$A$ process will be spontaneous at all temperatures if

  • A
    $\Delta H < 0$ and $\Delta S < 0$
  • B
    $\Delta H < 0$ and $\Delta S > 0$
  • C
    $\Delta H > 0$ and $\Delta S > 0$
  • D
    $\Delta H > 0$ and $\Delta S < 0$

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For a chemical reaction $A^{+} + B \rightleftharpoons C^{+} + D$ $(\Delta_{r} H^{0} = 80 \, kJ \, mol^{-1})$,the entropy change $\Delta_{r} S^{0}$ depends on the temperature $T$ (in $K$) as $\Delta_{r} S^{0} = 2T \, J \, K^{-1} \, mol^{-1}$.
Minimum temperature at which it will become spontaneous is ..... $K$. (Integer)

At what temperature $(T \ K)$ will the reaction be in equilibrium (in $K$)? $Ag_2O_{(s)} \rightarrow 2Ag_{(s)} + \frac{1}{2} O_{2(g)}$,given $\Delta H = 30.5 \ kJ \ mol^{-1}$ and $\Delta S = 0.066 \ kJ \ K^{-1} \ mol^{-1}$.

For a reaction with $\Delta H = +ve$ and $\Delta S = +ve$,which of the following statements is correct?

$\Delta G$ is net energy available to do useful work and is thus a measure of "free energy". Show mathematically that $\Delta G$ is a measure of free energy. Find the unit of $\Delta G$. If a reaction has positive enthalpy change and positive entropy change,under what condition will the reaction be spontaneous?

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Which of the following reactions is expected to never be spontaneous?

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