A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
S
S. K. Marx, Kamber, B. S., and McGowan, H. A., Scavenging of atmospheric trace metal pollutants by mineral dusts: Inter-regional transport of Australian trace metal pollution to New Zealand, Atmospheric Environment, vol. 42, pp. 2460-2478, 2008.
Compilation and indexing terms, Copyright 2018 Elsevier Inc.20081011138674Atmospheric scavengingAustraliaLake Eyre BasinNew ZealandTrace metal pollution
R
C. M. Lesher, Roles of xenomelts, xenoliths, xenocrysts, xenovolatiles, residues, and skarns in the genesis, transport, and localization of magmatic Fe-Ni-Cu-PGE sulfides and chromite, Ore Geology ReviewsOre Geology Reviews, 2017.
C. M. Lesher, Roles of xenomelts, xenoliths, xenocrysts, xenovolatiles, residues, and skarns in the genesis, transport, and localization of magmatic Fe-Ni-Cu-PGE sulfides and chromite, Ore Geology ReviewsOre Geology Reviews, vol. 90, pp. 465-484, 2017.
GeoRef, Copyright 2018, American Geological Institute.815392-10
M. C. Lesher, The roles of xenoliths, xenocrysts, xenomelts, xenovolatiles, and skarns in the genesis of sulfide-rich magmatic Ni-Cu-(PGE) deposits and chromite-rich magmatic Cr deposits, in 13th international Ni-Cu-PGE symposium; abstracts, B. Godel, Barnes, S., Gonzales-Alvarez, I., Fiorentini, M. L., and Le Vaillant, M., Eds. Geological Survey of Western Australia, Perth, West. Aust., Australia, 2016, p. 50.
GeoRef, Copyright 2018, American Geological Institute.2017-037378
C. M. Lesher, The roles of local incorporation, in-situ segregation, and physical transport in the genesis of magmatic sulfide and oxide deposits, in Abstract Volume (Geological Association of Canada), vol. 36, Geological Association of Canada, Waterloo, ON, Canada, 2013, pp. 128-129.
GeoRef, Copyright 2018, American Geological Institute.690873-19
D. H. Rousell and Gibson, H. L., The roles of endogenesis and meteorite impact in the evolution of the Sudbury Structure, in Geological Association of Canada - Mineralogical Association of Canada Joint Annual Meeting Abstracts, vol. 29, Geological Association of Canada, Waterloo, ON, Canada, 2004, p. 360.
GeoRef, Copyright 2018, American Geological Institute.2011-067396
R. R. Keays and Lightfoot, P. C., The role of meteorite impact, source rocks, protores and mafic magmas in the genesis of the Sudbury Ni-Cu-PGE sulphide ore deposits, in Dynamic processes in magmatic ore deposits and their application to mineral exploration, vol. 13, R. R. Keays, C. Lesher, M., Lightfoot, P. C., and Farrow, C. E. G., Eds. Geological Association of Canada, St. John's, NL, Canada, 1999, pp. 329-366.
GeoRef, Copyright 2018, American Geological Institute.2001-058750
M. G. G. Burns, Kontak, D. J., and Groat, L. A., The role of fluids during alteration and mineralization of the highly evolved Little Nahanni LCT-type pegmatite group; a fluid inclusion approach, in PACROFI XI; 11th Pan-American current research on fluid inclusions conference; abstracts with program, I. Samson, Gagnon, J., and Price, M., Eds. University of Windsor, Windsor, ON, Canada, 2012, pp. 11-12.
GeoRef, Copyright 2018, American Geological Institute.2015-118169Little Nahanni Pegmatite
A. M. McDonald and Chao, G. Y., ROGERMITCHELLITE, Na12(Sr,Na)24Ba4Zr26Si78(B,Si)12O246(OH)24{middle dot}18H2O, A NEW MINERAL SPECIES FROM MONT SAINT-HILAIRE, QUEBEC: DESCRIPTION, STRUCTURE DETERMINATION AND RELATIONSHIP WITH HFSE-BEARING CYCLOSILICATES, The Canadian MineralogistThe Canadian Mineralogist, vol. 48, pp. 267-278, 2010.
A. M. McDonald and Chao, G. Y., Rogermitchellite, Na (sub 12) (Sr, Na) (sub 24) Ba (sub 4) Zr (sub 26) Si (sub 78) (B, Si) (sub 12) O (sub 246) (OH) (sub 24) .18H (sub 2) O; a new mineral species from Mont Saint-Hilaire, Quebec; description, structure determination and relationship with, The Canadian MineralogistThe Canadian Mineralogist, vol. 48, pp. 267-278, 2010.
GeoRef, Copyright 2018, American Geological Institute.2010-064038benitoitePoudrette Quarryrogermitchellitezirconosilicates
J. Feng, Rivard, B., E. Gallie, A., Sanchez-Azofeifa, A., and Francis, H., Rock-type identification in a simulated underground environment using second-derivative thermal infrared reflectance spectra, Geological Society of America Bulletin, vol. 116, pp. 1318-1326, 2004.
GeoRef, Copyright 2018, American Geological Institute.2004-085833hyperspectral datathermal infrared reflectance spectroscopyTIR spectra
S. M. J. Cook, Rock type classification using MGM peak-fitting analysis of hyperspectral reflectance spectra (0.35--2.50mum), Sudbury Igneous Complex, Ontario, Laurentian University, 2006.
J. Feng, Rivard, B., Gallie, A., and Sanchez-Azofeifa, A., Rock type classification of drill core using continuous wavelet analysis applied to thermal infrared reflectance spectra, International Journal of Remote Sensing, vol. 32, pp. 4489-4510, 2011.
GeoRef, Copyright 2018, American Geological Institute.2013-096877spectral angle mapperthermal infrared reflectance spectra
M. Schindler, Rock coatings; forensic tools for atmospheric compositions, in Abstract Volume (Geological Association of Canada), vol. 36, Geological Association of Canada, Waterloo, ON, Canada, 2013, p. 174.
GeoRef, Copyright 2018, American Geological Institute.690874-72
O. Mahmoodi and Smith, R., Rock boundaries selection from more than one geophysical log using principal component and derivative analyses, in CSPG/CSEG/CWLS geoconvention 2015 on Geoscience, new horizons, vol. 2015, Canadian Society of Exploration Geophysicists, Calgary, AB, Canada, 2015, p. 4.
GeoRef, Copyright 2018, American Geological Institute.2018-027188derivative analysis
M. Kolaj and Smith, R., Robust conductance estimates from spatial and temporal derivatives of borehole electromagnetic data, GeophysicsGeophysics, vol. 79, pp. E115-E123, 2014.
M. Kolaj and Smith, R., Robust conductance estimates from spatial and temporal derivatives of borehole electromagnetic data, Geophysics, vol. 79, pp. E115-E123, 2014.
GeoRef, Copyright 2018, American Geological Institute.2015-007584conductancespatial gradienttemporal gradient
K. P. R. Medig, Turner, E. C., Thorkelson, D. J., and Rainbird, R. H., Rifting of Columbia to form a deep-water siliciclastic to carbonate succession: The Mesoproterozoic Pinguicula Group of northern Yukon, Canada, Precambrian ResearchPrecambrian Research, vol. 278, pp. 179-206, 2016.
Dl7hoTimes Cited:1Cited References Count:107
K. P. R. Medig, Turner, E. C., Thorkelson, D. J., and Rainbird, R. H., Rifting of Columbia to form a deep-water siliciclastic to carbonate succession; the Mesoproterozoic Pinguicula Group of northern Yukon, Canada, Precambrian ResearchPrecambrian Research, vol. 278, pp. 179-206, 2016.
GeoRef, Copyright 2018, American Geological Institute.2016-058822Hart River InlierMount Landreville Formationnorthern Yukon TerritoryPass Mountain FormationPinguicula BasinPinguicula GroupRubble Creek Formation
R. T. Post and Long, D. G. F., Rift related Lower Cambrian strata at Muncho Lake, northern British Columbia, in GeoCanada 2000; the millennium geoscience summit, vol. 25, Geological Association of Canada, Waterloo, ON, Canada, 2000.
GeoRef, Copyright 2018, American Geological Institute.2006-072292Muncho Lake
E. C. Turner, Rift dolostones of the Mesoproterozoic Borden Basin, Nunavut (Arctic Canada), in 2012 AAPG annual convention & exhibition; abstracts volume; Directing the future of E&P; starring creative ideas and new technology, vol. 2012, American Association of Petroleum Geologists and Society for Sedimentary Geology, Tulsa, OK, United States, 2012.
GeoRef, Copyright 2018, American Geological Institute.2013-087829Angmaat FormationBorden BasinIkpiarjuk FormationIqqittuq FormationMilne Inlet GrabenNanisivik FormationVictor Bay Formation
G. J. Prior, Gibson, H. L., Cook, R. E., Bleeker, W., Hannigton, M., and Watkinson, D. H., Rhyolite geochemistry at the Kidd Creek Mine, in Geological Association of Canada; Mineralogical Association of Canada; annual meeting; program with abstracts--Association Geologique du Canada; Association Mineralogique du Canada; reunion annuelle; programme et resumes, vol. 19, Geological Association of Canada, Waterloo, ON, Canada, 1994, p. 91.
GeoRef, Copyright 2018, American Geological Institute.1996-005598
G. J. Prior, Gibson, H. L., Olson, P. E., and Watkinson, D. H., Rhyolite geochemistry as a guide to the depositional environment of the volcanic hosted base metal ores of the Kidd Creek Mine, in GAC/MAC annual meeting--AGC/AMC reunion annuelle, vol. 20, Geological Association of Canada, Waterloo, ON, Canada, 1995, p. 86.
GeoRef, Copyright 2018, American Geological Institute.1997-031660
R. M. Morelli, Creaser, R. A., Selby, D., Kontak, D. J., and Horne, R. J., Rhenium-Osmium Geochronology of Arsenopyrite in Meguma Group Gold Deposits, Meguma Terrane, Nova Scotia, Canada: Evidence for Multiple Gold-Mineralizing Events, Economic GeologyEconomic Geology, vol. 100, pp. 1229-1242, 2006.
E. I. Murphy, James, R. S., and Easton, R. M., Revisiting the position of the Grenville Front in the Timmins Creek area, Sudbury, Ontario, in Geological Society of America, 1998 annual meeting, vol. 30, Geological Society of America (GSA), Boulder, CO, United States, 1998, p. 95.
GeoRef, Copyright 2018, American Geological Institute.1999-017274Ess Creek FaultGrenville FaultStreet OntarioTimmins Creek