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: 3D structural and molecular mechanistic analyses of PERIOD protein interactions in the mammalian circadian clock This PhD project aims to characterize the dynamically changing protein interactions
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criteria - PhD in Life Sciences (structural biochemistry/biophysics) or chemistry of living systems. - Experience in biochemistry (protein expression, purification and quantification, enzymatic kinetics
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for membrane biophysics and drug‑delivery research. While conventional small‑angle scattering (SANS/SAXS) provides exquisite nanoscopic structural detail, it rarely captures the crucial mesoscale dynamics
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, contribution to supplementary health insurance, continuous professional training. To support the transition to more sustainable polymers, the PhD student (m/f) will develop a new generation of dynamic polymer
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‑EM (Rogala Lab, Stanford) — https://rogala.stanford.edu (link is external) . Rogala Lab is a part of Stanford’s Department of Structural Biology (link is external) , the Department of Chemical
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be compared with structural models and diffusion coefficients for Li+ ions calculated by ab initio molecular dynamics. Hosts and research infrastructure: This project is funded by ANR, French research
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of Structured Matter (https://nism.unamur.be ). Website for additional job details https://www.unamur.be/fr/sciences/chimie/recherche/uco/rco Work Location(s) Number of offers available1Company
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of 3 ½ years duration. The PhD studentship project will use state-of-the-art experimental structural biology and computational tools to gain a deeper understanding of the environmentally important
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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Understanding the dynamical evolution, stellar populations, and structural properties of dense
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of responses shape local conflict dynamics and forms of belonging. The project is structured around two core sub-topics and addresses the following research questions: 1. Trajectories and variation in far-right