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for each reaction, write the chemical formulae of the oxidized reactant…

Question

for each reaction, write the chemical formulae of the oxidized reactants in the space provided. write the chemical formulae of the reduced reactants in the space provided.

fei₂(aq) + mg(s) → mgi₂(aq) + fe(s)
reactants oxidized:
reactants reduced:

cucl₂(aq) + mg(s) → mgcl₂(aq) + cu(s)
reactants oxidized:
reactants reduced:

2agno₃(aq) + mg(s) → 2ag(s) + mg(no₃)₂(aq)
reactants oxidized:
reactants reduced:

Explanation:

Step1: Determine oxidation states

Oxidation state of \(Mg\) in \(Mg(s)\) is \(0\). In \(MgI_2(aq)\), \(Mg\) is \(+2\). Oxidation state of \(Fe\) in \(FeI_2(aq)\) is \(+2\), in \(Fe(s)\) is \(0\).
For \(CuCl_2(aq)+Mg(s)\to MgCl_2(aq)+Cu(s)\), \(Mg\) goes from \(0\) to \(+2\), \(Cu\) from \(+2\) to \(0\).
For \(2AgNO_3(aq)+Mg(s)\to 2Ag(s)+Mg(NO_3)_2(aq)\), \(Mg\) from \(0\) to \(+2\), \(Ag\) from \(+1\) to \(0\).

Step2: Identify oxidized and reduced reactants

Oxidized reactant: loses electrons (oxidation state increases). Reduced reactant: gains electrons (oxidation state decreases).

Answer:

  • For \(FeI_2(aq)+Mg(s)\to MgI_2(aq)+Fe(s)\):
  • reactants oxidized: \(Mg\)
  • reactants reduced: \(FeI_2\)
  • For \(CuCl_2(aq)+Mg(s)\to MgCl_2(aq)+Cu(s)\):
  • reactants oxidized: \(Mg\)
  • reactants reduced: \(CuCl_2\)
  • For \(2AgNO_3(aq)+Mg(s)\to 2Ag(s)+Mg(NO_3)_2(aq)\):
  • reactants oxidized: \(Mg\)
  • reactants reduced: \(AgNO_3\)