Respuesta :
1) HOBr stands for hypobromous acid. On reacting with water, products formed are OBr- and H3O+. Following reaction occurs during this process.
HOBr + H2O ⇄ OBr- + H3O+
2) HOBr is a weak acid and have a lower value of dissociation constant (Ka ~ 2.3 X 10^–9). Hence, large number of undissociated HOBr molecules are left in solution, when the reaction is completed/reaches equilibrium.
HOBr + H2O ⇄ OBr- + H3O+
2) HOBr is a weak acid and have a lower value of dissociation constant (Ka ~ 2.3 X 10^–9). Hence, large number of undissociated HOBr molecules are left in solution, when the reaction is completed/reaches equilibrium.
Answer:
1. Reaction:
[tex]HBrO+H_2O-->H_3O^{+}+BrO^{-}[/tex]
2. Yes, the solution will have HBrO molecules.
Explanation:
Hello,
In this case, the undergoing chemical reaction involving hypobromous acid and water yields both hypobromite and hydronium ions as shown below:
[tex]HBrO+H_2O-->H_3O^{+}+BrO^{-}[/tex]
Now, since hypobromous acid's pKa is about 2x10⁻⁹, such value indicates that it is not completely dissociated in this reaction, therefore, there will be an amount of hypobromous acid molecules even when the equilibrium is attained.
Best regards.
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