NaOH + H3PO4 --> Na3PO4
NaOH + H3PO4 -->
The reaction between sodium hydroxide and phosphoric acid produces sodium dihydrogen phosphate (NaH2PO4) and water.
Sodium hydroxide.
Sodium zincate is formed by reacting zinc oxide with sodium hydroxide in water. The chemical reaction between the zinc oxide and sodium hydroxide results in the formation of sodium zincate, which is a compound containing both sodium and zinc ions.
The chemical formula for sodium hydroxide is NaOH.
When sodium hydroxide is mixed with phosphoric acid, a neutralization reaction occurs, resulting in the formation of sodium phosphate and water. The reaction can be written as: 3 NaOH + H3PO4 → Na3PO4 + 3 H2O
To find the amount of sodium hydroxide needed to react with 150g of phosphoric acid, you first need to determine the balanced chemical equation between sodium hydroxide and phosphoric acid. From there, you can use stoichiometry to calculate the amount of sodium hydroxide needed.
The reaction between sodium hydroxide and phosphoric acid produces sodium dihydrogen phosphate (NaH2PO4) and water.
Sodium hydroxide.
No amount of sodium sulphate can be formed from sodium hydroxide alone, because sodium sulfate contains sulfur and sodium hydroxide does not. By neutralization with sulphuric acid, one formula unit of sodium sulphate can be formed from two moles of sodium hydroxide, according to the equation 2 NaOH + H2SO4 -> Na2SO4 + 2 H2O.
Phosphoric acid generally forms salts called phosphates when it reacts with bases. The specific phosphate salt formed will depend on the base with which phosphoric acid reacts. For example, reacting phosphoric acid with sodium hydroxide will yield sodium phosphate.
Sodium zincate is formed by reacting zinc oxide with sodium hydroxide in water. The chemical reaction between the zinc oxide and sodium hydroxide results in the formation of sodium zincate, which is a compound containing both sodium and zinc ions.
The chemical formula for sodium hydroxide is NaOH.
Sodium hydroxide is NaOH not NaHO
The chemical formula of sodium hydroxide is NaOH.
You can calculate the concentration of a phosphoric acid solution by determining the volume of sodium hydroxide needed to neutralize it in a titration. The molarity of the sodium hydroxide solution and the balanced chemical equation for the reaction will allow you to find the moles of phosphoric acid present, hence the concentration.
When sodium hydroxide is mixed with phosphoric acid, a neutralization reaction occurs, resulting in the formation of sodium phosphate and water. The reaction can be written as: 3 NaOH + H3PO4 → Na3PO4 + 3 H2O
Hydrochloric acid Sulfuric acid Phosphoric acid Sodium hydroxide Calcium hydroxide Potassium hydroxide