2HBr(g) + Cl2(g)2HCI(g) + Br2(g) AH° =-81.1 kJ and AS° =-1.2 J/K The standard free energy change for the reaction of 2.10 moles of HBr(g) at 266 K, 1 atm would be kJ. This reaction is (reactant, product) favored under standard conditions at 266 K. Assume that AH° and AS° are independent of temperature.

Principles of Modern Chemistry
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Chapter14: Chemical Equilibrium
Section: Chapter Questions
Problem 107CP
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For the reaction
2HB1(g) + C2(g)→2HCI(g) + Br2(g)
AH° = -81.1 kJ and AS° =-1.2 J/K
The standard free energy change for the reaction of 2.10 moles of HBr(g) at 266 K, 1 atm would be
kJ.
This reaction is (reactant, product)
favored under standard conditions at 266 K.
Assume that AH° and AS° are independent of temperature.
Transcribed Image Text:For the reaction 2HB1(g) + C2(g)→2HCI(g) + Br2(g) AH° = -81.1 kJ and AS° =-1.2 J/K The standard free energy change for the reaction of 2.10 moles of HBr(g) at 266 K, 1 atm would be kJ. This reaction is (reactant, product) favored under standard conditions at 266 K. Assume that AH° and AS° are independent of temperature.
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