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glycobiology, radiopharmaceutical sciences, targeted radionuclide therapy, and translational research. Job description As a PhD student, you will: Develop and optimize radiolabeling strategies for glycosylated
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, optimization and inverse problems, computational aspects of stochastic (partial) differential equations, randomized numerical algorithms, structure-aware and structure-preserving numerical methods for continuum
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-responsive drug carriers from proof-of-concept toward clinical translation. Successful candidates will develop and optimize carrier formulations, assess drug loading and release performance, characterize
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modulation, wave propagation, and temporal scattering Design and optimize subwavelength THz waveguides that enable homogeneous optical switching and efficient time interfaces Study the emergence of time
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of results and their communication for different user groups Support users with optimal usage and interpretation of scenario products Profile MSc in natural science or computational science and preferably a
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-tuning, or related optimization methods. Experience with cloud infrastructure, MLOps or LLMOps, containerization, or production deployment. Frontend and/or backend development skills. We offer ETH Zurich
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-guided treatment planning and targeting Optimization of targeted drug delivery and therapeutic dosing Development of closed-loop ultrasound neuromodulation systems Design of custom hardware and software
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, optimizing and continuously extending your experimental platform, including optical alignment, troubleshooting, upgrades and routine maintenance We are looking for researchers who enjoy working directly with