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numerical models (e.g., Gibbs free energy minimization to model phase equilibria and reaction energetics) under relevant pressure–temperature conditions. A central component of the role is integrating
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or subjected to prohibited discrimination involving, but not limited to, such factors as race, ethnic or national origin, citizenship and immigration status, color, sex, pregnancy or pregnancy-related conditions
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in the lab focus on the interaction of prothrombin with prothrombinase, leading to generation of thrombin and blood clotting, the activation of factor V required for assembly of prothrombinase and the
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in cardiovascular biology, metabolism, and gene regulation, with an emphasis on translational relevance. Environment The University of Utah provides a vibrant and collaborative research environment
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field in hand by May 2026. Preferred Qualifications: Experience in Thermal Spray Materials/Processes/Characterization/Modeling. Experience in Solid Mechanics/Thermomechanics/Finite Element Analysis
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Postdoc position (d/f/m) developing gene editing therapies for ANO5-related muscular dystrophy Work time full-time Start date 01.04.2026 Employment period limited Application deadline 25.03.2026
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or 403b) are available. https://www.kumc.edu/human-resources/benefits.html Employee Type: Regular Time Type: Full time Rate Type: Salary Compensation Statement: The pay range listed for this position is
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evaluating the effectiveness of various recharge methods. A specific focus of this component is understanding subsurface structures that can facilitate focused recharge (e.g. sinkholes, losing/gaining streams
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approach (e.g., the digital humanities). We welcome scholars who conduct research that transcends traditional disciplines. Successful applicants will be able to demonstrate experience performing excellent
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profiling has uncovered nearly 10,000 human microproteins, yet fewer than 1% are functionally characterized, and a substantial fraction appear to localize to mitochondria ("mito-MPs"). Our long‑term goal is