Leif H. Cox, Ph.D.

Affiliations: 
2007 University of Utah, Salt Lake City, UT 
Area:
Geophysics, Remote Sensing
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"Leif Cox"
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Parents

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Michael S. Zhdanov grad student 2007 University of Utah
 (Three-dimensional inversion of frequency domain airborne electromagnetic data.)
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Publications

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Alfouzan FA, Alotaibi AM, Cox LH, et al. (2020) Spectral Induced Polarization Survey with Distributed Array System for Mineral Exploration: Case Study in Saudi Arabia Minerals. 10: 769
Zhdanov MS, Alfouzan F, Cox LH, et al. (2019) From airborne to effective-medium spectral IP mineral exploration: A case study in Saudi Arabia Seg Technical Program Expanded Abstracts
Cox LH, Zhdanov MS, Alfouzan F. (2019) Inductive coupling in IP measurements and applications to 3D distributed array field data inversion Seg Technical Program Expanded Abstracts
Zhdanov MS, Alfouzan FA, Cox L, et al. (2018) Large-Scale 3D Modeling and Inversion of Multiphysics Airborne Geophysical Data: A Case Study from the Arabian Shield, Saudi Arabia Minerals. 8: 271
Zhdanov M, Endo M, Cox L, et al. (2018) Effective-Medium Inversion of Induced Polarization Data for Mineral Exploration and Mineral Discrimination: Case Study for the Copper Deposit in Mongolia Minerals. 8: 68
Endo M, Cox L, Sunwall D, et al. (2017) 3D inversion of the time-domain electromagnetic data for exploration of submarine hydrothermal deposits using the GEMTIP model Seg Technical Program Expanded Abstracts
Cuma M, Zhdanov M, Cox L. (2016) Large-scale parallel 3D inversion of frequency and time-domain AEM data Seg Technical Program Expanded Abstracts
Zhdanov M, Endo M, Burtman V, et al. (2016) Effective-medium inversion of induced-polarization data for mineral exploration and mineral discrimination: Case study for the copper deposit in Mongolia Seg Technical Program Expanded Abstracts
Ley-Cooper AY, Viezzoli A, Guillemoteau J, et al. (2015) Airborne electromagnetic modelling options and their consequences in target definition Exploration Geophysics. 46: 74-84
Cox LH, Zhdanov MS. (2014) 3D airborne electromagnetic inversion using a hybrid edge-based FE-IE method with moving sensitivity domain Seg Technical Program Expanded Abstracts
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