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in any of the following methods will be advantageous: Single-crystal crystallography, Powder X-ray diffraction, NMR, UV-vis, IR and Luminescence spectroscopy, electrochemistry. The candidate will hold
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), small-angle scattering (LOKI) and diffraction (DREAM). The PhD student will be employed at DTU but will research the learning of students from both DTU and UCPH. Likewise, the PhD student will be working
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DTU Tenure Track Researcher on Nanoreactors for Operando Visualizations of Nanoparticle Catalysis...
experience with TEM techniques including aberration-corrected high-resolution imaging, diffraction, ETEM, EFTEM and EELS. It is critical, that you have command of these TEM techniques under the lowest possible
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project, should contact Principal Investigator prof. Mikkel Bille, mbille@hum.ku.dk , phone +45 35329480 Link to the department’s website: https://saxoinstitute.ku.dk Introduction PhD studies consist
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. Following an offer of employment, the successful applicant will enroll in the CBS PhD School. Further information about CBS PhD scholarships and the PhD programme can be found at https://www.cbs.dk/en
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, please contact the principal supervisor Anne Sofie Hammer. General information about PhD study at the Faculty of Health and Medical Sciences is available at the Graduate School’s website: https
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qualified and, if so, for which of the two models. The assessed applicants will have the opportunity to comment on their assessment. You can read about the recruitment process at https://employment.ku.dk
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about the recruitment process at https://employment.ku.dk/faculty/recruitment-process/ . The further process After deadline, a number of applicants will be selected for academic assessment by an unbiased
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that candidate awarded the PhD fellowship will be able to commence the PhD degree programme on 1 September 2026. Where to apply Website https://phd.arts.au.dk/applicants/open-and-specific-calls Requirements
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Control of Buildings (https://annex96.iea-ebc.org ). Responsibilities and qualifications The primary objective is to advance scalable modeling methodologies for building energy systems by combining physical