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NARROW
Format
Article Type
Journal
Publisher
Section
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
East Africa
-
Zambia (1)
-
-
East African Lakes
-
Lake Kariba (1)
-
-
East African Rift (1)
-
Madagascar
-
Mahajanga Basin (1)
-
-
North Africa
-
Algeria
-
Algiers Algeria (1)
-
Constantine Algeria (2)
-
Dellys Algeria (1)
-
Guelma Algeria (1)
-
-
Atlas Mountains (2)
-
Egypt (1)
-
Tunisia (1)
-
-
Southern Africa
-
Karoo Basin (1)
-
South Africa
-
Cape fold belt (1)
-
Eastern Cape Province South Africa (1)
-
-
Zimbabwe (1)
-
-
-
Antarctica
-
South Shetland Islands
-
Deception Island (1)
-
-
-
Asia
-
Altai Mountains (1)
-
Central Asia
-
Pamirs (1)
-
-
Far East
-
China
-
Gansu China (1)
-
North China Plain (1)
-
Qinghai China (1)
-
Qinling Mountains (1)
-
Sichuan Basin (1)
-
Sichuan China (1)
-
Xinjiang China
-
Junggar (1)
-
Tahe Field (1)
-
Tarim Basin (2)
-
-
Xizang China
-
Lhasa Block (1)
-
-
-
Korea (1)
-
Taiwan (1)
-
-
Himalayas
-
Garhwal Himalayas (1)
-
-
Hindu Kush (1)
-
Indian Peninsula
-
Afghanistan (2)
-
Ganga Basin (1)
-
India
-
Bengal Islands
-
Andaman Islands (1)
-
-
Uttarakhand India
-
Garhwal Himalayas (1)
-
Garhwal India (1)
-
-
-
Indo-Gangetic Plain (1)
-
Jammu and Kashmir
-
Kashmir (1)
-
-
Nepal (1)
-
Pakistan
-
Baluchistan Pakistan (1)
-
-
-
Kamchatka Russian Federation
-
Kamchatka Peninsula (1)
-
-
Kyrgyzstan (1)
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Main Boundary Fault (1)
-
Main Central Thrust (1)
-
Middle East
-
Iran
-
Elburz (1)
-
Sanandaj-Sirjan Zone (1)
-
-
Turkey
-
Sea of Marmara region (1)
-
-
Zagros (1)
-
-
Qiangtang Terrane (1)
-
Russian Pacific region (1)
-
Tajikistan (1)
-
Tibetan Plateau (4)
-
Tien Shan (1)
-
-
Atlantic Ocean
-
North Atlantic
-
Goban Spur (1)
-
Northeast Atlantic (1)
-
-
South Atlantic
-
Southwest Atlantic (1)
-
-
-
Austral Basin (6)
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Australasia
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New Zealand
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Wellington New Zealand (1)
-
-
-
Canada
-
Eastern Canada
-
Maritime Provinces
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New Brunswick (1)
-
-
Ontario
-
Hamilton Ontario (1)
-
-
Quebec (1)
-
-
Elzevir Terrane (1)
-
Western Canada
-
British Columbia
-
Kamloops British Columbia (1)
-
Saanich Inlet (1)
-
Vancouver Island (3)
-
-
Manitoba
-
Pinawa Manitoba
-
Underground Research Laboratory (1)
-
-
-
-
-
Caribbean region
-
West Indies
-
Antilles
-
Greater Antilles
-
Hispaniola
-
Haiti (1)
-
-
-
Lesser Antilles
-
Martinique (2)
-
-
-
-
-
Coast Ranges (8)
-
Colorado River (1)
-
Commonwealth of Independent States
-
Kyrgyzstan (1)
-
Russian Federation
-
Kamchatka Russian Federation
-
Kamchatka Peninsula (1)
-
-
Russian Pacific region (1)
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-
Tajikistan (1)
-
-
Drake Passage (1)
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Elba (3)
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Eurasia (2)
-
Europe
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Adriatic region (1)
-
Alps
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Albanides (1)
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Eastern Alps (1)
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-
Carpathians
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Vrancea seismic zone (2)
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-
Central Europe
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Austria (1)
-
Czech Republic
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Bohemia (1)
-
-
Germany
-
Bavaria Germany (1)
-
-
-
Pyrenees (1)
-
Southern Europe
-
Albania
-
Albanides (1)
-
-
Greece
-
Hellenic Arc (2)
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Peloponnesus Greece (1)
-
-
Iberian Peninsula
-
Portugal (1)
-
Spain
-
Andalusia Spain
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Almeria Spain (1)
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Granada Spain
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Granada Depression (1)
-
-
-
Betic Cordillera (1)
-
Cantabrian Mountains (2)
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Iberian Mountains (1)
-
-
Spanish Central System (1)
-
-
Italy
-
Abruzzi Italy (1)
-
Apennines
-
Central Apennines (4)
-
Monte Amiata (4)
-
Northern Apennines (4)
-
Southern Apennines (5)
-
-
Apulia Italy (1)
-
Basilicata Italy
-
Potenza Italy (1)
-
-
Calabria Italy
-
Sila Massif (1)
-
-
Campania Italy
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Monte Somma (1)
-
Naples Italy
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Ischia (3)
-
-
Phlegraean Fields (2)
-
Roccamonfina (1)
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Salerno Italy (1)
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Vesuvius (4)
-
-
Emilia-Romagna Italy (1)
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Friuli-Venezia Giulia Italy
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Trieste Italy (1)
-
-
Ivrea-Verbano Zone (1)
-
Latium Italy
-
Rome Italy (4)
-
-
Lombardy Italy
-
Brescia Italy (1)
-
Milan Italy (1)
-
-
Molise Italy (2)
-
Piemonte Italy (1)
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Po Valley (1)
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Sardinia Italy (3)
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Sicily Italy
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Catania Italy (2)
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Lipari Islands
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Stromboli (3)
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Vulcano (2)
-
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Messina Italy (1)
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Mount Etna (1)
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Peloritani Mountains (1)
-
-
Strait of Messina (1)
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Tagliamento Valley (1)
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Tuscan Nappe (2)
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Tuscany Italy
-
Grosseto Italy (1)
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Monte Amiata (4)
-
Siena Italy (1)
-
-
Umbria Italy (1)
-
Valle d'Aosta Italy (1)
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Veneto Italy (1)
-
-
Moesian Platform (2)
-
Romania
-
Apuseni Mountains (1)
-
Olt River (1)
-
Transylvanian Alps (1)
-
Vrancea seismic zone (2)
-
Walachia
-
Bucharest Romania (1)
-
-
-
Slovenia (1)
-
-
Variscides (1)
-
Western Europe
-
France
-
Alsace (1)
-
Bas-Rhin France
-
Soultz-sous-Forets France (1)
-
-
-
-
-
Indian Ocean
-
Andaman Sea (1)
-
Bay of Bengal
-
Andaman Basin (1)
-
-
-
Indian Ocean Islands
-
Madagascar
-
Mahajanga Basin (1)
-
-
-
Mediterranean region
-
Calabrian Arc (1)
-
-
Mediterranean Sea
-
East Mediterranean
-
Adriatic Sea (1)
-
Ionian Sea (1)
-
Levantine Basin (1)
-
-
Strait of Sicily (1)
-
West Mediterranean
-
Gulf of Lion (1)
-
Tyrrhenian Sea (6)
-
-
-
Mexico
-
Mexico state
-
Federal District Mexico
-
Mexico City Mexico (1)
-
-
-
-
North America
-
Canadian Shield (1)
-
Niagara Escarpment (1)
-
-
North Island (1)
-
Pacific Coast (1)
-
Pacific Ocean
-
East Pacific
-
Northeast Pacific
-
Gulf of California
-
Guaymas Basin (1)
-
-
Mendocino fracture zone (2)
-
-
Peru-Chile Trench (1)
-
Southeast Pacific
-
Chile Ridge (2)
-
-
-
North Pacific
-
Northeast Pacific
-
Gulf of California
-
Guaymas Basin (1)
-
-
Mendocino fracture zone (2)
-
-
-
South Pacific
-
Southeast Pacific
-
Chile Ridge (2)
-
-
Southwest Pacific
-
Cook Strait (1)
-
-
-
West Pacific
-
Southwest Pacific
-
Cook Strait (1)
-
-
-
-
Puna (1)
-
Salinas Valley (2)
-
San Andreas Fault (15)
-
San Jacinto Fault (1)
-
San Joaquin Basin (1)
-
San Jorge Basin (2)
-
Santa Lucia Range (1)
-
Santa Maria Basin (2)
-
Scotia Sea (1)
-
Scotia Sea Islands
-
South Shetland Islands
-
Deception Island (1)
-
-
-
Sierra Nevada (1)
-
South America
-
Andes
-
Central Andes (4)
-
Patagonian Andes (3)
-
Southern Andes (2)
-
-
Argentina
-
Chubut Argentina (6)
-
La Rioja Argentina (1)
-
Mendoza Argentina (1)
-
Neuquen Argentina (2)
-
Neuquen Basin (1)
-
Pampean Mountains (3)
-
Rio Negro Argentina (4)
-
San Juan Argentina (1)
-
Santa Cruz Argentina
-
Deseado Massif (4)
-
-
-
Chile
-
Aisen del General Carlos Ibanez del Campo Chile
-
Aisen Chile (1)
-
-
Magallanes Chile (2)
-
-
Patagonia
-
Patagonian Andes (3)
-
-
Precordillera (4)
-
-
Southern Ocean (1)
-
United States
-
California
-
Caliente Range (1)
-
Central California (10)
-
Cuyama Basin (3)
-
Garlock Fault (1)
-
Hosgri Fault (3)
-
Kern County California
-
Elk Hills Field (1)
-
-
Los Angeles Basin (1)
-
Los Angeles County California
-
Long Beach California (1)
-
Los Angeles California (1)
-
-
Monterey County California
-
Parkfield California (5)
-
-
Newport-Inglewood Fault (1)
-
Riverside County California (1)
-
Salinian Block (5)
-
Salton Sea (1)
-
San Bernardino County California (1)
-
San Fernando Valley (1)
-
San Francisco Bay region (1)
-
San Gabriel Fault (2)
-
San Gabriel Mountains (2)
-
San Gregorio Fault (3)
-
San Joaquin Valley (2)
-
San Luis Obispo County California
-
Carrizo Plain (3)
-
Cholame California (2)
-
Pismo Basin (1)
-
San Luis Obispo California (1)
-
-
Santa Barbara County California
-
Lompoc California (1)
-
Santa Maria California (1)
-
-
Santa Ynez Mountains (2)
-
Southern California (6)
-
Sur fault zone (2)
-
Transverse Ranges (3)
-
Ventura Basin (1)
-
Ventura County California
-
Simi Hills (1)
-
-
-
Colorado Plateau (1)
-
Nevada (1)
-
Southwestern U.S. (1)
-
Western U.S. (1)
-
-
USSR (1)
-
Vulture Mountain (1)
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Western Desert (1)
-
-
commodities
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energy sources (2)
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geothermal energy (5)
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metal ores
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antimony ores (2)
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base metals (1)
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copper ores (1)
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gold ores (3)
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iron ores (1)
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lead ores (1)
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mercury ores (1)
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molybdenum ores (1)
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polymetallic ores (2)
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silver ores (2)
-
-
mineral deposits, genesis (8)
-
mineral exploration (3)
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oil and gas fields (7)
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petroleum
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natural gas (2)
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tight sands (1)
-
-
elements, isotopes
-
carbon
-
C-13/C-12 (8)
-
C-14 (3)
-
-
chemical ratios (2)
-
hydrogen
-
D/H (2)
-
-
incompatible elements (1)
-
isotope ratios (21)
-
isotopes
-
radioactive isotopes
-
C-14 (3)
-
Pb-206/Pb-204 (7)
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Pb-207/Pb-204 (4)
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Pb-208/Pb-204 (4)
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Th-232/Th-230 (1)
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U-238/Th-230 (1)
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U-238/U-235 (1)
-
-
stable isotopes
-
C-13/C-12 (8)
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D/H (2)
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Hf-177/Hf-176 (3)
-
Nd-144/Nd-143 (8)
-
O-18/O-16 (5)
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Pb-206/Pb-204 (7)
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Pb-207/Pb-204 (4)
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Pb-208/Pb-204 (4)
-
S-34/S-32 (2)
-
Sr-87/Sr-86 (11)
-
Zn-66 (1)
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-
-
Lu/Hf (1)
-
metals
-
actinides
-
thorium
-
Th-232/Th-230 (1)
-
U-238/Th-230 (1)
-
-
uranium
-
U-238/Th-230 (1)
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U-238/U-235 (1)
-
-
-
alkali metals
-
sodium (1)
-
-
alkaline earth metals
-
magnesium (1)
-
strontium
-
Sr-87/Sr-86 (11)
-
-
-
aluminum (1)
-
germanium (1)
-
hafnium
-
Hf-177/Hf-176 (3)
-
-
indium (2)
-
lead
-
Pb-206/Pb-204 (7)
-
Pb-207/Pb-204 (4)
-
Pb-208/Pb-204 (4)
-
-
manganese (1)
-
platinum group
-
osmium (1)
-
-
precious metals (1)
-
rare earths
-
neodymium
-
Nd-144/Nd-143 (8)
-
-
ytterbium (1)
-
-
zinc
-
Zn-66 (1)
-
-
-
noble gases
-
helium (1)
-
-
oxygen
-
O-18/O-16 (5)
-
-
sulfur
-
S-34/S-32 (2)
-
-
-
fossils
-
Chordata
-
Vertebrata
-
Tetrapoda
-
Reptilia
-
Diapsida
-
Rhynchosauria (1)
-
-
-
-
-
-
Invertebrata
-
Arthropoda
-
Mandibulata
-
Crustacea
-
Branchiopoda (1)
-
-
-
-
Mollusca
-
Bivalvia
-
Pterioida
-
Pteriina
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Pectinacea
-
Pectinidae (1)
-
-
-
-
-
Gastropoda (2)
-
-
Protista
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Foraminifera
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Rotaliina
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Globigerinacea
-
Globorotaliidae
-
Globorotalia (1)
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-
-
-
-
-
-
microfossils (5)
-
palynomorphs
-
Dinoflagellata (1)
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-
Plantae
-
algae
-
diatoms (1)
-
-
Pteridophyta
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Filicopsida
-
Sphenopteris (1)
-
-
Sphenopsida
-
Sphenopteris (1)
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-
-
Spermatophyta
-
Angiospermae (1)
-
Gymnospermae
-
Coniferales
-
Araucariaceae (1)
-
-
-
-
-
-
geochronology methods
-
(U-Th)/He (1)
-
Ar/Ar (7)
-
fission-track dating (3)
-
K/Ar (5)
-
Lu/Hf (1)
-
Pb/Pb (1)
-
tephrochronology (1)
-
Th/U (1)
-
U/Pb (18)
-
-
geologic age
-
Cenozoic
-
Bronze Age (1)
-
lower Cenozoic (1)
-
Quaternary
-
Holocene
-
upper Holocene (2)
-
-
Pleistocene
-
upper Pleistocene (1)
-
-
-
Saugus Formation (1)
-
Tertiary
-
Challis Volcanics (1)
-
lower Tertiary (1)
-
middle Tertiary
-
Soda Lake Shale Member (1)
-
-
Neogene
-
Etchegoin Formation (1)
-
Miocene
-
lower Miocene
-
Saucesian (1)
-
-
middle Miocene
-
Luisian (1)
-
-
Mohnian (1)
-
Relizian (1)
-
upper Miocene
-
Messinian (2)
-
Modelo Formation (2)
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Punchbowl Formation (1)
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Santa Margarita Formation (1)
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-
-
Pliocene (12)
-
-
Paleogene
-
Eocene
-
Cozy Dell Formation (1)
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middle Eocene (1)
-
upper Eocene (3)
-
-
Oligocene
-
upper Oligocene (2)
-
-
Paleocene
-
lower Paleocene (1)
-
-
-
Vaqueros Formation (2)
-
-
upper Cenozoic (2)
-
-
Mesozoic
-
Cretaceous
-
Lower Cretaceous
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Agrio Formation (1)
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Albian (2)
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Aptian (1)
-
-
Middle Cretaceous (1)
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Upper Cretaceous
-
Cenomanian (3)
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Turonian (1)
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-
-
Franciscan Complex (2)
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Jurassic
-
Lower Jurassic
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Pliensbachian (1)
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Sinemurian (1)
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Toarcian (1)
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Middle Jurassic (2)
-
Upper Jurassic
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Malm (1)
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-
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Orocopia Schist (1)
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Triassic
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Lower Triassic (1)
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Middle Triassic (1)
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Upper Triassic
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Xujiahe Formation (1)
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-
-
-
Paleozoic
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Cambrian (1)
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Carboniferous
-
Lower Carboniferous (1)
-
-
lower Paleozoic (1)
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Ordovician
-
Middle Ordovician (1)
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-
Permian
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Lower Permian (1)
-
-
Silurian
-
Middle Silurian
-
Rochester Formation (1)
-
-
-
-
Precambrian
-
upper Precambrian
-
Proterozoic
-
Mesoproterozoic (1)
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-
-
-
-
igneous rocks
-
igneous rocks
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kamafugite (2)
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plutonic rocks
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diorites (1)
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gabbros
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microgabbro (1)
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granites (5)
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granodiorites (1)
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ultramafics
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peridotites
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lherzolite (1)
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volcanic rocks
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adakites (2)
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andesites (2)
-
basalts
-
alkali basalts
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hawaiite (2)
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mugearite (1)
-
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flood basalts (2)
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mid-ocean ridge basalts (2)
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ocean-island basalts (2)
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shoshonite (4)
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tholeiite (1)
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basanite (3)
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benmoreite (1)
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dacites (1)
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glasses (2)
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latite (1)
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leucitite (1)
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melilitite (1)
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nephelinite (1)
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phonolites (1)
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pyroclastics
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ignimbrite (1)
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pumice (1)
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scoria (1)
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tuff (3)
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rhyolites (1)
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tephrite (1)
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trachytes (3)
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ophiolite (3)
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volcanic ash (1)
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metamorphic rocks
-
metamorphic rocks
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amphibolites (1)
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cataclasites (1)
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metaigneous rocks (1)
-
metasedimentary rocks
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metaconglomerate (1)
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metasandstone (2)
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metasiltstone (1)
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schists (3)
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ophiolite (3)
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turbidite (1)
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-
minerals
-
carbonates
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calcite (2)
-
dawsonite (2)
-
-
oxides
-
cassiterite (1)
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hematite (2)
-
iron oxides (1)
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perovskite (1)
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spinel (2)
-
-
phosphates
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apatite (2)
-
-
silicates
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orthosilicates
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zircon group
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sheet silicates
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Primary terms
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absolute age (28)
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Africa
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Mesozoic
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Cretaceous
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Franciscan Complex (2)
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Mendocino fracture zone (2)
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Mendocino fracture zone (2)
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South Pacific
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GeoRef Categories
Era and Period
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Availability
La Panza Range
Superimposed extension and shortening in the southern Salinas Basin and La Panza Range, California: A guide to Neogene deformation in the Salinian block of the central California Coast Ranges Open Access
LA PANZA RANGE THERMOCHRONOLOGY, SAMPLE LOCALITY, AND AGE DATA Open Access
Modeled late Miocene reheating temperatures for La Panza Range thermochrono... Open Access
Modeled time-temperature paths for La Panza Range samples JC10-LP6 and JC10... Open Access
Geologic map of the La Panza Range and southern Salinas Basin, modified fro... Open Access
Geologic map of the La Panza Range and southern Salinas Basin, modified fro... Open Access
Isostatic residual gravity map of the La Panza Range and southern Salinas V... Open Access
Provenance and Paleocurrents of the Paso Robles Formation, California Available to Purchase
Chapter 1: Balanced palinspastic reconstruction of pre-late Cenozoic paleogeology, southern California: Geologic and kinematic constraints on evolution of the San Andreas fault system Available to Purchase
The San Andreas fault system comprises an interactive network of right- and left-lateral strike-slip faults and related reverse and normal faults. In southern and central California, right- and left-lateral faults of the San Andreas system transect a crystalline terrane of Proterozoic through Mesozoic igneous and metamorphic rocks overlapped by Upper Cretaceous through Eocene marine sedimentary strata and by Oligocene and lower Miocene terrestrial volcanic and sedimentary strata. Paleogeologic patterns in these rocks define regional terranes and local reference domains, the reassembly of which permits determination of overall displacement on the strike-slip faults that disrupt them. Timing of fault movement is recorded by incremental displacements of upper Cenozoic sedimentary deposits and by the sequence of fault movements required to effect reassembly of the reference domains. Reassembling the pre-late Cenozoic regional paleogeologic framework of southern and central California leads to a balanced palinspastic reconstruction of the San Andreas system that differs from previously published reconstructions, both conceptually and in terms of magnitude of displacement restored on many of the principal strike-slip faults. Four reference domains that constrain the balanced reconstruction consist of paleogeologic patterns reassembled from crystalline and sedimentary rocks now found: (1) in the Transverse Ranges in the Frazier Mountain-Mount Pinos area, the eastern Orocopia Mountains and vicinity, and the Sierra Pelona-northern San Gabriel Mountains area; (2) in the Salinian block in the La Panza Range and in the Transverse Ranges in the Liebre Mountain block and western San Bernardino Mountains; (3) in the Salinian block in the Gabilan Range, in the southern tail of the Sierra Nevada in the San Emigdio and Techachapi Mountains, and in the Portal Ridge area of the northwestern-most Mojave Desert; and (4) in the southern part of the Transverse Ranges west of the San Andreas fault, in the northern Peninsular Ranges, and in the southern Chocolate Mountains. Simultaneous reconstruction of the four paleogeologic reference domains specifies the magnitude and sequence of displacement on the major right- and left-lateral faults of the San Andreas system. The Clemens Well-Fenner-San Francisquito fault is the earliest (and now abandoned) strand of the San Andreas fault system in southern California. It formed a continuous structure with the early San Andreas fault zone of central California, is today cut by the San Andreas fault in the Transverse Ranges, and diverges southeastward from the San Andreas fault east of the Salton trough at least as far as the Little Chuckwalla Mountains. The Clemens Well-Fenner-San Francisquito-early San Andreas fault accumulated a displacement of about 100 or 110 km during the interval between 22 and 13 Ma and probably during the more restricted interval between 18 to 17 and 13 Ma. The disposition of displacement southeastward from the Transverse Ranges is problematic because the Clemens Well-Fenner-San Francisquito fault neither rejoins the modern San Andreas fault in the Salton trough nor extends indefinitely into the continent. Hypothetically, the southeastward extension of the fault is absorbed by coeval sinistral kinking along the southern margins of the Transverse Ranges and Chocolate Mountains and/or by synchronous detachment faulting in southeasternmost California and southwesternmost Arizona. A zone of sinistral deformation trends roughly east-west along the southern boundary of the Transverse Ranges province. The earliest expression of this deformation is sinistral kinking that began to develop after 22 to 20 Ma and prior to 17 Ma. During the interval from 17 to 13 Ma, the zone of sinistral deformation was characterized by widespread volcanism and perhaps by faulting associated with left-oblique extension. Left-lateral displacement of about 40 to 45 km across this zone during this interval is attributed here to sinistral kinking. The zone of sinistral kinking and faulting apparently initiated in a right step between the southeastern terminus of the Clemens Well-Fenner-San Francisquito fault and the northwestern terminus of dextral faults such as the East Santa Cruz basin fault that were active coevally in the continental borderland. Subsequently, the zone served as the southern terminus of right-lateral strands of the San Gabriel fault system. Still later, it served as the northern terminus of the Elsinore and San Jacinto fault zones. In the Transverse Ranges, the San Gabriel fault system, including, from oldest to youngest, the Canton, San Gabriel, and Vasquez Creek faults, began to splay southward from the older Clemens Well-Fenner-San Francisquito-early San Andreas fault as early as 12 to 13 Ma. The San Gabriel fault system has since accumulated a displacement of 42 km, deforming the older Clemens Well-Fenner-San Francisquito-early San Andreas fault in the process. The Canton fault, active between 13 and 10 Ma, accumulated a displacement of 15 to 17 km; the San Gabriel fault, active between 10 and 5 Ma, accumulated a displacement of 22 to 23 km; and the Vasquez Creek fault, active between 6 Ma and the present, accumulated a displacement of no more than about 5 km. Displacement on these faults merged northwestward with that of the early San Andreas fault north of the Transverse Ranges, whereas movement ceased on the Clemens Well-Fenner-San Francisquito fault. In the Salinian block, the San Gregorio-Hosgri, Rinconada-Reliz, and Red Hills-Ozena faults developed coevally with the San Gabriel fault and also merged northwestward with the early San Andreas fault. Displacements of 45 km on the Rinconada-Reliz fault and 105 km on the San Gregorio-Hosgri fault south of Monterey Bay merge on the San Gregorio fault north of the bay for total of 150 km. Hypothetically, displacement on the San Gregorio fault is split between 70 km (after 6 to 6.5 Ma) west of the Montara Mountain block and 80 km (prior to 6 to 6.5 Ma) east of that block, so as not to leave the Montara Mountain block dangling north of the restored Salinian block. Displacement on the San Gregorio fault is transferred northward onto the San Andreas fault, thereby increasing its overall displacement to about 440 km north of the junction of the two faults. None of the displacements on the Salinian block faults and no more than 22 or 23 km of slip on the San Gabriel fault have been shown to remerge southeastward with the Clemens-Well-Fenner-San Francisquito-early San Andreas fault. Hypothetically, these displacements stepped west to the continental margin across the western Transverse Ranges, where left-oblique extensional faulting continued through the late Miocene into the early Pliocene. Along the southern boundary of the Transverse Ranges west of the San Gabriel Mountains, the ancestral Malibu Coast-Santa Monica fault system accumulated a sinistral component of displacement of as much as 35 km in addition to the earlier sinistral kinking, whereas to the east, the ancestral Raymond-Cucamonga-Banning fault system accumulated no more than about 10 to 20 km. The modern San Andreas fault emerged about 5 Ma. In central California, it coincides with the pre-5-Ma San Andreas fault, whereas in southern California it diverged from the older Clemens Well-Fenner-San Francisquito fault and actually crosscuts the older fault to merge southeastward with the Salton trough at the north end of the Gulf of California. Displacement on the post-5-Ma San Andreas fault varies along the fault because the crustal blocks adjoining the fault are deformed by coeval strike-slip faults, including right-lateral faults such as the San Jacinto, Calaveras-Hayward-Rodgers Creek-Maacama-Garberville, and San Gregorio-Hosgri faults, and left-lateral faults such as the Garlock fault and the east- to northeast-trending faults of the Transverse Ranges. Displacement restored on the modern San Andreas fault as measured along the present trace ranges from about 160 to 185 km. Simultaneous palinspastic reconstruction of the four reference domains is possible only in conjunction with restoration of slip along a zig-zag system of secondary strike-slip faults of the San Andreas system that distort the crustal blocks adjoining the modern San Andreas fault in southern California. This system includes right-lateral fault s in the Peninsular Ranges, Mojave Desert, and Death Valley area, and left-lateral faults in the Transverse Ranges and between the Sierra Nevada and Mojave Desert. Overall displacements restored on these secondary faults are generally well constrained by offsets of crystalline rocks and overlying Cenozoic strata. In the Peninsular Ranges, dextral displacement restored on the San Jacinto fault is 28 km, and that restored on the Elsinore fault is 5 km. About 10 km of Pliocene and Quaternary left slip is restored on faults along the southern boundary of the Transverse Ranges, where earlier left-oblique extensional faulting was overprinted by reverse and left-oblique reverse faulting by late Pliocene and Quaternary time. In the eastern Transverse Ranges, sinistral displacement restored on the major east-trending faults includes 16 km on the Pinto Mountain fault, 5 km on the Blue Cut fault, 11 km on the Chiriaco fault, and 8 km on the Salton Creek fault. In the Mojave Desert, dextral displacements restored on northwest-trending faults include 3 km on the Helendale fault, 3 km on the Lockhart-Lenwood fault, 4 km on the Harper-Harper Lake-Camp Rock-Emerson fault, 9 km on the Blackwater-Calico-Mesquite Lake fault, and 16 km on the Pisgah-Bullion fault. Although displacement on the central and eastern parts of the Garlock fault is well documented to be about 60 km, displacement at the western end, as limited by reassembly of the Gabilan Range-San Emigdio Mountains-Portal Ridge reference domain, can be no greater than 12 km.