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mapping and imaging experiments to probe local heat transport and phonon dynamics; Perform finite element modeling (FEM) (e.g., using COMSOL Multiphysics) to simulate thermal transport processes and support
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acquisition and processing techniques. Other Valued Skills (if applicable) Experience with noise and dissipation mechanisms; Experience with COMSOL simulations. Personal Skills “Hands-on” approach together
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modeling such as COMSOL, Ansys, ASPEN, etc. (Preferred) Strong background in aqueous electrochemical systems, and electrodeposition processes. (Required) Strong understanding of electrochemical cell assembly
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| King's College London ). The research in Photonics & Nanotechnology Group ( https://www.kcl.ac.uk/research/photonics-nanotechnology ) involves the development and applications of advanced photonic
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. Candidates interested are encouraged to visit the ESA website: http://www.esa.int Field(s) of activity for the internship Topic of the internship: Space Mechanisms design, development and testing
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contingent on the employee receiving approval in the FlexWork@RU Application System. Additional information may be found at https://futureofwork.rutgers.edu . Union Description URA-AFT Administrative Payroll
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receiving approval in the FlexWork@RU Application System. Additional information may be found at https://futureofwork.rutgers.edu . Union Description URA-AFT Administrative Payroll Designation PeopleSoft
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simulation software (e.g., COMSOL, Aspen Plus, MATLAB). Gas chromatography and other analytical methods Energy and mass balances Excellence in both written and spoken English You will be working in
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similar. Grade of 8.5 or higher on MSc thesis exam. Experience with FEM tools (COMSOL and Sentaurus are ideal). Extensive experience with developing electrical benchtop experiments. Hands-on experience with
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media, including biological tissues. Expertise in optical simulation software (e.g., Zemax, COMSOL, FDTD solutions) and programming languages (e.g., MATLAB, Python, C++). Hands-on experience with optical