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Tectonophysics, ISSN 0040-1951, 06/2016, Volume 683, pp. 233 - 254
Journal Article
Tectonophysics, ISSN 0040-1951, 10/2019, Volume 769, p. 228190
•The Maurice Ewing Bank is an up to 29km thick continental fragment.•The Georgia Basin consists of normal oceanic crust of 7km thickness.•In the Georgia Basin,... 
Amplitude modelling | Falkland Plateau | Wide-angle seismic data | Continental fragment | LARGE IGNEOUS PROVINCES | GONDWANA BREAK-UP | ATLANTIC | GRAVITY | RIDGE | SEA | CONTINENTAL-CRUST | GEOCHEMISTRY & GEOPHYSICS | EVOLUTION | HISTORY | Cenozoic Era | Mesozoic | Potential fields | Oceans | Magnetic data | Data | Transition zone | Magma | Tectonics | Crustal structure | Thickness | Jurassic | Ships | Continental crust | Basins | Plateaux | Ocean crust | Oceanic crust | Anomalies
Journal Article
Tectonophysics, ISSN 0040-1951, 10/2018, Volume 744, p. 296
Two passive seismic profiles have been acquired in the eastern Pyrenees as part of the Pyrope and Orogen projects to investigate the crustal structure... 
Mesozoic | Neogene | Seismic activity | Concretions | Mapping | Magnesium aluminum silicates | Orogeny | Earthquakes | Basins | Profiles | Coastal environments | Mantle | Plate tectonics | Oceanic crust | Cenozoic Era | Seismic profiles | Velocity | Moho | Crustal structure | Geometry | Thickness | Interfaces | Seismic analysis | Thinning | Seismic surveys | Crustal thickness | High frequency | Crusts | Lines
Journal Article
Tectonophysics, ISSN 0040-1951, 10/2017, Volume 717, p. 645
The crustal structure in Western Iberia, is the result of a complex geodynamic history. Most of the surface is covered by rocks dating to the Variscan orogeny,... 
Cenozoic Era | Mesozoic | Geology | Seismic activity | Crustal structure | Velocity | Studies | Heterogeneity | Faults | Geological faults | Orogeny | Correlation analysis | Earthquakes | Basins | Valleys | Tomography | Coastal environments | Oceanic crust
Journal Article
Journal Article
Journal of Asian Earth Sciences, ISSN 1367-9120, 12/2015, Volume 113, pp. 491 - 500
A crustal seismic reflection profile across the Great Xing'an Ranges (GXAR) was recorded in 2011 revealed features of crustal structure and deformation at the... 
Deep seismic reflection profile | Deformation | Crustal structure | CAOB | Great Xing'an ranges | ND ISOTOPIC EVIDENCE | U-PB | SONGLIAO BASIN | CONTINENTAL LITHOSPHERE | GEOSCIENCES, MULTIDISCIPLINARY | MESOZOIC VOLCANIC-ROCKS | TRAVEL-TIME TOMOGRAPHY | NE CHINA | POSTOROGENIC EXTENSION | NORTHEAST CHINA | ASIAN OROGENIC BELT | Earth | Seismic reflection method | Crust
Journal Article
Tectonophysics, ISSN 0040-1951, 05/2017, Volume 705, p. 42
At present, the SW Iberian margin is located along the convergent Iberia-Nubia plate boundary. In Mesozoic times, the margin was located at the triple junction... 
Mesozoic | Two dimensional models | Gravity anomalies | Multichannel | Basins | Kinematics | Profiles | Modelling | Cenozoic | Plate tectonics | Oceanic crust | Gravity | Cenozoic Era | Gravitation | Geology | Thermogravimetric analysis | Seismic profiles | Surveying | Crustal structure | Uplift | Studies | Thickness | Tapering | Seismic analysis | Thinning | Seismic surveys | Passive margins | Ocean crust | Plate boundaries | Gravimetry | Structural analysis
Journal Article
Physics of the Earth and Planetary Interiors, ISSN 0031-9201, 05/2018, Volume 278, pp. 16 - 25
•Joint inversion of crustal and uppermost mantle Vs structures in the South China.•Obvious Vp/Vs ratio and Moho depth variations from the Cathaysia Block to... 
South China | Joint inversion | Crustal structure | Receiver function and surface wave dispersion | TOMOGRAPHY | SE TIBET | TIBETAN PLATEAU | SUBDUCTION | MESOZOIC GRANITOIDS | SEISMIC VELOCITIES | INVERSION | STRUCTURE BENEATH | U-PB | GEOCHEMISTRY & GEOPHYSICS | CONSTRAINTS
Journal Article