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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Europe
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Alps
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Central Austrian Alps (1)
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Eastern Alps
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Dolomites (1)
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Limestone Alps
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Carpathians
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Central Europe
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Austria
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Lower Austria
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Germany
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Southern Europe
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oxygen
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fossils
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microfossils (5)
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geochronology methods
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illite (3)
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Primary terms
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carbon
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upper Eocene (1)
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Oligocene
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chemical analysis (1)
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crystal chemistry (3)
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diagenesis (3)
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Europe
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Alps
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Central Austrian Alps (1)
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Eastern Alps
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Dolomites (1)
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Northern Limestone Alps (1)
-
-
Limestone Alps
-
Northern Limestone Alps (1)
-
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Prealps (2)
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Carpathians
-
Western Carpathians (1)
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-
Central Europe
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Austria
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Central Austrian Alps (1)
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Lower Austria
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Vienna Austria (1)
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-
North Austrian Molasse (3)
-
Salzburg State Austria
-
Salzburg Austria (7)
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Salzkammergut (3)
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Upper Austria (9)
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Black Forest (1)
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Bohemian Massif (3)
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Germany
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Baden-Wurttemberg Germany (1)
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Hungary (1)
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North Austrian Molasse (3)
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Salzach River (1)
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Pannonian Basin (1)
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Southern Europe
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Italy
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igneous rocks
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volcanic glass (1)
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intrusions (2)
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Invertebrata
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Protista
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Foraminifera
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Rotaliina
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isotopes
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C-13/C-12 (1)
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magmas (1)
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Mesozoic
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Jurassic
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Triassic-Jurassic boundary (1)
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Triassic
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Upper Triassic
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Triassic-Jurassic boundary (1)
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metal ores
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copper (1)
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Structural and chemical characterization of dienerite, Ni 3 As, and its revalidation as a mineral species
Stable oxygen and carbon isotopes of carbonates in lake sediments as a paleoflood proxy
The dinoflagellate cyst Molassedinium bicornutum gen. et sp. nov. from the Oligocene of the North Alpine Foreland Basin, Austria
Large-scale engineering geomorphological mapping as an additional tool in the assessment of earthworks for transport infrastructure
Resolving complex communication beyond geological and geophysical data resolution: an example from an underground gas storage facility in the Austrian Molasse Basin
Evaluation of hydrocarbon generation and migration in the Molasse fold and thrust belt(Central Eastern Alps, Austria) using structural and thermal basin models
Abstract This paper summarizes the current knowledge on the nature, kinematics and timing of movement along major tectonic boundaries in the Bohemian Massif and demonstrates how the Variscan plutonism and deformation evolved in space and time. Four main episodes are recognized: (1) Late Devonian–early Carboniferous subduction and continental underthrusting of the Saxothuringian Unit beneath the Teplá–Barrandian Unit resulted in the orogen-perpendicular shortening and growth of an inboard magmatic arc during c. 354–346 Ma; (2) the subduction-driven shortening was replaced by collapse of the Teplá–Barrandian upper crust, exhumation of the high-grade (Moldanubian) core of the orogen at c. 346–337 Ma and by dextral strike-slip along orogen-perpendicular NW–SE shear zones; (3) following closure of a Rhenohercynian Ocean basin, the Brunia microplate was underthrust beneath the eastern flank of the Saxothuringian/Teplá–Barrandian/Moldanubian ‘assemblage’; this process commenced at c. 346 Ma in the NE and ceased at c. 335 Ma in the SW; and (4) late readjustments within the amalgamated Bohemian Massif included crustal exhumation and mainly S-type granite plutonism along the edge of the Brunia indentor at c. 330–327 Ma, and peripheral tectonothermal activity driven by strike-slip faulting and possibly mantle delamination around the consolidated Bohemian Massif's interior until late Carboniferous–earliest Permian times.