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Neutron Scattering (SANS) with a deformation field to probe structures under flow has led to significant advances in our understanding of complex fluids. Using a modified rheometer with a Couette cell which
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RAP opportunity at National Institute of Standards and Technology NIST Microfluidics for Characterization of Complex Fluids Location Material Measurement Laboratory, Materials Science and
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of traditional Navier-Stokes solvers. Who You Are: Computationally Fluent: You are familiar with CFD, particularly turbulent flows, and the coupling of computational fluid and particle dynamics. You also have an
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RAP opportunity at National Institute of Standards and Technology NIST Computational and Theoretical Approaches for Understanding Complex Fluids Location Material Measurement Laboratory
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particle dynamics (CFPD), a fluid-particulate coupled algorithm, to (i) quantify breath device operation (i.e., species deposition, complex fluid flow) [1], (ii) guide experimental breath species collection
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. Integration of multiple measurement modalities can provide a more detailed understanding of the inter-molecular environment for complex fluid systems. We are actively pursuing integration of acoustic stimuli
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Reference Materials (SRMs) include several complex biological materials, especially human plasma and urine. These materials are particularly useful to distinguish between biological variability and
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capacity for flow battery technology. key words Complex fluids; Batteries; Energy storage; Small angle scattering; Rheology; Eligibility citizenship Open to U.S. citizens level Open to Postdoctoral
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called the Fire Dynamics Simulator (FDS) . FDS is a block structured Cartesian LES code for low-speed flow which uses a high-order cutcell-immersed boundary method for complex geometry and is specifically