Predict the viscosity (in cp) of chlorine-air mixture at 75 °F and one atmosphere from the given data on the pure components at the same pressure and temperature. Consider air as a single component. Mole fraction, x Species Molecular weight, M Viscosity, μ, cp 0.5 0.01304 0.5 0.01832 Cl₂ Air N Χαμα ΣΦ B=1 Hmix = ZN a=l aß 1 M 1+ √8 M B -1/2 1+ Ha HB 1/2 M V/4 70.91 28.97

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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Predict the viscosity (in cp) of chlorine-air mixture at 75 °F and one atmosphere from the given data
on the pure components at the same pressure and temperature. Consider air as a single component.
Species
Mole fraction, x
Molecular weight, M
Cl₂
Air
N
- Χαμα
Hmix = N
Φ =
aß
a=l
Σ*Φαρ
B=1
1
-1/2
M
Ha
HTCCT
√8 M
M
HB
1+
0.5
0.5
M
70.91
28.97
Viscosity, μ, cp
0.01304
0.01832
Transcribed Image Text:Predict the viscosity (in cp) of chlorine-air mixture at 75 °F and one atmosphere from the given data on the pure components at the same pressure and temperature. Consider air as a single component. Species Mole fraction, x Molecular weight, M Cl₂ Air N - Χαμα Hmix = N Φ = aß a=l Σ*Φαρ B=1 1 -1/2 M Ha HTCCT √8 M M HB 1+ 0.5 0.5 M 70.91 28.97 Viscosity, μ, cp 0.01304 0.01832
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