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Description Within the Collaborative Research Center “Wave phenomena – analysis and numerics” (CRC 1173) we are currently seeking to recruit, as soon as possible, a Doctoral Researcher (f/m/d – 75
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modeling and computational workflows Knowledge about machine learning: statistics and deep learning Experience in data analysis, visualization and presentation Good programming skills in languages such as
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field • Is fluent in English • Is interested in finding innovative, creative solutions • Has good programming/data analysis skills • Is experienced or at least strongly interested in one
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regulation, RNA biology, protein biochemistry, stem cells, bioinformatics, sequence analysis, mathematics, statistics, molecular evolution, or biophysics, and wish to work at the Max Planck Institute
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. Simulations will be run using existing simulation packages which will need to be extended by the prospective candidate. Analysis tools will be written by the candidate in C/C++. The required supercomputer
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Several PhD positions (f/m/d) in International Research Training Group (iRTG) limits2vision Full PhD
support, mentoring and career development. A key component in our program are student secondments at the respective partner institute. After successful completion of the PhD, the trainee will obtain a
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particular, I found that a P-body protein directly interacts with a translation initiation factor, suggesting the existence of a novel molecular “switch” capable of activating dormant mRNAs. Our lab combines
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the Access-Repair-Restore model. Histones, an essential component of chromatin, are post-translationally modified via methylation, ubiquitination, and acetylation to regulate DDR-related chromatin functions
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exercises, mindfulness-based exercises, pain education, and healthy practice habits. Your primary role will be to develop the physical exercise component of the intervention. The project is a collaboration
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. Enhancers, DNA elements with binding sites for transcription factors, play a key role in this process. Recently, it has become clear that enhancer activity requires the formation of sub-micrometer-sized