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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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North Africa
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Atlas Mountains
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Moroccan Atlas Mountains
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Anti-Atlas (1)
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Morocco
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Moroccan Atlas Mountains
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Anti-Atlas (1)
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Atlantic Ocean
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North Atlantic
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North Sea (2)
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Caledonides (1)
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Canada
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Eastern Canada
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Quebec (1)
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Western Canada
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Europe
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Central Europe
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Germany
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Rhineland-Palatinate Germany (1)
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Poland
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Swiety Krzyz Mountains (1)
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Lower Rhine Basin (1)
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Rhenish Schiefergebirge
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Eifel (2)
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Stavelot-Venn Massif (5)
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Variscides (1)
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Western Europe
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Ardennes (26)
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Belgium
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Brabant Massif (4)
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Wallonia Belgium
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Liege Belgium
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France
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Ardennes France
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Pas-de-Calais France
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Meuse River (1)
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North America
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United States
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Iowa
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elements, isotopes
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hydrogen
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tritium (1)
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isotopes
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Nd-144/Nd-143 (1)
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metals
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copper (1)
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iron (2)
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manganese (2)
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rare earths
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lanthanum (1)
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neodymium
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nitrogen (1)
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fossils
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Chordata
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Vertebrata
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Reptilia
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Diapsida
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Archosauria
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Pterosauria (1)
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Invertebrata
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Cnidaria
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Tabulata (1)
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Porifera
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microfossils
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sulfides
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Primary terms
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absolute age (2)
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Africa
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North Africa
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Atlas Mountains
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Moroccan Atlas Mountains
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Anti-Atlas (1)
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Morocco
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Moroccan Atlas Mountains
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Anti-Atlas (1)
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Atlantic Ocean
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North Atlantic
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North Sea (2)
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Canada
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Eastern Canada
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Quebec (1)
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Western Canada
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carbon (1)
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Cenozoic
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Tertiary
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Neogene
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Chordata
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Vertebrata
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Reptilia
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Europe
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Germany
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Rhineland-Palatinate Germany (1)
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Poland
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Swiety Krzyz Mountains (1)
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Lower Rhine Basin (1)
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Rhenish Schiefergebirge
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Eifel (2)
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Stavelot-Venn Massif (5)
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Variscides (1)
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Western Europe
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Ardennes (26)
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Belgium
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Brabant Massif (4)
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Wallonia Belgium
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Liege Belgium
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Stavelot Belgium (1)
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France
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Ardennes France
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Armorican Massif (1)
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Invertebrata
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Trilobita (2)
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Brachiopoda (2)
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Cnidaria
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Anthozoa
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Zoantharia
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Tabulata (1)
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Porifera
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isotopes
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magmas (1)
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Mesozoic
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metals
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Ardennes
Detrital zircon geochronology and heavy mineral analysis as complementary provenance tools in the presence of extensive weathering, reworking and recycling: the Neogene of the southern North Sea Basin
Post-Paleozoic evolution of the northern Ardenne Massif constrained by apatite fission-track thermochronology and geological data
An early azhdarchid pterosaur from the Lower Cretaceous of the eastern Paris basin
Mineralogical and geochemical study of pseudocoticule from the Stavelot Massif, Ardennes (Belgium), and redefinition of coticule
Stress-state evolution of the brittle upper crust during compressional tectonic inversion as defined by successive quartz vein types (High-Ardenne slate belt, Germany)
THE UPPER GIVETIAN (MIDDLE DEVONIAN) SUBTERMINUS CONODONT ZONE IN NORTH AMERICA, EUROPE AND NORTH AFRICA
Kinematic consequences of an angular unconformity in simple shear: an example from the southern border of the Lower Palaeozoic Rocroi inlier (Naux, France)
The ‘Mur des douaniers’, an exceptionally well-preserved Early Eifelian fossil site
Trilobite palaeobiodiversity during the Devonian in the Ardennes Massif
The palaeobiodiversity of stromatoporoids, tabulates and brachiopods in the Devonian of the Ardennes – Changes through time
Pumpellyite-(Al), a new mineral from Bertrix, Belgian Ardennes
Evidence for perturbation of the carbon cycle in the Middle Frasnian punctata Zone (Late Devonian)
We provide a synthesis of the long-term earthquake activity in the region of northwest Europe between the Lower Rhine Embayment and the southern North Sea. Reevaluated historical earthquake and present-day seismological data indicate that much of the known seismic activity is concentrated in the Roer graben. Nevertheless, the three strongest known earthquakes with estimated magnitude ≥ 6.0 occurred outside of this active structure, in the northern Ardenne, the southern North Sea, and the Strait of Dover. During the past 700 yr, destructive earthquakes generally have occurred at different locations, indicating a migration of seismicity with time. Because in plate interiors the present seismic activity does not necessarily reflect past and future activity, we discuss the necessity to use the geologic record to infer long-term earthquake activity. Thus, we synthesize and discuss paleoseismic investigations in the Roer graben that provide evidence that large earthquakes with magnitude up to 7.0 have occurred since the late Pleistocene. We also show that tectonic deformation is close to or below the accuracy of current geodetic techniques. Thus, it is necessary to have longer periods of observation to compare present geodetic deformation rates with the observed seismic moment release and the geologic strain rates. Based on these results, we present methods to define seismic zoning and evaluate the maximum credible earthquake and its magnitude relevant for seismic hazard assessment.