24 quantum-physics-"https:"-"https:"-"https:" Postdoctoral positions at Technical University of Munich
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learning, medical image computing, biomedical engineering, medical physics, or related field Strong Python and PyTorch experience Solid publication record and ability to communicate research results
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chaperones and the question how membrane protein chaperones recognize and process clients on a molecular level. The project has the potential to provide exciting new insights in the molecular biology of cells
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of miniaturized imaging technologies. Your Profile: The successful applicant must have the following: • Ph.D. in natural sciences, electrical engineering, physics, optics, medical technology, biomedical computing
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methods, enabling precise midIR spectral measurements from blood rich skin layers. Your work will bridge measurement physics and biomarker estimation: you will transform raw optoacoustic signals into robust
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Your Profile PhD in Biochemistry, Biophysics, Bioinformatics, Physics, Chemistry, Molecular Biology, or related field Experience in one or more of the following areas: computational protein design and
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, Physics, Biophysics, Molecular Biology, or related filed Strong expertise in bioanalytics and peptide synthesis Experience with automated liquid handling / high-troughput platforms Experience in managing
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to state-of-the-art facilities and a stimulating research setting. Participate in teaching and supervising activities, enriching your academic and professional skills. Application Process: Interested
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underrepresented groups to apply. The review process is on a rolling basis. Please refer to the “Application Procedure” section for details on how to apply. Current Openings Safety, Performance and Reliability in
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-time commitment with a physical presence at TUM. Teleworking is not permitted. Candidates must reside in Munich or be willing to relocate to Munich. Educational Background/Training: The ideal candidate
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involve the integration of: Advanced motion planning and control algorithms Multi-modal perception techniques (e.g., vision, tactile, force) Machine learning models for physical behavior prediction and