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C. G. Wheat, Mottl, M. J., Fisher, A. T., Kadko, D., Davis, E. E., Baker, E. T., Mullineaux, L. S., Peterson, C. H., Micheli, F., and Mills, S. W., Heat flow through a basaltic outcrop on a sedimented young ridge flank, Geochemistry, Geophysics, Geosystems, vol. 5, p. Article no. Q12006, 2004.
C. G. Wheat and Mottl, M. J., Composition of pore and spring waters from Baby Bare: Global implications of geochemical fluxes from a ridge flank hydrothermal system, Geochimica et Cosmochimica Acta, vol. 64, pp. 629–642, 2000.
C. G. Wheat and McDuff, R. E., Mapping the fluid flow of the Mariana Mounds ridge flank hydrothermal system: pore water chemical tracers, Journal of Geophysical Research, vol. 100, pp. 8115–8131, 1995.
C. G. Wheat, Jannasch, H. W., Kastner, M., Plant, J. N., and DeCarlo, E. H., Seawater transport and reaction in upper oceanic basaltic basement: Chemical data from continuous monitoring of sealed boreholes in a ridge flank environment, Earth and Planetary Science Letters, vol. 216, pp. 549–564, 2003.
C. G. Wheat and McManus, J., The potential role of ridge-flank hydrothermal systems on oceanic germanium and silicon balances, Geochimica et Cosmochimica Acta, vol. 69, pp. 2021–2029, 2005.
C. G. Wheat, Mottl, M. J., and Rudniki, M., Trace element and REE composition of a low-temperature ridge flank hydrothermal spring, Geochimica et Cosmochimica Acta, vol. 66, pp. 3693–3705, 2002.
C. G. Wheat, Fryer, P., Fisher, A. T., Hulme, S., Jannasch, H. W., and Mottl, M. J., Borehole observations of fluid flow from South Chamorro Seamount, an active serpentinite mud volcano in the Mariana forearc, Earth and Planetary Science Letters, vol. 267, pp. 401–409, 2008.
C. G. Wheat, Hartwell, A. M., McManus, J., Fisher, A. T., Orcutt, B. N., Schlicht, L. E. M., Niedenzu, S., and Bach, W., Geology and Fluid Discharge at Dorado Outcrop, a Low Temperature Ridge-Flank Hydrothermal System, Geochemistry Geophysics Geosystems, vol. 20, pp. 487-504, 2019.
G. C Wheat, Jannasch, H. W., Fisher, A. T., Becker, K., Sharkey, J., and Hulme, S., Subseafloor seawater-basalt-microbe reactions: Continuous sampling of borehole fluids in a ridge flank environment, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 11, 2010.
C. G. Wheat, McManus, J., Dymond, J., Collier, R., and Whiticar, M., Hydrothermal fluid circulation through the sediment of Crater Lake, Oregon: pore water and heat flow constraints, Journal of Geophysical Research, vol. 103, pp. 9931–9944, 1998.
C. G. Wheat, Fluid circulation and diagenesis in an off-axis hydrothermal system: the Mariana Mounds, University of Washington, Seattle, Wash., 1990.
R. A. Wheatcroft, Rates and pathways of sediment bioturbation: A mechanistic approach, University of Washington, Seattle, Wash., 1990.
R. A. Wheatcroft, Conservative tracer study of horizontal sediment mixing rates in a bathyal basin, California borderland, Journal of Marine Research, vol. 49, pp. 565–588, 1991.
B. K. Wheeler and Elder, R. L., Optical link to the ocean floor, fiber optic components overcome data transmission problems undersea, Lightwave, vol. 9, pp. 42–43, 1992.
L. L. Whitcomb and Yoerger, D. R., Development, comparison and preliminary experimental validation of nonlinear dyanmic thruster models, IEEE Journal of Oceanic Engineering, vol. 24, pp. 481–494, 1999.
L. L. Whitcomb and Yoerger, D. R., Comparative experiments in the dynamics and model-based control of marine thrusters, in Oceans '95 : "Challenges of our changing global environment" : conference proceedings, October 9-12, 1995, San Diego, California, vol. 2, San Diego, Calif.: Oceans '95 MTS/IEEE Conference Committee, 1995, pp. 1019–1028.
L. L. Whitcomb and Yoerger, D. R., A new distributed real-time control system for the Jason underwater robot, in IROS '93: Proceedings of the IEEE/RSJ International Conference on Intelligent Robots and Systems: Intelligent Robots for Flexibility, vol. 1, New York, N.Y.: IEEE, 1993, pp. 368–374.
L. Whitcomb, Yoerger, D. R., Singh, H., and Howland, J., Advances in underwater robot vehicles for deep ocean exploration: Navigation, control, and survey operations, in Robotics research: the Ninth International Symposium, J. M. Hollerbach, Ed. New York: Springer, 2000, pp. 1–9.
L. L. Whitcomb and Yoerger, D. R., Preliminary experiments in model-based thruster control for underwater vehicle positioning, IEEE Journal of Oceanic Engineering, vol. 24, pp. 495–506, 1999.
S. N. White, An investigation into the characteristics and sources of light emission at deep-sea hydrothermal vents, Massachusetts Institute of Technology and Woods Hole Oceanographic Institution, Cambridge, Mass. and Woods Hole, Mass., 2000.
S. N. White, Humphris, S. E., and Kleinrock, M. C., New observations on the distribution of past and present hydrothermal activity in the TAG area of the mid-Atlantic ridge (26 degrees 08 ' N), Marine Geophysical Researches, vol. 20, pp. 41–56, 1998.
W. R. White and Bryan, W. B., Sr-isotope, K, Rb, Cs, Sr, Ba, and rare-earth geochemistry of basalts from the FAMOUS area, Geological Society of America Bulletin, vol. 88, pp. 571–576, 1977.
H. K. White, Hsing, P. - Y., Cho, W., Shank, T. M., Cordes, E. E., Quattrini, A. M., Nelson, R. K., Camilli, R., Demopoulos, A. W. J., German, C. R., Brooks, J. M., Roberts, H. H., Shedd, W., Reddy, C. M., and Fisher, C. R., Impact of the Deepwater Horizon oil spill on a deep-water coral community in the Gulf of Mexico, Proceedings of the National Academy of Sciences of the United States of America, vol. 109, pp. 20303–20308, 2012.
H. K. White, Hsing, P. - Y., Cho, W., Shank, T. M., Cordes, E. E., Quattrini, A. M., Nelson, R. K., Camilli, R., Demopoulos, A. W. J., German, C. R., Brooks, J. M., Roberts, H. H., Shedd, W., Reddy, C. M., and Fisher, C. R., Reply to Boehm and Carragher: Multiple lines of evidence link deep-water coral damage to Deepwater Horizon oil spill, Proceedings of the National Academy of Sciences of the United States of America, vol. 109, pp. E2648–E2648, 2012.
S. M. White, Mason, J. L., Macdonald, K. C., Perfit, M. R., Wanless, V. D., and Klein, E. M., Significance of widespread low effusion rate eruptions over the past two million years for delivery of magma to the overlapping spreading centers at 9 degrees N East Pacific Rise, Earth and Planetary Science Letters, vol. 280, pp. 175–184, 2009.

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