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chemical environments and correlated disorder to thermodynamic stability and transport. The research will form a central part of CENSEMAT's simulation-guided materials programme and will be carried out in
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. For both positions we expect: A strong background in thermodynamics, fluid mechanics, and heat transfer. Solid scientific programming skills, for example in Python or MATLAB. A documented publication
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-on experience with H2/CO2-based anaerobic pure cultures of either methanogens or acetogens Expertise in microbial physiology, including growth kinetics and associated thermodynamic calculations Experience with
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science, energy engineering or a closely related field. Solid background in thermodynamics, transport phenomena, and process modelling and computer programming with documented experience in developing and applying
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areas: i) Materials' mechanical properties and -testing, ii) Polymer science, iii) organic synthesis, v) Macromolecular interactions, vi) Thermodynamics, vii) Polymerization kinetics, viii) Molecular