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all geography including DSDP/ODP Sites and Legs
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Atlantic Ocean
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North Atlantic
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Labrador Sea
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Labrador Shelf (1)
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Newfoundland and Labrador
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mineral deposits, genesis (10)
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C-14 (2)
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halogens
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chlorine
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Cl-36 (1)
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hydrogen
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D/H (2)
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isotope ratios (13)
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isotopes
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radioactive isotopes
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C-14 (2)
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Cl-36 (1)
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stable isotopes
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C-13/C-12 (9)
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D/H (2)
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O-18/O-16 (11)
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S-34/S-32 (3)
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metals
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alkali metals
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potassium (1)
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alkaline earth metals
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strontium (1)
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iron (3)
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rare earths
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neodymium (1)
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samarium (1)
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oxygen
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O-18/O-16 (11)
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Vertebrata (2)
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cyanobacteria
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Renalcis (1)
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Graptolithina (5)
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Invertebrata
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Archaeocyatha (1)
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Arthropoda
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Trilobitomorpha
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Trilobita
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Agnostida (2)
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Brachiopoda
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Inarticulata (1)
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Bryozoa (1)
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Mollusca
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Cephalopoda (1)
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Porifera (3)
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Protista
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Radiolaria (3)
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Vermes
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scolecodonts (1)
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microfossils
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Conodonta (10)
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problematic microfossils (1)
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palynomorphs
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acritarchs (2)
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Dinoflagellata (1)
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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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calcareous algae (1)
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Epiphyton (1)
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problematic fossils
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problematic microfossils (1)
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Pterobranchia (1)
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thallophytes (1)
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geochronology methods
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geologic age
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Cenozoic
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Quaternary
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upper Holocene (1)
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upper Pleistocene
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Laurentide ice sheet (2)
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Mesozoic
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Cretaceous
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Lower Cretaceous
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Albian (1)
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lower Mesozoic (1)
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Paleozoic
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Cambrian
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Lower Cambrian (2)
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Middle Cambrian (3)
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Upper Cambrian
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Furongian
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Jiangshanian (1)
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Paibian (2)
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Steptoean (3)
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-
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Carboniferous
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Lower Carboniferous
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Dinantian (3)
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Mississippian
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Lower Mississippian
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Tournaisian (2)
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-
-
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Cow Head Group (21)
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Devonian
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Levis Shale (2)
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Upper Devonian
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Famennian (1)
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Frasnian (1)
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Horton Group (1)
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lower Paleozoic
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Bay of Islands Ophiolite (3)
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middle Paleozoic (1)
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Ordovician
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Buchans Group (1)
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Catoche Formation (1)
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Lower Ordovician
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Arenigian (5)
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Beekmantown Group (1)
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Fillmore Formation (1)
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Floian (1)
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Ibexian (1)
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Saint George Group (5)
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Tremadocian (6)
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Lushs Bight Group (1)
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Middle Ordovician
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Champlainian (1)
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Chazyan (1)
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Dapingian (1)
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Darriwilian (2)
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Llanvirnian (1)
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Table Head Group (4)
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Whiterockian (2)
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Upper Ordovician (2)
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Valmy Formation (1)
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Permian (4)
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Silurian
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Lower Silurian (1)
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upper Paleozoic (3)
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Precambrian
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Archean (1)
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upper Precambrian
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Proterozoic
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Mesoproterozoic (2)
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Neoproterozoic
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igneous rocks
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igneous rocks
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plutonic rocks
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diabase (1)
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gabbros (4)
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granites
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pegmatite (1)
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syenites (2)
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chromitite (1)
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peridotites
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harzburgite (3)
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volcanic rocks
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andesites
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boninite (1)
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basalts
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mid-ocean ridge basalts (2)
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pyroclastics
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rhyolites (1)
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ophiolite (14)
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metamorphic rocks
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metamorphic rocks
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amphibolites (4)
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metaigneous rocks
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metasedimentary rocks (6)
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ophiolite (14)
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carbonates
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oxides
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phosphates
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platinum minerals (1)
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silicates
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chain silicates
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amphibole group
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clinoamphibole
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hornblende (1)
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orthoamphibole
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anthophyllite (1)
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pyroxene group
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orthopyroxene (1)
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framework silicates
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feldspar group
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alkali feldspar
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perthite (1)
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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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olivine group
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olivine (2)
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zircon group
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zircon (8)
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ring silicates
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cordierite (2)
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sheet silicates
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chlorite group
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chlorite (1)
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mica group
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biotite (1)
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muscovite (3)
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-
-
-
sulfides
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pyrite (1)
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sphalerite (1)
-
-
-
Primary terms
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absolute age (15)
-
Atlantic Ocean
-
North Atlantic
-
Labrador Sea
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Labrador Shelf (1)
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-
Northwest Atlantic (1)
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Scotian Shelf (1)
-
-
-
biogeography (2)
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bitumens (2)
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Canada
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Eastern Canada
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Maritime Provinces
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Nova Scotia (1)
-
-
Newfoundland and Labrador
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Labrador (3)
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Newfoundland
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Baie Verte Peninsula (15)
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Burlington Peninsula (6)
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Daniel's Harbour Newfoundland and Labrador (2)
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Great Northern Peninsula (11)
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Humber Arm Allochthon (5)
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Notre Dame Bay (1)
-
Port au Port Peninsula (6)
-
-
-
Ontario
-
Moose River basin (1)
-
-
Quebec
-
Thetford Mines (1)
-
-
-
Mackenzie Mountains (1)
-
Western Canada
-
British Columbia (1)
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Northwest Territories (1)
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Yukon Territory (1)
-
-
-
carbon
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C-13/C-12 (9)
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C-14 (2)
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organic carbon (2)
-
-
Cenozoic
-
Quaternary
-
Holocene
-
upper Holocene (1)
-
-
Pleistocene
-
upper Pleistocene
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Wisconsinan
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upper Wisconsinan (1)
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-
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Chordata
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Vertebrata (2)
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clay mineralogy (1)
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climate change (1)
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continental shelf (2)
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continental slope (1)
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Europe
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Western Europe
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Scandinavia
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Sweden
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Skellefte mining district (1)
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-
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United Kingdom
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Great Britain
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Wales
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Gwynedd Wales
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Arenig (1)
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Merionethshire Wales
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Arenig (1)
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faults (12)
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foliation (5)
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geochemistry (9)
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geochronology (5)
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Graptolithina (5)
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Hemichordata (1)
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hydrogen
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D/H (2)
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hydrology (1)
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igneous rocks
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plutonic rocks
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diabase (1)
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diorites
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trondhjemite (1)
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gabbros (4)
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granites
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I-type granites (1)
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granodiorites (1)
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pegmatite (1)
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syenites (2)
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ultramafics
-
chromitite (1)
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peridotites
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harzburgite (3)
-
-
-
-
volcanic rocks
-
andesites
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boninite (1)
-
-
basalts
-
mid-ocean ridge basalts (2)
-
-
pyroclastics
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ash-flow tuff (1)
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tuff (1)
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rhyolites (1)
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-
inclusions
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fluid inclusions (3)
-
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intrusions (7)
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Invertebrata
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Archaeocyatha (1)
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Arthropoda
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Mandibulata
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Crustacea (1)
-
-
Trilobitomorpha
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Trilobita
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Agnostida (2)
-
Ptychopariida
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Olenidae (1)
-
-
-
-
-
Brachiopoda
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Inarticulata (1)
-
-
Bryozoa (1)
-
Mollusca
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Cephalopoda (1)
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Gastropoda (2)
-
-
Porifera (3)
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Protista
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Radiolaria (3)
-
-
Vermes
-
scolecodonts (1)
-
-
-
isotopes
-
radioactive isotopes
-
C-14 (2)
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Cl-36 (1)
-
-
stable isotopes
-
C-13/C-12 (9)
-
D/H (2)
-
O-18/O-16 (11)
-
S-34/S-32 (3)
-
-
-
lava (1)
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magmas (3)
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mantle (5)
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Mesozoic
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Cretaceous
-
Lower Cretaceous
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Albian (1)
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-
-
lower Mesozoic (1)
-
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metal ores
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base metals (1)
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chromite ores (1)
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copper ores (4)
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gold ores (9)
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iron ores (2)
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molybdenum ores (1)
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platinum ores (1)
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polymetallic ores (1)
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silver ores (2)
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zinc ores (3)
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metals
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alkali metals
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potassium (1)
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alkaline earth metals
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magnesium (1)
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strontium (1)
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-
iron (3)
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manganese (1)
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platinum group
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platinum ores (1)
-
-
precious metals (1)
-
rare earths
-
neodymium (1)
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samarium (1)
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yttrium (1)
-
-
-
metamorphic rocks
-
amphibolites (4)
-
gneisses (2)
-
granulites (2)
-
metaigneous rocks
-
metagabbro (2)
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metagranite (1)
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metarhyolite (1)
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-
metasedimentary rocks (6)
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metavolcanic rocks (2)
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mylonites (1)
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schists (2)
-
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metamorphism (17)
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metasomatism (7)
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meteorology (1)
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mineral deposits, genesis (10)
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mineral exploration (5)
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mineralogy (1)
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minerals (2)
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North America
-
Appalachians
-
Northern Appalachians (10)
-
-
Canadian Shield
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Grenville Province (1)
-
-
Humber Zone (8)
-
-
ocean floors (2)
-
oceanography (3)
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orogeny (7)
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oxygen
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O-18/O-16 (11)
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paleoclimatology (2)
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paleoecology (6)
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paleogeography (7)
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paleontology (3)
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Paleozoic
-
Cambrian
-
Lower Cambrian (2)
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Middle Cambrian (3)
-
Upper Cambrian
-
Furongian
-
Jiangshanian (1)
-
Paibian (2)
-
-
Steptoean (3)
-
-
-
Carboniferous
-
Lower Carboniferous
-
Dinantian (3)
-
-
Mississippian
-
Lower Mississippian
-
Tournaisian (2)
-
-
-
-
Cow Head Group (21)
-
Devonian
-
Levis Shale (2)
-
Upper Devonian
-
Famennian (1)
-
Frasnian (1)
-
-
-
Horton Group (1)
-
lower Paleozoic
-
Bay of Islands Ophiolite (3)
-
-
middle Paleozoic (1)
-
Ordovician
-
Buchans Group (1)
-
Catoche Formation (1)
-
Lower Ordovician
-
Arenigian (5)
-
Beekmantown Group (1)
-
Fillmore Formation (1)
-
Floian (1)
-
Ibexian (1)
-
Saint George Group (5)
-
Tremadocian (6)
-
-
Lushs Bight Group (1)
-
Middle Ordovician
-
Champlainian (1)
-
Chazyan (1)
-
Dapingian (1)
-
Darriwilian (2)
-
Llanvirnian (1)
-
Table Head Group (4)
-
Whiterockian (2)
-
-
Upper Ordovician (2)
-
Valmy Formation (1)
-
-
Permian (4)
-
Silurian
-
Lower Silurian (1)
-
-
upper Paleozoic (3)
-
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palynomorphs
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acritarchs (2)
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Dinoflagellata (1)
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miospores
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pollen (1)
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-
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paragenesis (2)
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permafrost (1)
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petroleum (8)
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petrology (8)
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Plantae
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algae
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calcareous algae (1)
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Epiphyton (1)
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-
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plate tectonics (13)
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Precambrian
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Archean (1)
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upper Precambrian
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Proterozoic
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Mesoproterozoic (2)
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Neoproterozoic
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Hadrynian (1)
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Tonian (1)
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-
-
-
-
problematic fossils
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problematic microfossils (1)
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Pterobranchia (1)
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reefs (2)
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remote sensing (1)
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sea water (2)
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sea-floor spreading (1)
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sea-level changes (7)
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sedimentary petrology (5)
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sedimentary rocks
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carbonate rocks
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dolostone (2)
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limestone
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micrite (1)
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wackestone (1)
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clastic rocks
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black shale (1)
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conglomerate (2)
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graywacke (1)
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mudstone (5)
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sandstone (2)
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shale (5)
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siltstone (3)
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oil shale (1)
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sedimentary structures
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bedding plane irregularities (1)
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biogenic structures
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algal structures
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algal mounds (1)
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bioherms (5)
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girvanella (1)
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planar bedding structures
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cyclothems
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megacyclothems (1)
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secondary structures
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stylolites (1)
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sedimentation (5)
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sediments
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clastic sediments
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boulders (1)
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drift (1)
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erratics (1)
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till (1)
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
A record of the Steptoean Positive Carbon Isotope Excursion (SPICE; Cambrian, Paibian) from the Cow Head Group, western Newfoundland Available to Purchase
A Jiangshanian (Cambrian; Furongian) trilobite fauna from the Cow Head Group, western Newfoundland Available to Purchase
Geochemistry and geochronology of the Bay of Islands metamorphic sole, Newfoundland, Canada: Protoliths and implications for subduction initiation Available to Purchase
Conditions and timing of metamorphism near the Baie Verte Line (Baie Verte Peninsula, NW Newfoundland, Canada): Multiple reactivations within the suture zone of an arc-continent collision Available to Purchase
ABSTRACT The Baie Verte Line in western Newfoundland marks a suture zone between (1) an upper plate represented by suprasubduction zone oceanic crust (Baie Verte oceanic tract) and the trailing continental Notre Dame arc, with related upper-plate rocks built upon the Dashwoods terrane; and (2) a lower plate of Laurentian margin metasedimentary rocks with an adjoining ocean-continent transition zone (Birchy Complex). The Baie Verte oceanic tract formed during closure of the Taconic seaway in a forearc position and started to be obducted onto the Laurentian margin between ca. 485 and 476 Ma (early Taconic event), whereas the Birchy Complex, at the leading edge of the Laurentian margin, was subducted to maximum depths as calculated by pseudosection techniques (6.7–11.2 kbar, 315–560 °C) by ca. 467–460 Ma, during the culmination of the Taconic collision between the trailing Notre Dame arc and Laurentia, and it cooled isobarically to 9.2–10.0 kbar and 360–450 °C by 454–449 Ma (M 1). This collisional wedge progressively incorporated upper-plate Baie Verte oceanic tract rocks, with remnants preserved in M 1 high-pressure, low-temperature greenschist-facies rocks (4.8–8.0 kbar, 270–340 °C) recording typical low metamorphic gradients (10–14 °C/km). Subsequently, the early Taconic collisional wedge was redeformed and metamorphosed during the final stages of the Taconic cycle. We relate existing and new 40 Ar/ 39 Ar ages between 454 and 439 Ma to a late Taconic reactivation of the structurally weak suture zone. The Taconic wedge on both sides of the Baie Verte suture zone was subsequently strongly shortened (D 2), metamorphosed (M 2), and intruded by a voluminous suite of plutons during the Salinic orogenic cycle. Calculated low- to medium-pressure, low-temperature M 2 conditions in the Baie Verte oceanic tract varied at 3.0–5.0 kbar and 275–340 °C, with increased metamorphic gradients of ~17–25 °C/km during activity of the Notre Dame arc, and correlate with M 2 assemblages in the Birchy Complex. These conditions are associated with existing Salinic S 2 white mica 40 Ar/ 39 Ar ages of ca. 432 Ma in a D 2 transpressional shear zone and synkinematic intrusions of comparable age. A third metamorphic event (M 3) was recorded during the Devonian with calculated low-pressure, low-temperature conditions of 3.2–3.8 kbar and 315–330 °C under the highest metamorphic gradients (23–30 °C/km) and associated with Devonian–early Carboniferous isotopic ages as young as 356 ± 5 Ma. The youngest ages are related to localized extension associated with a large-scale transtensional zone, which reused parts of the Baie Verte Line suture zone. Extension culminated in the formation of a Middle to Late Devonian Neoacadian metamorphic core complex in upper- and lower-plate rocks by reactivation of Baie Verte Line tectonites formed during the Taconic and Salinic cycles. The Baie Verte Line suture zone is a collisional complex subjected to repeated, episodic structural reactivation during the Late Ordovician Taconic 3, Silurian Salinic, and Early–Late Devonian Acadian/Neoacadian orogenic cycles. Deformation appears to have been progressively localized in major fault zones associated with earlier suturing. This emphasizes the importance of existing zones of structural weakness, where reactivation took place in the hinterland during successive collision events.
A Tonian volcano-sedimentary succession in Newfoundland, eastern North America: A post-Grenvillian link to the Asgard Sea? Available to Purchase
The phylogenetic affinity of the Ordovician trilobites Agerina , Forteyaspis gen. nov., and related genera, with new and revised species from Canada and the United States Available to Purchase
Amsassia (calcareous alga) from the Lower Ordovician (Tremadocian) of western Newfoundland, and the biologic affinity and geologic history of the genus Available to Purchase
Correlation of seasonal precipitation isotopic profile with the modern climatological data: a case study from the western Newfoundland region of Canada Available to Purchase
Abstract The measurement of stable water isotopes (i.e. δ 18 O and δ 2 H) in precipitation is a powerful tool for detecting changes in climate patterns, assessing groundwater movements and studying the hydrological budget. In this study, daily precipitation was collected and δ 18 O and δ 2 H were analysed in Corner Brook, western Newfoundland, and Labrador, for 2015. The study provides the first background data of any kind related to liquid water isotopes in western Newfoundland. More than 130 samples were analysed using a state-of-the-art cavity ring-down spectrometer, the Picarro Liquid Water Isotope Analyzer L2130-i, with a minimal instrumental error. The data suggest seasonal variations in which the δ 18 O varies from −33.4 to −0.03‰ (±0.023‰) and δ 2 H ranges from −253.4 to 15.1‰ (±0.148‰). Our data are compared with modern meteorological data and publicly available δ 18 O and δ 2 H data from greater Atlantic Canada, which suggests that the atmospheric circulation patterns, spatial features and other climate factors are distinct in Corner Brook. Isotopes in meteorological precipitation data referenced and collected in this study reflect the cool, wet climate and air-mass fluctuations unique to the geographical region and thus, this baseline is fundamental to understanding the modern isotope hydrological/climatic studies for this region.
Dissolution-reprecipitation vs. solid-state diffusion in electrum: Examples from metamorphosed Au-bearing, volcanogenic massive sulfide (VMS) deposits Available to Purchase
Predictive geologic mapping from geophysical data using self-organizing maps: A case study from Baie Verte, Newfoundland, Canada Available to Purchase
EARLY–MIDDLE ORDOVICIAN SEASCAPE-SCALE AGGREGATION PATTERN OF SPONGE-RICH REEFS ACROSS THE LAURENTIA PALEOCONTINENT Available to Purchase
Failure and post-failure analysis of submarine mass movements using geomorphology and geomechanical concepts Available to Purchase
Abstract Access to submarine slopes is usually limited and it is often difficult to rely on deep cores or in situ measurements to determine the geotechnical characteristics of the sediments involved in a slide when carrying out back-analyses of submarine mass movements and their consequences. The approach presented here uses geomorphology and basic geomechanical concepts to reduce uncertainties in slope stability and mobility analyses. It shows how geomorphology can be used to select the geomechanical input parameters required in failure and post-failure analyses. Typical parameters derived from such analyses are related to the strength of the material, the pore water pressure at the time of failure, and the rheological properties of post-failure debris or mud flows.