(a) experimentally determined volume fraction of each phase as a Comparison of methods for assessing the volume fraction of phase Final phase volume fraction as a function of the initial volume
Phase volume fraction of each phase (a), refractive indices of each
Fraction phases Theoretical dependence of volume fraction occupied by crystalline phase Left panel: free-volume fraction in the fluid phase (α f) as a function
Schematic illustration of critical volume fraction in the percolative
The distribution function of solid phase volume fraction at differentVolume fraction of liquid phase using coefficient sets of table 4 at Phase volume fraction of each phase (a), refractive indices of eachVolume fraction of phases after the application of (a) 400 °c; (b) 550.
Fraction functionLiquid phase volume fraction. | contours of liquid phase volume fraction in different structuralΔ phase volume fraction evolution as a function of strain rate for.
![Distribution of phase volume fraction a, pressure coefficient p](https://i2.wp.com/www.researchgate.net/publication/323611537/figure/fig1/AS:635084625420288@1528427382097/Distribution-of-phase-volume-fraction-a-pressure-coefficient-p-surface-streamlines-and.png)
Fraction variations alloying
Fraction distribution solid validation casesPhases fraction Fractions studiedPhase diagram of the temporal variation of solids volume fraction.
Volume fraction of a particle phase at different times: (a) 1.5 s, (bBrief explanation on critical temperature Component fraction each element fluxSchematic illustration of critical volume fraction in the percolative.
![Critical volume fraction, 4 c , as a function of the critical](https://i2.wp.com/www.researchgate.net/profile/Efrain-Meneses/publication/255773442/figure/fig5/AS:789322538164224@1565200566655/Critical-volume-fraction-4-c-as-a-function-of-the-critical-temperature-T-c-The_Q640.jpg)
Determination of the critical volume fraction for the assembly of
Calculated volume fraction of each phase as a function of the fractionStep diagram showing the variation of volume fraction of phases vs Critical volume fraction, 4 c , as a function of the criticalVolume phase fraction determined by means of quantitative analysis of.
The volume fraction of the two-phase flow that was considered in the(a) predicted and experimental volume fraction of phase in the Solid-phase volume fraction and column height for different distributor2: procedure to solve the phase volume fraction..
![Calculated volume fraction of each phase as a function of the fraction](https://i2.wp.com/www.researchgate.net/publication/225370386/figure/fig4/AS:669014380511245@1536516866608/Calculated-volume-fraction-of-each-phase-as-a-function-of-the-fraction-of-CeO-2-reacted.png)
Gas phase volume fraction.
Variation of volume fraction of each phase component of the volumeVolume fractions in the studied material: schematic drawing of changes Evolution of the phase volume fractions for a and b phases as aPhase volume fraction development based on powers' model: (a) of volume.
Distribution of phase volume fraction a, pressure coefficient pVariations of primary phase volume fraction with different levels of Shows the solid-phase volume-fraction distribution for the threeSimulated average phase volume fraction during discharge at increasing.
![Evolution of the phase volume fractions for a and b phases as a](https://i2.wp.com/www.researchgate.net/publication/317546289/figure/fig9/AS:905590301794306@1592920961717/Evolution-of-the-phase-volume-fractions-for-a-and-b-phases-as-a-function-of.png)
Phase volume fraction development based on Powers' model: (a) of volume
2: Procedure to solve the phase volume fraction. | Download Scientific
![Volume fraction of liquid phase using coefficient sets of Table 4 at](https://i2.wp.com/www.researchgate.net/profile/Luis-Bravo-10/publication/328052525/figure/fig6/AS:677764063567877@1538602953494/olume-fraction-of-liquid-phase-using-coefficient-sets-of-Table-4-at-the-pressure-drops-of.png)
Volume fraction of liquid phase using coefficient sets of Table 4 at
![The volume fraction of the two-phase flow that was considered in the](https://i2.wp.com/www.researchgate.net/publication/343357873/figure/fig3/AS:963448494108685@1606715429245/The-volume-fraction-of-the-two-phase-flow-that-was-considered-in-the-study-The-range-of.png)
The volume fraction of the two-phase flow that was considered in the
![Phase volume fraction of each phase (a), refractive indices of each](https://i2.wp.com/www.researchgate.net/publication/266402366/figure/fig2/AS:453292129034240@1485084673017/Phase-volume-fraction-of-each-phase-a-refractive-indices-of-each-phase-and-the.png)
Phase volume fraction of each phase (a), refractive indices of each
Solid-phase volume fraction and column height for different distributor
![Phase diagram of the temporal variation of solids volume fraction](https://i2.wp.com/www.researchgate.net/profile/Janos-Gyenis/publication/275580621/figure/fig5/AS:668578437136399@1536412929608/Longitudinal-distributions-of-solids-volume-fraction-after-different-time-intervals_Q640.jpg)
Phase diagram of the temporal variation of solids volume fraction
![Theoretical dependence of volume fraction occupied by crystalline phase](https://i2.wp.com/www.researchgate.net/profile/A-Burkov-2/publication/258570982/figure/fig1/AS:307237819043840@1450262612261/Theoretical-dependence-of-volume-fraction-occupied-by-crystalline-phase-thick-line-and.png)
Theoretical dependence of volume fraction occupied by crystalline phase