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collaboration with the University of Zurich. Mission The researcher will integrate, optimize, and stabilize the RNb-NeuS neural 3D reconstruction method within the AliceVision software architecture, enabling
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chemicals (e.g., HF). In this project, we propose to develop the synthesis of MXenes by chemical vapor deposition (CVD) and by using molten salts. The work at IS2M will consist of optimizing the synthesis
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, operate at higher temperatures (1450°C ≈ 2700°F), and have longer lifespans. The study presented here focuses on the development of CMCs based on the silicon-carbon-nitrogen (Si-C-N) ternary system
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multilayer systems has led to a deep understanding of acoustic phonons in such structures. However, the development of phononic devices operating in the GHz–THz range remains an open area, offering
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conceptual DFT (linear response function, Fukui functions) or QTAIM theory (delocalization index), and their validation on a set of compounds known from the literature - interfacing a MLIP (Machine-Learned
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to quantify energy exchanges (work, heat), understand the temperature evolution of the resonator, and interpret the role of information when the system is subject to feedback control. The project
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of neuronal and vascular responses; Contribute to the instrumental optimization of the imaging system (detector configuration, illumination control, multi-camera synchronization); Analyze and interpret
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and their dynamics in real time. This work will shed light on the interplay between ferroelectric order, interlayer excitons, and dielectric environment, revealing how local optical responses correlate
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, the research involves participation in the design of quantum devices with our collaborators within the QLSI2 european consortium, optimization of spin readout at large scale, development of automatic control
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The recruited person will work on setting up experiments