Q.While charging the lead storage battery ______________.
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Start your 14-day free trial to unlock the full solution →Using the NCERT textbook's own description of the lead storage battery — which keeps the electrode labels "anode" (the Pb plate) and "cathode" (the PbO2 plate) fixed from the discharge cycle — charging reverses the discharge reactions: PbSO4 on the anode is reduced back to Pb, and PbSO4 on the cathode is oxidised back to PbO2. The correct option is (i).
Why this approach works
A lead storage battery is a secondary cell — it can be recharged by passing a current opposite to the direction of its discharge current. NCERT's own chapter text describes this explicitly: "On charging the battery the reaction is reversed and PbSO4(s) on anode and cathode is converted into Pb and PbO2 respectively." This sentence is the key to answering the question correctly — it tells us the textbook keeps "anode" as a FIXED name for the Pb plate and "cathode" as a FIXED name for the PbO2 plate, in both the discharge and charge cycles, rather than re-assigning the names based on which reaction occurs where during charging.
(Note: this differs from the strict, universal IUPAC convention, under which "anode" always means "wherever oxidation occurs at this moment" — under that stricter convention, the Pb plate's role during charging would technically be reduction, so it would be called the "cathode" for that half-cycle. NCERT does not use this stricter convention for describing the lead storage battery; it keeps the plate labels fixed. Exam answers for this question should follow the source textbook's own convention.)
Step-by-step reasoning
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Recall the discharge reactions (spontaneous, defines the fixed plate names):
- Anode (Pb plate): (oxidation)
- Cathode (PbO2 plate): (reduction)
After discharge, both plates are coated with .
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Charging reverses both reactions, but the plate LABELS stay the same as during discharge:
- At the anode (Pb plate):
PbSO4 is **reduced** back to spongy Pb.
- At the cathode (PbO2 plate):
PbSO4 is **oxidised** back to PbO2. …
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