P. Schmoldt, PhD - MTNet - DIAS

P. Schmoldt, PhD - MTNet - DIAS P. Schmoldt, PhD - MTNet - DIAS

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Bibliography Morgan, J. W., and E. Anders (1980), Chemical composition of Earth, Venus, and Mercury, Proceedings of the National Academy of Sciences of the United States of America, 77(12), 6973–6977. MTNet (2010), http://mtnet.info/main/source.html. Mueller, M., R.D. Sdrolias, C. Gaina, and W. Roest (2008), Age, spreading rates and spreading symmetry of the world’s ocean crust, Geochemistry, Geophysics, Geosystems, 9(4), Q04,006, doi:10.1029/2007GC001743. Muller, M., et al. (2009), Lithospheric structure, evolution and diamond prospectivity of the rehoboth terrane and western kaapvaal craton, southern africa: Constraints from broadband magnetotellurics, Lithos, 112, 93 – 105, doi:DOI:10.1016/j.lithos.2009.06. 023. Muñoz, G., W. Heise, A. Paz, E. Almeida, F. Montiero Santos, and J. Pous (2005), New magnetotelluric data through the boundary between the Ossa Morena and CentroIberian zones, Geologica Acta, 3(3), 215–223. Muñoz, G., A. Mateus, J. Pous, W. Heise, F. Monteiro Santos, and E. Almeida (2008), Unraveling middle-crust conductive layers in Paleozoic Orogens through 3D modeling of magnetotelluric data: The ossa-morena zone case study (SW Iberian Variscides), Jounal of Geophysical research, 113(B6), B06,106, doi:10.1029/2007JB004987. Muñoz, J. (1992), Evolution of a continental collision belt: Ecors-pyrenees crustal balanced cross-section, in Thrust Tectonics, edited by McClay, pp. 235–246, Chapman and Hall, London. Nabighian, M. N. (1987), Electromagnetic Methods in Applied Geophysics - Theory, vol. 1, Society of Exploration Geophysics, Tulsa, OK. National Oceanic and Atmospheric Administration (NOAA) (2010), Lunar day: Animation of lunar day, last revision: March 25, 2008. Neal, S. L., R. L. Mackie, J. C. Larsen, and A. Schultz (2000), Variations in the electrical conductivity of the upper mantle beneath North America and the Pacific Ocean, Journal of Geophysical Research, 105, 8229–8242. Nesbitt, B. (1993), Electrical resistivity of crustal fluids, Journal of Geophysical Research, 98, 4301–4310. Newman, G., and D. Alumbaugh (1995), Frequency-domain modeling of airborne electromagnetic responses using staggered finite differences, Geophysical Prospecting, 43, 1021–1042. 350

Bibliography Newman, G., and G. Hohmann (1988), Transient electromagnetic response of highcontrast prisms in a layered Earth, Geophysics, 53, 691–706. Newman, G. A., and D. Alumbaugh (1997), Three-dimensional massively parallel electromagnetic - I. theory, Geophysical Journal International, 128, 345–354. Newman, G. A., and D. Alumbaugh (2000), Three-dimensional magnetotelluric inversion using non-linear conjugate gradients, Geophysical Journal International, 140, 410– 424. Newman, G. A., and D. L. Alumbaugh (2002), Three-dimensional induction logging problems: Part i. an integral equation solution and model comparisons, Geophysics, 67, 484–491. Newman, G. A., and P. Boggs (2004), Solution accelerators for large-scale threedimensional electromagnetic inverse problems, Inverse Problems, 20, S151–S170. Newman, G. A., S. Recher, B. Tezkan, and F. M. Neubauer (2003), Case history: 3D inversion of a scalar radio magnetotelluric field data set, Geophysics, 68(3), 791–802, doi:10.1190/1.1581032. Niblett, E. R., and C. Sayn-Wittgenstein (1960), Variation of electrical conductivity with depth by the magneto-telluric method, Geophysics, 25, 998–1008. Nolet, G. (2008), A breviary of seismic tomography, Cambridge University Press, Cambridge, UK. Nover, G. (2005), Electrical properties of crustal and mantle rocks: A review of laboratory measurements and their explanation, Surveys in Geophysics, 26, 593–651. Nuttall, A. (1981), Some windows with very good sidelobe behavior, Acoustics, Speech and Signal Processing, IEEE Transactions on, 29(1), 84–91. Olhoeft, G. R. (1985), Low-frequency electrical properties, Geophysics, 50(12), 2492– 2503, doi:10.1190/1.1441880. Olsen, N. (1998), The electrical conductivity of the mantle beneath Europe derived from C-responses from 3 to 720 hr, Geophysical Journal International, 133, 298–308. Oni, E., and A. O. Alabi (1972), Preliminary results of the upper mantle conductivity structure in Nigeria, Physics of the Earth and Planetary Interiors, 5, 179–183. Onwumechili, C. A., and C. E. Agu (1982), Regional variations of equatorial electrojet parameters, Annales de Geophysique, 38, 307–313. Oristaglio, M. J., and B. R. Spies (1999), Three Dimensional Electromagnetics, Geophysical Developments, vol. 7, Society of Exploration Geophysics. 351

Bibliography<br />

Morgan, J. W., and E. Anders (1980), Chemical composition of Earth, Venus, and Mercury,<br />

Proceedings of the National Academy of Sciences of the United States of America,<br />

77(12), 6973–6977.<br />

<strong>MTNet</strong> (2010), http://mtnet.info/main/source.html.<br />

Mueller, M., R.D. Sdrolias, C. Gaina, and W. Roest (2008), Age, spreading rates and<br />

spreading symmetry of the world’s ocean crust, Geochemistry, Geophysics, Geosystems,<br />

9(4), Q04,006, doi:10.1029/2007GC001743.<br />

Muller, M., et al. (2009), Lithospheric structure, evolution and diamond prospectivity of<br />

the rehoboth terrane and western kaapvaal craton, southern africa: Constraints from<br />

broadband magnetotellurics, Lithos, 112, 93 – 105, doi:DOI:10.1016/j.lithos.2009.06.<br />

023.<br />

Muñoz, G., W. Heise, A. Paz, E. Almeida, F. Montiero Santos, and J. Pous (2005), New<br />

magnetotelluric data through the boundary between the Ossa Morena and CentroIberian<br />

zones, Geologica Acta, 3(3), 215–223.<br />

Muñoz, G., A. Mateus, J. Pous, W. Heise, F. Monteiro Santos, and E. Almeida (2008),<br />

Unraveling middle-crust conductive layers in Paleozoic Orogens through 3D modeling<br />

of magnetotelluric data: The ossa-morena zone case study (SW Iberian Variscides),<br />

Jounal of Geophysical research, 113(B6), B06,106, doi:10.1029/2007JB004987.<br />

Muñoz, J. (1992), Evolution of a continental collision belt: Ecors-pyrenees crustal balanced<br />

cross-section, in Thrust Tectonics, edited by McClay, pp. 235–246, Chapman<br />

and Hall, London.<br />

Nabighian, M. N. (1987), Electromagnetic Methods in Applied Geophysics - Theory,<br />

vol. 1, Society of Exploration Geophysics, Tulsa, OK.<br />

National Oceanic and Atmospheric Administration (NOAA) (2010), Lunar day: Animation<br />

of lunar day, last revision: March 25, 2008.<br />

Neal, S. L., R. L. Mackie, J. C. Larsen, and A. Schultz (2000), Variations in the electrical<br />

conductivity of the upper mantle beneath North America and the Pacific Ocean, Journal<br />

of Geophysical Research, 105, 8229–8242.<br />

Nesbitt, B. (1993), Electrical resistivity of crustal fluids, Journal of Geophysical Research,<br />

98, 4301–4310.<br />

Newman, G., and D. Alumbaugh (1995), Frequency-domain modeling of airborne electromagnetic<br />

responses using staggered finite differences, Geophysical Prospecting, 43,<br />

1021–1042.<br />

350

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