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a range of characterization techniques, including X-ray diffraction, electron microscopy, X-ray photoelectron spectroscopy, as well as various electrochemical measurements, with opportunities
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of defect physics and provide fresh insights into the hotly debated topic of 2D material defect passivation, leveraging advanced vibration spectroscopies, time-resolved optical spectroscopy and microscopy
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photolyase proteins) using time-resolved serial femtosecond crystallography at Free-electron laser sources. Time-resolved crystallography is a cutting-edge method to study femto- microsecond structural changes
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2026 or as agreed. Placement: Uppsala For further information about the position, please contact: Assistant Professor Ramanathan Thinniyam Srinivasan, email: ramanathan.s.thinniyam@it.uu.se Please submit
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contact: Davoud Mirzaei, email: davoud.mirzaei@it.uu.se Olle Eriksson, email: olle.eriksson@physics.uu.se Biplab Sanyal, email: biplab.sanyal@physics.uu.se Vahid Azimi-Mousolou, email: vahid.azimi-mousolou
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, electric vehicles, industrial IoT, 6G communication, and wireless sensor networks, as well as research and education in Life Science, health technology, smart electronic sensors, and medical systems
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and electronic interactions between magnetic nanoparticles and a degenerated semiconductor matrix. The proposed synthesis route, based entirely on physical vapor deposition—a highly non-equilibrium
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complex systems. Development and application of theoretical tools that combine experimental data and atomistic computer simulations to provide a comprehensive picture that is difficult to achieve through
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to demonstrate qualification for admission. Contact information for two academic references (address, email address, and telephone number). The academic references may be contacted at a later stage of the