1. Determine Z and V for steam (H20) at 250 °C (523.15 K) and 1800 kPa by the following: (a) Ideal gas equation (b) PV The truncated virial equation, Z = RT = 1++with the following experimental values of v2 virial coefficients: стз B = -152.5 mol стб ;C =-5800 mol (c) (d) (e) (F) (a) Truncated virial equation up to the parameter B (C excluded). The steam tables Soave/Redlich/Kwong equation Peng/Robinson equation Generalized Pitzer Correlation

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1. Determine Z and V for steam (H20) at 250 °C (523.15 K) and 1800 kPa by the following:
(a)
Ideal gas equation
PV
(b)
The truncated virial equation, Z =
RT
1+
with the following experimental values of
virial coefficients:
ст3
В 3D— 152.5
mol' C = -5800-
mol
стб
(c)
(d)
(e)
(F)
Truncated virial equation up to the parameter B (C excluded).
The steam tables
Soave/Redlich/Kwong equation
Peng/Robinson equation
Generalized Pitzer Correlation
(6)
Transcribed Image Text:1. Determine Z and V for steam (H20) at 250 °C (523.15 K) and 1800 kPa by the following: (a) Ideal gas equation PV (b) The truncated virial equation, Z = RT 1+ with the following experimental values of virial coefficients: ст3 В 3D— 152.5 mol' C = -5800- mol стб (c) (d) (e) (F) Truncated virial equation up to the parameter B (C excluded). The steam tables Soave/Redlich/Kwong equation Peng/Robinson equation Generalized Pitzer Correlation (6)
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