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of systems in which disordered magnetism interact with atomic vibrations and other types of structural disorder. It is a merit to demonstrate experience in studies of magnetic order-disorder transitions and
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have experience of methods development for simulations of systems in which disordered magnetism interact with atomic vibrations and other types of structural disorder. It is a merit to demonstrate
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main goals will be to design methods and tools to provide quantitative information of nanoparticle spatial distributions in these tomograms. Questions that may be explored during your postdoc include
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materials, with a focus on lattice-dynamical free energies, temperature-dependent vibrational properties, and magnon–phonon interactions using quantum mechanical methods. As postdoc, you will principally
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properties, and magnon–phonon interactions using quantum mechanical methods. As postdoc, you will principally carry out research. A certain amount of teaching may be part of your duties, up to a maximum of 20
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meticulous. You have a genuine interest in helping others and a considerate approach in your interactions. Furthermore, you possess strong communication and collaboration skills, as well as the ability to work
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design and photophysical studies of the novel luminescent radicals for OLEDs and investigate the role of quartet excited states in radical OLEDs to make quartets “bright”, design of the novel metal-free
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that you attach to the application. The research plan shall include purpose and research questions, a literature review, and a description of theory, method, and sources. It should not exceed five pages
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soft, substrate-free, conducting materials directly in living tissues. This work focuses on advancing the understanding of polymerization kinetics, expanding the enzyme repertoire, and designing custom
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substantial experience of in vitro work with primary human immune cells and multi-colour flow cytometry, including panel design, the development of gating strategies, and statistical analysis. The applicant