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However, the enhancement of the effective dynamic viscosity is much higher than the fresh nanofluids under the same volume concentration.
The effective thermal conductivity of composite materials packing with different shapes of fillers are compared under the same volume fraction, thermal conductivity ratio and the thermal conduct resistance.
These six new cases and a traditional case are analyzed under the same volume and clearance conditions and their differences compared.
In order to verify the size effect of nanoparticles, five different unit cells with different-sized silicon carbide (SiC) nanoparticles are considered under the same volume fraction.
Our results show that the three types of core architecture under the same volume fraction generate very different hardening effects during compression along the extrusion direction (ED), in contrast to similar hardening effects during tension along the ED.
Under the same volume fraction (0.1%), the flexural strength of MPFC and PSFC increased by about 6% compared with that of ordinary concrete (PC), but the flexural strength of PSFC increased slightly, with only 1 2%.
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However, at the same volume fraction, under the assumption of identical degree of dispersion and extent of influence on the surrounding polymer molecules, the nanotubes generate a significantly larger amount of interphase than the nanoplatelets.
Given the same volume of particles under top-flooding condition, the dryout power density of the triangular bed is about 69% higher than that of the homogenous bed.
All kilometers of railway are treated as having the same volume of rail traffic, which may under- or over-estimate emissions for any one railway segment.
For Imaris Vantage analysis of the nuclear shape: Sphericity Ψ was defined as the ratio of the surface area of a sphere with the same volume as the particle under investigation to the surface area of the particle using the formula, with Vp (volume of particle); Ap (surface area of particle).
Here, using Brownian dynamics simulations of hard sphere particles, we have examined high volume fraction shear-induced crystals under oscillatory shear as well their glass counterparts at the same volume fraction.
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under the same levels
under the same eye
under the same deal
under the same scrutiny
under the same sort
under the same family
under the same protocol
under the finite volume
under the same roof
under the same kind
under the sheer volume
under the same category
under the titanic volume
under the same ownership
under the same title
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com