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One more thing that can be added maybe: You can predict the position of equilibrium between two moderately weak acidsacid and base by comparing the pKa's and assume that oxonium and hydroxide is not the major species as explained here:

https://chem.libretexts.org/Bookshelves/Organic_Chemistry/Organic_Chemistry_(Morsch_et_al.)/02%3A_Polar_Covalent_Bonds_Acids_and_Bases/2.09%3A_Predicting_Acid-Base_Reactions_from_pKa_Values

One more thing that can be added maybe: You can predict the position of equilibrium between two moderately weak acids by comparing the pKa's and assume that oxonium and hydroxide is not the major species as explained here:

https://chem.libretexts.org/Bookshelves/Organic_Chemistry/Organic_Chemistry_(Morsch_et_al.)/02%3A_Polar_Covalent_Bonds_Acids_and_Bases/2.09%3A_Predicting_Acid-Base_Reactions_from_pKa_Values

One more thing that can be added maybe: You can predict the position of equilibrium between two moderately weak acid and base by comparing the pKa's and assume that oxonium and hydroxide is not the major species as explained here:

https://chem.libretexts.org/Bookshelves/Organic_Chemistry/Organic_Chemistry_(Morsch_et_al.)/02%3A_Polar_Covalent_Bonds_Acids_and_Bases/2.09%3A_Predicting_Acid-Base_Reactions_from_pKa_Values

Source Link
Mäßige
  • 471
  • 1
  • 4
  • 16

One more thing that can be added maybe: You can predict the position of equilibrium between two moderately weak acids by comparing the pKa's and assume that oxonium and hydroxide is not the major species as explained here:

https://chem.libretexts.org/Bookshelves/Organic_Chemistry/Organic_Chemistry_(Morsch_et_al.)/02%3A_Polar_Covalent_Bonds_Acids_and_Bases/2.09%3A_Predicting_Acid-Base_Reactions_from_pKa_Values