The chemical equation is:
3 NaOH + H3PO4 = Na3PO4 + 3 H2O
The product of titration between hydrogen phosphate and potassium hydroxide would be potassium phosphate and water. The reaction involves the exchange of ions, with the hydrogen phosphate ion reacting with the potassium hydroxide to form potassium phosphate and water as the products.
When magnesium reacts with sodium hydroxide, it forms magnesium hydroxide and hydrogen gas. This is a chemical reaction where the magnesium displaces hydrogen from the sodium hydroxide, resulting in the formation of magnesium hydroxide and hydrogen gas as products.
When hydrogen and hydroxide combine, they form water through a chemical reaction known as neutralization. This reaction involves the combination of the hydrogen ion (H+) from the acid (hydrogen) with the hydroxide ion (OH-) from the base (hydroxide) to produce water (H2O).
Sodium hydrogen phosphate is a base because it can accept a proton (H+) from water to form the conjugate acid (dihydrogen phosphate ion) and hydroxide ion (OH-). This reaction increases the concentration of hydroxide ions in solution, leading to an increase in pH, making it alkaline/basic.
Calcium phosphate is produced when phosphoric acid reacts with calcium hydroxide. This is a chemical reaction that forms a solid salt precipitate.
The product of titration between hydrogen phosphate and potassium hydroxide would be potassium phosphate and water. The reaction involves the exchange of ions, with the hydrogen phosphate ion reacting with the potassium hydroxide to form potassium phosphate and water as the products.
Sodium hydrogen phosphate reacts with water to form sodium hydroxide and phosphoric acid. This reaction is a double displacement reaction where ions are exchanged between the compounds.
When magnesium reacts with sodium hydroxide, it forms magnesium hydroxide and hydrogen gas. This is a chemical reaction where the magnesium displaces hydrogen from the sodium hydroxide, resulting in the formation of magnesium hydroxide and hydrogen gas as products.
When hydrogen and hydroxide combine, they form water through a chemical reaction known as neutralization. This reaction involves the combination of the hydrogen ion (H+) from the acid (hydrogen) with the hydroxide ion (OH-) from the base (hydroxide) to produce water (H2O).
When calcium hydroxide (Ca(OH)2) reacts with hydrogen phosphate (HPO4^2-), calcium phosphate (Ca3(PO4)2) is formed by double displacement reaction, involving the exchange of ions between the compounds.
Sodium hydrogen phosphate is a base because it can accept a proton (H+) from water to form the conjugate acid (dihydrogen phosphate ion) and hydroxide ion (OH-). This reaction increases the concentration of hydroxide ions in solution, leading to an increase in pH, making it alkaline/basic.
The reaction between ammonium phosphate and barium hydroxide will produce barium phosphate and ammonium hydroxide as products. This is a double displacement reaction where the cations and anions switch partners. The balanced chemical equation for this reaction is: (NH4)3PO4 + 3Ba(OH)2 → Ba3(PO4)2 + 6NH4OH.
When strontium hydroxide and lithium phosphate react, they form strontium phosphate and lithium hydroxide. This is a double displacement reaction where the cations and anions of the two compounds switch partners. Strontium phosphate is an insoluble compound, while lithium hydroxide is soluble in water.
A chemical reaction occurs between sodium hydroxide and hydrogen chloride. Adding more sodium hydroxide to the reaction causes it to speed up. If you add more of a reactant, such as sodium hydroxide, can it be considered a catalyst? Why or why not?
Calcium phosphate is produced when phosphoric acid reacts with calcium hydroxide. This is a chemical reaction that forms a solid salt precipitate.
3 Ca(OH)2(aq) + 2 (NH4)3PO4(aq) --> Ca3(PO4)2(s) + 6 NH3(g) + 6H2O(l)
General Formula for this type of reaction is ACID + BASE ---> SALT + WATER H3PO4 + KOH the base is potassium:K(charge+1) the acid is phosphate(charge-3) -to neutralize the -3 charge you need a +3 charge therefor K must equal 3K the correct formula is K3PO4 the left behind H will form with OH and form H20 H3PO4 + KOH ----> K3PO4 + H2O..... unbalanced H3PO4 + 3KOH ---> K3PO4 + 3H20 ...... BALANCED Above reaction is the net reaction product. Reaction will complete in three steps. 1. First Potassium di hydrogen phosphate will be produced 2. Further neutralization will take place then to form Di Potassium Hydrogen Phosphate 3. Then, finally Potassium Phosphate Tri Basic will be formed. However the solubility of Potassium Di Hydrogen Phosphate in water is far better than of Potassium Phosphate Tri Basic.