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  • 2020-2024  (15,703)
  • 2020-2022  (836,583)
  • 2010-2014  (22)
  • 2005-2009  (21)
  • 2020  (852,286)
  • 2020  (852,286)
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Years
Year
  • 1
    facet.materialart.
    Unknown
    PANGAEA
    In:  GEOMAR - Helmholtz Centre for Ocean Research Kiel
    Publication Date: 2024-07-06
    Keywords: CTD, SEA-BIRD SBE 9 plus; CTD/Rosette; CTD-RO; DATE/TIME; DEPTH, water; Event label; LATITUDE; LONGITUDE; Oxygen; pH; pH sensor, SBE 27; POS534; POS534_10-2; POS534_16-1; POS534_17-1; POS534_33-1; POS534_34-1; Poseidon; Salinity; Station label; STEMM-CCS; Strategies for Environmental Monitoring of Marine Carbon Capture and Storage; Temperature, water; VCTD02B_2; VCTD06; VCTD07B; VCTD10; VCTD11B
    Type: Dataset
    Format: text/tab-separated-values, 473812 data points
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  • 2
    Publication Date: 2024-07-06
    Keywords: Ammonium; bioinvasion; DATE/TIME; decomposition; Eastern Mediterranean Sea; Nitrate; Nitrite; Nitrogen, organic, dissolved; Nitrogen, total dissolved; Nitrogen oxide; pH; Phosphate; Phosphorus, organic, dissolved; Phosphorus, total dissolved; Rhopilema nomadica; Silicate; Time in hours; Time point, descriptive; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 530 data points
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  • 3
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    Unknown
    PANGAEA
    In:  GEOMAR - Helmholtz Centre for Ocean Research Kiel
    Publication Date: 2024-07-06
    Description: A gas inlet was installed at the bow of RV Poseidon. Atmospheric gas concentrations of CH4 and CO2 were measured continuously with a Picarro G2301-f analyzer.
    Keywords: CT; POS527; POS527-track; Poseidon; STEMM-CCS; Strategies for Environmental Monitoring of Marine Carbon Capture and Storage; Underway cruise track measurements
    Type: Dataset
    Format: application/zip, 20 datasets
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  • 4
    Publication Date: 2024-07-06
    Description: This study estimated the short-term decomposition effects of the invasive jellyfish Rhopilema nomadica on nutrient dynamics at the sediment-water interface in the Eastern Mediterranean Sea using core incubations. The degradation of R. nomadica has led to increased oxygen demand and acidification of overlying water as well as high rates of dissolved organic nitrogen and phosphate production.
    Keywords: bioinvasion; decomposition; Eastern Mediterranean Sea; Rhopilema nomadica
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 5
    Publication Date: 2024-07-06
    Keywords: bioinvasion; DATE/TIME; decomposition; Eastern Mediterranean Sea; Oxygen; Rhopilema nomadica
    Type: Dataset
    Format: text/tab-separated-values, 854107 data points
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  • 6
    Publication Date: 2024-07-05
    Type: info:eu-repo/semantics/article
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  • 7
    Publication Date: 2024-07-05
    Type: info:eu-repo/semantics/article
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  • 8
    Publication Date: 2024-07-05
    Description: Continental shelves tend to have high standing stocks of organic carbon and high rates of primary production relative to the open ocean and serve as important link between land and the ocean interior and between the sediment and the water column, playing a key role in the N and C balance, and accounting for up to 50% of the total N loss. One of the widest continental shelves in the eastern South Pacific (ESP) is present off central Chile (36°S). This is an important geographic feature in terms of physical and biological interactions owing to the large area available for coupling between the benthic and pelagic systems. In addition, this area is subjected to a strong coastal upwelling during austral spring and summer; when winds shift to a predominantly northward direction, stressing the sea surface layer and producing an intense cross-shelf transport and uplift of Equatorial Subsurface waters (ESSW) over the shelf. The ESSW, characterized by high NO3- and low O2 content, promotes surface fertilization and, subsequently, intense organic matter respiration and remineralization at depth, along with an efflux of subsurface-accumulated N2O (Farías et al. 2009, Cornejo & Farías, 2012). Thus, periods of maximum productivity and intense suboxia, or even anoxia, when diverse electron donors (e.g., organic matter, NH4+, NO2-, H2S) are present, represent a potential hotspot for fixed N removal processes. We present a data set that has been obtained during different FIP cruises (Fondo de Investigaciones Pesqueras) (2005-2009) which consisted of several transects perpendicular to the coast between 35° and 40°S and from the coast to 77.8° W (central Chile). Data collected include classical oceanographic variables including N2O and important greenhouse gas.
    Keywords: Abate Molina; Automated WInkler method (AULOX); Colorimetry, flow-segmented (Grasshoff et al. 1983); Cruise/expedition; CTD/Rosette; CTD-O probe; CTD-RO; Date/Time of event; DEPTH, water; eastern South Pacific; Event label; Gas chromatograph (Shimadzu 17A) with an electron capture detector (ECD); Greenhouse gases; Latitude of event; Longitude of event; MOBIO; MOBIO-2005-1; MOBIO-2005-10; MOBIO-2005-11; MOBIO-2005-13; MOBIO-2005-17; MOBIO-2005-20; MOBIO-2005-21; MOBIO-2005-23; MOBIO-2005-25; MOBIO-2005-27; MOBIO-2005-3; MOBIO-2005-30; MOBIO-2005-31; MOBIO-2005-33; MOBIO-2005-35; MOBIO-2005-37; MOBIO-2005-40; MOBIO-2005-41; MOBIO-2005-43; MOBIO-2005-45; MOBIO-2005-47; MOBIO-2005-5; MOBIO-2005-50; MOBIO-2005-7; MOBIO-2006-1; MOBIO-2006-11; MOBIO-2006-12; MOBIO-2006-13; MOBIO-2006-14; MOBIO-2006-15; MOBIO-2006-16; MOBIO-2006-17; MOBIO-2006-18; MOBIO-2006-19; MOBIO-2006-2; MOBIO-2006-20; MOBIO-2006-21; MOBIO-2006-22; MOBIO-2006-23; MOBIO-2006-25; MOBIO-2006-26; MOBIO-2006-27; MOBIO-2006-28; MOBIO-2006-29; MOBIO-2006-3; MOBIO-2006-30; MOBIO-2006-31; MOBIO-2006-32; MOBIO-2006-33; MOBIO-2006-34; MOBIO-2006-35; MOBIO-2006-36; MOBIO-2006-37; MOBIO-2006-38; MOBIO-2006-39; MOBIO-2006-4; MOBIO-2006-40; MOBIO-2006-41; MOBIO-2006-42; MOBIO-2006-43; MOBIO-2006-45; MOBIO-2006-47; MOBIO-2006-48; MOBIO-2006-49; MOBIO-2006-5; MOBIO-2006-50; MOBIO-2006-6; MOBIO-2006-7; MOBIO-2006-8; MOBIO-2008-10; MOBIO-2008-11; MOBIO-2008-12; MOBIO-2008-13; MOBIO-2008-14; MOBIO-2008-15; MOBIO-2008-16; MOBIO-2008-17; MOBIO-2008-18; MOBIO-2008-2; MOBIO-2008-20; MOBIO-2008-21; MOBIO-2008-22; MOBIO-2008-23; MOBIO-2008-25; MOBIO-2008-26; MOBIO-2008-27; MOBIO-2008-28; MOBIO-2008-29; MOBIO-2008-3; MOBIO-2008-30; MOBIO-2008-31; MOBIO-2008-32; MOBIO-2008-33; MOBIO-2008-34; MOBIO-2008-35; MOBIO-2008-36; MOBIO-2008-38; MOBIO-2008-39; MOBIO-2008-4; MOBIO-2008-40; MOBIO-2008-41; MOBIO-2008-42; MOBIO-2008-43; MOBIO-2008-44; MOBIO-2008-45; MOBIO-2008-46; MOBIO-2008-47; MOBIO-2008-48; MOBIO-2008-5; MOBIO-2008-52; MOBIO-2008-53; MOBIO-2008-54; MOBIO-2008-55; MOBIO-2008-56; MOBIO-2008-57; MOBIO-2008-58; MOBIO-2008-6; MOBIO-2008-62; MOBIO-2008-63; MOBIO-2008-64; MOBIO-2008-65; MOBIO-2008-66; MOBIO-2008-67; MOBIO-2008-7; MOBIO-2008-73; MOBIO-2008-74; MOBIO-2008-75; MOBIO-2008-76; MOBIO-2008-77; MOBIO-2008-78; MOBIO-2008-79; MOBIO-2008-8; MOBIO-2008-80; MOBIO-2008-81; MOBIO-2008-82; MOBIO-2008-83; MOBIO-2008-84; MOBIO-2008-85; MOBIO-2008-86; MOBIO-2008-9; MOBIO-2009-10; MOBIO-2009-11; MOBIO-2009-13; MOBIO-2009-15; MOBIO-2009-16; MOBIO-2009-17; MOBIO-2009-18; MOBIO-2009-19; MOBIO-2009-2; MOBIO-2009-20; MOBIO-2009-22; MOBIO-2009-23; MOBIO-2009-24; MOBIO-2009-25; MOBIO-2009-26; MOBIO-2009-27; MOBIO-2009-28; MOBIO-2009-30; MOBIO-2009-32; MOBIO-2009-33; MOBIO-2009-34; MOBIO-2009-35; MOBIO-2009-37; MOBIO-2009-38; MOBIO-2009-39; MOBIO-2009-4; MOBIO-2009-41; MOBIO-2009-42; MOBIO-2009-6; MOBIO-2009-8; MOBIO-2009-9; Nitrate; Nitrite; nitrogen cycle; nitrous oxide; Nitrous oxide, dissolved; nutrients; oceanography; Oxygen, dissolved; Phosphate; Salinity; Silicate; Station label; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 9902 data points
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  • 9
    facet.materialart.
    Unknown
    PANGAEA
    In:  Departamento de Oceanografia, Universidad de Conceptión
    Publication Date: 2024-07-05
    Description: Between February 8th and March 4th 2007 an oceanographic cruise (Galathea 3 expedition) on board of Research Vessel Vædderen (Denmark) was performed Legs 13 and 14 of that expedition were devoted to the study of the oxygen minimum zone off northern Chile and Peru The cruise track covered the area between Valparaiso-Chile (32°S) and northern Peru (7.5°S) from total amount of 18 stations visited, we present 21 station with relatively high vertical resolution of Nitrous oxide and other variables. The main objective of the cruise was to study of low oxygen conditions over microbial communities and metabolic pathways related to the N and C cycles. In this region, an emblematic Oxygen Minimum Zone (OMZ), mainly defined by the presence of Subsurface Equatorial Waters (ESSW) between 50 and 400 m depth. These waters determine an important role of the eastern South Pacific in global climate related to the production of green house gases such as CO2, CH4 and N2O. During the cruise researcher was focused on several mechanisms of N and C transformation in the OMZ such as Fixation of molecular nitrogen (N2) and nitrous oxide (N2O) in surface waters and the core of the oxygen minimum zone and production and consumption of N2O by denitrificion and even nitrification. Continuously sampled variables are temperature, salinity and disolved oxygen, obtained unsing a CTD-O probe (SeaBird). Discretely sampled variables are water samples, collected using Niskin bottles attached to rosette sampler, in order to obtain discrete measurements of dissolver oxygen (O2) and nutrients (NO3, NO2, SiO4 and PO43). Discrete samples of DO (in triplicate) were analyzed using the AULOX measurement system, an automatic Winkler method. Samples for NO2, NO3 and PO4 (15 mL in triplicate) were filtered (using a 0.45 μm GF/F glass filter) and stored (frozen) until analysis, using standard colorimetric techniques (Grasshoff, 1983). Measurements of NH4 (40 mL, in triplicate) were carried out using the fluorometric method proposed by Holmes et al. (1999). N2O and CH4 samples were taken in triplicate in 20 mL vials and carefully sealed to avoid air bubbles. They were then preserved with 50 μL of saturated HgCl2 and stored in darkness until analysis. N2O and CH4 was analyzed by creating a 5 mL headspace of ultrapure Helium and then equilibrated to 40◦C. Mesurements were carried out through gas chromatography using an electron capture detector (Varian 3380) and Flame Ionization detector (Shimadzu 17A), respectively. The calibration curves used 0.1, 0.5, and 1 ppm of N2O standards and 1, 2.5, 5 and 10 ppm of CH4 standards, both curves used pure He as 0 value. The analytical error for N2O measurements was ~3% and ~5% for CH4. CH4 was manually analyzed through a capillary column GS-Q (J&W, 0.53 mm×30 m) and 30°C oven temperature The uncertainty of the measurements was calculated from the standard deviation of the triplicate measurements by depth. Samples with a variation coefficient above 10% were not considered.
    Keywords: Ammonium; Basis of event; Campaign of event; CTD/Rosette; CTD-O probe; CTD-RO; Date/Time of event; Day; DEPTH, water; Eastern South Pacific ocean; Event label; Fluorometric; Galathea_13-1; Galathea_13-2; Galathea_14-1; Galathea_14-100; Galathea_14-111; Galathea_14-114; Galathea_14-121; Galathea_14-122; Galathea_14-14; Galathea_14-17; Galathea_14-2; Galathea_14-21; Galathea_14-31; Galathea_14-47; Galathea_14-6; Galathea_14-66; Galathea_14-7; Galathea_14-73; Galathea_14-74; Galathea_14-77; Galathea_14-86; Galathea_14-96; Galathea 3; Gas chromatograph, Varian, Inc.. 3380; Gas chromatography and Flame Ionization Detection (Shimadzu 17A); Greenhouse gases; HDMS Vaedderen; Latitude of event; Longitude of event; Manually after Grasshoff et al. (1983); Methane; Month; Nitrate; Nitrite; nitrogen cycle; nitrous oxide; Nitrous oxide, dissolved; nutrients; oceanography; Oxygen; Phosphate; Salinity; Sample code/label; South Atlantic Ocean; Station label; Temperature, water; Years
    Type: Dataset
    Format: text/tab-separated-values, 1647 data points
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  • 10
    Publication Date: 2024-07-05
    Keywords: 0306SFC_PRT; 061ASFC_PRT; 06AQ19860627-track; 06AQ19860928-track; 06AQ19911114-track; 06AQ19911210-track; 06AQ19921005-track; 06AQ19930128-track; 06AQ19930228-track; 06AQ19931019-track; 06AQ19940524-track; 06AQ19951112-track; 06AQ19960320-track; 06AQ19980411-track; 06AQ19990327-track; 06AQ20001004-track; 06AQ20001026-track; 06AQ20021126-track; 06AQ20021214-track; 06AQ20071203-track; 06AQ20080209-track; 06AQ20080416-track; 06AQ20080624-track; 06AQ20080705-track; 06AQ20090109-track; 06AQ20090322-track; 06AQ20090413-track; 06AQ20090622-track; 06AQ20090711-track; 06AQ20090806-track; 06AQ20091023-track; 06AQ20091129-track; 06AQ20100131-track; 06AQ20100408-track; 06AQ20101026-track; 06AQ20110617-track; 06AQ20110715-track; 06AQ20110806-track; 06AQ20111214-track; 06AQ20120108-track; 06AQ20120318-track; 06AQ20120411-track; 06AQ20120615-track; 06AQ20120716-track; 06AQ20120803-track; 06AQ20131110-track; 06AQ20131221-track; 06AQ20140309-track; 06AQ20140608-track; 06AQ20140707-track; 06AQ20140805-track; 06AQ20141026-track; 06AQ20141203-track; 06AQ20150204-track; 06AQ20150519-track; 06AQ20150629-track; 06AQ20150818-track; 06AQ20151030-track; 06AQ20151207-track; 06AQ20160220-track; 06AQ20160412-track; 06AQ20160614-track; 06AQ20160720-track; 06AQ20170205-track; 06AQ20170321-track; 06AQ20170524-track; 06AQ20170723-track; 06AQ20170822-track; 06AQ20170912-track; 06BE19961010-track; 06BE19970515-track; 06BE19970612-track; 06BE20140710-track; 06BE20140723-track; 06CK20060523-track; 06CK20060715-track; 06CK20060821-track; 06GA19960613-track; 06GA276_3; 06LB19831130-track; 06LB19840107-track; 06LB19840629-track; 06LB19850110-track; 06LB19850313-track; 06LB19850812-track; 06LB19860116-track; 06LB19860323-track; 06LB19860801-track; 06LB19861011-track; 06LB19861214-track; 06LB19870221-track; 06LB19870501-track; 06LB19870721-track; 06LB19870920-track; 06LB19871126-track; 06LB19871231-track; 06LB19880204-track; 06M220110623-track; 06M320120320-track; 06M320120407-track; 06MT18_1; 06MT19910903-track; 06MT19920510-track; 06MT19921229-track; 06MT19941012-track; 06MT19941119-track; 06MT19950714-track; 06MT19960607-track; 06MT19960622-track; 06MT19970106-track; 06MT19970516-track; 06MT19970707-track; 06MT19981228-track; 06MT20021015-track; 06MT20060714; 06MT20060714-track; 06MT22_5; 06MT30_2; 06MT30_3; 06MT37_2; 06MT39_4; 06P119910616-track; 06P119950901-track; 06PO20050321; 06PO20050322-track; 06PO20070210-track; 06PO20100531-track; 06ZG20091213; 06ZG20091213-track; 06ZG20100115; 06ZG20100115-track; 06ZG20100207; 06ZG20100207-track; 06ZG20100226; 06ZG20100226-track; 06ZG20100321; 06ZG20100321-track; 06ZG20100409; 06ZG20100409-track; 06ZG20100506; 06ZG20100506-track; 06ZG20100716; 06ZG20100716-track; 06ZG20100813; 06ZG20100813-track; 06ZG20100902; 06ZG20100902-track; 06ZG20100930; 06ZG20100930-track; 06ZG20101023; 06ZG20101023-track; 06ZG20101118; 06ZG20101118-track; 06ZG20101211; 06ZG20101211-track; 07AL19951011-track; 07AL19960218-track; 07AL19970503-track; 07AL19990718-track; 07AL19991101-track; 07AL19991129-track; 07AL20000113-track; 07AL20000210-track; 07AL20000305-track; 07AL20010513-track; 07AL20010607-track; 07AL20010709-track; 07AL20010802-track; 08AI20000324-track; 08AI20010124-track; 08AI20010808-track; 08AI20020131-track; 08AI20030206-track; 08AI20040227-track; 08AI20041225-track; 08D820170918; 08D820170918-track; 08PD20051019-track; 08PD20060310-track; 08PD20060907-track; 096U20150321; 096U20150321-track; 096U20160108; 096U20160108-track; 096U20160314; 096U20160314-track; 096U20160426-track; 096U20160630; 096U20160630-track; 096U20160817; 096U20160817-track; 096U20160825; 096U20160825-track; 096U20160831; 096U20160831-track; 096U20160927; 096U20160927-track; 096U20161028; 096U20161028-track; 096U20170114; 096U20170114-track; 096U20170319; 096U20170319-track; 096U20170411; 096U20170411-track; 096U20170504; 096U20170504-track; 096U20170515; 096U20170515-track; 096U20170831; 096U20170831-track; 096U20170924; 096U20170924-track; 096U20171011; 096U20171011-track; 096U20171125; 096U20171125-track; 096U20180111; 096U20180111-track; 096U20180302; 096U20180302-track; 096U20180405; 096U20180405-track; 096U20180418; 096U20180418-track; 096U20180514; 096U20180514-track; 096U20180528; 096U20180528-track; 09AR0103; 09AR19910926-track; 09AR19921019-track; 09AR19930105-track; 09AR19930311-track; 09AR19930807-track; 09AR19931119-track; 09AR19940101-track; 09AR19940831-track; 09AR19941213-track; 09AR19950717-track; 09AR19950916-track; 09AR19960119-track; 09AR19960822-track; 09AR19970910-track; 09AR19971114-track; 09AR19980228-track; 09AR19980404-track; 09AR19980715-track; 09AR19990716-track; 09AR20011031-track; 09AR20060102; 09AR20060102-track; 09AR20110104; 09AR20110104-track; 09AR20110222; 09AR20110222-track; 09AR20120105; 09AR20120105-track; 09AR20120215; 09AR20120215-track; 09AR20120416; 09AR20120416-track; 09AR20120914; 09AR20120914-track; 09AR20121116; 09AR20121116-track; 09AR20121217; 09AR20121217-track; 09AR20130113; 09AR20130113-track; 09AR20130228; 09AR20130228-track; 09AR20131015; 09AR20131015-track; 09AR20140129; 09AR20140129-track; 09AR20140309; 09AR20140309-track; 09AR20141022; 09AR20141022-track; 09AR20141205; 09AR20141205-track; 09AR20150128; 09AR20150128-track; 09AR20151022; 09AR20151022-track; 09AR20151028; 09AR20151028-track; 09AR20151201; 09AR20151201-track; 09AR20151209; 09AR20151209-track; 09AR20160111; 09AR20160111-track; 09AR20161021; 09AR20161021-track; 09AR20161026; 09AR20161026-track; 09AR20161208; 09AR20161208-track; 09AR20170125; 09AR20170125-track; 09AR20170314; 09AR20170314-track; 09AR20171029; 09AR20171029-track; 09AR20171213; 09AR20171213-track; 09AR20180115; 09AR20180115-track; 09AR20180308; 09AR20180308-track; 09AR9401; 09AR9404; 09AR9407; 09AR9501; 09AR9502; 09AR9601; 09AR9604; 09AR9701; 09AR9703; 09AR9707; 09AR9801; 09AR9806; 09AR9901; 09FA19920618-track; 09FA19920625-track; 09FA20000927-track; 09FS20091009; 09FS20091009-moor; 09FS20100421; 09FS20100421-moor; 09FS20100908; 09FS20100908-moor; 09FS20110311; 09FS20110311-moor; 09FS20110420; 09FS20110420-moor; 09FS20110826; 09FS20110826-moor; 09FS20111018; 09FS20111018-moor; 09FS20120208; 09FS20120208-moor; 09FS20120417; 09FS20120417-moor; 09FS20160805; 09FS20160805-moor; 09FS20160817; 09FS20160817-moor; 09FS20160912; 09FS20160912-moor; 09FS20161129; 09FS20161129-moor; 09FS20170207; 09FS20170207-moor; 09FS20170306; 09FS20170306-moor; 09FS20170520; 09FS20170520-moor; 09FS20170907; 09FS20170907-moor; 09FS20170912; 09FS20170912-moor; 09FS20171206; 09FS20171206-moor; 09FS20180215; 09FS20180215-moor; 09FS20180419; 09FS20180419-moor; 09FS20180524; 09FS20180524-moor; 09SS19951116-track; 09SS19990205-track; 09SS20080111-track; 09SS20080204-track; 09SS20080228-track; 09SS20080321-track; 09SS20080405-track; 09SS20080410-track; 09SS20080416-track; 09SS20080430-track; 09SS20080608-track; 09SS20080724-track; 09SS20080812-track; 09SS20081010-track; 09SS20090128-track; 09SS20090203-track; 09SS20090422-track; 09SS20090604-track; 09SS20090703-track; 09SS20090729-track; 09SS20090922-track; 09SS20091010-track; 09SS20091016-track; 09SS20100128-track; 09SS20100315-track; 09SS20100329-track; 09SS20100414-track; 09SS20100508-track; 09SS20100706-track; 09SS20100729-track; 09SS20100810-track; 09SS20100906-track; 09SS20100922-track; 09SS20101015-track; 09SS20110405-track; 09SS20110416-track; 09SS20110505-track; 09SS20110513-track; 09SS20110606-track; 09SS20110801-track; 09SS20110812-track; 09SS20110825-track; 09SS20111110-track; 09SS20111122-track; 09SS20120411-track; 09SS20120420-track; 09SS20120502-track; 09SS20120512-track; 09SS20120607-track; 09SS20120711-track; 11BE19930419-track; 11BE19930921-track; 11BE19931003-track; 11BE19940411-track; 11BE19940413-track; 11BE19950303-track; 11BE19950912-track; 11BE19970513-track; 11BE19970527-track; 11BE19970609-track; 11BE19970618-track; 11BE19970621; 11BE19970621-track; 11BE19970702-track; 11BE19980614-track; 11BE19980625-track; 11BE19980627; 11BE19980627-track; 11BE19980710-track;
    Type: Dataset
    Format: text/tab-separated-values, 95289 data points
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