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adapting to dynamic updates, while also requiring robust interpretation and linking methods to enable scalable interoperability. The SecondPass project aims to address these challenges and facilitate
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controlled common garden experiments, and analyze the molecular pathways involved in adaptation to extreme environments. While a core project framework is in place, there is flexibility to tailor specific
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, organisations and politics, social inequality, migration, integration and diversity, cultural and political participation, population dynamics. Human geographers are also engaged in economic and political
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political participation, urban studies, sustainable transformations, population dynamics, and work, organisations and politics. The call is not thematically limited to these topics, but preference can be
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at the intersection of formal ontology, information modelling, and artificial intelligence. The postdoc will contribute to both the theoretical and applied dimensions of the IMF initiative and is expected
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transformations, work, organisations and politics, social inequality, migration, integration and diversity, cultural and political participation, population dynamics. Human geographers are also engaged in economic
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diversity, cultural and political participation, urban studies, sustainable transformations, population dynamics, and work, organisations and politics. The call is not thematically limited to these topics
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competent candidate with strong experimental background in molecular biology and/or epigenetics that can work independently. The candidate should be able to collaborate in a research team of national and
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PhD Research Fellow in Chemistry-focus on Experiments in Chemical Kinetics and Heterogeneous Catalys
conduct catalytic experiments using advanced transient methods based on mass-spectrometry and develop mathematical models to interpret these data in terms of molecular mechanisms. International
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the Research Council of Norway. In this project, we will use advanced time-lapse imaging, numerical simulations, and reactive mixing theories to better understand and predict the role of fluid mixing as a driver