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student (Master's degree) who is interested in carrying out their PhD work in biomedical ethics or bioethics. This call is for an “open-track” project, where the applicant can choose his or her doctoral
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will reconstruct past climatic and ecologic changes at ice age refugia for temperate trees. The larger project is co-hosted by the Universities of Basel and Bern, and involves a team of four principal
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principal investigators, eight PhD students, and two postdoctoral researchers. During the Last Glacial Maximum (LGM; ~23 – 19 thousand years ago), temperate tree species in Europe were forced to retreat
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to sustain and promote an inclusive culture, ensure equal opportunities and value diversity and respect in our working and learning environment. Depending on your interests and background, your main tasks will
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characterization and application of oxo clusters and MOFs. Your profile Candidates must have completed bachelor's and master's degrees in chemistry. Alternatively, a Master in Nanoscience or chemical engineering
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and computer scientists PhD applicants must possess a Master's degree in mathematics, theoretical physics, or computer science. Candidates should have an exceptional academic record and a robust
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perform quantitative hydrogen analysis using electron spectroscopy. Main task of the PhD student is to establish the scientific basis for high-resolution electron recoil spectroscopy for surface hydrogen
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synthesis to materials characterization and application of oxo clusters and MOFs. Candidates must have completed bachelor's and master's degrees in chemistry. Alternatively, a Master in Nanoscience or
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contributing to department teaching activities; this responsibility also builds communication and management skills of PhD students Profile You have completed a Master's Degree relevant to Paleoclimate study
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keen interest for bio-imaging. Completed Master`s degree in molecular/structural biology or biophysics. An outstanding academic record. Previous experience in protein imaging using atomic force