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closely with LULI's exper-imental teams involved in the Taranis project. This thesis focuses on the theoretical and numerical study of parametric instabilities driv-en by broadband, low-temporal-coherence
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) and the Universität Hamburg (UHH). Why Join IMPRS-ESM? Interdisciplinary focus: We address the processes and dynamics of the Earth system at different temporal and spatial scales to improve predictive
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that generalize across different physical settings. Building on this motivation, the project focuses on the definition, development, and analysis of scientific foundation models: large-scale, generalizable models
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will have covered more than one Jovian year (11.86 Earth years), as well as more than one solar cycle (on average 11.2 Earth years). The study of the different components of radio emissions as a function
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tissue exposure, and the systematic investigation of different treatment scenarios should finally allow deriving optimized treatment strategies within PRESTO which can be used in treatment planning. Your
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meet the requirements for admission to the Faculty's Doctoral Programme . Experience with optimization modelling and numerical optimization tools, such as JuMP, Pyomo, Gurobi, CPLEX, HiGHS, or similar
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studied intensively because of their importance in many natural phenomena and use in numerous applications. Embarking on a groundbreaking PhD journey, this research endeavours to revolutionize the landscape
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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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HFBK Hamburg. This is reflected not only in the high number of international students — almost 50 % of students have an international background — but also in the numerous exchange programmes
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-trivial software. Solid understanding of algorithms, numerical methods, scientific computing, or machine learning. Ability and motivation to write clean, maintainable and well-tested code. Strong interest