Student Solutions Manual for Ball's Physical Chemistry, 2nd
Student Solutions Manual for Ball's Physical Chemistry, 2nd
2nd Edition
ISBN: 9798214169019
Author: David W. Ball
Publisher: Cengage Learning US
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Chapter 17, Problem 17.50E
Interpretation Introduction

(a)

Interpretation:

The value of S for C atoms at 1000K is to be calculated.

Concept introduction:

The measure of the total amount of randomness or disorder of molecules of the system is known as entropy. It is denoted by S. It is an extensive property of the thermodynamic system.

Expert Solution
Check Mark

Answer to Problem 17.50E

The value of S for C atoms at 1000K is 15.766J/(molK).

Explanation of Solution

The given value of temperature is 1000K.

The standard temperature is 298K.

The given pressure is 1atm.

The value of universal gas constant is 8.3145JK1mol1.

The standard entropy of carbon atom is 5.7J/(molK).

The expression to calculate the value of entropy is given below.

S=S°+RlnT2T1

Where,

S° is the standard temperature.

R is the universal gas constant.

T1 is the initial temperature equals to 298K.

T2 is the final temperature.

Substitute the values of S°, R, T1 and T2 for carbons atoms in the above expression.

S=5.7J/(molK)+8.3145JK1mol1×ln1000K298K=5.7J/(molK)+8.3145JK1mol1×1.21066=15.766J/(molK)

The given value S for C atoms at 1000K is 183.2J/(molK) but the calculated value is totally deviated from the given value that is 15.766J/(molK).

Conclusion

The value of S for C atoms at 1000K is 15.766J/(molK).

Interpretation Introduction

(b)

Interpretation:

The value of S for Fe atoms at 3500K is to be calculated.

Concept introduction:

The measure of the total amount of randomness or disorder of molecules of the system is known as entropy. It is denoted by S. It is an extensive property of the thermodynamic system.

Expert Solution
Check Mark

Answer to Problem 17.50E

The value of S for Fe atoms at 3500K is 22.782J/(molK).

Explanation of Solution

The given value of temperature is 3500K.

The standard temperature is 298K.

The given pressure is 1atm.

The value of universal gas constant is 8.3145JK1mol1.

The standard entropy of iron atom is 2.3J/(molK).

The expression to calculate the value of entropy is given below.

S=S°+RlnT2T1

Where,

S° is the standard temperature.

R is the universal gas constant.

T1 is the initial temperature equals to 298K.

T2 is the final temperature.

Substitute the values of S°, R, T1 and T2 for carbons atoms in the above expression.

S=2.3J/(molK)+8.3145JK1mol1×ln3500K298K=2.3J/(molK)+8.3145JK1mol1×2.4634=22.782J/(molK)

The given value S for Fe atoms at 3500K is 239.6J/(molK) but the calculated value is totally deviated from the given value that is 22.782J/(molK).

Conclusion

The value of S for Fe atoms at 3500K is 239.6J/(molK).

Interpretation Introduction

(c)

Interpretation:

The value of S for Hg atoms at 298K is to be calculated. The trend in agreement between calculation and experiment is to be stated.

Concept introduction:

The measure of the total amount of randomness or disorder of molecules of the system is known as entropy. It is denoted by S. It is an extensive property of the thermodynamic system.

Expert Solution
Check Mark

Answer to Problem 17.50E

The value of S for Hg atoms at 298K is 174.97J/(molK).

Explanation of Solution

The given value of temperature is 298K.

The standard temperature is 298K.

The given pressure is 1atm.

The value of universal gas constant is 8.3145JK1mol1.

The standard entropy of mercury atom is 174.97J/(molK).

The expression to calculate the value of entropy is given below.

S=S°+RlnT2T1

Where,

S° is the standard temperature.

R is the universal gas constant.

T1 is the initial temperature equals to 298K.

T2 is the final temperature.

Substitute the values of S°, R, T1 and T2 for carbons atoms in the above expression.

S=174.97J/(molK)+8.3145JK1mol1×ln298K298K=174.97J/(molK)+8.3145JK1mol1×0=174.97J/(molK)

The given value S for Hg atoms at 298K is 174.97J/(molK) which is equal to the given value that is 174.97J/(molK).

According to the calculations, there is some major difference in the carbon and iron atoms entropy values whereas the entropy of mercury is same as given.

Conclusion

The value of S for Hg atoms at 298K is 174.97J/(molK).

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Student Solutions Manual for Ball's Physical Chemistry, 2nd

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