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ecosystem functioning. The postdoctoral project will focus on analyzing and modeling tree architecture in relation to forest vitality and stress predisposition. The work will combine 3D structural data (from
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screening facility FragMAX, supporting structural biology research aiming at understanding biology at a molecular level with applications in drug development and biotechnology. BioMAX has been in user
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screening facility FragMAX, supporting structural biology research aiming at understanding biology at a molecular level with applications in drug development and biotechnology. BioMAX is in user operation
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the molecular mechanisms underlying genome-interacting processes using a highly multidisciplinary approach that combines advanced single-molecule fluorescence imaging with a range of biophysical, structural, and
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modelling tools relevant to soil-railway dynamics, with an understanding of modelling reinforced ground structures. Familiarity with field instrumentation and validation techniques for dynamic system
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variants High-resolution cryo-EM and cryo-ET imaging to resolve molecular structure and guide engineering Protein design and molecular modeling, supported by AI tools such as AlphaFold2 Development
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Your team The macromolecular crystallography (MX) group is responsible for the two beamlines BioMAX and MicroMAX and the fragment screening facility FragMAX, supporting structural biology research
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mathematical modeling of infectious diseases applied to grided spatiotemporal data inputs. The project involves reviewing existing literature and especially synthesize model structures and parameters for the eco
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Your team The macromolecular crystallography (MX) group is responsible for the two beamlines BioMAX and MicroMAX and the fragment screening facility FragMAX, supporting structural biology research
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, TensorFlow), is essential for developing and adapting advanced AI models to integrate heterogeneous datasets. You exhibit solid analytical skills, the ability to design robust computational workflows