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  • PANGAEA  (13)
  • San Diego :Elsevier Science & Technology,  (2)
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  • 1
    Online-Ressource
    Online-Ressource
    San Diego :Elsevier Science & Technology,
    Schlagwort(e): Oceanography-Encyclopedias. ; Marine ecology-Encyclopedias. ; Electronic books.
    Materialart: Online-Ressource
    Seiten: 1 online resource (4330 pages)
    Ausgabe: 3rd ed.
    ISBN: 9780128130827
    DDC: 551.4603
    Sprache: Englisch
    Anmerkung: 9780128130827_WEB01 -- Front Cover -- Encyclopedia of Ocean Sciences -- Copyright -- Permission Acknowledgement -- Upper Ocean Processes -- Penetrating Shortwave Radiation -- References -- Shelf Sea and Shelf Slope Fronts -- Further Reading -- Relevant Websites -- Submesoscale Processes -- References -- Surface Films -- References -- Upper Ocean Heat and Freshwater Budgets -- References -- Further Reading -- Relevant Web Pages -- Upper Ocean Mean Horizontal Structure -- Further Reading -- Upper Ocean Mixing -- Further Reading -- Upper Ocean Structure: Ekman Transport and Pumping -- Further Reading -- Upper Ocean Structure: Responses to Strong Atmospheric Forcing Events -- References -- Further Reading -- Upper Ocean Vertical Structure -- Further Reading -- Wave-Driven Upper Ocean Processes -- References -- Further Reading -- Wind- and Buoyancy-Forced Upper Ocean -- References -- Further Reading -- Elemental Distribution -- Elemental Distribution: Overview -- References -- Relevant Websites -- Anthropogenic Trace Elements in the Ocean -- Further Reading -- Artificial Radionuclides -- References -- Further Reading -- Conservative Elements -- References -- Further Reading -- Metalloids and Oxyanions -- Further Reading -- Oxygen -- References -- Further Reading -- Platinum Group Elements and Their Isotopes in the Ocean -- References -- Rare Earth Elements and Their Isotopes in the Ocean -- References -- Further Reading -- Refractory Metals -- Further Reading -- Trace Metal Nutrients -- Further Reading -- Transition Metals and Heavy Metal Speciation -- References -- Further Reading -- Ocean Process Tracers -- CFCs and SF6 as Tracers of Ocean Processes -- References -- Compound-Specific Radiocarbon Measurements -- Further Reading -- Radiocarbon-Based Insights into the Biogeochemical Cycles of Marine Dissolved and Particulate Organic Carbon. , References -- Cosmogenic Isotopes -- Further Reading -- Nitrogen Isotopes in the Ocean -- Further Reading -- Noble Gases and the Cryosphere -- References -- Further Reading -- Nuclear Fuel Reprocessing and Related Discharges -- Further Reading -- Modeling of Ocean Carbon System -- Further Reading -- Relevant Websites -- Open Ocean Distribution and Applications of Natural and Bomb-Produced Delta14C -- Conclusions -- Reference -- Further Reading -- Oxygen Isotopes in the Ocean -- References -- Further Reading -- Redox-Sensitive Metals -- Further Reading -- The Stable Carbon Isotopic Composition of the Oceans -- References -- Further Reading -- Tracer Release Experiments -- Further Reading -- Tracers of Ocean Productivity -- Further Reading -- Tritium-Helium Dating -- Further Reading -- Uranium-Thorium Decay Series in the Oceans: Overview -- References -- Further Reading -- Uranium-Thorium Radionuclides in Ocean Profiles -- Further Reading -- Volcanic Helium -- References -- Further Reading -- Nutrient Cycling -- Carbon Dioxide (CO2) Cycle -- References -- Further Reading -- Nitrogen Cycle -- References -- Ocean Carbon Cycle -- References -- Ocean Iron Fertilization -- References -- Further Reading -- Phosphorus Cycle -- Further Reading -- Redfield Ratio -- References -- The Global Marine Silica Budget: Sources and Sinks -- References -- Further Reading -- Primary Production -- Approaches to Measuring Marine Primary Production -- Further Reading -- Aquatic Flow Cytometry -- References -- Relevant Websites -- Bacterioplankton -- Further Reading -- Bioluminescence -- Further Reading -- Cephalopods -- Further Reading -- Continuous Plankton Recorders -- Further Reading -- Copepods -- References -- Further Reading -- Relevant Websites -- Dynamics of Bacteria and Phytoplankton in the Surface Ocean -- References -- Further Reading -- Krill -- Further Reading. , Marine Algal Genomics and Evolution -- Further Reading -- Marine Cyanobacteria: Prochlorococcus and Synechococcus -- Further Reading -- Marine Plankton Communities -- Further Reading -- Nekton -- Further Reading -- Pelagic Biogeography -- References -- Further Reading -- Phytoplankton Size Structure -- Further Reading -- Phytoplankton, Calcareous Nanoplankton-The Coccolithophores -- Further Reading -- Plankton -- Further Reading -- Plankton Viruses -- Further Reading -- Plankton: Gelatinous Zooplankton -- Further Reading -- Primary Production Distribution -- References -- Further Reading -- Primary Production Processes -- Further Reading -- Protozoa, Planktic Foraminifera -- References -- Protozoa, Radiolarians -- Further Reading -- Small-Scale Physical Processes and Plankton Biology -- Further Reading -- Ecosystems and Ecosystem Structure and Dynamics (food webs) -- ArtificialReefs -- Further Readings -- Coastal Ocean Acidification: Carbonate Chemistry and Ecosystem Effects -- References -- Cold-Water Coral Reefs -- References -- Further Reading -- Relevant Website -- Corals and Human Disturbance -- Further Reading -- Diversity of Marine Species -- Further Reading -- Food Webs -- Further Reading -- Relevant Websites -- Large Marine Ecosystems -- References -- Mesocosms: Enclosed Experimental Ecosystems in Ocean Science -- Further Reading -- Microbial Loops -- Further Reading -- Network Analysis of Food Webs -- Further Reading -- Ocean Gyre Ecosystems -- Further Reading -- Omics Techniques in Marine Microbiology -- Further Reading -- Patch Dynamics -- Further Reading -- Polar Ecosystems -- Further Reading -- Population Genetics of Marine Organisms -- Further Reading -- Upwelling Ecosystems -- Further Reading -- Back Cover -- Front Cover -- Encyclopedia of Ocean Sciences -- Copyright -- Permission Acknowledgement -- Birds -- Alcidae -- Further Reading. , Gulls -- Further Reading -- Laridae, Sternidae, and Rynchopidae -- References -- Further Reading -- Phalaropes -- Further Reading -- Procellariiformes -- Further Reading -- Seabird Conservation -- Further Reading -- Seabird Foraging Ecology -- Further Reading -- Seabird Migration -- Further Reading -- Seabird Population Dynamics -- Further Reading -- Seabird Reproductive Ecology -- Further Reading -- Seabird Responses to Climate Change -- References -- Further Reading -- Seabirds and Fisheries Interactions -- Further Reading -- Seabirds as Indicators of Ocean Pollution -- Further Reading -- Sphenisciformes -- Further Reading -- The Pelecaniform Birds -- References -- Further Reading -- Fish Biology -- Fish: General Review -- Further Reading -- Antarctic Fishes -- Further Reading -- Coral Reef Fishes -- Further Reading -- Deep-Sea Fishes -- Further Reading -- Eels -- References -- Fish Ecophysiology -- Further Reading -- Fish Feeding and Foraging -- Further Reading -- Relevant Website -- Fish Larvae -- References -- Further Reading -- Relevant Websites -- Fish Locomotion -- References -- Relevant Website -- Fish Migration, Horizontal -- References -- Further Reading -- Fish Migration, Vertical -- Further Reading -- Fish Predation and Mortality -- Further Reading -- Fish Reproduction -- Further Reading -- Fish Vision -- Further Reading -- Fish: Demersal Fish (Life Histories, Behavior, Adaptations) -- Further Reading -- Fish: Hearing, Lateral Lines (Mechanisms, Role in Behavior, Adaptations to Life Underwater) -- References -- Intertidal Fishes -- Further Reading -- Mesopelagic Fish -- References -- Further Reading -- Pelagic Fishes -- References -- Further Reading -- Salmonids -- Further Reading -- Fisheries and Mariculture -- Fisheries Overview -- References -- Further Reading -- Challenges for Future Salmonid Farming -- Further Reading. , Coral Reef and Other Tropical Fisheries -- Further Reading -- Crustacean Fisheries -- References -- Further Reading -- Dynamics of Exploited Marine Fish Populations -- References -- Further Reading -- Ecosystem Effects of Fishing -- Further Reading -- Fisheries Economics -- References -- Further Reading -- Relevant Websites -- Fisheries: Pacific Salmon Fisheries -- References -- Further Reading -- Relevant Websites -- Fisheries: Multispecies Dynamics -- Further Reading -- Fishery Management, Human Dimension -- Further Reading -- Fishery Manipulation Through Stock Enhancement or Restoration -- References -- Further Reading -- Relevant Websites -- Fishing Methods and Fishing Fleets -- Further Reading -- Luxury Seafood Trade: Extinction vs. Lavishness -- Further Reading -- Mariculture Overview -- Further Reading -- Relevant Websites -- Mariculture, Economic, and Social Impacts -- Further Reading -- Relevant Websites -- Marine Fishery Resources, Global State of -- Further Reading -- Mediterranean Mariculture -- References -- Further Reading -- Relevant Website -- Molluskan Fisheries -- Further Reading -- Relevant Websites -- Ocean Ranching -- Further Reading -- Open Ocean Fisheries for Deep-Water Species -- References -- Further Reading -- Open Ocean Fisheries for Large Pelagic Species -- References -- Further Reading -- Oysters: Shellfish Farming -- References -- Further Reading -- Relevant Websites -- Seaweeds and their Mariculture -- Further Reading -- Relevant Website -- Small Pelagic Species Fisheries -- Future Research -- References -- Further Reading -- Southern Ocean Fisheries -- Further Reading -- Marine Mammals -- Baleen Whales -- References -- Further Reading -- Bioacoustics -- References -- Further Reading -- Dolphins and Porpoises -- Further Reading -- Marine Mammal Diving Physiology -- Further Reading -- Marine Mammal Evolution and Taxonomy. , Further Reading.
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  • 2
    Online-Ressource
    Online-Ressource
    San Diego :Elsevier Science & Technology,
    Schlagwort(e): Uranium-thorium dating. ; Electronic books.
    Materialart: Online-Ressource
    Seiten: 1 online resource (471 pages)
    Ausgabe: 1st ed.
    ISBN: 9780080564883
    Serie: Issn Series ; v.Volume 13
    DDC: 546.431
    Sprache: Englisch
    Anmerkung: Front Cover -- U-Th Series Nuclides in Aquatic Systems -- Copyright page -- Dedication to Karl K. Turekian -- Contents -- Contributors -- Chapter 1. Introduction -- 1. Overview -- 2. Organization of the Volume -- Acknowledgements -- References -- Chapter 2. U- and Th-Series Nuclides in the Atmosphere: Supply, Exchange, Scavenging, and Applications to Aquatic Processes -- 1. Introduction -- 2. Sources of U- and Th-Series Nuclides to the Atmosphere -- 3. Atmospheric Distributions -- 4. Aerosol Scavenging Residence Times Using 222Rn and its Daughters -- 5. Applications of Rn Daughters of Atmospheric Origin to Study Aquatic Processes -- 6. Processes across Aquatic Interfaces -- 7. Perspectives and Future Directions -- Acknowledgements -- References -- Chapter 3. U-Series Geochemistry in Weathering Profiles, River Waters and Lakes -- 1. Introduction -- 2. Radionuclide Fractionation in Surface Environments -- 3. Radioactive Disequilibria in Weathering Profiles and Soils -- 4. U Series in Rivers -- 5. Review of Models for U-Series Fractionation in Surficial Environments -- 6. U-Series Disequilibria in Lakes -- 7. Future Perspectives -- Acknowledgments -- References -- Chapter 4. Investigating Groundwater Processes Using U- and Th-Series Nuclides -- 1. Introduction -- 2. General Element Behavior in Groundwaters -- 3. Modeling Nuclide Transport in Aquifers -- 4. Obtaining Solutions to the Model Equations -- 5. Radon and Recoil Rates -- 6. Ra Isotopes -- 7. Th Isotopes -- 8. U Isotopes -- 9. 210Pb -- 10. Summary and Future Studies -- Acknowledgments -- References -- Chapter 5. Uranium- and Thorium-Series Nuclides as Tracers of Submarine Groundwater Discharge -- 1. Introduction -- 2. How U-Th Isotopes are Used to Quantify Submarine Groundwater Discharge (SGD) -- 3. Radium -- 4. Radon -- 5. Uranium -- 6. Synthesis of Existing Studies. , 7. Towards a Global Estimate of SGD -- 8. Perspectives and Future Directions -- Acknowledgments -- References -- Chapter 6. U- and Th-Series Nuclides in Estuarine Environments -- 1. Introduction: Estuarine Processes -- 2. Uranium -- 3. Thorium -- 4. Radium -- 5. Radon -- 6. Lead-210 and Polonium-210 -- 7. Future Studies -- References -- Chapter 7. U- and Th-Series Nuclides as Tracers of Particle Dynamics, Scavenging and Biogeochemical Cycles in the Oceans -- 1. Abundance and Distribution of U-Th Nuclides in the Sea -- 2. Introduction to Particle Cycling and Scavenging in the Ocean -- 3. The Scavenging Process as Understood from Thorium Isotopes -- 4. Scavenging and Th Speciation -- 5. 226Ra-210Pb-210Po -- 6. The Role of Particle Composition -- 7. Boundary Scavenging -- 8. Calibration of Vertical Particle Fluxes -- 9. Summary and Outlook -- References -- Chapter 8. The Bioaccumulation of U- and Th-Series Radionuclides in Marine Organisms -- 1. Introduction -- 2. Radionuclides of Interest and their Bioavailability -- 3. Models of Uptake and Trophic Transfer -- 4. Biodetritus and Vertical Transport -- 5. Potential Impacts of Natural Radioactivity -- 6. Synthesis and Conclusions -- 7. Future Outlook and Perspectives -- References -- Chapter 9. Ocean Circulation/Mixing Studies with Decay-Series Isotopes -- 1. Introduction -- 2. General Transport Equations -- 3. Basic Ocean Mixing/Circulation Models -- 4. Radium Isotopes for Tracing Oceanic Mixing/Circulation -- 5. Radon-222 as a Vertical Mixing Tracer in the Deep Sea -- 6. Actinium-227 as a Diapycnal Mixing Tracer in the Deep Sea -- 7. Tracing Ocean Circulation Using Particle-Reactive Radionuclides -- 8. Closing Remarks and Future Prospects -- Acknowledgments -- References -- Chapter 10. Uranium- and Thorium-Series Radionuclides in Marine Groundwaters -- 1. Introduction. , 2. U- and Th-Series Radionuclides in High-Temperature Marine Groundwaters: Hydrothermal Fluids -- 3. U- and Th-Series Radionuclides in Low-Temperature Marine Groundwaters: Sediment Pore Water -- 4. Future Directions -- Acknowledgments -- References -- Chapter 11. Sediment Signatures of U- and Th-Series Nuclides and their Application as Paleoceanographic Tracers -- 1. Introduction -- 2. Long-Lived U-Series Nuclides in Sediments -- 3. Short-Lived U-Series Nuclides in Sediments: Application to Sediment Mixing and Accumulation -- 4. Authigenic Uranium as a Tracer of Sediment Redox State -- 5. Use of 230Th as a Constant Flux Proxy -- 6. 231Pa/230Th: Proxy for Particle Flux and Productivity -- 7. 231Pa/230Th: Proxy of Ocean Circulation -- 8. Modeling Studies -- 9. Manganese Crusts and Nodules -- 10. Summary and Outlook -- Acknowledgments -- References -- Appendix A. Charts of the 238U, 235U, 232Th, and 241Am Decay Series with Principal Modes of Decay, their Intensities and Energies -- 1. Introduction -- 2. Sources of Data -- References -- Appendix B. Systematics of Radioactive Decay -- 1. Overview of Decay Equations -- 2. Examples of Applications -- References -- Author Index -- Subject Index.
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  • 3
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Cámara-Mor, Patricia; Masqué, Pere; García-Orellana, Jordi; Kern, Stefan; Cochran, J Kirk; Hanfland, Claudia (2011): Interception of atmospheric fluxes by Arctic sea ice: Evidence from cosmogenic 7Be. Journal of Geophysical Research: Oceans, 116, C12041, https://doi.org/10.1029/2010JC006847
    Publikationsdatum: 2023-05-12
    Beschreibung: The natural cosmogenic radionuclide 7Be (T1/2 = 53.4 d) is supplied to the surface ocean from the atmosphere and, in the Arctic Ocean, can be used as a tracer of the efficiency with which sea ice intercepts the atmospheric fluxes of chemical species and of the importance of ice as a transport mechanism for particulate matter and chemical species. Analyses of 7Be in samples of surface water, surface sea ice, water beneath the ice, sea ice sediments, and precipitation from the Eurasian Basin of the Arctic Ocean show that the fraction of sea ice coverage determines the amount of 7Be in the surface water. When sea ice coverage is 〈40%, the 7Be inventory in the upper ocean (130 ± 19 Bq m**-2) is in good agreement with that expected from the inventory from 7Be atmospheric flux (128 ± 21 Bq m**-2). In contrast, when ice coverage is 〉80%, the water column inventory drops to 58 ± 20 Bq m**-2. The 7Be inventory in sea ice is 39 ± 23 Bq m**-2, and mass balance calculations show that sea ice can intercept 30 ± 18% of the atmospheric flux of 7Be during the studied period. We suggest that other atmospherically transported contaminants should be similarly intercepted. 7Be in the ice also can be used to estimate that the annual transport and release of sediment to the ablation area of the Fram Strait is -500 g m**-2, a value comparable to previously measured fluxes in sediment traps deployed in the area.
    Schlagwort(e): Arctic Ocean; ARK-XXII/2; CT; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Polarstern; PS70/2-track; PS70 SPACE DAMOCLES; Underway cruise track measurements
    Materialart: Dataset
    Format: application/zip, 5 datasets
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  • 4
    Publikationsdatum: 2023-05-12
    Schlagwort(e): Arctic Ocean; ARK-XXII/2; Beryllium-7; Beryllium-7, flux; Beryllium-7, flux, standard deviation; Beryllium-7, standard deviation; CT; DATE/TIME; Date/time end; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; LATITUDE; Latitude 2; LONGITUDE; Longitude 2; Polarstern; PS70/2-track; PS70 SPACE DAMOCLES; Sample code/label; Sample volume; see further details; Underway cruise track measurements
    Materialart: Dataset
    Format: text/tab-separated-values, 99 data points
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  • 5
    Publikationsdatum: 2023-05-12
    Schlagwort(e): Arctic Ocean; ARK-XXII/2; Beryllium-7; Beryllium-7, standard deviation; CT; DATE/TIME; DEPTH, water; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; LATITUDE; LONGITUDE; Polarstern; PS70/2-track; PS70 SPACE DAMOCLES; Sample ID; Sample volume; see further details; Station label; Underway cruise track measurements
    Materialart: Dataset
    Format: text/tab-separated-values, 52 data points
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  • 6
    Publikationsdatum: 2023-05-12
    Schlagwort(e): Arctic Ocean; ARK-XXII/2; Beryllium-7; Beryllium-7, standard deviation; CT; DATE/TIME; DEPTH, ice/snow; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; LATITUDE; LONGITUDE; Polarstern; PS70/2-track; PS70 SPACE DAMOCLES; Sample ID; Sample volume; see further details; Station label; Underway cruise track measurements
    Materialart: Dataset
    Format: text/tab-separated-values, 90 data points
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  • 7
    Publikationsdatum: 2023-05-12
    Schlagwort(e): Arctic Ocean; ARK-XXII/2; Beryllium-7; Beryllium-7, standard deviation; CT; DATE/TIME; DEPTH, water; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; LATITUDE; LONGITUDE; Minimum detectable activity; Polarstern; PS70/2-track; PS70 SPACE DAMOCLES; Sample ID; see further details; Station label; Underway cruise track measurements
    Materialart: Dataset
    Format: text/tab-separated-values, 134 data points
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  • 8
    Publikationsdatum: 2023-05-12
    Schlagwort(e): Arctic Ocean; ARK-XXII/2; Beryllium-7; Beryllium-7, standard deviation; CT; DATE/TIME; DEPTH, ice/snow; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; LATITUDE; LONGITUDE; Polarstern; PS70/2-track; PS70 SPACE DAMOCLES; Sample ID; see further details; Underway cruise track measurements
    Materialart: Dataset
    Format: text/tab-separated-values, 48 data points
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  • 9
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Krishnaswami, Seth; Mangini, Augusto; Thomas, J H; Sharma, P; Cochran, J Kirk; Turekian, Karl K; Parker, P D (1982): 10Be and Th isotopes in manganese nodules and adjacent sediments: Nodule growth histories and nuclide behavior. Earth and Planetary Science Letters, 59(2), 217-234, https://doi.org/10.1016/0012-821X(82)90127-3
    Publikationsdatum: 2023-08-28
    Beschreibung: The usefulness of cosmogenic beryllium-10 (half life = 2.5 Ma) for studying the rates of accumulation of ferromanganese nodules is reported based on its measured depth distribution in the top 20 mm of these deposits. Accumulation rates have been obtained in the range of 1 to 4 mm/Ma, which are in good agreement with rates determined using the 230Th method on the same nodules. The use of 10Be offers promise in extending the dating to the outer few cm of the nodules. This contrasts with conventional methods using 230Th and 231Pa isotopes which, due to their comparatively short half lives, are limited to a few mm at the surface of the nodules. Detailed studies of 10Be in the manganese deposits coupled with other trace element analyses should prove valuable in understanding the processes of formation of these deposits and the chronology of events recorded by them.
    Schlagwort(e): ARRH-TF; BC; Box corer; DOMES-A47-16; Dredge; DRG; Indian Ocean; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Oceanographer; Pacific Ocean; RP8OC75; RP8OC75-47-16; Vit 5186; Vityaz (ex-Mars); Vityaz-35; VITYAZ5186
    Materialart: Dataset
    Format: application/zip, 2 datasets
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  • 10
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Turekian, Karl K; Cochran, J Kirk; Krishnaswami, Seth; Lanford, W A; Parker, P D; Bauer, K A (1979): The measurement of 10Be in manganese nodules using a tandem Van De Graaff accelerator. Geophysical Research Letters, 6(5), 417-420, https://doi.org/10.1029/GL006i005p00417
    Publikationsdatum: 2023-08-28
    Beschreibung: The growth rate of a manganese nodule from the South Atlantic Ocean (Rio Grande Ridge) has been determined using a 10Be profile as measured with a Tandem Van de Graaff accelerator. This rate is 4.5 mm /My. A correlation may exist between the 10Be flux and the Mn flux to nodules.
    Schlagwort(e): Atlantic Ocean; Beryllium-10; Beryllium-10/Beryllium-9, standard deviation; Beryllium-10/Beryllium-9 ratio; Beryllium-10 decay; Deposit type; DEPTH, sediment/rock; Description; DISTANCE; Distance, maximum; Distance, minimum; Dredge; DRG; Identification; Mass, netto; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; RC16; RC16-10RD; Robert Conrad
    Materialart: Dataset
    Format: text/tab-separated-values, 30 data points
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