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motivated and talented Postdoctoral scientist to pursue cuttingedge research in the field of T cell therapy. Postdoctoral fellow (m/f/d) – CS-2026-1 with proven experience in the field of human T cell
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Max Planck Institute for Demographic Research (MPIDR) | Rostock, Mecklenburg Vorpommern | Germany | 11 days ago
, the successful candidate will work on a project aimed at understanding which factors are shaping the length of working life; and/or on projects in survival analysis and causal inference. The candidate will develop
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interdisciplinary field. ● The "Unicorn" Factors: ○ An entrepreneurial mindset—you see solutions where others see problems. ○ High IQ and EQ—you can navigate complex technical systems and sensitive human
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Social Affairs and the State of North Rhine-Westphalia. It is the sponsor of ’Leibniz Research Centre for Working Environment and Human Factors in Dortmund’ (IfADo). IfADo explores the risks and potentials
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of human diseases (e.g., Zhang et al., Nature Microbiology, 2025; Li et al., Nature Metabolism, 2024; Ni et al., Cell Metabolism, 2023; Leung et al., Science Translational Medicine, 2022; Seelbinder et al
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Exploratories (SPP 1374, project 8) and Illuminating gene functions in the human gut microbiome (SPP 2474, project Z01). Your tasks: Assistance in the organization and execution of large-scale soil sampling
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gene-drug interactions. In order to decipher the genetic and gene-drug interactions, we use model systems like Drosophila, human cell cultures and patient-derived organoids in high-throughput screens
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Max Planck Institute for Demographic Research, Rostock | Rostock, Mecklenburg Vorpommern | Germany | about 2 months ago
, the successful candidate will work on a project aimed at understanding which factors are shaping the length of working life; and/or on projects in survival analysis and causal inference. The candidate will develop
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uniaxial creep tests (tension, compression) and comparing the results Characterization of the microstructure–property relationship using optical microscopy, SEM and EBSD Correlation of microstructure and
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(e.g. Malik et al. Nat Genetics 2028; Mishra et al. Nature 2022) and subsequent findings from our lab showing that the stroke risk gene Foxf2 maintains brain endothelial cell function via Tie2 signaling