Consider a reaction $2H_2O_{(l)} \to 2H_{2(g)} + O_{2(g)}$. Calculate the work done at $25\, ^oC$ for the decomposition of $36\, mL$ of water. (in $, KCal$)

  • A
    $1.788$
  • B
    $2.576$
  • C
    $-1.788$
  • D
    $-2.576$

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Therefore:

If water vapour is assumed to be a perfect gas,the molar enthalpy change for the vaporisation of $1 \ mol$ of water at $1 \ bar$ and $100^{\circ} C$ is $41 \ kJ \ mol^{-1}$. Calculate the internal energy change when $1 \ mol$ of water is vaporised at $1 \ bar$ pressure and $100^{\circ} C$.

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If $1 \ mole$ of aqueous nitric acid is formed,calculate the total heat released based on the following reactions:
Reaction$\Delta H \ (kJ)$
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