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Q.A metal wire of resistance 'R' and length 'l' is bent to form a circular loop. L and M are two diametrically opposite points of the loop.

i) What is the equivalent resistance across the points L and M ?
ii) How will the resistance across the points L and M change, if the temperature of the loop is increased ?
Goa GbshseGBSHSE Class 12 Board Exam 2018Subjective· 2mImportance★★★★★
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The loop splits into two semicircular arcs of resistance R/2 each, in parallel between L and M, giving R/4; heating a metal wire increases its resistance, so the R/4 value also increases with temperature.

i) Equivalent resistance across L and M

The wire of total resistance RR is bent into a full circle. L and M are diametrically opposite, so they divide the loop into two equal semicircular arcs, each with resistance

Rarc=R2R_{arc} = \dfrac{R}{2}

These two arcs connect the same two points L and M, so they are in parallel:

1RLM=1R/2+1R/2=4R  ⟹  RLM=R4\dfrac{1}{R_{LM}} = \dfrac{1}{R/2} + \dfrac{1}{R/2} = \dfrac{4}{R} \implies R_{LM} = \dfrac{R}{4}

ii) Effect of increasing temperature

For a metallic conductor, resistance increases with temperature (positive temperature coefficient of resistance): …

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