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modelling, numerical development and the analysis of physical phenomena. In particular, they will be involved in designing models suited to the systems under study, their numerical implementation, and the
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, electron microscopy, X-ray diffraction, etc.). Methodology: • Design and synthesize model substrates to measure the activity of enzyme mimics. • Develop analytical methods to detect and quantify chemical
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programming, microfluidics, and engineering to design sophisticated algorithms for exploring and manipulating information encoded in DNA-based graphs. The position is fully funded by a prestigious CNRS
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of recent theories related to charge ordering. • Design and implementation of experiments on thin-film growth and topotactic reduction; • Active participation in synchrotron measurement campaigns in France
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four main objectives: - Design and fabricate foam-bonded granular materials, by controlling formulation parameters, shaping processes, and binder solidification. - Characterize the microstructure
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developed a unique nanoelectromechanical resonator (NEMS), consisting of a silicon nitride drum capacitively coupled to an Al drum resonator, so called double-drum resonator. Its unique device design gives
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work on the ERC project and use genetics as well as high-resolution in vivo and in vitro imaging to study how T-tubules and the sarcoplasmic reticulum interact with sarcomeres during flight muscle
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, or optimization**, connected to **artificial intelligence** and the research of **Antonin Chambolle** and his collaborators at CEREMADE. The position is a research position. The candidate will interact mainly with
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characterization of microfabricated optomechanical devices used as gravity sensors. The postdoctoral researcher will also contribute to the scientific supervision of a PhD student working on these topics. Design
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very wide range of interacting scales, which limits the investigation of highly turbulent regimes using scale-resolving direct numerical simulations (DNS) – the main numerical approach enabling progress