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“Variation in the structure of the deep-sea fish assemblages on Necker Island, Northwestern Hawaiian Islands”, Deep-Sea Research Part I-Oceanographic Research Papers, vol. 152, 2019.
, “Vema fracture zone (central Atlantic); tectonic and magmatic evolution of the median ridge and the eastern ridge-transform intersection domain”, Journal of Geophysical Research, vol. 97, pp. 17,317–331,351, 1992.
, “Vema fracture zone (central Atlantic); tectonic and magmatic evolution of the median ridge and the eastern ridge-transform intersection domain”, Journal of Geophysical Research, vol. 97, pp. 17,317–331,351, 1992.
, “Vertical distribution of zooplankton at the periphery of the North Atlantic Subtropical Gyre”, Proceedings of the Russian Academy of Sciences. Biological Series, vol. 4, pp. 496–510, 2000.
, “Vertical, lateral and temporal structure in larval abundance at hydrothermal vents”, Marine Ecology Progress Series, vol. 293, pp. 1–16, 2005.
, “Vertical, lateral and temporal structure in larval abundance at hydrothermal vents”, Marine Ecology Progress Series, vol. 293, pp. 1–16, 2005.
, “Vertical, lateral and temporal structure in larval abundance at hydrothermal vents”, Marine Ecology Progress Series, vol. 293, pp. 1–16, 2005.
, “Vesicomyicola trifurcata, a new genus and species of commensal polychaete (Annelida:Polychaeta:Nautiliniellidae) found in deep-sea clams from the Blake Ridge cold seep”, Proceedings of the Biological Society of Washington, vol. 117, pp. 106–113, 2004.
, A visual ocean bottom survey off the island of Santa Maria, Azores. New London, Conn.: U.S. Navy Underwater Sound Lab, 1969, p. 15.
, “Volatile abundances in basaltic glasses from seamounts flanking the East Pacific Rise at 21 degrees N and 12 -14 degrees N”, Geochimica et Cosmochimica Acta, vol. 52, pp. 2115–2119, 1988.
, “Volatiles in basalts and andesites from the Galapagos Spreading Center, 85 degrees to 86 degrees W”, Geochimica et Cosmochimica Acta, vol. 47, pp. 1551–1558, 1983.
, “Volcanic eruption of the mid-ocean ridge along the East Pacific Rise crest at 9 degrees 45-52'N: Direct submersible observations of seafloor phenomena associated with an eruption event in April 1991”, Earth and Planetary Science Letters, vol. 119, pp. 85–101, 1993.
, “Volcanic eruptions on mid-ocean ridges: New evidence from the superfast spreading East Pacific Rise, 17 degrees-19 degrees S”, Journal of Geophysical Research, vol. 107, p. Article no. 2115, 2002.
, “Volcanic geomorphology of the SESCA and NESCA sites, Escanaba Trough”, in Geologic, hydrothermal, and biologic studies at Escanaba Trough, Gorda Ridge, offshore Northern California, Reston, Va.: U.S. Geological Survey, 1994, pp. 143–151.
, “Volcanic growth faults and the origin of Pacific abyssal hills”, Nature, vol. 380, pp. 125–129, 1996.
, “Volcanic morphology of West Mata Volcano, NE Lau Basin, based on high-resolution bathymetry and depth changes”, Geochemistry, Geophysics, Geosystems, vol. 12, pp. QOAF03–QOAF03, 2011.
, “Volcanic mound fields on the East Pacific Rise, 16 degrees -19 degrees S: Low effusion rate eruptions at overlapping spreading centers for the last 1 Myr”, Journal of Geophysical Research, vol. 107, p. Article no. 2240, 2002.
, “Volcanic rocks and processes of the Mid-Atlantic Ridge rift valley near 36 degrees 49' N”, Contributions to Mineralogy and Petrology, vol. 58, pp. 83–110, 1976.
, “Volcaniclastic Dispersal During Submarine Lava Effusion: The 2012 Eruption of Havre Volcano, Kermadec Arc, New Zealand”, Frontiers in Earth Science, vol. 8, p. 237, 2020.
, “Volcaniclastic Dispersal During Submarine Lava Effusion: The 2012 Eruption of Havre Volcano, Kermadec Arc, New Zealand”, Frontiers in Earth Science, vol. 8, p. 237, 2020.
, “Volcanism and massive sulfide formation at a sedimented spreading center, Escanaba Trough, Gorda Ridge, northeast Pacific Ocean”, Geophysical Research Letters, vol. 14, pp. 769–772, 1987.
, “Volcanism in the Sumisu Rift II: Subduction and non-subduction related components”, Earth and Planetary Science Letters, vol. 100, pp. 195–209, 1990.
, “Voltammetric (micro)electrodes for the in situ study of Fe2+ oxidation kinetics in hot springs and S2O3-2- production at hydrothermal vents”, Electroanalysis, vol. 20, pp. 280–290, 2008.
, “Voltammetric (micro)electrodes for the in situ study of Fe2+ oxidation kinetics in hot springs and S2O3-2- production at hydrothermal vents”, Electroanalysis, vol. 20, pp. 280–290, 2008.
, “Voltammetric (micro)electrodes for the in situ study of Fe2+ oxidation kinetics in hot springs and S2O3-2- production at hydrothermal vents”, Electroanalysis, vol. 20, pp. 280–290, 2008.
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