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of inorganic ions and organic matter can cause defects in electrolyser stacks, resulting in costly process disruptions. This project considers: i) development of analytical methods for the quantification
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methods for photocatalytic membrane development. The project will focus on i) photocatalyst selection, looking beyond the most commonly used materials, ii) exploring options of catalyst deposition and
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areas: software testing, runtime monitoring or diagnostics combined with a desire to embed these in today's assurance processes. Knowledge of software development methods (especially agile methods such as
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component in the transformation of the energy sector and the decarbonization of emission-intensive sectors. Within the framework of the German and the European hydrogen strategies, we intend to recruit and
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component in the transformation of the energy sector and the decarbonization of emission-intensive sectors. Within the framework of the German and the European hydrogen strategies, we intend to recruit and
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morphological and biochemical methods as well as transcriptomic approaches at different time points during RO maturation. We expect robust phenotypes such as altered morphology and differentially spliced genes in
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the opportunity to acquire expert skills and knowledge of innovative single-molecule manipulation methods applied to a highly relevant topic of molecular separation. Salaries will be according to DFG standards
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of the dissertation Literature research Development of methods to optimise the proton dose distribution in the presence of magnetic fields from our in-beam magnetic resonance (MR) imaging prototypes Planning
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plant nutrition experience in the use of instrumental analytical methods such as HPLC-MS, GC-MS knowledge in the preparation of plant tissues for the extraction of natural substances experience in
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expression patterns. Our approach combines genomic, molecular, neurobiological, comparative, and computational methods to link genome architecture to neural circuit organization and to understand