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Field
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Heating Technology «, we design and construct various prototype machines for laser-based and laser-assisted processes. Within the scope of your thesis, you will develop the laser-assisted heating processes
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in the fields of microbiology, chemical biology, infection biology, biogeosciences, aging research, optics/photonics, materials science and bioinformatics/systems biology. Jena has an attractive
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models to investigate causal relations, e.g. by direct bacterium-host cell interactions or via microbial metabolites. We use well-established, cutting-edge wet-lab techniques combined with bioinformatic
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on these considerations, solutions will be developed and implemented to create an advanced testing platform for the comprehensive evaluation of the long-term stability of invasive brain-computer interfaces. Your task will
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computing, domain-specific multi- and manycore architectures, networks-on-chip (NoCs), methods and algorithms for application parallelization, simulators and virtual platforms for application- and
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metabolism change, paralleling their locomotion in the gut, (ii) Ascaris suum L3 larvae use different metabolic pathways in distinct body regions, (iii) with Artemisinin derivatives not interfering with
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. In this position, you will drive the bioinformatical/computational aspects of collaborative projects aiming to ultimately improve immunomonitoring of cancer patients by providing a refined strategy to
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of cloud microphysical processes, with the goal to better understand clouds and their interactions with other Earth system components. Using this framework, we strive for a high degree of process-level
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times through higher parallelization and enable targeted stimulation of hardware faults by adjusting the models. To this end, a simulation environment based on a virtual prototype will be developed using
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with other LIB researchers of both localities. We expect the candidate to hold a PhD in Evolutionary Biology, Molecular Biology, Bioinformatics, or a closely related field with strong emphasis