40 parallel-and-distributed-computing-"LIST" PhD positions at Nature Careers in Germany
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The International Max Planck Research School for Chemistry and Physics of Quantum Materials is a joint PhD program between the Max Planck Institute for Chemical Physics of Solids in Dresden
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regional and international partner institutions. Deadline for applications is 02 November 2025. Virtual panel interviews take place at the end of January 2026. The programme starts in October 2026. The IMPRS
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of high cor
(Deutsches Elektronen-Synchrotron/German Electron Synchrotron) and Scanning Kelvin Probe Force Microscopy (SKPFM) for visualising the distribution of cathodic phases in bulk and on plane, along with integral
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. Applications including a cover letter, a detailed CV including a publication list and contacts of up to three referees should be sent as soon as possible to matias.simons@med.uni-heidelberg.de . Job-ID
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highlighting relevant experience, interests, and career goals (max. 2 pages) Curriculum Vitae with publication list and academic record Contact details for two referees familiar with your scientific achievements
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Students (f/m/x) Research Focus IMPRS-GS: Projects span experimental (genomics, transcriptomics, proteomics, etc.) and theoretical (bioinformatics, computational biology, etc.) disciplines. GönomiX: Focuses
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diploma) in chemistry or physics and profound knowledge in computational and theoretical physics/chemistry A sound knowledge of simulation methods and actinide chemistry is required, as well as a
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. The center offers an excellent working environment with access to state-of-the-art technologies and an outstanding high-performance computing infrastructure. For TUD diversity is an essential feature and a
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program in and beyond the fields mentioned above Competitive, interdisciplinary environment with a track record of intense mutual collaboration Individual training-through-research, program extends
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protocols to characterize both cellular and vascular properties of the TME. The approach will be validated using a combination of in silico models, computer simulations, and in vitro experiments using tumor