a) Redlick-Kwong equation: For O2, Tc = 154.6 K and Pc 50.43 bar %3D b) Beattie – Bridgeman equation

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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Round off final answers to 4 decimal places and floating values for intermediate answers. Use 2 decimal places for molecular weights.

8) Compare the values obtained for the pressure(atm) of 2 mols O2 at 298.15K held in a
8.25 dm bulb using
a) Redlick-Kwong equation: For O2, Tc = 154.6 K and Pc = 50.43 bar
%3D
b) Beattie – Bridgeman equation
For 02, the Beattie-Bridgeman constants:
Ao = 0.14911 Pa-m6-mol-2
Bo = 46.24 x 10-6 m³-mol-1
a= 25.62 x 10-6 m³-mol-1
b= 4.208 x 10-6 m³-mol-1
C = 4.80 x 10-1 m³-K³-mol-1
Ра-т3
Use R
8. 314
mole-K
Transcribed Image Text:8) Compare the values obtained for the pressure(atm) of 2 mols O2 at 298.15K held in a 8.25 dm bulb using a) Redlick-Kwong equation: For O2, Tc = 154.6 K and Pc = 50.43 bar %3D b) Beattie – Bridgeman equation For 02, the Beattie-Bridgeman constants: Ao = 0.14911 Pa-m6-mol-2 Bo = 46.24 x 10-6 m³-mol-1 a= 25.62 x 10-6 m³-mol-1 b= 4.208 x 10-6 m³-mol-1 C = 4.80 x 10-1 m³-K³-mol-1 Ра-т3 Use R 8. 314 mole-K
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