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Why do two or more resistors connected in series and parallel have different effective resistances?

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Question

Why do two or more resistors connected in series and parallel have different effective resistances?

Long Answer
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Solution

In a series connection, the same current flows through every resistor and the total potential difference is the sum of the individual potential differences. Hence, the effective resistance is the sum: \[R_{\mathrm{s}}=R_{1}+R_{2}+R_{3}+\cdots\]. It is therefore greater than any individual resistance. In a parallel connection, the same potential difference acts across every resistor, while the total current divides among the branches. Thus, conductances add: \[\frac{1}{R_{\mathrm{p}}}=\frac{1}{R_{1}}+\frac{1}{R_{2}}+\frac{1}{R_{3}}+\cdots\]. Therefore, the effective resistance in parallel is less than the smallest individual resistance. Series connections provide one path for current, whereas parallel connections provide multiple paths.

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Chapter 9: Current Electricity - Intext Questions [Page 214]

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Balbharati Physics [English] Standard 12 Maharashtra State Board
Chapter 9 Current Electricity
Intext Questions | Q 2. | Page 214
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