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have a strong interest in both theory and numerical work. Numerical work involves code development (e.g., changing the C++ LAMMPS code, programming of data analysis tools, etc.), carrying out large-scale
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; apply the developed methodology to complex heterostructures The postdoctoral researcher will be recruited within the Chemical Theory and Modelling team (http://www.quanthic.org ) of the Institute
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of natural selection. In this project, we are therefore interested in prebiotic chemical systems, with the prism of classical theories in ecology and evolution (ecological interactions, invasion dynamics, non
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Theory of Large-Scale Structure (EFTofLSS)—to include the effects of massive neutrinos and non-standard dark matter, validate theoretical predictions against simulated datasets, forecast expected
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FieldPhysicsYears of Research Experience1 - 4 Additional Information Eligibility criteria - Excellent knowledge of disorder physics and/or chaotic quantum systems - Good knowledge of quantum gas theory - Energy
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. Amongst its features, it enables joint fits of heterogeneous data sets, e.g. from different event types, from different gamma-ray instruments. Some work have also demonstrated that multi-wavelength (from
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Testable Theories of Linear Programming, we expect the candidate to perform both theoretical and computational work. The candidate will be working in the MAAD axis at LIMOS under the direction of Dr. Sophie
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doctoral students, within the mathematical community and beyond. The Chair is open to all fields of mathematical science and mathematics in interaction. Each semester is built around a wide-ranging program
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porous media to understand contaminant transport in the subsurface - Activity 1: Develop an in-house numerical model and theory for reactive transport in unsaturated porous media. - Activity 2: Compare
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the dynamics and statistics of topological defects in active systems, using continuum theories of active ordered states. This project will require both numerical and analytical work. The position will be based