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of research. These include: Computational physics, including statistical mechanics, biophysics, fluid mechanics, quantum physics, and molecular dynamics Numerical methods for partial differential equations and
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both 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
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University of Singapore is a multi-disciplinary institute committed to developing new paradigms for biomedical research by focusing on the quantitative analysis of dynamic functional processes. Through
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involve combining skin models with microfluidics and analysing these dynamic culture systems. This will include modelling and analysis of fluid flow, studies of cell performance in different perfusion
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optical and mechanical simulations, possibly also computational fluid dynamics. Fabrication of the PIC in cleanroom facilities in Norway (NTNU Nanolab and at UiT), including process optimization and
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optical and mechanical simulations, possibly also computational fluid dynamics. Fabrication of the PIC in cleanroom facilities in Norway (NTNU Nanolab and at UiT), including process optimization and
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on naturally occurring substances on Earth and in space, from the perspective of colloid geochemistry, geophysical fluid dynamics, or multi-scale chirality. Experimental or theoretical analyses of knotoid
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and their communities. Examples of software project applications of CCA researchers include fluid dynamics and plasma simulations, radiative transfer, N-Body & dynamical simulations, GPU & other high