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-performance optics, experiment setup instrumentation, control system and computing resources. The emphasis at MicroMAX is on serial crystallography, time-resolved experiments and studies of protein
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. You will implement and use particle-based simulation methods, including coarse-grained molecular dynamics, and perform rigorous verification and validation using datasets provided by our collaborators
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www.creol.ucf.edu . The ideal candidate will work with the Semiconductor Diode Laser Group ( https://www.creol.ucf.edu/sdl/ ) to participate in research in experimental optics. Our research focuses on large, high
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apply new theoretical methods to explore, understand and control photoinduced phenomena in molecular systems. Current directions include photomechanical motion in photoactive proteins and the effects of
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. Vertical Take-Off and Landing (VTOL) technology, advanced propulsion technologies, including electric and hybrid systems, unmanned systems flight dynamics, control and autonomy, energy storage solutions to
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Microsoft 365 Power Platform technologies. Technologies and platforms may include Power Automate, Power Apps, Dynamics CRM, Microsoft Dataverse, SharePoint Online, Azure services, and modern software
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). Such predictions require accurate and efficient simulation of the tightly coupled, time-dependent condensed- and gas-phase processes that control the rate of fire growth. State-of-the-art fire models
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European countries ( https://cordis.europa.eu/project/id/101227338 ). You will be appointed for three years, during which time you will study for a fee free PhD. Are you passionate about micro-sensors and
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background and interests, you will undertake research activities such as: Performing operando, low-dose-rate TEM to capture real-time atomic-scale catalyst dynamics Advancing ultrasensitive imaging and
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us to address fundamental questions in open quantum many-body dynamics. The position is experimental and will be carried out within the Trapped Ion Quantum Technology Group at Stockholm University