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2014. Fine grained bodies as evidence of “dusty” paleoearthquakes in the Alhama de Murcia Fault geological record. Una aproximación multidisciplinar al estudio de fallas activas, los terremotos y el riesgo sísmico. :23–26.
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2014. Grounding zone wedges , Kveithola Trough ( NW Barents Sea ). Atlas of Submarine Glacial Landforms. 16:16840.
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2014. Historical and pre-historical tsunamis in the Mediterranean and its connected seas: Geological signatures, generation mechanisms and coastal impacts. Marine Geology. 354:81–109.
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2014. Interplate seismicity at the CRISP drilling site: The 2002 Mw 6.4 Osa Earthquake at the southeastern end of the Middle America Trench. Geochemistry, Geophysics, Geosystems. 15:3035–3050.
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2014. Landslide Science for a Safer Geoenvironment. 2:483–489.
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2014. Late Miocene sedimentary architecture of the Ebro Continental Margin (Western Mediterranean): implications to the Messinian Salinity Crisis. International Journal of Earth Sciences. 103:423–440.
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2014. Nonstationary magnetotelluric data processing with instantaneous parameter. Journal of Geophysical Research: Solid Earth. 119:1634–1654.
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2014. Optimizing an experimental design for a CSEM experiment: methodology and synthetic tests. Geophysical Journal International. 197:135–148.
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2014. PRIMEROS VALORES DE VELOCIDAD DE DESLIZAMIENTO LATERAL EN LA FALLA ALHAMA DE MURCIA BASADOS EN TRINCHERAS 3D. Segunda reunión Ibérica sobre fallas activas y paleosismología. :19.
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2014. Recovery of temperature, salinity, and potential density from ocean reflectivity. Journal of Geophysical Research: Oceans. 119:3171–3184.
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2014. Scale- and parameter-adaptive model-based gradient pre-conditioner for elastic full-waveform inversion. Geophysical Journal International. 198:1130–1142.
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2014. Seismic and gravity constraints on the nature of the basement in the Africa-Eurasia plate boundary: New insights for the geodynamic evolution of the SW Iberian margin. Journal of Geophysical Research: Solid Earth. 119:127–149.
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2014. Seismic hazard of active faults in the Alboran Sea inferred from submarine paleosismology. Una aproximación multidisciplinar al estudio de fallas activas, los terremotos y el riesgo sísmico. :101–104.
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2014. Seismic structure of the Central Tyrrhenian basin: Geophysical constraints on the nature of the main crustal domains. Journal of Geophysical Research: Solid Earth. 119:52–70.
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2014. Submarine canyons of north-western Sicily (Southern Tyrrhenian Sea): Variability in morphology, sedimentary processes and evolution on a tectonically active margin. Deep Sea Research Part II: Topical Studies in Oceanography. 104:93–105.
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2014. Submarine Mass Movements Along a Sediment Starved Margin: The Menorca Channel (Balearic Islands – Western Mediterranean). Submarine Mass Movements and Their Consequences. :329–338.
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2014. Submarine Mass Movements and Their Consequences. Submarine Mass Movements and Their Consequences. 37:85–94.
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2014. Submarine paleoseismology on the Santa Pola fault (Bajo Segura basin, western mediterranean): derivating direct on-fault paleoearthquakes. Una aproximación multidisciplinar al estudio de fallas activas, los terremotos y el riesgo sísmico. :121–124.
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2014. Técnicas avanzadas de procesado de datos de sísmica de reflexión multicanal aplicadas a mejorar la visualización de fallas activas del Mar de Alborán. Una aproximación multidisciplinar al estudio de fallas activas, los terremotos y el riesgo sísmico. :229–232.
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2014. TSUJAL project and marine survey: Crustal characterization of the Rivera Plate-Jalisco Block boundary and its implications for seismic and tsunami hazard assessment5) TSUJAL Working Group: D. 2nd Iberian meeting on active faults and paleoseismology – IBERFAULT 2014.
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2014. The West Melilla cold water coral mounds, Eastern Alboran Sea: Morphological characterization and environmental context. Deep Sea Research Part II: Topical Studies in Oceanography. 99:316–326.
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