Consider a hypothetical ionic compound AB (comprised of A* and Bions). Given the following enthalpy data and using a Born-Haber cycle calculation, predict AHlattice in kJ mol-¹. A(s) + B(s) - AB(s) AH = -397 kJ mol-¹ A(s) A(g) AH = 103 kJ mol-¹ B)B(g) AH = 91 kJ mol-¹ First ionization energy of A(g) = 464 kJ mol-¹ Electron affinity enthalpy of Bg) (exothermic) = -378 kJ mol-¹ Answer:

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Chapter9: Energy And Chemistry
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Problem 9.53PAE: 9.53 Using these reactions, find the standard enthalpy change for the formation of 1 mol of PhO(s)...
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Consider a hypothetical ionic compound AB (comprised of A* and Bions).
Given the following enthalpy data and using a Born-Haber cycle calculation, predict AHlattice in kJ mol-¹.
A(s) + B(s) - AB(s) AH = -397 kJ mol-¹
A(s) A(g) AH = 103 kJ mol-¹
B)B(g) AH = 91 kJ mol-¹
First ionization energy of A(g) = 464 kJ mol-¹
Electron affinity enthalpy of Bg) (exothermic) = -378 kJ mol-¹
Answer:
Transcribed Image Text:Consider a hypothetical ionic compound AB (comprised of A* and Bions). Given the following enthalpy data and using a Born-Haber cycle calculation, predict AHlattice in kJ mol-¹. A(s) + B(s) - AB(s) AH = -397 kJ mol-¹ A(s) A(g) AH = 103 kJ mol-¹ B)B(g) AH = 91 kJ mol-¹ First ionization energy of A(g) = 464 kJ mol-¹ Electron affinity enthalpy of Bg) (exothermic) = -378 kJ mol-¹ Answer:
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