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30 datasets found

Atmosphere

Marine

Sediment cores

Age model and physical properties of sediment from the Arctic Siberian margin, core SWERUS-L2-31PC

Age model and sedimentological data for a marine sediment core collected on the Lomonosov Ridge adjoining the East Siberian shelf, Arctic Ocean. The dataset...

In-situ Temperature, Thermal Conductivity and Heat Flow of East Siberian Margin Sediments

Summary of published data used to calculate marine heat flow at sediment coring stations on SWERUS-C3-L2 in 2014. The data file includes A.) Summary table of...

Late Holocene paleomagnetic secular variation records of sediment cores SWERUS-L2-2-PC1 and SWERUS-L2-4-PC1 from the Chukchi Sea

Geomagnetic field directions (inclination and declination) are reconstructed for two sediment cores for the past 4200 years. The sediment cores were collected...

Marine sediment core data from Chukchi Sea, Arctic Ocean, core SWERUS-L2-2-PC1

Data from sediment core SWERUS-L2-2-PC1. The core was collected during the SWERUS-C3 expedition with icebreaker Oden 2014. Core length: 8.2 m. Coring site:...

Marine sediment core data from Chukchi Sea, Arctic Ocean, core SWERUS-L2-4-PC1

Data from sediment core SWERUS-L2-4-PC1. The core was collected during the SWERUS-C3 expedition with icebreaker Oden 2014. Core length: 6.1 m. Coring site:...

Marine sediment core data from De Long Trough, Siberian margin and slope, Arctic Ocean

Sediment core data from four sites in the East Siberian Sea, Arctic Ocean. The cores were collected during the SWERUS-C3 expedition with icebreaker Oden 2014....

Physical properties and age model of sediment core SWERUS-L2-29-GC1 from the Lomonosov Ridge, Arctic Ocean

The dataset contains physical properties, age model, selected palaeo- and rock magnetic data, and X-ray fluorescence (XRF) counts from a sediment core...

The 3.6 ka Aniakchak tephra in marine sediments from the Chukchi Sea, Arctic Ocean

The eruption of the Alaskan Aniakchak volcano of 3.6 thousand years ago was one of the largest Holocene eruptions worldwide. The resulting ash is found in...

 

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ACSE Age model Air-sea interaction Arctic Arctic Ocean Arctic boundary layer Arctic carbon Arctic clouds Arctic shelf seas Arctic shelves Atmosphere Bathymetry Bering Strait Biogeochemistry Biomarker Boundary Layer CTD Carbon Carbon cycle Carbon dioxide Carbon remobilization Carbon system Cesium-137 activity Chirp Chukchi Sea Cloudnet Clouds Compound-specific radiocarbon De Long Trough Deglaciation Degradation Degradation rates Dissolved ammonium Dissolved iron Dissolved phosphate Dissolved silica East Siberian Arctic Sea East Siberian Margin East Siberian Sea Eddy covariance Gas transfer Geophysics Glaciology Greenhouse gas Herald Canyon High Arctic Holocene Hydrography ISSS-08 ISSS-2020 Icebreaker Oden Isotopes Isotopologues Kara Sea Laptev Sea Lomonosov Ridge Marine Geology Marine Heat Flow Marine geology Marine sediment Marine sediments Mercury concentration Meteorology Methane Micrometeorological data Micrometeorology Model simulation Multibeam Nitrogen Nutrients OSL dating Ocean Oceanography Oden Organic carbon Oxygen concentration Palaeomagnetic secular variation Paleoceanography Past carbon cycling Permafrost carbon Porewater Position and speed Pressure Quaternary Radiocarbon Radiosonde Regional climate models Remote sensing Reservoir age SWERUS-C3 SWERUS-C3 expedition Salinity Sea Ice Sea ice Seafloor morphology Seawater temperature Sediment transport Sedimentology Sediments Seismoacoustic Sensitivity experiments Ship log Ship navigation Siberian shelf Sub-bottom profiling Surface energy budget Surface water Swerus-C3 Temperature Tephra Trace gas Transport Turbidity Turbulence Weather station XRF