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38.0 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The Molecular
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young, dynamic, and international team, led by Prof. Carole Linster. A main objective is to unravel how metabolic impairments are involved in rare and more common neurodegenerative or neurometabolic
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thermodynamics. • Investigate molecular recognition mechanisms, including lectin clustering and complex stoichiometry, supported by mass photometry and molecular dynamics simulations. • Integrate biophysical and
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on the Denmark Hill campus at King’s College London, housing 150 clinicians and scientists from disciplines including neuroimaging, neurology, psychiatry, genetics, molecular, cellular biology and drug discovery
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of tomorrow and creating novel solutions to major global challenges. Our community is made up of 120 nationalities, 14 000 students, 400 professors and close to 5000 faculty and staff working on our dynamic
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generators, and molecular ferro- and piezoelectrics, as well as on fundamentals of charge transport and electronic processes in molecular semiconductors. Our research follows a holistic approach between
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, chemical kinetics, energy, plasma-reagent interactions, plasma processing for industrial applications. modeling and simulation of plasma dynamics. Research: Conduct high-impact research in the field
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network of universities and research centers around the continent to link real field issues with up-to-date science. The institute consists of a multidisciplinary team of agronomists, biochemists, molecular
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into cellulose-solvent interactions and fiber formation. The candidate will develop models at different levels, including molecular dynamics, DFT, and mesoscale simulations. This multiscale approach will assist in
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advanced characterization methods of inorganic materials and their assemblies, ideally with a focus on battery materials. Demonstrated proficiency in Density Functional Theory (DFT) and/or Molecular Dynamics