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Q.The specific resistances of copper, silver and constantan are 1.78×10−6 Ω1.78\times10^{-6}\,\Omega-cm, 1×10−6 Ω1\times10^{-6}\,\Omega-cm and 4.8×10−6 Ω4.8\times10^{-6}\,\Omega-cm respectively. Which is the best conductor and why? OR In which way should the cells be combined to get maximum current, when the external resistance is very high compared to the total internal resistance of the cells?

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2025Subjective· 1mImportance★★★★★
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Comparing resistivities shows silver has the lowest value, making it the best conductor; for the alternative, cells in series maximize current when external resistance dominates.

Which is the best conductor?

The specific resistance (resistivity) ρ\rho measures how strongly a material opposes the flow of current -- the lower the resistivity, the better the conductor (since resistance R=ρl/AR=\rho l/A is directly proportional to ρ\rho).

Given:

ρCu=1.78×10−6 Ω-cm,ρAg=1×10−6 Ω-cm,ρconstantan=4.8×10−6 Ω-cm\rho_{Cu} = 1.78\times10^{-6}\,\Omega\text{-cm}, \quad \rho_{Ag} = 1\times10^{-6}\,\Omega\text{-cm}, \quad \rho_{constantan} = 4.8\times10^{-6}\,\Omega\text{-cm}

Silver has the smallest resistivity of the three, so silver is the best conductor.

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