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distributions, cloud microphysical properties and processes, dust aerosol distributions and impacts, and atmospheric boundary layer (ABL) structure and dynamics. In recent years, we have focused on advancing
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dynamics. In recent years, we have focused on advancing airborne lidar technologies. The Multi-function Airborne Raman Lidar (MARLi) and Airborne Doppler Lidar (ADL), supported by NSF, provide simultaneous
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dynamics. In recent years, we have focused on advancing airborne lidar technologies. The Multi-function Airborne Raman Lidar (MARLi) and Airborne Doppler Lidar (ADL), supported by NSF, provide simultaneous
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of Geosciences performing computationally intensive geodynamic models of the plate boundary system in the western United States. The Postdoctoral Associate will investigate the dynamics of the southwest
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procedures of Stony Brook University. The incumbent will research “Descriptors of Dynamic Elastic Dipoles in Non-Classical Electrostrictors” and will perform in situ characterization of new ceramic oxides by
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procedures of Stony Brook University. The incumbent will research “Descriptors of Dynamic Elastic Dipoles in Non-Classical Electrostrictors” and will perform in situ characterization of new ceramic oxides by
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laboratory in the Department of Radiology at Stony Brook University. The successful candidate will lead efforts to quantify multi-scale neurofluid dynamics, including blood flow and cerebrospinal fluid