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  • Data  (49,070)
  • 2015-2019  (48,468)
  • 1975-1979  (602)
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  • 1
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-28
    Keywords: ANT-XXXII/3; ATLAS Parasound P70 Deep-Sea Parametric Sub-Bottom Profiler; AWI_Paleo; DATE/TIME; LATITUDE; LONGITUDE; P70; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; ParaSound; Polarstern; PS; PS104; PS104_0_Underway-7; Uniform resource locator/link to raw data file
    Type: Dataset
    Format: text/tab-separated-values, 126 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-05-28
    Keywords: 364-M0077A; Abundance; Acarinina aspensis; Acarinina cuneicamerata; Acarinina soldadoensis; Acarinina sp.; Acarinina wilcoxensis; Anomalinoides spp.; Aragonia spp.; Astrorotalia palmerae; Bathysiphon spp.; Bolivina sp.; Bolivina spp.; Bulimina cf. midwayensis; Bulimina sp.; Bulimina trinitatensis; Buliminella spp.; Chicx-03B; Chiloguembelina criniata; Chiloguembelina spp.; Chiloguembelina trinitatensis; Cibicides spp.; Cibicidoides spp.; Comment; Coryphostoma spp.; DEPTH, sediment/rock; Dinoflagellates, calcareous; Echinoid spine; Eoglobigerina edita; Eoglobigerina eobulloides; Eoglobigerina spp.; Exp364; Fish remains; Foraminifera, benthic; Foraminifera, benthic, uniserial; Foraminifera, benthic agglutinated; Foraminifera, planktic; Foraminifera, planktic reworked; Fragments; Gaudryina sp.; Gavelinella sp.; Glasses; Glauconite; Globanomalina archeocompressa; Globanomalina compressa; Globanomalina planocompressa; Globanomalina planoconica; Globanomalina pseudomenardii; Globanomalina spp.; Globoturborotalita bassriverensis; Golf of Mexico; Guembelitria cretacea; Gyroidinoides globosus; Gyroidinoides sp.; Igorina albeari; Igorina broedermanni; Igorina pusilla; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Lenticulina spp.; Morozovella acuta; Morozovella aequa; Morozovella aragonensis; Morozovella formosa; Morozovella spp.; Morozovella subbotinae; Myrtle; Nodosaria sp.; Nuttallides sp.; Osangularia sp.; Ostracoda; Parasubbotina eoclava; Parasubbotina pseudobulloides; Parasubbotina varianta; Parvularugoglobigerina alabamensis; Parvularugoglobigerina eugubina; Parvularugoglobigerina minutula; Planoglobanomalina pseudoalgeriana; Planorotalites pseudoscitula; Planulina spp.; Praemurica inconstans; Praemurica pseudoinconstans; Praemurica spp.; Praemurica taurica; Praemurica uncinata; Preservation; Principal investigator; Pseudohastigerina wilcoxensis; Pyrgo spp.; Pyrite; Radiolarians abundance; Rectoguembelina cretacea; Sample code/label; Spiroplectammina sp.; Stensioeina beccariiformis; Subbotina crociapertura; Subbotina linaperta; Subbotina roesnaesensis; Subbotina spp.; Subbotina triloculinoides; Subbotina trivialis; Trochammina spp.; Turborotalia frontosa; Uvigerina sp.; Woodringina spp.; Zeauvigerina spp.; Zone
    Type: Dataset
    Format: text/tab-separated-values, 1476 data points
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2024-05-28
    Keywords: 364-M0077A; Abundance; Biscutum spp.; Braarudosphaera spp.; Campylosphaera dela; Chiasmolithus bidens; Chiasmolithus consuetus; Chiasmolithus danicus; Chiasmolithus grandis; Chiasmolithus solitus; Chicx-03B; Coccolithites cribellum; Coccolithus cavus; Coccolithus pelagicus; Cribrosphaerella ehrenbergii; Cruciplacolithus intermedius; Cruciplacolithus primus; Cruciplacolithus tenuis; Cyclagelosphaera reinhardtii; Discoaster barbadiensis; Discoaster deflandrei; Discoaster elegans; Discoaster falcatus; Discoaster kuepperi; Discoaster lenticularis; Discoaster lodoensis; Discoaster mohleri; Discoaster multiradiatus; Discoaster salisburgensis; Discoaster sublodoensis; Eiffellithus turriseiffelii; Ellipsolithus bollii; Ellipsolithus macellus; Ericsonia formosa; Ericsonia robusta; Ericsonia subpertusa; Exp364; Fasciculithus alanii; Fasciculithus schaubii; Fasciculithus tympaniformis; Golf of Mexico; Helicosphaera lophota; Helicosphaera seminulum; Heliolithus kleinpellii; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Lithraphidites quadratus; Lophodolithus nascens; Manivitella pemmatoidea; Markalius inversus; Micrantholithus spp.; Micula concava; Micula decussata; Micula murus; Myrtle; Nannotetrina spp.; Neochiastozygus modestus; Neochiastozygus spp.; Neococcolithes dubius; Neocrepidolithus neocrassus; Neocrepidolithus spp.; Placozygus sigmoides; Pontosphaera spp.; Prediscosphaera cretacea; Prediscosphaera stoveri; Preservation; Prinsius bisulcus; Prinsius tenuiculum; Quadrum gartneri; Retecapsa conica; Retecapsa surirella; Reticulofenestra dictyoda; Sample code/label; Sphenolithus anarrhopus; Sphenolithus editus; Sphenolithus moriformis; Sphenolithus radians; Thoracosphaera spp.; Toweius callosus; Toweius crassus; Toweius eminens; Toweius gammation; Toweius pertusus; Toweius spp.; Tranolithus orionatus; Tribrachiatus orthostylus; Triquetrorhabdulus inversus; Watznaueria barnesiae; Zygrhablithus bijugatus
    Type: Dataset
    Format: text/tab-separated-values, 2073 data points
    Location Call Number Expected Availability
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  • 4
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Fragoso, Glaucia M; Poulton, Alex J; Yashayaev, Igor M; Head, Erica J H; Purdie, Duncan A (2016): Spring phytoplankton communities of the Labrador Sea (2005-2014): pigment signatures, photophysiology and elemental ratios. Biogeosciences Discussions, 43 pp, https://doi.org/10.5194/bg-2016-295
    Publication Date: 2024-05-28
    Description: The Labrador Sea is an ideal region to study the biogeographical, physiological and biogeochemical implications of phytoplankton communities due to sharp transitions of distinct water masses across its shelves and the central basin, intense nutrient delivery due to deep vertical mixing during winters and continual inflow of Arctic, Greenland melt and Atlantic waters. In this study, we provide a decadal assessment (2005?2014) of late spring/early summer phytoplankton communities from surface waters of the Labrador Sea based on pigment markers and CHEMTAX analysis, and their physiological and biogeochemical signatures. Diatoms were the most abundant group, blooming first in shallow mixed layers of haline-stratified Arctic shelf waters. Along with diatoms, chlorophytes co-dominated at the western end of the section (particularly in the polar waters of the Labrador Current (LC)), whilst Phaeocystis co-dominated in the east (modified polar waters of the West Greenland Current (WGC)). Pre-bloom conditions occurred in deeper mixed layers of the central Labrador Sea in May, where a mixed assemblage of flagellates (dinoflagellates, prasinophytes, prymnesiophytes, particularly coccolithophores, and chrysophytes/pelagophytes) occurred in low chlorophyll areas, succeeding to blooms of diatoms and dinoflagellates in thermally-stratified Atlantic waters in June. Light-saturated photosynthetic rates and saturation irradiance levels were higher at stations where diatoms were the dominant phytoplankton group (〉 70 %), as opposed to stations where flagellates were more abundant (from 40 % up to 70 %). Phytoplankton communities from the WGC (Phaeocystis and diatoms) had lower light-limited photosynthetic rates, with little evidence of photo-inhibition, indicating greater tolerance to a high light environment. By contrast, communities from the central Labrador Sea (dinoflagellates and diatoms), which bloomed later in the season (June), appeared to be more sensitive to high light levels. Ratios of accessory pigments (AP) to total chlorophyll a (TChl a) varied according to phytoplankton community composition, with polar phytoplankton (cold-water related) having lower AP to TChl a ratios. Phytoplankton communities associated with polar waters (LC and WGC) also had higher and more variable particulate organic carbon (POC) to particulate organic nitrogen (PON) ratios, suggesting the influence of detritus from freshwater input, derived from riverine, glacial and/or sea-ice meltwater. Long-term observational shifts in phytoplankton communities were not assessed in this study due to the short temporal frame (May to June) of the data. Nevertheless, these results have provided a baseline of current distributions and an evaluation of the biogeochemical role of spring phytoplankton communities in the Labrador Sea, which will improve our understanding of potential long-term responses of phytoplankton communities in high-latitude oceans to a changing climate.
    Keywords: (Diadinoxanthin + Diatoxanthin)/chlorophyll a ratio; 19-Butanoyloxyfucoxanthin; 19-Hexanoyloxyfucoxanthin; Alloxanthin; alpha-Carotene, beta,epsilon-Carotene; beta-Carotene, beta,beta-Carotene; Calculated; Campaign of event; Carbon, organic, particulate; Carbon, organic, particulate/Nitrogen, organic, particulate ratio; Carotenoid pigments; Chlorophyll a; Chlorophyll a, Chlorophyta; Chlorophyll a, Chrysophyta; Chlorophyll a, Cryptophycea; Chlorophyll a, Cyanobacteria; Chlorophyll a, Diatoms; Chlorophyll a, Dinoflagellata; Chlorophyll a, Phaeocystis; Chlorophyll a, Prasinophyta; Chlorophyll a, Prymnesiophyceae; Chlorophyll a, total; Chlorophyll b; Chlorophyll c; Chlorophyll c1+c2; Chlorophyll c3; Chlorophyllide a; Cluster number; Comment; CTD, Sea-Bird; CTD/Rosette; CTD-RO; Date/Time of event; Davis Strait; Day of study; DEPTH, water; Diadinoxanthin; Diadinoxanthin + Diatoxanthin; Diatoxanthin; Diatoxanthin/(Diadinoxanthin + Diatoxanthin) ratio; Element analyser CHNS/O, Perkin-Elmer 2400 II; Event label; Fluorometer, Turner Design, TD-700; Fucoxanthin; Greenland Sea; Gulf of St. Lawrence; High Performance Liquid Chromatography (HPLC); HUD2005-16; HUD-2005-16_L10; HUD-2005-16_L11; HUD-2005-16_L12B_2; HUD-2005-16_L13; HUD-2005-16_L14; HUD-2005-16_L15; HUD-2005-16_L16B_2; HUD-2005-16_L17; HUD-2005-16_L18; HUD-2005-16_L19; HUD-2005-16_L20B_2; HUD-2005-16_L21; HUD-2005-16_L22; HUD-2005-16_L23; HUD-2005-16_L24; HUD-2005-16_L25B_2; HUD-2005-16_L26; HUD-2005-16_L27_2; HUD-2005-16_L3; HUD-2005-16_L4; HUD-2005-16_L5; HUD-2005-16_L6_2; HUD-2005-16_L7; HUD-2005-16_L8; HUD-2005-16_L9; HUD2006-019; HUD-2006-019_Bio1_2; HUD-2006-019_Bio4_2; HUD-2006-019_L1_2; HUD-2006-019_L11; HUD-2006-019_L14B_2; HUD-2006-019_L18B_2; HUD-2006-019_L24B_2; HUD-2006-019_L25B_2; HUD-2006-019_L4_2; HUD-2006-019_L4.10_2; HUD-2006-019_L4.5_2; HUD-2006-019_L9B_3; HUD2007-011; HUD-2007-011_L10B_2; HUD-2007-011_L11; HUD-2007-011_L12; HUD-2007-011_L13; HUD-2007-011_L14; HUD-2007-011_L14B_2; HUD-2007-011_L15; HUD-2007-011_L16; HUD-2007-011_L17; HUD-2007-011_L17B_2; HUD-2007-011_L18; HUD-2007-011_L2.10; HUD-2007-011_L2.12B_2; HUD-2007-011_L2.13; HUD-2007-011_L2.14; HUD-2007-011_L2.15.5; HUD-2007-011_L2.18; HUD-2007-011_L2.19_2; HUD-2007-011_L2.20; HUD-2007-011_L2.8B_2; HUD-2007-011_L20; HUD-2007-011_L21; HUD-2007-011_L21B_2; HUD-2007-011_L22; HUD-2007-011_L23; HUD-2007-011_L24; HUD-2007-011_L25; HUD-2007-011_L26; HUD-2007-011_L27_2; HUD-2007-011_L4.5; HUD-2007-011_L5; HUD-2007-011_L8; HUD2008-009; HUD-2008-009_L1; HUD-2008-009_L10B_2; HUD-2008-009_L11; HUD-2008-009_L12; HUD-2008-009_L13; HUD-2008-009_L14; HUD-2008-009_L15B_2; HUD-2008-009_L16; HUD-2008-009_L17; HUD-2008-009_L18; HUD-2008-009_L19B_2; HUD-2008-009_L2; HUD-2008-009_L20; HUD-2008-009_L21; HUD-2008-009_L22B_2; HUD-2008-009_L23; HUD-2008-009_L24B_2; HUD-2008-009_L25; HUD-2008-009_L3; HUD-2008-009_L4_2; HUD-2008-009_L5; HUD-2008-009_L6; HUD-2008-009_L7; HUD-2008-009_L8; HUD-2008-009_L9; HUD2009-015; HUD-2009-015_BIO1_2; HUD-2009-015_BIO2_2; HUD-2009-015_BIO3_2; HUD-2009-015_L10B_2; HUD-2009-015_L11B_2; HUD-2009-015_L12; HUD-2009-015_L13; HUD-2009-015_L14; HUD-2009-015_L15B_2; HUD-2009-015_L16B_2; HUD-2009-015_L17; HUD-2009-015_L18; HUD-2009-015_L19; HUD-2009-015_L20; HUD-2009-015_L20B; HUD-2009-015_L21; HUD-2009-015_L22; HUD-2009-015_L23; HUD-2009-015_L24; HUD-2009-015_L25; HUD-2009-015_L26; HUD-2009-015_L27; HUD-2009-015_L28_2; HUD-2009-015_L7.5; HUD-2009-015_L8; HUD-2009-015_L9; HUD2010-014; HUD-2010-014_L1; HUD-2010-014_L10_2; HUD-2010-014_L11; HUD-2010-014_L12; HUD-2010-014_L13; HUD-2010-014_L14B_2; HUD-2010-014_L15; HUD-2010-014_L16; HUD-2010-014_L17; HUD-2010-014_L18B_2; HUD-2010-014_L19; HUD-2010-014_L20; HUD-2010-014_L21; HUD-2010-014_L23B_2; HUD-2010-014_L24; HUD-2010-014_L25; HUD-2010-014_L26; HUD-2010-014_L27; HUD-2010-014_L28; HUD-2010-014_L2a; HUD-2010-014_L3a; HUD-2010-014_L4a; HUD-2010-014_L5a; HUD-2010-014_L6a_2; HUD-2010-014_L7; HUD-2010-014_L8; HUD-2010-014_L9; HUD2011-009; HUD-2011-009_A3; HUD-2011-009_A4; HUD-2011-009_AB_8; HUD-2011-009_BIO3_3; HUD-2011-009_L0; HUD-2011-009_L1; HUD-2011-009_L10; HUD-2011-009_L11; HUD-2011-009_L11.5B_2; HUD-2011-009_L12; HUD-2011-009_L13; HUD-2011-009_L14B; HUD-2011-009_L15; HUD-2011-009_L17; HUD-2011-009_L19B_2; HUD-2011-009_L2; HUD-2011-009_L20; HUD-2011-009_L21; HUD-2011-009_L22; HUD-2011-009_L23.5_2; HUD-2011-009_L23B_2; HUD-2011-009_L24; HUD-2011-009_L25; HUD-2011-009_L26; HUD-2011-009_L27; HUD-2011-009_L28; HUD-2011-009_L3; HUD-2011-009_L4; HUD-2011-009_L5; HUD-2011-009_L6; HUD-2011-009_L7_2; HUD-2011-009_L8; HUD-2011-009_L9.5; HUD2012-001; HUD-2012-001_L1; HUD-2012-001_L10; HUD-2012-001_L11; HUD-2012-001_L12; HUD-2012-001_L13; HUD-2012-001_L14; HUD-2012-001_L15B; HUD-2012-001_L16; HUD-2012-001_L17; HUD-2012-001_L17.4; HUD-2012-001_L18B; HUD-2012-001_L19; HUD-2012-001_L2; HUD-2012-001_L21B; HUD-2012-001_L22; HUD-2012-001_L23; HUD-2012-001_L23.5; HUD-2012-001_L24; HUD-2012-001_L25; HUD-2012-001_L27; HUD-2012-001_L28; HUD-2012-001_L29; HUD-2012-001_L3; HUD-2012-001_L30; HUD-2012-001_L4; HUD-2012-001_L5; HUD-2012-001_L6; HUD-2012-001_L7; HUD-2012-001_L8; HUD-2012-001_L9; HUD2013-008; HUD-2013-008_B1; HUD-2013-008_B2; HUD-2013-008_B3; HUD-2013-008_B4; HUD-2013-008_B5; HUD-2013-008_L10; HUD-2013-008_L11; HUD-2013-008_L12; HUD-2013-008_L13; HUD-2013-008_L14.2; HUD-2013-008_L14B2; HUD-2013-008_L15; HUD-2013-008_L16; HUD-2013-008_L17_2; HUD-2013-008_L17B2; HUD-2013-008_L18; HUD-2013-008_L19; HUD-2013-008_L21; HUD-2013-008_L22; HUD-2013-008_L23; HUD-2013-008_L25; HUD-2013-008_L26; HUD-2013-008_L27; HUD-2013-008_L28B2; HUD-2013-008_L7; HUD-2013-008_L8; HUD-2013-008_L9; Hudson; Initial slope of the photosynthesis-irradiance curve; James Clark Ross; JR302; JR302_R11; JR302_R22; JR302_R23; JR302_R28; JR302_R33; JR302_R38; JR302_R42; JR302_R48; JR302_R49; JR302_R5; JR302_R56; JR302_R6; JR302_R62; JR302_R71; JR302_R75; JR302_R78; Labrador Sea; Latitude of event; Light intensity at half-saturation irradiance; Light intensity at saturation irradiance; Longitude of event; Maximum photosynthetic efficiency per chlorophyll a biomass; Mixed layer depth; Nitrate; Nitrate/Phosphate ratio; Nitrogen, organic, particulate; Peridinin; Phaeophytin; Phosphate; Photoinhibition in carbon normalized to chlorophyll a; Pigments, total; Pigments, total accessory; Prasinoxanthin; Salinity; Sample ID; SEAL AutoAnalyzer 3 HR (AA3 HR); Silicate; Silicate/Nitrate ratio; South Atlantic Ocean; Station label; Stratification index; Temperature, water; Violaxanthin; Zeaxanthin + Lutein
    Type: Dataset
    Format: text/tab-separated-values, 14654 data points
    Location Call Number Expected Availability
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  • 5
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-28
    Keywords: ARK-XXVIII/4 ALEX2014; AWI_GeoPhy; CT; DATE/TIME; DS3; LATITUDE; LONGITUDE; Marine Geophysics @ AWI; Polarstern; PS87; PS87-track; Swath-mapping system Atlas Hydrosweep DS-3; Underway cruise track measurements; Uniform resource locator/link to file; Uniform resource locator/link to raw data file
    Type: Dataset
    Format: text/tab-separated-values, 173 data points
    Location Call Number Expected Availability
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  • 6
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Dorschel, Boris; Gutt, Julian; Huhn, Oliver; Bracher, Astrid; Huntemann, Marcus; Huneke, Wilma G C; Gebhardt, Andrea Catalina; Schröder, Michael (2016): Environmental information for a marine ecosystem research approach for the northern Antarctic Peninsula (RV Polarstern expedition PS81, ANT-XXIX/3). Polar Biology, 39(5), 765-787, https://doi.org/10.1007/s00300-015-1861-2
    Publication Date: 2024-05-28
    Description: During the austral summer expedition PS81, ANT-XXIX/3 with the German research ice breaker Polarstern in 2013, research was carried out to investigate the role of environmental factors on the distribution of benthic communities and marine mammal and krill densities around the northern tip of the Antarctic Peninsula. For these studies collated in this special issue and studies in this area, we present a collection of environmental parameters with probable influence on the marine ecosystems around the Antarctic Peninsula.
    Keywords: ANT-XXIX/3; Bottle number; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Freon-11 (trichorofluoromethane); Freon-12 (dichlorodifluoromethane); Helium; Latitude of event; Longitude of event; Neon; Polarstern; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; PS81; PS81/116-1; PS81/118-1; PS81/120-1; PS81/122-2; PS81/123-2; PS81/124-2; PS81/125-2; PS81/126-2; PS81/127-2; PS81/128-2; PS81/129-2; PS81/130-1; PS81/131-2; PS81/132-1; PS81/134-1; PS81/135-2; PS81/136-2; PS81/137-2; PS81/138-2; PS81/139-1; PS81/140-1; PS81/141-1; PS81/142-1; PS81/143-2; PS81/144-2; PS81/145-1; PS81/146-2; PS81/147-2; PS81/148-2; PS81/149-1; PS81/150-1; PS81/151-2; PS81/152-1; PS81/153-2; PS81/154-2; PS81/155-1; PS81/156-1; PS81/157-1; PS81/158-2; PS81/164-1; PS81/165-1; PS81/166-1; PS81/167-3; PS81/168-2; PS81/169-2; PS81/170-1; PS81/171-1; PS81/172-1; PS81/173-1; PS81/174-1; PS81/176-1; PS81/177-1; PS81/178-1; PS81/179-1; PS81/180-1; PS81/181-1; PS81/182-2; PS81/183-1; PS81/189-2; PS81/190-1; PS81/207-1; PS81/208-1; PS81/209-1; PS81/210-1; PS81/211-1; PS81/212-2; PS81/213-1; PS81/228-2; PS81/229-1; PS81/230-1; PS81/231-3; PS81/232-1; PS81/252-1; PS81/253-1; PS81/254-1; PS81/255-1; PS81/256-1; Scotia Sea; SPP1158; Weddell Sea; δ Helium-3
    Type: Dataset
    Format: text/tab-separated-values, 3603 data points
    Location Call Number Expected Availability
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  • 7
    Publication Date: 2024-05-28
    Keywords: Baffin Bay; BC; Box corer; Center for Marine Environmental Sciences; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; File format; File name; File size; GeoB19920-4; GeoB smartCIS 1600 Line Scanner; Maria S. Merian; MARUM; MSM44; MSM44_346-4; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 12 data points
    Location Call Number Expected Availability
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  • 8
    Publication Date: 2024-05-28
    Keywords: Baffin Bay; Center for Marine Environmental Sciences; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; File format; File name; File size; GC; GeoB19927-1; GeoB smartCIS 1600 Line Scanner; Gravity corer; Maria S. Merian; MARUM; MSM44; MSM44_353-1; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 66 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2024-05-28
    Keywords: Baffin Bay; Center for Marine Environmental Sciences; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; File format; File name; File size; GC; GeoB19927-3; GeoB smartCIS 1600 Line Scanner; Gravity corer; Maria S. Merian; MARUM; MSM44; MSM44_353-3; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 72 data points
    Location Call Number Expected Availability
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  • 10
    Publication Date: 2024-05-28
    Keywords: Baffin Bay; Center for Marine Environmental Sciences; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; File format; File name; File size; GC; GeoB19933-1; GeoB smartCIS 1600 Line Scanner; Gravity corer; Maria S. Merian; MARUM; MSM44; MSM44_359-1; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 72 data points
    Location Call Number Expected Availability
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