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“Approximate semianalytical solutions for the electromagnetic response of a dipping-sphere interacting with conductive overburden”, GeophysicsGeophysics, vol. 81, pp. E265-E277, 2016.
, “Approximate semianalytical solutions for the electromagnetic response of a dipping-sphere interacting with conductive overburden”, Geophysics, vol. 81, pp. E265-E277, 2016.
, GeoRef, Copyright 2018, American Geological Institute.2016-076679Reid Mahaffy
“Benefits of using multi-component transmitter-receiver systems for determining geometrical parameters of a dipole conductor from single-line anomalies”, Exploration Geophysics (Melbourne), vol. 47, pp. 1-12, 2016.
, GeoRef, Copyright 2018, American Geological Institute.2016-087939synthetic data
“Case histories illustrating the characteristics of the HeliGEOTEM system”, Exploration Geophysics (Melbourne), vol. 40, pp. 246-256, 2009.
, GeoRef, Copyright 2018, American Geological Institute.2010-060625data qualityDIGHEMGEOTEMHeliGEOTEMNepean MineRESOLVESH5113-3135
“Case histories illustrating the characteristics of the HeliGEOTEM system”, Exploration GeophysicsExploration Geophysics, vol. 40, pp. 246-256, 2009.
, “Case history of combined airborne time-domain electromagnetics and power-line field survey in Chibougamau, Canada”, GeophysicsGeophysics, vol. 75, pp. B67-B72, 2010.
, “Combining spatial components and Hilbert transforms to interpret ground-time-domain electromagnetic data”, Geophysics, vol. 80, pp. E237-E246, 2015.
, GeoRef, Copyright 2018, American Geological Institute.2015-104673Coulon Field
“Combining spatial components and Hilbert transforms to interpret ground-time-domain electromagnetic data”, GeophysicsGeophysics, vol. 80, pp. E237-E246, 2015.
, “A constrained potential field data interpretation of the deep geometry of the Sudbury structure”, Canadian Journal of Earth SciencesCanadian Journal of Earth Sciences, vol. 51, pp. 715-729, 2014.
, “A constrained potential field data interpretation of the deep geometry of the Sudbury Structure”, Canadian Journal of Earth Sciences = Revue Canadienne des Sciences de la Terre, vol. 51, pp. 715-729, 2014.
, GeoRef, Copyright 2018, American Geological Institute.2014-058234Elliot Lake GroupSandcherry Fault
“Contrast source inversion (CSI) method to cross-hole radio-imaging (RIM) data - Part 2: a complex synthetic example and a case study”, Journal of Applied Geophysics, vol. 150, pp. 93-100, 2018.
, GeoRef, Copyright 2018, American Geological Institute.818467-9contrast source inversionradio-imaging
“Crustal-scale structure and deformation of Lu-Zong ore district; joint interpretation from integrated geophysical data”, in Mining and minerals exploration interpretation, vol. 3, Society of Exploration Geophysicists, Tulsa, OK, United States, 2015, pp. SL39-SL61.
, GeoRef, Copyright 2018, American Geological Institute.2015-073919LHTD FaultLu-Zong mining districtTangjiayuan-Zhuanaqiao FaultYijing-Taojiaxiang Fault
“Decomposing the electromagnetic response of magnetic dipoles to determine the geometric parameters of a dipole conductor”, Exploration Geophysics (Melbourne), vol. 47, pp. 13-23, 2016.
, GeoRef, Copyright 2018, American Geological Institute.2016-087940
“Detection of alteration at the Millennium uranium deposit in the Athabasca Basin; a comparison of data from two airborne electromagnetic systems with ground resistivity data”, Geophysical ProspectingGeophysical Prospecting, vol. 58, pp. 1147-1158, 2010.
, GeoRef, Copyright 2018, American Geological Institute.2013-050877MEGATEMMillennium DepositTEMPEST system
“The effect of dielectric permittivity on the fields radiated from a radio-frequency electric dipole in a homogeneous whole space”, GeophysicsGeophysics, vol. 81, pp. K1-K8, 2016.
, “Exploring for copper–gold deposits exhibiting a wide range of conductivities with time–domain electromagnetics at Opemiska, Canada”, Sixth Decennial International Conference on Mineral Exploration. Toronto, ON, 2017.
, “Ground resistivity method and DCIP2D forward and inversion modelling to identify alteration at the Midwest uranium deposit, northern Saskatchewan, Canada”, Exploration GeophysicsExploration Geophysics, 2016.
, “Ground resistivity method and DCIP2D forward and inversion modelling to identify alteration at the Midwest uranium deposit, northern Saskatchewan, Canada”, Exploration GeophysicsExploration Geophysics, vol. 48, pp. 383-393, 2017.
, GeoRef, Copyright 2018, American Geological Institute.822091-4DCIP2Dforward modelsMidwest Depositsynthetic data
“The impact of magnetic viscosity on time-domain electromagnetic data from iron oxide minerals embedded in rocks at Opemiska, Québec, Canada”, GeophysicsGeophysics, vol. 82, pp. B165-B176, 2017.
, “The impact of magnetic viscosity on time-domain electromagnetic data from iron oxide minerals embedded in rocks at Opemiska, Quebec, Canada”, Geophysics, vol. 82, pp. B165-B176, 2017.
, GeoRef, Copyright 2018, American Geological Institute.2017-071398Chapais QuebecOpemiska Mine
“Magmatic, hydrothermal and ore element transfer processes of the southeastern Archean Superior Province implied from electrical resistivity structure”, Gondwana Research, vol. 105, pp. 84-95, 2022.
, “Metalliferous mining geophysics — State of the art after a decade in the new millennium”, GeophysicsGeophysics, vol. 76, pp. W31-W50, 2011.
, “Modelling and straight-ray tomographic imaging studies of cross-hole radio-frequency electromagnetic data for mineral exploration”, Geophysical ProspectingGeophysical Prospecting, 2017.
, “Modelling and straight-ray tomographic imaging studies of cross-hole radio-frequency electromagnetic data for mineral exploration”, Geophysical ProspectingGeophysical Prospecting, vol. 66, pp. 282-299, 2018.
, GeoRef, Copyright 2018, American Geological Institute.818900-3
“Modelling and straight-ray tomographic imaging studies of cross-hole radio-frequency electromagnetic data for mineral exploration”, Geophysical ProspectingGeophysical Prospecting, vol. 66, pp. 282-299, 2017.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.20172203706557Amplitude tomographyElectromagneticElectromagnetic modellingElectromagnetic tomographyRadio frequency rangeRadio imaging methodsStraight ray tomographyThree dimensional finite elements