NH3 is a weak base (equilibrium more at the left than to the right side of the reaction equation: symbolized as <<==> )
NH3 + H2O <<==> NH4+ + OH-
The net ionic equation for the reaction between ammonia (NH3) and hydrocyanic acid (HCN) is: NH3 + HCN -> NH4+ + CN- This equation represents the formation of ammonium ion and cyanide ion.
The net ionic equation for the reaction between Pb(NO3)2 and NaOH is: Pb2+ + 2OH- → Pb(OH)2(s). This equation represents the formation of a precipitate of lead(II) hydroxide.
A complete ionic equation shows all the ions present in a chemical reaction, including those that dissociate into ions in solution. It represents the formula of each ionic compound as separate ions to give a more detailed picture of the reaction.
The ionic equation for the reaction between nitric acid (HNO3) and iron (Fe) is: 3H+ + Fe -> Fe3+ + 3/2H2 This equation represents the dissociation of nitric acid into H+ ions and the oxidation of iron to Fe3+ ions.
The net ionic equation for the reaction would be: Mg(OH)2 + 2HCl -> MgCl2 + 2H2O. This equation represents the formation of magnesium chloride and water from magnesium hydroxide and hydrochloric acid.
The net ionic equation for the reaction between ammonia (NH3) and hydrocyanic acid (HCN) is: NH3 + HCN -> NH4+ + CN- This equation represents the formation of ammonium ion and cyanide ion.
The net ionic equation for the reaction between Pb(NO3)2 and NaOH is: Pb2+ + 2OH- → Pb(OH)2(s). This equation represents the formation of a precipitate of lead(II) hydroxide.
A complete ionic equation shows all the ions present in a chemical reaction, including those that dissociate into ions in solution. It represents the formula of each ionic compound as separate ions to give a more detailed picture of the reaction.
The ionic equation for the reaction between nitric acid (HNO3) and iron (Fe) is: 3H+ + Fe -> Fe3+ + 3/2H2 This equation represents the dissociation of nitric acid into H+ ions and the oxidation of iron to Fe3+ ions.
The net ionic equation for the reaction would be: Mg(OH)2 + 2HCl -> MgCl2 + 2H2O. This equation represents the formation of magnesium chloride and water from magnesium hydroxide and hydrochloric acid.
The net ionic equation for NaOH (sodium hydroxide) in water is: Na⁺ + OH⁻ → NaOH. This represents the dissociation of sodium ion and hydroxide ion to form sodium hydroxide in solution.
To write a net ionic equation from a complete ionic equation, you remove the spectator ions that appear on both sides of the equation. The remaining ions that participate in the reaction are then included in the net ionic equation. This simplifies the equation to show only the ions that undergo a chemical change.
The net ionic equation for the reaction between Pb(NO3)2 and KI is: Pb2+ (aq) + 2I- (aq) -> PbI2 (s) This represents the formation of solid lead(II) iodide.
The net ionic equation for Na^+ + Cl^- is Na^+ + Cl^- → NaCl, which represents the formation of sodium chloride when Na^+ and Cl^- ions combine. This equation shows the reactants and products without including spectator ions that do not participate in the reaction.
the spectator ions are removed
the spectator ions are removed
The net ionic equation for aluminum sulfate and sodium hydroxide is Al^3+ + 3OH^- -> Al(OH)3(s). This represents the formation of solid aluminum hydroxide as a precipitate.