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, 2025 or as soon as possible hereafter. Our group and research The Weischenfeldt lab use genome data science to delineate the mutational mechanisms and clonal evolution of cancer, with a particular focus
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interest in one (or two) research projects as part of your application: C01 – Synthesis of organic dyes and redox systems for controlled assembly in mol2Dmat heterostructures (Prof. Eigler, 2 positions
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to cancer, metabolic disorders, and infections. As part of this position, you will have the opportunity to contribute to cutting-edge research aimed at understanding microbiome-driven mechanisms and
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opportunity to contribute to cutting-edge research aimed at understanding microbiome-driven mechanisms and developing novel strategies for disease prevention and treatment. You will collaborate with renowned
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hybrid systems—covering RF generation, transmission lines, and launchers. Conducting plasma experiments on tokamaks, stellarators, and linear devices, with a focus on heating mechanisms and the development
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two other researchers dedicated to this project. The project is in close collaboration between the Centre for Textile Science and Engineering (Prof. Lode Daelemans) and the Mechanics of Materials and
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research deals with both emergence and collapse of authoritarian regimes as well as their dynamics and transformation. Job description: The project focuses on studying long-term mechanisms of survival
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collaboration low-temperature scanning tunneling microscopy (STM) as well as atomic force microscopy (AFM) in the workgroup of Prof. Manuel Gruber (UDE), and first-principles electronic structure calculations in
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-phonon interactions, which together form tri-partite coupling that gives rise to effective optomechanical interaction between collective excitonic states (optical) and vibrational modes (mechanical
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Applications are invited for a Postdoctoral Research Associate position in cellular biophysics in the group of Prof. Ewa Paluch. The Paluch lab studies cellular morphogenesis combining cell and