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key materials—generally nickel-based superalloys—that make up turbine blades with ceramic matrix composites (CMCs). These composites combine lightness, thermomechanical strength and damage tolerance
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numerical approaches or simulations. A PhD in Physics, Materials Science, Earth and Planetary Sciences, or a related field is required for this position. Additional comments The candidate (M/F) is invited
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ExperienceNone Research FieldTechnologyYears of Research ExperienceNone Additional Information Eligibility criteria • PhD degree (or equivalent) in physics, photonics, condensed matter physics, materials science
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which each constituent unit processes energy constitute active matter. Active colloids promise to harness the potential that “activity” can deliver in terms of new materials and devices. A challenge
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of the construct is continuons by essence and response shift could be envisioned as a continuons process. Furthermore, the study timescale has often to be treated as continuons rather than as discrete with equally
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as carriers of information. We will investigate the dynamics of phonons in acoustic resonators formed by Bragg mirrors and thin films of responsive materials (VO₂, mesoporous SiO₂), capable
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projects at regional and/or national levels (ANR, ADEME, etc.) and participate in building partnerships to further the ERVAT exploration. Detailed Tasks 3.1. Fieldwork and Ethnography on Justice and
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Eligibility criteria • A PhD in Chemistry or Materials Physics. • Scientific and technical skills: thin-film materials synthesis and/or functional and mechanical characterization. • Strong synthesis and
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position, candidates must hold an internationally-recognized PhD-equivalent degree in materials chemistry, materials engineering, optical physics, or nanoscience. Experience in sol-gel chemical synthesis and
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switching of a PCM involves modifying its structural phase by applying a temperature gradient tailored to the desired transition, i.e., from a conductive material to an insulator or vice versa. Different