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Description of the offer : To further advance and refine novel techniques—such as x ray detected ferromagnetic resonance (XFMR) with polarized soft x rays in reflectivity and diffraction geometries
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synthesise novel and technologically relevant nitrogen-based materials. The PDRA will employ the newly-developed single-crystal X-ray diffraction of powder-like samples for the structural characterisation
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situ/operando experiments and associated cell design is desirable. Familiarity with one or more of the following techniques is highly desirable: X-ray and neutron diffraction, computational chemistry
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situ/operando experiments and associated cell design is desirable. Familiarity with one or more of the following techniques is highly desirable: X-ray and neutron diffraction, computational chemistry
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. Experience of x-ray powder diffraction technique. Experience of muon spin rotation or neutron scattering experiments. Excellent interpersonal and communication skills. Ability to write and produce scientific
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the characterization and analysis of porous materials An excellent background in X-ray diffraction, electron diffraction, electron microscopy and related analytical techniques Open to learn new analytical tools, like
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molecular magnetism. The postholder will combine in/organic synthesis, single crystal and powder X-ray diffraction, magnetometry and neutron scattering to characterise novel molecular magnets with a view to
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mechanical design Experience with beam shaping techniques (e.g., spatial light modulators, diffractive optical elements) Proficiency in programming languages like LabVIEW, Python, MATLAB, or C++, and
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crystal and powder X-ray diffraction to assemble and structurally characterise new, highly symmetric molecular magnets, working with collaborators to develop magneto-structural correlations to discover and