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and support the technology infrastructure that powers Duke University's teaching, research, healthcare, and administrative environments. In this hands-on role, you will work on new construction projects
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alignment and ambulatory expansion. Identify market opportunities based on strategic priorities, competitive dynamics, physician succession needs, and community healthcare demands. Build and maintain
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equation models for Epstein–Barr Virus (EBV) and HIV-1 infection dynamics in human lymphoid tissue. New mathematical models will be informed by longitudinal experimental data, including multiplexed spatial
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to better model, interpret, predict, and design biomolecular and cellular structure and function. We are especially interested in work that bridges computational and experimental approaches as
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Put your HVAC skills to work supporting critical building systems in a dynamic and hands-on environment. Be You. Perform basic level work in the installation of (HVAC) systems and equipment within
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structure-function relationships that enable the effective delivery of spin-filtered electron currents at ambient temperature. Experience in synthesis, protein chemistry, spectroscopy, modern computational
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manage multiple deadlines in a dynamic environment. Preferred Qualifications Experience supporting MSO structures, physician practice management, ambulatory operations, virtual care, digital enablement
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quality, supportive care and survival; and 3) a prospective cohort study evaluating the mechanisms through which systemic racism (structural, cultural and interpersonal racism) impacts US breast cancer
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to apply. Applicants who complement existing Duke MEMS strengths in aeroelasticity and unsteady aerodynamics, experimental and theoretical fluid mechanics, nonlinear dynamics and stability, and control
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on the development of a calibrated agent-based HIV epidemic simulation representing populations in the U.S. South. The model will incorporate realistic network structures, behavioral dynamics, treatment uptake and