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  • 2000-2004  (295,801)
  • 2001  (295,801)
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Year
  • 1
    Publication Date: 2024-05-15
    Keywords: ANT-XI/2; AWI_Paleo; Calculated, dried, re-weight; Calculated from mass/volume; Density; Density, dry bulk; Density, grain; Density, wet bulk; DEPTH, sediment/rock; Gravity corer (Kiel type); Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; Porosity, fractional; PS2498-1; PS28; PS28/304; Pycnometer (Micromeritics); SL; South Atlantic; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 702 data points
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  • 2
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; ARK-III/3; AWI_Paleo; Calculated; Calculated average/mean values; Calculated from mass/volume; Carbon, organic, total; Carbon/Nitrogen ratio; Color code HLS-system; DEPTH, sediment/rock; Element analyser CHN; Estimated; Foraminifera, planktic; Fram Strait; GIK21312-4 PS07/606; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan Delta-E; Munsell Color System (1994); Nitrogen, total; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1312-4; Quaternary Environment of the Eurasian North; QUEEN; Size fraction 〉 0.063 mm, sand; SL; Water content, wet mass; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 780 data points
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  • 3
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; ARK-III/3; AWI_Paleo; Calculated; Calculated average/mean values; Calculated from mass/volume; Carbon, organic, total; Carbon/Nitrogen ratio; Color code HLS-system; DEPTH, sediment/rock; Element analyser CHN; Estimated; Foraminifera, planktic; Fram Strait; GIK21313-4 PS07/607; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan Delta-E; Munsell Color System (1994); Nitrogen, total; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1313-4; Quaternary Environment of the Eurasian North; QUEEN; Size fraction 〉 0.063 mm, sand; SL; Water content, wet mass; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 1344 data points
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  • 4
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, 〉 0.5 mm; Accumulation rate, calcium carbonate; Accumulation rate, coccoliths; Accumulation rate, mass; Accumulation rate, sand 〉 63 µm; Accumulation rate, total organic carbon; AGE; ARK-III/3; AWI_Paleo; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Density, dry bulk; DEPTH, sediment/rock; Element analyser CHN; Fram Strait; GIK21297-4 PS07/588; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan MAT 251; Neogloboquadrina pachyderma sinistral, δ13C; Neogloboquadrina pachyderma sinistral, δ18O; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1297-4; Sedimentation rate; Size fraction 〉 0.500 mm, gravel; SL
    Type: Dataset
    Format: text/tab-separated-values, 551 data points
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  • 5
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, 〉 0.5 mm; Accumulation rate, calcium carbonate; Accumulation rate, coccoliths; Accumulation rate, mass; Accumulation rate, sand 〉 63 µm; Accumulation rate, total organic carbon; AGE; ARK-III/3; AWI_Paleo; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Density, dry bulk; DEPTH, sediment/rock; Element analyser CHN; Fram Strait; GIK21320-2 PS07/620; Grain size, sieving; KL; Mass spectrometer Finnigan MAT 251; Neogloboquadrina pachyderma sinistral, δ13C; Neogloboquadrina pachyderma sinistral, δ18O; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Piston corer (BGR type); Polarstern; PS07; PS1320-2; Sedimentation rate; Size fraction 〉 0.500 mm, gravel
    Type: Dataset
    Format: text/tab-separated-values, 1241 data points
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  • 6
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, 〉 0.5 mm; Accumulation rate, calcium carbonate; Accumulation rate, mass; Accumulation rate, sand 〉 63 µm; Accumulation rate, total organic carbon; AGE; ARK-III/3; AWI_Paleo; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Density, dry bulk; DEPTH, sediment/rock; Element analyser CHN; Fram Strait; GIK21311-4 PS07/605; Grain size, sieving; Gravity corer (Kiel type); Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1311-4; Sedimentation rate; Size fraction 〉 0.500 mm, gravel; SL
    Type: Dataset
    Format: text/tab-separated-values, 976 data points
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  • 7
    Publication Date: 2024-05-15
    Keywords: 53#2; Aluminium; Barium; BIGSET-1; Biogeochemical flux in the deep sea; Cadmium; Calcium; Calculated from mass/volume; Carbon, organic, total; Copper; DEPTH, sediment/rock; Element analyser CHN; GEOMARFLUX; Graphite furnace atomic absorption spectrometer (GF-AAS); Gravity corer (Kiel type); Inductively coupled plasma atomic emission spectroscope (ICP-AES); Ion selective probe; Iron; Lead; Magnesium; Manganese; Oxidation reduction (RedOx) potential; pH; Porosity; Silicate; SL; SO118; SO118_SL-02; Sonne; Titanium; Western Arabian Sediment Trap
    Type: Dataset
    Format: text/tab-separated-values, 525 data points
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  • 8
    Publication Date: 2024-05-15
    Keywords: 73#4; BIGSET-1; Biogeochemical flux in the deep sea; Calculated from mass/volume; DEPTH, sediment/rock; GEOMARFLUX; Gravity corer (Kiel type); Ion selective probe; Northern Arabian Sediment Trap; Oxidation reduction (RedOx) potential; pH; Porosity; SL; SO118; SO118_SL-04; Sonne
    Type: Dataset
    Format: text/tab-separated-values, 151 data points
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  • 9
    Publication Date: 2024-05-15
    Keywords: 90#3; Aluminium; Barium; BIGSET-1; Biogeochemical flux in the deep sea; Cadmium; Calcium; Calculated from mass/volume; Copper; DEPTH, sediment/rock; GEOMARFLUX; Graphite furnace atomic absorption spectrometer (GF-AAS); Gravity corer (Kiel type); Inductively coupled plasma atomic emission spectroscope (ICP-AES); Ion selective probe; Iron; Lead; Magnesium; Manganese; Oxidation reduction (RedOx) potential; pH; Porosity; Silicate; SL; SO118; SO118_SL-06; Sonne; Titanium; Western Arabian Sediment Trap-Kuppe
    Type: Dataset
    Format: text/tab-separated-values, 1069 data points
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  • 10
    Publication Date: 2024-05-15
    Keywords: Age model; Age model, SPECMAP chronology, Imbrie et al. (1984); Angola Basin; Calcium carbonate; Calculated; Calculated from mass/volume; Carbon, organic, total; Cibicidoides wuellerstorfi, δ13C; Cibicidoides wuellerstorfi, δ18O; Density, dry bulk; Depth, composite; DEPTH, sediment/rock; Element analyser CHN; Element analyser CHN, LECO; Event label; GeoB; GeoB1035-3; GeoB1035-4; Geosciences, University of Bremen; Giant box corer; GKG; Grain size, sieving; Gravity corer (Kiel type); Intercore correlation; M6/6; Mass spectrometer Finnigan MAT 251; Meteor (1986); Sand; Sedimentation rate; SFB261; SL; South Atlantic in Late Quaternary: Reconstruction of Budget and Currents; Walvis Ridge; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 978 data points
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  • 11
    Publication Date: 2024-05-15
    Keywords: 1#2; 11#3; 12; 16#1; 16#2; 22#3; 26#1; 26#4; 30#5; 31#1; 31#2; 33; 39#2; 43#3; 46#3; 53#3; 53#4; 58#1; 60#1; 62#6; 67#3; 67#4; 7; 70#4; 73#3; 76#6; 76#7; 82#2; 88#5; 90#4; BIGSET; BIGSET-1; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Bottom water sampler; BWS; Calculated from mass/volume; Carbon, organic, particulate; Central Arabian Sediment Trap; Chlorophyll a; Chloroplastic pigment equivalents; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Depth comment; Elevation of event; Event label; Flash combustion at 1050°C in a Carlo Erba NA1500 Analyser; Fluorometry; Latitude of event; Longitude of event; Nitrogen, organic, particulate; Northern Arabian Sediment Trap; Phaeopigments; SO118; SO118_BWS-01; SO118_BWS-02; SO118_BWS-03; SO118_BWS-04; SO118_BWS-05; SO118_BWS-06; SO118_BWS-07; SO118_BWS-08; SO118_BWS-09; SO118_BWS-10; SO118_BWS-11; SO118_BWS-12; SO118_BWS-13; SO118_BWS-14; SO118_BWS-15; SO118_BWS-16; SO118_BWS-17; SO118_CTD-02; SO118_CTD-06; SO118_CTD-07; SO118_CTD-09; SO118_CTD-10; SO118_CTD-12; SO118_CTD-15; SO118_CTD-16; SO118_CTD-19; SO118_CTD-22; SO118_CTD-23; SO118_CTD-27; SO118_CTD-28; Sonne; Southern Arabian Sediment Trap; Suspended matter, total; Western Arabian Sediment Trap; Western Arabian Sediment Trap-Kuppe
    Type: Dataset
    Format: text/tab-separated-values, 726 data points
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  • 12
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    PANGAEA
    Publication Date: 2024-05-15
    Keywords: ANT-XV/2; Calculated from mass/volume; DEPTH, sediment/rock; Gravity corer (Kiel type); Polarstern; Porosity, fractional; PS47; PS47/062-1; SL; SL62; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 50 data points
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  • 13
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    PANGAEA
    Publication Date: 2024-05-15
    Keywords: ANT-XV/2; Calculated from mass/volume; DEPTH, sediment/rock; Gravity corer (Kiel type); Polarstern; Porosity, fractional; PS47; PS47/086-2; SL; SL86; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 95 data points
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  • 14
    Publication Date: 2024-05-15
    Keywords: Archive of Ocean Data; ARCOD; Calculated from mass/volume; Date/Time of event; Depth, bottom/max; Depth, top/min; DEPTH, water; Event label; JUDAY; Juday net; Kara Sea; Latitude of event; Longitude of event; Mesozooplankton, biomass; Pechora Sea; Rossiya-2000-11; Rossiya-2000-12; Rossiya-2000-24; Rossiya-2000-27; Rossiya-2000-27A; Rossiya-2000-27B; Rossiya-2000-31; Rossiya-2000-31A; Rossiya-2000-34; Taimyr-2000-14; Taimyr-2000-3; Yamal-2000-19; Yamal-2000-19a; Yamal-2000-23; Yamal-2000-30; Yamal-2000-30a; Yamal-2000-30b; Yamal-2000-30c; Yamal-2000-38; Yamal-2000-8; Yamal-2000-8b
    Type: Dataset
    Format: text/tab-separated-values, 63 data points
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  • 15
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, 〉 0.5 mm; Accumulation rate, calcium carbonate; Accumulation rate, mass; Accumulation rate, sand 〉 63 µm; Accumulation rate, total organic carbon; AGE; Age, 14C AMS; Age, dated; ARK-III/3; AWI_Paleo; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Density, dry bulk; DEPTH, sediment/rock; Element analyser CHN; Fram Strait; GIK21295-5 PS07/586; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan MAT 251; Neogloboquadrina pachyderma sinistral, δ13C; Neogloboquadrina pachyderma sinistral, δ18O; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1295-5; Sedimentation rate; Size fraction 〉 0.500 mm, gravel; SL
    Type: Dataset
    Format: text/tab-separated-values, 983 data points
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  • 16
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; Density; DEPTH, sediment/rock; IMAGES; IMAGES I; International Marine Global Change Study; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952033; MD95-2033; Multi-Sensor Core Logger (MSCL), GEOTEK; Porosity; upper Laurentien Island; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 4613 data points
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  • 17
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; Color, a*; Color, b*; Color, L*, lightness; Density; DEPTH, sediment/rock; IMAGES; IMAGES I; International Marine Global Change Study; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952031; MD95-2031; Multi-Sensor Core Logger (MSCL), GEOTEK; Narwhal; Porosity; Spectrophotometer Minolta CM-2022; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 6839 data points
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  • 18
    Publication Date: 2024-05-15
    Keywords: 91; Calculated from mass/volume; CALYPSO; Calypso Corer; Density, dry bulk; Density, wet bulk; DEPTH, sediment/rock; Gulf of Cádiz, Atlantic Ocean; IMAGES; IMAGES V; International Marine Global Change Study; Marion Dufresne (1995); Mass, netto; Mass, tara; MD114; MD99-2336; Porosity; Salinity corrected; Sample volume; Water content, wet mass, brutto
    Type: Dataset
    Format: text/tab-separated-values, 2713 data points
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  • 19
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; Age model; ARK-III/3; AWI_Paleo; Calculated; Calculated average/mean values; Calculated from mass/volume; Carbon, organic, total; Carbon/Nitrogen ratio; Color code HLS-system; DEPTH, sediment/rock; Element analyser CHN; Estimated; Foraminifera, planktic; Fram Strait; GIK21320-2 PS07/620; Grain size, sieving; KL; Mass spectrometer Finnigan Delta-E; Munsell Color System (1994); Nitrogen, total; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Piston corer (BGR type); Polarstern; PS07; PS1320-2; Quaternary Environment of the Eurasian North; QUEEN; Size fraction 〉 0.063 mm, sand; Water content, wet mass; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 2249 data points
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  • 20
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; ARK-III/3; AWI_Paleo; Calculated; Calculated average/mean values; Calculated from mass/volume; Carbon, organic, total; Color code HLS-system; DEPTH, sediment/rock; Element analyser CHN; Estimated; Foraminifera, planktic; Fram Strait; GIK21311-4 PS07/605; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan Delta-E; Munsell Color System (1994); Nitrogen, total; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1311-4; Quaternary Environment of the Eurasian North; QUEEN; Size fraction 〉 0.063 mm, sand; SL; Water content, wet mass; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 1199 data points
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  • 21
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    PANGAEA
    In:  Supplement to: Hoffmann, Dirk L; Woda, Clemens; Strobl, Christopher; Mangini, Augusto (2001): ESR-dating of the Arctic sediment core PS1535 dose-response and thermal behaviour of the CO-2-signal in foraminifera. Quaternary Science Reviews, 20(5-9), 1009-1014, https://doi.org/10.1016/S0277-3791(00)00059-7
    Publication Date: 2024-05-15
    Description: ESR-spectra of foraminifera in arctic sediment cores display the [CO2]- -signal (g=2.0006). Research on the thermal behaviour of the [CO2]- -signal shows that both natural and artificial irradiation generates a precursor and a thermal unstable component of the [CO2]- -signal. The precursor can be transfered to the stable radical, and unstable radicals can be removed by heating. The signal-change by heating depends on the irradiation dose. Because of the varying response on thermal treatment, the dose-response curves show systematic differences depending on the applied procedure (single- or multi-aliquot method with or without heating). A model for the description of the [CO2]- -signal-change is presented. The combination of two exponential saturation functions seems to be an adequate analytical description of the dose-response curve of the [CO2]- -signal in foraminifera. Due to the limited thermal stability this signal can be used for dating foraminifera with ages up to about 190 ka.
    Keywords: Age, dated; Age, dated standard deviation; Age, electron spin resonance (ESR); Age model, optional; Age model, stable isotope stratigraphy; ARK-IV/3; Calculated from mass/volume; DEPTH, sediment/rock; Dose rate, standard deviation; Equivalent dose; Fram Strait; GIK21535-10 PS11/430-10; KL; Method comment; Piston corer (BGR type); Polarstern; Potassium; Potassium, standard deviation; PS11; PS1535-10; Thorium-230; Thorium-230, standard deviation; Thorium-232; Thorium-232, standard deviation; Uranium-234/Uranium-238 activity ratio; Uranium-234/Uranium-238 activity ratio, standard deviation; Uranium-238; Uranium-238, standard deviation; Water content, standard deviation; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 162 data points
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  • 22
    Publication Date: 2024-05-15
    Keywords: 45F; Calculated from mass/volume; CALYPSO; Calypso Corer; Density; DEPTH, sediment/rock; Greenland Rise; IMAGES; IMAGES V; International Marine Global Change Study; Magnetic susceptibility, volume; Marion Dufresne (1995); MD114; MD99-2242; Multi-Sensor Core Logger (MSCL), GEOTEK; Porosity; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 6837 data points
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  • 23
    Publication Date: 2024-05-15
    Keywords: Calcium carbonate; Calculated after FOLK; Calculated from mass/volume; CALYPSO; Calypso Corer; Density, dry bulk; DEPTH, sediment/rock; Grain size, mean; Grain size, SEDIGRAPH 5000; Grain size, sieving; Grain size, sieving/settling tube; IMAGES; IMAGES I; International Marine Global Change Study; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952026; MD95-2026; Multi-Sensor Core Logger (MSCL), GEOTEK; Sackville spur; Sand; Silt; Size fraction 〈 0.002 mm, clay; Size fraction 〉 2 mm, gravel; Size fraction 0.063-0.010 mm, sortable silt; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 4644 data points
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  • 24
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; Color, a*; Color, b*; Color, L*, lightness; Density; DEPTH, sediment/rock; IMAGES; IMAGES I; International Marine Global Change Study; Isotope ratio mass spectrometry; Laurentian fan; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952029; MD95-2029; Multi-Sensor Core Logger (MSCL), GEOTEK; Neogloboquadrina pachyderma dextral and/or sinistral, δ18O; Porosity; Size fraction 〉 0.125 mm; Spectrophotometer Minolta CM-2022; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 7784 data points
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  • 25
    Publication Date: 2024-05-15
    Keywords: Calcium carbonate; Calculated from mass/volume; CALYPSO; Calypso Corer; Carbon, organic, total; Color, a*; Color, b*; Color, L*, lightness; Density; DEPTH, sediment/rock; Element analyser CHN, LECO; Fogo Sea Mount; IMAGES; IMAGES I; International Marine Global Change Study; Isotope ratio mass spectrometry; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952028; MD95-2028; Multi-Sensor Core Logger (MSCL), GEOTEK; Neogloboquadrina pachyderma dextral and/or sinistral, δ18O; Porosity; Size fraction 〉 0.500 mm, gravel; Spectrophotometer Minolta CM-2022; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 8835 data points
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  • 26
    Publication Date: 2024-05-15
    Keywords: Calcium carbonate; Calculated from mass/volume; CALYPSO; Calypso Corer; Coefficient; Color, L*, lightness; Density; DEPTH, sediment/rock; IMAGES; IMAGES I; International Marine Global Change Study; Isotope ratio mass spectrometry; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952025; MD95-2025; Multi-Sensor Core Logger (MSCL), GEOTEK; Neogloboquadrina pachyderma dextral and/or sinistral, δ18O; predicted; Spectrophotometer Minolta CM-2022; Velocity, compressional wave; δ18O
    Type: Dataset
    Format: text/tab-separated-values, 6186 data points
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  • 27
    Publication Date: 2024-05-15
    Keywords: 35#3; BIGSET-1; Biogeochemical flux in the deep sea; Calculated from mass/volume; DEPTH, sediment/rock; GEOMARFLUX; Gravity corer (Kiel type); Ion selective probe; Oxidation reduction (RedOx) potential; pH; Porosity; SL; SO118; SO118_SL-01; Sonne; Southern Arabian Sediment Trap
    Type: Dataset
    Format: text/tab-separated-values, 51 data points
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  • 28
    Publication Date: 2024-05-15
    Keywords: BIGSET; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Bottom water sampler; BWS; Calculated from mass/volume; Carbon, organic, particulate; Chlorophyll a; Chloroplastic pigment equivalents; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Depth comment; Elevation of event; Event label; Flash combustion at 1050°C in a Carlo Erba NA1500 Analyser; Fluorometry; Latitude of event; Longitude of event; M36/6; M36/6_367CTD; M36/6_371BWS; M36/6_375CTD; M36/6_380CTD; M36/6_381BWS; M36/6_386CTD; M36/6_402BWS; M36/6_404CTD; M36/6_406; M36/6_406BWS; M36/6_BWS-19; M36/6_BWS-20; M36/6_BWS-21; M36/6_CTD-04; M36/6_CTD-05; M36/6_CTD-06; M36/6_CTD-07; M36/6_CTD-12; Meteor (1986); Nitrogen, organic, particulate; Phaeopigments; Suspended matter, total
    Type: Dataset
    Format: text/tab-separated-values, 150 data points
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  • 29
    Publication Date: 2024-05-15
    Keywords: Bengal; BIGSET; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; BIOTRAN S; Bottom water sampler; BWS; Calculated from mass/volume; Carbon, organic, particulate; Chlorophyll a; Chloroplastic pigment equivalents; CTD/Rosette; CTD-RO; DEPTH, water; Elevation of event; Event label; Flash combustion at 1050°C in a Carlo Erba NA1500 Analyser; Fluorometry; Height above sea floor/altitude; Latitude of event; Longitude of event; M42/2; M42/2_362-2; M42/2_368-1; M42/2_368-2; M42/2_374-2; M42/2_380-3; M42/2_388-1; M42/2_388-2; M42/2_391-1; M42/2_391-2; M42/2_397-3; M42/2_402-2; M42/2_402-3; M42/2_405-1; M42/2_405-2; M42/2_411-7; M42/2_411-8; M42/2_418; M42/2_421-3; M42/2_421-5; M42/2_424-2; M42/2_424-3; M42/2_426-3; M42/2_429-3; M42/2_434-2; M42/2_BWS-01; M42/2_BWS-04; M42/2_BWS-05; M42/2_BWS-06; M42/2_BWS-09; M42/2_BWS-11; M42/2_CTD-02; M42/2_CTD-05; M42/2_CTD-08; M42/2_CTD-09; M42/2_CTD-11; M42/2_CTD-13; M42/2_CTD-15; M42/2_CTD-16; M42/2_CTD-17; M42/2_CTD-20; M42/2_CTD-21; M42/2_CTD-22; M42/2_CTD-24; M42/2_CTD-25; M42/2_CTD-26; M42/2_CTD-31; M42/2_MC-03; Meteor (1986); MUC; MULT; MultiCorer; Multiple investigations; Nitrogen, organic, particulate; OPI-04; Phaeopigments; Suspended matter, total
    Type: Dataset
    Format: text/tab-separated-values, 690 data points
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  • 30
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    PANGAEA
    Publication Date: 2024-05-15
    Keywords: ANT-XV/2; Calculated from mass/volume; DEPTH, sediment/rock; Gravity corer (Kiel type); Polarstern; Porosity, fractional; PS47; PS47/061-1; SL; SL61; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 61 data points
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  • 31
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    PANGAEA
    Publication Date: 2024-05-15
    Keywords: ANT-XV/2; Calculated from mass/volume; DEPTH, sediment/rock; Gravity corer (Kiel type); Polarstern; Porosity, fractional; PS47; PS47/063-1; SL; SL63; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 64 data points
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  • 32
    Publication Date: 2024-05-15
    Keywords: Agadir Canyon; Calcium carbonate; Calculated from mass/volume; Canary Islands Azores Gibraltar Observations; CANIGO; Carbon, organic, total; Cibicidoides wuellerstorfi, δ13C; Cibicidoides wuellerstorfi, δ18O; Density, dry bulk; Density, wet bulk; Depth, composite; DEPTH, sediment/rock; Depth correlation/correction; Element analyser CHN, LECO, salinity corrected; GeoB; GeoB4241-11; Geology, comment; Geosciences, University of Bremen; Globigerina bulloides, δ13C; Globigerina bulloides, δ18O; Gravity corer (Kiel type); M37/1; Mass spectrometer Finnigan MAT 251; Meteor (1986); Porosity; SL
    Type: Dataset
    Format: text/tab-separated-values, 570 data points
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  • 33
    Publication Date: 2024-05-15
    Keywords: Agadir Canyon; Calcium carbonate; Calculated from mass/volume; Canary Islands Azores Gibraltar Observations; CANIGO; Carbon, organic, total; Density, dry bulk; Density, wet bulk; Depth, composite; DEPTH, sediment/rock; Depth correlation/correction; Element analyser CHN, LECO, salinity corrected; GeoB; GeoB4242-5; Geology, comment; Geosciences, University of Bremen; Globigerina bulloides, δ13C; Globigerina bulloides, δ18O; Gravity corer (Kiel type); M37/1; Mass spectrometer Finnigan MAT 251; Meteor (1986); Porosity; SL
    Type: Dataset
    Format: text/tab-separated-values, 620 data points
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  • 34
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; Age model; ARK-III/3; AWI_Paleo; Calculated; Calculated average/mean values; Calculated from mass/volume; Carbon, organic, total; Carbon/Nitrogen ratio; Color code HLS-system; DEPTH, sediment/rock; Element analyser CHN; Estimated; Foraminifera, planktic; Fram Strait; GIK21318-5 PS07/615; Grain size, sieving; KL; Mass spectrometer Finnigan Delta-E; Munsell Color System (1994); Nitrogen, total; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Piston corer (BGR type); Polarstern; PS07; PS1318-5; Quaternary Environment of the Eurasian North; QUEEN; Size fraction 〉 0.063 mm, sand; Water content, wet mass; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 1404 data points
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  • 35
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, 〉 0.5 mm; Accumulation rate, calcium carbonate; Accumulation rate, mass; Accumulation rate, sand 〉 63 µm; Accumulation rate, total organic carbon; AGE; Age, 14C AMS; Age, dated; ARK-III/3; AWI_Paleo; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Density, dry bulk; DEPTH, sediment/rock; Element analyser CHN; Fram Strait; GIK21294-4 PS07/584; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan MAT 251; Neogloboquadrina pachyderma sinistral, δ13C; Neogloboquadrina pachyderma sinistral, δ18O; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1294-4; Sedimentation rate; Size fraction 〉 0.500 mm, gravel; SL
    Type: Dataset
    Format: text/tab-separated-values, 1172 data points
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  • 36
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; ARK-III/3; AWI_Paleo; Calculated; Calculated average/mean values; Calculated from mass/volume; Carbon, organic, total; Carbon/Nitrogen ratio; Color code HLS-system; DEPTH, sediment/rock; Element analyser CHN; Estimated; Foraminifera, planktic; Fram Strait; GIK21314-4 PS07/608; Grain size, sieving; Gravity corer (Kiel type); Mass spectrometer Finnigan Delta-E; Munsell Color System (1994); Nitrogen, total; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS07; PS1314-4; Quaternary Environment of the Eurasian North; QUEEN; Size fraction 〉 0.063 mm, sand; SL; Water content, wet mass; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 1209 data points
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  • 37
    Publication Date: 2024-05-15
    Keywords: Age model; AWI_PerDyn; AWI Arctic Land Expedition; Calculated from mass/volume; Carbon, organic, total; Carbon, total; Carbon and nitrogen and sulfur (CNS) isotope element analyzer, Elementar, Vario EL III; COMPCORE; Composite Core; Density, wet bulk; DEPTH, sediment/rock; Element analyser, Metalyt CS-1000S (ELTRA Corp.); GL-Land_1994; Greenland94; Magnetic susceptibility, volume; Multi-Sensor Core Logger (MSCL), GEOTEK; Nitrogen, total; Opal, auto analysis (Müller & Schneider, 1993); Opal, biogenic silica; Permafrost Research (Periglacial Dynamics) @ AWI; PG1214; Quaternary Environment of the Eurasian North; QUEEN; Raffles Sø (lake); Sulfur, total; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 1322 data points
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  • 38
    Publication Date: 2024-05-15
    Keywords: Arctic Ocean; Calculated from mass/volume; Density, dry bulk; Density, wet bulk; DEPTH, sediment/rock; Giant box corer; GIK23351-4; GKG; Global Environmental Change: The Northern North Atlantic; M7/5; Meteor (1986); Neogloboquadrina pachyderma sinistral, δ13C; Neogloboquadrina pachyderma sinistral, δ18O; Rotovisco, Haake; SFB313; Shear strength, maximum; Shear strength, minimum; Shear strength, primary; Water content, dry mass
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
    Location Call Number Expected Availability
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  • 39
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, calcium carbonate; Accumulation rate, mass; Accumulation rate, nitrogen; Accumulation rate, nitrogen, standard deviation; Accumulation rate, sediment, standard deviation; Accumulation rate, total organic carbon; Accumulation rate per year, standard deviation; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Canary Islands; Canary Islands Azores Gibraltar Observations; CANIGO; Carbon, organic, total; Density, dry bulk; Density, wet bulk; DEPTH, sediment/rock; Element analyser CHN; Element analyser CHN, LECO, salinity corrected; GeoB; GeoB4301-1; Geosciences, University of Bremen; M38/1; Meteor (1986); MUC; MultiCorer; Nitrogen, total; Porosity; Sedimentation rate; Sedimentation rate, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 198 data points
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  • 40
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, calcium carbonate; Accumulation rate, mass; Accumulation rate, nitrogen; Accumulation rate, nitrogen, standard deviation; Accumulation rate, sediment, standard deviation; Accumulation rate, total organic carbon; Accumulation rate, total organic carbon, standard deviation; Accumulation rate per year, standard deviation; Agadir Canyon; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Canary Islands Azores Gibraltar Observations; CANIGO; Carbon, organic, total; Density, dry bulk; Density, wet bulk; DEPTH, sediment/rock; Element analyser CHN; Element analyser CHN, LECO, salinity corrected; GeoB; GeoB4242-4; Geosciences, University of Bremen; Giant box corer; GKG; M37/1; Meteor (1986); Nitrogen, total; Porosity; Sedimentation rate; Sedimentation rate, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 146 data points
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  • 41
    Publication Date: 2024-05-15
    Keywords: Accumulation rate, calcium carbonate; Accumulation rate, mass; Accumulation rate, nitrogen; Accumulation rate, nitrogen, standard deviation; Accumulation rate, sediment, standard deviation; Accumulation rate, total organic carbon; Accumulation rate per year, standard deviation; Agadir Canyon; Calcium carbonate; Calculated, see reference(s); Calculated from mass/volume; Carbon, organic, fraction; Carbon, organic, total; Density, dry bulk; Density, wet bulk; DEPTH, sediment/rock; Element analyser CHN; Element analyser CHN, LECO; Element analysis CHN, carbonate free sediment; Element analysis CHN, KCl-treatment; Element analysis CHN, KOBr-treatment; GeoB; GeoB4234-1; Geosciences, University of Bremen; Hydrocarbon yield, S1 per unit sediment mass; Hydrocarbon yield, S2 per unit sediment mass; M37/1; Mass spectrometer Finnigan Delta Plus; Mass spectrometer Finnigan Delta Plus, KCl-treatment; Mass spectrometer Finnigan Delta Plus, KOBr-treatment; Meteor (1986); MUC; MultiCorer; Nitrogen, organic; Nitrogen, total; Porosity; Pyrolysis temperature maximum; Rock eval pyrolysis (Behar et al., 2001); Sedimentation rate; Sedimentation rate, standard deviation; δ13C, organic carbon; δ15N; δ15N, gas; δ15N, organic matter
    Type: Dataset
    Format: text/tab-separated-values, 995 data points
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  • 42
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Grain size, mean; IMAGES; IMAGES III - IPHIS; International Marine Global Change Study; Marion Dufresne (1995); MD106; MD972128; MD97-2128; Sand; Silt; Size fraction 〈 0.002 mm, clay; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 423 data points
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  • 43
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Grain size, mean; IMAGES; IMAGES III - IPHIS; International Marine Global Change Study; Marion Dufresne (1995); MD106; MD972129; MD97-2129; Sand; Silt; Size fraction 〈 0.002 mm, clay; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 588 data points
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  • 44
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Grain size, mean; IMAGES; IMAGES III - IPHIS; International Marine Global Change Study; Marion Dufresne (1995); MD106; MD972130; MD97-2130; Sand; Silt; Size fraction 〈 0.002 mm, clay; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 707 data points
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  • 45
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Grain size, mean; IMAGES; IMAGES III - IPHIS; International Marine Global Change Study; Marion Dufresne (1995); MD106; MD972131; MD97-2131; Sand; Silt; Size fraction 〈 0.002 mm, clay; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 1237 data points
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  • 46
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Grain size, mean; IMAGES; IMAGES III - IPHIS; International Marine Global Change Study; Marion Dufresne (1995); MD106; MD972132; MD97-2132; Sand; Silt; Size fraction 〈 0.002 mm, clay; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 1297 data points
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  • 47
    Publication Date: 2024-05-15
    Keywords: Calculated from mass/volume; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Grain size, mean; IMAGES; IMAGES III - IPHIS; International Marine Global Change Study; Marion Dufresne (1995); MD106; MD972133; MD97-2133; Sand; Silt; Size fraction 〈 0.002 mm, clay; Water content, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 517 data points
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  • 48
    Publication Date: 2024-05-15
    Keywords: 178-1101A; Accumulation rate, ice rafted debris; AGE; Calculated; Calculated, see reference(s); Calculated from mass/volume; Counting 250-2000 µm fraction; Density, dry bulk; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Ice rafted debris; Ice rafted debris, general; Joides Resolution; Leg178; Ocean Drilling Program; ODP; Sample code/label; Sand, mass netto; Sedimentation rate; South Pacific Ocean
    Type: Dataset
    Format: text/tab-separated-values, 1995 data points
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  • 49
    Publication Date: 2024-05-15
    Keywords: Calculated; Calculated from electrical resistivity measurements; Calculated from mass/volume; Cape Roberts Project; Core wireline system; CRP; CRP-3; CWS; Density; Density, wet bulk; DEPTH, sediment/rock; Formation factor; Porosity; Resistivity, electrical; Ross Sea; Sampling/drilling from ice
    Type: Dataset
    Format: text/tab-separated-values, 413 data points
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  • 50
    Publication Date: 2024-05-15
    Keywords: AGE; Calcium carbonate; Calculated from mass/volume; CALYPSO; Calypso Corer; Carbon, organic, total; Color, a*; Color, b*; Color, L*, lightness; Density; DEPTH, sediment/rock; Element analyser CHN, LECO; IMAGES; IMAGES I; International Marine Global Change Study; Isotope ratio mass spectrometry; Magnetic susceptibility, volume; Marion Dufresne (1995); MD101; MD952024; MD95-2024; Multi-Sensor Core Logger (MSCL), GEOTEK; Neogloboquadrina pachyderma dextral and/or sinistral, δ18O; Orphan Knoll; Size fraction 〉 0.125 mm; Spectrophotometer Minolta CM-2022; Velocity, compressional wave
    Type: Dataset
    Format: text/tab-separated-values, 8729 data points
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  • 51
    Publication Date: 2024-05-14
    Keywords: 02260100; 02281147; 03041555; 03071108; 03081605; 03092330; 03112138; 03130720; 03181915; 03200715; 03211750; 03281830; 09070100; 09080637; 09171830; 119-745B; 61SL; 7TOW_5; 7TOW05WT; 7TOW-072; 7TOW-105; ANTA95-157; ANTA96-1; ANTA96-16; ANTA96-17; ANTIPODE; ANT-IV/3; ANT-IX/3; ANTP-226G; ANTP-231G; ANT-V/4; ANT-VI/3; ANT-VIII/6; APSARA1; APSARA2; APSARA3; APSARA4; AT_II-107_71; AT_II-107_78; AT_USA; ATII_USA; Atka Bay; Atlantis (1931); Atlantis II (1963); Barents Sea; C12/8712GC9; Camp Norway; Coral Sea; cruise 11; CTD/Rosette; CTD-RO; DEPTH, sediment/rock; DF85; DF85.062-PC; DF85.072-PC; DF85.114-PC; DF85.119-PC; DF85.125-PC; DRILL; Drilling/drill rig; Eastern Weddell Sea, Southern Ocean; Elevation of event; ELT05; ELT05.012-PC; ELT05.016-PC; ELT05.017-PC; ELT05.018-PC; ELT05.019-PC; ELT05.024-PC; ELT05.025-PC; ELT07; ELT07.001-PC; ELT07.007-PC; ELT07.008-PC; ELT07.009-PC; ELT07.010-PC; ELT07.011-PC; ELT07.012-PC; ELT07.013-PC; ELT07.014-PC; ELT07.015-PC; ELT07.017-PC; ELT08; ELT08.006-PC; ELT08.008-PC; ELT08.010-PC; ELT08.012-PC; ELT08.013-PC; ELT08.019-PC; ELT09; ELT09.013-PC; ELT09.015-PC; ELT09.016-PC; ELT10; ELT10.005-PC; ELT10.008-PC; ELT10.009-PC; ELT10.010-PC; ELT10.012-PC; ELT10.013-PC; ELT10.014-PC; ELT10.016-PC; ELT10.018-PC; ELT10.019-PC; ELT10.020-PC; ELT10.021-PC; ELT10.022-PC; ELT10.024-PC; ELT10.025-PC; ELT10.027-PC; ELT10.028-PC; ELT10.029-PC; ELT10.030-PC; ELT10.031-PC; ELT10.032-PC; ELT11; ELT11-001-PC; ELT11-002-PC; ELT11-003-PC; ELT11-004-PC; ELT11-006-PC; ELT11-007-PC; ELT11-008-PC; ELT11-010-PC; ELT11-012-PC; ELT11-014-PC; ELT11-015-PC; ELT11-018-PC; ELT11-020-PC; ELT11-022-PC; ELT11-023-PC; ELT11-025-PC; ELT11-026-PC; ELT11-029-PC; ELT11-031-PC; ELT11-035-PC; ELT13; ELT13.001-PC; ELT13.002-PC; ELT13.003-PC; ELT13.004-PC; ELT13.005-PC; ELT13.006-PC; ELT13.008-PC; ELT13.009-PC; ELT13.011-PC; ELT13.013-PC; ELT13.015-PC; ELT13.016-PC; ELT13.017-PC; ELT13.019-PC; ELT13.020-PC; ELT13.021-PC; ELT13.022-PC; ELT13.024-PC; ELT14; ELT14.003-PC; ELT14.004-PC; ELT14.005-PC; ELT14.006-PC; ELT14.008-PC; ELT14.010-PC; ELT14.011-PC; ELT14.012-PC; ELT14.013-PC; ELT14.015-PC; ELT14.016-PC; ELT15; ELT15.002-PC; ELT15.004-PC; ELT15.005-PC; ELT15.006-PC; ELT15.007-PC; ELT15.009-PC; ELT15.011-PC; ELT15.015-PC; ELT15.022-PC; ELT15.023-PC; ELT15.028-PC; ELT17; ELT17.005-PC; ELT17.006-PC; ELT17.007-PC; ELT17.009-PC; ELT17.011-PC; ELT17.013-PC; ELT17.014-PC; ELT17.015-PC; ELT17.016-PC; ELT17.017-PC; ELT17.018-PC; ELT17.020-PC; ELT17.021-PC; ELT17.022-PC; ELT17.023-PC; ELT17.026-PC; ELT17.028-PC; ELT17.029-PC; ELT17.030-PC; ELT17.032-PC; ELT17.033-PC; ELT18; ELT18.002-PC; ELT18.003-PC; ELT18.004-PC; ELT19; ELT19.001-PC; ELT19.004-PC; ELT19.005-PC; ELT19.006-PC; ELT19.008-PC; ELT19.014-PC; ELT19.015-PC; ELT19.024-PC; ELT19.026-PC; ELT19.027-PC; ELT20; ELT20.004-PC; ELT20.006-PC; ELT20.007-PC; ELT20.008-PC; ELT20.009-PC; ELT20.010-PC; ELT20.011-PC; ELT20.014-PC; ELT21; ELT21.016-PC; ELT21.018-PC; ELT21.020-PC; ELT21.021-PC; ELT21.023-PC; ELT22; ELT22.001-PC; ELT22.005-PC; ELT22.006-PC; ELT22.009-PC; ELT22.010-PC; ELT22.033-PC; ELT22.034-PC; ELT23; ELT23.001-PC; ELT23.004-PC; ELT23.005-PC; ELT23.006-PC; ELT23.008-PC; ELT23.009-PC; ELT23.010-PC; ELT23.011-PC; ELT23.012-PC; ELT23.013-PC; ELT23.014-PC; ELT23.016-PC; ELT23.017-PC; ELT23.019-PC; ELT25; ELT25.007-PC; ELT25.008-PC; ELT25.009-PC; ELT25.010-PC; ELT25.011-PC; ELT25.012-PC; ELT25.013-PC; ELT25.014-PC; ELT25.015-PC; ELT25.016-PC; ELT26; ELT26.001-PC; ELT27; ELT27.004-PC; ELT33; ELT33.002-PC; ELT33.004-PC; ELT33.005-PC; ELT33.006-PC; ELT33.007-PC; ELT33.010-PC; ELT33.012-PC; ELT33.014-PC; ELT33.015-PC; ELT33.017-PC; ELT33.018-PC; ELT33.019-PC; ELT33.022-PC; ELT37; ELT37.004-PC; ELT39; ELT39.075-PC; ELT39.077-PC; ELT42; ELT42.004-PC; ELT42.005-PC; ELT42.007-PC; ELT42.008-PC; ELT42.009-PC; ELT42.010-PC; ELT42.011-PC; ELT42.012-PC; ELT43; ELT43.003-PC; ELT43.005-PC; ELT45; ELT45.029-PC; ELT45.063-PC; ELT45.064-PC; ELT49; ELT49.006-PC; ELT49.007-PC; ELT49.019-PC; ELT49.033-PC; ELT49.051-PC; ELT50; ELT50.009-PC; ELT50.011-PC; ELT50.013-PC; ELT50.017-PC; Eltanin; Event label; Filchner Trough; GC; Giant box corer; Giant gravity corer AWI; GKG; Glacier; Gravity corer; Gravity corer (Kiel type); GSL; Halley Bay; Indian Ocean; IO0775; IO0775.046-PC; IO0775.047-PC; IO0775.048-PC; IO0775.050-PC; IO0775.051-PC; IO0775.052-PC; IO0775.053-PC; IO0775.054-PC; IO0775.055-PC; IO0775.057-PC; IO1176; IO1176.055-PC; IO1176.079-PC; IO1277; IO1277.010-PC; IO1578; IO1578.002-PC; IO1578.004-PC; IO1578.049-PC; IO1678; IO1678.018-PC; IO1678.019-PC; IO1678.020-PC; IO1678.021-PC; IO1678.022-PC; IO1678.023-PC; IO1678.024-PC; IO1678.025-PC; IO1678.026-PC; IO1678.027-PC; IO1678.028-PC; IO1678.029-PC; IO1678.030-TC; IO1678.032-PC; IO1678.033-PC; IO1678.034-PC; IO1678.035-PC; IO1678.036-PC; IO1678.096-PC; Islas Orcadas; Joides Resolution; Kapp Norvegia; KR87-02; KR87-07; KR88-08; KR88-10; KR88-15; KR88-24; Latitude of event; Lazarev Sea; Leg119; Longitude of event; Lyddan Island; Marion Dufresne (1972); Maud Rise; MD10; MD38; MD76-118; MD82-424; MD82-434; MD84-527; MD84-551; MD87-715; MD88-014; MD88-769; MD88-770; MD88-773; Melville; MUC; MultiCorer; Nathaniel B. Palmer; NBP9604; NBP9604-02-2; NBP9604-03-2; NBP9604-07-1; NBP9802; NBP9802-01-4; NBP9802-02-5; NBP9802-03-9; NBP9802-04-2; NBP9802-05-12; NBP9802-05-3; NBP9802-06-3; NBP9802-07-4; NBP9802-08-1; NBP9802-09-10; NBP9802-09-2; NBP9802-10-5; NZ-80-G-10; NZ-80-G-11; NZ-80-G-12; NZ-80-G-13; NZ-80-G-6; NZ-80-G-7; Opal, biogenic silica; OPR-476156; OPR-476184; OPR-476208; OSIRIS II; PC; Piston corer; Polarstern; PS08; PS08/347; PS08/365; PS08/366; PS10; PS10/672; PS10/675; PS10/678; PS10/699; PS10/701; PS10/711; PS10/719; PS10/725; PS10/738; PS10/784; PS10/816; PS10/818; PS10/820; PS10/824; PS12; PS12/248; PS12/289; PS12/300; PS12/302; PS12/305; PS12/310; PS12/312; PS12/319; PS12/336; PS12/338; PS12/340; PS12/344; PS12/352; PS12/366; PS12/368; PS12/374; PS12/380; PS12/382; PS12/458; PS12/465; PS12/486; PS12/490; PS12/536; PS1375-3; PS1387-3; PS1388-3; PS1472-3; PS1474-3; PS1475-2; PS1483-3; PS1484-3; PS1487-1; PS1488-3; PS1489-3; PS1490-3; PS1500-2; PS1506-1; PS1507-3; PS1508-1; PS1509-2; PS1575-1; PS1587-1; PS1590-2; PS1591-1; PS1593-3; PS1595-1; PS1596-3; PS1599-3; PS16; PS16/534; PS1605-1; PS1606-3; PS1607-3; PS1609-3; PS1613-1; PS1619-3; PS1620-1; PS1622-3; PS1625-3; PS1626-2; PS1635-3; PS1636-1; PS1638-3; PS1639-3; PS1648-1; PS18; PS18/185; PS1821-6; PS2038-2; R05-32; RC08; RC08-78; RC08-79; RC08-80; RC08-81; RC08-82; RC08-83; RC08-85; RC08-87; RC08-89; RC08-91; RC08-93; RC09; RC09-109; RC09-110; RC09-111; RC09-112; RC09-113; RC09-114; RC09-115; RC09-117; RC09-118; RC09-121; RC09-150; RC10; RC10-117; RC11; RC11-116; RC11-117; RC1112; RC11-123; RC11-124; RC11-125; RC11-126; RC11-134; RC11-139; RC11-76; RC11-77; RC11-78; RC11-83; RC11-86; RC11-94; RC11-97; RC12; RC12-100; RC12-101; RC12-103; RC12-206; RC12-210; RC12-213; RC12-214; RC12-215; RC12-217; RC12-218; RC12-219; RC12-220; RC12-221; RC12-223; RC12-224; RC12-225; RC12-227; RC12-228; RC12-230; RC12-231; RC12-232; RC12-267; RC12-305; RC13; RC13-254; RC13-255; RC13-256; RC13-259; RC13-261; RC13-263; RC13-269; RC13-271; RC13-41; RC13-42; RC13-43; RC13-45TW; RC14; RC14-7; RC15; RC15-30; RC15-31; RC15-37; RC15-40; RC15-65; RC15-94; RC17; RC17-54; RC17-61; Robert Conrad; Ross Sea; S68PC16; S68PC22; Sample code/label; Silicon Cycling in the World Ocean; SINOPS; SL; SO36/2; SO36/2_61SL; Sonne; South Atlantic; South Atlantic Ocean; Southern East Pacific Rise; Southern Ocean; South Indian Ocean; South Orkney; South Pacific; South Pacific Ocean; South Tasman Rise; Tasman Sea; Thomas Washington; V16; V16-127; V16-129; V16-131; V16-133; V16-134; V16-81; V16-82; V16-87; V16-91; V16-96; V18; V18-188; V18-189; V18-192; V18-68; V19; V19-80; V19-87; V19-88; V20; V20-200; V21; V21-52; V21-53; V21-54; V21-55; V21-56; V21-57; V22; V22-108; V24; V24-206; V29; V29-104; V29-105; van Veen Grab; Vema; VGRAB; Weddell Sea; Wegener Canyon
    Type: Dataset
    Format: text/tab-separated-values, 990 data points
    Location Call Number Expected Availability
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  • 52
    Publication Date: 2024-05-14
    Keywords: 06MT15_2; 109-1; 114-1; 117-1; 120-1; 121-1; 125SGC; 358Bx; 361Cx; 361Fx; 361Jx; 362Co; 362Eo; 363Cx; 363Fx; 366Bo; 367Hx; 368Bx; 369Bo; 369Hx; 370Cx; 372Kx; 374Ao; 374Co; 375Bo; 375Fo; 379Bo; 379Bx; 385Bx; 387Eo; 388Dx; 389Bo; 389Bx; 389Fo; 390Fx; 390Jx; 390Mx; 391Ao; 391Do; 49-08; 49-13; 49-14; 49-15; 49-18; 49-20; 49-39; 49-43; 52-04; 52-09; 52-14; 52-24; 52-28; 52-33; 52-37; 52-38; 52-43; 57-04; 57-06; 57-07; 57-08; 57-09; 57-10; 57-11; 57-12; 57-13; 57-14; 57-20; 58-08; 70-1; 70KS06; 71-15; 71-17; 71-19; 76-2; 80KB11; 80KB28; 82KS01; 83-101; 83-104; 83-106; 83-109; 83-110; 83-201; 83-202; 83-203; 83-204; 83-205; A150/180; A15-558; A172-6; A181/185; A181-7; A1A2; A1A5; A1A6; AC85-4; Adriatic Sea; Aegean Sea; Agulhas Basin; Agulhas Ridge; AHF-11343; AHF-16830; AHF-16832; AHF-28181; Akademik A. Vinogradov; Alpha Ridge, Arctic Ocean; Amazon Fan; Amerasian Basin; AMPH01AR; AMPH-022G; AMPH-030PG; AMPHITRITE; Amundsen Basin; Angola Basin; Antarctic Ocean; ANTIPROD; ANT-IV/1c; ANT-IV/3; ANT-IX/4; ANT-V/4; ANT-VI/3; ANT-VIII/3; ANT-X/4; ANT-X/5; ANT-X/6; ANT-XI/2; ANT-XI/4; APNAP1; APNAP11; APNAP12; APNAP13; APNAP14; APNAP15; APNAP16; APNAP17; APNAP18; APNAP19; APNAP2; APNAP20; APNAP3; APNAP4; APNAP5; APNAP6; APNAP7; APNAP9; APSARA1; APSARA2; APSARA3; APSARA4; Arabian Sea; Arctic Ocean; Argo; ARK-I/3; ARK-II/4; ARK-II/5; ARK-III/3; ARK-IV/3; ARK-IX/4; ARK-VI/2; ARK-VII/1; ARK-VIII/2; ARK-VIII/3; AT_II-107_22; AT_II-15_585; AT_II-15_586; AT_II-15_591; AT_II-15_592; AT_II-15_596; AT_II-15_597; AT_II-15_612; ATII_USA; Atka Bay; Atlantic Indik Ridge; Atlantic Ocean; Atlantic Ridge; Atlantis II (1963); AVI19-4; B_LANDER; B1A6; B34-91; Baffin Shelf; Balear Sea; Barents Sea; BC; BC42-11; BC43-15; BC44-12; BC5-5; BC79-8; BCR; BF043-003; BIOMASSE; Biscaya; BlakeP; Bottle, Niskin; Bottom lander; Bounty Trough, Southwest Pacific; Box corer; Box corer (Reineck); Brazil Basin; BWL2; C1; Cape Basin; Cape Blanc; CEPAG; CESAR; CESAR_83-101; CESAR_83-104; CESAR_83-106; CESAR_83-109; CESAR_83-110; CESAR_83-201; CESAR_83-202; CESAR_83-203; CESAR_83-204; CESAR_83-205; CH182-36; CH70-K11; CH72-101; CH73-108; CH73-110; CH73-136; CH73-139; CH73-139C; CH73-141; CH73-145; CH73-147; CH7X; CH88-11P; CHAT 10K; CHIPAL; CHN115-26PG; CHN115-27PG; CHN115-36PG; CHN155-36PG; CLIVAMPcruises; CONDOR-Ia; Continental slope off Brazil; Continental Slope off Rio Paraiba do Sul; CS70-5; CS72-37; CTD/Rosette; CTD-RO; D.St.A.2; D206; D84; DAL7-60; DED87-07; DEDALE87; DEPTH, sediment/rock; Discovery Seamount; DODO; DODO-124D; DODO-197; DODO-200V; DODO-201G; DODO-204; DW137; DWBG-137; DWHG84; DWHG-84; DWHG-85; East Atlantic; East Brazil Basin; Eastern Rio Grande Rise; eastern Romanche Fracture Zone; Ecor1Ki05; Ecor1Ki15; Ecor2Ki25; Ecor2Ki35; Ecor4Ki50; Elevation of event; ELT16; ELT16.009-PC; ELT20; ELT20.018-PC; ELT21; ELT21.011-PC; ELT34; ELT34.001-PC; ELT36; ELT36.039-PC; ELT36.040-PC; ELT36.041-PC; ELT36.042-PC; ELT45; ELT45.027-PC; ELT45.070-PC; ELT45.073-PC; ELT45.077-PC; ELT48; ELT48.011-PC; ELT48.022-PC; ELT48.027-PC; ELT50; ELT50.033-PC; Eltanin; EN06601; EN066-10GGC; EN32-PC4; EN32-PC6; Endeavor; ENXX; Equatorial Atlantic; ERDC; ERDC-079BX; ERDC-088BX; ERDC-092BX; ERDC-102BX; ERDC-108BX; ERDC-112BX; ERDC-123BX; ERDC-125BX; ERDC-129BX; ERDC-135BX; ERDC-136BX; ERDC-139BX; ETNA80; ETNA82; Event label; F104; F111; F137; F149; FAEGAS_IV; FBG; FGGE-Equator 79 - First GARP Global Experiment; Filchner Trough; FL-523; Fram-I; FramI/4; FramI/7; FramII/1; FramII/3; FramII/4; FramII/5; FramIII/1; FramIII/2; FramIII/3; FramIII/7; FramIII/8; FramIV/1; FramIV/7; FramIV/9; Fram Strait; G-1290; Gakkel Ridge, Arctic Ocean; GC; GC11; GC36; GC5; GeoB1000-1; GeoB1001-1; GeoB1005-2; GeoB1006-2; GeoB1007-2; GeoB1011-2; GeoB1013-2; GeoB1014-2; GeoB1015-2; GeoB1016-2; GeoB1017-3; GeoB1019-2; GeoB1020-1; GeoB1027-2; GeoB1027-3; GeoB1028-4; GeoB1028-5; GeoB1029-1; GeoB1029-3; GeoB1030-3; GeoB1031-1; GeoB1031-3; GeoB1032-2; GeoB1032-3; GeoB1033-1; GeoB1033-2; GeoB1034-1; GeoB1034-3; GeoB1035-3; GeoB1035-5; GeoB1039-1; GeoB1040-3; GeoB1041-1; GeoB1041-4; GeoB1046-2; GeoB1047-1; GeoB1048-1; GeoB1048-2; GeoB1101-4; GeoB1101-6; GeoB1103-3; GeoB1103-4; GeoB1104-4; GeoB1104-5; GeoB1105-3; GeoB1106-5; GeoB1108-6; GeoB1108-7; GeoB1109-3; GeoB1109-4; GeoB1110-3; GeoB1110-4; GeoB1111-3; GeoB1111-5; GeoB1112-3; GeoB1113-4; GeoB1113-7; GeoB1114-3; GeoB1114-4; GeoB1115-3; GeoB1115-4; GeoB1116-1; GeoB1116-2; GeoB1117-2; GeoB1117-3; GeoB1121-1; GeoB1203-2; GeoB1203-3; GeoB1204-3; GeoB1204-4; GeoB1207-2; GeoB1207-3; GeoB1208-1; GeoB1208-2; GeoB1209-1; GeoB1209-2; GeoB1210-2; GeoB1211-3; GeoB1216-1; GeoB1216-2; GeoB1217-1; GeoB1217-2; GeoB1218-1; GeoB1220-1; GeoB1220-2; GeoB1308-1; GeoB1309-3; GeoB1310-1; GeoB1311-2; GeoB1312-1; GeoB1313-1; GeoB1315-2; GeoB1401-1; GeoB1402-7; GeoB1403-2; GeoB1403-3; GeoB1404-8; GeoB1407-8; GeoB1413-1; GeoB1414-1; GeoB1414-2; GeoB1415-1; GeoB1417-1; GeoB1418-1; GeoB1419-1; GeoB1419-2; GeoB1420-1; GeoB1501-1; GeoB1503-2; GeoB1504-1; GeoB1505-3; GeoB1506-1; GeoB1508-1; GeoB1511-6; GeoB1512-1; GeoB1513-2; GeoB1514-5; GeoB1515-2; GeoB1516-1; GeoB1522-1; GeoB1523-2; GeoB1613-2; GeoB1701-2; GeoB1701-4; GeoB1702-7; GeoB1709-3; GeoB1715-1; GeoB1716-3; GeoB1719-7; GeoB1720-2; GeoB1721-4; GeoB1721-7; GeoB1722-3; GeoB1726-1; GeoB1728-1; GeoB1728-3; GeoB1729-1; GeoB1901-2; GeoB1903-3; GeoB1904-3; GeoB1907-2; GeoB2102-1; GeoB2104-1; GeoB2105-3; GeoB2106-1; GeoB2107-5; GeoB2109-3; GeoB2111-2; GeoB2112-1; GeoB2118-1; GeoB2118-3; GeoB2119-1; GeoB2119-2; GeoB2124-1; GeoB2124-3; GeoB2125-1; GeoB2125-2; GeoB2126-1; GeoB2126-3; GeoB2130-1; GeoB2130-3; GeoB2201-1; GeoB2202-5; GeoB2204-1; GeoB2205-4; GeoB2206-1; GeoB2207-2; GeoB2208-1; GeoB2213-1; GeoB2215-8; GeoB2216-2; GeoB3103-1; GeoB3108-4; GeoB3116-1; GeoB3117-3; GeoB3118-1; GeoB3119-1; GeoB3127-1; GeoB3137-1; GeoB3138-2; GeoB3149-2; GeoB3150-1; GeoB3151-2; GeoB3167-1; GeoB3168-1; GeoB3174-1; GeoB3201-2; GeoB3202-2; GeoB3203-3; GeoB3205-1; GeoB3206-2; GeoB3207-2; GeoB3208-2; GeoB3209-2; GeoB3211-1; GeoB3217-1; GeoB3218-1; GeoB3219-1; GeoB3220-2; GeoB3221-1; GeoB3227-1; GeoB3228-2; GeoB3229-1; GeoB3230-4; GeoB3231-2; GeoB3232-3; GeoB3301-2; GeoB3302-2; GeoB3303-1; GeoB3304-3; GeoB3305-2; GeoB3308-3; GeoB3312-2; GeoB3313-3; GeoB3314-2; GeoB3316-1; GeoB3317-6; GeoB3318-2; GeoB3323-6; GeoB3326-1; GeoB3327-6; GeoB3328-1; GeoB3331-1; GeoB3339-2; GeoB3349-4; GeoB3352-1; GeoB3353-1; GeoB3354-1; GeoB3355-4; GeoB3357-1; GeoB3359-1; GeoB3365-1; GeoB3368-4; GeoB3371-1; GeoB3372-4; GeoB3373-1; GeoB3374-1; GeoB3375-2; GeoB3376-2; GeoB3377-1; GeoB3378-2; GeoB3383-1; GeoB3387-3; GeoB3388-2; GeoB3827-2; GEOTROPEX 83, NOAMP I; GGC; GGC-15; GGC-15-2; Giant box corer; Giant gravity corer; GIK12301-5; GIK12302-3; GIK12303-3; GIK12304-3; GIK12305-2; GIK12306-2; GIK12307-3; GIK12308-2; GIK12309-1; GIK12309-2; GIK12310-1; GIK12310-4; GIK12313-2; GIK12314-2; GIK12315-2; GIK12316-1; GIK12317-1; GIK12322-2; GIK12323-1; GIK12324-1; GIK12325-4; GIK12326-2; GIK12327-2; GIK12327-5; GIK12328-1; GIK12328-5; GIK12328-6; GIK12337-5; GIK12338-1; GIK12339-2; GIK12340-3; GIK12341-2; GIK12342-1; GIK12343-1; GIK12344-2; GIK12345-3; GIK12345-5; GIK12346-1; GIK12347-1; GIK12379-1; GIK12392-1; GIK13123-1; GIK13124-1; GIK13131-1; GIK13138-1; GIK13140-3; GIK13147-1; GIK13150-1; GIK13220-1; GIK13221-1; GIK13222-1; GIK13223-3; GIK13224-2; GIK13225-2; GIK13230-1; GIK13231-1; GIK13232-1; GIK13233-1; GIK13234-1; GIK13235-2; GIK13236-1; GIK13237-1; GIK13238-1; GIK13273-1; GIK13275-1; GIK13279-3; GIK13280-1; GIK13282-1; GIK13283-2; GIK13289-1; GIK13289-3; GIK13290-1; GIK13291-1; GIK13329-2; GIK13526-4; GIK13527-1; GIK13528-2; GIK13529-1; GIK13530-1; GIK13532-2; GIK13533-1; GIK13534-1; GIK13536-2; GIK13557-1; GIK13583-1; GIK13584-2; GIK13585-1; GIK13586-1; GIK13587-1; GIK13588-2; GIK15626-1; GIK15627-2; GIK15628-4; GIK15629-1; GIK15630-1; GIK15631-1; GIK15632-1; GIK15634-1; GIK15635-2; GIK15637-1; GIK15638-2; GIK15639-1; GIK15640-1; GIK15641-2; GIK15642-1; GIK15643-1; GIK15644-1; GIK15645-1; GIK15646-1; GIK15647-1;
    Type: Dataset
    Format: text/tab-separated-values, 6915 data points
    Location Call Number Expected Availability
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  • 53
    facet.materialart.
    Unknown
    Selbstverlag Fachbereich Geowissenschaften, FU Berlin
    In:  Herausgeberexemplar
    Publication Date: 2024-05-03
    Description: Mit dem Ziel, die geodynamischen Modelle durch die Ermittlung der Dichteverteilung im tieferen Untergrund zu überprüfen und schließlich ein optimales Modell in Bezug auf die Herkunft der sächsischen Granulite vorzustellen, wird das Schwerefeld im Bereich Sachsens mit folgenden gravimetrischen Methoden analysiert und modelliert: • Numerische Analyse des Schwerefeldes mit Hilfe von Tiefenabschätzungen, Horizontalabieitungen der Schwere, Euler-Dekonvolution, Wellenlängenfilterungen sowie • zwei- und dreidimensionale Dichtemodellierungen. Die eingesetzten Verfahren zur Dichtemodellierung zeigen, daß direkte Verfahren zur Analyse des Schwerefeldes bei den komplizierten geologischen Strukturen den indirekten Auswerteverfahren mittels Dichtemodellierung unterlegen sind. Sie geben aber wichtige Hinweise für die dreidimensionale geometrische Modellierung. Die Resultate aus den unterschiedlichen numerischen Analyse des Schwerefeldes lassen folgende Interpretation zu. Die Erkenntnisse sind Grundlage für die gravimetrischen Vorwärtsmodellierung. • Das Schwerehoch im Bereich der Lausitzer Antiklinalzone wird von zwei Störkörpem verursacht. Ein Störkörper, der eine geringere Tiefe (ca. 2-4 km) hat, verursacht hauptsächlich das Schwerehoch im NW-Gebiet der Antiklinalzone. Ein anderer Störkörper, der von der Unterkruste bis zu einer Tiefe von ca. 8 km eingedrungen ist, verursacht die Hauptwirkung des Schwerehoches. Die Antiklinalzone wird durch rhenoherzynische Streichrichtungen (NW-Richtung) charakterisiert. • Die maximale Tiefe des Störkörpers für das Schwereminimum im Erzgebirge liegt zwischen 2 km und 10 km in der Oberkruste. • Im Bereich der NW-Grenze des Sächsischen Granulitgebirge zeigen sich die für das Moldanubikum typischen Streichrichtungen (SO-Richtung). • Durch Wellenlängen-Filterungen wurde die Wirkung der basischen Vulkanite im Eger-Rift separiert. Es wird gezeigt, daß diese Vulkanite von der Unterkruste bis in oberflächenahe Bereiche intrudiert sind. • Im Zwischengebirge und im SW-Gebiet des Eibenstock-Granitgebietes befindet sich Unterkrustmaterial in einer maximalen Tiefe von ca. 8 km. • Das Schwerehoch in der MGM wird von einem Störkörper verursacht, dessen maximale Tiefe auf ca. 6 km geschätzt wird. Die Verbindung und Interpretation aller verfügbaren Randbedingungen aus der Reflexions-, Refraktionsseismik, den geophysikalischen Untersuchungen und den magnetotelluri sehen Messungen sowie dem geothermischen Modell führt zum komplexen dreidimensionalen Dichtemodell Sachsens. Das Modell erfaßt die aus der Analyse abgeleiteten Störmassen in der Oberkruste durch die Verwendung der zur Verfügung stehenden Bouguer-Anomalie (Conrad, 1996) und berücksichtigt markante Strukturen, die aus den reflexionsseismischen Untersuchungen abgeleitet wurden. Zusammen mit den Informationen aus der oberflächenahen Geologie konnten alle wesentlichen, bekannten Strukturen zwischen der topographischen Oberfläche und der Moho in die Modellierung integriert werden. Die Ergebnisse der 3D-Modellierung lassen sich wie folgt zusammenfassen: • Das Sächsische Granulitgebirge (SGG) stellt die aus Pyroxen-Granuliten bestehende domartige Struktur dar, die, entsprechend der geothermischen Interpretation, mit der in 15 km Tiefe liegenden Schicht im Erzgebirge in Verbindung gebracht werden kann. Die vom SGG bis zum Erzgebirge durchgehende Granulit-Schicht zeigt, daß das SGG aus der SW-Gebiet (aus dem Tepla-Barrandium) transportiert sein könnte. • Die Oberkruste im Bereich des Erzgebirges ist charakterisiert durch eine Gneis-Schicht mit einer Mächtigkeit von 15 km, worin die Granite intrudiert wurden. Die durchschnittliche Mächtigkeit der Granite beträgt 5 km. • Nach dem Vergleich mit dem MT- Widerstandsmodell wurde eine zweigeteilte Unterkruste angenommen. Ein Teil wurde vom Rhenoherzynikum transportiert und taucht im Sächsischen Granulitgebirge ab. Die andere Unterkruste wurde vom Tepla-Barrandium her eingelagert und auf das Zwischengebirge aufgeschoben. Zur Berechnung der Schwerewirkungen der einzelnen Modellkörper wird eine Methode des “gravity striping” in dieser Arbeit verwendet. Das Ergebnis dieser Methode zeigt, daß die ins Erzgebirge intrudierten Granite das Schwereminimum im Erzgebirge verursachen. Der gemessene Schwerelauf wird durch die gemeinsame Schwerewirkung der Granite und der Pyroxen-Granulite in der Oberkruste erklärt. Die gravimetrischen Überprüfungen über alternative Modelle sprechen gegen ein tektonisches Aufdringen der Granulite aus großen Tiefen (Diapir-Uplift) und gegen die Herkunft der Granulite aus dem Rhenoherzynikum. Die Untersuchungsergebnisse dieser Arbeit erhärten das “Zahnpasta-Modell” (Granulitkomplex aus dem Tepla-Barrandium). Entsprechende Modellexperimente, unter zugrundelegen einer entsprechenden Geometrie, ergaben eine gute Modell-Schwere-Anpassung an das beobachtete Feld.
    Description: I analyse the gravity field in the region of Saxony with the aim of testing geodynamic models by determining the density distribution at deeper levels and presenting an optimal model relating to the origin of saxonian granulites. The data are are modelled with the following gravimetric methods: • Numerical analysis of the gravity field with the help of depth estimations, horizontal gradient of gravity field, Euler-Deconvolution, wavelength filtering, and • two- and three-dimensional density modelling The process of density modelling which was used shows that direct methods of numerical analysis (e.g. wavelength filtering) are not successful in resolving the complex geological structures, in contrast to indirect density modelling. But the results of direct methods do provide important information for three-dimensional geometrical modelling. The results of the different numerical analyses of the gravity field can be interpreted in different ways. This knowledge is the basis for density modelling. • The gravity high in the area of the Lausatian anticlinal zone is caused by two dense bodies. One body, at a shallow depth (approx. 2-4 km) is the main cause of the gravity high in the NW area of the anticlinal zone. Another body, which has penetrated from the lower crust to a depth of approx. 8 km, is the major contributor to the gravity high. The anticlinal zone is characterised by rhenohercynian gradient-directions (in a NW direction). • The maximum depth of the density body for the gravity low in the Erzgebirge lies at between 2 km and 10 km, in the upper crust. • In the area of the NW edge the Saxonian Granulitgebirge, gradient-directions (in a SE direction) are evident, which are typical for the Moldanubian. • The effect of the basic vulcanites in the Eger Rift is separated by wavelength filtering. It is demonstrated that these vulcanites have intruded from the lower crust into surface areas. • In the Zwischengebirge and in the SW region of the Eibenstock-Grannitgebiet, lower crustal material is present to a depth of approx. 8 km. • The gravity high in the Munchberg Gneiss Massif (MGM) is caused by a body, with an estimated maximum depth of approx. 6 km. The combination and logical interpretation of all available constraints from reflectionseismics, refractionseismics, geological investigations and magnetotelluric research as well as a geothermal model yields a complex three-dimensional density model for Saxony. The model includes the bodies in the upper crust derived from analysis using the available Bouguer Anomaly (Conrad, 1996) and takes into account distinctive structures derived from reflectionseismological investigations. Together with information from the geology near the surface all important known structures between the topographic surface and the moho could be integrated into the model. The results of the 3D-modelling can be summarised as follows: • The Saxonian Granulitgebirge (SGG) is a dome-like structure consisting of pyroxene granulites which, consistent with geothermal interpretation, can be connected with the layer in the Erzgebirge which is at a depth of 15 km. The granulite layer, stretching from the SGG to the Erzgebirge shows that the SGG could have been transported from the SW region (the Tepla-Barrandium). • The upper crust in the Erzgebirge region is characterised by a gneiss layer with a thickness of about 15 km in which the granites were intruded. The average thickness of the granites is 5 km. • After comparison with the MT-model, an lower crust divided into two parts was assumed. One part was transported by the Rhenohercynian and disappears in the Saxonian Granulitgebirge. The other lower crust was originated from the Tepla-Barrandian and propelled to the Zwischengebirge. To calculate the gravity effects of individual modelbodies, I used a method of gravity stripping. This method shows that the granites which intruded into the Erzgebirge are causing the gravity minimum in the Erzgebirge. The observed gravity is explained by the combined gravity effect of the granites and the pyroxene granulites in the upper crust. Gravimetric testing of other models contradicts a tectonic uplift of the granulites from great depth (Diapir Uplift) and granulites originating from the Rhenohercynian. The results of this investigation support the toothpaste model (granulites complex from the Tepla-Barrandium). Corresponding model experiment with a revelent geometry, resulted in a good model-gravity fitting of the observed field.
    Description: thesis
    Description: DFG, SUB Göttingen
    Keywords: ddc:550 ; Gravimetrie ; Dichteverteilung
    Language: German
    Type: doc-type:book
    Format: 126
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  • 54
    facet.materialart.
    Unknown
    Selbstverlag Fachbereich Geowissenschaften, FU Berlin
    In:  Herausgeberexemplar
    Publication Date: 2024-05-03
    Description: Die mit der Drehwaage gemessenen Ableitungen des Schwerepotentials, insbesondere der Horizontalgradient und die Krümmungsgröße, begründeten ganz wesentlich den kommerziellen Erfolg der Geophysik bei der Suche nach Kohlenwasserstoffen. Die Bedeutung der Drehwaage - und damit die Weiterentwicklung der Auswertemethodik - nahm jedoch mit der weiten Verbreitung von Gravimetern seit etwa 1950 immer mehr ab. Die vorliegende Arbeit befaßt sich mit der Frage, mit welchen Methoden die Berechnung von Schwerewerten aus Drehwaagemessungen am besten gelingt und verfolgt den Ansatz, eine Synthese aus klassischen Verfahren mit computergestützten numerischen Methoden herzustellen. Bei Lösung dieser Aufgabe dienen die Horizontalgradienten Wxz und Wyz als Eingangsparameter, während die Krümmungsgrößen Wxy und Wyy-xx keine Verwendung finden. Die verschiedenen Methoden werden dazu zunächst an einem synthetischen Modell und später mit Drehwaagedaten von BEB Erdgas und Erdöl GmbH (Hannover) getestet. Dazu sind insgesamt 39 Meßtischblätter im Gebiet Soltau bzw. Wathlingen (Norddeutschland) mit 35000 Drehwaagemessungen digitalisiert worden. Das Verfahren von Haalck liefert trotz seines simplifizierten Ansatzes eine recht gute Übereinstimmung zwischen der aus den Gradienten berechneten Schwere und der Modellschwere (etwa 0.4 x 10-5 ms-2), reagiert jedoch sehr empfindlich auf Datenfehler, die sich in ausgeprägten Verbiegungen der Isolinien der Schwere äußern. Durch nachträgliche Glättung läßt sich jedoch eine Verbesserung erzielen. Nachteilig bei diesem Verfahren ist die Abhängigkeit des Ergebnisses von der vorher durchzuführenden Interpolation der Gradienten auf ein regelmäßiges Gitter und die methodenbedingte Mittelwertbildung zweier unabhängig voneinander berechneten Schwerefelder. Diese Nachteile lassen vermeiden, wenn die Berechnung der Schwere aus den Horizontalgradienten als Ausgleichungsproblem formuliert wird, bei dem die vorherige Interpolation der Horizontalgradienten auf ein Gitter entfallen kann und eine gewisse Filterung von Fehlern in den Daten implizit durchgeführt wird. Die hiermit erreichbaren Genauigkeiten betragen bis zu 0.1 x 10-5 ms-2 und liegen in der Größenordnung der Genauigkeit einer Schweremessung. Eine noch flexiblere Berechnungsmethode bietet die Methode der kleinsten Quadrate, bei der sowohl „Rauschen“ in den Daten als auch die gleichzeitige Berücksichtigung von Horizontalgradienten und Schwerewerten möglich wäre. Die hiermit erreichte Genauigkeit beträgt etwa 0.5 x 10-5 ms-2. Die berechneten Schwerewerte lassen einfach sich in bestehende Datensätze integrieren, um Datenlücken zu füllen bzw. die Stationsdichte zu verdichten. In einem vier Meßtischblätter umfassenden Gebiet (Salzstock Wathlingen) konnte auf diese Weise für Teilgebiete eine verbesserte, detailreichere Schwerekarte generiert werden. Eine unmittelbare Verwendung der Horizontalgradienten - ohne vorherige Umrechnung in Schwerewerte - erlaubt die Modellierung von Dichte und Geometrie eines dreidimensionalen Untergrundmodells. Das aus der Modellierung über- und untertägiger Schweremessungen entstandene Dichtemodell des Salzstocks von Wathlingen zeigt auch eine prinzipielle Übereinstimmung zwischen gemessenen und berechneten Horizontalgradienten. Geringfügige Abweichungen sind durch Vernachlässigung von Strukturen in Oberfiächennähe zu erklären. Deren Berücksichtigung und die damit verbundene Modellierung der Horizontalgradienten könnte jedoch eine Verbesserung des bestehenden Modells erbringen.
    Description: Torsion balance measurements of derivatives of gravitational potential - especially horizontal gradient and curvature - were a significant factor in the commercial success of exploration geophysics in detecting hydrocarbons. However, with the widespread use of gravimeters since about 1950, there has been a continuous decrease in the importance of the torsion balance and hence in the improvement of methods of analysis. This study aims to establish which are the best methods of determining gravity values from torsion balance measurements. Its approach is to synthesize classical procedures with computer-based numerical methods, taking horizontal gradients Wxz and Wyz as input parameters, but not using the curvature values Wxy and Wyy - xx . The various methods were first tested in a synthetic model and again using torsion balance data supplied by BEB Erdgas and Erdöl GmbH (Hanover). A total of 39 topographical maps (1:25,000) of the Soltau and Wathlingen areas (northern Germany) were digitzed with 35,000 torsion balance measurements. Despite its simplified approach, the Haalck procedure yields a good agreement between theoretical gravity and gravity calculated from gradients (about 0.4 x 10-5 ms-2 ); however it shows a highly sensitive response to data errors, expressed in pronounced deformations of the gravity contour lines. This can be improved by subsequent smoothing. The disadvantage of this procedure is that results depend on prior interpolation of the gradients to a regular grid and taking the mean of two independently calculated gravity fields. These disadvantages may be avoided by formulating the gravity calculation from the horizontal gradients as a least squares adjustment problem, leaving out the prior interpolation of the horizontal gradients to a grid and implicitly filtering errors in the data. Accuracies of 0.1 x 10-5 ms-2 may be obtained in this way and are in the order of magnitude of gravity measurement accuracy. A more flexible method of calculation is the method of least squares collocation by which both "noise” in the data and simultaneous allowance for horizontal gradients and gravity values are possible. Here the accuracy is about 0.5 x 10-5 ms-2. The computed gravity values can be readily integrated in existing datasets in order to fill data gaps or enhance station density. In the case of an area covered by four topographical maps (the Wathlingen salt dome) this method allowed us to create an improved, more detailed gravity map for specific sub-areas. The direct use of horizontal gradients - without prior conversion into gravity values - allows the modeling of density and geometry of a three-dimensional subsurface model. The density model of the Wathlingen salt dome generated by the modeling of surface and subsurface gravity measurements also shows a basic agreement between measured and computed horizontal gradients. Slight deviations are due to the disregard of near-surface structures. However, their inclusion and the simultaneous modeling of horizontal gradients could improve the existing model.
    Description: thesis
    Description: DFG, SUB Göttingen
    Keywords: ddc:550 ; Schwerefeld ; Modellierung ; Gravimetrie ; Torsionswaage ; Geophysik
    Language: German
    Type: doc-type:book
    Format: 152
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  • 55
    Publication Date: 2024-05-02
    Keywords: DEPTH, sediment/rock; Isotope ratio mass spectrometry; Lamont-Doherty Earth Observatory, Columbia University; LDEO; PC; Piston corer; Uvigerina peregrina, δ18O; V29; V29-144; Vema
    Type: Dataset
    Format: text/tab-separated-values, 20 data points
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  • 56
    Publication Date: 2024-05-02
    Keywords: A150/180; A180-73; Age, comment; Age, dated; Age, dated material; Age, error; Age model; Calculated; DEPTH, sediment/rock; Glacial Atlantic Ocean Mapping; GLAMAP2000; Lamont-Doherty Earth Observatory, Columbia University; LDEO; PC; Piston corer; Sedimentation rate; see comment
    Type: Dataset
    Format: text/tab-separated-values, 16 data points
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  • 57
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Jarrard, Richard D; Bücker, Christian J; Wilson, Terry; Paulsen, Timothy S (2001): Bedding dips from the CRP-3 drillhole, Victoria Land Basin, Antarctica. Terra Antartica, 8(3), 167-176, hdl:10013/epic.28210.d001
    Publication Date: 2024-04-29
    Description: Bedding dips in the CRP-3 drillhole were determined in three ways: (1) analysis of a dipmeter log, (2) identification of bed boundaries on borehole televiewer log images, and (3) identification of bed boundaries on digital images of the outer surfaces of oriented cores. All three methods determine both dip magnitude and downdip azimuth of bedding. Dipmeter results document variations in bedding dip throughout the logged interval (20-902 mbsf), whereas core and televiewer results are available at present only for selected depth intervals. Dipmeter data indicate that structural dip is remarkably constant, at 21° dip to azimuth 65°, throughout the Tertiary shelf section, except for the top 100 m where dips appear to be 5-10° shallower. This pattern, in conjunction with the systematically increasing dips throughout CRP-2A, suggests that the growth faulting active during CRP-2A deposition began during the final period of deposition at CRP-3. Normal faults at 260 and 539 mbsf in CRP-3 exhibit neither drag (localized dip steepening) nor significant changes in structural dip across them. Oriented core and televiewer analyses, covering a total of 200 m in the interval 400-900 mbsf, indicate bedding patterns that confirm the dipmeter results. The doleritic breccia at the base of the Tertiary section has steeper dips than overlying structural dips, possibly indicating a sedimentary dip to ENE in these fan sediments. Dip directions in the underlying Devonian Beacon sandstone are surprisingly similar to those in the overlying Tertiary section. Superimposed on the average Beacon dip of 22° to the ENE are localized tilts of up to 20°, probably caused by Tertiary fracturing and brecciation rather than original sedimentary dip variations.
    Keywords: Cape Roberts Project; Core wireline system; CRP; CRP-3; CWS; Ross Sea; Sampling/drilling from ice
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 58
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Jarrard, Richard D; Paulsen, Timothy S; Wilson, Terry (2001): Orientation of CRP-3 core, Victoria Land Basin, Antarctica. Terra Antartica, 8(3), 161-166, hdl:10013/epic.28211.d001
    Publication Date: 2024-04-29
    Description: CRP-3 cores were not orientated with respect to North during coring operations. However, borehole televiewer (BHTV) logging did obtain azimuthally orientated images of the borehole wall, and core processing included digital imaging of the outer surface of 85% of the cores. Images of many individual core segments can be digitally joined, or stitched, by rotating them to match the shapes of their adjoining surfaces and then closing the gap. By aligning features (fractures, bedding, and clasts) on stitched-core images with correlative features on orientated BHTV images, we reorientated 231 m of core, or 25% of the cored interval. We estimate that the orientation uncertainty is ±10° for entire stitched-core intervals, and ±15° for individual features such as a single fracture or palaeomagnetic sample. Reliability of core orientations was confirmed by comparing azimuths of bedding and fractures measured directly within these reorientated cores to those measured within orientated borehole televiewer images.
    Keywords: Angle; Cape Roberts Project; Confidence; Core wireline system; CRP; CRP-3; CWS; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Number of observations; Ross Sea; Sampling/drilling from ice; Standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 132 data points
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  • 59
    Publication Date: 2024-04-29
    Keywords: -; Azimuth; Bed dip; Calculated; Cape Roberts Project; Compass; Confidence; Core wireline system; CRP; CRP-3; CWS; Depth, bottom/max; Depth, top/min; Lithology/composition/facies; Precision; Ross Sea; Sampling/drilling from ice; Student_s t
    Type: Dataset
    Format: text/tab-separated-values, 250 data points
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  • 60
    Publication Date: 2024-04-29
    Keywords: -; Azimuth; Bed dip; Calculated; Cape Roberts Project; Compass; Confidence; Core wireline system; CRP; CRP-3; CWS; Depth, bottom/max; Depth, top/min; Lithology/composition/facies; Precision; Ross Sea; Sampling/drilling from ice; Student_s t
    Type: Dataset
    Format: text/tab-separated-values, 682 data points
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  • 61
    Publication Date: 2024-04-29
    Keywords: -; Azimuth; Bed dip; Calculated; Cape Roberts Project; Compass; Confidence; Core wireline system; CRP; CRP-3; CWS; Depth, bottom/max; Depth, top/min; Lithology/composition/facies; Precision; Ross Sea; Sampling/drilling from ice; Student_s t
    Type: Dataset
    Format: text/tab-separated-values, 251 data points
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  • 62
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Vogelsang, Elke; Sarnthein, Michael; Pflaumann, Uwe (2001): d18O Stratigraphy, chronology, and sea surface temperatures of Atlantic sediment records (GLAMAP-2000 Kiel). Berichte-Reports, Institut für Geowissenschaften, Universität Kiel, 13, 13+244 pp., https://doi.org/10.2312/reports-ifg.2001.13
    Publication Date: 2024-04-27
    Description: A uniform chronology for foraminifera-based sea surface temperature records has been established in more than 120 sediment cores obtained from the equatorial and eastern Atlantic up to the Arctic Ocean. The chronostratigraphy of the last 30,000 years is mainly based on published d18O records and 14C ages from accelerator mass spectrometry, converted into calendar-year ages. The high-precision age control provides the database necessary for the uniform reconstruction of the climate interval of the Last Glacial Maximum within the GLAMAP-2000 project.
    Keywords: 200228; 41; A150/180; A180-73; Antarctic Ocean; ANT-IV/1c; Arctic Ocean; ARK-II/4; ARK-IV/3; ARK-IX/4; ARK-V/3b; ARK-VII/3b; ARK-VIII/2; ARK-X/2; ARK-XIII/2; ARK-XIII/3; Atlantic Ocean; Barents Sea; BCR; Bear Island Fan; Biscaya; BOFS11882#4; BOFS11886#2; BOFS11896#1; BOFS11902#1; BOFS11905#1; BOFS14K; BOFS16K; BOFS17K; BOFS31/1K; BOFS31#1; BOFS5K; BOFS8K; Box corer (Reineck); CALYPSO; Calypso Corer; CD53; CD84; CD84_2K; CEPAG; CH8X; Charles Darwin; CHN82-24; D184; Denmark Strait; Discovery (1962); East Atlantic; eastern Romanche Fracture Zone; Equatorial Atlantic; FGGE-Equator 79 - First GARP Global Experiment; Fram Strait; GC; GEOFAR; GEOTROPEX 83, NOAMP I; Giant box corer; GIK1171-1; GIK12309-2; GIK12310-3; GIK12310-4; GIK12328-4; GIK12328-5; GIK12329-4; GIK12329-6; GIK12337-4; GIK12337-5; GIK12345-4; GIK12345-5; GIK12347-1; GIK12347-2; GIK12379-1; GIK12379-3; GIK12392-1; GIK13289-1; GIK13289-2; GIK13289-3; GIK13291-1; GIK13519-1; GIK13521-1; GIK15612-2; GIK15627-3; GIK15637-1; GIK15669-1; GIK16017-2; GIK16396-1; GIK16397-2; GIK16415-1; GIK16415-2; GIK16457-1; GIK16457-2; GIK16458-1; GIK16458-2; GIK16772-1; GIK16772-2; GIK16776-1; GIK16776-2; GIK16867-2; GIK17045-2; GIK17045-3; GIK17049-6; GIK17050-1; GIK17050-2; GIK17051-3; GIK17724-2; GIK17725-1; GIK17725-2; GIK17730-4; GIK21533-3 PS11/412; GIK21730-2 PS13/224; GIK23056-2; GIK23065-2; GIK23071-2; GIK23071-3; GIK23071-5; GIK23074-1; GIK23074-3; GIK23230-1 PS05/416; GIK23262-3; GIK23294-4; GIK23351-1; GIK23354-6; GIK23415-9; GIK23419-8; GIK23519-5; GKG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer; Gravity corer (Kiel type); Greenland Sea; Greenland Slope; HU87-033-008; HU90-13-013; HU91-045-090; HUD90/13; Hudson; IMAGES; IMAGES I; International Marine Global Change Study; Jean Charcot; KAL; KAL15; KAL20; Kasten corer; Kasten corer 15 cm; Kasten corer 20 cm; KF09; KF13; KF16; KN708-1; KOL; Le Noroit; Le Suroît; M11/1; M12392-1; M13/2; M17/2; M2/2; M25; M35/1; M35003-4; M35027-1; M39; M51; M53; M53_169; M57; M6/5; M60; M65; M7/2; M7/3; M7/5; Marion Dufresne (1995); MD101; MD952012; MD95-2012; MD952039; MD95-2039; MD952040; MD95-2040; Meteor (1964); Meteor (1986); MUC; MultiCorer; NA87-22; NEAP; NEAP-03K; NEAP-08K; NEAP-15K; NEAP-17K; NE Atlantic; North Atlantic; Northeast Atlantic; Northwest Atlantic; Norwegian-Greenland Sea; Norwegian Sea; OD-041-04; Oden; ODEN-96; off Gabun; off Iceland; off Liberia; off West Africa; PALEOCINAT; PALEOCINAT II; PC; Piston corer; Piston corer (Kiel type); PO158/B; PO175B; Polarstern; Porto Seamount; POS158/2; POS175/2; POS175/2_1171; POS210/2; Poseidon; PS05; PS08; PS11; PS1230-1; PS13 GRÖKORT; PS1533-3; PS17; PS17/242; PS17/245; PS17/251; PS17/290; PS1730-2; PS19/100; PS19/112; PS1919-2; PS1922-1; PS1927-2; PS1951-1; PS19 EPOS II; PS2129-1; PS2138-1; PS2446-4; PS2613-6; PS2644-5; PS27; PS27/020; PS2837-5; PS2837-6; PS2876-1; PS2876-2; PS2887-1; PS2887-2; PS31; PS31/113; PS31/160-5; PS44; PS44/065; PS45; PS45/029; PS45/058; RC11; RC1112; RC11-86; RC12; RC12-267; RC12-294; RC13; RC13-153; RC13-228; RC13-229; RC24; RC24-16; REYKJANES-RÜCKEN; Robert Conrad; SL; SO82; SO82_5-2; Sonne; SPC; Sphincter corer; SU81-18; SU90-03; SU90-39; SU90-I06; SU92; SU92-21; SUBTROPEX 82; Svalbard; V16; V16-20; V16-205; V17; V17-165; V18; V18-357; V22; V22-174; V22-197; V23; V23-100; V23-81; V25; V25-56; V25-59; V26; V26-124; V27; V27-60; V27-86; V28; V28-127; V28-14; V28-56; V29; V29-179; V30; V30-40; V30-49; VA-10/3; Valdivia (1961); Vema; Yermak Plateau
    Type: Dataset
    Format: application/zip, 272 datasets
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  • 63
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    PANGAEA
    In:  Supplement to: Kettler, Richard M (2001): Results of whole-rock organic geochemical analyses of the CRP-3 drillcore, Victoria Land Basin, Antarctica. Terra Antartica, 8(3), 303-308, hdl:10013/epic.28241.d001
    Publication Date: 2024-04-27
    Description: Sediments and rocks recovered in CRP-3 coring operations contain minute amounts of organic matter (average 0.3% TOC). TOC contents and C:N ratios are zoned systematically: those rocks encountered at depths greater than 330 meters below sea floor (mbsf) contain less organic matter and have higher TOC:N ratios (after correcting for inorganic N) than do shallower rocks. The only two samples that have TOC values greater than 1% also contain abundant granule to silt-sized particles of coal. The total sulphur contents of these rocks is very low and indicates either that only small amounts of deposited organic matter were labile, or that no source of reactive iron was present during diagenesis.
    Keywords: Cape Roberts Project; Carbon, organic, total; Carbon, organic, total, standard deviation; Carbon, total; Carbon, total, standard deviation; Core wireline system; CRP; CRP-3; CWS; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Element analyser CHNS-O, Carlo Erba EA1108; Nitrogen, standard deviation; Nitrogen, total; Ross Sea; Sampling/drilling from ice; Sulfur, standard deviation; Sulfur, total
    Type: Dataset
    Format: text/tab-separated-values, 638 data points
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  • 64
    Publication Date: 2024-04-27
    Keywords: Age, comment; Age, dated; Age, error; Age model; ARK-V/3b; Calculated; DEPTH, sediment/rock; GIK/IfG; GIK21730-2 PS13/224; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer (Kiel type); Greenland Sea; Institute for Geosciences, Christian Albrechts University, Kiel; Polarstern; PS13 GRÖKORT; PS1730-2; Sedimentation rate; see comment; SL
    Type: Dataset
    Format: text/tab-separated-values, 38 data points
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  • 65
    Publication Date: 2024-04-27
    Keywords: Age, comment; Age, dated; Age, error; Age model; ARK-VII/3b; Calculated; DEPTH, sediment/rock; GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer (Kiel type); Greenland Slope; Institute for Geosciences, Christian Albrechts University, Kiel; Polarstern; PS17; PS17/242; PS1919-2; Sedimentation rate; see comment; SL
    Type: Dataset
    Format: text/tab-separated-values, 19 data points
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  • 66
    Publication Date: 2024-04-27
    Keywords: Age, comment; Age, dated; Age, error; Age model; ARK-VII/3b; Calculated; DEPTH, sediment/rock; GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer (Kiel type); Greenland Slope; Institute for Geosciences, Christian Albrechts University, Kiel; Polarstern; PS17; PS17/251; PS1927-2; Sedimentation rate; see comment; SL
    Type: Dataset
    Format: text/tab-separated-values, 29 data points
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  • 67
    Publication Date: 2024-04-27
    Keywords: Age, comment; Age, dated; Age, error; Age model; ARK-VII/3b; Calculated; DEPTH, sediment/rock; GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer (Kiel type); Greenland Slope; Institute for Geosciences, Christian Albrechts University, Kiel; Polarstern; PS17; PS17/245; PS1922-1; Sedimentation rate; see comment; SL
    Type: Dataset
    Format: text/tab-separated-values, 8 data points
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  • 68
    Publication Date: 2024-04-27
    Keywords: Age, comment; Age, dated; Age, error; Age model; ARK-VII/3b; Calculated; DEPTH, sediment/rock; GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer (Kiel type); Greenland Slope; Institute for Geosciences, Christian Albrechts University, Kiel; Polarstern; PS17; PS17/290; PS1951-1; Sedimentation rate; see comment; SL
    Type: Dataset
    Format: text/tab-separated-values, 24 data points
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  • 69
    Publication Date: 2024-04-25
    Keywords: Age, comment; Age, dated; Age, dated material; Age model; BOFS11886#2; BOFS8K; Calculated; D184; DEPTH, sediment/rock; Discovery (1962); GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Institute for Geosciences, Christian Albrechts University, Kiel; KAL; Kasten corer; Northeast Atlantic; Sedimentation rate; see comment
    Type: Dataset
    Format: text/tab-separated-values, 11 data points
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  • 70
    Publication Date: 2024-04-25
    Keywords: 175-1085; Age model; Ageprofile Datum Description; Benguela Current, South Atlantic Ocean; COMPCORE; Composite Core; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; DSDP/ODP/IODP sample designation; Joides Resolution; Leg175; Ocean Drilling Program; ODP; Sample code/label; Sample code/label 2
    Type: Dataset
    Format: text/tab-separated-values, 48 data points
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  • 71
    Publication Date: 2024-04-25
    Keywords: 180-1118; Age, dated; Age, dated standard deviation; Ageprofile Datum Description; COMPCORE; Composite Core; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Joides Resolution; Leg180; Ocean Drilling Program; ODP; Solomon Sea; Two-way traveltime
    Type: Dataset
    Format: text/tab-separated-values, 116 data points
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  • 72
    Publication Date: 2024-04-25
    Keywords: Age, comment; Age, dated; Age, dated material; Age, error; Calculated; Calendar age; DEPTH, sediment/rock; GIK/IfG; GIK17730-4; Glacial Atlantic Ocean Mapping; GLAMAP2000; Institute for Geosciences, Christian Albrechts University, Kiel; KAL; Kasten corer; M13/2; Meteor (1986); Norwegian Sea; Sedimentation rate; see comment
    Type: Dataset
    Format: text/tab-separated-values, 84 data points
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  • 73
    Publication Date: 2024-04-25
    Keywords: 175-1076A; Age model; Age model, stable isotope stratigraphy; Benguela Current, South Atlantic Ocean; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: text/tab-separated-values, 26 data points
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  • 74
    Publication Date: 2024-04-25
    Keywords: 175-1081A; Age model; Age model, stable isotope stratigraphy; Benguela Current, South Atlantic Ocean; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: text/tab-separated-values, 35 data points
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  • 75
    Publication Date: 2024-04-25
    Keywords: Age, comment; Age, dated; Age, dated material; Age, error; Age model; Calculated; DEPTH, sediment/rock; GIK/IfG; GIK16396-1; Glacial Atlantic Ocean Mapping; GLAMAP2000; Gravity corer (Kiel type); Institute for Geosciences, Christian Albrechts University, Kiel; off Iceland; PO158/B; POS158/2; Poseidon; Sedimentation rate; see comment; SL
    Type: Dataset
    Format: text/tab-separated-values, 40 data points
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  • 76
    Publication Date: 2024-04-25
    Keywords: 175-1085; Age model; Benguela Current, South Atlantic Ocean; COMPCORE; Composite Core; DEPTH, sediment/rock; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: text/tab-separated-values, 77 data points
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  • 77
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    Unknown
    PANGAEA
    In:  Supplement to: Durham, Emma L; Maslin, Mark; Platzman, E; Rosell-Melé, Antoni; Marlow, J R; Leng, M; Lowry, David; Burns, Stephen J; ODP Leg 175 Shipboard Scientific Party (2001): Reconstructing the climatic history of the Western Coast of Africa over the Past 1.5 m.y.: A comparison of proxy records from the Congo Basin and the Walvis Ridge and the search for evidence of the Mid-Pleistocene revolution. In: Wefer, G; Berger, WH; Richter, C (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 175, 1-46, https://doi.org/10.2973/odp.proc.sr.175.229.2001
    Publication Date: 2024-04-25
    Description: A multiproxy approach including the use of stable isotopes, magnetic characterization analyses, and organic geochemistry has been adopted to consider factors such as productivity and terrigenous input over the past 1.5 m.y. at two areas off the western coast of Africa. These factors can, in turn, be used to consider variability in ocean circulation and upwelling in addition to changes in climate on the African continent. In particular, studies focused on the influence of glacial-interglacial cycles and evidence for the mid-Pleistocene revolution (MPR), a complex change in climate that occurred at ~1 Ma. A comparison of the records from the two areas drilled during Ocean Drilling Program Leg 175, the Congo Basin, at a latitude of 5°S (Holes 1076A and 1077A), and the Walvis Ridge, at 17°S (Hole 1081A), demonstrates that these sites are affected by different localized factors. The sites in the Congo Basin are strongly influenced by freshwater and sediment from the Congo River, whereas the site at the Walvis Ridge is located in the center of oceanic upwelling and contains a more marine signal. Evidence also suggests that the two sites responded differently to both long- and short-term climatic variations. In particular, the response at the Walvis Ridge to the MPR occurred over an extended period, from 1.1 to 0.8 Ma, and was associated with a change in the dominant source of terrigenous input to the site in conjunction with a change in the productivity signal. In the Congo Basin, the response to the MPR was more rapid, occurring between 0.9 and 0.8 Ma. During this period, the influence of the Congo River became significant. However, productivity records only began to respond toward the end of this interval, at 0.8 Ma.
    Keywords: 175-1076A; 175-1077A; 175-1081A; Benguela Current, South Atlantic Ocean; DRILL; Drilling/drill rig; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 78
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    PANGAEA
    In:  Supplement to: Goodliffe, Andrew M; Taylor, Brian; Karner, Garry D (2001): Correlations between seismic, logging, and core data from ODP Leg 180 sites in the western Woodlark Basin. In: Huchon, P; Taylor, B; Klaus, A (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 180, 1-25, https://doi.org/10.2973/odp.proc.sr.180.167.2001
    Publication Date: 2024-04-25
    Description: Synthetic seismograms are constructed from check shot-corrected velocity and density measurements collected during Ocean Drilling Program (ODP) Leg 180 at Sites 1109, 1115, and 1118. The synthetic seismograms facilitate direct correlation of a coincident multichannel seismic (MCS) profile with borehole data collected at the three sites. The MCS data and the synthetic seismograms correlate very well, with most major reflectors successfully reproduced in the synthetics. Our results enable a direct calibration of the MCS data in terms of age, paleoenvironment, and subsidence history. Seismic reflectors are time correlative within stratigraphic resolution but are often observed to result from different lithologies across strike. Our results facilitate the extrapolation of the sedimentation history into an unsampled section of Site 1118 and enable a full correlation between the three sites using all the data collected during ODP Leg 180. This study forms the foundation for regionalizing the site data to the northern margin of the Woodlark Basin, where the transition from continental rifting to seafloor spreading is taking place.
    Keywords: Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 79
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    Unknown
    PANGAEA
    In:  Supplement to: Christensen, Beth A; Maslin, Mark (2001): An astronomically calibrated age model for Pliocene Site 1085, ODP Leg 175. In: Wefer, G; Berger, WH; Richter, C (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 175, 1-19, https://doi.org/10.2973/odp.proc.sr.175.204.2001
    Publication Date: 2024-04-25
    Description: An astronomically calibrated age model for the Pliocene section of Ocean Drilling Program Leg 175 Cape Basin Site 1085 based on magnetic susceptibility data was developed using shipboard biostratigraphic datums. The composite core magnetic susceptibility record was compiled using shipboard correlations between Holes 1085A and 1085B and then tuned to the record of orbital variations in eccentricity to generate an orbitally tuned age model. Magnetic susceptibility apparently records climate variations in the Cape Basin. Strong power spectra values at the 100- and 400-k.y. frequency suggest an orbital control on the beat of Pliocene climate change in the Cape Basin.
    Keywords: 175-1085; Benguela Current, South Atlantic Ocean; COMPCORE; Composite Core; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 80
    Publication Date: 2024-04-25
    Keywords: Age, comment; Age, dated; Age, dated material; Age model; BOFS11896#1; BOFS14K; Calculated; D184; DEPTH, sediment/rock; Discovery (1962); GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Institute for Geosciences, Christian Albrechts University, Kiel; KAL; Kasten corer; Northeast Atlantic; Sedimentation rate; see comment
    Type: Dataset
    Format: text/tab-separated-values, 11 data points
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  • 81
    Publication Date: 2024-04-25
    Keywords: Age, comment; Age, dated; Age, dated material; Age model; BOFS11905#1; BOFS17K; Calculated; D184; DEPTH, sediment/rock; Discovery (1962); GIK/IfG; Glacial Atlantic Ocean Mapping; GLAMAP2000; Institute for Geosciences, Christian Albrechts University, Kiel; KAL; Kasten corer; Northeast Atlantic; Sedimentation rate; see comment
    Type: Dataset
    Format: text/tab-separated-values, 11 data points
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  • 82
    Publication Date: 2024-04-25
    Keywords: Age, comment; Age, dated; Age, dated material; Age, error; Age model; Biogeochemical Ocean Flux Study; BOFS; BOFS11882#4; BOFS5K; Calculated; D184; DEPTH, sediment/rock; Discovery (1962); Glacial Atlantic Ocean Mapping; GLAMAP2000; KAL; Kasten corer; Northeast Atlantic; Sedimentation rate; see comment
    Type: Dataset
    Format: text/tab-separated-values, 58 data points
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  • 83
    Publication Date: 2024-04-25
    Keywords: 175-1076A; Age model; Age model, biostratigraphy; Benguela Current, South Atlantic Ocean; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: text/tab-separated-values, 6 data points
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  • 84
    Publication Date: 2024-04-25
    Keywords: 175-1081A; Age model; Age model, biostratigraphy; Benguela Current, South Atlantic Ocean; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: text/tab-separated-values, 8 data points
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  • 85
    Publication Date: 2024-04-25
    Keywords: 175-1077A; Age model; Age model, stable isotope stratigraphy; Benguela Current, South Atlantic Ocean; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Joides Resolution; Leg175; Ocean Drilling Program; ODP
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 86
    Publication Date: 2024-04-20
    Keywords: Alanine per unit sediment mass; Amino acid, hydrolysable per unit sediment mass; Arginine per unit sediment mass; Aspartic acid per unit sediment mass; beta-Alanine per unit sediment mass; BIGSET; BIGSET-1; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Calcium carbonate; Calcium carbonate, flux; Calculated; Calculated, see reference(s); Carbon, organic, particulate, flux; Carbon, organic, total; Carbon, total; Carbon/Nitrogen ratio; DATE/TIME; Date/time end; DEPTH, water; Duration, number of days; Element analyser CHN; Elevation of event; Event label; gamma-Aminobutyric acid per unit sediment mass; Glutamic acid per unit sediment mass; Glycine per unit sediment mass; Histidine per unit sediment mass; Ion-exchange-chromatography; Isoleucine per unit sediment mass; Isotope ratio mass spectrometry; Latitude of event; Leucine per unit sediment mass; Longitude of event; Lysine per unit sediment mass; Methionine per unit sediment mass; Nitrogen, total; Nitrogen, total, flux; Opal, biogenic silica; Opal, flux; Ornithine per unit sediment mass; Phenylalanine, per unit sediment mass; Photometry; Serine per unit sediment mass; SO118; SO118_ST-01; SO118_ST-01_d; SO118_ST-03; SO118_ST-03_d; SO118_ST-04; SO118_ST-04_d; SO118_ST-05; SO118_ST-05_d; Sonne; Threonine per unit sediment mass; Total mass, flux per day; Trap; TRAP; Tyrosine per unit sediment mass; Valine per unit sediment mass; δ13C, organic carbon; δ15N, gas
    Type: Dataset
    Format: text/tab-separated-values, 203 data points
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  • 87
    Publication Date: 2024-04-20
    Keywords: Alanine per unit sediment mass; Amino acid, hydrolysable per unit sediment mass; Arginine per unit sediment mass; Aspartic acid per unit sediment mass; beta-Alanine per unit sediment mass; BIGSET; BIGSET-2/JGOFS-IN-4; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Calcium carbonate; Calcium carbonate, flux; Calculated; Calculated, see reference(s); Carbon, organic, particulate, flux; Carbon, organic, total; Carbon, total; Carbon/Nitrogen ratio; DATE/TIME; Date/time end; DEPTH, water; Duration, number of days; Element analyser CHN; Elevation of event; Event label; gamma-Aminobutyric acid per unit sediment mass; Glutamic acid per unit sediment mass; Glycine per unit sediment mass; Histidine per unit sediment mass; Ion-exchange-chromatography; Isoleucine per unit sediment mass; Isotope ratio mass spectrometry; LATITUDE; Leucine per unit sediment mass; LONGITUDE; Lysine per unit sediment mass; Methionine per unit sediment mass; Nitrogen, total; Nitrogen, total, flux; Opal, biogenic silica; Opal, flux; Ornithine per unit sediment mass; Phenylalanine, per unit sediment mass; Photometry; Serine per unit sediment mass; SO129; SO129_ST-01; SO129_ST-01_d; SO129_ST-02a; SO129_ST-03; SO129_ST-03_d; SO129_ST-04; SO129_ST-04_d; SO129_ST-05; Sonne; Threonine per unit sediment mass; Total mass, flux per day; Trap; TRAP; Tyrosine per unit sediment mass; Valine per unit sediment mass; δ13C, organic carbon; δ15N, gas
    Type: Dataset
    Format: text/tab-separated-values, 267 data points
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  • 88
    Publication Date: 2024-04-20
    Keywords: BIGSET; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; BIOTRAN S; CTD/Rosette; CTD-RO; DEPTH, water; Depth comment; M42/2; M42/2_411-8; M42/2_CTD-21; Meteor (1986); Non-destructive beta-counting (Rutgers van der Loeff & Moore, 1999); Thorium-234, dissolved; Thorium-234, particulate
    Type: Dataset
    Format: text/tab-separated-values, 15 data points
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  • 89
    Publication Date: 2024-04-18
    Keywords: 62#3; Aluminium; Arsenic; Barium; BIGSET; BIGSET-1; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Biogeochemical flux in the deep sea; Calcium; Carbon, inorganic, total; Carbon, total; Central Arabian Sediment Trap; Chromium; Cobalt; Copper; DEPTH, sediment/rock; Element analyser CHN; Element analysis coulometric; GEOMARFLUX; Gravity corer (Kiel type); Iron; Lead; Magnesium; Manganese; Nickel; Phosphorus; Potassium; Rubidium; Silicon; SL; SO118; SO118_SL-03; Sodium; Sonne; Strontium; Titanium; Vanadium; X-ray fluorescence (XRF); Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 1050 data points
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  • 90
    Publication Date: 2024-04-18
    Keywords: 90#3; Aluminium; Arsenic; Barium; BIGSET; BIGSET-1; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Biogeochemical flux in the deep sea; Calcium; Carbon, inorganic, total; Carbon, total; Chromium; Cobalt; Copper; DEPTH, sediment/rock; Element analyser CHN; Element analysis coulometric; GEOMARFLUX; Gravity corer (Kiel type); Iron; Lead; Magnesium; Manganese; Nickel; Phosphorus; Potassium; Rubidium; Silicon; SL; SO118; SO118_SL-06; Sodium; Sonne; Strontium; Titanium; Vanadium; Western Arabian Sediment Trap-Kuppe; X-ray fluorescence (XRF); Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 3900 data points
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  • 91
    Publication Date: 2024-04-18
    Keywords: 405; Aluminium; Arsenic; Barium; BIGSET; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Calcium; Chromium; Cobalt; Copper; DEPTH, sediment/rock; GEOMAR; Giant box corer; GKG; Helmholtz Centre for Ocean Research Kiel; Inductively coupled plasma - mass spectrometry (ICP-MS); Iron; Lead; M36/6; M36/6_KG10; Magnesium; Manganese; Meteor (1986); Nickel; Phosphorus; Potassium; Rubidium; Silicon; Sodium; Strontium; Thorium-230; Titanium; Vanadium; X-ray fluorescence (XRF); Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 614 data points
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  • 92
    Publication Date: 2024-04-18
    Keywords: Aluminium; Arsenic; Barium; Bengal; BIGSET; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Calcium; Chromium; Cobalt; Copper; DEPTH, sediment/rock; Iron; KAL; Kasten corer; Lead; M42/2; M42/2_377-2; M42/2_KL-01; Magnesium; Manganese; Meteor (1986); Nickel; Phosphorus; Potassium; Rubidium; Silicon; Sodium; Strontium; Titanium; Vanadium; X-ray fluorescence (XRF); Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 1748 data points
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  • 93
    Publication Date: 2024-04-18
    Keywords: 369; Aluminium; Arsenic; Barium; BIGSET; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Calcium; Chromium; Cobalt; Copper; DEPTH, sediment/rock; GEOMAR; Helmholtz Centre for Ocean Research Kiel; Iron; Lead; M36/6; M36/6_MC36; Magnesium; Manganese; Meteor (1986); MUC; MultiCorer; Nickel; Phosphorus; Potassium; Rubidium; Silicon; Sodium; Strontium; Titanium; Vanadium; X-ray fluorescence (XRF); Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 598 data points
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  • 94
    Publication Date: 2024-04-18
    Keywords: 49#2; Alanine per unit sediment mass; Amino acid, hydrolysable per unit sediment mass; Arginine per unit sediment mass; Aspartic acid per unit sediment mass; beta-Alanine per unit sediment mass; BIGSET; BIGSET-2/JGOFS-IN-4; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Calcium carbonate; Calculated; Carbon, organic, dissolved; Carbon, organic, total; Carbon, total; Carbon/Nitrogen ratio; DEPTH, sediment/rock; Eastern Arabian Sediment Trap; Element analyser CHN; gamma-Aminobutyric acid per unit sediment mass; Glutamic acid per unit sediment mass; Glycine per unit sediment mass; High temperature catalytic oxidation; Histidine per unit sediment mass; Ion-exchange-chromatography; Isoleucine per unit sediment mass; Isotope ratio mass spectrometry; Leucine per unit sediment mass; Lysine per unit sediment mass; Methionine per unit sediment mass; MUC; MultiCorer; Nitrogen, total; Opal, biogenic silica; Ornithine per unit sediment mass; Phenylalanine, per unit sediment mass; Photometry; Serine per unit sediment mass; SO129; SO129_MC-22; Sonne; Threonine per unit sediment mass; Tyrosine per unit sediment mass; Valine per unit sediment mass; δ13C, organic carbon; δ15N, gas
    Type: Dataset
    Format: text/tab-separated-values, 265 data points
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  • 95
    Publication Date: 2024-04-18
    Keywords: BIOTRAN S; Bottom water sampler; BWS; CTD/Rosette; CTD-RO; DEPTH, water; Depth comment; Event label; Latitude of event; Longitude of event; M42/2; M42/2_402-2; M42/2_405-1; M42/2_405-2; M42/2_411-3; M42/2_BWS-08; M42/2_CTD-15; M42/2_CTD-16; M42/2_CTD-17; Meteor (1986); Non-destructive beta-counting (Rutgers van der Loeff & Moore, 1999); Thorium-234, dissolved; Thorium-234, particulate
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 96
    Publication Date: 2024-04-18
    Keywords: BIGSET; BIGSET-2/JGOFS-IN-4; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; DATE/TIME; Date/time end; DEPTH, water; Duration, number of days; Elevation of event; Event label; Latitude of event; Longitude of event; Non-destructive beta-counting (Rutgers van der Loeff & Moore, 1999); SO129; SO129_ST-01; SO129_ST-01_d; SO129_ST-03; SO129_ST-03_d; SO129_ST-04; SO129_ST-04_d; Sonne; Thorium, flux; Trap; TRAP
    Type: Dataset
    Format: text/tab-separated-values, 15 data points
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  • 97
    Publication Date: 2024-04-18
    Keywords: 16#1; BIGSET; BIGSET-1; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; CTD; CTD/Rosette; CTD-RO; DEPTH, water; Salinity; SO118; SO118_CTD-06; Sonne; Temperature, water; Western Arabian Sediment Trap
    Type: Dataset
    Format: text/tab-separated-values, 812 data points
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  • 98
    Publication Date: 2024-04-18
    Keywords: Conductivity; CT; DATE/TIME; DEPTH, water; JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; M36/6; M36/6-track; Meteor (1986); Northeast Atlantic; Salinity; Temperature, water; Thermosalinograph; TSG; Underway cruise track measurements
    Type: Dataset
    Format: text/tab-separated-values, 8225 data points
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  • 99
    Publication Date: 2024-04-18
    Keywords: Conductivity; CT; DATE/TIME; DEPTH, water; JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; M36/5; M36/5-track; Meteor (1986); Northeast Atlantic; Salinity; Temperature, water; Thermosalinograph; TSG; Underway cruise track measurements
    Type: Dataset
    Format: text/tab-separated-values, 10811 data points
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  • 100
    Publication Date: 2024-04-18
    Keywords: 53#2; Aluminium; Arsenic; Barium; BIGSET; BIGSET-1; Biogeochemical Fluxes of Matter and Energy in the Deep Sea; Biogeochemical flux in the deep sea; Calcium; Carbon, inorganic, total; Carbon, total; Chromium; Cobalt; Copper; DEPTH, sediment/rock; Element analyser CHN; Element analysis coulometric; GEOMARFLUX; Gravity corer (Kiel type); Iron; Lead; Magnesium; Manganese; Nickel; Phosphorus; Potassium; Rubidium; Silicon; SL; SO118; SO118_SL-02; Sodium; Sonne; Strontium; Titanium; Vanadium; Western Arabian Sediment Trap; X-ray fluorescence (XRF); Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 2307 data points
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