Ca3(PO4)2 + 3Na2(CO3) --> 3CaCO3 + 2Na3PO4
(Phosphate ions have a 3- charge and carbonate ions have a 2- charge)
There is no reaction between phenol and sodium carbonate
The balanced equation for aluminum nitrate reacting with sodium phosphate is: 2Al(NO3)3 + 3Na3PO4 → 6NaNO3 + 2AlPO4
The balanced equation for the reaction of calcium carbonate (CaCO3) and hydrofluoric acid (HF) is: CaCO3 + 2HF → CaF2 + H2O + CO2.
Ca(ClO3)2 ---> CaCl2 + 3O2 is the balanced equation when calcium chlorate is heated.
3AgNO3(aq) + Na3PO4(aq) --> Ag3PO4(s) + 3NaNO3(aq)
The balanced equation for lithium carbonate is Li2CO3.
The chemical formula (not balanced symbol equation) of copper (II) cabonate is CuCO3.
The balanced equation for the reaction between nickel and phosphate ions is: Ni + 2PO4^3- → Ni3(PO4)2. This equation represents the formation of nickel(II) phosphate from nickel ions and phosphate ions in a 3:2 ratio.
The balanced equation for ammonium phosphate in an aqueous solution is: (NH4)3PO4(aq) → 3NH4+(aq) + PO43-(aq)
The balanced chemical equation for the reaction of calcium carbonate (CaCO3) is: CaCO3(s) -> CaO(s) + CO2(g)
The chemical equation is:K2CO3 + CaCl2 = CaCO3(s) + 2 KCl
The balanced equation for sodium carbonate (Na2CO3) reacting with sulfuric acid (H2SO4) is: Na2CO3 + H2SO4 → Na2SO4 + H2O + CO2.
The balanced symbol equation for the thermal decomposition of copper carbonate is: CuCO3(s) -> CuO(s) + CO2(g)
The balanced equation for iron carbonate (FeCO3) reacting with sulfuric acid (H2SO4) is: FeCO3 + H2SO4 -> FeSO4 + H2O + CO2
The balanced equation for copper sulfate (CuSO4) and potassium phosphate (K3PO4) reacting is: 3CuSO4 + 2K3PO4 -> Cu3(PO4)2 + 3K2SO4
There is no reaction between phenol and sodium carbonate
The balanced equation for the reaction between aluminum nitrate and ammonium phosphate is: 2Al(NO3)3 + 3(NH4)3PO4 → 2AlPO4 + 6NH4NO3