Consider the synthesis of sulphur dioxide from its elements at 25°C: Sa(s) + Oza - so2 () 2.1.1 Calculate A,Gº , using only Gibbs energy values. 2.1.2 Calculate the equilibrium constant, K, at 25°C for this reaction 2.1.3 Calculate ASsurr for the synthesis of sulphur dioxide at 25°C 2.

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Chapter1: Chemical Foundations
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Question 2
2
Consider the synthesis of sulphur dioxide from its elements at 25°C:
Se(s) + Oz) - SO2 («)
2.1.1 Calculate A,G°, using only Gibbs energy values.
2.1.2 Calculate the equilibrium constant, K, at 25°C for this reaction
2.1.3 Calculate ASaurr for the synthesis of sulphur dioxide at 25°C
2.1.4 Calculate ASuniy for the synthesis of sulphur dioxide at 25°C
2.1.5 Calculate A,G at 25°C when the reaction mixture consists of 3.1 mg of Sa, 2.5 bar 02 and 1.00
bar SO2.
Thermodynamic Data
Species
A¡H° (kJ/mol)
(at 298.15 K)
S° (J/K.mol)
(at 298.15 K)
AGº (kJ/mol)
(at 298.15 K)
Sa(s)
02(g)
SO2 (g)
102
431
50
205
-297
248
-300
Transcribed Image Text:Question 2 2 Consider the synthesis of sulphur dioxide from its elements at 25°C: Se(s) + Oz) - SO2 («) 2.1.1 Calculate A,G°, using only Gibbs energy values. 2.1.2 Calculate the equilibrium constant, K, at 25°C for this reaction 2.1.3 Calculate ASaurr for the synthesis of sulphur dioxide at 25°C 2.1.4 Calculate ASuniy for the synthesis of sulphur dioxide at 25°C 2.1.5 Calculate A,G at 25°C when the reaction mixture consists of 3.1 mg of Sa, 2.5 bar 02 and 1.00 bar SO2. Thermodynamic Data Species A¡H° (kJ/mol) (at 298.15 K) S° (J/K.mol) (at 298.15 K) AGº (kJ/mol) (at 298.15 K) Sa(s) 02(g) SO2 (g) 102 431 50 205 -297 248 -300
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