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and writing of research projects. Specific Requirements PhD in Chemistry from 2023 or later Expertise in organic synthesis. Experience in the field of polymer chemistry is desirable Demonstrated
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Description The study will focus on the 2D and 3D numerical thermal simulation, in stationary and unsteady regimes, of the process of melting metals using a source of solar radiation. Fusion takes place in a
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simulations - Fiber optics - Mass spectrometry and chemical imaging - English language: C1 (Common European Framework of Reference for Languages) - Team spirit - Dialogue and adaptability Website for additional
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simulation to develop an on-chip topological coherent demodulator for THz signals and other THz on-chip devices using topological photonic crystals. The devices will feature waveguides, beamsplitters, mixers
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phases) parameters of these heterogeneous materials. The primary objective is to utilize numerical simulations to determine the geometric parameters that yield desired optical properties. Specifically
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Post-doctorate position (M/F) : Exascale Port of a 3D Sparse PIC Simulation Code for Plasma Modeling
to exascale architectures an initial 3D simulation code developed as part of previous work [1]. This work will initially focus on scaling up (distributed memory), optimizing CPU algorithms (vectorization) and
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magnetic coordination polymers. The objective of this research project is to combine the versatility of the chemistry of organic metal networks with the richness of the physics of frustrated magnetism
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(plan and carry out syntheses of the supramolecular polymers building blocks) • Protein expression in prokaryotic (bacteria) and eukaryotic (insect and human) cells. • Protein engineering, bioconjugation
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of β-1,6-glucan, a cell wall polymer, and is part of a multidisciplinary consortium comprising to other teams: Sarah Wong (Immunology of Fungal Infections, Institut Pasteur) and Lionel Ballut (Institut
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of the auditory nerve [2] and brainstem to simulate neurograms and guide the development of diagnostic tools based on Auditory Brainstem Responses (ABRs). Despite normal audiograms, individuals with ANSD often