): 1–5. http://dx.doi.org/10.1080/22020586.2019.12072953.

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Sheppard, S., SA Occhipinti, and DR Nelson. "Intracontinental reworking in the Capricorn Orogen, Western Australia: the 1680 – 1620 Ma Mangaroon Orogeny*." Australian Journal of Earth Sciences 52, no. 3 (June 2005): 443–60. http://dx.doi.org/10.1080/08120090500134589.

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SELWAY, K., S. SHEPPARD, A. THORNE, S. JOHNSON, and P. GROENEWALD. "Identifying the lithospheric structure of a Precambrian orogen using magnetotellurics: The Capricorn Orogen, Western Australia." Precambrian Research 168, no. 3-4 (February 2009): 185–96. http://dx.doi.org/10.1016/j.precamres.2008.09.010.

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Ley-Cooper, A. Yusen, Tim Munday, and Tania Ibrahimi. "Determining cover variability in the Capricorn Orogen with airborne EM." ASEG Extended Abstracts 2015, no. 1 (December 2015): 1–6. http://dx.doi.org/10.1071/aseg2015ab105.

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Banaszczyk, Sasha, David Annetts, and Michael Dentith. "Towards resolving dipping contacts undercover in the Capricorn Orogen using AEM." ASEG Extended Abstracts 2016, no. 1 (December 2016): 1–8. http://dx.doi.org/10.1071/aseg2016ab167.

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Johnson, S. P., A. M. Thorne, I. M. Tyler, R. J. Korsch, B. L. N. Kennett, H. N. Cutten, J. Goodwin, et al. "Crustal architecture of the Capricorn Orogen, Western Australia and associated metallogeny." Australian Journal of Earth Sciences 60, no. 6-7 (October 2013): 681–705. http://dx.doi.org/10.1080/08120099.2013.826735.

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Pirajno, F., and S. A. Occhipinti. "Three Palaeoproterozoic basins—Yerrida, Bryah and Padbury—Capricorn Orogen, Western Australia." Australian Journal of Earth Sciences 47, no. 4 (August 2000): 675–88. http://dx.doi.org/10.1046/j.1440-0952.2000.00800.x.

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Dissertations / Theses on the topic "Capricorn Orogen"

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Jahn, Inalee C. "Crustal evolution of the Capricorn Orogen, Western Australia." Thesis, Curtin University, 2018. http://hdl.handle.net/20.500.11937/75146.

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The Capricorn Orogen, Western Australia records the Palaeoproterozoic convergence and collision of the Archaean Yilgarn and Pilbara Cratons during the formation of the West Australian Craton, and over one billion years of subsequent intracontinental crustal reworking. This study uses an integrated analytical study of the isotopic and geochemical systematics in zircon from Capricorn Orogen granites in order to identify the magmatic sources and the fundamental geodynamic processes that have contributed to its crustal evolution.
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Meadows, Holly Rachael. "Mineral Geochemistry, Deformation and Ore Fluid Evolution in the Capricorn Orogen, WA." Thesis, Curtin University, 2017. http://hdl.handle.net/20.500.11937/69391.

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The Capricorn Orogen, Western Australia, has a complex history spanning over a billion years. Regional deformation, metamorphism and magmatism has induced migration of ore fluids into local ore deposits. Mineral geochemistry records the chemical environment of ore precipitation and is employed to determine the source of fluids and age of mineral growth. Integration of mineral geochemistry into complex geological systems is used to identify overprinting fluid and deformation events, and evaluate the formation of ore.
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Armandola, Sonia. "Petrochronology of detrital accessory phases & implications for the evolution of the Capricorn Orogen (Western Australia)." Thesis, Curtin University, 2018. http://hdl.handle.net/20.500.11937/76385.

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Coupled geochemical and geochronological analysis of detrital zircon from sedimentary rocks of Western Australia’s Capricorn Orogen are used to determine the stratigraphy, provenance and age of the Palaeoproterozoic Yerrida Basin and Mesoproterozioc Edmund and Collier basins. The results provide constraints on the tectonic evolution of the Capricorn Orogen, refine the record of continental amalgamation of the West Australian craton and establish the unroofing history of basement rocks during subsequent reworking.
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Fielding, Imogen Olivia Heather. "In Situ U–Pb Geochronology of Hydrothermal Xenotime and Monazite to Date Gold Mineralization in the Northern Capricorn Orogen, Western Australia." Thesis, Curtin University, 2018. http://hdl.handle.net/20.500.11937/75055.

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In situ SHRIMP U-Pb geochronology of xenotime and monazite is a powerful method for dating hydrothermal gold mineralization. This method has been applied to the northern Capricorn Orogen of Western Australia, providing a new geological framework that reveals a more complex mineralization history than previously recognised. The study has identified three gold mineralization events (2.4, 1.77 and 1.68 billion years ago) and demonstrates a direct link between fault reactivation and hydrothermal fluid flow during orogeny.
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Macfarlane, J. E. "Anisotropic forward modelling of fluid injection and phase angles exceeding 90o in magnetotellurics." Thesis, 2012. http://hdl.handle.net/2440/95175.

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This item is only available electronically.
Electrical anisotropy, defined as the directional dependence of electrical conductivity within a medium, causes changes in the electromagnetic signal measured by magnetotellurics (MT) and as such is an important property to consider when interpreting MT data. This study concentrates on replicating the MT response measured at two distinctively different geological settings using a series of 2 dimensional anisotropic forward models. Results presented in this study show that 2-dimensional anisotropic forward modelling is able to account for subtle differences in subsurface anisotropic resistivity structures. Specifically, 2-dimensional anisotropic forward modelling is able to reproduce the measured difference in MT response between pre- and post fluid injection conditions at the Paralana Geothermal System using an anisotropic fluid volume. A second application in constraining the source of the anomalous phase angles exceeding 90o observed in MT measurements of the Capricorn Orogen, shows that 2-dimensional anisotropic MT models are not able to produce phase angles exceeding 90o in the MT data which has its electric field orientated perpendicular to the geoelectric strike. These findings provide a case supporting the use of 2-dimensional anisotropic forward modelling as a means of modelling changes caused by the flow of a fluid through the crust. In addition, they also highlight issues associated with its application to complicated structures perpendicular to the strike of the profile.
Thesis (B.Sc.(Hons)) -- University of Adelaide, School of Earth and Environmental Sciences, 2012
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Conference papers on the topic "Capricorn Orogen"

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Soerensen, C., S. Spinks, R. Thorne, and T. Munday. "Targeting Supergene Manganese in the Capricorn Orogen Using Airborne EM." In 2nd Conference on Geophysics for Mineral Exploration and Mining. Netherlands: EAGE Publications BV, 2018. http://dx.doi.org/10.3997/2214-4609.201802693.

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Banaszczyk, S., D. Annetts, M. Dentith, and A. Aitken. "Characterising the AEM response of Base Metal Deposits in the Capricorn Orogen through Synthetic Modelling." In 80th EAGE Conference and Exhibition 2018. Netherlands: EAGE Publications BV, 2018. http://dx.doi.org/10.3997/2214-4609.201800824.

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Piña-Varas, P., and M. Dentith. "3-D Magnetotelluric Study across the Capricorn Orogen (Western Australia) and its Implications for Mineral Exploration." In 2nd Conference on Geophysics for Mineral Exploration and Mining. Netherlands: EAGE Publications BV, 2018. http://dx.doi.org/10.3997/2214-4609.201802712.

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Armandola, Sonia. "CRUSTAL EVOLUTION OF THE CAPRICORN OROGEN (WA): INSIGHT FROM A PROVENANCE STUDY OF ITS MAJOR MESOPROTEROZOIC SEDIMENTARY BASINS." In GSA Annual Meeting in Seattle, Washington, USA - 2017. Geological Society of America, 2017. http://dx.doi.org/10.1130/abs/2017am-301147.

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