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Results 121 - 130 of 566 for i
Project details [100.00% relevance%]
, W. Roeder, Dr. D. Schiedek, Dr. M. Schmidt, I. Schuffenhauer, S. Weinreben, K. P. Wlost
https://www.io-warnemuende.de/project-details/items/130.html
Project details [99.85% relevance%]
: Biological Oceanography Participation: I. Liskow Cooperation: Leibniz-Institut für
https://www.io-warnemuende.de/project-details/items/153.html
KLAUSI: project details [99.79% relevance%]
M. Boettcher, K. Burkhard, T. Cabus, A. S. Chua, I. Diercks, E. Mario, M. Fink, M. Fouqueray, F. … Gasanzade, S. Geilert, J. Hauck, F. Havermann, I. Hellige, S. Hoog, M. Jürchott, H. T. … Kalapurakkal, J. Kemper, I. Kremin, I. Lange, J. Marquez Lencina-Avila, M. Liadova, F
Projects [99.58% relevance%]
following, you find a list of all IOW projects I am (or was) involved in. Please click on the
https://www.io-warnemuende.de/lars-umlauf-projects/for/282.html
KLAUSI: project details [99.50% relevance%]
The SECOS II projects builds upon the SECOS I achievements that aims to understand, determine … important knowledge gaps still open after SECOS I phase, to assess such sediment functions and … 10.3390/app112411799 Gogina, M., M. L. Zettler, I. Wåhlström, H. Andersson, H. Radtke, I. … W. Dippner, M. Gogina, U. Janas, H. Kendzierska, I. Liskow and M. Voss (2018). Impact of
Torben Bruhns [99.46% relevance%]
, S., Labrenz, M., Wegner, M., Sokolova, I.M., 2023. Combined effects of temperature and … /j.marenvres.2023.106231 Bruhns, T., S. Timm and I. M. Sokolova (2023). Metabolomics-based … Haider, F., S. Timm, T. Bruhns, M. N. Noor and I. M. Sokolova, 2020. Effects of prolonged food
KLAUSI: project details [99.38% relevance%]
affected by climate change, it is essential to (i) improve the quantification of the individual … other oxygen minimum zones, we hypothesize that (i) pelagic microbial CH4 oxidation within the oxic
KLAUSI: project details [99.19% relevance%]
affected by climate change, it is essential to (i) improve the quantification of the individual … other oxygen minimum zones, we hypothesize that (i) pelagic microbial CH4 oxidation within the oxic
Project details [98.94% relevance%]
) Department: Marine Chemistry Participation: I. Hand Cooperation: Universität Hamburg, GKSS
KLAUSI: project details [98.72% relevance%]
affected by climate change, it is essential to (i) improve the quantification of the individual … other oxygen minimum zones, we hypothesize that (i) pelagic microbial CH4 oxidation within the oxic