Assume each reaction is carried out in an open container. For which of the following reactions will H be equal toU?

1. PCl3(g) PCl3(g) +Cl2(g) 

2. 2CO(g) +O2(g) 2CO2(g) 

3. H2(g) +Br2(g) 2HBr(g)

4. C(s) +2H2O(g) 2H2(g) +CO2(g)

Subtopic:  Enthalpy & Internal energy |
 90%
Level 1: 80%+
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Combustion of glucose takes place according to the equation,

C6H12O6+6O26CO2+6H2OH=-72Kcal

Energy required for the production of 1.6 g of glucose is -

(Molecular mass of glucose = 180 g)

1. 0.064 kcal

2. 0.64 kcal

3. 6.4 kcal

4. 64 kcal

Subtopic:  Enthalpy & Internal energy |
 82%
Level 1: 80%+
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For the following given equations and H° values, determine the enthalpy of reaction at 298 K for the reaction:

C2H4(g) + 6F2(g)  2CF4(g) + 4HF(g)

H2(g) + F2(g)  2HF(g)       H1°= -537 kJ

C(s) + 2F2(g) CF4(g)         H2°=-680 kJ

2C(s) + 2H2(g) C2H4(g)    H3°= 52 kJ

1. –1165 kJ

2. –2486 kJ

3. +1165 kJ

4. +2486 kJ

Subtopic:  Enthalpy & Internal energy |
 83%
Level 1: 80%+
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The bond energies of CC, C-H, H-H, and C=C are 198, 98, 103, and 145 kcal respectively.

The enthalpy change of the reaction HCCH+H2C2H4 would be:

1. 48 kcal

2. 96 kcal

3. -40 kcal

4. -152 kcal

Subtopic:  Enthalpy & Internal energy |
 78%
Level 2: 60%+
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Which plot represents an exothermic reaction?

1. 2.
3. 4.
Subtopic:  Enthalpy & Internal energy |
 83%
Level 1: 80%+
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What is the nature of the reaction depicted in the given diagram for A→C?

1. Exothermic 2. Endothermic
3. Reaction at equilibrium 4. None of these
Subtopic:  Enthalpy & Internal energy |
 83%
Level 1: 80%+
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As an isolated box, equally partitioned, contains two ideal gasses A and B as shown:

 

When the partition is removed, the gases mix. The changes in enthalpy (H) and entropy (S) in the process, respectively, are

1. Zero, positive

2. Zero, negative

3. Positive, zero

4. Negative, zero

Subtopic:  Enthalpy & Internal energy |
 80%
Level 1: 80%+
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Consider the following diagram for a reaction AC


      

The nature of the reaction is-

1. Exothermic

2. Endothermic

3. Reaction at equilibrium

4. None of the above

Subtopic:  Enthalpy & Internal energy |
 84%
Level 1: 80%+
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12N2(g)+12O2(g)NO(g);
rH°=90kJmol-1
NO(g)+12O2(g)NO2(g);
rH°=-74kJmol-1

The thermodynamic stability of NO(g) based on the above data is:

1. Less than NO2(g) 

2. More than NO2(g)

3. Equal to NO2(g)

4. Insufficient data

Subtopic:  Enthalpy & Internal energy |
 71%
Level 2: 60%+
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For the reaction, 2N2g+O2g2N2O(g), at 298K H is 164 kJ mol-1. The E of the reaction is-
1. \(166.5 \mathrm{~kJ} \mathrm{~mol}^{-1} \)
2. \(141.5 \mathrm{~kJ} \mathrm{~mol}^{-1} \)
3. \(104.0 \mathrm{~kJ} \mathrm{~mol}^{-1} \)
4. \(-169 \mathrm{~kJ} \mathrm{~mol}^{-1}\)

Subtopic:  Enthalpy & Internal energy |
 77%
Level 2: 60%+
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