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. Develop a practical parametric model framework for ship and system design. iii. Carry out naval architecture calculations, i.e., stability, resistance, hydrodynamic analysis, etc. iv. Carry out ship
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to be equipped with applied research skill sets that are relevant to industry demands while working on research projects in SIT. The researcher will be part of the team of the MCCS NATURE Project (https
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elucidate: The hydrodynamic response of fluid solvents to the quantum solute motion. The role of the electric fluid polarization in solute-solvent interaction. The effects of the inner molecular structure
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by Supervisor. Job Requirements Master/PhD in Naval Architecture, Ocean Engineering, Marine Engineering, Civil Engineering, or related field. Proficiency in hydrodynamic modeling tools (e.g., ANSYS
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. For Dr. Haehl’s project desirable experience includes holography, conformal field theory, quantum chaos, effective field theory and/or hydrodynamics. For Dr. Zadeh’s project, background in conformal field
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computational and experimental; we work on exciting problems in diverse areas such as bio-fluid interactions, signatures, wave energy, advanced materials, complex hydrodynamics and hydroacoustics, data
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availability of funding. We seek qualified applicants to work with Prof. Kohei Inayoshi on the following topics: (1) Black hole growth and formation: Conducting radiation hydrodynamic simulations
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that are relevant to industry demands while working on research projects in SIT. The researcher will be part of the team of the MCCS NATURE Project (https://www.nparks.gov.sg/Cuge/Programmes-Schemes/Research