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. Objectives: -Determine the heterogeneity of cytoplasmic crowding in a population of cells and whether it correlates with an antifungal drug tolerance. -Determine the link between intracellular antifungal drug
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and reliable methods of control of friction and adhesion. The main objective of the project is to evaluate the influence of externally imposed in-plane transversal oscillations on the forward relative
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involved in various growth processes throughout the plant life cycle. Main objectives will be the prediction of GA-binding residues, their validation using molecular analysis, and the screening for novel GA
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has seen the most innovation, and currently, objects of different sizes (from micrometres to several metres) can be produced. The aim of the research project will be to develop medical devices using
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, or nanophotonics. • Demonstrated track record of research excellence through publications and/or conference presentations. • Proficiency in data analysis and scientific programming (Python or similar). • Excellent
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. Proven track record of peer-reviewed publications, research leadership, and collaboration on large scientific missions or projects. Excellent communication skills and ability to work in interdisciplinary
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manage a research system - Propose an approach adapted to the study objects of the team members - Implement methods or protocols for collecting data or corpus, ensure analysis and interpret the results
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strong motivation for modelling the effects of external structures on the near-wall turbulence. ---------------------------------------------------- 2-Objectives and Scientific Challenges The research
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- Experience in computer programming, if possible object-oriented (ideally C++) - Experience in modeling complex chemical systems, and/or in mathematical/computational analysis of multistable dynamical systems
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additional modification. This phenomenon gives rise to out-of-plane ferroelectric domains. The goal of this postdoctoral position is to optically detect, track, and ultimately control the ferroelectric state