The variation of the dynamic viscosity of water with absolute temperature is given as. (table given) Using these tabulated data, develop a relation for viscosity in the form: µ=µ(T)=A+BT+CT2+DT3+ET4 Using the relation developed, predict the dynamic viscosity of water at 50°C at which the reported value is 5.468 × 10−4 Pa⋅s. Compare your result with the results of Andrade’s equation, which is given in the form of µ=D*eB/T where D and B are constants whose values are to be determined using the viscosity data given

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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The variation of the dynamic viscosity of water with absolute temperature is given as. (table given) Using these tabulated data, develop a relation for viscosity in the form: µ=µ(T)=A+BT+CT2+DT3+ET4 Using the relation developed, predict the dynamic viscosity of water at 50°C at which the reported value is 5.468 × 10−4 Pa⋅s. Compare your result with the results of Andrade’s equation, which is given in the form of µ=D*eB/T where D and B are constants whose values are to be determined using the viscosity data given. 

Temperature, K| Viscosity, Pa-s
1.787 x10-3
1.519 x10-3
1.307 х103
1.002 x10-3
7.975 x104
6.529 x104
4.665 x104
3.547 х104
2.828 x104
273.15
278.15
283.15
293.15
303.15
313.15
333.15
353.15
373.15
Transcribed Image Text:Temperature, K| Viscosity, Pa-s 1.787 x10-3 1.519 x10-3 1.307 х103 1.002 x10-3 7.975 x104 6.529 x104 4.665 x104 3.547 х104 2.828 x104 273.15 278.15 283.15 293.15 303.15 313.15 333.15 353.15 373.15
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