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. Advisers name email phone Carelyn E. Campbell carelyn.campbell@nist.gov 301.975.4920 Description First principles electronic structure methods such as density functional theory (DFT) are crucial
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calls. Schedule and confirm bone density appointments. Check patients in and out. Obtain and link bone density orders prior to scheduled appointments. Scan insurance cards and necessary forms. Maintain
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Tunneling Microscopy and Spectroscopy (STM/STS) for the application to a wide range of material surfaces, including complex magnets and 2D material heterostructures, following traditional density-functional
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, interfaces and 2D materials group. The main goal of the work is to theoretically describe electron-phonon fluctuations in the immediate vicinity of structurally ordered states (e.g., charge density waves CDW
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Laser-beam interactions with metallic systems are a complex interplay between thermal, momentum and topological changes. Further complications arise when sufficient power density is achieved and a
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reducing fusion device size by increasing the allowable magnetic field, current density, and operating temperature. The purpose of this job is to support Princeton University Plasma Physics Laboratory (PPPL
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filaments on the properties and observables of the cluster. Where to apply Website https://www.uam.es/uam/investigacion/ofertas-empleo/contrato-conjuntaenero2026r… Requirements Research
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the speed of storing and retrieving energy with the environmental benefits of aqueous systems. Yet, key challenges exist regarding the energy density and the long-term stability of such systems. The PhD
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the BERNARDO project, funded by the PEPR LUMA program (https://www.pepr-luma.fr/ ). The project focuses on chiroptical interactions, which play an essential role in fields such as biomolecular recognition
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Background Laser-beam interactions with metallic systems are a complex interplay between thermal, momentum and topological changes. Further complications arise when sufficient power density is