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analysed with TEM and nano-ARPES, as well as other characterisation techniques. You will assemble complex heterostructures with control of twist angle and join our search for flat band physics, new
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have the opportunity to use advanced material characterization techniques (e.g., SEM, TEM, XRD, X-ray CT, rheology, and multiscale mechanical testing) to characterize the consequences of the activation
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diffraction and related scattering methods, Raman spectroscopy, electron microscopy (SEM and TEM). Carry out electrochemical characterization of the materials in half cells as well as in full sodium ion battery
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, EBSD and TEM Mechanical testing, such as tensile and fatigue tests Numerical modelling, such as crystal plasticity finite element modelling Physical Metallurgy, especially on steels Excellent English