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the non-dissipative state, and especially the risk of thermal runaway (commonly known as a quench). Solutions exist, such as removing the turn-to-turn insulation to homogenize dissipation and thus reduce
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focusing on: 1. The systematic identification of PTMs induced by various environmental stresses (oxidative, osmotic, thermal, etc.). 2. The functional characterisation of these modifications on Cohesin and
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the nanoparticle’s magnetic moment by exploiting the sensitivity of their excited state to the electronic and thermal surroundings. We will thus investigate how light could impact the magnetic properties at short ns
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energy storage, all-solid-state refrigeration, and thermal switches. Ferroelectric tunnel junctions, where ferroelectrics are only a few atomic layers thick, can be used as analog memristors, mimicking
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with a background in fluid mechanics or thermal engineering. Given the scope of the research project, a strong interest in both experimental work and numerical modeling is essential. Familiarity with