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. Jose Moran-Mirabal's laboratory at McMaster University (Canada), internationally recognized for advanced biomaterials and hydrogel engineering. The successful candidate will participate in the design and
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organisation comprising approximately 750 researchers, engineers, and technicians. It has significant technical capabilities for designing, developing and implementing the experimental equipment required for its
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structural information to complement structural biology techniques. - Design, perform and interpret mass photometry, native MS, HDX-MS and cross-linking MS on a series of mulitprotein complexes
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of life in the camp, following a regime of **distanced immersion**: the visitor is present within the scene without merging with the internees. The project has formalized a parametric *design space
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lattices. • Implement and optimize RF reflectometry and dispersive sensing techniques for the measurement of complex admittance and charge susceptibility. • Design, characterize and improve microwave
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capacities (around 280 IT) in all the major fields required to design, develop / implement the experimental devices necessary for its scientific activity, as well as the design, development and use
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setup operating in the mid-IR. The first step of the project will consist of designing and implementing the optical layout of the setup. This includes splitting the OPA output into a pump and a probe beam
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the technological solutions required to provide the team with a higher-current test facility (in the 10 kA range), designed to be adaptable to the large-diameter magnets of the LNCMI. This will allow testing of very
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immersion**: the visitor is present in the scene without merging with the internees, and is held in the position of one who comes after — a late witness. The project has formalised a parametric *design space
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to develop innovative achromatic MSs for advanced optical imaging, focusing on multilayered designs, broadband performance, and integration with free-space optical systems. This project offers an opportunity