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structure of protein complexes formed in the presence of different surrounding lipids using cryogenic electron microscopy (cryoEM). To achieve this, various molecules can be used to "extract" the receptors
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numerical validation of error bounds for model-order reduction based on optimal transport, in the context of electronic structure calculations. The postdoctoral researcher will be assigned to the Besançon
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Is the Job related to staff position within a Research Infrastructure? No Offer Description As part of the EIC Pathfinder project ELEQUANT, we aim to develop a new quantum materials platform based
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their effectiveness in modifying the electronic structure of 2D materials. The activities will include, in particular: - Developing a methodology based on cleanroom lithography processes, H⁺/He⁺ ion implantation, and
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iii) produce homogeneous and dense thin films on transparent solid substrates by deposition of the clusters. - Design, fabrication and use of microfluidic chips - Structural studies of colloidal
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of new electronic and structural properties, which will be explored in the context of neuromorphic applications. The successful candidate will be responsible for: • Fabricating heterostructures by pulsed
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of the ERC NEMESIS Synergy project (see https://erc-nemesis.eu/ ). The aim of this project is to build an integrated computing chain based on "Discrete de Rham" methods, the main feature of which is to
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chemistry. -Designing functional polymer materials through macromolecular engineering and self-assembly. The recruited postdoctoral researcher will join Team 2 – Biopolymers and Bio-based Polymers, led by
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materials based on π‑conjugated small molecules and their solids. The work focuses on establishing robust structure–property–performance relationships that guide molecular and materials design. The researcher
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study the structure and dynamics of proteins. The main objective is to design and implement nanodevices to study biological molecules and analyze light in the THz range. This work focuses on improving