3 H2CO3 + 2 Al(OH)3 --> Al2(CO3)3 + 6 H2O
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The equation is NH4OH + HBr -> NH4Br + H2O.
The balanced chemical equation for the reaction between sulfurous acid and aluminum hydroxide to form aluminum sulfite and water is: 3H2SO3 + 2Al(OH)3 → Al2(SO3)3 + 6H2O This equation shows that 3 moles of sulfurous acid and 2 moles of aluminum hydroxide react to produce 1 mole of aluminum sulfite and 6 moles of water.
The balanced equation for the reaction between sulfur, oxygen, and water is: Sulfur + Oxygen + Water → Sulfuric Acid
NH3 (aq)+ HBr(aq) --> NH4+ (aq)+ Br- (aq)
This equation is Ca + H2CO3 => CaCO3 + H2.
The balanced equation for potassium oxide (K2O) reacting with carbonic acid (H2CO3) is: K2O + H2CO3 -> 2KOH + CO2
The balanced equation for the reaction between aluminum and hydrochloric acid is: 2Al + 6HCl -> 2AlCl3 + 3H2
The balanced equation for the reaction between aluminum and ethanoic acid is: 2Al(s) + 6CH3COOH(l) → 2Al(CH3COO)3 + 3H2(g)
Carbonic acid and aluminum hydroxide react to form aluminum carbonate and water. This chemical reaction can be represented by the equation: H2CO3 + 2Al(OH)3 -> Al2(CO3)3 + 3H2O.
2Al + 3Cl2 -> 2AlCl3
The balanced equation for the reaction between aluminum hydroxide and permanganic acid is: 2Al(OH)3 + 5H2MnO4 -> 2Al(MnO4)3 + 6H2O + 5MnO2
The balanced equation for the reaction of phosphoric acid (H3PO4) and aluminum (Al) is: 2Al + 3H3PO4 → 3H2 + 2AlPO4
The chemical equation for Carbonic Acid is H2CO3.
The balanced equation for hydrochloric acid reacting with aluminum metal is: 2Al(s) + 6HCl(aq) → 2AlCl3(aq) + 3H2(g).
The salt formed when carbonic acid and aluminum hydroxide mix is aluminum carbonate. This reaction occurs when the acid-base reaction between carbonic acid and aluminum hydroxide takes place, resulting in the formation of aluminum carbonate salt.
The reaction is: Al2(CO3)3 + 6HCl = 2AlCl3 + 3CO2 + 3H2O