$CuSO_{4(s)} + 5 H_2O_{(\ell)} \rightarrow CuSO_4 \cdot 5 H_2O_{(s)} ; \Delta H = -x \ kJ$. The value of $\Delta H$ represents:

  • A
    Enthalpy of solution of copper $(II)$ sulphate
  • B
    Enthalpy of hydration of copper $(II)$ sulphate
  • C
    Enthalpy of hydrolysis of copper $(II)$ sulphate
  • D
    Lattice energy of copper $(II)$ sulphate

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Similar Questions

Which of the following reactions is not exothermic?

Calculate the enthalpy change of the reaction for $H_2(g) + Cl_2(g) \rightarrow 2HCl(g)$, given the bond energies (in $\text{kJ mol}^{-1}$): $H-H = 436$, $Cl-Cl = 242$, $H-Cl = 431$.

According to Hess's Law,the enthalpy change of a reaction depends on which of the following?

Determine the enthalpy of formation for $H_2O_2(\ell)$,using the listed enthalpies of reaction:
$N_2H_{4(\ell)} + 2H_2O_{2(\ell)} \to N_{2(g)} + 4H_2O_{(\ell)}; \Delta _r H_1^o = -818 \, kJ/mol$
$N_2H_{4(\ell)} + O_{2(g)} \to N_{2(g)} + 2H_2O_{(\ell)}; \Delta _r H_2^o = -622 \, kJ/mol$
$H_{2(g)} + 1/2O_{2(g)} \to H_2O_{(\ell)}; \Delta _r H_3^o = -285 \, kJ/mol$
Calculate the value in $kJ/mol$.

At $1 \ bar$ and $298 \ K$,the standard molar enthalpy of formation of which substance is zero?

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