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Format
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Section
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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East Africa
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Zambia (1)
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Limpopo Basin (1)
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Namib Desert (1)
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North Africa
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Egypt
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Nile Delta (1)
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Morocco (3)
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Southern Africa
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Kalahari Craton (1)
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Namibia (1)
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South Africa
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Cape Province region (1)
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Limpopo South Africa (1)
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West Africa
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Liberia (1)
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Arctic Ocean
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Beaufort Sea (1)
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Canada Basin (1)
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Arctic region
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Greenland
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Asia
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Baikal rift zone (1)
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Buryat Russian Federation (1)
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Far East
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Japan
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Honshu
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Thailand
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Khorat Plateau (1)
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Himalayas
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Lesser Himalayas (1)
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Indian Peninsula
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India
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Bundelkhand (1)
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Madhya Pradesh India (1)
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Northeastern India
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Meghalaya India (1)
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Sikkim India (1)
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Tamil Nadu India
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North Arcot India (1)
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-
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Indian Shield (1)
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-
Lake Baikal (2)
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Middle East
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Syria
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Palmyrides (1)
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Ob River (1)
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Selenga River valley (1)
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Siberia (1)
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Transbaikalia (1)
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Tyumen Russian Federation
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Khanty-Mansi Russian Federation (1)
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Vindhyan Basin (1)
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West Siberia
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Siberian Lowland (1)
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-
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Atlantic Ocean (1)
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Australasia
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Australia
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Lachlan fold belt (1)
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New South Wales Australia (1)
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Northern Territory Australia
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Rum Jungle (1)
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Queensland Australia (1)
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Canada
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Arctic Archipelago (2)
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Eastern Canada
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Newfoundland and Labrador
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Labrador (1)
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Ontario
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Hastings County Ontario
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Brent Crater (1)
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Ottawa Ontario (1)
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Quebec (3)
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Nunavut
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Ellesmere Island (1)
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Wager Bay (1)
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Queen Elizabeth Islands
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Western Canada
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Athabasca District (1)
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Northwest Territories
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Great Slave Lake (1)
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Saskatchewan (1)
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Commonwealth of Independent States
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Russian Federation
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Baikal rift zone (1)
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Buryat Russian Federation (1)
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Lake Baikal (2)
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Ob River (1)
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Transbaikalia (1)
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Tyumen Russian Federation
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Khanty-Mansi Russian Federation (1)
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West Siberia
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Siberian Lowland (1)
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Europe
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Alps
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Central Europe
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Austria
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Bohemian Massif (1)
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Czech Republic (1)
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Germany
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Saxony-Anhalt Germany (1)
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Poland (1)
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Switzerland
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Swiss Alps (1)
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Southern Europe
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Greece
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Mediterranean region (1)
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Mediterranean Sea
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Melville Island (1)
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North America
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Appalachians
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Canadian Shield
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Churchill Province
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Grenville Province
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Atlantic Coastal Plain
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Connecticut
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Eastern U.S.
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Illinois (2)
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Kentucky
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Maryland
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New Mexico
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Grants mineral belt (1)
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Grants New Mexico (1)
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New York
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Adirondack Mountains (2)
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Ohio (1)
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Oklahoma
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Powder River basin (1)
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Rhode Island
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Texas
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mineral exploration (56)
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elements, isotopes
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organic carbon (2)
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halogens
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hydrogen (1)
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isotope ratios (2)
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isotopes
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radioactive isotopes
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C-14 (1)
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Cs-137 (2)
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K-40 (4)
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Pb-210 (2)
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Po-210 (1)
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Ra-226 (2)
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Ra-228 (1)
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Rn-220 (1)
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Rn-222 (7)
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Th-232 (2)
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U-238 (2)
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U-238/U-234 (1)
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stable isotopes
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C-13/C-12 (1)
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O-18/O-16 (2)
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Sr-87/Sr-86 (1)
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metals
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actinides
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thorium
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Th-232 (2)
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uranium
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U-238 (2)
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U-238/U-234 (1)
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alkali metals
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cesium
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Cs-137 (2)
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potassium
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K-40 (4)
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-
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alkaline earth metals
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radium
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Ra-226 (2)
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Ra-228 (1)
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strontium
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Sr-87/Sr-86 (1)
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bismuth (3)
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copper (1)
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lead
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Pb-210 (2)
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molybdenum (1)
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nickel (2)
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platinum group
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platinum ores (1)
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polonium
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rare earths
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yttrium (1)
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thallium (3)
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tin (1)
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tungsten (1)
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noble gases
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radon
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Rn-220 (1)
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Rn-222 (7)
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oxygen
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O-18/O-16 (2)
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phosphorus (1)
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fossils
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Invertebrata
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Porifera (1)
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Protista
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Foraminifera (1)
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microfossils (3)
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palynomorphs
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miospores
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pollen (1)
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Plantae
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algae
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diatoms (2)
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geochronology methods
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geologic age
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Cenozoic
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lower Pleistocene
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Jaramillo Subchron (1)
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upper Pleistocene
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Wisconsinan (1)
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upper Quaternary
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Tertiary
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Neogene
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Miocene
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Fleming Formation (1)
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Oakville Sandstone (1)
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upper Miocene (1)
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-
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Paleogene
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Eocene
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middle Eocene
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Yegua Formation (1)
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upper Eocene
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Jackson Group (1)
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-
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Oligocene
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Frio Formation (1)
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upper Cenozoic (1)
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Laurentide ice sheet (1)
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Mesozoic
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Cretaceous
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Lower Cretaceous (2)
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Upper Cretaceous (1)
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Jurassic
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Bazhenov Formation (1)
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Upper Jurassic (1)
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Serra Geral Formation (1)
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Paleozoic
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Cambrian
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Upper Cambrian
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Bonneterre Formation (1)
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Lamotte Sandstone (1)
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-
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Carboniferous
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Pennsylvanian (1)
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Devonian
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Upper Devonian
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Ohio Shale (1)
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lower Paleozoic
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Conococheague Formation (1)
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New Albany Shale (1)
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Ordovician
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Lower Ordovician
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Beekmantown Group (1)
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Martinsburg Formation (1)
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Permian (1)
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Precambrian (2)
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Vindhyan (1)
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igneous rocks
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igneous rocks
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plutonic rocks
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anorthosite (1)
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gabbros (1)
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granites
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alkali granites (1)
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pegmatite (1)
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quartz monzonite (1)
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porphyry (1)
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volcanic rocks
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andesites (1)
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basalts
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flood basalts (1)
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phonolites
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tinguaite (1)
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trachytes (1)
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metamorphic rocks
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metamorphic rocks
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gneisses
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granite gneiss (1)
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paragneiss (1)
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metasedimentary rocks
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metasomatic rocks
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skarn (1)
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schists (1)
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turbidite (2)
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minerals
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carbonates
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cancrinite (1)
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halides
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fluorides
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minerals (2)
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oxides
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rutile (1)
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phosphates
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sorosilicates
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sulfides (1)
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uranium minerals (2)
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vanadates
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carnotite (1)
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Primary terms
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absolute age (1)
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Africa
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East Africa
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Zambia (1)
-
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Limpopo Basin (1)
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Namib Desert (1)
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North Africa
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Egypt
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Nile Delta (1)
-
-
Morocco (3)
-
-
Southern Africa
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Kalahari Craton (1)
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Namibia (1)
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South Africa
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Cape Province region (1)
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Limpopo South Africa (1)
-
-
-
West Africa
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Liberia (1)
-
-
-
Arctic Ocean
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Beaufort Sea (1)
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Canada Basin (1)
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-
Arctic region
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Greenland
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South Greenland (1)
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-
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Asia
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Baikal rift zone (1)
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Buryat Russian Federation (1)
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Far East
-
China (1)
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Japan
-
Honshu
-
Nagano Japan (1)
-
-
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Thailand
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Khorat Plateau (1)
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-
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Himalayas
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Lesser Himalayas (1)
-
-
Indian Peninsula
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India
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Bundelkhand (1)
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Madhya Pradesh India (1)
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Northeastern India
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Meghalaya India (1)
-
-
Sikkim India (1)
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Tamil Nadu India
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North Arcot India (1)
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-
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Indian Shield (1)
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-
Lake Baikal (2)
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Middle East
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Syria
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Palmyrides (1)
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-
-
Ob River (1)
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Selenga River valley (1)
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Siberia (1)
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Transbaikalia (1)
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Tyumen Russian Federation
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Khanty-Mansi Russian Federation (1)
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Vindhyan Basin (1)
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West Siberia
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Siberian Lowland (1)
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-
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Atlantic Ocean (1)
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atmosphere (2)
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Australasia
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Australia
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Lachlan fold belt (1)
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New South Wales Australia (1)
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Northern Territory Australia
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Rum Jungle (1)
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Queensland Australia (1)
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Canada
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Arctic Archipelago (2)
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Eastern Canada
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Newfoundland and Labrador
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Labrador (1)
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Ontario
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Hastings County Ontario
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Bancroft Ontario (1)
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Nipissing District Ontario
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Brent Crater (1)
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Ottawa Ontario (1)
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Quebec (3)
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Nunavut
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Ellesmere Island (1)
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Wager Bay (1)
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Queen Elizabeth Islands
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Western Canada
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Athabasca District (1)
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Northwest Territories
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Great Slave Lake (1)
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Saskatchewan (1)
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carbon
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C-13/C-12 (1)
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C-14 (1)
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organic carbon (2)
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Cenozoic
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Quaternary
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Holocene
-
lower Holocene (1)
-
-
Pleistocene
-
lower Pleistocene
-
Jaramillo Subchron (1)
-
-
Matuyama Chron (1)
-
upper Pleistocene
-
Wisconsinan (1)
-
-
-
upper Quaternary
-
Brunhes Chron (1)
-
-
-
Tertiary
-
Neogene
-
Miocene
-
Fleming Formation (1)
-
Oakville Sandstone (1)
-
upper Miocene (1)
-
-
-
Paleogene
-
Eocene
-
middle Eocene
-
Yegua Formation (1)
-
-
upper Eocene
-
Jackson Group (1)
-
-
-
Oligocene
-
Frio Formation (1)
-
-
-
-
upper Cenozoic (1)
-
-
chemical analysis (1)
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clay mineralogy (1)
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coal deposits (1)
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dams (1)
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data processing (14)
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deformation (2)
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Bohemian Massif (1)
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Czech Republic (1)
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Germany
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Saxony-Anhalt Germany (1)
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Poland (1)
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pegmatite (1)
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porphyry (1)
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volcanic rocks
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andesites (1)
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Rn-220 (1)
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Rn-222 (7)
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stable isotopes
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O-18/O-16 (2)
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Sr-87/Sr-86 (1)
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magmas (2)
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Mesozoic
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Jurassic
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Upper Jurassic (1)
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Serra Geral Formation (1)
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metal ores
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copper ores (2)
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gold ores (1)
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iron ores (3)
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platinum ores (1)
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tin ores (1)
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tungsten ores (1)
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uranium ores (32)
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vanadium ores (2)
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metals
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actinides
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thorium
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Th-232 (2)
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GeoRef Categories
Era and Period
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Date
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radioactivity methods
Statistical Characterization of Damage of Different Surface P-Wave Velocity Sets under Dynamic Load and Study on Overall Radon Detection Consistency
Monitoring Debris-Flow Surges and Triggering Rainfall at the Lattenbach Creek, Austria
Integrated geophysical imaging of rare earth element-bearing iron oxide-apatite deposits in the Eastern Adirondack Highlands, New York
A new method for calculating bulk density in pulsed neutron-gamma density logging
Lithologic, Geochemical and Geophysical Characteristics of the Boundary Strata of the Bazhenov and Kulomza Horizons ( Lower Cretaceous Base) in the Central Regions of the West Siberia
Geochemistry and Geophysics of Iron Oxide-Apatite Deposits and Associated Waste Piles with Implications for Potential Rare Earth Element Resources from Ore and Historical Mine Waste in the Eastern Adirondack Highlands, New York, USA
Fast modeling of gamma-gamma density measurementsvia gamma-ray point-kernel approximations
Revised time-distance diagram for the Lake Michigan Lobe, Michigan Subepisode, Wisconsin Episode, Illinois, USA
ABSTRACT Based on the interpretation of 893 finite radiocarbon ages, we have revised the time-distance diagram for the Lake Michigan Lobe of the Laurentide ice sheet in Illinois. The data set contains 507 reliable ages determined using standard benzene synthesis–liquid scintillation, including “legacy” ages determined in the 1950s and 1960s at the inception of the radiometric radiocarbon dating method. In addition, the data set includes 278 radiocarbon ages determined by accelerator mass spectrometry. We analyzed the data set based on context, precision, and accuracy to vet minimum or maximum age estimates of diachronic phases. The last glaciation in Illinois is marked by a local maximum margin in northeastern Illinois during the Marengo Phase (modal probability 28,000 cal [calibrated] yr B.P.), and subsequent glacial maximum culminating during the Shelby Phase (24,200 cal yr B.P.). From about that point, the Lake Michigan Lobe entered an overall retreat mode, with significant advances at ~22,200 and 21,100 cal yr B.P. (the Marseilles and Minooka Subphases of the Livingston Phase) and at 20,500 cal yr B.P. (Woodstock Phase). The latter age is also the conservative estimate of the onset of the lacustrine Milwaukee Phase, with referent deposits located as far north as Milwaukee, Wisconsin. This phase ended as the Lake Michigan Lobe made its final advance into Illinois during the Crown Point Phase (18,490 to ca. 16,500 cal yr B.P.), interfingering with the proglacial lacustrine Glenwood Phase deposits (16,900–15,000 cal yr B.P.).
Radionuclides in groundwater, rocks and stream sediments in Austria – results from a recent survey
Abstract In 2014, the Geological Survey of Austria (GBA) published – in cooperation with further national institutions – an overview map on radionuclides in groundwater, rocks and stream sediments at a scale of 1:500 000 with explanatory notes. In the frame of this activity, the uranium, 228 Ra, 226 Ra, 222 Rn, 210 Pb and 210 Po analyses in groundwater studies made by the Austrian Agency for Health and Food Safety (AGES) and Environment Agency of Austria (Umweltbundesamt), as well as the uranium and thorium analyses of stream sediments of the GBA and whole-rock analyses from different sources, were evaluated statistically. Furthermore, the GBA’s comprehensive airborne radiometric data were exploited. The aim of this study was to work out typical spectra of the radionuclide content in the groundwater and aquifers of different geological settings. It appeared that the concentration of 222 Rn in groundwater depends significantly on the uranium content of the aquifer. In contrast to this, the other radionuclides in groundwater did not show a clear correlation with uranium and thorium in the subsurface geology. Concerning 228 Ra, 226 Ra, 210 Pb and 210 Po, the lack of relationship to the subsurface composition seems to be a result of the low concentrations in groundwater. With respect to uranium in groundwater, there is a mixed situation: on the one hand, high uranium concentrations in groundwater can be observed in the Alps in regions with uranium bearing orthogneisses. On the other hand, in sediment basins of NE Austria where the underlying geology contains little uranium. Whether this is caused by special geological features combined with the given low precipitation or by the extensive agriculture (uranium from phosphate fertilizer) is under examination. Concerning the threshold values of the radionuclides in groundwater (radiation), no exceedance could be observed. In spite of this, the concentration of the heavy metal uranium sometimes exceeded the threshold value of 15 µg l −1 : this is especially true for the regions mentioned above. In addition, an attempt was made to compare the Austrian values with data from neighbouring countries. It became clear that only a few published datasets exist that are comparable. Radon analyses of soil gas in the Czech Republic and Bavaria show the same geological patterns as the Austrian radon analyses of the groundwater. In addition, to enable the reader to compare the Austrian data with datasets from other countries, additional tables are included here for all types of data. They show the statistic distributions of different geological classes in a coordinated way. Supplementary material: An Austrian map and explanation notes showing the uranium content of the underground and radionuclides in ground water are available at https://doi.org/10.6084/m9.figshare.c.3780170