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quantify the impact of nonlinearity on flow and transportin confined porous media. We put particular emphasis on three sources of nonlinearity: non-Newtonian rheology, large driving rates leading to dynamic
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general legislation and governed by its statutes and applicable legal provisions, with full capacity to act under the tutelage of its Board of Trustees and whose purpose is to promote and carry out cancer
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and Ultrafast Optics group led by Prof. Dr. Jens Biegert. The group works in a highly interdisciplinary field which fuses ultrafast laser physics, extreme nonlinear optics, atomic and molecular
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, or Experimental Atomic, Molecular and Optical Physics. Expertise in experimental quantum optics, laser systems, nonlinear optics, single-photon detection, and optical alignment will be highly appreciated
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and electrochemical approaches. The main objective of Merkoçi group is to design nanotech devices that can be used even by non professional people for fast diagnostic at home or doctor's office, control
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-169764OR-C22). The selected candidate will work in a multidisciplinary environment in the field of medicinal chemistry, molecular modelling and antiviral research. The project will involve the design and
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function approximation and optimal control. ● Contribute to writing scientific papers on the project results and assist in disseminating these results at conferences and workshops. The selected candidate may
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Fabrication and characterization of van der Waals heterostructure devices Optoelectronic and transport measurements, including at cryogenic temperatures Development and optimization of graphene-based mid
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to the development of techno-economic models, and supervise the PhD candidate in all research activities related to energy economics. The researcher will work closely with the principal investigator and the project
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at the intersection of construction and digitalization: optimization of construction processes, new and alternative cementitious materials, sensor-based monitoring of concrete performance, and