15 Facts on HBr + AgOH: What, How to Balance & FAQs

Silver hydroxide and Hydrogen Bromide are soluble in water. HBr is a mineral acid. Silver bromide is canonicalized. Let us see a few facts on HBr + AgOH.

Silver Hydroxide (AgOH) has a molecular weight of 124.876. Its monoisotopic mass is 123.90783. It has no stereocenter and no isotopes. It has 2 covalently bonded units. HBr is a strong acid with pKa -9 and a density of 1.49 gm/ cm3

Let us discuss the reaction type, its enthalpy the displacing ions, and titration methods and balancing in this article.

What is the product of HBr and AgOH?

HBr and AgOH have the following products. Silver Bromide (AgBr) and water (H2O).

AgOH + HBr → AgBr + H2

What type of reaction is HBr + AgOH?

The reaction between HBr Plus AgOH is an exothermic reaction as heat is liberated because acid is used. 

How to balance HBr + AgOH?

This reaction between HBr + AgOH is balanced. The molecules on the product side and the reactant side are equal. 

AgOH + HBr → AgBr + H2

HBr + AgOH titration?

 The reaction between HBr and AgOH titration does not occur because HBr is used, and it is a very strong acid. Strong acids cannot be used for titration.

HBr + AgOH net ionic equation?

HBr and AgOH have the following Ionic equation.

  • AgOH + HBr → AgBr + H2
  •  To arrive at the net ionic equation, we should follow these steps.
  •  The balanced chemical equation represents the states of products and reactants. 
  • AgOH (aq) + HBr (aq) → AgBr (aq) + H2O (aq)
  • Acids, bases, and salts get dissociated into their respective ions, whereas pure substances cannot dissociate into ions. So, the final equation of dissociation is 
  • Ag+ + OH + H+ + Br → Ag+ + Br + 2H+ + O2-

HBr + AgOH conjugate pairs?

HBr + AgOH has the following conjugate pairs.  

  • HBr has conjugate acid-base pair. Br is the conjugate base, and H3O+ is its conjugate acid. 
  • AgOH has no conjugate acid-base pair.

HBr + AgOH intermolecular forces?

The reaction between HBr and AgOH has the following intermolecular forces.

  • HBr has Dipole-dipole forces
  • AgOH has weak Ionic forces.
HBr 1 1
HBr Dipole-Dipole forces

HBr + AgOH reaction enthalpy?

HBr + AgOH reaction, their enthalpy has not been recognized as Gibbs free energy has not been established.

Is HBr + AgOH a buffer solution?

HBr + AgOH as a buffer is not possible as HBr is used. A buffer solution is not formed when strong and vigorous acids are used. 

Is HBr + AgOH a complete reaction?

HBr + AgOH is a complete reaction with Silver Bromide (AgBr) and water (H2O) as their products.

AgOH + HBr → AgBr + H2

Is HBr + AgOH an exothermic or endothermic reaction?

HBr + AgOH is an Exothermic reaction. When acids are used, heat is liberated.

Is HBr + AgOH a redox reaction?

HBr + AgOH is not a redox reaction as there is no change in the oxidation state of Ag.

Is HBr + AgOH a precipitation reaction?

HBr + AgOH is a precipitation reaction AgBr is obtained as a residue.

Is HBr + AgOH reversible or irreversible reaction?

HBr + AgOH is an irreversible reaction because precipitates like AgBr are formed.

Is HBr + AgOH displacement reaction?

HBr + AgOH is not a displacement reaction because Ag does not displace H.

Conclusion

In conclusion, the reaction between HBr and AgOH is irreversible. A buffer solution is not formed as strong acid is used, and its reaction enthalpy is not established. AgOH is used in silver oxide battries, whereas AgBr is used in photographic films.