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Infrastructure? No Offer Description Work group: IBG-4 - Bioinformatik Area of research: Promotion Job description: Your Job: Analysis and integration of diverse biological data from the field of plant sciences
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effects and to extrapolate pivotal research findings depicted within the models for future climate scenarios. You will be responsible to extend and parameterise the functional-structural plant model
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scenarios. You will be responsible to extend and parameterise the functional-structural plant model CPlantBox to support crop modelling with relevant root traits and functions. Your Tasks in Detail: Setting
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Your Job: Analysis and integration of diverse biological data from the field of plant sciences (large scale genomic, transcriptomic, proteomic, metabolomic and/or single cell data) using cutting
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Your Job: This work will be part of the DFG project “Texture Dependency of Arbuscular Mycorrhiza Induced Plant Drought Tolerance (TeAM-uP)” in collaboration with the Leibniz Institute of Vegetable
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Induced Plant Drought Tolerance (TeAM-uP)” in collaboration with the Leibniz Institute of Vegetable and Ornamental Crops, the University of Bayreuth, the Technical University of Munich, and the Czech
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materials for the electrodes with industrial relevance and high-performance cells are to be demonstrated. The work is part of a Franco-German project on high-performance batteries and also includes a research
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between electrokinetic transport, surface charging, and interfacial reactivity under nanoconfinement is essential for the optimal design of next-generation ECL materials. As a PhD candidate at Theory and
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materials will be optimized and new materials will be investigated based on theoretical predictions. At the end of the project, the industrially scalable production of a high-performance active material
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, and interfacial reactivity under nanoconfinement is essential for the optimal design of next-generation ECL materials. As a PhD candidate at Theory and Computation of Energy Materials, you will be part