117 molecular-modeling-or-molecular-dynamic-simulation-"Multiple" Postdoctoral positions in Sweden
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sequences, with applications ranging from biogeographical mapping to paleogenetic reconstructions. The candidate will work jointly with Dr. Eran Elhaik to design machine-learning models that unlock
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physics, applied mathematics, machine learning, bioinformatics, biophysics, spectroscopy, image processing, ecological modeling, molecular biology, plant physiology, marine biology or an interest in gaining
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educations ranked highly in international comparison. Recent breakthroughs at Umeå University include deciphering the molecular mechanisms of the bacterial CRISPR-Cas9 system and its repurposing into a tool
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spinal cord as a model system. You will engage a systematic strategy to identify these mechanisms by generating innovative mouse genetic strains, identifying embryonic defects and the underlying molecular
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interdisciplinary project involving programming and modeling. In addition, the project includes collaborations with researchers in other disciplines, including biomathematics, biostatistics, and molecular biology
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kinetics Experience with multiple electrochemical methods Experience with radical polymerization chemistry Experience working with hydrogel or soft material systems and/or tissue models And the following
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project to study genetic regulatory variation and its link to molecular, cellular and organismal phenotypes using a systems genetics approach. The project is fully computational, and potential approaches
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transcriptomics and genomics datasets. The goal is to identify molecular and spatial signatures of disease progression both in human samples and in experimental models of diabetes. Qualifications: PhD in
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Molecular Biology, Karolinska Institutet. More information about the Genander lab can be found here: http://ki.se/en/cmb/maria-genanders-group. Division The Genander lab is interested in understanding
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sustainable forest management under climate change. Tree structural traits, including crown shape, branching patterns, and competition effects, strongly determine individual tree vitality, stand dynamics, and