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. The position will involve development of codes/models simulating the nucleation and propagation of stress corrosion cracking in samples under low cycle fatigue conditions, as well as models for linking
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the frontiers of theoretical photonics, deepen our understanding of fundamental wave-phenomena, and investigate the fundamentals and applications of topology in photonics. Responsibilities You will carry out
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Experience with Fortran, Python and Linux Shell Experience working with large datasets Preferred but not essential: Knowledge of wind farm parameterizations in mesoscale models Experience in the field of wave
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passionate, driven, and ready to make waves, we want you on our team! Our inclusive research environment values diverse perspectives and encourages applications from candidates of all backgrounds. Let’s build
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synergies with other ongoing projects in the group, as well as interdisciplinary activities across the department, all centered on advancing the understanding and application of higher-order mode propagation
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aggregation starts and propagates via phase separated condensates — by developing dynamic, life-like experimental frameworks in test-tubes. The research also aims to challenge existing decades-old kinetic and
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processes in Ni/molten salts interfaces. Responsibilities and qualifications You will break new ground in developing cutting-edge multiscale methods to accurately describe the initiation and propagation