Albat, H.M., Shatter cone/bedding interrelationship in the Vredefort Structure: evidence for meteorite impact? S. Afr. J. Geol., 91(1).
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1 REFERENCES Albat, H.M., Shatter cone/bedding interrelationship in the Vredefort Structure: evidence for meteorite impact? S. Afr. J. Geol., 91(1) Barbosa, V.C.F., Silva, J.B.C., Medeiros, W.E., Stability analysis and improvement of structural index estimation in Euler deconvolution. Geophysics, Blakely, R.J., Simpson, R.W., Approximating edges of source bodies from magnetic and gravity anomalies. Geophysics, Blakely, R.J., Potential Theory in Gravity and Magnetic Applications. 2 nd edition, Cambridge University Press, Cambridge, 441 p. Borradaile, G.J., Henry, B., Tectonic applications of magnetic susceptibility and its anisotropy. Earth Science Reviews, Bournas, N., Galdeano, A., Hamoudi, M., Baker, H., Interpretation of the aeromagnetic map of Eastern Hoggar (Algeria) using the Euler deconvolution, analytic signal and local wavenumber methods. J. Afr. Earth. Sci., Bracewell, R., The Fourier Transform and its applications: McGraw-Hill, New York, 381 p. Butler, R. F., Paleomagnetism: Magnetic Domains to Geologic Terranes. Electronic edition, University of Arizona, 237 p. Carporzen, L., Gilder, S.A., Hart, R.J., Paleomagnetism of the Vredefort (South Africa) Meteorite Crater: Implications for Craters on Mars. Nature,
2 Carporzen, L., Gilder, S.A., Hart, R.J., Origin and implications of two Verwey transitions in the basement rocks of the Vredefort meteorite crater, South Africa. Earth and Planetary Science Letters, Cloete, M., Hart, R.J., Schmid, H.K., Drury, M., Demanet, C.M., Vijaya, S.K., Characterization of magnetite particles in shocked quartz by means of electron- and magnetic force microscopy, Vredefort, South Africa. Contributions to Mineralogy and Petrology, Cooper, G.R.J., The automatic interpretation of geophysical data, Seventh SAGA Biennial technical Meeting and Exhibition, Drakensberg Mountains, South Africa. Corner, B., Wilsher, W.A., Structure of the Witwatersrand basin Derived from interpretation of Aeromagnetic and Gravity Data. In: Exploration 87. Geol. Surv. Can. Spec Corner, B., Durrheim, R.J., Nicolaysen, L.O., Relationships between the Vredefort structure and the Witawatersrand basin within the tectonic framework of the Kaapvaal craton as interpreted from regional gravity and aeromagnetic data. Tectonophysics, Corner, B., Lecture notes for geophysics honours students on gravity and magnetic potential fields. The University of the Witwatersrand, Johannesburg., 180 p. Dressler, B.O., Reimold, W.U., Order or chaos? Origin and mode of emplacement of breccias in floors of large impact structures. Earth-Science Reviews, Dunlop, D.J., O. Ozdemir., Rock magnetism: fundamentals and frontiers, Cambridge Univ. Press, Cambridge, 573 p. 119
3 Durrheim, R. J, Recent reflection seismic developments in the Witwatersrand basin, In: M. Barazangi and L. Brown (eds), Reflection Seismology: a Global Perspective, Am. Geophys. Union, Geodyn. Ser, 13, Fairhead, J.D., Bennet, K.J., Gordon, D.R.H., Huang, D., Euler: Beyond the Black Box : 64 th Ann. Iternat. Mtg., Soc. Expl. Geophys., Extended Abstracts, Flowers, R.M., Moser, D.E., Hart, R.J., Evolution of the Amphibolite-Granulite Facies transition exposed by the Vredefort impact structure, Kaapvaal Craton, South Africa. Journal of Geology, Gibert, D., Galdeano, A., A computer program to perform transformations of gravimetric and aeromagnetic surveys. Computer & Geosciences, 11(5) Gibson, R.L., Reimold, W.U., Shock pressure distribution in the Vredefort impact structure, South Africa. In: T. Kenkman., F. Horz., and A. Deutsch (eds), Large meteorite impacts III: Geological Society of America Special Paper, Gilder, S, LeGoff, M, Chervin, J. C., Peyronneau, J., Magnetic properties of single and multi-domain magnetite under pressures from 0 to 6 GPa, Geophysical Research Letters, 31. L Grieve, R.A.F, Coderre, J.M, Robertson, P.B., Alexopoulos, J., Microscopic planar deformation features in quartz of the Vredefort structure: Anomalous but still suggestive of an impact origin. Tectonophysics, Hargraves, R. B., Paleomagnetic evidence relevant to the origin of the Vredefort ring. Journal of Geology,
4 Hart, R.J., Andreoli, M.A.G., Tredoux, M., de Wit, M.J., Geochemistry across an exposed section of Archean crust at Vredefort: With implications for mid-crustal discontinuities. Chemical Geology, Hart, R.J., Andreoli, M.A.G., Reimold, W.U., Tredoux, M., Aspects of the dynamic and thermal metamorphic history of the Vredefort structure: implications for its origin. Tectonophysics, Hart, R.J., Hargraves, R.B., Andreoli, M.A.G., Tredoux, M., Doucoure, C.M., Magnetic anomaly near the center of the Vredefort structure; implications for impactrelated magnetic signatures. Geology, Hart, R.J., McDonald, I., Tredoux, M., de Wit, M.J., Carlson, R.W., Andreoli, M.A.G., Ashwal, L.D., 2004.New PGE and Re/Os-isotope data from lower crustal sections of the Vredefort Dome and a reinterpretation of its crust on edge profile, in: M.J. de Wit, S.H. Richardson, L.D. Ashwal (Eds), Kaapvaal Craton-Special Publications, S. A. Journal of Geology, Henkel, H., Reimold, W.U., Integrated geophysical modeling of a giant, complex impact structure; anatomy of the Vredefort Structure. Tectonophysics, Hertzsch, J.M., Ivanov, B.A., Kenkmann, T., Numerical Simulation of Shock Propagation. In: C. Koeberl and H. Henkel (eds), Heterogeneous Solids, Impact Tectonics, Impact Studies Series, Springer Berlin Heidelberg (online version), 3, Hrouda, F., Magnetic anisotropy of rocks and its application in geology and geophysics. Geophysical Surveys 5, Huang, D., Versnel, P.A., Depth estimation algorithm applied to FTG data. In: 70 th Anniversary International Meeting. Society of Exploration Geophysics,
5 Jackson, G.M., Paleomagnetic study and magnetic modeling of the Vredefort dome, B.Sc. honors. thesis, University of the Witwatersrand, Johannesburg, South Africa, 46 p. Jacobsen, B.H., A case for upward continuation as a standard separation filter for potential maps. Geophysics, Jelinek, V., Characterization of the magnetic fabrics of rocks. Tectonophysics, 79. T63-T67. Kamo, S.L., Reimold, W.U., Krogh, T.E., Colliston, W.P., A Ga age for the Vredefort impact event and a first report of shock metamorphosed zircons in pseudotachylitic breccias and Granophyre. Earth and Planetary Science Letters, Lana, C., Gibson, R.L., Kisters, A.F.M., Reimold, U.W., Archean crustal structure of the Kaapvaal craton, South Africa evidence from Vredefort dome. Earth and Planetary Science Letters, Layer, P.W., Kröner, A., McWilliams, M., Clauer, N., Regional magnetic overprinting of Witwatersrand Supergroup sediments, South Africa. Journal of Geophysical Research, 93(B3) Lawson, C.L., Hanson, R.J., Solving least squares problems: Prentice-Hall, Inc. Lilly, P.A., Shock metamorphism in the Vredefort collar: evidence for internal shock sources. J. Geophys. Res., Maus, S., Macmillan, S., Chernova, T., Choi, S., Golovkov, V., Lesur, V., Lowes, F., Luhr, H., Mai, W., McLean, S., Olsen, N., Rother, M., Sabaka, T., Thomson, A., 122
6 Zvereva, T., The 10 th generation international geomagnetic reference field. Physics of the Earth and Planetary Interiors, Moser, D.E., Dating the shock wave and thermal imprint of the giant Vredefort impact, South Africa. Geology, Moser, D.E., Hart, R.J., Flowers, R.M., Birth of the Kaapvaal tectosphere 3.08 billion years ago. Science, Moskowitz, B.M., Jackson, M., Kissel, C., Low-temperature magnetic behavior of titanomagnetites. Earth and Planetary Science Letters, Mushayandebvu, M.F., van Driel, P., Reid, A.B., Fairhead, J.D, Magnetic source parameters of two-dimensional structures using extended Euler deconvolution. Geophysics, 66 (3) Muundjua, M., Hart, R.J., Gilder, S.A., Carporzen, L., Galdeano, A., Magnetic Imaging of the Vredefort Impact crater, South Africa. Earth and Planetary Science Letters Nabighian, M.N., The Analytic signal of two-dimential magnetic bodies with polygonal cross-sections: Its properties and use for automated anomaly interpretation. Geophysics, Rajagopalan, S., The use of Automatic gain control to display vertical magnetic gradient data. Exploration Geophysics, Rajagopalan, S., Milligan, P., Image Enhancement of Aeromagnetic data using automatic gain control. Exploration Geophysics,
7 Reid, A.B., Allsop, J.M., Granser, H., Millet, A.J., Somerton, I.W., Magnetic interpretation in three dimensions using Euler deconvolution. Geophysics, Reimold, W.U., The controversial microdeformations in quartz from the Vredefort structure, South Africa. S. Afr. J. Geol., Reimold, W.U., Colliston, W.P., Pseudotachylites of the Vredefort Dome and the surrounding Witwatersrand Basin, South Africa. In: B.O. Dressler., R.A.F. Grieve., and V.L. Sharpton (eds), Large Meteorite Impacts and Planetary Evolution: Geological Society of America Special Paper, Colarado. 293, Reimold, W.U., Gibson, R.L., Geology and evolution of the Vredefort impact structure, South Africa. J. Afr. Earth Sci., Roest, W.R., Verhoef, J., Pilkington, M., Magnetic interpretation using 3-D analytic signal. Geophysics, Salminen, J., Pesonen, L.J., Reimold, W.U., Gibson, R.L., New paleomagnetic results for the Vredefort impact structure a pathway into Southern Africa s geological past, 33rd Annual Lunar and Planetary Science Conference, March 11-15, Houston, Texas, abstract no Schreyer, W., Metamorphism and fluid inclusions in the basement of the Vredefort dome, South Africa: guidelines to the origin of the structure. J. Petrol., Slawson, W.F., Vredefort core: A cross section of the upper crust? Cosmochim. Acta., Geochim. Smith, W. H. F., Wessel, P., (1990), Gridding with Continuous Curvature Splines in Tension. Geophysics, 55(3)
8 Stepto, D., The geology and gravity field in the central core of the Vredefort structure. Tectonophysics, Stevens, G., Gibson R.L., Droop, G.T.R., Mid-crustal granulite facies metamorphism in the central Kaapvaal craton: The Bushveld complex connection. Precambrian Research, Schwartz, L., Theorie des distributions. Hermann Ed, Paris, 418 p. Telford, W.M., Geldart, L.P., Sheriff, R.E., Applied geophysics: Cambridge, United Kingdom, Cambridge University Press, 770 p. Therriault, A.M., Reid, A.M., Reimold, W.U., 1997, The Vredefort Structure: Original size and significance for geological evolution of the Witwatersrand Basin. Meteoritics & Planetary Science, Thompson, D.T., EULDPH-New technique for making computer-assisted depth estimates from magnetic data. Geophysics, Thurston, J.B., Smith, R.S., Automatic conversion of magnetic data to depth, dip, susceptibility contrast using the SPITM method. Geophysics, Tredoux, M., Hart, R.J., Carlson, R.W., Shirey, S.B., Ultramafic rocks at the centre the Vredefort structure: further evidence for the crust-on-edge model. Geology, Verwey, E.J., Electronic conduction of magnetite (Fe 3 O 4 ) and its transition at low temperatures. Nature, Wever, T., The Conrad discontinuity and the top of the reflective lower crust do they coincide? Tectonophysics,
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