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  • 1
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    Unknown
    Selbstverlag Fachbereich Geowissenschaften, FU Berlin
    In:  Herausgeberexemplar
    Publication Date: 2024-06-19
    Description: In der vorliegenden Arbeit wird - basierend auf externmorphologischen Kriterien von Brachiopodengehäusen aus dem spongiolithischen süddeutschen Oberjura - eine ökologische Interpretation von Brachiopodenassoziationen vorgestellt und diese mit nicht verschwammten Vorkommen unter Verwendung verschiedener methodischer Ansätze verglichen. Aus insgesamt elf brachiopodenführenden Lokalitäten unterschiedlicher stratigraphischer und fazieller Niveaus wurden die generell bevorzugt auftretenden Wuchsformen ermittelt, zu Standardmorphotypen zusammengefaßt und mit digitalisierten Abbildungen aus vorhergehenden Bearbeitungen ökologisch verglichen. [ …] [ … Tabelle 1. Stratigraphie, Fazies und dominierende Externmorphologie der Brachiopodengehäuse (Standardmorphotyp) in den untersuchten Lokalitäten.] Die Analysen ergaben, daß mit Hilfe des Verlaufs der dorsalen Umrißlinie, dem Verlauf der Frontalkommissur und untergeordnet der Foramengröße eine hinreichende Interpretation des Environments hinsichtlich Substratbeschaffenheit, Hydrodynamik und Bathymetrie erfolgen kann. Die wichtigsten Ergebnisse sind: a) Die Brachiopoden der süddeutschen Spongiolithfazies zeigen im Vergleich mit je einer Fauna aus einer schwach verschwammten Schichtfazies, einer Korallenfazies und einer oolithischen Mergelkalkfazies grundlegende Unterschiede in der äußeren Morphologie ihrer Gehäuse, b) In mergeldominierten Lokalitäten sind die Sphärizitätsindizes der Gehäuse deutlich höher als in der Korallenfazies, c) Reduzierte Werte des Dicken / Breiten - Verhältnisses scheinen ein Indiz für weichere Substrate zu sein, d) Im zeitlichen Verlauf (Oxfordium bis Unter-Tithonium) nehmen die Werte der Sphärizitätsindizes der Brachiopodengehäuse ab. e) Die Amplituden der Frontalkommissuren von Brachiopoden aus dem Moundbereich sind höher als diejenigen aus der Korallenfazies, f) Das Mengenverhältnis von terebratuliden zu rhynchonelliden Brachiopoden läßt Rückschlüsse auf das dominierende Substrat in den Moundbereichen zu. Ein quantitatives Übergewicht rhynchonellider Brachiopoden geht mit einem mergelreichen, stillen Tieferwasserenvironment einher, während die kalkdominierten Flachwasserbereiche mit erhöhter Hydrodynamik bevorzugt von Terebratuliden besiedelt werden, g) Untergeordnet wird ein Substratwechsel durch die Foramengröße und -position angezeigt. Große mesothyridide Foramina kennzeichnen meist Festsubstrate. Kleine hypothyridide Foramina sind eher für allomikritische Bereiche charakteristisch, h) Brachiopoden der koralligenen Fauna zeichnen sich durch Asymmetrien der Frontalkommissur (Rhynchonellida) und Asymmetrien in der dorsalen Umrißlinie aus (Terebratulida). Die artikulaten Brachiopoden aus den untersuchten „Riff-Ablagerungen scheinen hinsichtlich ihrer Morphologie und faunistischen Komposition von den kontrollierenden Bildungsfaktoren (besonders Sedimentationsrate, Substratbeschaffenheit und Hydrodynamik) der Schwamm- und Korallenassoziationen, beeinflußt worden zu sein. Die in den jeweiligen Aufschlüssen dominierenden Brachiopoden-Morphotypen reflektieren wenigstens statistisch die Bildungsbedingungen.
    Description: Data on brachiopods in spongolites from the Upper Jurassic of southern Germany were collected in order to establish associations based on paleoenvironmental parameters and compare these results to similar fauna across a range of depositional paleoenvironments. Fossils were sampled and their dominant growth morphotypes identified from 11 localities representing different ages and facies of the Upper Jurassic in the Franconian and Swabian Alb. These growth morphotypes were compared to standard morphotypes and to biometric data of modern brachiopods gleaned from the literature. Through statistical analysis, it was found that the mode of commissure line and in part the diameter of the foraminae correlate well with substrate types and hydrodynamic to bathymetric paleoconditions. General results include: a) the external morphology of brachiopods from spongolites is significantly different from that of brachiopods from well-bedded limestone containing few to no sponges but corals and oolites, b) within a mostly marl substrate, the sphericity index of brachiopod shells is much larger than for shells in coral-bearing rocks, c) width to length ratios of shells are less for softer substrates indicating possible use as an index for substrate consistency, d) from the Lower Oxfordian to the Tithonian, the sphericity index of shells in general decreases, e) amplitudes of the frontal commissure line of brachiopods found within spongolite build-ups are much larger than those from coral-bearing rocks, f) Terebratulidae to Rhynchonellida biometric relations may be used as an index for judging the “quality” of the paleoenvironment; rhynchonellid brachiopods were dominantly found in marly, deeper paleoenvironments, whereas carbonate sediments deposited under shallow, high energy, water paleoconditions were colonized by terebratulid brachiopods, g) the size and position of foraminae are linked to the substrate type; brachiopods with larger mesothyrid foraminae are found associated with hard substrates while smaller hypothyrid foraminae in soft carbonate sediment areas, h) brachiopods from coral rocks are characterized by their asymmetric growth in form (Terebratulida) and of their frontal commissure (Rhychonellida). In general, brachiopods from reefal deposits appeared to have been directly influenced morphologically by paleoecologic factors, such as sedimentation rate, substrate type, and water energy levels. The dominant standard morphotype of brachiopods appears to correlate in a statistically significant way with the interpreted depositional circumstances at each locality. Due to here presented morphological data of brachiopodes from the Upper Jurassic of Southern Germany, associations of brachiopodes in spongiolites are interpreted palecologically and compared to similar faunae from other depositional environments. From 11 localities of different stratigraphical age and facies in the Franconian and Swabian Alb the dominant growth morphotypes are presented and abstracted to so-called „standard morphotypes“. The latter are compared to biometrical data of modern brachiopodes, mainly extracted from literature data. Interpreting the mathematical analyses it can be concluded that the dorsal outline, the mode of commissur line and partially the diameter of the foraminae can be used as indicator of substrates, hydrodynamical and paleobathymetrical conditions. The main results are: a) External morphology of brachiopodes from spongiolites exhibits strong differences in contrast to brachiopodes from well-bedded limestones with few or no sponges, to coral-bearing strata and to oolithic limestones, b) In localities, where marls have been predominantly deposited, the sphericity index is much larger than in the coral-bearing rocks, c) Reduced relations of width and length can be tentatively used as index for soft substrates, d) From the Lower Oxfordian to the Tithonian the sphericity index becomes smaller, e) Amplitudes of the frontal commissur line from brachiopodes of spongiolitic buildups are much higher than from brachiopodes in coral-bearing rocks, f) Quantitative relations from Terebratulidae to Rhynchonellida can be used as index for quality of substrates. Rhynchonellid brachiopodes are dominating marly, deeper environments, whereas carbona-tic sediments deposited under shallow water conditions with higher water energy are dominated by terebratulid brachiopodes. g) Changes of substrates are indicated by the size and position of foraminae. Larger mesothyrid foraminae characterize hard substrates, smaller hypothyrid foraminae are typically developed in allomicritic areas, h) Brachiopodes from coralligene rocks are characterized by their asymmetrical growth of form (Terebratulida) and of their frontal commissure (Rhynchonellida). Generally, brachiopodes from reefal deposits have been influenced morphologically by ecologically controlling factors such as the sedimentation rate, the substrate, and the water energy levels. The dominating standard morphotypes of brachiopodes in each locality reflect at least statistically the former depositional environments. (Translation: Dr. Elizabeth H. Gierlowski-Kordesch, Department of Geological Sciences, Ohio University)
    Description: thesis
    Description: DFG, SUB Göttingen
    Keywords: ddc:560 ; Paläobiologie ; Paläontologie ; Brachiopoda
    Language: German
    Type: doc-type:book
    Format: 118
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  • 2
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    PANGAEA
    In:  Supplement to: Biscaye, Pierre Eginton; Grousset, Francis E; Revel, Marie; van der Gaast, Sjierk; Zielinski, G A; Vaars, A; Kukla, George J (1997): Asian provenance of glacial dust (stage 2) in the Greenland Ice Sheet Project 2 ice core, Summit, Greenland. Journal of Geophysical Research: Oceans, 102(C12), 26765-26782, https://doi.org/10.1029/97JC01249
    Publication Date: 2024-06-19
    Description: Samples of dust from the Greenland Ice Sheet Project 2 (GISP2) ice core, Summit, Greenland, dated within marine isotope stage 2 (between 23,340 and 26,180 calendar years B.P.) around the time of the coldest, local, last glacial temperatures, have been analyzed to determine their provenance. To accomplish this, we have compared them with approximately Coeval aeolian sediments (mostly loesses) sampled in possible source areas (PSAs) from around the northern hemisphere. The 〈5-µm grain-size fraction of these samples was analyzed on the basis that it corresponds to the atmospheric dust component of that time and locale, which was sufficiently fine grained to be transported over long distances. On the basis of comparison of the clay mineralogy and Sr, Nd and Pb isotope composition with ice dust and PSAs and assuming that we have sampled the most important PSAs, we have determined that the probable source area of these GISP2 dusts was in eastern Asia. The dust was not derived from either the midcontinental United States or the Sahara, two more proximal areas that have been suggested as potential sources based on atmospheric circulation modeling. Except for a brief period during an interstadial, when dust transport was exceptionally low (for glacial times) and had a mineralogical composition indicative of a slightly more southern provenance, the source area of the dust did not change significantly during times of variably higher fluxes of dust with larger mean grain size or lower fluxes of dust with smaller mean grain size. This includes the high-dust period that correlates with the Heinrich 2 period of major iceberg discharge into the North Atlantic. Variable wind strengths must therefore be invoked to account for these abrupt and significant changes in dust flux and grain size.
    Keywords: DRILL; Drilling/drill rig; Fairbanks; GISP; GISP2; GISPRefSamp245-5; GISPRefSamp245-6; GISPRefSamp248-1; GISPRefSamp248-2; GISPRefSamp248-3; GISPRefSamp248-4; GISPRefSamp248-5; GISPRefSamp248-6; GISPRefSamp248-7; GISPRefSamp248-8; GISPRefSamp251-3; GISPRefSamp251-4; GISPRefSamp251-5; GISPRefSamp251-6; Gobi Desert; Greenland Ice Core Projects; GRIP/GISP/NGRIP; HAND; Illinois, United States of America; Sampling/drilling ice; Sampling by hand; Shaanxi; Toronto; Ukraine; Washington, USA
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 3
    Publication Date: 2024-06-19
    Keywords: Barcelona Coast; Chlorite; Comment; Cork Harbour; Danube Delta; Danube Delta Coast; Fairbanks; GISP; GISPRefSamp245-5; GISPRefSamp245-6; GISPRefSamp248-1; GISPRefSamp248-2; GISPRefSamp248-3; GISPRefSamp248-4; GISPRefSamp248-5; GISPRefSamp248-6; GISPRefSamp248-7; GISPRefSamp248-8; GISPRefSamp251-3; GISPRefSamp251-4; GISPRefSamp251-5; GISPRefSamp251-6; Gobi Desert; Greenland Ice Core Projects; GRIP/GISP/NGRIP; Gulf of Riga; HAND; Himmerfjarden; Illinois, United States of America; Illite; Izmit Bay; Kaolinite; Latitude of event; Lead-206/Lead-204 ratio; Lead-206/Lead-207 ratio; Lead-207/Lead-204 ratio; Lead-208/Lead-204 ratio; Lead-208/Lead-206 ratio; Limfjorden; Longitude of event; Neodymium-143/Neodymium-144 ratio; Oder Estuary; Pertuis Charentais; Sampling/drilling ice; Sampling by hand; Scheldt Delta Estuary; Shaanxi; Smectite; Strontium-87/Strontium-86 ratio; Taranto Mare Piccolo; Thau Lagoon; Thermaikos Gulf; Toronto; Ukraine; Washington, USA; X-ray diffraction TEXTUR, clay fraction
    Type: Dataset
    Format: text/tab-separated-values, 168 data points
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  • 4
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    PANGAEA
    In:  Supplement to: McIntyre, Katherine; Ravelo, Ana Christina; Delaney, Margaret Lois (1999): North Atlantic intermediate waters in the Late Pliocene to Early Pleistocene. Paleoceanography, 14(3), 324-335, https://doi.org/10.1029/1998PA900005
    Publication Date: 2024-06-18
    Description: We generated benthic isotope records from Ocean Drilling Program (ODP) site 981 on the Feni drift (2173 m water depth) and from ODP site 983 on the Gardar drift (1983 m water depth) to examine the interaction between North Atlantic Deep Water (NADW) and Glacial North Atlantic Intermediate Water (GNAIW) formation from 2.0 to 1.4 Ma. We find NADW at both sites during interglacial periods, and a mix of NADW and Southern Ocean water at the Feini drift during most glacial periods. Prior to 1.7 Ma we find no evidence ofr GNAIW at the Gardar drift site. Instead, glacial Gardar drift delta13C values are as low or lower than values for all other sites in the North Atlantic and reflect continued glacial overflow from the Nordic seas. After 1.7 Ma Gardar drift delta13C values increase and suggest that there was GNAIW at the Gardar drift site during some glacial intervals. Overall, we find that NADW and GNAIW production changed around 1.7 Ma in concert with changes in sea surface temperature and salinity and in the Earth's obliquity cycle.
    Keywords: 162-981; 162-983; COMPCORE; Composite Core; Joides Resolution; Leg162; Ocean Drilling Program; ODP; South Atlantic Ocean
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 5
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    PANGAEA
    In:  Supplement to: McIntyre, Katherine; Ravelo, Ana Christina; Delaney, Margaret Lois; Anderson, Linda Davis; Johannessen, Truls (1997): Ground truthing the Cd/Ca-carbon isotope relationship in foraminifera of the Greenland-Iceland-Norwegian Seas. Marine Geology, 140(1-2), 61-73, https://doi.org/10.1016/S0025-3227(97)00004-2
    Publication Date: 2024-06-18
    Description: In order to examine whether the paleoceanographic nutrient proxies, d13C and cadmium/calcium in foraminiferal calcite, are well coupled to nutrients in the region of North Atlantic Deep Water formation, we present da ta from two transects of the Greenland-Iceland-Norwegian Seas. Along Transect A (74.3°N, 18.3°E to 75.0°N, 12.5°W, 15 stations), we measured phosphate and Cd concentrations of modern surface sea water. Along Transect B (64.5°N, 0.7°W to 70.4°N, 18.2°W, 14 stations) we measured Cd/Ca ratios and d13C of the planktonic foraminifera Neogloboquadrina pachyderma sinistral in core top sediments. Our results indicate that Cd and phosphate both vary with surface water mass and are well correlated along Transect A. Our planktonic foraminiferal d13C data indicate similar nutrient variation with water mass along Transect B. Our Cd/Ca data hint at the same type of nutrient variability, but interpretations are hampered by low values close to the detection limit of this technique and therefore relatively large error bars. We also measured Cd and phosphate concentrations in water depth profiles at three sites along Transect A and the d13C of the benthic foraminifera Cibicidoides wuellerstorfi along Transect B. Modern sea water depth profiles along Transect A have nutrient depletions at the surface and then constant values at depths greater than 100 meters. The d13C of planktonic and benthic foraminifera from Transect B plotted versus depth also reflect surface nutrient depletion and deep nutrient enrichment as seen at Transect A, with a small difference between intermediate and deep waters. Overall we see no evidence for decoupling of Cd/Ca ratio and d13C in foraminiferal calcite from water column nutrient concentrations along these transects in a region of North Atlantic Deep Water formation.
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 6
    Publication Date: 2024-06-18
    Keywords: 162-981; AGE; Cibicidoides wuellerstorfi, δ13C; Cibicidoides wuellerstorfi, δ18O; COMPCORE; Composite Core; Counting 〉150 µm fraction; DEPTH, sediment/rock; Grain size, sieving; Ice rafted debris; Isotope ratio mass spectrometry; Joides Resolution; Leg162; Ocean Drilling Program; ODP; Size fraction 〉 0.063 mm, sand; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 1080 data points
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  • 7
    Publication Date: 2024-06-18
    Keywords: 162-983; AGE; Cibicidoides wuellerstorfi, δ13C; Cibicidoides wuellerstorfi, δ18O; COMPCORE; Composite Core; DEPTH, sediment/rock; Grain size, sieving; Isotope ratio mass spectrometry; Joides Resolution; Leg162; Ocean Drilling Program; ODP; Size fraction 〉 0.063 mm, sand; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 873 data points
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  • 8
    Publication Date: 2024-06-18
    Keywords: Atomic absorption spectrometry (AAS), Perkin-Elmer; Cadmium; Cadmium, standard deviation; Comment; CTD; DEPTH, water; LATITUDE; LONGITUDE; Phosphate; Phosphate, standard deviation; Salinity; Site; Temperature, water; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 173 data points
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  • 9
    Publication Date: 2024-06-18
    Keywords: Area/locality; Atomic absorption spectrometry (AAS), Perkin-Elmer; Cadmium/Calcium ratio; Cadmium/Calcium ratio, standard deviation; Cibicidoides wuellerstorfi, δ13C; Cibicidoides wuellerstorfi, δ13C, standard deviation; Cibicidoides wuellerstorfi, δ18O; Cibicidoides wuellerstorfi, δ18O standard deviation; Comment; Depth, bathymetric; DEPTH, sediment/rock; LATITUDE; LONGITUDE; Mass spectrometer Finnigan MAT 251; Mass spectrometer VG Prism; Neogloboquadrina pachyderma sinistral, δ13C; Neogloboquadrina pachyderma sinistral, δ13C standard deviation; Neogloboquadrina pachyderma sinistral, δ18O; Neogloboquadrina pachyderma sinistral, δ18O standard deviation; Sample amount; Site
    Type: Dataset
    Format: text/tab-separated-values, 195 data points
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  • 10
    Publication Date: 2024-06-18
    Keywords: Atomic absorption spectrometry (AAS), Perkin-Elmer; Cadmium; Cadmium, standard deviation; DEPTH, water; LATITUDE; LONGITUDE; Phosphate; Phosphate, standard deviation; Site; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 174 data points
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  • 11
    Publication Date: 2024-06-17
    Description: Scientists have long attempted to explain why closely similar age patterns of death are characteristic of highly diverse human and nonhuman populations. Historical efforts to identify a general "law of mortality" from these patterns that applied across species ended in 1935 when it was declared that such a law did not exist. These early efforts were conducted using mortality curves based on all causes of death. The authors predict that if comparisons of mortality are based instead on "intrinsic" causes of death (i.e., deaths that reflect the basic biology of the organism), then age patterns of mortality consistent with the historical concept of a law might be revealed. Using data on laboratory animals and humans, they demonstrate that age patterns of intrinsic mortality overlap when graphed on a biologically comparable time scale. These results are consistent with the existence of a law of mortality following sexual maturity, as originally asserted by Benjamin Gompertz and Raymond Pearl. The societal, medical, and research implications of such a law are discussed.
    Type: Article , PeerReviewed
    Format: text
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  • 12
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    Universität Göttingen,Abteilung Bodenphysik
    In:  Universität Göttingen
    Publication Date: 2024-06-17
    Description: research
    Keywords: Quantitative Bestimmung ; Mikrobiellen Biomasse ; Böden ; Chloroform-Fumigations-Extraktions- Methode
    Language: German
    Type: doc-type:book
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  • 13
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    Universität Göttingen,Abteilung Bodenphysik
    In:  Universität Göttingen
    Publication Date: 2024-06-17
    Description: research
    Keywords: Depth ; Time Function ; MicrobialBiomass ; Ploughed ; Grassland Typudalfs ; Lower Saxony ; Germany
    Language: English
    Type: doc-type:book
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  • 14
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    Universität Göttingen,Abteilung Bodenphysik
    In:  Universität Göttingen
    Publication Date: 2024-06-17
    Description: research
    Keywords: Flüsse ; Klimarelevanten Gase ; C02 ; CH4 ; N20 ; Nordwestdeutschen ; Niedermoores ; Wiedervernässung
    Language: German
    Type: doc-type:book
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  • 15
    Publication Date: 2024-06-13
    Keywords: 0050PG; 0055PG; 0058PG; 0066PG; 0071PG; 0075PG; 0082PG; 0091PG; A150/180; A153-154; A156-007; A156-7TW; A157-3; A164-13; A164-15; A164-16; A164-17; A164-23; A167-12; A167-13; A167-18TW; A167-1TW; A179-13; A179-15; A179-20; A179-24; A179-6; A179-7; A180-13; A180-15; A180-20; A180-39; A180-69; A180-70; A180-72; A180-76; A180-78; A181/185; A181-7; A181-9; Agassiz; also published as VM28-122; AR1-119; AR1-144; AR2-113; AR2-117; AR2-128; AR2-136; AR3-25; AR3-45; AR4-55; AR4-63; Arabian Sea; Argo; ARIES; ARIES-046G; ARIES-049G; Aru Sea; AT_II-15_547; AT_II-15_552; AT_II-15_558; AT_II-15_559; AT_II-15_572; AT_II-15_585; AT_II-15_586; AT_II-15_591; AT_II-15_592; AT_II-15_597A; AT_II-15_597B; AT_II-15_600; AT_II-15_602; AT_II-15_602-10a; AT_II-15_612; AT_II-15_614; AT_II-15_618; AT_II-93-12-38-21; AT_II-93-12-43-26; AT_II-93-12-45-27; AT_II-93-12-46-28; AT_II-93-14-55-35; AT_USA; Atlantic; Atlantic Ocean; Atlantis (1931); Bay of Bengal; BC; Berggrenia pumilio; Box corer; Candeina nitida; CH09908-0064PC; CH09908-0065PC; CH09908-0066PC; CH09908-0068PC; CH09908-0070PC; CHN99-064; CHN99-065; CHN99-066; CHN99-068; CHN99-070; CHUB4; CHUBIV; CIRCE; CIRCE-18P; CIRCE-19PG; CIRCE-21; CIRCE-239; CIRCE-24; CIRCE-26; CIRCE-27; CIRCE-32; CIRCE-36; CIRCE-38; CIRCE-42; CIRCE-44; Counting, foraminifera, benthic; Counting, foraminifera, planktic; Counting, pteropods; Counting, radiolarians; D17-05; D17-06; D17-14; D17-15; D17-17; D17-23; D17-24; D17-25; D17-27; D17-28; D17-29; D17-30; D17-32; D17-33; D17-34; D17-35; D17-36; D17-39; D17-41; DEPTH, sediment/rock; DODO; DODO-117P; DODO-119PG; DODO-121PGA; DODO-126P; DODO-130G; DODO-144G; DODO-173G; DODO-191; DODO-192G; DODO-193; DODO-194; DODO-197; DODO-200V; DODO-201G; DODO-220V; DW010; DW013; DW017; DW026; DW034; DW035; DW036; DW048; DW050; DW058; DW074; DW079; DW082; DW089; DW123; DW130; DW134; DW137; DW147B; DWD-10HH; DWD-123; DWD-130; DWD-134; DWD-137G; DWD-13HH; DWD-147B; DWD-149; DWD-17; DWD-26; DWD-34HG; DWD-35HH; DWD-36HG; DWD-48HG; DWD-50HG; DWD-58HH; DWD-74; DWD-79; DWD-82; DWD-89HH-2; Eastern Equatorial Pacific; Elevation of event; ELT11.010; ELT11.064; ELT11.089; ELT-1110; ELT-1164; ELT-1189; ELT12.027; ELT12.046; ELT1227; ELT1246; ELT49; ELT49.022-PC; ELT49.023-PC; ELT49.024-PC; ELT49.025-PC; Eltanin; ERDC; ERDC-077BX; ERDC-079BX; ERDC-092BX; ERDC-102BX; ERDC-108BX; ERDC-112BX; ERDC-120BX; ERDC-123BX; ERDC-125BX; ERDC-128BX; ERDC-129BX; ERDC-131BX; ERDC-135BX; ERDC-136BX; ERDC-139BX; ERDC-141BX; Event label; FFC; Foraminifera, benthic; Foraminifera, planktic; Foraminifera, planktic, fragments; Free fall corer; GC; GGC; Giant gravity corer; Globigerina bulloides; Globigerina calida; Globigerina falconensis; Globigerina quinqueloba; Globigerina rubescens; Globigerinella adamsi; Globigerinella aequilateralis; Globigerinella digitata; Globigerinita glutinata; Globigerinita iota; Globigerinita uvula; Globigerinoides conglobatus; Globigerinoides ruber; Globigerinoides ruber pink; Globigerinoides ruber white; Globigerinoides sacculifer; Globigerinoides sacculifer sac; Globigerinoides sacculifer wo sac; Globigerinoides tenellus; Globoquadrina conglomerata; Globoquadrina hexagona; Globorotalia anfracta; Globorotalia crassaformis; Globorotalia crassula; Globorotalia hirsuta; Globorotalia inflata; Globorotalia menardii; Globorotalia menardii flexuosa; Globorotalia scitula; Globorotalia theyeri; Globorotalia truncatulinoides dextral; Globorotalia truncatulinoides sinistral; Globorotalia tumida; Grab; GRAB; Gravity corer; Horizon; Indian Ocean; INMD; INMD-040BX; INMD-042BX; INMD-048BX; INMD-050BX; INMD-051BX; INMD-055BX; INMD-056BX; INMD-064BX; INMD-065BX; INMD-067BX; INMD-068BX; INMD-069BX; INMD-070BX; INMD-072BX; INMD-073BX; INMD-074BX; INMD-094BX; INMD-097BX; INMD-098BX; INMD-100BX; KM1-41; KN11002; KN11002-0096PG; KN11002-0099PG; Knorr; KNR110-01; KNR110-02; KNR110-05; KNR110-06; KNR110-07; KNR110-08; KNR110-09; KNR110-10; KNR110-11; KNR110-12; KNR110-14; KNR110-15; KNR110-16; KNR110-17; KNR110-18; KNR110-20; KNR110-21; KNR110-23; KNR110-24; KNR110-26; KNR110-27; KNR110-28; KNR110-30; KNR110-32; KNR110-33; KNR110-40; KNR110-43; KNR110-45; KNR110-46; KNR110-50; KNR110-51; KNR110-53; KNR110-54; KNR110-55; KNR110-56; KNR110-57; KNR110-58; KNR110-61; KNR110-62; KNR110-63; KNR110-64; KNR110-66; KNR110-71; KNR110-72; KNR110-73; KNR110-75; KNR110-77; KNR110-81; KNR110-82; KNR110-89; KNR110-91; KNR110-93; KNR110-95; KNR110-96; KNR110-99; Lakshadweep Sea; Latitude of event; Longitude of event; LSDA; LSDA-103V; LSDA-106G; LSDA-107GA; LSDA-113G; LSDA-117G; LSDA-128G; LSDA-129G; LSDA-131G; LSDA-133GA; LSDA-136G; LSDH; LSDH-001VB; LSDH-009TW; LSDH-025V; LSDH-033G; LSDH-038G; LSDH-058G; LSDH-062G; LSDH-064PG; LSDH-065V; LSDH-066PG; LSDH-067P; LSDH-068PG; LSDH-076PG; LSDH-077G; LSDH-078PG; LSDH-079PG; LUSIAD-A; LUSIAD-H; Marion Dufresne (1972); MD10; MD13; MD76-132; MD76-135; MD77-168; MD77-169; MD77-170; MD77-171; MD77-174; MD77-176; MD77-179; MD77-181; MD77-185; MD77-191; MD77-196; MD77-199; MD77-204; Melville; MOANAWAVE04; MOANAWAVE05; MOANAWAVE06; MOANAWAVE07; MOANAWAVE08; MOANAWAVE09; MOANAWAVE10; MOANAWAVE11; MOANAWAVE12; MOANAWAVE13; MOANAWAVE14; MOANAWAVE15; MOANAWAVE18; MOANAWAVE19; MOANAWAVE20; MOANAWAVE23; MOANAWAVE24; MOANAWAVE25; MOANAWAVE26; MOANAWAVE29; MOANAWAVE31; MOANAWAVE32; MOANAWAVE35; MOANAWAVE36; MOANAWAVE40; MOANAWAVE42; MOANAWAVE44; MONAWAVE07; MONAWAVE14; MONAWAVE15; MONAWAVE18; MONAWAVE19; MONAWAVE20; MONAWAVE23; MONAWAVE24; MONAWAVE25; MONAWAVE26; MONAWAVE29; MONAWAVE31; MONAWAVE32; MONAWAVE35; MONAWAVE36; MONAWAVE40; MONAWAVE42; MONAWAVE44; MONS01AR-MONS08AR; MONSOON; MP10-1; MP-10-1; MP33; MP-33; MSN-104P; MSN-126G; MSN-128G; MSN-135PG; MSN-136G; MSN-137P; MSN-138P; MSN-45G; MSN-55G; MSN-56P; MSN-63G; MSN-90G; MSN-92PG; MSN-93G; MUC; MUK-19BP; MUK-20BP; MUKBP19; MUKBP20; MultiCorer; NEL9; NEL-H5; Neogloboquadrina dutertrei; Neogloboquadrina pachyderma dextral; Neogloboquadrina pachyderma sinistral; Orbulina universa; OSIRIS II; OSIRIS III; Pacific Ocean; PC; Piston corer; PROA; PROA-048G; PROA-057G; PROA-066G; PROA-067G; PROA-083PG; PROA-084PG; PROA-085PG-1; PROA-087PG; PROA-088PG; PROA-118G; PROA-122G; PROA-124G1; PROA-147G; PROA-149G; PROA-151G; PROA-155G; PROA-156G; Pteropoda sp.; Pulleniatina obliquiloculata; Radiolarians; RC07; RC0701-RC0708; RC07-21; RC08; RC08-106; RC08-16; RC08-18; RC08-22; RC08-23; RC08-27; RC08-28; RC08-39; RC08-40; RC08-41; RC08-46; RC08-50; RC08-51; RC08-52; RC08-53; RC08-60; RC08-61; RC08-62; RC08-63; RC08-64; RC08-91; RC08-93; RC09; RC09-019; RC09-104; RC09-121; RC09-124; RC09-125; RC09-126; RC09-133; RC09-134; RC09-139; RC09-140; RC09-143; RC09-144; RC09-147; RC09-150; RC09-155; RC09-161; RC09-162; RC09-163; RC09-17; RC09-18; RC09-19; RC09-212; RC09-22; RC09-222; RC09-225; RC09-24; RC09-25; RC09-28; RC09-29; RC09-30; RC09-32; RC09-61; RC09-7; RC09-77; RC10; RC10-131; RC10-135; RC10-139; RC10-140; RC10-141; RC10-142; RC10-143; RC10-144; RC10-146; RC10-149; RC10-161; RC10-162; RC10-172; RC10-175; RC10-22; RC10-250; RC10-256; RC10-262; RC10-263; RC10-264; RC10-265; RC10-266; RC10-267; RC10-268; RC10-269; RC10-270; RC10-49; RC10-53; RC10-54; RC11; RC11-10; RC11-103; RC11-106; RC11-11; RC11-111; RC11-116; RC11-117; RC11-118; RC1112; RC11-12; RC11-120; RC11-121; RC11-122; RC11-123; RC11-124; RC11-125; RC11-126; RC11-128; RC11-13; RC11-134; RC11-138; RC11-14; RC11-141; RC11-145; RC11-146; RC11-15; RC11-150; RC11-156; RC11-158; RC11-16; RC11-160; RC11-162; RC11-187; RC11-21; RC11-211; RC11-217; RC11-220; RC11-227; RC11-22TW; RC11-230; RC11-232; RC11-237; RC11-255; RC11-26; RC11-260; RC11-35; RC11-37; RC11-78; RC11-79; RC11-80; RC11-82; RC11-84; RC11-86; RC11-9; RC11-99; RC12; RC12-10; RC12-107; RC12-109; RC12-113; RC12-12; RC12-121; RC12-122; RC12-123; RC12-124; RC12-138; RC12-139; RC12-143; RC12-146; RC12-173; RC12-18; RC12-19; RC12-210; RC12-233; RC12-235; RC12-241; RC12-266; RC12-268; RC12-291; RC12-292; RC12-293; RC12-294; RC12-297; RC12-298; RC12-299; RC12-300; RC12-303; RC12-
    Type: Dataset
    Format: text/tab-separated-values, 63125 data points
    Location Call Number Expected Availability
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  • 16
    Publication Date: 2024-06-13
    Keywords: A150/180; A152-84; A153-154; A15-547TW; A15-552TW; A15-558P; A15-558TW; A15-559FF; A15-572FF; A15-585GC; A15-586TW; A15-590GC; A15-591GC; A15-592FF; A15-596FF; A15-597A; A15-597B; A15-600FF; A15-602FF; A15-612GC; A15-614TW; A15-618GC; A157-3; A164-13; A164-15; A164-16; A164-17; A164-23; A167-12; A167-13; A167-18TW; A167-1TW; A179-13; A179-15; A179-20; A179-24; A179-6; A179-7; A180-13; A180-15; A180-20; A180-39; A180-69; A180-70; A180-72; A180-76; A180-78; A181/185; A181-7; A181-9; A260210A; Agassiz; AH-1; AH-4; AH-5; AH-7; AH-8; All5402P; All5423P; All5424P; All542P; AMPH-005G; AMPH-007PG; AMPH-011P; AMPH-012G; AMPH-013G; AMPH-016G; AMPH-017G; AMPH-019G; AMPH01AR; AMPH-021G; AMPH-022G; AMPH-023G; AMPH-024G; AMPH-107G; AMPH-130G; AMPH-131G; AMPH-132G; AMPH-133G; AMPH-134G; AMPH-135GV; AMPH-137GV; AMPH-138GV; AMPH-139GV; AMPHITRITE; AR1-117; AR1-119; AR1-144; AR2-113; AR2-117; AR2-128; AR2-136; AR3-25; AR3-38; AR3-45; AR4-52; AR4-55; AR4-56; AR4-63; Argo; ARIES; ARIES-046G; ARIES-049G; Atlantic; Atlantic Ocean; Bay of Bengal; BC; Box corer; BRA-262D; BRA-91AD; BRA-91D; BRA-96D; CAP-1BG; CAP-1HG; CAP-2-1BG; CAP-32HG; CAP-3HG; CAP-42-1; CAP-44BG; CAP-48-2; CAP-48HG; CAP-49BG; CAP-4BG; CAP-50HG; CAP-5HG; CAP-6HG; CAP-8-2; CH10098P; CH10-98; CHA-164B; CHA-296; CHA-300; CHA-302; Challenger1872; CHM-5; CHU-23; CHU-23G; CHU-24; CHU-26; CHU-30; CHU-X1; CIRCE; CIRCE-21; CIRCE-239; CIRCE-24; CIRCE-26; CIRCE-27; CIRCE-32; CIRCE-36; CIRCE-38; CIRCE-42; CIRCE-44; Counting; CUS-3G; DEPTH, sediment/rock; DIS-385D; DIS-386D; DODO; DODO-117PG; DODO-119PG; DODO-126PG; DODO-144G; DODO-173G; DODO-191; DODO-192G; DODO-193; DODO-195G; DODO-197; DODO-200V; DODO-201G; DODO-202V; DODO-204; DODO-220V; DW010; DW013; DW034; DW035; DW036; DW048; DW050; DW058; DW137; DW147B; DWD-100B; DWD-108B; DWD-10BG; DWD-10HH; DWD-11BG; DWD-12BG; DWD-12HH; DWD-137G; DWD-13BG; DWD-13HH; DWD-143; DWD-147B; DWD-149; DWD-15BG; DWD-16BG; DWD-34HG; DWD-35HH; DWD-36HG; DWD-46BG; DWD-47B; DWD-47BG; DWD-48BG; DWD-48HG; DWD-49BG; DWD-50HG; DWD-54HG; DWD-56BG; DWD-56HG; DWD-58BG; DWD-58HH; DWD-59BG; DWD-60BG; DWD-61BG; DWD-62BG; DWD-63BG; DWD-64BG; DWD-68BG; DWD-70BG; DWD-71BG; DWD-73BG; DWD-74BG; DWD-75BG; DWD-76BG; DWD-77BG; DWD-78BG; DWD-79BG; DWD-83BG; DWD-89HH; DWD-93BG; Eastern Equatorial Pacific; Elevation of event; ELT11.010; ELT11.064; ELT11.089; ELT-1101; ELT-1110; ELT-1164; ELT-1189; ELT-1246; ELT-1271; ELT44; ELT44.027-PC; ELT45; ELT45.029-PC; ELT45.070-PC; ELT45.073-PC; ELT45.077-PC; ELT45.081-PC; ELT49; ELT49.022-PC; ELT49.023-PC; ELT49.024-PC; ELT49.025-PC; Eltanin; ELT-C100; EQA-27; Event label; FANHMS2G; FANHMS4G; FFC; Free fall corer; GC; Globigerina bulloides; Globigerina calida; Globigerina digitata; Globigerina falconensis; Globigerina quinqueloba; Globigerina rubescens; Globigerinella aequilateralis; Globigerinita glutinata; Globigerinoides conglobatus; Globigerinoides ruber; Globigerinoides sacculifer; Globigerinoides tenellus; Globoquadrina conglomerata; Globoquadrina hexagona; Globorotalia crassaformis; Globorotalia hirsuta; Globorotalia inflata; Globorotalia scitula; Globorotalia truncatulinoides dextral; Globorotalia truncatulinoides sinistral; Grab; GRAB; Gravity corer; H.M.S. Challenger (1872); Horizon; Indian Ocean; JAPANYON; JSB-5P; JSB-6P; JYN2; JYN2-007G; JYN5-019G; KM1-41; KNR073-04-003; KNR733P; Knr735P; KNR735P; Latitude of event; LFGS; LFGS-36G; LFGS-38G; LFGS-45G; Longitude of event; LSDA; LSDA-103V; LSDA-106G; LSDA-107GA; LSDA-113G; LSDA-117G; LSDA-128G; LSDA-136G; LSDA-SCS; LSDA-SCS-002G; LSDA-SCS-003G; LSDA-SCS-006G; LSDA-SCS-008G; LSDA-SCS-009G; LSDA-SCS-013D; LSDH; LSDH-009G; LSDH-025V; LSDH-038V; LSDH-077G; LSDH-078PG; LSDH-079P; LSDH-079PG; LSDH-080G; LSDH-093PG; LSDH-104G; LUSIAD-A; LUSIAD-H; M70-68; M70-PC-49; M70-PC-61; Marion Dufresne (1972); MD10; MD13; MD76-132; MD76-135; MD77-168; MD77-169; MD77-170; MD77-171; MD77-174; MD77-176; MD77-179; MD77-181; MD77-185; MD77-191; MD77-196; MD77-199; MD77-202; MD77-203; MD77-204; MDPC03HO-043K; Melville; MEN; MEN-08G; MEN-11G; MEN-12G; MIDPAC; MONS01AR-MONS08AR; MONSOON; MPC-0-1; MPC-0-2; MPC-10-1; MPC-1-1; MPC-11-1; MPC-43K; MPC-45; MSN-100G; MSN-103P; MSN-104P; MSN-109P; MSN-10G; MSN-135P; MSN-136G; MSN-137P; MSN-138P; MSN-141G; MSN-14G; MSN-45G; MSN-52G; MSN-55G; MSN-56PG; MSN-63G; MSN-90G; MSN-93G; mt1-gyre; MT1-gyre; mt1-mid; MT1-mid; mt1-nrsh; MT1-nrsh; MUK-19BP; MUK-20BP; MUK-27HG; NEL-394D; Neogloboquadrina dutertrei; Neogloboquadrina pachyderma dextral; Neogloboquadrina pachyderma sinistral; NZO-A106; NZO-A181; NZO-A315; Orbulina universa; OSIRIS II; OSIRIS III; Pacific Ocean; PAP-127V; PAP-14; PAP-19; PC; Piston corer; PLDS-001G; PLDS-1; Pleiades; PROA; PROA-011P; PROA-079PG; PROA-083PG; PROA-084PG; PROA-085PG-1; PROA-086P; PROA-086PG; PROA-087PG; PROA-088PG; PROA-089PG; PROA-103PG; PROA-118G; PROA-122G; PROA-124G1; PROA-146G; PROA-147G; PROA-149G; PROA-151G; PROA-155G; PROA-156G; PROA-160G; Pulleniatina obliquiloculata; RC0-113; RC0-117; RC0-121; RC08; RC08-102; RC08-103; RC08-16; RC08-18; RC08-22; RC08-23; RC08-27; RC08-28; RC08-39; RC08-40; RC08-41; RC08-46; RC08-50; RC08-53; RC08-60; RC08-61; RC08-62; RC08-63; RC09; RC09-139; RC09-14; RC09-143; RC09-155; RC09-160; RC09-161; RC09-162; RC09-163; RC09-212; RC09-222; RC09-225; RC09-61; RC09-67; RC10; RC10-139; RC10-140; RC10-141; RC10-142; RC10-143; RC10-146; RC10-161; RC10-162; RC10-172; RC10-175; RC10-176; RC10-22; RC10-49; RC10-52; RC10-53; RC10-54; RC10-56; RC10-62; RC10-64; RC11; RC11-10; RC11-103; RC11-106; RC11-11; RC11-111; RC11-116; RC11-117; RC1112; RC11-12; RC11-121; RC11-122; RC11-128; RC11-13; RC11-134; RC11-138; RC11-139; RC11-14; RC11-141; RC11-145; RC11-146; RC11-147; RC11-15; RC11-16; RC11-160; RC11-162; RC11-21; RC11-22; RC11-230; RC11-238; RC11-255; RC11-26; RC11-260; RC11-35; RC11-37; RC11-78; RC11-79; RC11-80; RC11-86; RC11-9; RC12; RC12-121; RC12-138; RC12-139; RC12-143; RC12-146; RC12-233; RC12-235; RC12-241; RC12-266; RC12-268; RC12-291; RC12-292; RC12-293; RC12-294; RC12-297; RC12-298; RC12-299; RC12-300; RC12-303; RC12-304; RC12-328; RC12-33; RC12-330; RC12-331; RC12-332; RC12-333; RC12-335; RC12-339; RC12-340; RC12-341; RC12-342; RC12-343; RC12-344; RC12-347; RC12-350; RC12-365; RC12-366; RC12-417; RC12-418; RC12-45; RC13; RC13-108; RC13-110; RC13-113; RC13-115; RC13-122; RC13-136; RC13-138; RC13-140; RC13-158; RC13-17; RC13-189; RC13-190; RC13-195; RC13-196; RC13-197; RC13-199; RC13-209; RC13-210; RC13-229; RC13-242; RC13-253; RC13-275; RC14; RC14-29; RC14-31TW; RC14-33TW; RC14-34TW; RC14-35; RC14-35TW; RC14-36; RC14-37TW; RC14-39; RC14-39TW; RC14-44TW; RC14-79TW; RC14-92; RC14-93; RC14-94; RC14-97; RC15; RC15-115; RC15-143; RC15-145; RC15-151; RC15-91; RC15-93; RC15-94; RC17; RC17-101; RC17-102; RC17-103; RC17-104; RC17-105; RC17-110; RC17-113; RC17-114; RC17-116; RC17-121; RC17-123; RC17-125; RC17-126; RC17-127; RC17-132; RC17-142; RC17-144; RC17-145; RC17-176; RC17-177; RC17-178; RC17-69; RC18; RC18-47; RE009-7; RIS-101; RIS-103; RIS-104; RIS-105; RIS-106; RIS-108; RIS-121V; RIS-14; RIS-15G; RIS-17; RIS-17G; RIS-21G; RIS-24; RIS-29G; RIS-32; RIS-33; RIS-34; RIS-35; RIS-51G; Robert Conrad; SCAN; SCAN-015P; SCAN-022PG; SCAN-023PG; SCAN-025G; SCAN-026G; SCAN-027G; SCAN-028G; SCAN-059P; SCAN-065G; SCAN-066G; SCAN-067G; SCAN-068G; SCAN-082P; SCAN-083P; SCAN-084P; SCAN-085P; SCAN-086P; SCAN-087P; SCAN-088P; SCAN-091G; SCAN-094P; SCAN-095G; SCAN-096P; SDS-93P; SDS-95P; SDS-97P; SDS-98P; Sea surface temperature, annual mean; see comment; SOB; SOB-009G; SOB-026GA; SOB-031GA; South Atlantic Ocean; Southern Borderland; South Pacific Ocean; SP009-003; SP010-005; Spencer F. Baird; Sphaeroidinella dehiscens; Stranger; STYX_III; STYX_IX; STYX03AZ; STYX09AZ; STYXIII-75G; STYXIII-77P; STYXIII-80FF-34; STYXIII-81FF-41; STYXIII-81FF-44; STYXIII-84G; STYXIX-4CBX; T29-17P; T29-19P; T29-20P; T29-22P; T29-4P; T29-5P; T39-15P; T39-17P; T39-18P; T39-22P; T39-23P; T39-24P; T39-25P; TC; TET_38G; TET_41G; TET_43G; TET_44G; TET-4G; TET-5G; TET-6G; TET-
    Type: Dataset
    Format: text/tab-separated-values, 30321 data points
    Location Call Number Expected Availability
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  • 17
    Publication Date: 2024-06-13
    Keywords: A150/180; A153-154; A15-547TW; A15-552TW; A15-558P; A15-558TW; A15-559FF; A15-572FF; A15-585GC; A15-586TW; A15-590GC; A15-591GC; A15-592FF; A15-596FF; A15-597A; A15-597B; A15-600FF; A15-602FF; A15-612GC; A15-614TW; A15-618GC; A164-13; A164-15; A164-16; A164-17; A164-23; A167-12; A167-13; A167-18TW; A167-1TW; A179-13; A179-15; A179-24; A179-6; A179-7; A180-13; A180-20; A180-39; A180-69; A180-72; A180-76; A180-78; A181/185; A181-7; A181-9; A260210A; All5402P; All5423P; All5424P; All542P; AMPH-011P; AMPH-012G; AMPH-013G; AMPH-016G; AMPH-017G; AMPH-019G; AMPH01AR; AMPH-021G; AMPH-022G; AMPH-023G; AMPH-024G; AMPHITRITE; AR1-117; AR1-119; AR1-144; AR2-113; AR2-117; AR2-136; AR3-25; AR3-38; AR3-45; AR4-52; AR4-55; AR4-56; AR4-63; Argo; ARIES; ARIES-046G; ARIES-049G; Atlantic; Atlantic Ocean; Bay of Bengal; Calculated, see reference(s); CAP-44BG; CAP-4BG; CAP-5HG; CAP-6HG; CH10098P; CH10-98; CIRCE; CIRCE-21; CIRCE-239; CIRCE-24; CIRCE-26; CIRCE-32; CIRCE-36; CIRCE-38; CIRCE-42; CIRCE-44; DEPTH, sediment/rock; DODO; DODO-117PG; DODO-119PG; DODO-126P; DODO-144G; DODO-173G; DODO-191; DODO-192G; DODO-193; DODO-195G; DODO-197; DODO-200V; DODO-201G; DODO-202V; DODO-204; DODO-220V; DW013; DW089; DW137; DW147B; DWD-11BG; DWD-137G; DWD-13HH; DWD-143; DWD-147B; DWD-15BG; DWD-47B; DWD-54HG; DWD-89HH; DWD-89HH-2; DWD-93BG; Eastern Equatorial Pacific; Elevation of event; Event label; FANHMS2G; FANHMS4G; FFC; Free fall corer; GC; Grab; GRAB; Gravity corer; Horizon; Indian Ocean; KM1-41; KNR073-04-003; KNR733P; Knr735P; KNR735P; LATITUDE; LONGITUDE; LSDA; LSDA-103V; LSDA-106G; LSDA-107GA; LSDA-113G; LSDA-117G; LSDA-136G; LSDA-SCS; LSDA-SCS-002G; LSDA-SCS-003G; LSDH; LSDH-025V; LSDH-038V; LSDH-076PG; LSDH-077G; LSDH-078PG; LSDH-079PG; LSDH09; LSDH-104G; LUSIAD-9; LUSIAD-A; LUSIAD-H; Marion Dufresne (1972); MD10; MD13; MD76-132; MD76-135; MD77-168; MD77-169; MD77-170; MD77-171; MD77-174; MD77-176; MD77-179; MD77-181; MD77-185; MD77-191; MD77-196; MD77-199; MD77-202; MD77-203; MD77-204; Melville; MONS01AR-MONS08AR; MONSOON; MSN-45G; MSN-52G; MSN-55G; MSN-56PG; MSN-63G; OSIRIS II; OSIRIS III; PAP-127V; PAP-14; PAP-19; PC; Piston corer; PLDS-001G; PLDS-1; Pleiades; PROA; PROA-084PG; PROA-085PG-1; PROA-118G; PROA-122G; PROA-124G1; PROA-149G; PROA-155G; RC0-117; RC08; RC08-102; RC08-103; RC08-16; RC08-18; RC08-22; RC08-23; RC08-27; RC08-28; RC08-53; RC08-60; RC09; RC09-155; RC09-160; RC09-161; RC09-162; RC09-61; RC09-67; RC10; RC10-139; RC10-140; RC10-141; RC10-142; RC10-146; RC10-161; RC10-162; RC10-172; RC10-175; RC10-176; RC10-22; RC10-49; RC10-52; RC10-53; RC10-54; RC10-56; RC10-62; RC10-64; RC11; RC11-10; RC11-106; RC11-11; RC11-111; RC11-116; RC11-117; RC1112; RC11-12; RC11-122; RC11-128; RC11-13; RC11-138; RC11-14; RC11-145; RC11-146; RC11-147; RC11-15; RC11-16; RC11-160; RC11-162; RC11-21; RC11-22; RC11-230; RC11-238; RC11-255; RC11-26; RC11-260; RC11-35; RC11-37; RC11-86; RC11-9; RC12; RC12-138; RC12-139; RC12-143; RC12-146; RC12-266; RC12-268; RC12-297; RC12-298; RC12-299; RC12-300; RC12-303; RC12-304; RC12-328; RC12-330; RC12-331; RC12-332; RC12-333; RC12-335; RC12-339; RC12-340; RC12-341; RC12-342; RC12-343; RC12-344; RC12-347; RC12-350; RC12-417; RC12-418; RC12-45; RC13; RC13-108; RC13-110; RC13-113; RC13-115; RC13-122; RC13-136; RC13-138; RC13-140; RC13-158; RC13-17; RC13-189; RC13-190; RC13-195; RC13-196; RC13-197; RC13-199; RC13-209; RC13-210; RC13-229; RC13-242; RC14; RC14-29; RC14-31; RC14-33; RC14-34; RC14-35; RC14-36; RC14-37; RC14-39; RC14-44; RC14-92; RC14-93; RC14-94; RC14-97; RC15; RC15-143; RC15-145; RC15-151; RC17; RC17-101; RC17-102; RC17-103; RC17-104; RC17-105; RC17-110; RC17-113; RC17-114; RC17-116; RC17-121; RC17-123; RC17-125; RC17-126; RC17-127; RC17-132; RC17-142; RC17-144; RC17-145; RC17-176; RC17-177; RC17-178; RC18; RC18-47; RIS-121V; RIS-15G; RIS-17G; RIS-21G; RIS-32; RIS-33; RIS-34; RIS-35; Robert Conrad; SCAN; SCAN-022PG; SCAN-023PG; SCAN-025G; SCAN-026G; SCAN-027G; SCAN-028G; SCAN-084PG; SCAN-088PG; SCAN-091G; SCAN-096P; SDS-95P; SDS-97P; Sea surface temperature, annual mean; Sea surface temperature, residual; SOB; SOB-026GA; South Atlantic Ocean; Southern Borderland; South Pacific Ocean; Spencer F. Baird; TC; TET_38G; TETH02BD; TETH02BD-038G; TETHYS_2; Thomas Washington; TRI-02G; Trigger corer; TRIP03AR; TRIPOD_3; TSDY-12G; TSP-97G; V03; V03-128; V04; V04-12; V04-32; V04-8; V05; V05-1; V05-31; V06; V06-5; V07; V07-13; V07-42; V07-53; V07-67; V09; V09-31; V10; V10-88; V10-89; V12; V12-122; V12-18; V12-4; V12-66; V12-7; V12-79; V12-80; V14; V14-100; V14-101; V14-102; V14-103; V14-104; V14-105; V14-106; V14-107; V14-108; V14-4; V14-5; V14-7; V14-77; V14-81; V14-95; V14-97; V14-98; V15; V15-164; V15-206; V15-23; V15-30; V16; V16-189; V16-190; V16-20; V16-200; V16-205; V16-206; V16-209; V16-21; V16-23; V16-31; V16-33; V16-35; V16-36; V16-37; V16-39; V16-41; V16-50; V16-67; V16-84; V16-86; V16-87; V16-88; V16-94; V16-95; V16-96; V17; V17-1; V17-147; V17-158; V17-162; V17-163; V17-164; V17-165; V18; V18-16; V18-182; V18-186; V18-188; V18-191; V18-21; V18-215; V18-312; V18-318; V18-34; V18-350; V18-353; V18-373; V19; V19-176; V19-177; V19-178; V19-183; V19-184; V19-185; V19-200; V19-201; V19-202; V19-209; V19-240; V19-242; V19-245; V19-246; V19-248; V19-25; V19-262; V19-27; V19-283; V19-29; V19-296; V19-308; V20; V20-103; V20-133; V20-170; V20-171; V20-174; V20-175; V20-177; V20-213; V20-227; V20-228; V20-230; V20-233; V20-234; V20-235; V20-242; V20-253; V20-7; V20-96; V21; V21-105; V21-107; V21-109; V21-210; V21-212; V21-26; V21-28; V21-29; V21-31; V21-34; V21-39; V21-41; V21-79; V21-83; V21-84; V21-85; V21-93; V22; V22-122; V22-168; V22-169; V22-172; V22-175; V22-177; V22-179; V22-180; V22-182; V22-188; V22-202; V22-204; V22-211; V22-219; V22-232; V22-24; V22-26; V22-36; V22-38; V22-71; V23; V23-101; V23-105; V23-107; V24; V24-109; V24-110; V24-117; V24-139; V24-143; V24-148; V24-149; V24-150; V24-151; V24-221; V24-237; V24-241; V24-48; V24-8; V24-96; V25; V25-24; V25-46; V26; V26-100; V26-165; V26-31; V26-51; V26-53; V26-55; V26-63; V26-68; V27; V27-143; V27-144; V27-162; V27-164; V27-167; V27-172; V27-175; V27-178; V27-181; V27-184; V27-188; V27-190; V27-206; V27-215; V27-227; V27-228; V27-233; V27-234; V27-239; V27-248; V27-254; V27-266; V28; V28-124; V28-144; V28-146; V28-147; V28-148; V28-152; V28-153; V28-168; V28-229; V28-230; V28-231; V28-232; V28-233; V28-234; V28-235; V28-246; V28-248; V28-250; V28-252; V28-259; V28-260; V28-261; V28-262; V28-292; V28-296; V28-297; V28-304; V28-308; V28-309; V28-311; V28-342; V28-345; V28-358; V28-98; V29; V29-134; V29-135; V29-144; V29-15; V29-167; V29-170; V29-25; V29-26; V29-29; V29-30; V29-44; V29-45; V29-48; V29-6; V29-93; V30; V30-49; V30-52; V30-54; V30-56; V30-58; V30-59; V30-61; V30-62; V30-64; V30-65; V30-67; V30-68; V32; V32-126; V32-127; V32-130; V32-139; V32-173; V32-174; V34; V34-100; V34-101; V34-106; V34-109; V34-111; V34-113; V34-114; V34-124; V34-48; V34-49; V34-51; V34-52; V34-53; V34-54; V34-55; V34-56; V34-57; V34-58; V34-80; V34-82; V34-83; V34-85; V34-87; V34-88; V34-89; V34-90; V34-91; V34-92; Vema; VNTR01; VNTR01-8PC; Y69-106P; Y69-71P; Y69-86P; Y71-06; Y71-06-12; Y71-09; Y71-09-101; Y73-03; Y73-03-006; Y73-04; Y73-04-034P; YALOC69; Yaquina; ZETES; ZTES03AR; ZTES-3G; ZTS3
    Type: Dataset
    Format: text/tab-separated-values, 1358 data points
    Location Call Number Expected Availability
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  • 18
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Mix, Alan C; Morey, Ann E; Pisias, Nicklas G; Hostetler, Steven W (1999): Foraminiferal faunal estimates of paleotemperature: Circumventing the no-analog problem yields cool ice age tropics. Paleoceanography, 14(3), 350-359, https://doi.org/10.1029/1999PA900012
    Publication Date: 2024-06-13
    Description: The sensitivity of the tropics to climate change, particularly the amplitude of glacial-to-interglacial changes in sea surface temperature (SST), is one of the great controversies in paleoclimatology. Here we reassess faunal estimates of ice age SSTs, focusing on the problem of no-analog planktonic foraminiferal assemblages in the equatorial oceans that confounds both classical transfer function and modern analog methods. A new calibration strategy developed here, which uses past variability of species to define robust faunal assemblages, solves the no-analog problem and reveals ice age cooling of 5° to 6°C in the equatorial current systems of the Atlantic and eastern Pacific Oceans. Classical transfer functions underestimated temperature changes in some areas of the tropical oceans because core-top assemblages misrepresented the ice age faunal assemblages. Our finding is consistent with some geochemical estimates and model predictions of greater ice age cooling in the tropics than was inferred by Climate: Long-Range Investigation, Mapping, and Prediction (CLIMAP) [1981] and thus may help to resolve a long-standing controversy. Our new foraminiferal transfer function suggests that such cooling was limited to the equatorial current systems, however, and supports CLIMAP's inference of stability of the subtropical gyre centers.
    Keywords: 138-846B; A150/180; A152-84; A153-154; A15-547TW; A15-552TW; A15-558; A15-558P; A15-558TW; A15-559FF; A15-572FF; A15-585GC; A15-586TW; A15-590GC; A15-591GC; A15-592FF; A15-596FF; A15-597A; A15-597B; A15-600FF; A15-602FF; A15-612GC; A15-614TW; A15-618GC; A156-4; A157-3; A164-13; A164-15; A164-16; A164-17; A164-23; A164-24; A164-5; A164-6; A164-61; A167-12; A167-13; A167-14; A167-18TW; A167-1TW; A172-1; A172-2; A173-4; A179-13; A179-15; A179-20; A179-24; A179-6; A179-7; A180-13; A180-15; A180-16; A180-20; A180-32; A180-39; A180-47; A180-47PC; A180-48; A180-48PC; A180-56; A180-69; A180-70; A180-72; A180-73; A180-74; A180-76; A180-78; A180-9; A181/185; A181-7; A181-9; A260210A; Agassiz; AH-1; AH-4; AH-5; AH-7; AH-8; All5402P; All5423P; All5424P; All542P; also published as VM28-122; AMPH-005G; AMPH-007PG; AMPH-011P; AMPH-012G; AMPH-013G; AMPH-016G; AMPH-017G; AMPH-019G; AMPH01AR; AMPH-021G; AMPH-022G; AMPH-023G; AMPH-024G; AMPH-107G; AMPH-130G; AMPH-131G; AMPH-132G; AMPH-133G; AMPH-134G; AMPH-135GV; AMPH-137GV; AMPH-138GV; AMPH-139GV; AMPHITRITE; AR1-117; AR1-119; AR1-144; AR2-113; AR2-117; AR2-128; AR2-136; AR3-25; AR3-38; AR3-45; AR4-52; AR4-55; AR4-56; AR4-63; Argo; ARIES; ARIES-046G; ARIES-049G; Atlantic; Atlantic Ocean; Bay of Bengal; BC; Box corer; BRA-262D; BRA-91AD; BRA-91D; BRA-96D; CAP-1BG; CAP-1HG; CAP-2-1BG; CAP-32HG; CAP-3HG; CAP-42-1; CAP-44BG; CAP-48-2; CAP-48HG; CAP-49BG; CAP-4BG; CAP-50HG; CAP-5HG; CAP-6HG; CAP-8-2; CH10098P; CH10-98; CHA-164B; CHA-296; CHA-300; CHA-302; Challenger1872; CHM-5; CHU-23; CHU-23G; CHU-24; CHU-26; CHU-30; CHU-X1; CIRCE; CIRCE-21; CIRCE-239; CIRCE-24; CIRCE-26; CIRCE-27; CIRCE-32; CIRCE-36; CIRCE-38; CIRCE-42; CIRCE-44; CUS-3G; DIS-385D; DIS-386D; DODO; DODO-117PG; DODO-119PG; DODO-126P; DODO-126PG; DODO-144G; DODO-173G; DODO-191; DODO-192G; DODO-193; DODO-195G; DODO-197; DODO-200V; DODO-201G; DODO-202V; DODO-204; DODO-220V; DRILL; Drilling/drill rig; DW010; DW013; DW034; DW035; DW036; DW048; DW050; DW058; DW089; DW137; DW147B; DWD-100B; DWD-108B; DWD-10BG; DWD-10HH; DWD-11BG; DWD-12BG; DWD-12HH; DWD-137G; DWD-13BG; DWD-13HH; DWD-143; DWD-147B; DWD-149; DWD-15BG; DWD-16BG; DWD-34HG; DWD-35HH; DWD-36HG; DWD-46BG; DWD-47B; DWD-47BG; DWD-48BG; DWD-48HG; DWD-49BG; DWD-50HG; DWD-54HG; DWD-56BG; DWD-56HG; DWD-58BG; DWD-58HH; DWD-59BG; DWD-60BG; DWD-61BG; DWD-62BG; DWD-63BG; DWD-64BG; DWD-68BG; DWD-70BG; DWD-71BG; DWD-73BG; DWD-74BG; DWD-75BG; DWD-76BG; DWD-77BG; DWD-78BG; DWD-79BG; DWD-83BG; DWD-89HH; DWD-89HH-2; DWD-93BG; East Atlantic; Eastern Equatorial Pacific; ELT11.010; ELT11.064; ELT11.089; ELT-1101; ELT-1110; ELT-1164; ELT-1189; ELT-1246; ELT-1271; ELT44; ELT44.027-PC; ELT45; ELT45.027-PC; ELT45.029-PC; ELT45.070-PC; ELT45.073-PC; ELT45.077-PC; ELT45.078-PC; ELT45.081-PC; ELT48; ELT48.003-PC; ELT48.011-PC; ELT48.022-PC; ELT48.023-PC; ELT48.027-PC; ELT49; ELT49.022-PC; ELT49.023-PC; ELT49.024-PC; ELT49.025-PC; Eltanin; ELT-C100; EN06601; EN066-10GGC; Endeavor; EQA-27; FANHMS2G; FANHMS4G; FFC; Free fall corer; GC; GIK12392-1; Grab; GRAB; Gravity corer; H.M.S. Challenger (1872); Horizon; Indian Ocean; JAPANYON; Joides Resolution; JSB-5P; JSB-6P; JYN2; JYN2-007G; JYN5-019G; K708-001; K708-004; K708-006; K708-007; K708-008; K714-3; KAL; Kasten corer; KM1-41; KNR073-04-003; KNR733P; Knr735P; KNR735P; Leg138; LFGS; LFGS-36G; LFGS-38G; LFGS-45G; LSDA; LSDA-103V; LSDA-106G; LSDA-107GA; LSDA-113G; LSDA-117G; LSDA-128G; LSDA-136G; LSDA-SCS; LSDA-SCS-002G; LSDA-SCS-003G; LSDA-SCS-006G; LSDA-SCS-008G; LSDA-SCS-009G; LSDA-SCS-013D; LSDH; LSDH-009G; LSDH-025V; LSDH-038V; LSDH-076PG; LSDH-077G; LSDH-078PG; LSDH-079P; LSDH-079PG; LSDH-080G; LSDH09; LSDH-093PG; LSDH-104G; LUSIAD-9; LUSIAD-A; LUSIAD-H; M12392-1; M25; M70-68; M70-PC-49; M70-PC-61; Marion Dufresne (1972); MD10; MD13; MD76-131; MD76-132; MD76-135; MD77-168; MD77-169; MD77-170; MD77-171; MD77-174; MD77-176; MD77-179; MD77-180; MD77-181; MD77-185; MD77-191; MD77-194; MD77-196; MD77-199; MD77-202; MD77-203; MD77-204; MDPC03HO-043K; Melville; MEN; MEN-08G; MEN-11G; MEN-12G; Meteor (1964); MIDPAC; MONS01AR-MONS08AR; MONSOON; MPC-0-1; MPC-0-2; MPC-10-1; MPC-1-1; MPC-11-1; MPC-43K; MPC-45; MSN-100G; MSN-103P; MSN-104P; MSN-109P; MSN-10G; MSN-135P; MSN-136G; MSN-137P; MSN-138P; MSN-141G; MSN-14G; MSN-45G; MSN-52G; MSN-55G; MSN-56PG; MSN-63G; MSN-90G; MSN-93G; mt1-gyre; MT1-gyre; mt1-mid; MT1-mid; mt1-nrsh; MT1-nrsh; MUK-19BP; MUK-20BP; MUK-27HG; NEL-394D; NZO-A106; NZO-A181; NZO-A315; OSIRIS II; OSIRIS III; Pacific Ocean; PAP-127V; PAP-14; PAP-19; PC; Piston corer; PLDS-001G; PLDS-1; Pleiades; PROA; PROA-011P; PROA-079PG; PROA-083PG; PROA-084PG; PROA-085PG-1; PROA-086P; PROA-086PG; PROA-087PG; PROA-088PG; PROA-089PG; PROA-103PG; PROA-118G; PROA-122G; PROA-124G1; PROA-146G; PROA-147G; PROA-149G; PROA-151G; PROA-155G; PROA-156G; PROA-160G; RC0-113; RC0-117; RC0-121; RC08; RC08-102; RC08-103; RC08-145; RC08-16; RC08-18; RC08-22; RC08-23; RC08-27; RC08-28; RC08-39; RC08-40; RC08-41; RC08-46; RC08-50; RC08-53; RC08-60; RC08-61; RC08-62; RC08-63; RC08-94; RC09; RC09-124; RC09-126; RC09-139; RC09-14; RC09-143; RC09-150; RC09-155; RC09-160; RC09-161; RC09-162; RC09-163; RC09-212; RC09-222; RC09-225; RC09-49; RC09-61; RC09-67; RC10; RC10-114; RC10-139; RC10-140; RC10-141; RC10-142; RC10-143; RC10-146; RC10-161; RC10-162; RC10-172; RC10-175; RC10-176; RC10-22; RC10-49; RC10-50; RC10-52; RC10-53; RC10-54; RC10-56; RC10-62; RC10-64; RC10-97; RC11; RC11-10; RC11-103; RC11-106; RC11-11; RC11-111; RC11-116; RC11-117; RC1112; RC11-12; RC11-120; RC11-121; RC11-122; RC11-128; RC11-13; RC11-134; RC11-138; RC11-139; RC11-14; RC11-141; RC11-145; RC11-146; RC11-147; RC11-15; RC11-16; RC11-160; RC11-162; RC11-21; RC11-210; RC11-213; RC11-22; RC11-220; RC11-230; RC11-238; RC11-255; RC11-26; RC11-260; RC11-35; RC11-37; RC11-78; RC11-79; RC11-80; RC11-86; RC11-9; RC12; RC12-107; RC12-121; RC12-138; RC12-139; RC12-143; RC12-146; RC12-233; RC12-234; RC12-235; RC12-241; RC12-266; RC12-268; RC12-291; RC12-292; RC12-293; RC12-294; RC12-297; RC12-298; RC12-299; RC12-300; RC12-303; RC12-304; RC12-328; RC12-33; RC12-330; RC12-331; RC12-332; RC12-333; RC12-335; RC12-339; RC12-340; RC12-341; RC12-342; RC12-343; RC12-344; RC12-347; RC12-350; RC12-361; RC12-365; RC12-366; RC12-417; RC12-418; RC12-45; RC13; RC13-108; RC13-110; RC13-113; RC13-115; RC13-122; RC13-136; RC13-138; RC13-140; RC13-151; RC13-152; RC13-153; RC13-158; RC13-159; RC13-17; RC13-184; RC13-189; RC13-190; RC13-195; RC13-196; RC13-197; RC13-199; RC13-205; RC13-209; RC13-210; RC13-227; RC13-229; RC13-242; RC13-253; RC13-275; RC13-81; RC14; RC14-29; RC14-31; RC14-31TW; RC14-33; RC14-33TW; RC14-34; RC14-34TW; RC14-35; RC14-35TW; RC14-36; RC14-37; RC14-37TW; RC14-39; RC14-39TW; RC14-44; RC14-44TW; RC14-7; RC14-79TW; RC14-9; RC14-92; RC14-93; RC14-94; RC14-97; RC15; RC15-115; RC15-143; RC15-145; RC15-151; RC15-91; RC15-93; RC15-94; RC17; RC17-101; RC17-102; RC17-103; RC17-104; RC17-105; RC17-110; RC17-113; RC17-114; RC17-116; RC17-121; RC17-123; RC17-125; RC17-126; RC17-127; RC17-132; RC17-142; RC17-144; RC17-145; RC17-176; RC17-177; RC17-178; RC17-69; RC17-73; RC17-98; RC18; RC18-47; RC24; RC24-1; RC24-16; RC24-27; RC24-7; RE009-7; RE010-002; RE5-034; RE5-036; RE5-054; RE5-057; RIS-101; RIS-103; RIS-104; RIS-105; RIS-106; RIS-108; RIS-121V; RIS-14; RIS-15G; RIS-17; RIS-17G; RIS-21G; RIS-24; RIS-29G; RIS-32; RIS-33; RIS-34; RIS-35; RIS-51G; Robert Conrad; SCAN; SCAN-015P; SCAN-022PG; SCAN-023PG; SCAN-025G; SCAN-026G; SCAN-027G; SCAN-028G; SCAN-059P; SCAN-065G; SCAN-066G; SCAN-067G; SCAN-068G; SCAN-082P; SCAN-083P; SCAN-084P; SCAN-084PG; SCAN-085P; SCAN-086P; SCAN-087P; SCAN-088P; SCAN-088PG; SCAN-091G; SCAN-094P; SCAN-095G; SCAN-096P; SDS-93P; SDS-95P; SDS-97P; SDS-98P; SOB; SOB-009G; SOB-026GA; SOB-031GA; South Atlantic Ocean; Southern Borderland; South Pacific Ocean; SP008-004; SP009-003; SP010-005; Spencer F. Baird; Stranger; STYX_III; STYX_IX; STYX03AZ; STYX09AZ; STYXIII-75G; STYXIII-77P; STYXIII-80FF-34; STYXIII-81FF-41; STYXIII-81FF-44;
    Type: Dataset
    Format: application/zip, 14 datasets
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  • 19
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Haas, Christian; Gerland, Sebastian; Eicken, Hajo; Miller, Heinz (1997): Comparison of sea-ice thickness measurements under summer and winter conditions in the Arctic using a small electromagnetic induction device. Geophysics, 62(3), 749-757, https://doi.org/10.1190/1.1444184
    Publication Date: 2024-06-12
    Description: Drillhole-determined sea-ice thickness was compared with values derived remotely using a portable small-offset loop-loop steady state electromagnetic (EM) induction device during expeditions to Fram Strait and the Siberian Arctic, under typical winter and summer conditions. Simple empirical transformation equations are derived to convert measured apparent conductivity into ice thickness. Despite the extreme seasonal differences in sea-ice properties as revealed by ice core analysis, the transformation equations vary little for winter and summer. Thus, the EM induction technique operated on the ice surface in the horizontal dipole mode yields accurate results within 5 to 10% of the drillhole determined thickness over level ice in both seasons. The robustness of the induction method with respect to seasonal extremes is attributed to the low salinity of brine or meltwater filling the extensive pore space in summer. Thus, the average bulk ice conductivity for summer multiyear sea ice derived according to Archie's law amounts to 23 mS/m compared to 3 mS/m for winter conditions. These mean conductivities cause only minor differences in the EM response, as is shown by means of 1-D modeling. However, under summer conditions the range of ice conductivities is wider. Along with the widespread occurrence of surface melt ponds and freshwater lenses underneath the ice, this causes greater scatter in the apparent conductivity/ice thickness relation. This can result in higher deviations between EM-derived and drillhole determined thicknesses in summer than in winter.
    Keywords: Arctic Ocean; Ark11_203p1; Ark11_205p1; Ark11_205p2; Ark11_206p1; Ark11_207p1; Ark11_209p1; Ark11_210p1; Ark11_216p1; Ark11_219p1; Ark11_219p3; Ark11_221p1; Ark11_228p1; Ark11_229p1; Ark11_230p1; Ark11_232p1; Ark11_232p2; Ark11_233p1; Ark11_234p1; Ark11_235p1; Ark11_236p1; Ark11_237p1; Ark11_237p2; Ark11_238p1; Ark11_239p1; Ark11_240p1; Ark11_241p1; Ark11_242p1; Ark11_243p1; Ark11_247p1; Ark12_207p1; Ark12_207p2; Ark12_208p1; Ark12_209p1; Ark12_210p1; Ark12_212p1; Ark12_212p2; Ark12_213p1; Ark12_214p1; Ark12_215p1; Ark12_216p1; Ark12_218p1; Ark12_219p1; Ark12_220p1; Ark12_221p1; Ark12_222p1; Ark12_223p1; Ark12_226p1; Ark12_227p1; Ark12_229p1; Ark12_230p1; Ark12_231p1; Ark12_232p1; Ark12_232p2; Ark12_232p3; Ark12_233p1; Ark12_234p1; Ark12_236p1; Ark12_236p2; Ark12_238p1; Ark12_239p1; Ark12_240p1; Ark12_240p2; Ark12_240p3; Ark12_240p4; Ark12_240p5; Ark12_240p6; Ark12_240p7; Ark12_242p1; Ark12_243p1; Ark12_246p1; Ark12_247p1; Ark12_249p1; Ark9_4_246p1; Ark9_4_251p1; Ark9_4_253p1; Ark9_4_254p1; Ark9_4_255p1; Ark9_4_256p1; Ark9_4_257p1; Ark9_4_258p1; Ark9_4_260p1; Ark9_4_261p1; Ark9_4_264p1; ARK-IX/4; ARK-XI/1; ARK-XII; AWI_SeaIce; East Siberian Sea; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Laptev Sea; Polarstern; PS27; PS36; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI
    Type: Dataset
    Format: application/zip, 83 datasets
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  • 20
    Publication Date: 2024-06-12
    Keywords: Ark12_230p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 503 data points
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  • 21
    Publication Date: 2024-06-12
    Keywords: Ark12_240p3; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 21 data points
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  • 22
    Publication Date: 2024-06-12
    Keywords: Ark12_240p5; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 21 data points
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  • 23
    Publication Date: 2024-06-12
    Keywords: Ark12_242p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 368 data points
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  • 24
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_253p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 25
    Publication Date: 2024-06-12
    Keywords: Ark12_233p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 680 data points
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  • 26
    Publication Date: 2024-06-12
    Keywords: Ark12_232p2; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 81 data points
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  • 27
    Publication Date: 2024-06-12
    Keywords: Ark12_234p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 979 data points
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  • 28
    Publication Date: 2024-06-12
    Keywords: Ark11_203p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 75 data points
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  • 29
    Publication Date: 2024-06-12
    Keywords: Ark12_238p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 412 data points
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  • 30
    Publication Date: 2024-06-12
    Keywords: Ark12_240p1; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 31 data points
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  • 31
    Publication Date: 2024-06-12
    Keywords: Ark12_239p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 374 data points
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  • 32
    Publication Date: 2024-06-12
    Keywords: Ark12_240p2; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 20 data points
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  • 33
    Publication Date: 2024-06-12
    Keywords: Ark12_240p4; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 21 data points
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  • 34
    Publication Date: 2024-06-12
    Keywords: Ark12_240p6; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 21 data points
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  • 35
    Publication Date: 2024-06-12
    Keywords: Ark12_240p7; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 29 data points
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  • 36
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_237p2; ARK-XI/1; AWI_SeaIce; Calculated from ice-thickness; Measured with ruler tape; FEME; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI
    Type: Dataset
    Format: text/tab-separated-values, 16 data points
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  • 37
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_240p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 406 data points
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  • 38
    Publication Date: 2024-06-12
    Keywords: Ark12_247p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 567 data points
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  • 39
    Publication Date: 2024-06-12
    Keywords: Ark12_249p1; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 428 data points
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  • 40
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_246p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 41
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_254p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 42
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_255p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 130 data points
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  • 43
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_258p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 130 data points
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  • 44
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_261p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 230 data points
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  • 45
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_264p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 130 data points
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  • 46
    Publication Date: 2024-06-12
    Keywords: Ark11_205p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; East Siberian Sea; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 264 data points
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  • 47
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_206p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 324 data points
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  • 48
    Publication Date: 2024-06-12
    Keywords: Ark11_216p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 413 data points
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  • 49
    Publication Date: 2024-06-12
    Keywords: Ark11_228p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 165 data points
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  • 50
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_221p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 184 data points
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  • 51
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_232p2; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 102 data points
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  • 52
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_235p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 471 data points
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  • 53
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_236p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 246 data points
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  • 54
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_237p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 474 data points
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  • 55
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_243p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 243 data points
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  • 56
    Publication Date: 2024-06-12
    Keywords: Ark12_207p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 270 data points
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  • 57
    Publication Date: 2024-06-12
    Keywords: Ark12_207p2; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 406 data points
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  • 58
    Publication Date: 2024-06-12
    Keywords: Ark12_210p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 300 data points
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  • 59
    Publication Date: 2024-06-12
    Keywords: Ark12_212p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 433 data points
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  • 60
    Publication Date: 2024-06-12
    Keywords: Ark12_209p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 320 data points
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  • 61
    Publication Date: 2024-06-12
    Keywords: Ark12_212p2; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 419 data points
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  • 62
    Publication Date: 2024-06-12
    Keywords: Ark12_213p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 207 data points
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  • 63
    Publication Date: 2024-06-12
    Keywords: Ark12_214p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; FEME; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness
    Type: Dataset
    Format: text/tab-separated-values, 63 data points
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  • 64
    Publication Date: 2024-06-12
    Keywords: Ark12_218p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 472 data points
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  • 65
    Publication Date: 2024-06-12
    Keywords: Ark12_216p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 549 data points
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  • 66
    Publication Date: 2024-06-12
    Keywords: Ark12_215p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 586 data points
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  • 67
    Publication Date: 2024-06-12
    Keywords: Ark12_220p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 690 data points
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  • 68
    Publication Date: 2024-06-12
    Keywords: Ark12_219p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 508 data points
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  • 69
    Publication Date: 2024-06-12
    Keywords: Ark12_222p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 291 data points
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  • 70
    Publication Date: 2024-06-12
    Keywords: Ark11_229p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 432 data points
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  • 71
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_230p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 358 data points
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  • 72
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_233p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation
    Type: Dataset
    Format: text/tab-separated-values, 230 data points
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  • 73
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_234p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 413 data points
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  • 74
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_238p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 109 data points
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  • 75
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_239p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 225 data points
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  • 76
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_242p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation
    Type: Dataset
    Format: text/tab-separated-values, 452 data points
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  • 77
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_247p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 202 data points
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  • 78
    Publication Date: 2024-06-12
    Keywords: Ark12_221p1; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 413 data points
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  • 79
    Publication Date: 2024-06-12
    Keywords: Ark12_223p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 349 data points
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  • 80
    Publication Date: 2024-06-12
    Keywords: Ark12_232p3; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 71 data points
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  • 81
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_251p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 82
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_256p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 83
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_257p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 84
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-06-12
    Keywords: Ark9_4_260p1; ARK-IX/4; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Laptev Sea; POINT DISTANCE from start; Polarstern; PS27; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 85
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_210p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 302 data points
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  • 86
    Publication Date: 2024-06-12
    Keywords: Ark12_208p1; ARK-XII; AWI_SeaIce; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; Melt pond bottom z coordinate; Melt pond depth; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 395 data points
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  • 87
    Publication Date: 2024-06-12
    Keywords: Ark12_226p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 503 data points
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  • 88
    Publication Date: 2024-06-12
    Keywords: Ark12_227p1; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 438 data points
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  • 89
    Publication Date: 2024-06-12
    Keywords: Ark12_229p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 727 data points
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  • 90
    Publication Date: 2024-06-12
    Keywords: Ark12_232p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 767 data points
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  • 91
    Publication Date: 2024-06-12
    Keywords: Ark12_231p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 263 data points
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  • 92
    Publication Date: 2024-06-12
    Keywords: Ark12_236p1; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 52 data points
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  • 93
    Publication Date: 2024-06-12
    Keywords: Ark12_236p2; ARK-XII; AWI_SeaIce; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness
    Type: Dataset
    Format: text/tab-separated-values, 51 data points
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  • 94
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_205p2; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation
    Type: Dataset
    Format: text/tab-separated-values, 75 data points
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  • 95
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_207p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 234 data points
    Location Call Number Expected Availability
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  • 96
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_209p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Melt pond depth; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 493 data points
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  • 97
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_219p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 62 data points
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  • 98
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_219p3; ARK-XI/1; AWI_SeaIce; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 50 data points
    Location Call Number Expected Availability
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  • 99
    Publication Date: 2024-06-12
    Keywords: Arctic Ocean; Ark11_232p1; ARK-XI/1; AWI_SeaIce; Calculated; Calculated from ice-thickness; Measured with ruler tape; Calculated from ice-thickness based on the electromagnetic sounding; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; POINT DISTANCE from start; Polarstern; PS36; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Surface elevation; Surface layer thickness
    Type: Dataset
    Format: text/tab-separated-values, 298 data points
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  • 100
    Publication Date: 2024-06-12
    Keywords: Ark12_243p1; ARK-XII; AWI_SeaIce; Drilling and ruler tape; Electromagnetic sounding (EM), Geonics EM31 conductivity sensor, Haas et al 1997; FEME; Freeboard; Ice draft; ICEM; Ice measurement; Kara/Laptev Sea/Transpolar Drift; POINT DISTANCE from start; Polarstern; PS41; Remote Sensing of Sea Ice Properties; RULER; Ruler stick; Sea Ice Physics @ AWI; Sea ice thickness; Snow thickness; Surface elevation; Surface levelling/surveying
    Type: Dataset
    Format: text/tab-separated-values, 293 data points
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