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Field
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to map chromatin dynamics and its consequences. Job Description: Chromatin is not immobile. It is a highly dynamic material whose 3D structure controls essential genomic functions from transcription to DNA
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, structure theory of Kac-Moody algebras, geometric/combinatorial representation theory, quiver representation theory. • Some experience with SageMath, polymake or other related mathematical software
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dynamics, structural health monitoring, and signal processing using vibroacoustic signals, and fault diagnosis. You communicate clearly with others and have a good ability to express yourself in English
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Do you have experience with modelling structures subjected to dynamic loading? Are you interested in data-driven methods for modelling applied loading? Are you eager to share your knowledge within
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human language evolve? What are the social, cognitive and environmental pressures that drive the emergence of language and shape its structure? As a postdoctoral researcher, you will explore
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methods at the density-functional and dynamical mean-field-theory levels, metal-insulator and structural phase transitions, quantum critical points, nonlinear and anomalous responses, optical traps, quantum
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-ray, neutron, and charged-particle flux; material selection for structural and functional reactor components; exploration of advanced and conventional cooling systems; energy extraction and conversion
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Do you have a computational background and interest in developing novel tools for integrating structural biology data to understand regulation of disordered regions of proteins? Then the Viennet lab
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untargeted metabolomics using LC-MS/MS-based molecular networks) Fractionation of the extracts; LC-MS and bioactivity-guided isolation and structure elucidation of the purified metabolites Supervising and
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of the extracts; LC-MS and bioactivity-guided isolation and structure elucidation of the purified metabolites Supervising and training students Maintain analytical equipment Cooperate with other large collaborative