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Six main simulations were performed utilizing the TIMIT, SITW, and NIST 2008 databases.
The resulting digital volumes were processed (Fig. 11), and permeability simulations were performed utilizing the lattice Boltzmann method (LBM) to determine the effect of shear deformation on connectivity and permeability within the sample.
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Western blot analyses were performed utilizing standard procedures.
Morphological studies were performed utilizing SEM.
In this work, viscoelastic, isothermal extrusion film casting simulations have been performed utilizing a 1D membrane model and the viscoelastic modified Leonov model as the constitutive equation in order to elucidate the role of planar to uniaxial extensional viscosity ratio, extensional strain hardening and Deborah number on the neck-in phenomenon.
The simulation of inverter is carried out with Matlab/Simulink and experimental studies are performed utilizing TMS320F2812 DSP.
DECT was performed utilizing 64-slice multidetector CT.
Immunodetection was performed utilizing ECL reagent.
Numerical simulations were performed by utilizing commercially available finite element (FE) code, LS-DYNA to predict the CAI response of these laminates.
Numerical simulations were performed using ANSYS Fluent utilizing extrapolation techniques to estimate the pressure drop as a function of flow rate and symmetry methods to investigate heat transfer.
In previous studies, numerical simulations were performed by the authors, utilizing an idealized canonical geometry, with the goal of eliminating actuator artifacts from the fundamental physics that drive the problem.
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CEO of Professional Science Editing for Scientists @ prosciediting.com