Q2. For a binary mixture of component (1) and (2), if the apparent molar property ₁ of component (1) is defined by: M-x₂M₂ H X₁ Where x is mole fraction, M is the molar property of the mixture and M₂ is the molar property of pure component (2) (constant) at the solution T & P: a) Derive equation for determination of the partial molar properties M, & M₂ from the knowledge of µ, as function of x, at constant T & P. The equation should include only the quantities x₁, M₁, M², and du, dx b) Obtain expression for the limiting case x₁=0 and, x,

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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Q2. For a binary mixture of component (1) and (2), if the apparent molar property ₁ of
component (1) is defined by:
M-x₂M₂
M₁=
X₁
Where x is mole fraction, M is the molar property of the mixture and M₂ is the molar
property of pure component (2) (constant) at the solution T & P:
a) Derive equation for determination of the partial molar properties M, & M₂ from the
knowledge of u as function of x, at constant T & P. The equation should include only
du
dx₁
the quantities x₁, 4₁, M₂, and
b) Obtain expression for the limiting case x₁=0 and x₁=1
Transcribed Image Text:Q2. For a binary mixture of component (1) and (2), if the apparent molar property ₁ of component (1) is defined by: M-x₂M₂ M₁= X₁ Where x is mole fraction, M is the molar property of the mixture and M₂ is the molar property of pure component (2) (constant) at the solution T & P: a) Derive equation for determination of the partial molar properties M, & M₂ from the knowledge of u as function of x, at constant T & P. The equation should include only du dx₁ the quantities x₁, 4₁, M₂, and b) Obtain expression for the limiting case x₁=0 and x₁=1
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