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-based and multiferroic circuit and device concepts aimed at enabling radically energy-frugal information processing. Recent advances in spintronics and ferroelectrics show that combining magnetic and
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mechanisms of water splitting in porous carbon electrodes. In response to the urgency of reducing CO₂ emissions and replacing polluting industrial processes (such as steam reforming), water electrolysis, while
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to the electrochemical reaction being studied. - Optical simulations of plasmons in the thin films. - Design of a specific electrochemical cell to allow normal electrochemical operation under infrared irradiation, without
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controls [4, 5, 6, 7]. The originality of this combined project lies in bridging design and operation: (i) extending MPC to include topology reconfiguration in a computationally tractable way (DynConGrid
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metallurgy to produce high‑performance materials through Spark Plasma Sintering (SPS). This process is based on the simultaneous application of high pressure and an electric current through a graphite die
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to adapt this technique for single-frame model free post-processing method. The PhD will employ a combination of simulation and experimental validation. First, use and develop existing coronagraphic
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the mechanisms of sorption and diffusion; (iv) to establish relationships between molecular structure and adsorption properties; and finally (v) to combine experiments and simulations to predict the performance
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, and operation of ADS present a series of technological challenges to be overcome. In particular, the reactor's reactivity must be measurable online; otherwise, the ADS cannot be operated. Indeed, since
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fabrication Prototyping Electrical and electronic engineering Numerical simulation Optics Computer-aided design (CAD) Optical and electrical characterization techniques Semiconductor materials # Soft Skills
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condensed matter physics • Ability to learn and develop skills in analytical computation, theoretical modelling and numerical simulations, in particular the numerical solution of partial differential