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Field
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interpretable machine learning approaches for the domain of materials science, physics, microscopy Incorporation of machine learning results with simulation methods Working on project-related tasks where you can
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learning results with simulation methods Working on project-related tasks where you can interact with other scientists, and collaborate with project partners Preparation of scientific publications and
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to the concept of the survey or data life cycle. Starting on 1st of June 2024, DIW Berlin is looking for a PhD position (f/m/div) in the area Simulation in the context of intergenerational processes (Part time
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Helmholtz-Zentrum Potsdam - Deutsches GeoForschungsZentrum GFZ | Potsdam, Brandenburg | Germany | about 2 months ago
of human activity on system Earth. For section Fluid Systems Modelling (Department Geochemistry), we are looking for a: Reference Number 9216 Your responsibilities: Thermo-hydro-geochemical numerical simulations
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. To be able to handle the increasing complexity of grid planning and operation, one promising approach is the massively parallelized simulation of energy grids using (exascale) supercomputers. Your areas
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heating grid models Contribution the development of a multi-physical grid simulation tool that makes use of the parallel infrastructures of supercomputers Your tasks will include among others: Modelling
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PhD Position - Modeling and simulation of memristive devices for application in neuromorphic systems
Your Job: The aim of this doctoral project is to develop physical simulation models for memristive devices. In particular, a compact model that describes the switching behavior of gradual switching
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to challenging questions in the field of computational material design, especially with the help of CALPHAD-based methods. For further development of our simulation environment (https://github.com/cmatdesign
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comprise the following: Modeling cathode materials with various compositions Performing ab initio-based calculations (e.g., DFT and AIMD) on supercomputers Simulation the influence of substitution and/or
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Your Job: Develop techniques to simulate and control the dynamics of diamond-based spin systems (e.g., NV centers) Find parameter regimes and control schemes to map few or many-body Hamiltonians