By Lucien Coudurier
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113) varies with the molar fraction 1 of solute, and 1 e 1 is not zero. Henry's Law does not hold even in dilute solutions if 45 Solutions and e4 for various solutes in e i i liquid iron are given in Tables 20 and 21 (Chapter 7). The values of the interaction parameters Another form of expressing the interaction parameters is by plotting the values of the logarithms of the activity coefficients versus the weight per cent of these solutes (see Examples in Chapter 7, Figs. ). 5. DEPARTURE FROM RAOULT'S LAW IN DILUTE SOLUTIONS It has been seen earlier that a binary solution M - i does not follow Henry's Law when the interaction parameter el of a solute on itself is not zero.
I _ ej is, if Fe is the solvent: 56 J A. and A. 3 A. 1 12a) are the atomic weights of the solutes i and j respectively. 113) varies with the molar fraction 1 of solute, and 1 e 1 is not zero. Henry's Law does not hold even in dilute solutions if 45 Solutions and e4 for various solutes in e i i liquid iron are given in Tables 20 and 21 (Chapter 7). The values of the interaction parameters Another form of expressing the interaction parameters is by plotting the values of the logarithms of the activity coefficients versus the weight per cent of these solutes (see Examples in Chapter 7, Figs.
1 i i when N. -, 0 i ~~ = Yi/yi f f. i 1 when N. -> 0 i p 1h f. = i S j=1 e N. , and R. Y. (1953). L1. B. , Pergamon Press, London (1979). Kunii, D and Levenspill, Fluidisation Engineering, John Wiley and Sons Inc. New York (1969). , Physical Chemistry for Metallurgists, Allen and Unwire, London (1965). , and R. Defay, Chemical Thermodynamics, Vol. 1, Longmans Green, London (1952). , Physical Chemistry of Melts in Metallurgy, Academic Press, London (1974). , Paris (1968). , Thermodynamics of Alloys, Addison-Wesley, London (1952).
Fundamentals of Metallurgical Processes by Lucien Coudurier