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field. Strong computational chemistry background in atomistic simulations, electronic-structure theory, DFT, structure-property relationships, and interpretation of simulation results. Hands-on experience
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characterization results and electromagnetic simulations Contribute to the development of integrated instrument systems for the characterization of solid-state single-photon emitters, including photon correlation
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chemistry, and artificial intelligence. This position offers an exciting opportunity to advance fundamental understanding of heterogeneous catalysis through both first-principles simulations and the
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assess vehicle technologies to quantify energy consumption, performance and cost benefits. In this role, a successful candidate will perform vehicle modelling and simulation of advanced powertrains
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materials, electrochemical materials, or related functional materials Experience integrating literature, experimental, and simulation datasets into unified, machine learning-ready workflows Familiarity with
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related field. Experience with finite element simulations and developing constitutive models. Knowledge of high temperature creep crack growth. Knowledge of engineering design codes such as the ASME Boiler