At 25°C, for the reaction Br. (g) + 2Br (g) We have AG = 161.67 kJ/mol, and AH = 192.81 kJ/mol a. Compute the mole fraction of bromine atoms present at equilibrium at 25°C and P = 1 atm b. At what temperature will the system contain 10 mol percent bromine atoms in equilibrium with bromine vapor at P = 1 atm.

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At 25°C, for the reaction
Br, (g)
+ 2Br (g)
We have AG° = 161.67 kJ/mol, and AH° = 192.81 kJ/mol
a. Compute the mole fraction of bromine atoms present at equilibrium at 25°C and P
= 1 atm
b. At what temperature will the system contain 10 mol percent bromine atoms in
equilibrium with bromine vapor at P = 1 atm.
Transcribed Image Text:At 25°C, for the reaction Br, (g) + 2Br (g) We have AG° = 161.67 kJ/mol, and AH° = 192.81 kJ/mol a. Compute the mole fraction of bromine atoms present at equilibrium at 25°C and P = 1 atm b. At what temperature will the system contain 10 mol percent bromine atoms in equilibrium with bromine vapor at P = 1 atm.
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