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months. Contact details of two referees who may be contacted for a reference. Shortlisted candidates will be invited to interviews in English. According to the current recruitment timeline, eligibility
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nanometer-scale measurement of electrical potentials, magnetic fields and carrier dynamics with high temporal resolution, in projection and in three dimensions under external stimuli. The position is embedded
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science, computational neuroscience and causal AI. You will collaborate with internationally recognized researchers and contribute to developing novel methods for understanding brain dynamics. The current
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between basic science and application. Future battery technologies are urgently needed to make electric mobility and stationary energy storage even more affordable, safer and more efficient. Si-rich anodes
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written in English or German. Current information Application for admission to the doctoral study programme is possible at any time. Financial support No Structured research and supervision Yes Research
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Learning at TUM works on machine learning, artificial intelligence, and information processing, with a current focus on foundation models, data-centric research, and applications to scientific and medical
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contribute to current challenges in biology and medicine Candidates with a strong ambition to contribute to and shape excellent scientific research We offer international working environment with communication
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of optical electric fields in the infrared and terahertz spectral ranges. As part of the Laboratory for Lightwave Metrology , the research group on the one hand offers the opportunity to fundamentally examine
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is based on separating the mechanical function of the substrate from the transport of electronic charge carriers, thereby overcoming corrosion as the primary degradation mechanism. To realize
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, characterized not only by aggressive tumor cells but also by a complex tumor microenvironment comprising cancer-associated fibroblasts (CAFs) and tumor-associated macrophages (TAMs). Current liquid biopsy