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plant genetic mechanisms that coordinate mycorrhizal interactions with plant P and water status, root system development, and soil microbial communities. Using maize and rice as models, we will: Determine
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loss functions to enhance model accuracy and generalizability modify and extend existing phase field modeling frameworks to capture failure mechanisms associated with hydrogen embrittlement generate and
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A 3-year fully funded PhD stipend for studying the gene-regulatory mechanisms that control cancer biology at single-cell resolution is available in the group of Associate Professor Rasmus Siersbæk
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numerical calculation skills and mathematical modelling skills Strong skills in solid state physics and quantum mechanics Experience in theoretical modelling and experimental investigation of optical devices
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? Then consider advancing these theories with us. In this project, we aim to extend the powerful tools of statistical mechanics on graph and network models to broader applications in soft and active
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variable load and transient conditions. Develop a transient model to assess behavior during power demand fluctuations and optimize operational strategies. Study the degradation mechanisms of the HT-PEMFC
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these robots utilise electronic, chemical, pressure, magnetic, or thermal mechanisms, with the current generation having significant drawbacks, including low energy efficiency, high operating voltage
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for pharmaceutical and biotechnological use. The ideal candidate profile: Must-have: MSc degree in the fields of biophysics, soft matter physics, physical chemistry, computational chemistry, statistical mechanics
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We are looking for a highly motivated PhD student to join the research group of Professor Christian Müller . The focus of the project is on understanding the mechanical properties of conjugated
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research is dedicated to improving the diagnosis and treatment of fungal infections. Additionally, we explore the biology of these infections, as well as the molecular mechanisms behind stress and antifungal