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the process itself shapes disease states at cellular and molecular scales. By combining AI innovation with RNA-focused, context-aware biology, SATURNA seeks to establish actionable principles of disease
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project that will establish attosecond chiroptical pump-probe spectroscopy. The project combines a 100 kHz few-cycle Yb-fibre laser, circularly polarized isolated attosecond pulses, tuneable 1-2 fs deep
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are looking for candidates with a strong background in machine learning, excellent implementation skills, and an interest in combining ambitious empirical work with conceptual and theoretical insights. The goal
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habitual control. It will then test how acute stress alters these processes, combining behavioral performance, physiological monitoring, movement-based phenotyping, and advanced statistical and computational
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the molecular mechanisms of prostate cancer progression and therapeutic resistance. The group combines functional genomics, translational pathology, and cutting-edge experimental models to drive discoveries from
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-matter interactions, development of automated AI/ML systems for novel materials processing and quality insurance. The lab combines additive manufacturing, large scale laser micro-processing, multiscale
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systems. By combining state-of-the-art spectroscopy with strongly correlated electron systems, we seek to uncover fundamental physical phenomena that emerge far from equilibrium. Our laboratory continuously