CoO + H2SO4 --> CoSO4 + H2O
When cobalt is mixed with sulfuric acid, it undergoes a reaction to produce cobalt(II) sulfate and hydrogen gas. The balanced chemical equation for this reaction is: Co + H2SO4 -> CoSO4 + H2
The balanced equation for the reaction between cobalt(II) chloride and silver nitrate is: CoCl2 + 2AgNO3 -> Co(NO3)2 + 2AgCl.
The balanced equation for the reaction between cobalt chloride (CoCl2) and ammonia (NH3) would be: CoCl2 + 6NH3 → [Co(NH3)6]Cl2
The balanced equation for the reaction between cobalt(III) nitrate and lithium hydroxide is: Co(NO3)3 + 3LiOH -> Co(OH)3 + 3LiNO3
The balanced chemical equation for the reaction between cobalt(II) chloride and potassium oxalate is: CoCl2 + K2C2O4 -> CoC2O4 + 2KCl, where cobalt(II) chloride reacts with potassium oxalate to form cobalt(II) oxalate and potassium chloride.
When cobalt is mixed with sulfuric acid, it undergoes a reaction to produce cobalt(II) sulfate and hydrogen gas. The balanced chemical equation for this reaction is: Co + H2SO4 -> CoSO4 + H2
The balanced equation for the reaction between cobalt(II) chloride and silver nitrate is: CoCl2 + 2AgNO3 -> Co(NO3)2 + 2AgCl.
The balanced equation for the reaction between cobalt chloride (CoCl2) and ammonia (NH3) would be: CoCl2 + 6NH3 → [Co(NH3)6]Cl2
The balanced equation for the reaction between cobalt(III) nitrate and lithium hydroxide is: Co(NO3)3 + 3LiOH -> Co(OH)3 + 3LiNO3
The balanced chemical equation for the reaction between cobalt(II) chloride and potassium oxalate is: CoCl2 + K2C2O4 -> CoC2O4 + 2KCl, where cobalt(II) chloride reacts with potassium oxalate to form cobalt(II) oxalate and potassium chloride.
The molecular equation for the reaction between cobalt II chloride and lithium carbonate is: CoCl2 + Li2CO3 -> CoCO3 + 2LiCl
2CoS(s) + 3O2(g) ----> 2CoO(s) + 2SO2(g)
The balanced chemical equation for the reaction between cobalt (II) bromide (CoBr2) and lead nitrate (Pb(NO3)2) is: CoBr2 + Pb(NO3)2 → Co(NO3)2 + PbBr2 This equation is balanced with 1 molecule of cobalt (II) bromide reacting with 1 molecule of lead nitrate to produce 1 molecule of cobalt (II) nitrate and 1 molecule of lead (II) bromide.
By RThermal decomposition. CoCO3 =heat=> CoO + CO2 In words. Cobalt carbonate , hear, cobalt oxide and carbon dioxide.
Assuming cobalt(II) nitrate: Co(NO3)2 + Na2CO3 --> CoCO3 + 2NaNO3
Balanced :2 Co2O3 + 3 C ----> 4 Co + 3CO2
To determine the volume of .25M cobalt(III) sulfate required to react completely with 25 mL of .0315M calcium hydroxide, you need to write and balance the chemical equation for the reaction. Then, use the stoichiometry of the balanced equation to determine the amount of cobalt(III) sulfate needed based on the moles of calcium hydroxide used in the reaction. Finally, use the concentration of cobalt(III) sulfate to calculate the volume needed.