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 Multiple Choice QuestionsMultiple Choice Questions

211.

The value of entropy of solar system is

  • Increasing

  • decreasing

  • constant

  • zero


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212.

Which of the following statements is true?

  • The total entropy of the universe is continuously decreasing

  • The total energy of the universe is continuously decreasing

  • The total energy of the universe remains constant

  • The total entropy of the universe remains constant


C.

The total energy of the universe remains constant

From the first law of thermodynamics, the total energy of the universe remains constant.


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213.

A gas expands from a volume of 1m3 to a volume of 2m3 against an external pressure of 105Nm-2. The work done by the gas will be

  • 102 kJ

  • 102 J

  • 103 J

  • 105 kJ


214.

Given thermochemical equation, 2H2 (g) + O2(g) → 2H2O,ΔH = -571.6 kJ. Heat of decomposition of water is

  • -571.6 kJ

  • +571.6 kJ

  • -1143.2 kJ

  • + 285.8 kJ


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215.

The ratio of heats liberated at 298 K from the combustion of one kg of coke and by burning water gas obtained from kg of coke is (Assume coke to be 100% carbon). (Given : enthalpies of combustion of CO2, CO and H2 as 393.5 kJ, 285 kJ, 285 kJ respectively all at 298 K)

  • 0.79 : 1

  • 0.69 : 1

  • 0.86 : 1

  • 0.96 : 1


216.

The process is spontaneous at the given temperature, if

  • ΔH is +ve and ΔS is -ve

  • ΔH is -ve and ΔS is +ve

  • ΔH is +ve and ΔS is +ve

  • ΔH is +ve and ΔS is equal to zero.


217.

For an ideal binary liquid mixture.

  • Smix = 0; Gmix = 0

  • Hmix = 0; Smix < 0

  • Vmix = 0; Gmix > 0

  • Smix > 0; Gmix < 0


218.

The correct statement regarding entropy is

  • at absolute zero temperature, entropy of a perfectly crystalline solid is zero

  • at absolute zero temperature, the entropy of a perfectly crystalline substance is positive

  • at absolute zero temperature, the entropy of all crystalline substances is zero

  • at 0°C, the entropy of a perfect crystalline solid is zero


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219.

In the reaction, S + 32O2 SO3+ 2xkJ and SO2+ 12O2SO3+ ykJ. Heat of formation of SO2 is

  • x + y

  • x - y

  • 2x-y

  • 2x + y


220.

A reaction has both ΔH and ΔS-ve. The rate of reaction

  • increases with increases in temperature

  • cannot be predicted for change in temperature

  • increases with decreases in temperature

  • remains unaffected by change in temperature


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