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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 2 months ago
developing thermodynamic tools and experiments to predict the concentrations and identity of the complex organic molecules that could exist in the deep oceans, residual brines and rocky interiors
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Climate (METR 100, repeated each semester), Severe and Unusual Weather (METR 140), Atmospheric Thermodynamics (METR 223), and a two-semester sequence in Synoptic Meteorology (METR 341 and METR 442
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of Physics, NTNU. The position is financed by PoreLab under Research Theme 1: Thermodynamics of flow in porous media. The position is for a period of three years, with the possibility of a one-year extension
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based on satisfactory performance. Teaching duties will include Weather and Climate (METR 100, repeated each semester), Severe and Unusual Weather (METR 140), Atmospheric Thermodynamics (METR 223), and a
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Job Description Are you a skillful and ambitious PhD graduate interested in kicking off your academic career in a renowned research group leading in the field of applied thermodynamics with a strong
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the extraction yield. Perform comprehensive kinetic and thermodynamic studies to understand and optimize the extraction processes. Investigate structure-property relationships to correlate the extraction process
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lab (http://dynamics.ulb.be) in 2022 and recently underpinned by a thermodynamically inspired theoretical framework, the SAP is a key microscopic mechanism in polymers, liquid crystals, and other small
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. Investigate the thermodynamics and interfacial structure-property relationships of materials intended for thermal energy storage to deepen understanding and optimize performance. Develop innovative approaches
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Dr. Matteo Tanzi to contribute to the EPSRC grant: “Strongly Coupled Maps: Thermodynamic Limits and Rates of Convergence.” This position offers an exciting opportunity to work at the intersection
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. Experimental Physics with Cold AtomsAreas of interest: Quantum turbulence; thermodynamics of cold atoms; atomic clocks with cold atoms.The project focuses on investigating novel phenomena in cold atomic systems