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responsibilities include: isolation of individual interaction-specific compounds from soil fungal co-cultures and analysis of their molecular structures via spectroscopy methods; analysis of interactions between
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up to 2050. Quantifying the environmental impacts of primary and secondary steel production under different future scenarios, including climate change, energy and resource use, water consumption, waste
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which attention is paid to individual quality and where development opportunities are paramount. Together we strive for an inclusive culture in which we embrace differences. We would therefore like
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many different scientific disciplines and stakeholders from both countries collaborate to design the future of the greenhouse sectors. In this position, you will work in a social science research team
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the difference. With their knowledge and curiosity, our staff provide a high-quality education and conduct pioneering research that extends beyond the campus. You will have the opportunity to take the initiative
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models are increasingly used in plant breeding and crop improvement pipelines. But training such models on private genomic data carries a risk: rather than learning general rules of sequence-function
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activities of both research groups. Co-supervising Bachelor, Master students and teaching assistance where appropriate. What we ask of you We are looking for someone who is genuinely excited about
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deployment scenarios to evaluate future steel production pathways and circular economy strategies up to 2050. Quantifying the environmental impacts of primary and secondary steel production under different
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, Tristan-Gough). Topic 3 will be addressed by geochemical and geodynamic modelling. The 3 PhDs will work on all three topics by using different techniques. The analytical work will be performed in the NIGEL
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well as data availability. This could include research focused within or across countries, as well as across different levels and dimensions of cooperation. We expect such a project to require engagement with