5. Calculate the AH of the reaction of solid aluminum and gaseous chlorine to produce solid aluminum chloride. Use the equations below: Al(s) + 3HCI(aq) –→ AICI3(aq) + 1.5 H2(g) AH = -524.5 kJ %3D...


5. Calculate the AH of the reaction of solid<br>aluminum and gaseous chlorine to produce<br>solid aluminum chloride. Use the equations<br>below:<br>Al(s) + 3HCI(aq) –→ AICI3(aq) + 1.5 H2(g)<br>AH = -524.5 kJ<br>%3D<br>HCI(g) → HCI(aq)<br>AH = -74.8 kJ<br>%3D<br>H2(g) + Cl2(g) → 2HCI(g)<br>AH = -1845, kJ<br>%3D<br>AICI3(s) → AICI3(aq)<br>AH = -323. kJ<br>

Extracted text: 5. Calculate the AH of the reaction of solid aluminum and gaseous chlorine to produce solid aluminum chloride. Use the equations below: Al(s) + 3HCI(aq) –→ AICI3(aq) + 1.5 H2(g) AH = -524.5 kJ %3D HCI(g) → HCI(aq) AH = -74.8 kJ %3D H2(g) + Cl2(g) → 2HCI(g) AH = -1845, kJ %3D AICI3(s) → AICI3(aq) AH = -323. kJ

Jun 08, 2022
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