Chemistry: Atoms First
Chemistry: Atoms First
3rd Edition
ISBN: 9781259638138
Author: Julia Burdge, Jason Overby Professor
Publisher: McGraw-Hill Education
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Chapter 14.5, Problem 7PPB

(a)

Interpretation Introduction

Interpretation:

The entropy changes associated with the phase transitions of sodium has to be found.

Concept Introduction:

Entropy is a thermodynamic quantity, which is the measure of randomness in a system.  The term entropy is useful in explaining the spontaneity of a process.  For all spontaneous process in an isolated system there will be an increase in entropy. Entropy is represented by the letter ‘S’.  It is a state function.  The change in entropy gives information about the magnitude and direction of a process.  The entropy changes associated with a phase transition reaction can be found by the following equation.

ΔS =ΔΗΤ

Where,

ΔΗ is the change in enthalpy of the system

T is the absolute value of the temperature

ΔS is the change in entropy in the system

(a)

Expert Solution
Check Mark

Answer to Problem 7PPB

Solution:

The entropy changes associated with the solid-liquid transitions (ΔS°fus) of sodium is found to be 6.51JK-1mol-1

The enthalpy changes associated with the solid-liquid transitions (ΔH°fus) of sodium is found to be 2.41kJmol-1

The melting point of sodium is found to be 97.61°C

Explanation of Solution

Given,

S°(Na(s))=51.05JK-1mol-1S°(Na(l))=57.56 JK-1mol-1

ΔΗf°(Na(s) )=0ΔΗf°(Na(l) )=2.41JK-1mol-1

To calculate ΔS°fus

Na(s)Na(l)

ΔS°reaction is the difference in entropy of the reactants and products.  This is calculated by plugging in the values of standard entropy of the products and reactants the given equation.

ΔS°rxn = S°Products- S°reactants

=S°(Na(l))- S°(Na(s))=(57.56JK-1mol-1)-(51.05 JK-1mol-1)=6.51JK-1mol-1=0.0065kJK-1mol-1

To calculate ΔH°fus

Na(s)Na(l)

ΔH°rxn is the difference in enthalpy of the reactants and products.  This is calculated by plugging in the values of standard enthalpy of the products and reactants the given equation.

ΔH°rxn = ΔH°produdcts- ΔH°reacttants

   = ΔΗf°Na(l) - ΔΗf°Na(s)= (2.41kJmol-1)-(0)= 2.41kJmol-1

To calculate melting point of Na

The melting point of Br2 can be calculated as given below.

Τboiling =ΔΗ°fusΔSfus

2.41kJmol-10.0065kJK-1mol-1=370.76K

The temperature in Kelvin is converted into degree Celsius by subtracting the value of 273.15 from  it.

The meltingpoint of Na=330.71K=370.761273.15=97.61°C

Conclusion

The entropy changes associated with the phase transitions of sodium was found.

(b)

Interpretation Introduction

Interpretation:

The entropy changes associated with the phase transitions of sodium has to be found.

Concept Introduction:

Entropy is a thermodynamic quantity, which is the measure of randomness in a system.  The term entropy is useful in explaining the spontaneity of a process.  For all spontaneous process in an isolated system there will be an increase in entropy. Entropy is represented by the letter ‘S’.  It is a state function.  The change in entropy gives information about the magnitude and direction of a process.  The entropy changes associated with a phase transition reaction can be found by the following equation.

ΔS =ΔΗΤ

Where,

ΔΗ is the change in enthalpy of the system

T is the absolute value of the temperature

ΔS is the change in entropy in the system

(b)

Expert Solution
Check Mark

Answer to Problem 7PPB

The entropy changes associated with the liquid-vapour transitions (ΔS°vap) of sodium is found to be 96.1JK-1mol-1

The enthalpy changes associated with the liquid-vapour transitions (ΔH°vap) of sodium is found to be 105.3kJmol-1

The boiling point of sodium is found to be 822.7°C

Explanation of Solution

Given,

S°(Na(g))=153.7JK-1mol-1S°(Na(l))=57.56 JK-1mol-1

ΔΗf°(Na(g) )=107.7JK-1mol-1ΔΗf°(Na(l) )=2.41JK-1mol-1

To calculate ΔS°vap

Na(l)Na(g)

ΔS°reaction is the difference in entropy of the reactants and products.  This is calculated by plugging in the values of standard entropy of the products and reactants the given equation.

ΔS°rxn = S°Products- S°reactants

=S°(Na(g)- S°(Na(l))=(153.7JK-1mol-1)-(57.56 JK-1mol-1)=96.14JK-1mol-1=0.0961kJK-1mol-1

To calculate ΔH°vap

Na(l)Na(g)

ΔH°rxn is the difference in enthalpy of the reactants and products.  This is calculated by plugging in the values of standard enthalpy of the products and reactants the given equation.

ΔH°rxn = ΔH°produdcts- ΔH°reacttants

   = ΔΗf°Na(g) - ΔΗf°Na(l)= (107.7kJmol-1)-(2.41kJmol-1)= 105.3kJmol-1

To calculate boiling point of Na

The boiling point of Br2 can be calculated as given below,

Τboiling =ΔΗ°vapΔS°vap

105.3kJmol-10.0961kJK-1mol-1=1095.7K

The temperature in Kelvin is converted into degree Celsius by subtracting the value of 273.15 from it.

The boiling point of Na=1095.7K=370.761273.15=822.7°C

Conclusion

The entropy changes associated with the phase transitions of sodium was found.

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Chapter 14 Solutions

Chemistry: Atoms First

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