33 postdoc-molecular-dynamics-simulation Fellowship research jobs at Indiana University
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and molecular structures of these clusters, determining the nature of strong photoelectron-valence electron interactions and how they can be leveraged to drive transitions in the clusters, and exploring
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new research center. Postdoctoral fellows will have the opportunity to organize meetings and workshops at the Center as well as to propose new Center initiatives. We expect to hire 2-4 postdocs through
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be capable of designing experiments and conducting hypothesis-based research projects. The candidate should have a strong background in cell biology, molecular biology, or biochemistry. Daily recording
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chemistry, inorganic chemistry, physical chemistry, materials chemistry, and biochemistry. The IU Molecular Structure Center (IUMSC) is part of the Chemistry Department and provides state-of-the-art service
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expertise in molecular and cell biology or related field. The candidate should be highly motivated and independent PhD scientist. The position requires excellent interpersonal and communication skills which
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of this dynamic city and surrounding suburbs enjoy leading educational systems and top-ranked universities paired with a diverse population. Indianapolis International Airport is a top-ranked international airport
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to the local economy. Our dynamic downtown is a bustling commercial center, entertainment destination and residential neighborhood. The growing residential base is supported by rich amenities and quality of life
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Experience with either optical wave propagation simulations (e.g., Finite-Difference Time-Doman, Rigorous Coupled Wave Analysis, FEM) for metaoptics or experimental experience with metaoptics Department
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to work independently and in a collaborative and dynamic research group. Organizational proficiency and strong oral and written communication skills are essential. Salary: Commensurate with experience. Full
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datasets). Develop and apply statistical and empirical models to assess relationships between hourly precipitation characteristics and runoff. Simulate future rainfall patterns using thermodynamic scaling