Na3PO4+H2O->NaOH+H3PO4
just balance it.
The balanced chemical equation for this reaction is: 3Mg(NO3)2 + 2Na3PO4 -> 6NaNO3 + Mg3(PO4)2
Sodium phosphate is a generic term for the salts of sodium hydroxide and phosphoric acid (soluble in water). They are:sodium dihydrogen phosphate, commonly termed monosodium phosphate, (NaH2PO4), is also known as "sodium phosphate, monobasic".disodium hydrogen phosphate, commonly termed disodium phosphate, (Na2HPO4) is also known as "sodium phosphate, dibasic".Trisodium phosphate, commonly shortened to just sodium phosphate, (Na3PO4), is also known as "sodium phosphate, tribasic".sodium aluminium phosphate, (Na8Al2(OH)2(PO4)4).
When zinc acetate reacts with sodium phosphate, a double displacement reaction occurs. The zinc ions will combine with the phosphate ions to form zinc phosphate, while the sodium ions will combine with the acetate ions to form sodium acetate. The balanced chemical equation for this reaction is: Zn(CH₃COO)₂ + Na₃PO₄ → Zn₃(PO₄)₂ + 3NaCH₃COO.
The compound with formula Na3PO4 is named "sodium phosphate", "trisodium phosphate", "sodium ortho-phosphate", or "trisodium ortho-phosphate".
The balanced equation for aluminum nitrate reacting with sodium phosphate is: 2Al(NO3)3 + 3Na3PO4 → 6NaNO3 + 2AlPO4
NaH2PO4(aq) --> Na+(aq) + H2PO4(aq)sodium dihydrogen phosphate --> sodium ion + dihydrogen phosphate ionExplanationDissociation is the breakdown of soluble salts into their respective ions. Sodium dihydrogen phosphate is made up of two ions - sodium and dihydrogen phosphate. Therefore the dissociation of sodium dihydrogen phosphate will produce sodium and dihydrogen phosphate ions.
The molecular equation for lithium phosphate and sodium iodide is: 2Li3PO4 + 3NaI -> 6LiI + Na3PO4
K2HPO4 + NaHCO3 --> K2NaPO4 + H2O + CO2 is the balanced equation for the reaction of dipotassium hydrogen phosphate and sodium bicarbonate. (All numbers should be subscripts). Dipotassium phosphate does not exist. Tripotassium phosphate, K3PO4 does, but it's not acidic and therefore does not react with sodium hydrogen carbonate (sodium bicarbonate).
Iron(III) phosphate can be made by reacting iron(III) chloride with sodium phosphate in water: FeCl3 + Na3PO4 -> FePO4 + 3NaCl. Alternatively, iron(II) phosphate can be made by reacting iron(II) chloride with sodium phosphate in water: FeCl2 + Na3PO4 -> Fe3(PO4)2 + 6NaCl.
The balanced chemical equation for the reaction is 2Na3PO4 + 3Ca(NO3)2 → 6NaNO3 + Ca3(PO4)2. This reaction involves the double displacement of ions where sodium phosphate reacts with calcium nitrate to form sodium nitrate and calcium phosphate.
The chemical equation is:3 NaOH + H3PO4 = Na3PO4 + 3 H2O
The reaction between sodium phosphate and barium chlorate in water would be a double displacement reaction, forming insoluble barium phosphate and soluble sodium chlorate as products. The balanced chemical equation for the reaction is: 3Na3PO4 + 2Ba(ClO3)2 → Ba3(PO4)2 + 6NaClO3
The net ionic equation for Na3PO4 is 3Na+ + PO4^3- -> Na3PO4. This equation shows that the sodium ion (Na+) and phosphate ion (PO4^3-) combine to form sodium phosphate (Na3PO4) without any spectator ions.
The balanced chemical equation for this reaction is: 3Mg(NO3)2 + 2Na3PO4 -> 6NaNO3 + Mg3(PO4)2
The word equation for sodium reacting with water is: sodium + water → sodium hydroxide + hydrogen gas.
3NaOH + H3PO4 -> Na3PO4 +3H2O The usual salt, sodium phosphate, and water.
The balanced chemical equation for sodium phosphate reacting with calcium nitrate to produce sodium nitrate and calcium phosphate is: 2 Na3PO4 + 3 Ca(NO3)2 → 6 NaNO3 + Ca3(PO4)2. This equation is balanced because the number of atoms of each element is the same on both sides of the equation.