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NCERT Exemplar · Q53

Q.Match the terms given in Column I with the units given in Column II.
Column I:

(i) Λm\Lambda_m
(ii) ECellE_{Cell}
(iii) κ\kappa
(iv) G∗G^*
Column II:
(a) S cm−1S\ cm^{-1}
(b) m−1m^{-1}
(c) S cm2 mol−1S\ cm^2\ mol^{-1}
(d) VV
Chhattisgarh CgbseShort· 2mImportance★★★★★
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This is a matching problem linking four electrochemical quantities to their correct SI or practical units. The key is to recall the definitions: molar conductivity Λm\Lambda_m is conductivity per mole, so its unit is S cm2 mol−1S\ cm^2\ mol^{-1}; cell potential ECellE_{Cell} is voltage, so its unit is VV; conductivity κ\kappa is the reciprocal of resistivity, so its unit is S cm−1S\ cm^{-1}; and the cell constant G∗G^* is the ratio of length to area, so its unit is m−1m^{-1}. The correct matches are: (i)→(c), (ii)→(d), (iii)→(a), (iv)→(b).

The question asks you to match four fundamental electrochemical quantities with their units. This is not about memorising a table — it is about understanding what each quantity physically represents. Once you know the definition, the unit follows naturally.

Let us go through each one.

1. Molar conductivity Λm\Lambda_m

Molar conductivity is defined as the conductivity of a solution divided by the molar concentration of the electrolyte:

Λm=κc\Lambda_m = \frac{\kappa}{c}

Here κ\kappa has units of S cm−1S\ cm^{-1} (siemens per centimetre) and cc has units of mol cm−3mol\ cm^{-3} (or more commonly mol L−1mol\ L^{-1}, but we must be careful with volume units). In practice, κ\kappa is measured in S cm−1S\ cm^{-1} and concentration in mol cm−3mol\ cm^{-3}, so:

Unit of Λm=S cm−1mol cm−3=S cm2 mol−1\text{Unit of } \Lambda_m = \frac{S\ cm^{-1}}{mol\ cm^{-3}} = S\ cm^2\ mol^{-1}

That matches option (c).

Tip

A common shortcut: molar conductivity always has "per mole" in the denominator and "area" in the numerator — think of it as conductivity per unit concentration, which gives S cm2 mol−1S\ cm^2\ mol^{-1}.

2. Cell potential ECellE_{Cell}

The electromotive force (emf) of a cell is simply the potential difference between its two electrodes. The SI unit of electric potential is the volt (VV). So ECellE_{Cell} is measured in volts. That matches option (d).

3. Conductivity κ\kappa

Conductivity is the reciprocal of resistivity (ρ\rho). Resistivity has units of Ω cm\Omega\ cm (ohm-centimetre), so:

κ=1ρ⇒Unit of κ=1Ω cm=S cm−1\kappa = \frac{1}{\rho} \quad \Rightarrow \quad \text{Unit of } \kappa = \frac{1}{\Omega\ cm} = S\ cm^{-1}

Here SS (siemens) is the unit of conductance, equal to Ω−1\Omega^{-1}. So κ\kappa has units S cm−1S\ cm^{-1}, matching option (a). …

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