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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 11 hours ago
Computational Medicine Program at the University of North Carolina – Chapel Hill (http://miaolab.org ) invites applications for a Postdoctoral position in AI driven drug discovery and accelerated molecular
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Organic glasses offer tunable optical properties, flexibility, and low weight — making them vital in optoelectronics and pharmaceuticals. Yet accurately simulating their dynamics, particularly the molecular
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candidate will use protein biochemistry, AI-guided protein design and molecular dynamics simulations to characterize natural and designed proteoforms of a novel regulatory node in barley temperature
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One Health. Our research covers everything from livestock, sports and companion animals to laboratory animals and wildlife. Researchers in the department work across the entire range from molecular
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International Review of Cell and Molecular Biology (Elsevier, 2018; https://linkinghub.elsevier.com/retrieve/pii/S1937644817300825)vol. 335, pp. 41–84. The molecular basis of cell self-renewal and pluripotency in
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implementation of molecular markers in plant material. Documented experience in laboratory work, including planning and conducting research based on PCR and qPCR techniques, as well as DNA sequencing using DArTseq
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an excellent work ethic and background in molecular simulation and machine learning. Job responsibilities will include: Develop simulation algorithms and software to model challenging gas adsorption behavior in
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daily maintenance. • Work independently to design and execute experiments and maintain hard-copy and electronic laboratory records. • Compile and analyze data. • Generate and maintain appropriate
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barley signalling hubs that mediate the response to elevated temperature. Moreover, the successful candidate will use protein biochemistry, AI-guided protein design and molecular dynamics simulations
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SEM, circular dichroism, FTIR and molecular dynamics simulations. Synthesis and characterization of nanostructures such as nanoparticles, nanofibers and hydrogels based on biopolymers, polymers and