5 Saturated water vapor at 14 MPa has a specific volume of 0.010 m³/kg. The water is depressurized at a constant specific volume from this state. Considering the data below, determine the quality of the mixture as its pressure falls to 10 MPa, 5 MPa, and 500 kPa. P (MPa) y, (m³/kg) v (m³/kg) 0.01149 14 0.001611 10 0.001452 0.01803 5 0.001286 0.04111 1 0.001127 0.1944 0.5 0.001093 0.3891

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
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5 Saturated water vapor at 14 MPa has a specific volume of 0.010 m³/kg. The water is depressurized at a
constant specific volume from this state. Considering the data below, determine the quality of the mixture
as its pressure falls to 10 MPa, 5 MPa, and 500 kPa.
P (MPa)
v, (m³/kg)
0.001611
y (m³/kg)
0.01149
14
10
0.001452
0.01803
5
0.001286
0.04111
1
0.001127
0.1944
0.5
0.001093
0.3891
Transcribed Image Text:5 Saturated water vapor at 14 MPa has a specific volume of 0.010 m³/kg. The water is depressurized at a constant specific volume from this state. Considering the data below, determine the quality of the mixture as its pressure falls to 10 MPa, 5 MPa, and 500 kPa. P (MPa) v, (m³/kg) 0.001611 y (m³/kg) 0.01149 14 10 0.001452 0.01803 5 0.001286 0.04111 1 0.001127 0.1944 0.5 0.001093 0.3891
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