Equal volumes of monoatomic and diatomic gases at same initial temperature and pressure are mixed. The ratio of specific heats of the mixture (Cp/Cv) will be [AFMC 2002]

(1) 1

(2) 2

(3) 1.67

(4) 1.5

Subtopic:  Cp & Cv |
 52%
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The unit of entropy is -

1. J mol–1

2. JK mol–1

3. J mol–1 K–1

4. J–1 K–1 mol–1

Subtopic:  Spontaneity & Entropy |
 85%
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The entropy changed involved in the conversion of 1 mole of liquid water at 373 K to vapour at the same temperature will be [ΔHvap=2.257kJ/gm] [MP PET 2002]

(1) 0.119 kJ

(2) 0.109 kJ

(3) 0.129 kJ

(4) 0.120 kJ

Subtopic:  Spontaneity & Entropy |
 74%
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When a liquid boils, there is [JIPMER 2002]

(1) An increase in entropy

(2) A decrease in entropy

(3) An increase in heat of vaporization

(4) An increase in free energy

Subtopic:  Spontaneity & Entropy |
 87%
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The work done to contract a gas in a cylinder, is 462 joules. 128 joule energy is evolved in the process. What will be the internal energy change in the process [MP PMT 2003]

(1) + 590 joules

(2) – 334 joules

(3) + 334 joules

(4) – 590 joules

Subtopic:  First Law of Thermodynamics |
 67%
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For a carnot engine, the source is at 500 K and the sink at 300 K. What is efficiency of this engine

(1) 0.2

(2) 0.4

(3) 0.6

(4) 0.3

Subtopic:  Enthalpy & Internal energy |
 75%
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From Kirchhoff's equation which factor affects the heat of reaction [MP PMT 1990]

1. Pressure

2. Temperature

3. Volume

4. Molecularity

Subtopic:  Thermodynamics' Properties and process |
 76%
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The absolute enthalphy of neutralisation of the reaction MgO(s)+2HCl(aq)MgCl2(aq)+H2O(l) will be [CBSE PMT 2005]

(1) Less than –57.33 kJ mol–1

(2) –57.33 kJ mol–1

(3) Greater than –57.33 kJ mol–1

(4) 57.33 kJ mol–1

Subtopic:  Hess's Law |
 58%
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The heat of transition (ΔHt) of graphite into diamond would be, where

C(graphite)+O2(g)CO2(g);  ΔH=xkJ

C(diamond)+O2(g)CO2(g);  ΔH=ykJ [Pb. PET 1985]

(1) (x+y)kJmol1

(2) (xy)kJmol1

(3) (yx)kJmol1

(4) None of these

Subtopic:  Thermochemistry |
 77%
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Given that
\(\small {2C(s) + 2O_2(g) \rightarrow 2CO_2(g); \Delta H = -787 kJ}\\ \small{ H_2(g) + {1 \over 2}O_2(g) \rightarrow H_2O(l) ; \Delta H = -286 kJ}\\ \small { C_2H_2(g) + 2 { 1 \over 2}O_2 (g) \rightarrow 2CO_2 (g) + H_2O (l) ; \Delta H= -1301 kJ}\)

The heat of the formation of acetylene is:
1. –1802 kJ

2. +1802 kJ

3. –800 kJ

4. +228 kJ

Subtopic:  Hess's Law |
 73%
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