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. Strong practical skills in high-performance computing (HPC) environments, including job scheduling and performance optimization on computing clusters. Knowledge of Bayesian statistics and its applications
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. Developing a software tool for defining and optimizing the geometry of the X-ray spectrometer. Supporting work related to developing the concept of the planned instrument and modeling its spectral response
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investigate the structure and quantum control capabilities of the proposed strongly polar molecules. Next, we will develop an optimal method for encoding qubit states on the most promising molecules. In
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pharmaceutical ingredients via biocatalytic approach; optimization of the process conditions with emphasis on reduction in use of organic solvents; controlling the conditions of the process and its efficiency
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related to the project. Knowledge on advanced control systems and optimization Advanced programming skills in Python and/or Matlab/Simulink Previous experience in scientific research project participation
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is modelling and optimization using molecular dynamics and machine learning. The position is part of a team looking at these fascinating systems from their fundamental properties and making them in
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method and to optimize this method for realistic high-performance computer calculations. Subsequently, this newly implemented method will be used in combination with embedding techniques to describe
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optimal stimuli - To carry out appropriate measurements on mice and humans Specific Requirements PhD degree in chemical or physical sciences, optics, optical engineering obtained in the year of employment