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physics, structured around three main axes: Novel electronic states of matter (correlated systems, unconventional superconductivity, magnetism, metal-insulator transitions, etc.) Reduced-dimensionality
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that will bring us closer to the cellular context. The PhD student will use a combination of biochemical and structural biology methods: reconstitution of ribonucleoprotein complexes from cell extracts and/or
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the “OMEIR” team (Structures, Materials, Environment: Interactions and Risks). The laboratory will bring in particular its expertise in cementitious materials, especially regarding their mechanical behavior
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Centre de Mise en Forme des Matériaux (CEMEF) | Sophia Antipolis, Provence Alpes Cote d Azur | France | 11 days ago
-controlled on the level of the structural element. The objective of this PhD project is the fabrication of magnetic, bio-based, porous particles with tailored magnetic and mechanical properties. Magnetic iron
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) as part of the tunable high-coherence opto-THz structured source project for applications of interest. The Institute of Electronics and Systems (IES) is a research laboratory affiliated with
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, chemical and structural analyses, characterization of physical properties, etc.), internal (seminars) and external (workshops, conferences) presentations, writing of reports and publications) Where to apply
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contact . Your profile Masters, Diploma or equivalent degree in bioinformatics, computational biology, systems biology, biology, or similar Experience in structural and functional protein annotation
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happenings), the research will trace shifts and continuities in the cultural construction of gastronomy and its entanglement with art and ideology —ranging from the pursuit of rare tastes to the celebration
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performance assessment of a multiplexed radio-frequency circuits and radiating structures for simultaneous biosensing, connectivity, and localisation of ingestible devices. This work package will be lead by
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, organization and structural order, as well as the EE transport dimensionality (2D versus 3D) to push beyond state-of-the-art energy transport lengths in synthetic LH systems. In this context we propose a PhD