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based on the bond energies for the reaction below, what is the enthalpy…

Question

based on the bond energies for the reaction below, what is the enthalpy of the reaction, in kj?

h₂(g) + n₂(g) + 2c(g) → 2hcn(g)

Explanation:

Step1: Calculate the energy required to break bonds

  • Break \(H - H\) bond: \(432\space kJ/mol\)
  • Break \(N\equiv N\) bond: \(942\space kJ/mol\)
  • There are no bonds to break for \(2C(g)\) (atomic carbon).
  • Total energy to break bonds: \(432 + 942=1374\space kJ/mol\)

Step2: Calculate the energy released when forming bonds

  • Each \(HCN\) has \(H - C\equiv N\) bonds.
  • For \(2HCN\):
  • \(2\) \(H - C\) bonds: \(2\times411 = 822\space kJ/mol\)
  • \(2\) \(C\equiv N\) bonds: \(2\times887=1774\space kJ/mol\)
  • Total energy released: \(822 + 1774 = 2596\space kJ/mol\)

Step3: Calculate the enthalpy of the reaction

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Answer:

\(-1222\space kJ\)