Phillip William Schmidt
Affiliations: | Earth Sciences | Australian National University, Acton, Australian Capital Territory, Australia |
Area:
PalaeomagnetismGoogle:
"Phillip Schmidt"Mean distance: 14.29 | S | N | B | C | P |
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Publications
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Williams GE, Schmidt PW. (2017) Shuram–Wonoka carbon isotope excursion: Ediacaran revolution in the world ocean's meridional overturning circulation Geoscience Frontiers. 9: 391-402 |
Schmidt PW. (2015) The Qmeter – a portable tool for remanence and susceptibility Exploration Geophysics. 2015: 1-3 |
Williams GE, Schmidt PW, Young GM. (2015) Strongly seasonal Proterozoic glacial climate in low palaeolatitudes: Radically different climate system on the pre-Ediacaran Earth Geoscience Frontiers |
Schmidt PW, Lackie MA. (2014) Practical considerations: Making measurements of susceptibility, remanence and Q in the field Exploration Geophysics. 45: 305-313 |
Schmidt PW. (2014) A review of Precambrian palaeomagnetism of Australia: Palaeogeography, supercontinents, glaciations and true polar wander Gondwana Research. 25: 1164-1185 |
Austin JR, Schmidt PW, Foss CA. (2013) Magnetic modeling of iron oxide copper-gold mineralization constrained by 3D multiscale integration of petrophysical and geochemical data: Cloncurry District, Australia Interpretation. 1: T63-T84 |
Austin J, Schmidt P, Lilly R. (2013) Anisotropy of Magnetic Susceptibility (AMS) and Paleomagnetism applied to the differentiation of structural and metallogenic controls on Iron Oxide Copper-Gold (IOCG) mineralisation: a case study from Monakoff, NW Queensland. Exploration Geophysics. 2013: 1-5 |
Hillan D, Schmidt P. (2013) Equivalent Sources: Rapid Calculation in the Frequency Domain and Application to Leveling Correction Exploration Geophysics. 2013: 1-4 |
Williams GE, Schmidt PW. (2013) Neoproterozoic glaciation: Reconciling low paleolatitudes and the geologic record Geophysical Monograph. 146: 145-159 |
Schmidt PW, Williams GE. (2013) Anisotropy of thermoremanent magnetisation of Cryogenian glaciogenic and Ediacaran red beds, South Australia: Neoproterozoic apparent or true polar wander? Global and Planetary Change. 110: 289-301 |