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                Field
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                Infrastructure? No Offer Description The postdoctoral researcher will apply the mathematical tools developed by the ANR TeMPlex project team to the study of simulated or observed hydrological dynamics, with 
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                they interact in a bipartite network and with abiotic environmental changes - mathematical developments - coding - tests with simulations - data analyses - paper writing - presenting results 
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                , simulation, programming, automation, development and setup of scientific experiments, data analysis • Soft skills: adaptation skills, open and creative mind Website for additional job details https 
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                to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows for accurate simulation of time-dependent flows, enabling sensitive applications 
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                on estimated movements using eDCCs. The research will focus on data simulated using the Monte Carlo method and real data from clinical SPECT scanners with a parallel collimator, such as those available at LUMEN 
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                feedback and curvature flow, investigating stability and uniqueness of minimisers, and implementing numerical schemes to simulate the resulting non-linear PDE dynamics. In this way, the project aims 
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                where appropriate. Building on proof-of-concept simulations previously developed at LJAD, the postdoctoral fellow will perform dimensional analyses of the nonlinear governing equations, followed by new 
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                polaritonic waveguides and cavities, and will contribute to the theoretical (i.e. analytical) and numerical simulations of the GaN architectures in collaboration with the theory groups in the consortium. In 
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                multidisciplinary NUMERIQ project (ANR JCJC) aimed at developing fast and reliable methods in molecular simulations, with a focus on electronic structure simulations in quantum chemistry. Link to the detailed offer 
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                partners. He/She will take a leading role in bringing the Large Ingot Simulator (LIS) – a novel lab scale experimental setup, currently at an advanced stage of development – to full operation and will