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planning, spacecraft rendezvous, docking, and proximity operations. Utilize physics-based robotic simulation tools (e.g., Gazebo, Matlab/Simscope) and space mission analysis software (e.g., GMAT, STK
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trajectory planning, spacecraft rendezvous, docking, and proximity operations. Utilize physics-based robotic simulation tools (e.g., Gazebo, Matlab/Simscope) and space mission analysis software (e.g., GMAT
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. Utilize physics-based robotic simulation tools (e.g., Gazebo, Matlab/Simscope) and space mission analysis software (e.g., GMAT, STK) for simulating and studying spacecraft systems operations. Utilize
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, including ability/interest in developing control methods. Advancing and testing adaptive control techniques on UAV systems. Development and implementation of control algorithms (including simulations
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focuses on global river discharge simulation and assimilation of satellite data/products from the Surface Water and Ocean Topography (SWOT) mission. This is part of a multi-year project funded by NASA
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, cryo-EM, etc. An understanding of protein modeling and simulation. Additional Qualifications Considered May require experience with specialized software programs such as PyMol, Chimera and others
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. Continued employment is contingent upon the availability of external soft funding. Essential Functions Conduct advanced research (theory, simulations, and experiments) related to motion control problems in