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Field
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insight into the complex dynamics of individual cell growth and water transport within tissues [1]. At the tissue scale, we have developed a continuum theory of plant growth that treats tissue as a
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catalyst materials to density functional theory calculations to understand surface reactions and materials on an atomic level. It provides an international and family-friendly environment that highly
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simulation science-based theories and concepts in social and clinical education. Interests in extended reality (virtual reality, augmented reality, mixed reality) are highly valued for this position
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on virtual humans and advancing simulation science-based theories and concepts in social and clinical education. Interests in extended reality (virtual reality, augmented reality, mixed reality), wearable
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, networks, control systems, AI, sound, cyber security, and robotics. The department plays an active role in transferring inventions and results into applications in close collaboration with industrial
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theoretical evolutionary biology, including optimal control theory, life history modelling, adaptive dynamics, and population genetics. This position is part of the interdisciplinary consortium
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out and participate in the research of infrastructure and technology systems for mathematical/computational modeling and control theory for life-cycle management optimization and policy of smart and
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department and the Plant Reproductive Strategies (SRP) team. Our team focuses on the evolution of plant reproductive systems, using diverse approaches including theory, experimentation, bioinformatics, and
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hybrid nanoassemblies, composed of photochromic molecules in tight interactions with iron oxide superparamagnetic nanoparticles. Particular attention will be devoted to the size control of nano-objects by
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-effective means to improve our research, and (ii) exemplary passion and motivation to enhance our multidisciplinary research at the intersection of control theory and machine intelligence. Methodologies