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approaches to electrolyte systems Requirements: Candidates must have a Ph.D. in Physics, Chemistry, Applied Mathematics, or related fields. Desirable: - English language fluent, spoken and written - excellent
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efficacy of biopolymer-based materials using antimicrobial assays Desirable: - Background in Chemistry, Microbiology, Plant Sciences or a related field - Experience with working in a biosafety lab setting
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In the research group, we investigate how collective behaviour arises from the interaction of many similar particles or "agents", for example transport processes in porous materials or the formation
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of accounting, corporate reporting in a national and international context, and auditing issues. Methodologically, the focus is on quantitative empirical approaches, in particular computer-aided text analysis
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financial investments. This project aims to uncover the often-hidden financial giants in the reinsurance sector to understand how they reacted to climate change and ongoing processes of financialization. Job
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university degree (Master’s, Diploma) in a scientific subject (e. g. Mathematics, Computer Science, Physics, Bioinformatics, Data Science, or related fields) Desirable: • Excellent programming skills in Python
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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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CRC 1114 aims at methodological developments for the modelling and computational simulation of complex processes involving many (more than two) interacting scales, driven by real-life applications
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a new perspective to explore temporalities of the future within the humanities and the social sciences. The emerging field of research is expanded to include the two dimensions of global
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to study complex biophysical processes on long timescales. We use data-driven methods for systematic coarse-graining of macromolecular systems, to bridge molecular and cellular scales. We work on a