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Field
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readout circuit designs informed by device characterization and electromagnetic simulations Contribute to the development of complete instrument systems for characterization of solid-state single-photon
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instrumentation. The goal of the project is to design and develop a wearable ultrasonic imager, combined with optical measurements, for monitoring uterus contractions during pregnancy to detect the early signs
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the electronic, magnetic, and optical properties of 2D materials at ultrafast timescales, which holds promises for developing new energy technologies. The candidate is responsible for conceiving, planning, and
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 7 days ago
(GMAO), is a comprehensive Earth system model and data assimilation system. The GMAO assimilates aerosol optical depth (AOD) observations from space-borne (e.g. MODIS, VIIRS) and ground-based (AERONET
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-destructive evaluation techniques, including optical and laser-based metrology, industrial X-ray computed tomography (CT), and ultrasonic sensing, will be used to monitor process stability and detect defects
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processing, Electric Power Engineering, Antennas and Optical Networks, and Biomedical engineering. We work with sustainable and smart solutions to societal challenges, such as energy efficiency and
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applications in electrified transport. About us At the department of Electrical Engineering research and education are performed in the areas of Communications, Antennas and Optical Networks, Systems and
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of the following tasks: 1) Laser-based instrumentation design, fiber coupling, and optical characterization. 2) Experimental investigation and computational model simulation of laser-induced bubble dynamics and
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domains such as nontrivial skyrmions, using external stimuli (e.g., optical excitations, electric and magnetic fields) and internal nanoscale heterogeneity, defects, and interfaces (e.g., twisting
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leading the way in the fields of condensed matter, biological physics, and optics. Together with a dynamic group of graduate students and researchers, we are evolving new methods and deepening our