For which process will H° and G° be expected to be most similar.

(1) 2Al(s) + Al2O3(s) → 2Fe(s) + Al2O3(s)

(2) 2Na(s) + 2H2O(l) → 2NaOH(aq) + H2(g)

(3) 2NO2(g) → N2O4(g)

(4) 2H2(g) + O2(g) → 2H2O(g)

Subtopic:  Spontaneity & Entropy |
 75%
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A copper block of mass `m' at temperature 'T1' is kept in the open atmosphere at temperature `T2' where T2 > T1 . The variation of entropy of the copperblock with time is best illustrated by
 

1. 2.
3. 4.

1. 

2. 

3. 

4. 

Subtopic:  Spontaneity & Entropy |
 52%
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The heat produced in calories by the combustion of one gram of carbon is called

1. Heat of combustion of carbon

2. Heat of formation of carbon

3. Calorific value of carbon

4. Heat of production of carbon

Subtopic:  Thermochemistry |
 65%
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Which of the following best describes the behavior of an ideal gas during isothermal expansion?
(ΔE & ΔH represent the change in internal energy and enthalpy respectively)

1. ΔE and ΔH increases

2. ΔE increases but ΔH decreases

3. ΔE decreases but ΔH increases

4. ΔE = 0 and ΔH = 0

Subtopic:  2nd & 3rd Law of Thermodynamics |
 74%
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If a refrigerator's door is opened, then we get

(1) Room heated

(2) Room cooled

(3) More amount of heat is passed out

(4) No effect on room

Subtopic:  Enthalpy & Internal energy |
 61%
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Point out the wrong statement in relation to enthalpy

1. It is a state function

2. It is an intensive property

3. It is independent of the path followed for the change

4. Its value depends upon the amount of substance in the system

Subtopic:  Classification of System, Extensive & Intensive Properties |
 71%
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Which of the following is zero for an isochoric process

1. dP

2. dV

3. dT

4. dE

Subtopic:  Thermodynamics' Properties and process |
 90%
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Mark the correct statement 

1. For a chemical reaction to be feasible, ΔG should be zero

2. Entropy is a measure of order in a system

3. For a chemical reaction to be feasible, ΔG should be positive

4. The total energy of an isolated system is constant

Subtopic:  Classification of System, Extensive & Intensive Properties |
 73%
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Internal energy is an example of [Pb. PMT 2000]

(1) Path function

(2) State function

(3) Both (1) and (2)

(4) None of these

Subtopic:  Classification of System, Extensive & Intensive Properties |
 86%
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The intensive property among these quantities is

(1) Enthalpy

(2) Mass/volume

(3) Mass

(4) Volume

Subtopic:  Classification of System, Extensive & Intensive Properties |
 79%
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