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Field
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molecular dynamics simulations, applicable to materials science, biomolecules, or a related field. Programming experience (e.g., Python), with a strong background in developing and applying computational
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research aimed at uncovering the cellular and molecular mechanisms that drive and regulate inflammation in human disease, with a particular focus on psoriasis, psoriatic arthritis and rheumatoid arthritis
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molecular biology, but mainly cell culture, immunostaining od cells and tissues, confocal microscopy, and bioimage analysis. You will be involved in setting up a protocol for automated optical pooled
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challenges and thrives in a collaborative environment. In addition, you bring the following qualifications: a PhD-degree in chemistry, biochemistry, molecular biology, biotechnology or related discipline
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an LLM-assisted software framework for first-principles simulations, thereby gaining extensive experience within scientific software development and AI-driven workflow automation. The work will initially
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Healthcare Monitoring We welcome applications from those with expertise in or across these disciplines: Computational materials modeling: DFT, molecular dynamics, phase-field modeling, or multiscale
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the employment contract should hold a PhD degree in biology, neurobiology, molecular biology, biotechnology or related sciences, awarded at an institution other than the institution where the position is intended
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: Computational materials modeling: DFT, molecular dynamics, phase-field modeling, or multiscale simulations. Data-driven materials discovery: ML models for property prediction, materials design, or synthesis
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operate in a friendly and dynamic team environment of the Condensed Matter Theory Group, with opportunities to interact with BNL scientists across disciplinary boundaries, notably the Co-Design Center
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statistical inference Familiarity with random simulations Demonstrated interest in the dynamics of biological systems Essential Functions: Conduct mathematical, computational, and statistical analyses of models