Which thermochemical reaction is correct?

  • A
    $C + O_2 \rightarrow CO_2$; $\Delta H = -94 \, kcal$
  • B
    $C + O_2 \rightarrow CO_2$; $\Delta H = +94.0 \, kcal$
  • C
    $C_{(s)} + O_{2(g)} \rightarrow CO_{2(g)}$; $\Delta H = -94 \, kcal$
  • D
    $C_{(s)} + O_{2(g)} \rightarrow CO_{2(g)}$; $\Delta H = +94 \, kcal$

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Calculate the standard enthalpy change of the reaction: $C_2H_{2(g)} + \frac{5}{2}O_{2(g)} \rightarrow 2CO_{2(g)} + H_2O_{(\ell)}$ given the following standard enthalpies of formation:
$\Delta_fH^{\circ}(CO_2) = -393 \ kJ \ mol^{-1}$
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The heat evolved in the combustion of benzene is given by the equation $C_6H_{6(l)} + 7.5 O_{2(g)} \to 3H_2O_{(l)} + 6CO_{2(g)}$,$\Delta H = -781.0 \ kcal \ mol^{-1}$. Which of the following quantities of heat energy will be evolved when $39 \ g$ of benzene is burnt in an open container?

Hess's law is applicable for the determination of heat of

Consider the reactions:
$C_{(s)} + 2H_{2(g)} \to CH_{4(g)}, \Delta H = -x \ kcal$
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$CH_{4(g)} \to CH_{3(g)} + H_{(g)}, \Delta H = +y \ kcal$
The bond energy of $C-H$ bond is:

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