Fundamentals of Chemical Engineering Thermodynamics (MindTap Course List)
Fundamentals of Chemical Engineering Thermodynamics (MindTap Course List)
1st Edition
ISBN: 9781111580704
Author: Kevin D. Dahm, Donald P. Visco
Publisher: Cengage Learning
Question
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Chapter 9.8, Problem 15P

A)

Interpretation Introduction

Interpretation:

Find out the system is absorbing the heat or remains same.

Concept introduction:

The molar enthalpy of mixing (ΔH_).

ΔH_=H_(x1H_1+x2H_2)

Here, molar enthalpy of the mixture is H_, mole fraction of benzene is x1, molar enthalpy of the benzene is H_1, mole fraction of 2-propanol is x2, and molar enthalpy of the 2-propanol is H_2.

The mole fraction of substance (x1).

x1=N1N1+N2 Here, number of moles of substance 1 is N1, and number of moles of substance 2 is N2.

The heat transfer rate is expressed (Q˙) as,.

Q˙=n˙ΔH_=(n˙1+n˙2)ΔH_

Here, molar flow rate of compound in the system is n˙, molar flow rate of benzene in the system is n˙1, and molar flow rate of the 2-propanol in the system is n˙2.

B)

Interpretation Introduction

Interpretation:

Find out the system is absorbing the heat or remains same when system is consider s  ideal solution.

Concept introduction:

An ideal solution is one, in which the solvent and solute particles show the similar intermolecular interactions with each other. Solution of higher concentration or solution prepared from solvent and solute with molecular-similarity behaves as ideal solutions.

In other words, ideal solution is a solution that has thermodynamic properties similar to those of a ideal gases mixture.

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