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“Case histories illustrating the characteristics of the HeliGEOTEM system”, Exploration GeophysicsExploration Geophysics, vol. 40, pp. 246-256, 2009.
, “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 history of combined airborne time-domain electromagnetics and power-line field survey in Chibougamau, Canada”, GeophysicsGeophysics, vol. 75, pp. B67-B72, 2010.
, “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
“Sensitivity cross-sections in airborne electromagnetic methods using discrete conductors”, Exploration GeophysicsExploration Geophysics, 2010.
, “Metalliferous mining geophysics — State of the art after a decade in the new millennium”, GeophysicsGeophysics, vol. 76, pp. W31-W50, 2011.
, “Sensitivity cross-sections in airborne electromagnetic methods using discrete conductors”, Exploration Geophysics (Melbourne), vol. 43, pp. 95-103, 2012.
, GeoRef, Copyright 2018, American Geological Institute.2012-094442conductorsHeliGEOTEMMEGATEM
“Using combinations of spatial gradients to improve the detectability of buried conductors below or within conductive material”, Geophysics, vol. 78, pp. E19-E31, 2012.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.20153401187660Conductivity distributionsCylindrical symmetryElectromagnetic systemsMassive sulfide depositsSpatial derivativesSpatial gradientsUnexploded ordnanceVertical conductor
“Using the discrete conductor model to extend the concept of airborne electromagnetic footprint”, in 34th international geological congress; abstracts, vol. 34, [International Geological Congress], [location varies], International, 2012, p. 1804.
, GeoRef, Copyright 2018, American Geological Institute.2014-017276discrete conductor modelelectromagnetic profilesfootprint sectionsmoving footprint
“Precision requirements for specifying transmitter waveforms used for modelling the off-time electromagnetic response”, Exploration Geophysics (Melbourne), vol. 44, pp. 1-5, 2013.
, GeoRef, Copyright 2018, American Geological Institute.2014-036846exponential decaytime decay constantVTEM
“Qualitative geophysical interpretation of the Sudbury Structure”, Interpretation (Tulsa), vol. 1, pp. T25-T43, 2013.
, GeoRef, Copyright 2018, American Geological Institute.2013-088675Onwatin Formation
“The ratio of B-field and dB/dt time constants from time-domain electromagnetic data; a new tool for estimating size and conductivity of mineral deposits”, Exploration Geophysics (Melbourne), vol. 44, pp. 238-244, 2013.
, GeoRef, Copyright 2018, American Geological Institute.2014-067978B-fieldEagle's Nest DepositVTEM
“Using combinations of spatial gradients to improve the detectability of buried conductors below or within conductive material”, GeophysicsGeophysics, vol. 78, pp. E19-E31, 2013.
, “Using combinations of spatial gradients to improve the detectability of buried conductors below or within conductive material”, Geophysics, vol. 78, pp. E19-E31, 2013.
, GeoRef, Copyright 2018, American Geological Institute.2013-030496spatial gradients
“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
“A procedure for collecting electromagnetic data using multiple transmitters and receivers capable of deep and focused exploration”, Geophysics, vol. 80, pp. E1-E10, 2014.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.20150900586873Controlled Source Electro-MagneticElectromagnetic dataInterpretabilityMultiple receiversMultiple transmittersSignaltonoise ratio (SNR)Vertical componentVisualization technique
“Combining spatial components and Hilbert transforms to interpret ground-time-domain electromagnetic data”, GeophysicsGeophysics, vol. 80, pp. E237-E246, 2015.
, “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
“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
“A multiple transmitter and receiver electromagnetic system for improved target detection”, GeophysicsGeophysics, vol. 80, pp. E247-E255, 2015.
, “A multiple transmitter and receiver electromagnetic system for improved target detection”, Geophysics, vol. 80, pp. E247-E255, 2015.
, GeoRef, Copyright 2018, American Geological Institute.2015-104674
“A procedure for collecting electromagnetic data using multiple transmitters and receivers capable of deep and focused exploration”, Geophysics, vol. 80, pp. E1-E10, 2015.
, GeoRef, Copyright 2018, American Geological Institute.2015-026532
“A procedure for collecting electromagnetic data using multiple transmitters and receivers capable of deep and focused exploration”, GeophysicsGeophysics, vol. 80, pp. E1-E10, 2015.
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