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Max-Planck-Institut für Kohlenforschung, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 16 days ago
in its history. The institute is engaged in basic research in the field of catalysis. The department Powder Diffraction and Surface Spectroscopy headed by Prof. Dr. Claudia Weidenthaler invites
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adults, characterised by severe genomic instability and a lack of targeted therapies. Using cutting-edge methods and unique primary patient-derived cell models, this project will seek to understand
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with stakeholders would be desirable. Previous experience of collecting primary qualitative data collection (including questionnaire design) and data analysis is desirable. Experience of working with
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relevant Master's degree (or exceptional Bachelor's) in biomedical/mechanical engineering, materials science, or computer science, with experience in mechanical design/textiles and programming (Python/MATLAB
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should have or expect to achieve at least a 2.1 honours degree in materials science/engineering, metallurgy, physics, chemistry, or a related subject. To apply, please contact the main supervisor, Prof
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We are looking for a PhD candidates for a joint project between the groups of prof. Nathalie Katsonis, prof. Willem Kegel, and prof. Ben Feringa, that will be carried out within the framework
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. A strong mathematical foundation and excellent academic performance are expected. Strong written and verbal communication skills in English What you will do As a PhD student, your primary
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Your Job: The department of Electrocatalytic Interface Engineering, headed by Prof. Dr.-Ing. Simon Thiele, focuses on the development, characterization and testing of electrochemical systems from
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University (principal supervisor Assoc. Prof. Claire Henry) and associate supervision will be provided by fellow academics in Screen or other discipline(s) as appropriate to the PhD project. The full-time PhD
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instead of the statutory 20. Additional employment conditions Work and science require good employment practices. Radboud University's primary and secondary employment conditions reflect this. You can make