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Field
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with free electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing the structure from such data is challenging, and new
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are: adapted formulation of cellulose materials, development of multilayer by adapting the process, the understanding of the relation structure-properties on thickness modification depending on humidity
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systems at various scales, for example using ab initio electronic structure methods like density-functional theory, developing interatomic potentials with various methodologies including machine learning
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filled. We are not accepting applications for this job through AcademicJobsOnline.Org right now. Please apply at https://facultyweb.kennesaw.edu/masmar/Postdoc.php . Contact: Mahmoud M. Asmar Email
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FieldChemistryEducation LevelPhD or equivalent Research FieldChemistry » Structural chemistryEducation LevelPhD or equivalent Skills/Qualifications - PhD in biotechnology, chemistry, biology, or chemical engineering; - the
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to: i) lead the design and creation of an experimental setup to examine fluid-structure interactions between 3D-printed models of deep sea sponges and ii) lead the formulation and analysis of finite
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Fraunhofer IGD and the FBN team to safeguard an efficient collaboration and communication between behavioural biologists and computer scientists. The project is part of the KI-Tierwohl project (https://ki
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Biology or related field; research experience in one or more of the following protein purification, protein-nucleic acid biochemistry, cryo-electron microscopy and/or structural biology; Fluent in
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statistical modeling, including latent growth curve models, multi-group structural equation modeling, latent trajectory analyses, and hierarchical linear modeling to support project research objectives
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group and contribute to exciting research in the field of organic electronics within a collaborative and dynamic environment. About us The Müller Research Group focuses on the physical chemistry and