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with host bacteria during infections, particularly focusing on the use of E. coli and its related phages as model organisms. However, the results may be applied in pathogenic bacteria related to E. coli
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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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, 2025 or as soon as possible hereafter. Our group and research The Weischenfeldt lab use genome data science to delineate the mutational mechanisms and clonal evolution of cancer, with a particular focus
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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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*************************************************************************** Application and Assessment Procedure Your application including all attachments must be in English and submitted electronically by clicking APPLY NOW below. Please include: Motivated letter of application (max
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of individual atoms. The development of this technology is crucial for the next generation of quantum device fabrication techniques and has great commercial interest and potential for patenting. The skills and
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English and submitted electronically by clicking APPLY NOW below. Please include: Motivated letter of application (max. one page) Curriculum vitae including information about your education, experience
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: https://phd.humanities.ku.dk/phd-programme/structure/. Application All applications must be submitted online via the link “Apply now” at the bottom of this page. The application must be written in English
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involves the use of quantum chemistry, machine learning, and genetic algorithms to search for new homogeneous chemical catalysts. Who are we looking for? We are looking for candidates within the field
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preferably has strong programming skills and experience with the modeling and simulations of fluid or solid mechanics or ice sheet flow and deformation (for example by use of finite element/volume methods