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Field
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Zhennan Zhou's primary research interests lie in the applied analysis of differential equations and stochastic models, as well as the design and analysis of numerical methods for scientific problems
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spatial modeling, laboratory testing, and numerical simulation of geomaterials. Evidence of peer-reviewed journal publications in relevant areas. Preferred Qualifications FLSA Exempt Full Time/Part Time
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are welcome. Skills are not essential but experiences in the following areas are preferred: biological physics, quantitative biology, nonlinear dynamics, stochastic simulations, dynamic systems, numeric
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partner for society and industry. Cooperation with European institutions, innovative companies, the Financial Centre and with numerous non-academic partners such as ministries, local governments
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with biological tissue. Duties of the position will include designing optical spectroscopic imaging technology, using numerical simulation and machine learning tools to extract diagnostically-relevant
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and optimization of measurement-based quantum computing protocols for quantum simulation of quantum many-body models. Preference will be given to candidates familiar with the stabilizer formalism and
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and leading a programme of numerical simulations relating to all aspects of our research on P-MoPAs; using particle-in-cell computer codes hosted on local and national high-performance computing
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the operation, simulation, and/or data analysis of DUNE prototypes located at CERN. South Dakota Mines is located less than an hour’s drive from the Sanford Underground Research Facility (SURF), home of the DUNE
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analytical, organizational, and interpersonal skills. The successful candidate is expected to conduct research related to numerical simulations and laboratory experiments on thermo-mechanical behavior
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numerical methods used to design wind turbines and understand turbulent combustion in jet engines, this research aims to address critical computational challenges in simulating the physical dynamics