\(\begin{aligned} \mathrm{H}_2(g)+\frac{1}{2} \mathrm{O}_2(g) \rightarrow \mathrm{H}_2 \mathrm{O}(g) \quad ; \quad \Delta H=-241.8 \mathrm{~kJ} \\ \mathrm{CO}(g)+\frac{1}{2} \mathrm{O}_2(g) \rightarrow \mathrm{CO}_2(g)\quad ; \quad \Delta H=-283 \mathrm{~kJ} \end{aligned}\)

The heat evolved in the combustion of 112 litres of water gas(mixture of equal volumes of H2 and CO) is:

1. 241.8 kJ

2. 283 kJ

3. 1312 kJ

4. 1586 kJ

Subtopic:  Thermochemistry |
 63%
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In which case of mixing of a strong acid and a base, each of 1(N) concentration, temperature-increase is the highest ?

1. 20 ml acid and 30 ml alkali

2. 10 ml acid and 40 ml alkali

3. 25 ml acid and 25 ml alkali

4. 35 ml acid and 15 ml alkali

Subtopic:  Thermochemistry |
 72%
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The heats of neutralisation of four acids A, B, C and D are -13.7, -9.4, -11.2 and -12.4 kcal respectively when they are neutralised by a common base. The acidic character obeys the order :

1. A>B>C>D

2. A>D>C>B

3. D>C>B>A

4. D>B>C>A

Subtopic:  Hess's Law |
 89%
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The Hf for CO2(g), CO(g) and H2O(g) are -393.5, -110.5 and -241.8 kJ mol-1 respectively. The standard enthalpy change (in kJ) for the reaction,

CO2g+H2gH2Og+ CO(g) is :

1. 524.21

2. 41.2

3. -262.5

4. -41.2

Subtopic:  Hess's Law |
 71%
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The dissociation energy of CH4 and C2H6 are respectively 360 and 620 Kcal/mole. The bond energy of C-C is-

1. 260 Kcal/mole

2. 180 Kcal/mole

3. 130 Kcal/mole

4. 80 Kcal/mole

Subtopic:  Thermochemistry |
 67%
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For an endothermic reaction-

1. ProductsH=ReactantsH

2. ProductsH<ReactantsH

3. ProductsH>ReactantsH

4. ProductsH=0 but ReactantsH is positive.

Subtopic:  Enthalpy & Internal energy |
 72%
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All the natural process in this universe produce

1. A decrease in entropy of the universe

2. An increase in entropy of the universe

3. No change in entropy

4. Sometimes increase or sometimes decrease in entropy

Subtopic:  Spontaneity & Entropy |
 78%
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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 |
 76%
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For \(A \rightarrow B\)\(\Delta H = 4\ kcal\ mol^{-1}\)\(​​\Delta S = 10\ cal\ mol^{-1}\ K^{-1}\), the reaction is spontaneous when the temperature is:
1. 400 K
2. 300 K
3. 500 K
4. None of the above

Subtopic:  Spontaneity & Entropy |
 56%
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44.0 kJ of heat is required to evaporate one mole of water at 298 K. If Hf of H2Ol is -286 kJ mol-1Hf of H2Og is

1. -330 kJ mol-1

2. +242 kJ mol-1

3. -242 kJ mol-1

4. -198 kJ mol-1

Subtopic:  Enthalpy & Internal energy |
 68%
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