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“The East Pacific Rise Between 9 degrees N and 10 degrees N: Twenty-Five Years of Integrated, Multidisciplinary Oceanic Spreading Center Studies”, Oceanography, vol. 25, pp. 18–43, 2012.
, “Dissolved and particulate organic carbon in hydrothermal plumes from the East Pacific Rise, 9 degrees 50′N”, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 58, pp. 922–931, 2011.
, “Geochemical controls on hydrothermal fluids from the Kairei and Edmond Vent Fields, 23 degrees-25 degrees S, Central Indian Ridge”, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q06018, 2006.
, “A ubiquitous thermoacidophilic archaeon from deep-sea hydrothermal vents”, Nature, vol. 442, pp. 444–447, 2006.
, “The in situ pH of hydrothermal fluids at mid-ocean ridges”, Earth and Planetary Science Letters, vol. 237, pp. 167–174, 2005.
, “Hydrothermal processes”, in Treatise on geochemistry, vol. 6, New York: Elsevier, 2004, pp. 181–222.
, “Submarine lava flow emplacement at the East Pacific Rise 9 degrees 50'N: Implications for uppermost ocean crust stratigraphy and hydrothermal fluid circulation”, in Mid-ocean ridges: hydrothermal interactions between the lithosphere and ocean, Washington, D.C.: American Geophysical Union, 2004, pp. 187–217.
, “Extraordinary phase separation and segregation in vent fluids from the southern East Pacific Rise”, Earth and Planetary Science Letters, vol. 206, pp. 365–378, 2003.
, “High-T hydrothermal vent monitoring at the East Pacific Rise 9 degrees 50'N and a new, improved 64k memory high-T vent fluid temperature logger”, Ridge 2000 Events, vol. 1, pp. 21–25, 2003.
, “Iron isotope constraints on Fe cycling and mass balance in oxygenated Earth oceans”, Geology, vol. 31, pp. 629–632, 2003.
, “Iron isotope constraints on Fe cycling and mass balance in the oxygenated Earth”, Geochimica et Cosmochimica Acta, vol. 66. p. A58, 2002.
, “Biogeography and ecological setting of Indian Ocean hydrothermal vents”, Science, vol. 294, pp. 818–823, 2001.
, “Hydrothermal vents, Chemistry of”, in Encyclopedia of ocean sciences, vol. 2 (D-H), San Diego, Calif.: Academic Press, 2001, pp. 1246–1253.
, “Lost City found”, Nature, vol. 412, pp. 127–128, 2001.
, “Magmatic processes and segmentation at a fast spreading mid-ocean ridge: Detailed investigation of an axial discontinuity on the East Pacific Rise crest at 9 degrees 37' N”, Geochemistry, Geophysics, Geosystems, vol. 2, p. 2000GC000134, 2001.
, “Sr isotope variations in vent fluids from 9 degrees 46'-9 degrees 54'N East Pacific Rise: Evidence of a non-zero-Mg fluid component”, Geochimica et Cosmochimica Acta, vol. 65, pp. 729–739, 2001.
, “Chemistry of hydrothermal vent fluids from 9 degrees -10 degrees N, East Pacific Rise: 'Time zero,' the immediate posteruptive period”, Journal of Geophysical Research, vol. 105, pp. 11,203–211,222, 2000.
, “The geochemical controls on vent fluids from the Lucky Strike vent field, Mid-Atlantic Ridge”, Earth and Planetary Science Letters, vol. 160, pp. 521–536, 1998.
, “Seismic and hydrothermal evidence for a cracking event on the East Pacific Rise at 9 degrees 50'N”, Nature, vol. 396, pp. 159–161, 1998.
, “Temporal and spatial patterns of biological community development at nascent deep-sea hydrothermal vents (9 degrees 50'N, East Pacific Rise)”, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 465–515, 1998.
, “Time-series temperature measurements at high-temperature hydrothermal vents, East Pacific Rise 9 degrees 49'-51'N; evidence for monitoring a crustal cracking event”, Earth and Planetary Science Letters, vol. 160, pp. 419–431, 1998.
, “Hydrothermal vents near a mantle hot spot: The Lucky Strike vent field at 37 degrees N on the Mid-Atlantic Ridge”, Earth and Planetary Science Letters, vol. 148, pp. 69–91, 1997.
, “Controls on the chemistry and temporal variability of seafloor hydrothermal fluids”, in Seafloor Hydrothermal Systems: Physical, Chemical, Biological, and Geochemical Interactions, Washington, D.C.: American Geophysical Union, 1995, pp. 222–247.
, “Evolution of East Pacific Rise hydrothermal vent fluids following a volcanic eruption”, Nature, vol. 375, pp. 47–50, 1995.
, “Chemical evolution of hydrothermal fluids at 9-10N EPR since the 1991 eruption: 1994 results”, EOS, Transactions, American Geophysical Union, vol. 75, p. 618, 1994.
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