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and Simulation Group at ICN2 conducts cutting-edge research in computational materials science, focusing on electronic structure methods, atomistic simulations, and multiscale modelling. The group
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optics experiments will contribute to a better understanding of local annealing processes, with the goal of achieving optimized control over the final material state, taking into account its crystalline
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systems.1 Recently, during two PhD thesis, we optimized Sb2Te3 and Bi2Se3 layers to obtain significant nonlinear absorption. More specifically, the saturable absorption behavior obtained was the highest
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Responsibilities: Conduct membrane related projects for desalination, decarbonization, resource recovery, etc. Assist in the design, optimization, construction, commissioning and operation of membrane-based
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vibrations), and structural (migration of atoms) effects with an atomistic resolution. This can be achieved by self-consistently coupling molecular dynamics (MD), density-functional theory (DFT), and quantum
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for a Postdoctoral Fellow in Biophysics Your tasks In this position, you will work at the interface of experimental biophysics, structural biology, artificial intelligence, and pharmaceutical formulation
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single photons "on demand" and will enable efficient coupling with external optical systems. The breakthrough properties of this device will be provided by a hybrid structure in which a nitride laser or
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‑space exploration, and on‑line operational optimization of power systems. Your tasks in detail: Become familiar with our previously developed neural network superstructure for learning iterative
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construction. For more information about the CNERC-Steel, please visit the website at https://www.polyu.edu.hk/cnercsteel/ . The University is now inviting both internal and external applications and nominations
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central element is the construction of an innovative high-resolution spectrometer operating in the far-UV region. The instrument's design depends critically on the choice of a two-dimensional detector and