For the reaction H₂S(g) + 2H₂O(1) → 3H₂(g) + SO₂(g) AH° = 295.4 kJ and AS 294.7 J/K The standard free energy change for the reaction of 1.91 moles of H₂S(g) at 333 K, 1 atm would be This reaction is ✓ favored under standard conditions at 333 K. Assume that AH° and AS° are independent of temperature. kJ.
For the reaction H₂S(g) + 2H₂O(1) → 3H₂(g) + SO₂(g) AH° = 295.4 kJ and AS 294.7 J/K The standard free energy change for the reaction of 1.91 moles of H₂S(g) at 333 K, 1 atm would be This reaction is ✓ favored under standard conditions at 333 K. Assume that AH° and AS° are independent of temperature. kJ.
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![For the reaction
H₂S(g) + 2H₂O(1) → 3H₂(g) + SO₂(g)
AH° = 295.4 kJ and AS
294.7 J/K
The standard free energy change for the reaction of 1.91 moles of H₂S(g) at 333 K, 1 atm would be
This reaction is
✓ favored under standard conditions at 333 K.
Assume that AH° and AS° are independent of temperature.
kJ.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9df822d8-e8cd-4cb9-a9b7-deb100540f5d%2Fbdf149c6-78ef-44ec-8ad4-29e1ff1152e4%2F9vd7i8_processed.png&w=3840&q=75)
Transcribed Image Text:For the reaction
H₂S(g) + 2H₂O(1) → 3H₂(g) + SO₂(g)
AH° = 295.4 kJ and AS
294.7 J/K
The standard free energy change for the reaction of 1.91 moles of H₂S(g) at 333 K, 1 atm would be
This reaction is
✓ favored under standard conditions at 333 K.
Assume that AH° and AS° are independent of temperature.
kJ.
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