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combines structural biology (single-particle cryo-EM), protein engineering (including non-canonical amino acids), fluorescence spectroscopy (FRET, environment-sensitive dyes), and classical ligand binding
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for the last decade adopted a suite of cutting-edge biophysical techniques. We utilize a blend of structural biology (single particle cryo-EM), protein design (non-canonical amino acids), fluorescence
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chromatograph, FIA and electronic particle counters i.e., Coulter counters also available. As a PhD fellow, you will be associated with the research groups and get access to instrumentation of your main and co
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reactions. The key is the ability to sample the electrolyte near the working electrode and bring that to analysis instruments in a fast and repeatable way. Research field: To accelerate materials discovery
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pavements that are subjected to moving, accelerating, braking, and turning wheel loads. The work will be carried out as part of the LOOPER project, supported by the Danish Energy Agency. The LOOPER project
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-essential components of the problem, thereby reducing the size of the subproblems and accelerating the overall solution process. The second line targets the convergence issues often encountered in column
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the ambitions to accelerate the detection and optimization of sustainable chemical approaches through the development of novel reactions and advanced analytics using state of the art high-field and hyperpolarized
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of tissue plasticities in diet-induced obesity and regression. For the current project Unlocking the Deep GPCRome for Accelerated Fibrosis Resolution we seek a molecular and cell biologist or similar with
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; Synopsys or Mentor Graphics. Strong programming skills: Python and C/C++. Experience in hardware accelerators, in-memory processing, or SoC integration. Strong analytical and problem-solving skills, with