Plot (a) G, (b) Š and (c) V versus temperature from 100 to 500 K and pressure from 0.1 to 20 bar and discuss the slopes of each of the plots of Ğ in the two directions. The first term in the expression for the molar Gibbs energy is neglected here. The necessary equations are: (a) Ĝ = -Tln(T5/2/P) (b) Š = In(T$/2/P) (c) D = T/P

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Q 4. Plot (a) G, (b) S and (c) V versus temperature from 100 to 500 K and pressure from 0.1 to
20 bar and discuss the slopes of each of the plots of G in the two directions. The first term
in the expression for the molar Gibbs energy is neglected here. The necessary equations
are:
(a) Ĝ = -Tln(T5/2/P)
(b) 5 = In(T5/2/P)
D = T/P
(c)
Transcribed Image Text:Q 4. Plot (a) G, (b) S and (c) V versus temperature from 100 to 500 K and pressure from 0.1 to 20 bar and discuss the slopes of each of the plots of G in the two directions. The first term in the expression for the molar Gibbs energy is neglected here. The necessary equations are: (a) Ĝ = -Tln(T5/2/P) (b) 5 = In(T5/2/P) D = T/P (c)
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