Calculate AG rxn, the equilibrium constant at 350 °C for the reaction between Cl₂ and Br₂ to obtain BrCl. Use the following data. Cl2(g) + Br2(g) = 2BrCl(g) CI-CI Br - Br Br - Cl Do/ev 2.51 (¹) 2.00 (¹) 2.27 (¹) r/pm 199 228 217 v/cm-¹ 560 325 444 Use the value of the constant obtained to calculate the concentrations of the species at equilibrium if 2.65 millimoles of Cl₂, 3.1 millimoles of Br₂, and 1.44 millimoles of BrCl are introduced into an empty container of 185 cm³, maintaining the temperature at 350 °C

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Calculate AG. the equilibrium constant at 350 °C for the reaction between Cl₂ and Br₂ to obtain
rxn,
BrCl. Use the following data.
Cl2(g) + Br2(g) = 2BrCl(g)
Cl - Cl
Br Br
Br - Cl
Do/ev
2.51 (¹)
2.00 (¹)
2.27 (¹)
r/pm
199
228
217
v/cm-¹
560
325
444
Use the value of the constant obtained to calculate the concentrations of the species at equilibrium
if 2.65 millimoles of Cl₂, 3.1 millimoles of Br2, and 1.44 millimoles of BrCl are introduced into an
empty container of 185 cm³, maintaining the temperature at 350 °C
Transcribed Image Text:Calculate AG. the equilibrium constant at 350 °C for the reaction between Cl₂ and Br₂ to obtain rxn, BrCl. Use the following data. Cl2(g) + Br2(g) = 2BrCl(g) Cl - Cl Br Br Br - Cl Do/ev 2.51 (¹) 2.00 (¹) 2.27 (¹) r/pm 199 228 217 v/cm-¹ 560 325 444 Use the value of the constant obtained to calculate the concentrations of the species at equilibrium if 2.65 millimoles of Cl₂, 3.1 millimoles of Br2, and 1.44 millimoles of BrCl are introduced into an empty container of 185 cm³, maintaining the temperature at 350 °C
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