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image/vnd.dxf - 176.8 KB -
MD5: b824bf47894d89edca63327ee5e801d6
3D model of the upper layered series |
TIFF Image - 6.1 GB -
MD5: 93b8d0b05c8307382b72c2cd010fba89
The original μ-CT data as TIF-file |
Dec 15, 2023 -
In-situ drift and wave observations of sea ice, icebergs and open ocean in the Greenland Sea
PNG Image - 1.2 MB -
MD5: d3d1d070875fd998c40ba66bb3097ded
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Nov 24, 2023 -
Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia
JPEG Image - 4.5 MB -
MD5: fd8172d1c7f27cff373b200f5eb2c86b
Figure 1.jpg |
Nov 24, 2023 -
Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia
JPEG Image - 5.2 MB -
MD5: ceba49b39c4a9dd4bd2acb56f86f35da
Figure 2.jpg |
Nov 24, 2023 -
Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia
JPEG Image - 9.5 MB -
MD5: 82bc1f1a195511d7eb95b2e29a7136bc
Figure 3.jpg |
Nov 24, 2023 -
Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia
JPEG Image - 2.8 MB -
MD5: c2e804bc96a51ce6f72a19df790e90b4
Figure 4.jpg |
Nov 24, 2023 -
Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia
JPEG Image - 2.2 MB -
MD5: 4c0064b7d979eb67baa623e6408b1d8f
Figure 5.jpg |
Nov 24, 2023 -
Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia
JPEG Image - 4.5 MB -
MD5: ba7172c28c0a164a833ed703392e8ec6
Figure 6.jpg |
PNG Image - 48.9 KB -
MD5: fff926258dcab1e16250bfd7ee909d16
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