frog pee
When iron reacts with copper(II) chloride, iron chloride and copper are produced. The balanced chemical equation for this reaction is: 2Fe + 3CuCl2 → 2FeCl3 + 3Cu
HCL and copper oxide = Copper chloride+water
The chemical formula for copper oxide is CuO.
The chemical equation for copper (II) chloride dissolving in water is: CuCl2 (s) + H2O (l) → Cu2+ (aq) + 2Cl- (aq). This reaction shows the dissociation of copper (II) chloride into copper ions (Cu2+) and chloride ions (Cl-) in the aqueous solution.
The balanced chemical equation for the reaction between sodium hydroxide and copper(III) chloride is: 2NaOH + 3CuCl3 → 3Cu(OH)3 + 6NaCl This equation shows that two moles of sodium hydroxide react with three moles of copper(III) chloride to produce three moles of copper(III) hydroxide and six moles of sodium chloride.
The chemical formula (not equation) of copper(II) chloride is CuCl2.
CuCl
PbCl2 + Cu
When copper reacts with chlorine, copper chloride is formed. The balanced chemical equation for the reaction is: 2 Cu + Cl₂ → 2 CuCl
When iron reacts with copper(II) chloride, iron chloride and copper are produced. The balanced chemical equation for this reaction is: 2Fe + 3CuCl2 → 2FeCl3 + 3Cu
HCL and copper oxide = Copper chloride+water
Copper cloride is the word equation for copper and clorine hope this helps:)
When magnesium reacts with copper chloride, an exchange reaction occurs in which magnesium replaces copper, resulting in the formation of magnesium chloride and copper. The balanced chemical equation for this reaction is: Mg + CuCl2 → MgCl2 + Cu.
The chemical formula for copper oxide is CuO.
The chemical equation for copper (II) chloride dissolving in water is: CuCl2 (s) + H2O (l) → Cu2+ (aq) + 2Cl- (aq). This reaction shows the dissociation of copper (II) chloride into copper ions (Cu2+) and chloride ions (Cl-) in the aqueous solution.
The balanced chemical equation for the reaction between sodium hydroxide and copper(III) chloride is: 2NaOH + 3CuCl3 → 3Cu(OH)3 + 6NaCl This equation shows that two moles of sodium hydroxide react with three moles of copper(III) chloride to produce three moles of copper(III) hydroxide and six moles of sodium chloride.
The balanced chemical equation for the reaction between aluminum wire and cupric chloride is 2Al + 3CuCl2 → 3Cu + 2AlCl3. In this reaction, aluminum displaces copper from cupric chloride to form copper and aluminum chloride.