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upon the Cloudlab project , the collaborating SNF project BeyondCloudLab (4 PhDs, 2 PostDocs) brings together a team including Prof. Lohmann and Dr. Henneberger (ETH) working on cloud microphysics and
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Frameworks (MOFs) and Covalent Organic Frameworks (COFs) with magnetic structures for targeted drug delivery, ensure biodegradability and precise magnetic control, and perform comprehensive in vitro and ex
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of hit and lead compounds through structure-activity relationship (SAR) studies to support a preclinical validation processes. Work in a multi-disciplinary environment collaborating with experts in
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focus. We research media use and its effects in the family context and digital media use for coping with stress. The specific PhD project has a focus on the dynamics of effects of digital media use
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-troversial, particularly in the setting of "low grade" DS. Currently, DS is measured based on static radiographs, which do not capture the dynamic nature of this instability. Basic data sets on a dynamic
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an interdisciplinary team and participate in collaborating with other PhD and Postdoc members. The position will be held in the Microbial Physiology and Resource Biorecovery laboratory (MICROBE) led by Dr. Wenyu GU
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on Snow and ice parameter estimation using high frequency multi-modal SAR. Job description The research focuses on the retrieval of snow and ice parameters and their dynamics using multimodal Synthetic
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and try to control their nano-structures as well as to apply them to real-world applications. If you have strong organic chemistry background, and like to apply it to make macromolecules, we can provide
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develop induced proximity therapeutics. Profile The ideal candidate will hold a Master’s degree or equivalent in Molecular Biotechnology, Biochemistry, Molecular Medicine, Structural Biology, Molecular and
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materials. The Computational Mechanics of Building Materials (CMBM) aims to understand and predict mechanical failure in materials and structures. By combining numerical modeling tools with tailored