Determine pressure of CO₂ at 400 °C with a density of 10 mol/l. Using (a) The ideal-gas equation. (b) The van der Waals equation. (c) The generalized correlation of the 2nd-order virial coefficient. CO₂: Te = 304.2 K, Pc = 73.83 bar, w = 0.224 and molecular weight 44 g/mol.

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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Chapter1: Introduction
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Determine pressure of CO2 at 400 °C with a density of 10 mol/l. Using
(a) The ideal-gas equation.
(b) The van der Waals equation.
(c) The generalized correlation of the 2nd-order virial coefficient.
CO₂: Tc = 304.2 K, Pc = 73.83 bar, o = 0.224 and molecular weight 44 g/mol.
Transcribed Image Text:Determine pressure of CO2 at 400 °C with a density of 10 mol/l. Using (a) The ideal-gas equation. (b) The van der Waals equation. (c) The generalized correlation of the 2nd-order virial coefficient. CO₂: Tc = 304.2 K, Pc = 73.83 bar, o = 0.224 and molecular weight 44 g/mol.
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