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structural biology, biochemistry, in vitro reconstitution, cell biology, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation
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, overexpression systems, and knockout cellular models. Proficiency in cell-based and biochemical assays, imaging, and high-throughput screening. Ability to design and execute complex experiments independently
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forms the basis of the most promising present paradigm for quantum computation. Furthermore, the collaboration within InstituteQ opens up avenues for applications of your knowhow and newly developed
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of superconducting quantum circuits, which forms the basis of the most promising present paradigm for quantum computation. Furthermore, the collaboration within InstituteQ opens up avenues for applications of your
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device engineering. You will gain experience on high-frequency operation and measurement of superconducting quantum circuits, which forms the basis of the most promising present paradigm for quantum
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, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation and how these structures respond to external stress. We want
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reconstitution, cell biology, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation and how these structures respond to external
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detector, featuring fringe-free imaging. You are also responsible for sample preparation using either a Leica GP2 or Cryosol Vitrojet, and assist users with their cryo-EM structural biology projects
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the national cryo-EM facility, which currently houses a 200-kV Talos Arctica with a Falcon 4i detector, featuring fringe-free imaging. You are also responsible for sample preparation using either a Leica GP2 or
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, which currently houses a 200-kV Talos Arctica with a Falcon 4i detector, featuring fringe-free imaging. You are also responsible for sample preparation using either a Leica GP2 or Cryosol Vitrojet, and