Combine the following thermochemical S(rhombic) + O2 (g) → SO2 (g) S (monoclinic) + O2 (g) → SO2 (g) Predict the ArH298 for S (rhombic) → S (monoclinic) O 0.33 kJ equations ArH298 = -296.830 kJ ArH298 = -297.16 kJ

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
Section: Chapter Questions
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Combine the following thermochemical
S(rhombic) + O2 (g) → SO2 (g)
S (monoclinic) + O2 (g) → SO2 (g)
Predict the ArH298 for S (rhombic) → S (monoclinic)
O 0.33 kJ
O 0.55 kJ
O 0.25 kJ
O 1.05 kJ
equations
ArH298 = -296.830 kJ
ArH298 = -297.16 kJ
Transcribed Image Text:Combine the following thermochemical S(rhombic) + O2 (g) → SO2 (g) S (monoclinic) + O2 (g) → SO2 (g) Predict the ArH298 for S (rhombic) → S (monoclinic) O 0.33 kJ O 0.55 kJ O 0.25 kJ O 1.05 kJ equations ArH298 = -296.830 kJ ArH298 = -297.16 kJ
Take nitrogen to be a van der Waals gas with a = 1.352 dm atm mol-2 and b = 0.0387 dm³ mol-1, and calculate AHm
when the pressure on the gas is decreased from 500 atm to 1.00 atm at 300 K. For a van der Waals gas,
μ = {(2a/RT) - b}/Cp,m. Assume Cp,m = 7/2 R.
-3.59 kJ mol-1
-5.00 kJ mol-1
5.00 kJ mol-1
3.59 kJ mol-1
Transcribed Image Text:Take nitrogen to be a van der Waals gas with a = 1.352 dm atm mol-2 and b = 0.0387 dm³ mol-1, and calculate AHm when the pressure on the gas is decreased from 500 atm to 1.00 atm at 300 K. For a van der Waals gas, μ = {(2a/RT) - b}/Cp,m. Assume Cp,m = 7/2 R. -3.59 kJ mol-1 -5.00 kJ mol-1 5.00 kJ mol-1 3.59 kJ mol-1
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