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Your Job: We offer a challenging and innovative PhD position within the international EU project LOCALISED. You will play a key role in the development of regionally adapted plans for the European
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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 and Ornamental Crops, the University of Bayreuth, the Technical University of Munich, and the Czech...
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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-edge technologies e.g. Artificial Intelligence (AI) Development of novel tools and algorithms in the...
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Your Job: Join the EU funded SAGELi project to develop and advance battery chemistries by introducing new functionalities into an existing battery technology to achieve ultra-high performant, sustainable and smart lithium-ion batteries. Your tasks in detail: You are involved in the...
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presenting the results, while collaborating with other group members and collaborators You will obtain your PhD from Bonn University. Your Profile: Completed Master`s degree in physics (or related fields
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Your Job: The PhD project focuses on a family of glutamate transporters – excitatory amino acid transporters – that is responsible for synaptic glutamate homeostasis in the mammalian brain
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within the scientists at JSC, Bonn University, and within the CRC "NuMeriQS" You will obtain your PhD from Bonn University. Your Profile: Completed Master`s degree in physics (or related fields) Ideally
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is desirable: Electrochemistry, thin films, polymers, catalysis High motivation for pursuing a PhD within 3 years Ability to show initiative and work independently Excellent cooperation and
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(or more) of the following areas is desirable: Electrochemistry, thin films, polymers, catalysis High motivation for pursuing a PhD within 3 years Ability to show initiative and work independently Excellent
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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