Constants | Periodic Tab One mole of HO(1) is compressed from a state described by P=1.00 bar and T= 298 K to a state described by P=600. bar and T=655 K. In addition, a 2.07 x 104K1 and the density can be assumed to be constant at the value 997 kg m3.Cpm for water is 75.3 J- mol-1.K1 Part A Calculate AS for this transformation, assuming that T = 0 Express your answer with the appropriate units. ? AS = Value Units

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
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Constants | Periodic Tabl
One mole of H,O(1) is compressed from a state described by P = 1.00 bar and T = 298 K to a state described by P=600. bar and T= 655 K. In addition, a= 2.07 x 104K-1 and the density
can be assumed to be constant at the value 997 kg m 3 Cp m for water is 75.3 J- mol-1.K-1
Part A
Calculate AS for this transformation, assuming that T = 0.
Express your answer with the appropriate units.
HA
?
Value
Units
AS =
Transcribed Image Text:Constants | Periodic Tabl One mole of H,O(1) is compressed from a state described by P = 1.00 bar and T = 298 K to a state described by P=600. bar and T= 655 K. In addition, a= 2.07 x 104K-1 and the density can be assumed to be constant at the value 997 kg m 3 Cp m for water is 75.3 J- mol-1.K-1 Part A Calculate AS for this transformation, assuming that T = 0. Express your answer with the appropriate units. HA ? Value Units AS =
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