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This section includes 18 Mcqs, each offering curated multiple-choice questions to sharpen your Thermodynamics knowledge and support exam preparation. Choose a topic below to get started.
1. |
For mechanical stability, |
A. | Cv>0 |
B. | (∂p/∂V)<0, at constant entropy |
C. | (∂p/∂V)<0, at constant temperature |
D. | all of the mentioned |
Answer» D. all of the mentioned | |
2. |
For thermal stability, |
A. | Cv>0 |
B. | (∂p/∂V)<0, at constant entropy |
C. | both of the mentioned |
D. | none of the mentioned |
Answer» B. (∂p/∂V)<0, at constant entropy | |
3. |
Which of the following is true for a system at equilibrium? |
A. | S=Smax and ∂S=0 |
B. | F=Fmin and ∂F=0 |
C. | G=Gmin and ∂G=0 |
D. | all of the mentioned |
Answer» E. | |
4. |
If a system is stable to small but not large disturbances, it is said to be in metastable equilibrium. |
A. | true |
B. | false |
Answer» B. false | |
5. |
WHICH_OF_THE_FOLLOWING_IS_TRUE_FOR_A_SYSTEM_AT_EQUILIBRIUM??$ |
A. | S=Smax and ∂S=0 |
B. | F=Fmin and ∂F=0 |
C. | G=Gmin and ∂G=0 |
D. | all of the mentioned |
Answer» E. | |
6. |
For mechanical stability,$ |
A. | Cv>0 |
B. | (∂p/∂V)<0, at constant entropy |
C. | (∂p/∂V)<0, at constant temperature |
D. | all of the mentioned |
Answer» D. all of the mentioned | |
7. |
For thermal stability,$ |
A. | Cv>0 |
B. | (∂p/∂V)<0, at constant entropy |
C. | both of the mentioned |
D. | none of the mentioned |
Answer» B. (‚Äö√Ñ√∂‚àö‚Ć‚àö√°p/‚Äö√Ñ√∂‚àö‚Ć‚àö√°V)<0, at constant entropy | |
8. |
For magnetic cooling, ____ salt is used. |
A. | diamagnetic |
B. | paramagnetic |
C. | both of the mentioned |
D. | none of the mentioned |
Answer» C. both of the mentioned | |
9. |
The third law is a fundamental law of nature and cannot be proved. |
A. | true |
B. | false |
Answer» B. false | |
10. |
For total stability, |
A. | Cv>0 |
B. | (∂p/∂V)<0, at constant entropy |
C. | (∂p/∂V)<0, at constant temperature |
D. | all of the mentioned |
Answer» E. | |
11. |
If a system is stable to small but not large disturbances, it is said to be in metastable equilibrium? |
A. | true |
B. | false |
Answer» B. false | |
12. |
For a system to be in a state of neutral equilibrium, |
A. | dS=dG=dF=0 |
B. | dS=0, dG=dF<0 |
C. | dS=0, dG=dF>0 |
D. | none of the mentioned |
Answer» B. dS=0, dG=dF<0 | |
13. |
What is the criterion of stability? |
A. | dG<0, dF<0, dS<0 |
B. | dG<0, dF<0, dS>0 |
C. | dG>0, dF>0, dS>0 |
D. | dG>0, dF>0, dS<0 |
Answer» E. | |
14. |
A system is said to be in a state of unstable equilibrium when |
A. | dG<0, dF<0, dS<0 |
B. | dG<0, dF<0, dS>0 |
C. | dG>0, dF>0, dS>0 |
D. | dG>0, dF>0, dS<0 |
Answer» C. dG>0, dF>0, dS>0 | |
15. |
If the constraints are constant p and T, then the Gibbs function of a system decreases. |
A. | true |
B. | false |
Answer» B. false | |
16. |
Which constraints must be imposed on system to make the Helmholtz function decrease? |
A. | constant T and p |
B. | constant U and T |
C. | constant U and V |
D. | constant T and V |
Answer» E. | |
17. |
The entropy of an isolated system always ____ and reaches ____ when equilibrium is reached. |
A. | remains constant, maximum |
B. | decreases, minimum |
C. | increases, maximum |
D. | none of the mentioned |
Answer» D. none of the mentioned | |
18. |
For an isolated system, |
A. | dS<0 |
B. | dS>0 |
C. | dS=0 |
D. | none of the mentioned |
Answer» C. dS=0 | |