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Dr. Playdon’s research, visit her faculty profile https://profiles.faculty.utah.edu/u6017378 . Details about the NIH-funded project (1R01CA313949) can be found on NIH RePORTER: https://reporter.nih.gov
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. The position is available starting immediately. The main project is to investigate how WHIM mutations affect papillomavirus copy number and contribute to HPV pathogenesis. Another project will dissect how K17
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science. We seek outstanding early- and mid-career applicants conducting interdisciplinary basic science research that seeks to define the molecular and macromolecular mechanisms of human diseases
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repair on RNA-DNA hybrids of R-loops using computational modeling and molecular dynamics simulation along with various types of AI tools and machine learning approaches. Temporary Expertise in
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). Our overall aim is to understand the molecular mechanisms of haematological cancers, and based on this; to design, develop and implement novel, scientifically based, clinical trials, with a strong focus
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modeling; A solid understanding of molecular simulations, especially in relation to RNA systems, and capable of handling largescale biological data; Ability to communicate scientific concepts, analytical
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experiment, contributing to the transition to full experimental operations and establishing a research program in atomic, molecular, and optical (AMO) quantum science and dark matter detection. Appointment is
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advanced environmental chamber that can simulate extreme cold and altitude. The facility has cutting-edge medical simulation, tactical performance, sleep study, and physiological monitoring capabilities
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
coating. NMR experiments will be conducted in-situ to determine isotherms and molecular dynamics information. These experiments should lead to manuscripts for publications in scientific journals. Minimum
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Research FieldChemistry » OtherEducation LevelMaster Degree or equivalent Skills/Qualifications Responsibilities: Design and synthesis of novel activity‑based chemical probes and related molecular tools