34 coding-"https:" "https:" "https:" "https:" "https:" "https:" "Data driven Materials Modeling" PhD positions at Technical University of Munich
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: ▪ Implementing physical-layer security strategies derived from theoretical work, such as wiretap codes, artificial-noise transmission, secure beamforming, physical-layer authentication, and channel-based secret
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solutions to PDEs . Your work will involve utilizing GPU code generators for matrix multiplication kernels and ensuring the software is usable in Python for downstream data analysis [2]. Collaboration is
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skills (e.g., numerical methods, statistical analysis, coding, data management) Good communication skills Ability to work in a team Driving license category B desirable (access to field sites) Your Tasks
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personal data in the course of the application process pursuant to Art. 13 of the General Data Protection Regulation of the European Union (GDPR) at https://portal.mytum.de/kompass/datenschutz/Bewerbung/. By
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accordance with Arti-cle 13 of the General Data Protection Regulation (GDPR) on the collection and processing of personal data as part of your application, available at https://portal.mytum.de/kompass
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during the application process: https://portal.mytum.de/kompass/datenschutz/Bewerbung/ By submitting your application, you confirm that you have taken note of TUM's data protection information. Application
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particular Shannon Theory. Knowledge of coding theory. Interest in mathematics. Knowledge of artificial intelligence is a bonus. Our offer Collaboration with leading researchers at TUM and TU Dresden
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, Communications Engineering, or a related field. Strong knowledge of Information Theory, in particular Shannon Theory. Knowledge of coding theory. Interest in mathematics. Knowledge of artificial intelligence is a
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of TUM. Kontakt: [email protected], [email protected], [email protected] More Information https://radiologie.mri.tum.de/en/ai-assisted-healthcare
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. The institute's research focuses on non-coding RNAs, their control of cardiac gene expression, and the effects of their therapeutic manipulation in cardiac disease. The institute's state-of-the-art research