Assume we are to tackle a complex aqueous equilibria problem using the systematic process we learned in class. In our example, we’re going to look at dissolving silver chromate (Ag2CrO4, Ksp = 1.2 x 10–12) in water. Write 4 relevant equilibrium reactions. Answer: Dissolving silver chromate (Ag2CrO4, Ksp = 1.2 x 10–12) in water, The 4 relevant equilibrium reactions are given by, Ag2CrO4⇌2Ag++CrO−24CrO−24+H2O⇌HCrO−4+OH−HCrO−4+H2O⇌H2CrO4+OH−2Ag++2OH−⇌2AgOHH2O⇌H++OH− This is the part I need help with: Assume we are to tackle a complex aqueous equilibria problem using the systematic process we learned in class. In our example, we’re going to look at dissolving silver chromate (Ag2CrO4, Ksp = 1.2 x 10–12) in water. Write 1 charge balance equation (based on your answer from the previous question).
Assume we are to tackle a complex aqueous equilibria problem using the systematic process we learned in class. In our example, we’re going to look at dissolving silver chromate (Ag2CrO4, Ksp = 1.2 x 10–12) in water. Write 4 relevant equilibrium reactions.
Answer:
Dissolving silver chromate (Ag2CrO4, Ksp = 1.2 x 10–12) in water,
The 4 relevant equilibrium reactions are given by,
Ag2CrO4⇌2Ag++CrO−24CrO−24+H2O⇌HCrO−4+OH−HCrO−4+H2O⇌H2CrO4+OH−2Ag++2OH−⇌2AgOHH2O⇌H++OH−
This is the part I need help with:
Assume we are to tackle a complex aqueous equilibria problem using the systematic process we learned in class. In our example, we’re going to look at dissolving silver chromate (Ag2CrO4, Ksp = 1.2 x 10–12) in water. Write 1 charge balance equation (based on your answer from the previous question).
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