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Using tensorial electrical resistivity survey to locate fault systems. Journal of Geophysics and Engineering. 6:390–400.
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2009. Using tensorial electrical resistivity survey to locate fault systems. Journal of Geophysics and Engineering. 6:390–400.
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2009. Wide-angle reflection and refraction seismic profile from the outer part of the gulf of Cadiz: nearest-seis cruise. Instrumentation ViewPoint. :49.
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2009. Wide-angle reflection and refraction seismic profile from the outer part of the gulf of Cadiz: nearest-seis cruise. Instrumentation ViewPoint. :49.
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2009. Appraisal of joint refraction and reflection travel-time tomography in the context of weathering correction. 72nd European Association of Geoscientists and Engineers Conference and Exhibition 2010: A New Spring for Geoscience. Incorporating SPE EUROPEC 2010. 6:4692–4696.
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2010. Characterizing active faults and associated mass transport deposits in the South Iberian Margin (Alboran Sea and Gulf of Cadiz): On-fault and off-fault paleoseismic evidence. Resúmenes de la 1ª Reunión Ibérica sobre Fallas Activas y Paleosismología. :163–166.
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2010. Characterizing active faults and associated mass transport deposits in the South Iberian Margin (Alboran Sea and Gulf of Cadiz): On-fault and off-fault paleoseismic evidence. Resúmenes de la 1ª Reunión Ibérica sobre Fallas Activas y Paleosismología. :163–166.
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2010. Characterizing active faults and associated mass transport deposits in the South Iberian Margin (Alboran Sea and Gulf of Cadiz): On-fault and off-fault paleoseismic evidence. Resúmenes de la 1ª Reunión Ibérica sobre Fallas Activas y Paleosismología. :163–166.
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2010. Focal mechanisms for sub-crustal earthquakes in the Gulf of Cadiz from a dense OBS deployment. Geophysical Research Letters. 37:n/a–n/a.
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2010. Focal mechanisms for sub-crustal earthquakes in the Gulf of Cadiz from a dense OBS deployment. Geophysical Research Letters. 37:n/a–n/a.
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2010. Focal mechanisms for sub-crustal earthquakes in the Gulf of Cadiz from a dense OBS deployment. Geophysical Research Letters. 37:n/a–n/a.
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2010. Imaging the Seismic Crustal Structure of the Western Mexican Margin between 19°N and 21°N. Pure and Applied Geophysics. 168:1373–1389.
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2010. Onshore-Offshore active tectonics along the Carboneras Fault Zone (Eastern Betic Cordilleras). Contribución de la Geología al Análisis de la Peligrosidad Sísmica. :105–107.
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2010. Onshore-Offshore active tectonics along the Carboneras Fault Zone (Eastern Betic Cordilleras). Contribución de la Geología al Análisis de la Peligrosidad Sísmica. :105–107.
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2010. Seismic structure of an oceanic core complex at the Mid-Atlantic Ridge, 22°19′N. Journal of Geophysical Research. 115:B07106.
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2010. Seismic structure of an oceanic core complex at the Mid-Atlantic Ridge, 22°19′N. Journal of Geophysical Research. 115:B07106.
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2010. Structure and Potential Seismogenic Sources of the Offshore Bajo Segura Fault Zone, Se Iberian Peninsula (Mediterranean Sea). Looking for the Source of the 1829 Torrevieja Earthquake. Resúmenes de la 1ª Reunión Ibérica sobre Fallas Activas y Paleosismología, Sigüenza, España. :113–116.
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2010. Submarine mass movements and their consequences. Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research. :1–8.
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2010. Submarine mass movements and their consequences. Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research. :1–8.
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2010. Submarine Mass Movements and Their Consequences: 4 rd International Symposium. Advances in Natural and Technological Hazards Research: v. 28. Submarine Mass Movements and Their Consequences: 4 rd International Symposium. :786.
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