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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
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Africa
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Southern Africa
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Kaapvaal Craton (2)
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South Africa
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Mpumalanga South Africa
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Barberton South Africa (1)
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Antarctica
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Antarctic Peninsula (1)
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Arctic region
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Greenland (1)
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Asia
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Far East
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China
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Dabie Mountains (1)
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North China Platform (2)
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Qinling Mountains (1)
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Sulu Terrane (1)
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Indian Peninsula
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India (1)
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Siberia (1)
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Tibetan Plateau (1)
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Australasia
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Australia
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Western Australia
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Capricorn Orogen (1)
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Pilbara (1)
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Pilbara Craton (1)
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Yilgarn (1)
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Yilgarn Craton (4)
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Canada
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Eastern Canada
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Ontario
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Sudbury igneous complex (1)
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Quebec (1)
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Western Canada
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Northwest Territories (2)
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Europe
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Western Europe
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Iceland (1)
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United Kingdom
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Great Britain
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Scotland
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Hebrides
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Inner Hebrides
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Isle of Skye (1)
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Highland region Scotland
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Inverness-shire Scotland
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Isle of Skye (1)
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Jack Hills (23)
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North America
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Basin and Range Province
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Great Basin (1)
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Canadian Shield
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Churchill Province
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Rae Province (1)
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Grenville Province (2)
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Slave Province (1)
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Superior Province (2)
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North American Cordillera (1)
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South America
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Brazil
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Borborema (1)
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United States
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California
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Mono County California
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Long Valley Caldera (1)
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Great Basin (1)
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Idaho (1)
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Idaho Batholith (1)
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Nevada (1)
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New York
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Adirondack Mountains (1)
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Utah (1)
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Yellowstone National Park (1)
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elements, isotopes
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isotope ratios (10)
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isotopes
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radioactive isotopes
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Pu-244 (1)
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stable isotopes
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Hf-177/Hf-176 (4)
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Li-7/Li-6 (1)
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O-18/O-16 (6)
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Pb-207/Pb-206 (2)
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Si-30/Si-28 (1)
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Lu/Hf (1)
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metals
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actinides
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plutonium
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Pu-244 (1)
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uranium (1)
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alkali metals
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lithium
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Li-7/Li-6 (1)
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aluminum (2)
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hafnium
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Hf-177/Hf-176 (4)
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lead
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Pb-207/Pb-206 (2)
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rare earths (4)
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titanium (2)
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noble gases
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xenon (1)
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oxygen
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O-18/O-16 (6)
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silicon
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Si-30/Si-28 (1)
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geochronology methods
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Lu/Hf (1)
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paleomagnetism (2)
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Pb/Pb (1)
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radiation damage (2)
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Sm/Nd (1)
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U/Pb (12)
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geologic age
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Cenozoic
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Tertiary
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Neogene
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Miocene
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Topopah Spring Member (1)
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Phanerozoic (1)
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Precambrian
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Archean
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Paleoarchean (2)
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Hadean (16)
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upper Precambrian
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Proterozoic
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Neoproterozoic (2)
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Paleoproterozoic
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Aphebian
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Hurwitz Group (1)
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Witwatersrand Supergroup (1)
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igneous rocks
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igneous rocks
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granophyre (1)
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plutonic rocks
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anorthosite (1)
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diorites
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tonalite (1)
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trondhjemite (1)
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granites
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A-type granites (1)
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granodiorites (1)
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ultramafics (1)
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volcanic rocks
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pyroclastics
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tuff (1)
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rhyolites (2)
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metamorphic rocks
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metamorphic rocks
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gneisses
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tonalite gneiss (1)
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impactites (1)
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metaigneous rocks (1)
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metasedimentary rocks
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metaconglomerate (1)
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metasandstone (1)
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quartzites (1)
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schists
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greenstone (1)
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minerals
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native elements
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graphite (1)
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oxides
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iron oxides (2)
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phosphates
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monazite (2)
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xenotime (2)
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silicates
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framework silicates
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silica minerals
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quartz (1)
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orthosilicates
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nesosilicates
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zircon group
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zircon (23)
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sheet silicates
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mica group
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biotite (1)
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muscovite (4)
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Primary terms
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absolute age (13)
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Africa
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Southern Africa
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Kaapvaal Craton (2)
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South Africa
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Mpumalanga South Africa
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Barberton South Africa (1)
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-
Antarctica
-
Antarctic Peninsula (1)
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-
Arctic region
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Greenland (1)
-
-
Asia
-
Far East
-
China
-
Dabie Mountains (1)
-
North China Platform (2)
-
Qinling Mountains (1)
-
Sulu Terrane (1)
-
-
-
Indian Peninsula
-
India (1)
-
-
Siberia (1)
-
Tibetan Plateau (1)
-
-
Australasia
-
Australia
-
Western Australia
-
Capricorn Orogen (1)
-
Pilbara (1)
-
Pilbara Craton (1)
-
Yilgarn (1)
-
Yilgarn Craton (4)
-
-
-
-
Canada
-
Eastern Canada
-
Ontario
-
Sudbury igneous complex (1)
-
-
Quebec (1)
-
-
Western Canada
-
Northwest Territories (2)
-
-
-
Cenozoic
-
Tertiary
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Neogene
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Miocene
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Topopah Spring Member (1)
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crust (7)
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Europe
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Western Europe
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Iceland (1)
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United Kingdom
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Great Britain
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Scotland
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Hebrides
-
Inner Hebrides
-
Isle of Skye (1)
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-
-
Highland region Scotland
-
Inverness-shire Scotland
-
Isle of Skye (1)
-
-
-
-
-
-
-
-
geochemistry (2)
-
geochronology (4)
-
igneous rocks
-
granophyre (1)
-
plutonic rocks
-
anorthosite (1)
-
diorites
-
tonalite (1)
-
trondhjemite (1)
-
-
granites
-
A-type granites (1)
-
-
granodiorites (1)
-
ultramafics (1)
-
-
volcanic rocks
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pyroclastics
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tuff (1)
-
-
rhyolites (2)
-
-
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inclusions (5)
-
intrusions (2)
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isotopes
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radioactive isotopes
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Pu-244 (1)
-
-
stable isotopes
-
Hf-177/Hf-176 (4)
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Li-7/Li-6 (1)
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O-18/O-16 (6)
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Pb-207/Pb-206 (2)
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Si-30/Si-28 (1)
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magmas (3)
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mantle (2)
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metals
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actinides
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plutonium
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Pu-244 (1)
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uranium (1)
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alkali metals
-
lithium
-
Li-7/Li-6 (1)
-
-
-
aluminum (2)
-
hafnium
-
Hf-177/Hf-176 (4)
-
-
lead
-
Pb-207/Pb-206 (2)
-
-
rare earths (4)
-
titanium (2)
-
-
metamorphic rocks
-
gneisses
-
tonalite gneiss (1)
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-
impactites (1)
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metaigneous rocks (1)
-
metasedimentary rocks
-
metaconglomerate (1)
-
metasandstone (1)
-
-
quartzites (1)
-
schists
-
greenstone (1)
-
-
-
metamorphism (3)
-
noble gases
-
xenon (1)
-
-
North America
-
Basin and Range Province
-
Great Basin (1)
-
-
Canadian Shield
-
Churchill Province
-
Rae Province (1)
-
-
Grenville Province (2)
-
Slave Province (1)
-
Superior Province (2)
-
-
North American Cordillera (1)
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-
oxygen
-
O-18/O-16 (6)
-
-
paleogeography (1)
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paleomagnetism (2)
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Phanerozoic (1)
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plate tectonics (2)
-
Precambrian
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Archean
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Paleoarchean (2)
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Hadean (16)
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upper Precambrian
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Proterozoic
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Neoproterozoic (2)
-
Paleoproterozoic
-
Aphebian
-
Hurwitz Group (1)
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-
-
-
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Witwatersrand Supergroup (1)
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-
sedimentary rocks
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chemically precipitated rocks
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duricrust (1)
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clastic rocks
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conglomerate
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quartz-pebble conglomerate (1)
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silicon
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Si-30/Si-28 (1)
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soils
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laterites (1)
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South America
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Brazil
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Borborema (1)
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-
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spectroscopy (1)
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stratigraphy (1)
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tectonics (1)
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United States
-
California
-
Mono County California
-
Long Valley Caldera (1)
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-
-
Great Basin (1)
-
Idaho (1)
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Idaho Batholith (1)
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Nevada (1)
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New York
-
Adirondack Mountains (1)
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Utah (1)
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Yellowstone National Park (1)
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weathering (1)
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-
sedimentary rocks
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sedimentary rocks
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chemically precipitated rocks
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duricrust (1)
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clastic rocks
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conglomerate
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quartz-pebble conglomerate (1)
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soils
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soils
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laterites (1)
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Jack Hills
Evidence for oceans pre-4300 Ma confirmed by preserved igneous compositions in Hadean zircon
Earth’s Earliest Crust
Zircon-modeled melts shed light on the formation of Earth's crust from the Hadean to the Archean
Plate tectonic–like cycles since the Hadean: Initiated or inherited?
How old are the Jack Hills metasediments really?: The case for contamination of bedrock by zircon grains in transported regolith
Early Earth zircons formed in residual granitic melts produced by tonalite differentiation
Hadean zircon formed due to hydrated ultramafic protocrust melting
An accessory mineral and experimental perspective on the evolution of the early crust
RESEARCH FOCUS: Probing the complexities of magnetism in zircons from Jack Hills, Australia
Secondary magnetic inclusions in detrital zircons from the Jack Hills, Western Australia, and implications for the origin of the geodynamo
A 4463 Ma apparent zircon age from the Jack Hills (Western Australia) resulting from ancient Pb mobilization
Hadean Zircon Petrochronology
Differentiated impact melt sheets may be a potential source of Hadean detrital zircon: COMMENT
Nano- and micro-geochronology in Hadean and Archean zircons by atom-probe tomography and SIMS: New tools for old minerals
Section 8. The First Crust; Lessons from the Jack Hills Zircons
Insights into the Hadean Earth from Experimental Studies of Zircon
Metamorphic replacement of mineral inclusions in detrital zircon from Jack Hills, Australia: Implications for the Hadean Earth: COMMENT
Metamorphic replacement of mineral inclusions in detrital zircon from Jack Hills, Australia: Implications for the Hadean Earth: REPLY
Metamorphic replacement of mineral inclusions in detrital zircon from Jack Hills, Australia: Implications for the Hadean Earth
Ancient (>3.7 Ga) detrital zircons represent some of the few remaining relicts of Earth's earliest evolution. A metagreywacke from the northwestern margin of the Superior Province, Canada, has abundant Paleoarchean detrital zircon with peaks in age distribution at 3.86, 3.79, 3.74, and 3.32 Ga. A fuchsitic quartzite from the western margin of the Rae Province, Canada, contains entirely Paleoarchean detritus with peaks in age distribution at 3.86, 3.76, and 3.72 Ga. Both samples contain a small (2%–4%) proportion of zircon grains that are ≥3.9 Ga. Hf isotopic analysis indicates that a large proportion of the Paleoarchean zircon from both samples was derived by reworking of significantly older crust, consistent with previously published evidence for scarce pre–4.0 Ga continental crust from Jack Hills, Australia, and the Acasta Gneiss, Canada. When comparing the detrital zircon age distributions obtained in this study with known terranes with intact Paleoarchean rocks, most similarity is observed with the Itsaq Gneiss Complex of western Greenland. A lack of ca. 3.6–3.3 Ga igneous crystallization and detrital zircon ages is apparent in the data from the western Rae Province and from the northwestern Superior Province. Many ter-ranes with significant evidence for 3.7–3.9 Ga crust also have a well-defined lack of crust formation at this time, possibly indicating a hitherto undetected relationship between these Paleoarchean terranes.