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Max Planck Institute of Molecular Plant Physiology • | Potsdam, Brandenburg | Germany | about 6 hours ago
approach combining molecular biology, genetics, genomics, epigenomics, metabolomics, biochemistry, biophysics and microscopy with bioinformatics and modelling. We work with Arabidopsis thaliana, tobacco
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applied in Africa’s livestock sector. This work will involve modelling analyses using methodologies to be developed by the candidate in collaboration with their supervisors. This is one of two positions
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pillars of the Humboldt Foundation’s funding policies. If the career path has been impacted by personal limitations or structural issues, e.g. difficult research conditions, gender-specific discrimination
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, or function as a role-model. This is precisely the intention of the Humboldt Foundation in granting the Philipp Franz von Siebold Award, which honours the entire life's work of award winners in their capacity
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health and wellbeing. Utilizing terrestrial mobile laser scanning (TLS) and automated recording units (ARUs), as well as advanced modeling techniques, this thesis will quantify songbird diversity indices
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limitations or structural issues, e.g. difficult research conditions, gender-specific discrimination or cultural barriers to mobility, please include this information so that such circumstances can be taken
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technology, and process optimization using mathematic modeling - Evaluate modified growth factors under real conditions with medium recycling - Independent work on research projects - Close cooperation with
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Max Planck Institute for Plant Breeding Research • | Koln, Nordrhein Westfalen | Germany | about 7 hours ago
for highly motivated students with a strong training in plant molecular sciences. The constellation of participating institutions provides excellent training conditions and expertise in the area of plant
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transduction mechanisms at the protein and membrane level. Experimental systems will include 2D cell culture, organoid models, and advanced biophysical assays (e.g., high-throughput atomic force microscopy