a can be formed by the reaction of hydrogen with nitrogen gas 3H2 (g) + N2 (g) → 2NH3 (g). e of AH is -92.38 kJ/mol, and that of AS is -198.2 J/mol·K. Determine AG° at 25°C. J/mol (B) 151 kJ/mol (C) -33.3 kJ/mol (D) -151 kJ/mol

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19. Ammonia can be formed by the reaction of hydrogen with nitrogen gas
3H2 (g) + N2 (g) → 2NH3 (g).
The value of AH° is –92.38 kJ/mol, and that of AS° is -198.2 J/mol·K. Determine AG° at 25°C.
(A) -59.0 kJ/mol
(B) 151 kJ/mol
(C) -33.3 kJ/mol
(D) -151 kJ/mol
Transcribed Image Text:19. Ammonia can be formed by the reaction of hydrogen with nitrogen gas 3H2 (g) + N2 (g) → 2NH3 (g). The value of AH° is –92.38 kJ/mol, and that of AS° is -198.2 J/mol·K. Determine AG° at 25°C. (A) -59.0 kJ/mol (B) 151 kJ/mol (C) -33.3 kJ/mol (D) -151 kJ/mol
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