The standard entropy change, \Delta SoT, of the chemical reaction: CH4(g) + 202(g) - CO2(g) + 2H2O(l) occurring at temperature T, can be calculated by: (a) \Delta SoT = = SOT,CO2 + 2 SOT,H2O - SOT,CH4 + 2 SOT,O2 - SOT,CO2 - 2 SOT,H2O (b) \Delta SoT SOT, CH4 - 2 SOT,O2 (c) \Delta SoT = SOT, CH4 + 2 SOT,O2 - SOT,CO2 (d) \Delta SoT SOT,CO2 - SOT, CH4 - 2 SOT,O2 (e) \Delta SoT = SOT,CO2 /{SOT, CH4 x ( SOT,O2)2}. =
The standard entropy change, \Delta SoT, of the chemical reaction: CH4(g) + 202(g) - CO2(g) + 2H2O(l) occurring at temperature T, can be calculated by: (a) \Delta SoT = = SOT,CO2 + 2 SOT,H2O - SOT,CH4 + 2 SOT,O2 - SOT,CO2 - 2 SOT,H2O (b) \Delta SoT SOT, CH4 - 2 SOT,O2 (c) \Delta SoT = SOT, CH4 + 2 SOT,O2 - SOT,CO2 (d) \Delta SoT SOT,CO2 - SOT, CH4 - 2 SOT,O2 (e) \Delta SoT = SOT,CO2 /{SOT, CH4 x ( SOT,O2)2}. =
Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter17: Chemcial Thermodynamics
Section: Chapter Questions
Problem 17.104QE: What is the sign of the standard Gibbs free-energy change at low temperatures and at high...
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Question
![The standard entropy change, \Delta SoT, of the chemical reaction: CH4(g) + 202(g) -
CO2(g) + 2H2O(l) occurring at temperature T, can be calculated by: (a) \Delta SoT =
= SOT,CO2 + 2 SOT,H2O -
SOT,CH4 + 2 SOT,O2 - SOT,CO2 - 2 SOT,H2O (b) \Delta SoT
SOT, CH4 - 2 SOT,O2 (c) \Delta SoT
=
SOT, CH4 + 2 SOT,O2 - SOT,CO2 (d) \Delta SoT
SOT,CO2 - SOT, CH4 - 2 SOT,O2 (e) \Delta SoT = SOT,CO2 /{SOT, CH4 x ( SOT,O2)2}.
=](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0311bc37-8404-4287-8a3d-d6673137b67c%2F40a9b4ab-2729-4d07-8ce0-6740d263b3af%2Fr7lqb5_processed.png&w=3840&q=75)
Transcribed Image Text:The standard entropy change, \Delta SoT, of the chemical reaction: CH4(g) + 202(g) -
CO2(g) + 2H2O(l) occurring at temperature T, can be calculated by: (a) \Delta SoT =
= SOT,CO2 + 2 SOT,H2O -
SOT,CH4 + 2 SOT,O2 - SOT,CO2 - 2 SOT,H2O (b) \Delta SoT
SOT, CH4 - 2 SOT,O2 (c) \Delta SoT
=
SOT, CH4 + 2 SOT,O2 - SOT,CO2 (d) \Delta SoT
SOT,CO2 - SOT, CH4 - 2 SOT,O2 (e) \Delta SoT = SOT,CO2 /{SOT, CH4 x ( SOT,O2)2}.
=
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