A gas mixture of n-butane, n-pentane, and n-hexane has the following composition: nC, H10 55% (M.wt. = 58.12), nC, H12 20% (M.wt. = 72,15) , and nC, H14 25% (M.wt. = 86.18). For this mixture, calculate: a) The mole fraction of each component. b) The weight fraction of each component. c) The weight percent of each component. %3D

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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A gas mixture of n-butane,
n-pentane, and n-hexane has the
following composition: nC, H10 55%
(M.wt. = 58.12), nC, H12 20% (M.wt.
= 72,15) , and nC, H14 25% (M.wt. =
86.18). For this mixture, calculate:
a) The mole fraction of each
component.
b) The weight fraction of each
component.
c) The weight percent of each
component.
d) The average molecular weight of
the mixture.
A
58.12), nC, H12 20% (М.wt.
%3D
%3D
e) The density of this mixture (in g /
cm and Ib / ft) if it occupies 32x10 °
cm. )
The specific gravity of the gas if the
density of air at 20 ° C is 1.2 kg / m '.
Transcribed Image Text:A gas mixture of n-butane, n-pentane, and n-hexane has the following composition: nC, H10 55% (M.wt. = 58.12), nC, H12 20% (M.wt. = 72,15) , and nC, H14 25% (M.wt. = 86.18). For this mixture, calculate: a) The mole fraction of each component. b) The weight fraction of each component. c) The weight percent of each component. d) The average molecular weight of the mixture. A 58.12), nC, H12 20% (М.wt. %3D %3D e) The density of this mixture (in g / cm and Ib / ft) if it occupies 32x10 ° cm. ) The specific gravity of the gas if the density of air at 20 ° C is 1.2 kg / m '.
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