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The Gibraltar subduction: A decade of new geophysical data. Tectonophysics. 574-575:72–91.
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2012. IGCP 511: Submarine Mass Movements and Their Consequences (2005-2009). Tales Set in Stone – 40 Years of the International Geoscience Programme (IGCP). :62–66.
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2012. Large, deepwater slope failures: Implications for landslide-generated tsunamis. Geology. 40:931–934.
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2012. One million years of climatic generated landslide events on the northwestern Barents Sea continental margin.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :747–756.
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2012. One million years of climatic generated landslide events on the northwestern Barents Sea continental margin.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :747–756.
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2012. An overview of the role of long-term tectonics and incoming plate structure on segmentation of submarine mass wasting phenomena along the Middle America Trench.. Submarine Mass Movements and Their Consequences - 5th International Symposium. :391–402.
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2012. The Quaternary Active Faults Database of Iberia (QAFI v.2.0). Journal of Iberian Geology. 38:301–318.
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2012. The Quaternary Active Faults Database of Iberia (QAFI v.2.0). Journal of Iberian Geology. 38:301–318.
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2012. The Quaternary Active Faults Database of Iberia (QAFI v.2.0). Journal of Iberian Geology. 38:301–318.
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2012. The Quaternary Active Faults Database of Iberia (QAFI v.2.0). Journal of Iberian Geology. 38:301–318.
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2012. The Quaternary Active Faults Database of Iberia (QAFI v.2.0). Journal of Iberian Geology. 38:301–318.
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2012. Quaternary active tectonic structures in the offshore Bajo Segura basin (SE Iberian Peninsula – Mediterranean Sea). Natural Hazards and Earth System Science. 12:3151–3168.
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2012. Quaternary active tectonic structures in the offshore Bajo Segura basin (SE Iberian Peninsula – Mediterranean Sea). Natural Hazards and Earth System Science. 12:3151–3168.
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2012. Recent submarine landslides on the continental slope of Storfjorden and Kveithola Trough-Mouth Fans (north west Barents Sea). Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research, 34, Springer, Dordrecht (The Netherlands). :735–745.
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2012. The structure of the Tyrrhenian from integration of multichannel seismic images, wide-angle seismic data, and gravity modeling. Rendiconti Online Societa Geologica Italiana. 21:253–254.
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2012. Submarine Mass Movements and Their Consequences: An introduction.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :1–12.
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2012. Submarine Mass Movements and Their Consequences: An introduction.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :1–12.
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2012. The tectonic structure of the Tyrrhenian Basin, a complex interaction among faulting and magmatism. Rendiconti Online Societa Geologica Italiana. 21:251–252.
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2012. 3-D reflection seismic imaging of the hontomín structure in the basque-cantabrian Basin (Spain). Solid Earth. 4:481–496.
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2013. 3-D reflection seismic imaging of the hontomín structure in the basque-cantabrian Basin (Spain). Solid Earth. 4:481–496.
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2013. 3-D reflection seismic imaging of the hontomín structure in the basque-cantabrian Basin (Spain). Solid Earth. 4:481–496.
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