N2(g) + H2O(1) + NH3(aq) + O2(g) 2 where (aq) means the ammonia is dissolved in water. Substance AGE (kJ.mol-1) 0 N2(g)

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N2(g) + H2O(1) + NH3(aq) + O2(g) 2 where (aq) means the ammonia is dissolved in water. Substance AGE (kJ.mol-1) 0 N2(g)

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N2 G H2o 1 Nh3 Aq O2 G 2 Where Aq Means The Ammonia Is Dissolved In Water Substance Age Kj Mol 1 0 N2 G 1
N2 G H2o 1 Nh3 Aq O2 G 2 Where Aq Means The Ammonia Is Dissolved In Water Substance Age Kj Mol 1 0 N2 G 1 (74.42 KiB) Viewed 91 times
N2 G H2o 1 Nh3 Aq O2 G 2 Where Aq Means The Ammonia Is Dissolved In Water Substance Age Kj Mol 1 0 N2 G 2
N2 G H2o 1 Nh3 Aq O2 G 2 Where Aq Means The Ammonia Is Dissolved In Water Substance Age Kj Mol 1 0 N2 G 2 (28.5 KiB) Viewed 91 times
N2 G H2o 1 Nh3 Aq O2 G 2 Where Aq Means The Ammonia Is Dissolved In Water Substance Age Kj Mol 1 0 N2 G 3
N2 G H2o 1 Nh3 Aq O2 G 2 Where Aq Means The Ammonia Is Dissolved In Water Substance Age Kj Mol 1 0 N2 G 3 (49.02 KiB) Viewed 91 times
N2(g) + H2O(1) + NH3(aq) + O2(g) 2 where (aq) means the ammonia is dissolved in water. Substance AGE (kJ.mol-1) 0 N2(g) H2O(1) NH3(aq) -237.1 - 26.5 O2(g) 0

- Part A Calculate AG, for the biological synthesis of ammonia at 298 K. Express your answer to four significant figures and include the appropriate units. MA ? AG = Value Units

Part B Calculate the equilibrium constant for the biological synthesis of ammonia. Express your answer using three significant figures. ΟΙ ΑΣΦ ? o Kp = =
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