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Field
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for PhD candidates as well as an outstanding research-based training programme, preparing students for a career in academia, science management, or industry. Each PhD candidate is affiliated with one
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of molecular and biological materials using X-ray and neutron scattering. The main research areas are materials for photovoltaics, proteins in solutions and at the interfaces, and complex nano-structured
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using X-ray and neutron scattering. The main research areas are materials for photovoltaics, proteins in solutions and at the interfaces, and complex nano-structured materials. For more information, visit
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, experience with mammalian cell culture systems, e.g. air-liquid-interfaces Strong interest in microbial genomics and transcriptomics Motivation to work in an interdisciplinary and collaborative research
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reproduces the smallscale structures of the fractal laminar-turbulent interface. In the next step, you will further refine the model to capture larger-scale features associated with laminar-turbulent flow
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in applied research abroad for their outstanding scientific achievements. For more information please see the Fraunhofer-Bessel Research Award programme information. Programme information (PDF, 71 KB
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program, colloquia, workshops). Your tasks Processing and analyzing text-based data from learning management systems, assessment systems and qualitative data sources such as interview transcripts
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organizational levels of the brain – from molecular and cellular processes to complex neuronal networks and behavior. The Department Cellular Neuroscience of Prof. Dr. Stefan Remy in association with the Research
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aims to revolutionize our understanding of molecular interactions at solid–liquid interfaces through innovative experimental approaches. By combining expertise in: Feedback controlled thermofluidic
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outstanding students from all over the world to apply for PhD positions in our renowned PhD program. Based in Hamburg, our program offers excellent training and top-level structured supervision in climate