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modeling, construction of numerical methods, coding, testing, numerical simulations, and possibly measurements. You will mainly do your programming work in a mixed programming environment, i.e. combining
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will be combined with theoretical modelling, statistical data analysis, and numerical simulations to identify the governing mechanisms and to determine whether and how proximity to a phase transition
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numerically assess the performance via software simulation tools. Define the system specifications which will be then translated into requirements for the design and implementation of the photonic WDM switch
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conditions, geometries, parameters, sensors, or forcing terms; and exploring their potential to accelerate or complement conventional numerical simulations. The project is methodological in nature and is not
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degree in applied numerical mathematics, computational/theoretical physics, theoretical biology, computer science, or a related discipline; Written and oral proficiency in English, strong scientific
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, you will develop analytical and numerical models describing the quantum dynamics of mechanical systems and their interactions with complex environments. Building on these models, you will investigate
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of this joint experiment-theory project is to elucidate the properties of beyond-EUV radiating plasmas. The work will entail performing experiments and numerical modeling of plasmas to quantify, for instance
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performing experiments and numerical modeling of plasmas to quantify, for instance, the radiative properties of the plasma, how many fast-moving ions are produced, as well as the efficiency of converting input
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and melt inclusions (MI) in volcanics from various plume localities and will use that data in geochemical and geophysical numerical modelling. The team will work on three main tasks: Improve
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mathematics, numerical oriented geosciences, or related field with strong quantitative focus; Strong background in machine learning methods such as neural networks and transformers; Knowledge on handling large