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computational tools for predicting satellite features in XPS spectra of 2D framework materials. Your work will be based on the GW approximation within Green’s function theory. While the GW method reliably
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, motivation and reliability Excellent ability to cooperate and work in a team Curiosity and fast learning are a plus Eligibility for FADOS programme: At the time of recruitment, be in the first four years
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looking for PhD Student (f/m/d) for Layer and Interface Formation of Defect-Tolerant Functional Materials Using X-ray Spectroscopy Your Tasks Characterisation of chemical and electronic structures
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International Max Planck Research School for Living Matter | Dortmund, Nordrhein Westfalen | Germany | 11 days ago
research projects in the areas of biochemistry, structural biology, biophysics, cell biology, chemical biology and synthetic biology? The International Max Planck Research School for Living Matter: from
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environment and benefit from close collaborations with Philipps University Marburg and the Institute for Lung Research. Where to apply E-mail laganenka@mpi-marburg.mpg.de Requirements Research FieldBiological
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. Where to apply E-mail kalina.peneva@uni-jena.de Requirements Research FieldChemistry » Organic chemistryEducation LevelMaster Degree or equivalent Skills/Qualifications Your profile Highly motivated in
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, an essential component of chromatin, are post-translationally modified via methylation, ubiquitination, and acetylation to regulate DDR-related chromatin functions. Many histone modifications leave long-term
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offer a structured PhD program with the opportunity to develop your individual skillset, intensive support, mentoring and career development. A key component in our program are student secondments
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. The International Max Planck Research School for Molecules of Life (IMPRS-ML) offers fully funded PhD student positions in the areas of biochemistry, structural biology, biophysics, cell biology, systems biology, and
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of the Universe, and their internal charge structure is deeply connected to the absence of antimatter in the cosmos. Precision experiments with ultracold neutrons already reach energy resolutions of 10