Loose Leaf For Introduction To Chemical Engineering Thermodynamics
Loose Leaf For Introduction To Chemical Engineering Thermodynamics
8th Edition
ISBN: 9781259878084
Author: Smith Termodinamica En Ingenieria Quimica, J.m.; Van Ness, Hendrick C; Abbott, Michael; Swihart, Mark
Publisher: McGraw-Hill Education
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Chapter 6, Problem 6.58P

(a)

Interpretation Introduction

Interpretation:

The temperature of the expanded gas and the work produced needs to be calculated using ideal gas equations.

Concept Introduction:

For an ideal gas, the formula to calculate entropy is:

  ΔSR=Alnτ+[BT0+(CT02+D τ 2 T 0 2)(τ+12)](τ1)lnPP0 ...... (1)

Here, A, B, C, and D are the parameters taken from table C.1 and T0 is the standard temperature.

  τ is defined as:

  τ=TT0

The formula to calculate the work produced by an ideal gas is:

  Ws=ΔHig ...... (2)

Here, ΔHig is defined as:

  ΔHig=T1T2CpigdT ...... (3)

The value of Cpig is taken from table C.1.

(b)

Interpretation Introduction

Interpretation:

The temperature of the expanded gas and the work produced are to be calculated using appropriate generalized correlations.

Concept Introduction:

For a real gas, the formula to calculate entropy is:

  ΔSR=Alnτ+[BT0+(CT02+D τ 2 T 0 2)(τ+12)](τ1)lnPP0+S2RS1R ...... (1)

Here, A, B, C, and D are the parameters taken from table C.1 and T0 is the standard temperature.

  τ is defined as:

  τ=TT0

SiR at state i is defined as:

  SiR=(SiR)0+ω(SiR)1 ...... (2)

Here, (SiR)0 and (SiR)1 are given in table D.9 and D.10.

The formula to calculate the work produced by a real gas is:

  Ws=ΔHig+H2RH1R ...... (3)

Here, ΔHig is defined as:

  ΔHig=T1T2CpigdT ...... (4)

The value of Cpig is taken from table C.1. HiR at state i is defined as:

  HiR=(HiR)0+ω(HiR)1 ...... (5)

Here, (HiR)0 and (HiR)1 are given in table D.5 and D.6.

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Chapter 6 Solutions

Loose Leaf For Introduction To Chemical Engineering Thermodynamics

Ch. 6 - Prob. 6.11PCh. 6 - Prob. 6.12PCh. 6 - Prob. 6.13PCh. 6 - Prob. 6.14PCh. 6 - Prob. 6.15PCh. 6 - Prob. 6.16PCh. 6 - Prob. 6.17PCh. 6 - Prob. 6.18PCh. 6 - Prob. 6.19PCh. 6 - Prob. 6.20PCh. 6 - Prob. 6.21PCh. 6 - Prob. 6.22PCh. 6 - Prob. 6.23PCh. 6 - Prob. 6.24PCh. 6 - Prob. 6.25PCh. 6 - Prob. 6.26PCh. 6 - Prob. 6.27PCh. 6 - What is the mole fraction of water vapor in air...Ch. 6 - Prob. 6.29PCh. 6 - Prob. 6.30PCh. 6 - Prob. 6.31PCh. 6 - Prob. 6.32PCh. 6 - Prob. 6.33PCh. 6 - Prob. 6.34PCh. 6 - Prob. 6.35PCh. 6 - Prob. 6.36PCh. 6 - Prob. 6.37PCh. 6 - Prob. 6.38PCh. 6 - Prob. 6.39PCh. 6 - Prob. 6.40PCh. 6 - Prob. 6.41PCh. 6 - Prob. 6.42PCh. 6 - Prob. 6.43PCh. 6 - Prob. 6.44PCh. 6 - Prob. 6.45PCh. 6 - Prob. 6.46PCh. 6 - Prob. 6.47PCh. 6 - Prob. 6.48PCh. 6 - Prob. 6.49PCh. 6 - Prob. 6.50PCh. 6 - Prob. 6.51PCh. 6 - Prob. 6.52PCh. 6 - Prob. 6.53PCh. 6 - Prob. 6.54PCh. 6 - Prob. 6.55PCh. 6 - Prob. 6.56PCh. 6 - Prob. 6.57PCh. 6 - Prob. 6.58PCh. 6 - Prob. 6.59PCh. 6 - Prob. 6.60PCh. 6 - Prob. 6.61PCh. 6 - Prob. 6.62PCh. 6 - Prob. 6.63PCh. 6 - Prob. 6.64PCh. 6 - Prob. 6.65PCh. 6 - Prob. 6.66PCh. 6 - Prob. 6.67PCh. 6 - Prob. 6.68PCh. 6 - Prob. 6.69PCh. 6 - Prob. 6.71PCh. 6 - Prob. 6.72PCh. 6 - Prob. 6.73PCh. 6 - Prob. 6.74PCh. 6 - Prob. 6.75PCh. 6 - Prob. 6.76PCh. 6 - Prob. 6.77PCh. 6 - Prob. 6.78PCh. 6 - Prob. 6.79PCh. 6 - Prob. 6.80PCh. 6 - Prob. 6.81PCh. 6 - The temperature dependence of the second virial...Ch. 6 - Prob. 6.83PCh. 6 - Prob. 6.84PCh. 6 - Prob. 6.85PCh. 6 - Prob. 6.86PCh. 6 - Prob. 6.87PCh. 6 - Prob. 6.88PCh. 6 - Prob. 6.89PCh. 6 - Prob. 6.90PCh. 6 - Prob. 6.91PCh. 6 - Prob. 6.92PCh. 6 - Prob. 6.93PCh. 6 - Prob. 6.94PCh. 6 - Prob. 6.95PCh. 6 - Prob. 6.96PCh. 6 - Prob. 6.97PCh. 6 - Prob. 6.98PCh. 6 - Prob. 6.99PCh. 6 - Prob. 6.100P
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