Q.Write balanced chemical equation for the following reactions:
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Start your 14-day free trial to unlock the full solution →Three redox reactions balanced by the ion-electron and oxidation-number methods: (i) permanganate oxidises to in acid, (ii) hydrazine reduces chlorate to chloride in base, and (iii) dichlorine heptaoxide oxidises peroxide to oxygen in acid.
Redox reactions involve the transfer of electrons between species. Balancing them requires accounting for both mass and charge. Two systematic methods exist: the ion-electron (half-reaction) method splits the reaction into oxidation and reduction half-reactions, balances each separately, then recombines them; the oxidation-number method tracks changes in oxidation states and uses coefficients to equalise electron loss and gain. Both guarantee a balanced equation, but the ion-electron method is often cleaner for ionic species in solution.
(i) Permanganate and sulphur dioxide in acidic medium (Ion-electron method)
The permanganate ion is a powerful oxidiser. In acidic solution it is reduced to , while (which can be written as in aqueous form) is oxidised to the hydrogensulphate ion .
Step 1: Write the skeletal half-reactions.
Reduction:
Oxidation:
Step 2: Balance atoms other than O and H.
Both Mn and S are already balanced.
Step 3: Balance oxygen by adding .
Reduction:
Oxidation (the left side has 2 O in , the right has 4 O in , so add 2 on the left):
Step 4: Balance hydrogen by adding (acidic medium).
Reduction (right side has 8 H, so add 8 on the left):
Oxidation (left side has 4 H, right has 1 H, so add 3 on the right):
Step 5: Balance charge by adding electrons.
Reduction (left charge: ; right charge: ; add 5 to the left):
Oxidation (left charge: 0; right charge: ; add 2 to the right):
Step 6: Equalise electrons and add the half-reactions.
Multiply the reduction half-reaction by 2 and the oxidation by 5:
Add and cancel , from the right with part of the left, and from the right with part of the left:
The balanced ionic equation is:
In fully molecular form (adding spectator ions):
(ii) Hydrazine and chlorate in basic medium (Oxidation-number method)
Hydrazine is oxidised to nitric oxide , and chlorate is reduced to chloride .
Step 1: Assign oxidation numbers.
In : each N is .
In : N is .
Change per N atom: , an increase of 4. For two N atoms in , total increase = electrons lost.
In : Cl is .
In : Cl is .
Change: , a decrease of 6 electrons gained per Cl.
Step 2: Equalise electron transfer.
LCM of 8 and 6 is 24.
Multiply by 3 (so electrons lost).
Multiply by 4 (so electrons gained).
Skeletal equation:
(Note: 3 molecules of give N atoms, hence 6 .)
Step 3: Balance oxygen with .
Left: O in chlorate.
Right: O in NO.
Deficit on right: O, so add on the right:
Step 4: Balance hydrogen with (basic medium).
Left: H in hydrazine.
Right: H in water.
Hydrogen is already balanced. However, we must check charge.
Step 5: Balance charge.
Left charge: .
Right charge: .
Charge is balanced.
The equation is fully balanced:
In basic medium, if hydrogen is not balanced after adding water, add to the side deficient in H and an equal number of to the other side (or use and to balance H and O together). Here, the equation balanced naturally.
(iii) Dichlorine heptaoxide and hydrogen peroxide in acidic medium (Ion-electron method) …
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