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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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Morocco
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Rif (1)
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Antarctica
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East Antarctica (1)
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Arctic region
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Greenland
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Asia
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Far East
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Japan (1)
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Korea (1)
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Atlantic Ocean
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North Atlantic
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Northeast Atlantic (1)
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Commonwealth of Independent States
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Russian Federation
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Volga region (1)
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Ukraine
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Crimea Ukraine
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Elba (1)
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Europe
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Alps
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Pennine Alps (1)
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Western Alps
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Carpathians (1)
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Central Europe
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Austria
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Hohe Tauern (1)
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Lower Austria
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Czech Republic
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Moravia (1)
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Switzerland
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Valais Switzerland (1)
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Pyrenees
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Spanish Pyrenees (2)
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Southern Europe
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Dinaric Alps (1)
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Greece
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Peloponnesus Greece (1)
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Iberian Peninsula
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Spain
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Andalusia Spain (1)
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Spanish Pyrenees (2)
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Italy
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Apennines
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Apuane Alps (28)
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Central Apennines (5)
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Ligurian Apennines (3)
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Northern Apennines (115)
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Calabria Italy (2)
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Emilia-Romagna Italy
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Bologna Italy (10)
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Modena Italy (6)
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Parma Italy (9)
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Piacenza Italy (5)
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Ravenna Italy (4)
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Romagna (4)
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Taro Valley (1)
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Friuli-Venezia Giulia Italy (1)
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Liguria Italy
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Genoa Italy (2)
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Ligurian Alps (3)
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Ligurian Apennines (3)
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Lombardy Italy
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Marches Italy
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Piemonte Italy
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Po River (18)
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Sardinia Italy (1)
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Sicily Italy
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Peloritani Mountains (1)
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Tuscan Nappe (1)
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Florence Italy (5)
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Umbria Italy (6)
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Veneto Italy
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San Marino (1)
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Ticino River (1)
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Ukraine
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Crimea Ukraine
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Variscides (1)
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Western Europe
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France
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United Kingdom
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Mediterranean region
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West Pacific
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United States
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lead-zinc deposits (2)
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elements, isotopes
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C-13/C-12 (8)
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C-14 (4)
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hydrogen
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stable isotopes
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C-13 (1)
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C-13/C-12 (8)
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D/H (3)
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deuterium (1)
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O-18/O-16 (9)
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S-34/S-32 (2)
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Sr-87/Sr-86 (4)
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metals
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calcium (1)
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strontium
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Sr-87/Sr-86 (4)
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aluminum
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Al-26 (1)
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rare earths
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silver (4)
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titanium (2)
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zinc (2)
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oxygen
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O-18/O-16 (9)
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sulfur
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S-34/S-32 (2)
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fossils
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burrows (2)
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Chordata
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Vertebrata
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Pisces
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Chondrichthyes
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Elasmobranchii (1)
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Tetrapoda
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Mammalia
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Theria
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Eutheria
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Rodentia (1)
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Reptilia
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Diapsida
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Ichthyosauria (2)
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ichnofossils (2)
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Invertebrata
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Arthropoda
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Mandibulata
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Crustacea
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Ostracoda (2)
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Bryozoa (1)
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Echinodermata
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Echinozoa
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Echinoidea (1)
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Mollusca
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Bivalvia
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Heterodonta
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Veneroida
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Lucinidae (1)
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Vesicomyidae (1)
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Solemyida (1)
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Gastropoda
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Neogastropoda (1)
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Protista
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Foraminifera
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Rotaliina
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Globigerinacea
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Globigerinidae
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Globigerina
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Globigerina bulloides (1)
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Neogloboquadrina
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Neogloboquadrina pachyderma (1)
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Rotaliacea
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Ammonia (2)
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Textulariina (2)
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Radiolaria (2)
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Silicoflagellata
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Dictyocha (1)
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Vermes
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Annelida (1)
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Polychaeta
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Serpulidae (1)
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-
-
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microfossils (26)
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palynomorphs
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miospores
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pollen (2)
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-
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Plantae
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algae
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Coccolithophoraceae
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Coccolithus (1)
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diatoms (2)
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nannofossils
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Discoasteridae (1)
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Helicopontosphaera (1)
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-
-
-
-
geochronology methods
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(U-Th)/He (1)
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Ar/Ar (1)
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fission-track dating (5)
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optically stimulated luminescence (1)
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paleomagnetism (2)
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racemization (1)
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Th/U (2)
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thermochronology (3)
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thermoluminescence (1)
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U/Pb (1)
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uranium disequilibrium (1)
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geologic age
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Cenozoic
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Bronze Age (1)
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Quaternary
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Holocene
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upper Holocene
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Roman period (3)
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Pleistocene
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lower Pleistocene
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Calabrian (1)
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Gelasian (1)
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middle Pleistocene (2)
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upper Pleistocene
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Eemian (1)
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Tyrrhenian (1)
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upper Quaternary (4)
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Tertiary
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Neogene
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Miocene
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lower Miocene
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Aquitanian (5)
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Burdigalian (2)
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-
middle Miocene
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Langhian (3)
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Serravallian (4)
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-
upper Miocene
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Messinian
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Messinian Salinity Crisis (2)
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Tortonian (5)
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-
-
Pliocene
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lower Pliocene
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Zanclean (1)
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upper Pliocene
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Piacenzian (1)
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-
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Paleogene
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Eocene
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middle Eocene (1)
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upper Eocene (1)
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Oligocene
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middle Oligocene (1)
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upper Oligocene
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Chattian (1)
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Paleocene (2)
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-
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upper Cenozoic (1)
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Mesozoic
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Cretaceous
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Lower Cretaceous (1)
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Upper Cretaceous
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Cenomanian (1)
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Jurassic
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Lower Jurassic
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Hettangian (1)
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lower Liassic (1)
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Sinemurian (1)
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Toarcian (1)
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upper Liassic (1)
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Upper Jurassic (2)
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Maiolica Limestone (1)
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Triassic
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Middle Triassic (1)
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Upper Triassic
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Norian (1)
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Rhaetian (1)
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-
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Paleozoic
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Carboniferous
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Lower Carboniferous (1)
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middle Paleozoic (1)
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Permian
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Middle Permian (1)
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Silurian (1)
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igneous rocks
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igneous rocks
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plutonic rocks
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gabbros
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troctolite (1)
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granites (2)
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granodiorites (1)
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ultramafics
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peridotites
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harzburgite (1)
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volcanic rocks
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basalts
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mid-ocean ridge basalts (1)
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pyroclastics (2)
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ophiolite (11)
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metamorphic rocks
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metamorphic rocks
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granulites (1)
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marbles (1)
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metaigneous rocks
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serpentinite (2)
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metasedimentary rocks
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metachert (2)
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metapelite (3)
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metasomatic rocks
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serpentinite (2)
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phyllites (2)
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schists (2)
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ophiolite (11)
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turbidite (19)
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meteorites
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meteorites
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arsenites (2)
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carbonates
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minerals (7)
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native elements (1)
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cuprite (1)
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hydroxides (3)
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phosphates
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asbestos (1)
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clinoamphibole
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rhodonite group
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framework silicates
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feldspar group (2)
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silica minerals
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melanophlogite (1)
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quartz (1)
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zeolite group
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phillipsite (1)
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-
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orthosilicates
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nesosilicates
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braunite (3)
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chloritoid (1)
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garnet group
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olivine group
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olivine (2)
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tephroite (1)
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zircon group
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zircon (3)
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sorosilicates (1)
-
-
sheet silicates
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chlorite group
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chlorite (7)
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clay minerals
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beidellite (1)
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halloysite (1)
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kaolinite (2)
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montmorillonite (1)
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smectite (9)
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vermiculite (1)
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corrensite (1)
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illite (8)
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mica group
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muscovite (1)
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serpentine group
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lizardite (3)
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serpentine (1)
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talc (2)
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sulfates
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barite (6)
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gypsum (4)
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sulfides
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copper sulfides (2)
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millerite (1)
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molybdenite (1)
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pyrite (6)
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sphalerite (1)
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stibnite (1)
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sulfosalts
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sulfantimonites
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freibergite (1)
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-
sulfarsenites
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dufrenoysite (1)
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jordanite (2)
-
-
-
vanadates (1)
-
-
Primary terms
-
absolute age (11)
-
Africa
-
North Africa
-
Morocco
-
Rif (1)
-
-
-
-
Antarctica
-
East Antarctica (1)
-
-
Arctic region
-
Greenland
-
Northern Greenland (1)
-
-
-
Asia
-
Far East
-
Japan (1)
-
Korea (1)
-
-
-
Atlantic Ocean
-
North Atlantic
-
Northeast Atlantic (1)
-
-
-
barite deposits (1)
-
biogeography (4)
-
brines (1)
-
carbon
-
C-13 (1)
-
C-13/C-12 (8)
-
C-14 (4)
-
-
Cenozoic
-
Bronze Age (1)
-
Quaternary
-
Holocene
-
upper Holocene
-
Roman period (3)
-
-
-
Pleistocene
-
lower Pleistocene
-
Calabrian (1)
-
Gelasian (1)
-
-
middle Pleistocene (2)
-
upper Pleistocene
-
Eemian (1)
-
Tyrrhenian (1)
-
-
-
upper Quaternary (4)
-
-
Tertiary
-
Neogene
-
Miocene
-
lower Miocene
-
Aquitanian (5)
-
Burdigalian (2)
-
-
middle Miocene
-
Langhian (3)
-
Serravallian (4)
-
-
upper Miocene
-
Messinian
-
Messinian Salinity Crisis (2)
-
-
Tortonian (5)
-
-
-
Pliocene
-
lower Pliocene
-
Zanclean (1)
-
-
upper Pliocene
-
Piacenzian (1)
-
-
-
-
Paleogene
-
Eocene
-
middle Eocene (1)
-
upper Eocene (1)
-
-
Oligocene
-
middle Oligocene (1)
-
upper Oligocene
-
Chattian (1)
-
-
-
Paleocene (2)
-
-
-
upper Cenozoic (1)
-
-
chemical analysis (1)
-
Chordata
-
Vertebrata
-
Pisces
-
Chondrichthyes
-
Elasmobranchii (1)
-
-
-
Tetrapoda
-
Mammalia
-
Theria
-
Eutheria
-
Rodentia (1)
-
-
-
-
Reptilia
-
Diapsida
-
Ichthyosauria (2)
-
-
-
-
-
-
clay mineralogy (5)
-
climate change (2)
-
construction materials
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building stone (4)
-
-
continental drift (1)
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continental shelf (1)
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crust (9)
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crystal chemistry (24)
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crystal structure (32)
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crystallography (1)
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dams (1)
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data processing (11)
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deformation (14)
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diagenesis (10)
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earthquakes (36)
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ecology (1)
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economic geology (1)
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energy sources (1)
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engineering geology (1)
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Europe
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Alps
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Central Alps
-
Pennine Alps (1)
-
-
Eastern Alps
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Dinaric Alps (1)
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Hohe Tauern (1)
-
-
Limestone Alps (1)
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Western Alps
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Ligurian Alps (3)
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-
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Carpathians (1)
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Central Europe
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Austria
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Hohe Tauern (1)
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Lower Austria
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Vienna Austria (1)
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Czech Republic
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Moravia (1)
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Switzerland
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Valais Switzerland (1)
-
-
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Pyrenees
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Spanish Pyrenees (2)
-
-
Southern Europe
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Dinaric Alps (1)
-
Greece
-
Peloponnesus Greece (1)
-
-
Iberian Peninsula
-
Spain
-
Andalusia Spain (1)
-
Spanish Pyrenees (2)
-
-
-
Italy
-
Apennines
-
Apuane Alps (28)
-
Central Apennines (5)
-
Ligurian Apennines (3)
-
Northern Apennines (115)
-
-
Calabria Italy (2)
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Emilia-Romagna Italy
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Bologna Italy (10)
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Modena Italy (6)
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Parma Italy (9)
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Piacenza Italy (5)
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Ravenna Italy (4)
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Romagna (4)
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Taro Valley (1)
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Friuli-Venezia Giulia Italy (1)
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Liguria Italy
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Genoa Italy (2)
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Ligurian Alps (3)
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Ligurian Apennines (3)
-
-
Lombardy Italy
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Pavia Italy (1)
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Marches Italy
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Ancona Italy (1)
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Pesaro Italy (1)
-
-
Piemonte Italy
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Asti Italy (1)
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Turin Italy (2)
-
-
Po River (18)
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Po Valley (29)
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Sardinia Italy (1)
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Sesia-Lanzo Zone (1)
-
Sicily Italy
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Catania Italy (1)
-
Peloritani Mountains (1)
-
-
Tuscan Nappe (1)
-
Tuscany Italy
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Apuane Alps (28)
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Florence Italy (5)
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Stratigraphic evidence of glacier interactions in the Isarco-Pusteria valley junction (Italian Alps): unraveling the Late Pleistocene landscape evolution Available to Purchase
The Early-Middle Miocene marly-siliceous and siliciclastic sedimentation of the Tuscan Domain along the Mugello-Casentino-Arezzo alignment (Northern Apennines, Italy) Available to Purchase
The stratigraphy of seep-impacted sediment in the Verghereto marls (Santa Sofia, Italy): insights into the Late Miocene evolution of the Romagna foredeep Available to Purchase
The Alpi Apuane and their surroundings: a tale of the origins of modern Italian geological maps and of a missed ‘early recognition’ of nappes in the Apennines Available to Purchase
Abstract The northernmost coastal sector of the Italian peninsula from the La Spezia Gulf to Monte Pisano, including the Alpi Apuane mountain range, represents a special morpho-structural domain of the inner northwestern Apennines. Described by naturalists since the Roman age, its location on the land and sea track of the Italian Grand Tour makes it a special zone in the Italian peninsula that was visited by some of the most eminent European geologists of the nineteenth century, including Brongniart, Buckland, De la Beche, Hoffman, Escher von der Linth, Murchison and Lyell. The area has been also the homeland of naturalists and scientists who played a significant role during the nineteenth century in the advancement of geological studies in Italy. Thanks to Capellini's ‘Geological map of the La Spezia Gulf and surroundings’ (1863) and Zaccagna's ‘Geological maps of the Alpi Apuane’ (1879–97), the area became central in the history of the foundations of modern Italian geological maps. However, the opportunities provided by early mapping and palaeontological discoveries for developing tectonic concepts were squandered by Italian Apennines geologists, who remained stuck on explanations of autochthonism, thus missing an early recognition of nappe tectonics that was only accepted in the middle of the twentieth century.
U–Pb ages from felsic rocks of the External Ligurian sedimentary mélange (Northern Apennine, Italy): tracing the pre-Jurassic history of the hyperextended Adria continental margin Available to Purchase
The Fornovolasco area (Alpi Apuane, Northern Apennines): a review and update on its Palaeozoic succession, middle Permian magmatism, and tectonic setting Available to Purchase
NOT ENTIRELY ICHTHYOSAUR: A MYSTERIOUS LAMNIFORM AND ICHTHYOPTERYGIAN-FALL ASSOCIATION FROM THE ABYSSAL UPPER CRETACEOUS OF THE NORTHERN APENNINES (ITALY) Available to Purchase
Inherited anthropogenic disturbance and decadal sediment dynamics in a mountain fluvial system: The case of the Marecchia River canyon, Northern Apennines Available to Purchase
Seismic Noise Reduction as a Function of Depth Recorded by a Vertical Array Installed in a 285‐m‐Deep Borehole at a Gas Storage Field in Northern Italy Available to Purchase
Source‐Parameter Estimation after Attenuation Correction through the Use of Q Tomography Available to Purchase
Impact of Site‐Response Characterization on Probabilistic Seismic Hazard in the Po Plain (Italy) Available to Purchase
Fault and Fluid Interaction during the 2012 Emilia (Northern Italy) Seismic Sequence Available to Purchase
Two-stage broad learning inversion framework for shear-wave velocity estimation Available to Purchase
Pyradoketosite, a new, unexpected, polymorph of Ag 3 SbS 3 from the Monte Arsiccio mine (Apuan Alps, Tuscany, Italy) Available to Purchase
Messinian seep-carbonates marking the transition to the evaporite deposits in the Romagna sector of the northern Apennines (Italy) Available to Purchase
Thin vs. thick-skinned tectonics in the Umbria-Marche fold-and-thrust belt: Contrast or coexistence? Available to Purchase
ABSTRACT The structural style at depth of the Umbria-Marche fold-and-thrust belt, which occupies the outer province of the Northern Apennines of peninsular Italy, has long been debated and interpreted in terms of thin-skinned or thick-skinned deformation models, respectively. Thin-skinned models predict that the Mesozoic–Tertiary sedimentary cover was detached along Upper Triassic evaporites and translated northeastward along stepped thrust faults above a relatively undeformed basement. On the other hand, thick-skinned models predict the direct involvement of conspicuous basement slices within thrust-related folds. A description of selected examples in the southeastern part of the Umbria-Marche belt reveals that some compressional structures are indeed thin-skinned, their style being controlled by rheological properties of a mechanically heterogeneous stratigraphy containing multiple décollements, whereas other structures are genuinely thick-skinned, their style being dominated by the reverse-reactivation of pre-orogenic normal faults deeply rooted within the basement. Therefore, the contrast of thin- versus thick-skinned structural styles, an issue that has generated a long-lasting debate, is only apparent, since both styles are documented to coexist and to have concurred in controlling the final compressional geometry of the fold-and-thrust belt.
The influence of the Messinian Salinity Crisis on the tectonic evolution of the Northern Apennines Available to Purchase
ABSTRACT The Messinian Salinity Crisis (5.85–5.35 Ma) represents a nearly unprecedented unloading and loading event. During the Messinian Salinity Crisis, two important things happened in terms of surface load changes—the accumulation of thick evaporites represent a load addition, while the desiccation of the Mediterranean represents a load subtraction. The desiccation and evaporite deposition were followed by the rapid addition of water, refilling the Mediterranean during the Zanclean. The calculated flexural response to load changes imposed significant changes on the horizontal stresses in the upper crust of the Northern Apennines, an active orogenic system characterized by simultaneous zones of extension and compression that migrated eastward over time. We show that these flexural stresses (approaching ± 50 MPa), added to the preexisting stresses across the Northern Apennines, were large enough to have caused some areas in compressional stress regimes to flip to extensional regimes, and vice versa. Among other things, our model predicts that the Marches Apennines region, which was beginning to undergo compression at the leading edge of the orogen, should have experienced a brief interval of extensional deformation. Previous structural studies of this region have shown that there was, in fact, a brief period of extensional faulting near the onset of the Messinian Salinity Crisis, which was then followed by a return to compressional deformation, just as our model predicts. The hypothesis presented here provides a novel explanation for this extension occurring in an area that should have been undergoing compression, one in which the unique events of the Messinian Salinity Crisis generated significant flexural stresses that changed the deformational regime during the relatively brief time of the Messinian Salinity Crisis. We further suggest that this hypothesis may provide insight into similar unexpected tectonic episodes during this time period in other parts of the Apennines.