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systems with applied experience in developing, testing, and demonstrating power electronic systems hardware. Preferred Qualifications: Experience with advanced microscopy techniques such as transmission
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, or zeolite synthesis and characterisation; (c) experience with standard catalyst characterisation techniques (e.g., XRD, gas physisorption, electron microscopy, or spectroscopic methods); (d) solid track
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The successful candidate should possess the following: • A PhD in Materials Science, Chemical Engineering, Chemistry, Physics, or related fields • Highly motivated, committed, and capable
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. The Institute hosts several shared research infrastructures, including cutting-edge facilities for genomic and transcriptomic sequencing, cryogenic electron microscopy (cryo-EM), light microscopy, and proteomics
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structural biology tool, in combination with several other complementary techniques, in particular cryo-Electron Microscopy (cryo-EM), but also Mass Spectrometry (MS), Small-Angle-Scattering and Fluorescence
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essential for flagellar protein export, but its presence ensures a robust and efficient assembly process. The project combines bacterial genetics, biochemical approaches, and super-resolution microscopy. Your
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biophysics are especially encouraged to apply. Familiarity with live-cell microscopy or yeast cell biology is helpful but not essential. Please attach the following electronic documents to the application
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, such as computer science, neuroscience, engineering, physics, applied mathematics (or be near to completion of their PhD). Skills in computer programming (especially Python or C++ or Matlab) and
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, such as computer science, neuroscience, engineering, physics, applied mathematics (or be near to completion of their PhD). Skills in computer programming (especially Python or C++ or Matlab) and
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lymphoid and non-lymphoid tissues using intravital microscopy techniques. We welcome applications from recent PhD graduates who are interested in this or a related field, particularly those who may bring a