ACTUALLY The answer is:
3H2SO4 + 2K3PO4 = 3K2SO4 + 2H3PO4
Because the last answer was not balanced correctly.
The reaction between Cu3(PO4)2 and KMnO4 would likely result in the formation of CuSO4, MnO2, and K3PO4 as the products. The manganese in KMnO4 would be reduced from +7 to +4 oxidation state, leading to the formation of MnO2. The copper ions from Cu3(PO4)2 would likely form copper(II) sulfate (CuSO4), while potassium phosphate (K3PO4) would also be formed.
The reaction between sulfuric acid (H2SO4) and zinc oxide (ZnO) produces zinc sulfate (ZnSO4) and water (H2O). The balanced chemical equation for this reaction is: H2SO4 + ZnO → ZnSO4 + H2O.
The reaction of FeSO4 (iron(II) sulfate) with K3PO4 (potassium phosphate) results in the formation of Fe3(PO4)2 (iron(II) phosphate) and K2SO4 (potassium sulfate).
The reaction between 2NaCl and H2SO4 is a double displacement reaction, where the sodium (Na) from NaCl exchanges places with the hydrogen (H) from H2SO4 to form Na2SO4 and HCl. This reaction generally involves the swapping of ions between two compounds.
The reaction between H2SO4 and Cl- ions would produce HCl and HSO4- ions. The overall reaction can be represented as H2SO4 + 2Cl- -> 2HCl + SO4^2-.
The reaction between Cu3(PO4)2 and KMnO4 would likely result in the formation of CuSO4, MnO2, and K3PO4 as the products. The manganese in KMnO4 would be reduced from +7 to +4 oxidation state, leading to the formation of MnO2. The copper ions from Cu3(PO4)2 would likely form copper(II) sulfate (CuSO4), while potassium phosphate (K3PO4) would also be formed.
The reaction between sulfuric acid (H2SO4) and zinc oxide (ZnO) produces zinc sulfate (ZnSO4) and water (H2O). The balanced chemical equation for this reaction is: H2SO4 + ZnO → ZnSO4 + H2O.
The reaction of FeSO4 (iron(II) sulfate) with K3PO4 (potassium phosphate) results in the formation of Fe3(PO4)2 (iron(II) phosphate) and K2SO4 (potassium sulfate).
The reaction between 2NaCl and H2SO4 is a double displacement reaction, where the sodium (Na) from NaCl exchanges places with the hydrogen (H) from H2SO4 to form Na2SO4 and HCl. This reaction generally involves the swapping of ions between two compounds.
The reaction between H2SO4 and Cl- ions would produce HCl and HSO4- ions. The overall reaction can be represented as H2SO4 + 2Cl- -> 2HCl + SO4^2-.
Phosphorus increases its oxidation number in this reaction. In H3PO4, phosphorus has an oxidation number of +5, and in K3PO4, it has an oxidation number of +5 as well. This means that phosphorus's oxidation state remains the same throughout the reaction.
There is no reaction for this process.H2SO4 + NaCl => N.R.
The reaction between MgF2 and H2SO4 will produce MgSO4 and HF as products. MgF2 will react with H2SO4 to form MgSO4 and HF through a double displacement reaction.
The balanced neutralization reaction between sulfuric acid (H2SO4) and potassium hydroxide (KOH) in aqueous solution is: H2SO4 + 2KOH -> K2SO4 + 2H2O
The reaction between sulfuric acid (H2SO4) and sulfur trioxide (SO3) to form sulfuric acid (H2SO4) is a reversible reaction known as the sulfuric acid hydration reaction. The water (H2O) acts as a reactant in this reaction to hydrate the sulfur trioxide, forming additional sulfuric acid.
The coefficient in front of water in the balanced chemical equation for the reaction between H3PO4 and KOH to form K3PO4 and water is 4. This means that four molecules of water are formed in this reaction for every one molecule of H3PO4 and three molecules of KOH that react.
The chemical equation for the reaction between calcium (Ca) and sulfuric acid (H2SO4) is: Ca + H2SO4 -> CaSO4 + H2. This reaction produces calcium sulfate (CaSO4) and hydrogen gas (H2).