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qualitative data via focus groups to identify the best conditions for a feasible intervention. Subsequently, the controlled trial will test the immediate and longer-term benefits of resonant breathing
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nematode community to N mineralization and N2O emissions in realistic soil conditions. In this project, we will set up unique multitrophic experiments controlling for the presence of specific trophic groups
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stability assessment of novel catalysts by electrochemical flow cell measurements that will be coupled to on-line analytics (c.f. https://www.nature.com/articles/s41563-019-0555-5). Specifically, an in-house
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model for Flanders that allows to analyse the carbon emissions of the stock, both operational and embodied. You will then use this model to assess the impact of various energy conservation measures and
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effective risk assessment and solutions. Trees4Adapt will 1) enhance empirical understanding of climate change, biodiversity loss, their interdependencies, and how these influence risks; 2) develop evidence
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of microbial ecology and technology, with a strong interest and expertise in bioremediation technologies. The successful candidate will join the Microbial Community Engineering (MiCE) research group, led by Prof
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investigated before. Since recent European droughts are unprecedented in the last two millennia, and this has initiated the largest pulse of forest disturbances in almost two centuries, the time to assess