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to work at the forefront of energy research in a dynamic, collaborative environment. The successful candidate will preferably be familiar with a software environment designed for instrument connectivity and
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mechanics, optical components, thermal management, and tracking or control mechanisms. Use existing simulation tools (e.g., ray-tracing, CFD, thermal and structural solvers) to analyze optical performance
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ecohydrological modelling (Position 1) or large-scale hydrological data analytics (Position 2). The work will focus on advancing understanding of hydrological and water resource dynamics, with emphasis
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using tools like PDrAW will be considered an advantage; Knowledge of simulation tools such as Parrot Sphinx for testing drone applications in a virtual environment will be considered an advantage; Hands