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1

University, Open, ed. Ocean chemistry and deep-sea sediments. Pergamon Press, 1989.

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2

Gerry, Bearman, and Open University. Oceanography Course Team., eds. Ocean chemistry and deep-sea sediments. Pergamon in association with the Open University, 1998.

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3

Dale, B. Dinoflagellate contributions to the deep sea. Woods Hole Oceanographic Institution, 1992.

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4

M, Ganssen G., Wefer G, Joint Global Ocean Flux Study., and Past Global Changes (Project), eds. Particle flux and its preservation in deep-sea sediments. Pergamon, 2000.

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5

Holler, Peter. Sedimentäre Rutschmassen in der Tiefsee = Submarine landslides in the deep-sea. Geologisch-Paläontologisches Institut und Museum, Christian-Albrechts-Universität, 1988.

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6

Brunnegård, Jenny. Benthic nitrogen cycling in deep-sea and contrasting continental margin environments. Dept. of Chemistry, Göteborg University, 2005.

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7

Danovaro, Roberto. Methods for the study of deep-sea sediments--their functioning and biodiversity. Taylor & Francis, 2010.

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8

Danovaro, Roberto. Methods for the study of deep-sea sediments--their functioning and biodiversity. Taylor & Francis, 2010.

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9

Peng, Tsung-hung. The impacts of bioturbation on the age difference between benthic and planktonic foraminifera in deep sea sediments. s.n., 1985.

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10

Luepke, Gretchen. Heavy minerals from cores in a deep-sea channel off Cape Mendocino, California. U.S. Dept. of the Interior, U.S. Geological Survey, 1995.

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11

Luepke, Gretchen. Heavy minerals from cores in a deep-sea channel off Cape Mendocino, California. U.S. Geological Survey, 1995.

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12

Poti, Matthew, Charles W. Menza, Brian P. Kinlan, Dan S. Dorfman, and Chris Caldow. A biogeographic assessment of seabirds, deep sea corals and ocean habitats of the New York Bight: Science to support offshore spatial planning. Edited by Center for Coastal Monitoring and Assessment (U.S.). Biogeography Program and National Centers for Coastal Ocean Science (U.S.). U.S. Department of Commerce, National Oceanic and Atmospheric Administration, National Ocean Service, National Centers for Coastal Ocean Science, 2012.

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13

Kobayashi, Kazuo. Paleomagnetic results and associated data of deep-sea sediment cores collected by The R. V. Hakuho Maru in a period, 1972-1987 /by. Ocean Research Institute, University of Tokyo, 1991.

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14

Kok, Yvo Sander. Reading the muddy compass: Relative paleointensities of the Earth's magnetic field derived from deep-sea sediments = Relatieve paleointensiteiten van het aardmagneetveld afgeleid van diepzeesedimenten. Universiteit Utrecht, 1998.

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15

(Schooner), Albatross, and Svenska djuphavsexpeditionen, eds. The Swedish Deep-Sea expedition with the "Albatross" 1947-1948: A summary of the sediment core studies. Tryckeri, 1996.

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16

1994), UNESCO-ESF "Training-through-Research" Cruise of R/V Gelendzhik (4th. Deep-sea depositional systems of the western Mediterranean and mud volcanism on the Mediterranean Ridge: Initial results of geological and geophysical investigations during the Fourth UNESCO-ESF "Training-through-Research" Cruise of R/V Gelendzhik (June-July 1994). Unesco, 1995.

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17

Snelgrove, Paul V. R. The importance of fine-scale flow processes and food availability in the maintenance of soft-sediment communities. Woods Hole Oceanographic Institution, 1993.

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18

Snelgrove, Paul V. R. The importance of fine-scale flow processes and food availability in the maintenance of soft-sediment communities. Woods Hole Oceanographic Institution, 1993.

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19

Stein, Ruediger. Accumulation of organic carbon in marine sediments: Results from the Deep Sea Drilling Project/Ocean Drilling Program (DSDP/ODP). Springer-Verlag, 1991.

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20

Letzig, Thomas. Meereistranportiertes lithogenes Feinmaterial in spätquartären Tiefseesedimenten des zentralen östlichen Arktischen Ozeans und der Framstrasse =: Sea ice-transported lithogenic finefraction of Late Quaternary deep-sea sediments of the central eastern Arctic Ocean and the Fram Strait. Alfred-Wegener-Institut für Polar- und Meeresforschung, 1995.

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21

Cronan, D. S. A study of manganese nodules, crusts and deep-sea sediments in the Northern Cook Islands, Central Line Islands, and adjacent high seas: Cruise report of the Crossgrain Expedition, Leg 3, Papeete, Tahiti to Hilo, Hawaii, April 29-June 3, 1987. Committee for Co-ordination of Joint Prospecting for Mineral Resources in South Pacific Offshore Areas, 1988.

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22

Mörz, Tobias. From the inner shelf to the deep sea: Depositional environments on the west Antarctic Peninsula Margin : a sedimentological and seismostratigraphic study (ODP leg 178) = Vom inneren Schelf zur Tiefsee : Ablagerungsräume am Westrand der Antarktischen Halbinsel : eine sedimentologische und seismostratigraphische Studie (OPD leg 178). Alfred-Wegener-Institut für Polar- und Meeresforschung, 2002.

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23

Kantaro, Fujioka, and Kaiko (Project), eds. A moins 6000m: L'exploration des fosses japonaises : photographies des plongées du submersible Nautile dans les fosses de subduction du Japon. IFREMER/CNRS/University of Tokyo Press, 1988.

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24

Martin, Frank. Reconstruction of Late Quaternary environmental conditions applying the natural radionuclides ²³⁰Th, ¹⁰Be, ²³¹Pa and ²³⁸U: A study of deep-sea sediments from the eastern sector of the Antarctic circumpolar current system = Rekonstruktion von spätquartären Umweltbedingungen mit den natürlichen Radionukliden ²³⁰Th, ¹⁰Be, ²³¹Pa und ²³⁸U : eine Untersuchung von Tiefseesedimenten aus dem östlichen Sektor des Antarktischen Zirkumpolarstromsystems. Alfred-Wegener-Institut für Polar- und Meeresforschung, 1996.

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25

M, Hovland, ed. Seabed fluid flow: The impact of geology, biology and the marine environment. Cambridge University Press, 2007.

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26

Deep-Sea Sediments. Elsevier, 2011. http://dx.doi.org/10.1016/c2009-0-16436-x.

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27

Mulder, T., and H. Huneke. Deep-Sea Sediments. Elsevier Science & Technology Books, 2010.

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28

university, Open. Ocean Chemistry and Deep-Sea Sediments. Butterworth-Heinemann, 2003.

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29

Deep-Sea Sediments (Developments in Sedimentology). Elsevier Science, 2008.

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30

university, Open. Ocean Chemistry and Deep-sea Sediments. Butterworth-Heinemann Ltd, 1995.

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31

Inderbitzen, Anton. Deep-Sea Sediments: Physical and Mechanical Properties. Springer, 2012.

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32

Inderbitzen, Anton. Deep-Sea Sediments: Physical and Mechanical Properties. Springer, 2013.

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33

Arason, Pórdur. Paleomagnetic inclination shallowing in deep-sea sediments. 1991.

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34

Clement, Bradford Mark. Details of geomagnetic polarity transitions as recorded in deep-sea sediments. 1985.

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35

Ocean Chemistry and Deep-Sea Sediments (Oceanography Series, Vol 5). Pergamon Pr, 1989.

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36

Metalliferous Sediments of the World Ocean: Fundamental Theory of Deep-Sea Hydrothermal Sedimentation. Springer, 2005.

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37

Gurvich, Evgeny G. Metalliferous Sediments of the World Ocean: Fundamental Theory of Deep-Sea Hydrothermal Sedimentation. Springer, 2010.

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38

Gurvich, Evgeny G. Metalliferous Sediments of the World Ocean: Fundamental Theory of Deep-Sea Hydrothermal Sedimentation. Springer London, Limited, 2006.

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39

Danovaro, Roberto. Methods for the Study of Deep-Sea Sediments, Their Functioning and Biodiversity. Taylor & Francis Group, 2009.

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40

Danovaro, Roberto. Methods for the Study of Deep-Sea Sediments, Their Functioning and Biodiversity. Taylor & Francis Group, 2009.

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41

Danovaro, Roberto. Methods for the Study of Deep-Sea Sediments, Their Functioning and Biodiversity. Taylor & Francis Group, 2009.

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42

Methods for the study of deep-sea sediments, their functioning and biodiversity. CRC Press, 2010.

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43

Eaton, Matthew Richard. Origin of insoluble residue in a deep-sea sediment core from Northwest Providence Channel, Bahamas. 1986.

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44

Dwan, Shufa F. A seismic refraction study of the Monterey Deep Sea Fan and a comparison of velocity structures among fan subunits. 1986.

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45

Hovland, Martin, and Alan Judd. Seabed Fluid Flow: The Impact on Geology, Biology and the Marine Environment. Cambridge University Press, 2007.

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46

Katsuragawa, Mario, Luiz Vianna Nonato, and Francisco Luiz Vicentini Neto. Guia do oceanógrafo: Manuseio de cabos e acessórios. Brazil Publishing, 2021. http://dx.doi.org/10.31012/978-65-5861-334-3.

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Abstract:
Oceanography is a multidisciplinary science that deals with the physical, chemical, geological e biological aspects of the marine environment. As most of the sciences, oceanographic research relies heavily on sampling procedures, which can be rather simple, as obtaining a water sample at sea surface, or very complex, as bringing an uncontaminated sediment sample from hadal regions (up to 11,000 m deep) to the surface. Despite the sampling operation complexity, it is of primary importance the use of the adequate instrumentation, as well the expertise of the instrument operator. Ideally, the ope
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47

Lézine, Anne-Marie. Vegetation at the Time of the African Humid Period. Oxford University Press, 2017. http://dx.doi.org/10.1093/acrefore/9780190228620.013.530.

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An orbitally induced increase in summer insolation during the last glacial-interglacial transition enhanced the thermal contrast between land and sea, with land masses heating up compared to the adjacent ocean surface. In North Africa, warmer land surfaces created a low-pressure zone, driving the northward penetration of monsoonal rains originating from the Atlantic Ocean. As a consequence, regions today among the driest of the world were covered by permanent and deep freshwater lakes, some of them being exceptionally large, such as the “Mega” Lake Chad, which covered some 400 000 square kilom
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