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R. Huber, Kurr, M., Jannasch, H. W., and Stetter, K. O., A novel group of abyssal methanogenic archaebacteria (Methanopyrus) growing at 110 degrees C, Nature, vol. 342, pp. 833–834, 1989.
D. K. Hubbard, Suchanek, T. H., Gill, I. P., Cowper, S., Ogden, J. C., Westerfield, J. R., and Bayes, J., Preliminary studies of the fate of shallow-water detritus in the basin north of St. Croix, U.S.V.I., in Reef and Man: Proceedings of the Fourth International Coral Reef Symposium, Manila, Philippines, 18-22 May 1981, vol. 1, E. D. Gomez, Ed. Quezon City, Philippines: University of the Philippines, Marine Sciences Center, 1981, pp. 383–388.
Y. Hu, Feng, D., Peckmann, J., Roberts, H. H., and Chen, D., New insights into cerium anomalies and mechanisms of trace metal enrichment in authigenic carbonate from hydrocarbon seeps, Chemical Geology, vol. 381, pp. 55–66, 2014.
H. Hsu-Kim, Mullaugh, K. M., Tsang, J. J., Yucel, M., and Luther, G. W., Formation of Zn- and Fe-sulfides near hydrothermal vents at the Eastern Lau Spreading Center: implications for sulfide bioavailability to chemoautotrophs, Geochemical Transactions, vol. 9, p. 6, 2008.
J. C. Howland, Marra, M., Potter, D. F., and Stewart, W. K., Near real-time GIS in deep-ocean exploration. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1993, p. 8.
J. C. Howland and Singh, H., Simulation of the deep sea mosaicking process, in Oceans 2000 MTS/IEEE: where marine science and technology meet, vol. 2, Piscataway, N.J.: IEEE, 2000, pp. 1353–1375.
J. C. Howland, Singh, H., Marra, M., and Potter, D., Digital mosaicking of underwater imagery, Sea Technology, vol. 40, pp. 65–69, 1999.
J. C. Howland, Marra, M., Potter, D. F., and Stewart, W. K., Near real-time GIS in deep-ocean exploration, in ASPRS/ACSM/RT 92 technical papers, Bethesda, Md.: American Society for Photogrammetry and Remote Sensing; American Congress on Surveying and Mapping, 1992, pp. 428–435.
J. Howland, Imagery collection and mosaicking, Derbyshire survey 1997, in OCC '98 proceedings: the Marine Technology Society Annual Conference; Ocean Community Conference '98, November 16-19 1998, Baltimore Convention Center., vol. 2, Washington, D.C.: Marine Technology Society, 1998, pp. 1104–1108.
C. T. Howell, Grosenbaugh, M. A., Moxnes, S., Anderson, J., and Triantafyllou, M. S., Maneuvering underwater vehicles employing low-tension tethers, in Proceedings of the Second (1992) International Offshore and Polar Engineering Conference, Golden, Colo.: International Society of Offshore and Polar Engineer (ISOPE), 1992, pp. 321–326.
F. S. Hover and Yoerger, D. R., Identification of low-order dynamic models for deeply towed underwater vehicle systems, International Journal of Offshore and Polar Engineering, vol. 2, pp. 38–45, 1992.
F. Hover, Grosenbaugh, M. A., and Triantafyllou, M., Calculations of dynamic motions and tensions of towed underwater vehicles, IEEE Journal of Oceanic Engineering, vol. 19, pp. 449–457, 1994.
F. S. Hover, Inversion of a distributed system for open-loop trajectory following, International Journal of Control, vol. 60, pp. 671–686, 1994.
F. S. Hover, Triantafyllou, M. S., and Grosenbaugh, M. A., Modelling the dynamics of a deeply-towed underwater vehicle system, in Proceedings of the First (1990) European Offshore Mechanics Symposium: Hydrodynamics and Structural Mechanics, Tubular Joints and Fatigue, TLP, Offshore Systems, Pipelines and Risers, Cables and Mooring, Ice-Structure Interactions, J. S. Chung, Ed. Golden, Colo.: International Society of Offshore and Polar Engineers, 1990, pp. 457–463.
F. S. Hover and Yoerger, D. R., Full-scale experiments in open-loop positioning of a deep towfish, in Oceans '92: Mastering the oceans through technology: Proceedings, vol. 2, New York, N.Y.: IEEE, 1992, pp. 906–911.
F. Hover, Yoerger, D. R., and Triantafyllou, M., Identification of parametric dynamic models for deeply-towed underwater vehicle systems, in Proceedings of the First (1991) International Offshore and Polar Engineering Conference, vol. 2, Golden, Colo.: International Society of Offshore and Polar Engineers (ISOPE), 1991, pp. 97–105.
H. A. Ten Hove and Zibrowius, H., Laminatubus alvini gen. et sp.n. and Protis hydrothermica sp.n. (Polychaeta, Serpulidae) from the bathyal hydrothermal vent communities in the eastern Pacific, Zoologica Scripta, vol. 15, pp. 21–31, 1986.
S. Hourdez, Lamontagne, J., Peterson, P., Weber, R. E., and Fisher, C. R., Hemoglobin from a deep-sea hydrothermal-vent copepod, Biological Bulletin, vol. 199, pp. 95–99, 2000.
S. Hourdez, Frederick, L. A., Schernecke, A., and Fisher, C. R., Functional respiratory anatomy of a deep-sea orbiniid polychaete from the Brine Pool NR-1 in the Gulf of Mexico, Invertebrate Biology, vol. 120, pp. 29–40, 2001.
J. L. Houghton, Seyfried, W. E., Banta, A. B., and Reysenbach, A. - L., Continuous enrichment culturing of thermophiles under sulfate and nitrate-reducing conditions and at deep-sea hydrostatic pressures, Extremophiles, vol. 11, pp. 371–382, 2007.
R. L. Houghton, Heirtzler, J. R., Ballard, R. D., and Taylor, P. T., Submersible observations of the New England seamounts, Naturwissenschaften, vol. 64, pp. 348–355, 1977.
R. L. Houghton, Heirtzler, J. R., and Ballard, R. D., Submersible observations of the New England seamounts, vol. 79-18. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1979, p. 8.
J. Hou, Sievert, S. M., Wang, Y., Seewald, J. S., Natarajan, V. Perumal, Wang, F., and Xiao, X., Microbial succession during the transition from active to inactive stages of deep-sea hydrothermal vent sulfide chimneys, Research Square, 2020.
D. S. Hosom, Forrester, N. C., and Walden, B. B., Alvin – 120 VDC/28 VDC electrical system, in Oceans '87 Proceedings: The ocean, an international workplace; Halifax, N.S. (Canada), 28 Sep-1 Oct 1987, vol. 3, New York, N.Y.: IEEE, 1987, pp. 1272–1277.
D. S. Hosom, Donnelly, J. D., and Page, W. F., Alvin battery charging procedures. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1975, p. 20.

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