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one of the following areas: - Methodology development in wavefunction-based electronic structure methods, quantum Monte Carlo, tensor networks, or quantum embedding methods
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an exciting opportunity to contribute to cutting-edge research in the development of clinical trials, self-management science, acute/chronic disease management and pain mechanisms and methods under
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, or related computational methods. Track record of peer-reviewed publications and interest in developing an independent research program Equipment Utilized Physical Demands and Work Environment Physical Demands
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disease management and pain mechanisms and methods under the mentorship of renowned faculty. The successful candidate will have the opportunity to advance their research skills, engage in interdisciplinary
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learning and quantum information science. Candidates with experience in method development and high-performance computing are especially encouraged to apply. A Ph.D. in chemistry, physics, computer science
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maintenance of laboratory instrumentation and equipment, including computers and servers, necessary for conduct of the project. Designs and helps execute validation experiments using current methods in
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methods, including amplicon or shotgun sequencing. Experience with axenic/gnotobiotic rearing. Certifications/Licenses Required Knowledge, Skills, and Abilities Preferred Qualifications Mosquito colony
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demonstrated through peer reviewed publications and presentations at national/international conferences. Coursework in advanced epidemiologic methods (causal inference models), environmental mixtures, and
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data. Leading statistical analysis (methods may include IPTW-weighted Cox regression, active comparator new-user designs, self-controlled case series, propensity scoring). Developing and extending an AI
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research with clinical applications to addiction and other mental health concerns. Our work draws on methods from psychology, experimental economics, human neuroscience, and computational psychiatry. Ongoing