For a dimerization reaction,$2 A_{(g)} \rightarrow A_{2(g)}$ at $298 \ K$,$\Delta U^{\ominus} = -20 \ kJ \ mol^{-1}$,$\Delta S^{\ominus} = -30 \ J \ K^{-1} \ mol^{-1}$,then the $\Delta G^{\ominus}$ will be........ $J$

  • A
    $13536.6$
  • B
    $-13537.6$
  • C
    $-13535.5$
  • D
    $13530.2$

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The $C_p$ of an ideal gas is $10.314 \ J \ mol^{-1} \ K^{-1}$. One mole of this gas is expanded against a constant pressure of $p \ atm$. The change in temperature during expansion is $1.0 \ K$. The values of $q$ (in $J$) and $\Delta H$ (in $J \ mol^{-1}$) are respectively

When $1.0 \ g$ of solid oxalic acid $(H_2C_2O_4)$ is burned in a bomb calorimeter whose heat capacity is $8.75 \ kJ/K$,the temperature increases by $0.312 \ K$. The enthalpy of combustion of oxalic acid at $27 \ ^oC$ is

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If $92 \ g$ of $Na$ reacts with water in an open vessel at $300 \ K$,what is the value of work done (in $J$)? $[$Assume ideal nature of the gaseous product$]$

$X \, g$ of ice at $0^{\circ} C$ is added to $340 \, g$ of water at $20^{\circ} C$. The final temperature of the resultant mixture is $5^{\circ} C$. The value of $X$ (in $g$) is closest to:
[Heat of fusion of ice $= 333 \, J / g$; specific heat of water $= 4.184 \, J / g \cdot K$]

Match List-$I$ with List-$II$.
List-$I$ $(\text{Partial Derivatives})$List-$II$ $(\text{Thermodynamic Quantity})$
$(A). \left(\frac{\partial G}{\partial T}\right)_{P}$$(I). C_P$
$(B). \left(\frac{\partial H}{\partial T}\right)_{P}$$(II). -S$
$(C). \left(\frac{\partial G}{\partial P}\right)_{T}$$(III). C_V$
$(D). \left(\frac{\partial U}{\partial T}\right)_{V}$$(IV). V$
Choose the correct answer from the options given below:

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