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silica fibers Use of high-power laser sources Proficiency in high-power optical radiation Knowledge of numerical simulation of nonlinear effects Knowledge of English Additional comments - Website
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hydrodynamic models to simulate waves and currents at the field site. Analyze and interpret experimental and numerical data, and disseminate findings through technical reports, conference presentations, and peer
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stellarators alike. The candidate will also perform numerical simulations with both the existing and improved versions of the SOLEDGE3X code, coupled with the Dust Injector Simulator (DIS) code, of powder
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to the application deadline Hands-on experience with cleanroom fabrication techniques or precision manufacturing. Experience with CAD design and numerical simulation tools (e.g., CFD). Experience in 3D printing
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, testing, and analysis of resilient and sustainable geotechnical systems using centrifuge modeling. The work will bridge advanced experimental testing with complementary numerical simulation to generate
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sputtering). A coupled approach, involving experiments and Multiphysics numerical simulation will be implemented. A thorough investigation of the relationships between deposition conditions (temperatures
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Requirements Compétence en probabilités, statistiques, simulations numériquesSkills in probability, statistics, and numerical simulations Additional Information Work Location(s) Number of offers
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electromagnetics and antenna theory • Experience with numerical simulation tools (e.g., CST, HFSS, COMSOL) • Knowledge of microwave/millimeter-wave systems • Experience with laboratory measurements and experimental
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methods for multiphase flow models Integrate experimental, pilot-scale, or high-fidelity simulation data into model calibration and validation workflows Design and run numerical simulations of multiphase
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Theoretical Quantum Many-body Physics and Quantum Sensing at Indiana University Bloomington Fields: Quantum many-body theory, AMO–condensed matter interfaces, advanced numerical simulations, quantum sensing