Calculate
Interpretation:
The standard entropy changes of surroundings for the given reactions and spontaneity of the given reactions at
Concept introduction:
Entropy is the direct measurement of randomness or disorder. Entropy is an extensive property and a state function.
The enthalpy of the system is defined as the addition of the internal energy and the product of the pressure and volume. Enthalpy is a state function and an extensive property.
Change in entropy of the system is defined as the difference between the entropy of initial and final state.
The entropy of a system and the entropy of surroundings constitute entropy of the universe.
Enthalpy change of the reaction is the difference between the enthalpies of the reactants and products.
Answer to Problem 21QP
Solution:
a)
b)
c)
Explanation of Solution
a)
The entropy change of the universe for this reaction is calculated using the following expression:
Here,
The enthalpy change of the system,
is calculated by using the following expression:
The standard enthalpy change of the reaction,
Here,
From appendix 2, the standard enthalpy change of the formation for the substance is as follows:
Substitute the standard enthalpy change of the formation value of the substance in the above expression,
The standard entropy change for this reaction is calculated using the following expression:
Substitute the value of
Therefore, the entropy change of the surrounding is
Calculate the standard entropy change of the given reaction.
The standard entropy change for this reaction is calculated by using the following expression:
Here,
From appendix 2, the standard entropy value of the substance is as follows:
Substitute the standard entropy value of the substance in the above expression,
Therefore, the standard entropy change for this reaction is
Calculate the entropy change of the universe.
The entropy change of the universe is calculated by using the following expression:
Substitute the value of
Therefore, entropy change of the universe for this reaction is
For a spontaneous reaction, the value of
The entropy change of the universe for this reaction is positive.
Therefore, the reaction is spontaneous.
b)
The entropy change of the universe for this reaction is calculated using the following expression:
Here,
The enthalpy change of the system,
The standard enthalpy change of the reaction
is calculated using the following expression:
Here,
From appendix 2, the standard enthalpy change of the formation of the substance is as follows:
Substitute the standard enthalpy change of the formation value of the substance in the above expression,
The standard entropy change for this reaction is calculated using the following expression:
Substitute the value of
and
Therefore, the entropy change of the surrounding is
Calculate the standard entropy change of the given reaction.
The standard entropy change for this reaction is calculated using the following expression:
Here,
From appendix 2, the standard entropy value of the substance is as follows:
Substitute the standard entropy value of the substance in the above expression,
Therefore, the standard entropy change for this reaction is
The entropy change of the universe is calculated using the following expression:
Substitute the value of
Therefore, entropy change of the universe for this reaction is
For a spontaneous reaction, the value of
The entropy change of the universe for this reaction is positive.
Therefore, the reaction is spontaneous.
c)
The entropy change of the universe for this reaction is calculated using the following expression:
Here,
The enthalpy change of the system,
The standard enthalpy change of the reaction
is calculated using the following expression:
Here,
From appendix 2, the standard enthalpy change of the formation for the substance are as follows:
Substitute the standard enthalpy change of the formation value of the substance in the above expression,
The standard entropy change for this reaction is calculated using the following expression:
Substitute the value of
and
Therefore, the entropy change of the system is
Calculate the standard entropy change of the given reaction.
The standard entropy change for this reaction is calculated using the following expression:
Here,
From appendix 2, the standard entropy value of the substance is as follows:
Substitute the standard entropy value of the substance in the above expression,
Therefore, the standard entropy change for this reaction is
Calculate the entropy change of the universe.
The entropy change of the universe is calculated using the following expression:
Substitute the value of
Therefore, entropy change of the universe for this reaction is
For a spontaneous reaction, the value of
Therefore, the reaction is spontaneous.
Want to see more full solutions like this?
Chapter 18 Solutions
Chemistry
- Try: Draw possible resonance contributing structures for the following organic species: CH3CH2NO2 [CH2CHCH2] [CH2CHCHO] [CH2CHCH2] [CH2CHNH2]arrow_forwardComplete the following synthesis. (d). H+ ง сarrow_forwardCan the target compound be efficiently synthesized in good yield from the substituted benzene of the starting material? If yes, draw the synthesis. Include all steps and all reactants.arrow_forward
- This is a synthesis question. Why is this method wrong or worse than the "correct" method? You could do it thiss way, couldn't you?arrow_forwardTry: Draw the best Lewis structure showing all non-bonding electrons and all formal charges if any: (CH3)3CCNO NCO- HN3 [CH3OH2]*arrow_forwardWhat are the major products of the following reaction? Draw all the major products. If there are no major products, then there is no reaction that will take place. Use wedge and dash bonds when necessary.arrow_forward
- IX) By writing the appropriate electron configurations and orbital box diagrams briefly EXPLAIN in your own words each one of the following questions: a) The bond length of the Br2 molecule is 2.28 Å, while the bond length of the compound KBr is 3.34 Å. The radius of K✶ is 1.52 Å. Determine the atomic radius in Å of the bromine atom and of the bromide ion. Br = Br b) Explain why there is a large difference in the atomic sizes or radius of the two (Br and Br). Tarrow_forwardWhen 15.00 mL of 3.00 M NaOH was mixed in a calorimeter with 12.80 mL of 3.00 M HCl, both initially at room temperature (22.00 C), the temperature increased to 29.30 C. The resultant salt solution had a mass of 27.80 g and a specific heat capacity of 3.74 J/Kg. What is heat capacity of the calorimeter (in J/C)? Note: The molar enthalpy of neutralization per mole of HCl is -55.84 kJ/mol.arrow_forwardWhen 15.00 mL of 3.00 M NaOH was mixed in a calorimeter with 12.80 mL of 3.00 M HCl, both initially at room temperature (22.00 C), the temperature increased to 29.30 C. The resultant salt solution had a mass of 27.80 g and a specific heat capacity of 3.74 J/Kg. What is heat capacity of the calorimeter (in J/C)? Note: The molar enthalpy of neutralization per mole of HCl is -55.84 kJ/mol. Which experimental number must be initialled by the Lab TA for the first run of Part 1 of the experiment? a) the heat capacity of the calorimeter b) Mass of sample c) Ti d) The molarity of the HCl e) Tfarrow_forward
- General Chemistry - Standalone book (MindTap Cour...ChemistryISBN:9781305580343Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; DarrellPublisher:Cengage LearningPrinciples of Modern ChemistryChemistryISBN:9781305079113Author:David W. Oxtoby, H. Pat Gillis, Laurie J. ButlerPublisher:Cengage LearningChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage Learning
- Chemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistry by OpenStax (2015-05-04)ChemistryISBN:9781938168390Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark BlaserPublisher:OpenStaxChemistry for Engineering StudentsChemistryISBN:9781337398909Author:Lawrence S. Brown, Tom HolmePublisher:Cengage Learning