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being part of these two networks. Subject description The project involves mathematical modelling of complex fluid dynamics, in particular viscoelastic flows in nano-structures. The work involves
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arithmetic complexity. Topics may include Arakelov geometry, birational and Calabi–Yau geometry, analytic torsion, and related height-theoretic or intersection-theoretic ideas. More details on the project
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reactor modeling and accelerate the scale-up of emerging net-zero technologies? Join us at the Department of Chemistry and Chemical Engineering! About us Our research group at the division of Chemistry and
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receive the benefits of support in career development, networking, administrative and technical support functions, along with good employment conditions. More information about the department is available
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modeling will be supported by collaborators). - Prior work in collaborative, interdisciplinary projects. Most importantly, we value enthusiasm for learning new techniques, the ability to troubleshoot complex
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the complex structure of populations into single-cell components that can be studied individually and collectively. To achieve this, we will apply novel tools based on semi-permeable capsules, including various
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expertise from control theory, machine learning, optimization, and network science, spanning diverse application domains such as energy systems, biomedical systems, neuroscience, and safety and security
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for academic development, interdisciplinary collaboration, and international networking Entry requirements We are seeking a highly motivated postdoctoral fellow with the following qualifications: A PhD (or near
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relevant, yet complex and challenging to resolve spatially, provide an ideal benchmark for the method’s performance. Microorganisms such as bacteria, furthermore, play important roles in all types of niches
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widespread and getting increasingly established, a more fundamental understanding in terms of soft matter and complex liquid concepts is still largely missing. Importantly, the related liquid-liquid phase