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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Southern Africa
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Namibia (1)
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-
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Alexander Terrane (1)
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Arctic Ocean
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Norwegian Sea
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More Basin (1)
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Voring Basin (1)
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Arctic region
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Greenland
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East Greenland (42)
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Milne Land (2)
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Northern Greenland (6)
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Scoresby Sund (1)
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Russian Arctic
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Franz Josef Land (1)
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Svalbard
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Ny Friesland (1)
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Asia
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China
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India
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Ontario
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Western Canada
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Yukon Territory (2)
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Commonwealth of Independent States
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Russian Arctic
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Urals
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West Siberia
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Europe
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Invertebrata
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Protista
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Plantae
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pyroxenite (1)
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volcanic rocks
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sheet silicates
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sulfides
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Primary terms
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absolute age (43)
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Africa
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Southern Africa
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Namibia (1)
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Arctic Ocean
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More Basin (1)
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Arctic region
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East Greenland (42)
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China
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Indian Peninsula
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India
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Krasnoyarsk Russian Federation
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Atlantic Ocean
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Australasia
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bacteria (1)
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bibliography (1)
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Canada
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Ontario
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Quebec (4)
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Nunavut
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Queen Elizabeth Islands
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Western Canada
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Yukon Territory (2)
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carbon
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Cenozoic (1)
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Sweden (3)
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United Kingdom
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Scottish Highlands
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Northern Ireland (1)
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faults (22)
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geochemistry (4)
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geochronology (2)
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igneous rocks
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plutonic rocks
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diorites
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tonalite (2)
-
-
granites
-
I-type granites (1)
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leucogranite (3)
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S-type granites (1)
-
-
granodiorites (2)
-
lamprophyres (1)
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monzonites (1)
-
pegmatite (3)
-
ultramafics
-
peridotites
-
dunite (1)
-
harzburgite (1)
-
-
pyroxenite (1)
-
-
-
volcanic rocks
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-
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-
-
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intrusions (11)
-
Invertebrata
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Protista
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Thecamoeba (2)
-
-
-
isotopes
-
radioactive isotopes
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Pb-206/Pb-204 (1)
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Pb-208/Pb-204 (1)
-
-
stable isotopes
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C-13/C-12 (2)
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Hf-177/Hf-176 (4)
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Nd-144/Nd-143 (1)
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Os-188/Os-187 (1)
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Sr-87/Sr-86 (1)
-
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mantle (4)
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maps (1)
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Mesozoic
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Cretaceous
-
Lower Cretaceous
-
Isachsen Formation (1)
-
-
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Jurassic (1)
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Triassic
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metal ores
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lead-zinc deposits (1)
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nickel ores (1)
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zinc ores (1)
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metals
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actinides
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uranium (1)
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alkaline earth metals
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strontium
-
Sr-87/Sr-86 (1)
-
-
-
gold (1)
-
hafnium
-
Hf-177/Hf-176 (4)
-
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lead
-
Pb-206/Pb-204 (1)
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Pb-208/Pb-204 (1)
-
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platinum group
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osmium
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Os-188/Os-187 (1)
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platinum ores (1)
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rare earths
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neodymium
-
Nd-144/Nd-143 (1)
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-
-
metamorphic rocks
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cataclasites (1)
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eclogite (3)
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gneisses
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augen gneiss (1)
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orthogneiss (4)
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paragneiss (2)
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granulites (3)
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metaigneous rocks
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metasedimentary rocks
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metamorphism (23)
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mineral exploration (4)
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noble gases
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argon (1)
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North America
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Appalachians (1)
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Canadian Shield
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Grenville Province (5)
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Superior Province
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Abitibi Belt (1)
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Keweenawan Rift (1)
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Rocky Mountains
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Uinta Mountains (1)
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orogeny (20)
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oxygen
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paleogeography (17)
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paleomagnetism (2)
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Paleozoic
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Eleonore Bay Group
Microfossils from oolites and pisolites of the upper Proterozoic Eleonore Bay Group, central East Greenland
Resistance of zircons to U–Pb resetting in a prograde metamorphic sequence of Caledonian age in East Greenland
Caledonian sole thrust of central East Greenland: A crustal-scale Devonian extensional detachment?
Teufelsschloss (1340 m), mostly lower part of “Multicolored Series” of Eleo...
Table 1 —Chuar Group VSM species, their distinguishing characters, and the...
Pre-Caledonian metamorphic complexes within the southern part of the East Greenland Caledonides
( 1 ) Geographic distribution and ( 2 ) age constraints of principal Neopro...
Devonian basin initiation in East Greenland: a result of sinistral wrench faulting and Caledonian extensional collapse
Geographic distribution of reported Neoproterozoic vasiform microfossils. R...
Species of vase-shaped microfossils (VSMs) and their occurrence in 14 strat...
Neoproterozoic–Lower Palaeozoic stratigraphical relationships in the marginal thin-skinned thrust belt of the East Greenland Caledonides: comparisons with the foreland in Scotland
Neoproterozoic sedimentary basins with glacigenic deposits of the East Greenland Caledonides
Two major Neoproterozoic sedimentary basins that probably formed in response to an early pulse of Iapetan rifting along the Laurentian margin are well exposed in the East Greenland Caledonides. The Hekla Sund Basin is exposed at the northern termination of the East Greenland Caledonides, and it is represented by the Rivieradal and Hagen Fjord Groups, which attain a cumulative thickness of 8–11 km. The evolution of this basin reflects deposition during active rifting and a postrift thermal equilibration stage. The Eleonore Bay Basin of East Greenland includes the deposits of the Eleonore Bay Supergroup of early Neoproterozoic age overlain by Cryogenian (mid-Neoproterozoic) glacial deposits of the Tillite Group, which have a combined thickness in excess of 14 km. Four stages of basin evolution may be distinguished based on paleogeographic reorganizations of the shelf and a change from siliciclastic to carbonate deposition, and the final stage was dominated by glacigenic deposition. Major regional stratigraphic breaks seem to be absent, as is other evidence of rift-related sedimentation, suggesting deposition in one or a series of connected ensialic basins. A comparison with other Neoproterozoic basins along the Laurentian margin of the Iapetus Ocean shows similarities between the Eleonore Bay Basin and coeval deposits on Svalbard and the Central Highlands of Scotland. The development of an extensive carbonate platform during the later stages of both the Eleonore Bay and Hekla Sund Basins testifies to a period of tectonic stability prior to onset of Iapetus rifting. The extent of this carbonate platform may have been even larger, since similar successions are present in the Caledonides of Scotland and Ireland.
Regional Caledonian structure within an oblique convergence zone, Dronning Louise Land, NE Greenland
Photomicrographs of selected VSM species observed in petrographic thin sect...
Abstract The Neoproterozoic succession of East and North-East Greenland (over 14 000 m thick) includes the Eleonore Bay Supergroup (?Tonian–Cryogenian) and the Tillite Group (Cryogenian–Ediacaran). The upper units of the Eleonore Bay Supergroup consist of shallow to deeper-water carbonates, succeeded by siliciclastic fine-grained sediments (Bedgroup 19) that characterize the top unit of the supergroup. The Tillite Group includes two diamictite-bearing units (Ulvesø and Storeelv formations) of glaciogenic origin and two upper, upwards-shallowing strata (Canyon and Spiral Creek formations) that were deposited during semiarid conditions and concluded the Neoproterozoic depositional cycle. Diamictite is preserved on the craton and compares with the Storeelv Formation (Fm.) of the Tillite Group. Detailed investigations of the diamictite-bearing units (i.e. Ulvesø and Storeelv formations) demonstrate that the lower of the two formations is mainly of marine origin, whereas the upper one has both marine and terrestrial origins. Chemostratigraphic data include analyses on total carbon (TC), total organic carbon (TOC), total sulphur (TS) and δ 13 C. The data set for δ 13 C shows a substantial and abrupt shift towards negative values of ≥10%, from below Bedgroup 19. Low-diversity acritarch assemblages (Cryogenian) are recorded from the Andrée Land and Tillite groups; a thin cherty dolostone unit present above the Storeelv Fm. suggests that the diamictite units are of late Cryogenian age and the upper part of the Tillite Group is Ediacaran. Bedgroup 19 disconformably overlies older carbonates and the unit is a prelude to the succeeding (upper Cryogenian–lower Ediacaran) diamictite sediments of the Tillite Group. A disconformity separates the Tillite Group from the overlying Lower Palaeozoic sediments. Both disconformities are, according to palaeomagnetic data, related to rift–drift episodes that occurred during the late Neoproterozoic. Alternatively, the isotope data suggest that the diamictites were deposited during the late Cryogenian glaciation and the older disconformity may be interpreted as a significant gap developed by the lowering of sea level during an early Cryogenian glaciation.