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                Behaviour in Turbulent Fluids through Analytical and Probabilistic Methods” (grant number 233216). The successful candidate will investigate both phenomenological and theoretical aspects of turbulent fluids 
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                and causes of infections and non-communicable diseases. To understand and promote the well-being of people in different cultural and environmental contexts, EPH applies various methods ranging from 
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                spectroscopy for atomic-resolution insights in solution Single-molecule FRET for time-resolved, single-molecule dynamics This unique combination of methods is achieved by the synergy of the Hiller and Schmid 
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                through Analytical and Probabilistic Methods" (grant number 233216). The successful candidate will investigate both phenomenological and theoretical aspects of turbulent fluids, focusing on topics such as 
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                to study cancer metastasis. Prior experience in molecular biology is welcome, but not required. A state-of-the-art project on cancer metastasis Broad suite of cutting-edge biomedical methods and protocols A 
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                -dimensional quantum materials and develop advanced sensing methods for future quantum technologies. You will be embedded in a vibrant, international research group with strong expertise in quantum sensing and 
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                part of this program, IOB offers PhD and MD-PhD fellowships to outstanding candidates from diverse fields such as Biology, Medicine, Physics, Computer Sciences and Engineering who wish to pursue 
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                Methods" (grant number 233216). The successful candidate will investigate both phenomenological and theoretical aspects of turbulent fluids, focusing on topics such as Lagrangian spontaneous stochasticity 
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                techniques: NMR spectroscopy for atomic-resolution insights in solution Single-molecule FRET for time-resolved, single-molecule dynamics This unique combination of methods is achieved by the synergy 
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                sensing methods for future quantum technologies. You will be embedded in a vibrant, international research group with strong expertise in quantum sensing and nanoscale physics, and benefit from an open and