Balanced:
2 Ti + N2 ----> 2 TiN
The acid required to produce lithium nitrate is nitric acid (HNO3). The balanced chemical equation for the reaction between lithium hydroxide and nitric acid to produce lithium nitrate is: 2LiOH + 2HNO3 -> 2LiNO3 + 2H2O.
The balanced equation for the reaction between calcium and oxygen to produce calcium oxide is: 2Ca + O2 -> 2CaO
The balanced chemical equation for the reaction between magnesium bromide (MgBr2) and hydrochloric acid (HCl) to produce hydrobromic acid (HBr) and magnesium chloride (MgCl2) is: MgBr2 + 2HCl → 2HBr + MgCl2
The balanced chemical equation for this reaction is: 2 C2H6 + 7 O2 → 4 CO2 + 6 H2O
The balanced equation for carbon plus water yielding carbon monoxide plus hydrogen is: C + H2O → CO + H2. This equation represents the reaction where carbon reacts with water to produce carbon monoxide and hydrogen gas. The equation is balanced with 1 carbon atom on each side and 2 hydrogen atoms on each side.
The balanced chemical equation for potassium phosphate (K3PO4) reacting with aluminum nitrate (Al(NO3)3) to produce potassium nitrate (KNO3) and aluminum phosphate (AlPO4) is: 2K3PO4 + 3Al(NO3)3 → 3KNO3 + AlPO4
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.
The balanced equation is 2 KI + Pb(NO3)2 -> 2 KNO3 + PbI2.
The balanced equation for the reaction between sodium chloride and lead nitrate to produce lead chloride is: 2NaCl + Pb(NO3)2 -> 2NaNO3 + PbCl2
The balanced equation for the reaction between sulfuric acid (H2SO4) and potassium nitrate (KNO3) to produce nitric acid (HNO3) is: H2SO4 + 2KNO3 -> 2HNO3 + K2SO4 From the balanced equation, it can be seen that for every mole of sulfuric acid reacting, two moles of potassium nitrate are required to produce two moles of nitric acid. This is due to the stoichiometry of the reaction, where the coefficients in the balanced equation represent the mole ratios of the reactants and products.
The balanced chemical equation for the reaction is: Ca(NO3)2 + 2NaOH -> Ca(OH)2 + 2NaNO3. This equation shows that one molecule of calcium nitrate reacts with two molecules of sodium hydroxide to produce one molecule of calcium hydroxide and two molecules of sodium nitrate.
Ammonium hydroxide and nitric acid yield ammonium nitrate and water.
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 acid required to produce lithium nitrate is nitric acid (HNO3). The balanced chemical equation for the reaction between lithium hydroxide and nitric acid to produce lithium nitrate is: 2LiOH + 2HNO3 -> 2LiNO3 + 2H2O.
When 3.00 moles of iron (III) nitrate react, they will produce an equal number of moles of lithium nitrate, according to the balanced chemical equation. So, 3.00 moles of lithium nitrate will be produced.
The chemical equation is:Fe + 2 AgNO3 = Fe(NO3)2 + 2 Ag
The balanced chemical equation for the reaction is: 2(NH4NO3) + 3(Na3PO4) → (NH4)3PO4 + 6(NaNO3) This equation shows the combination of two molecules of ammonium nitrate and three molecules of sodium phosphate to produce one molecule of ammonium phosphate and six molecules of sodium nitrate.