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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | 2 months ago
Job description:Postdoc (f/m/d) Approximation of Solvers for Particle-in-Cell Plasma Simulations using Deep Neural Operators With cutting-edge research in the fields of ENERGY, HEALTH and MATTER, around
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developmental biologist and stem cell scientist. Her lab employs a multidisciplinary approach to investigate fundamental questions in cell fate specification, symmetry breaking, and self-organization in mouse and
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the French National Research Agency (ANR) which concerns the molecular mechanisms involved in the assembly of the cell wall of the bacterium Streptococcus pneumoniae. - To perform the molecular biology
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ribosome-mediated quality control and signaling pathways that govern cell fate decisions. The dysregulation of these surveillance mechanisms is linked to ribosome dysfunction, loss of proteostasis, and human
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The School of Cardiovascular & Metabolic Medicine & Sciences (SCMMS) provides an outstanding multi-disciplinary environment for the pursuit of cutting-edge cardiovascular and metabolic research (https
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geroscience research program focused on the mechanisms underlying aging, epigenetics, mitochondria, metabolism, inflammaging, cell death and senescence, chronic pain, healthspan, and functional capacity (both
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PhD fellowship at the Copenhagen Center for Glycocalyx Research at the Department of Cellular and Mo
(CGR) The Copenhagen Center for Glycocalyx Research (CGR) aims to uncover the vital role of the glycocalyx, a cell surface layer of complex glycans, that integrates signals from cells and their
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of double-strand breaks, copy-number alterations, and other structural genome changes. Our group combines cutting-edge genome biology approaches with quantitative, multi-omics analyses to uncover
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– PHOTOTHERAPORT, en la línea de investigación Research into pain and chronic pain comorbidity Where to apply Website https://oficinavirtual.uca.es/oficinaVirtual/EntradaOficinaVirtual?procedimient… Requirements
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actively influence cancer development by signaling to tumor cells and promoting tumor growth. A central mechanism involves neuron-to-glioma synapses, which transmit neuronal activity to glioblastoma cells