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collaboration to combine their expertise. By integrating these complementary approaches, we aim to provide the first comprehensive picture of Hsp90's structure–dynamics–function relationship, with broad
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, for advancing our fluorescence-based DyeCycling/FRET technology to study biomolecular dynamics. Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and
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We offer you We offer a full-funded PhD position in a highly interactive, multidisciplinary, and international research group within the Biozentrum. Our group spans expertise in physics, molecular
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engaging in conversation. Are you highly communicative, a strong team player, and enthusiastic about welcoming young researchers from around the world? Do you bring a precise, well-structured, and forward
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young researchers from around the world? Do you bring a precise, well-structured, and forward-thinking approach to your work, while enjoying the challenge of learning and mastering new tasks? Are you
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in solution for up to hours. Now, we leverage the unique abilities of nanopore trapping to detect proteins and their conformations, dynamics, interactions, catalytic mechanisms etc. in real-time
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Your position Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and function. Single-molecule FRET is an established technique, unique
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, interactions, catalytic mechanisms etc. in real-time. Building on our published and unpublished work, the successful candidate will advance nanopore trapping in new directions using solid-state and biological
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order to investigate economical and supply systems and the interaction between lakeshore settlements and their environment. The candidate will collaborate closely with the other disciplines involved in
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of Environmental Sciences (DUW). Scientists at DUW investigate the complex interactions between the biosphere, geosphere, hydrosphere, atmosphere and anthroposphere. Understanding the current state