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Project (PhD Position) – Quantum-Classical Co-Simulation Framework Development for Neurobiological Systems Your Job: The overarching goal is to implement a code for multiscale quantum mechanics / molecular
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concerned, among other things, with the effects of images and the mechanisms that make up communication with images. Key questions are: Who produces images and for whom? What message do these images convey
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in glia-neuron metabolic interactions, and the underlying regulatory mechanisms are studied. A greater understanding of the metabolic plasticity of the nervous system will lay the basis for better
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qualification (usually PhD). Tasks: The successful candidate will work in a team developing metal-free magnetism in graphene-related materials and organic 2-dimentional crystals by means of theoretical materials
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adjustment mechanisms (reading groups, summer schools, specialized courses, lecture series and soft skill courses) strong international orientation, guest program for research stays abroad, international
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1,000 employees from over 50 nations, it is the largest institute of the Max Planck Society . The research group Molecular Mechanisms of Membrane Trafficking (Dr. Oleksiy Kovtun) at the City Campus
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support reduction in model uncertainties associated with the estimates of the full N budget at the European continental scale and improve knowledge on the mechanisms governing N translocation publication
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plant genetic mechanisms that coordinate mycorrhizal interactions with plant P and water status, root system development, and soil microbial communities. Using maize and rice as models, we will: 1
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, and 3D hydrogels. Entry requirements: Master’s degree in Biology or Material Chemistry. Funding: 4 years (3+1), TV-L 13 (up to 100%). Start: Flexible in 2026. Deadline: 15 October 2025. Contact: Project
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neurodegenerative disorders (Li et al., Cancers 15, 4986 (2023); Perego et al., Mol Neurobiol 56, 2579-2589 (2019)). Despite their physiological importance, the mechanisms by which R-loops induce genomic