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Field
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) datasets of VCP/p97 and VCP/97–ligand complexes. This will enable obtaining detailed maps of conformational states associated with mini-protein engagement, allowing assessment of how designed binders control
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, chemically demanding, and operationally complex. By developing porous structures that enable fluids to separate naturally through capillary and interfacial effects, this project aims to advance a more
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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
refractory compositionally complex alloys (RCCAs) in the form of thin films, targeting their application in extreme environments such as those encountered in nuclear fusion reactors. The approach relies
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to their research training. The Project How does the structure of group interactions shape coordination, norm formation, and the emergence of communication systems? What changes when we move from pairwise
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in the molecular mechanisms of gene expression regulation and the structure of protein–DNA complexes? Would you like to gain experience working with modern techniques of structural biology and
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on the interplay between observations of natural phenomena, experimentation, and the modeling of the associated complex processes. ISTerre also conducts solid Earth observation missions, by hosting and
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the sustainable packaging of granular and complex fluid materials through virtual prototyping. By coupling the open-source software MercuryDPM for discrete particle modelling with oomph-lib for the simulation
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Petersen (MCEM)) "Frustration and complexity in glasses" (with Dr Tim Petersen (MCEM)) "Local structures in soft colloidal materials with anisotropic particles" (with Prof Rico Tabor (Chemistry)) web page
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PhD Position – Development of metal-organic frameworks-glass composites for sustainable applications
to investigate these complex structures. Overall, the project aims to establish MOF-glass composites as a new class of functional materials for sustainable applications such as adsorption, catalysis, and
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of the linear-scaling Wannier optics approach, with the goal of enabling predictive simulations of optical excitations in large and structurally complex systems. Particular emphasis lies on the theoretical