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GUJCET · Physics · Current Electricity
The network shown in the figure, the equivalent resistance between points \(X\) and \(Y\) will be ________ \(\Omega\) Value of each resistor is \(2 \Omega\).

- A 1
- B 2
- C 4
- D \(\frac{2}{3}\)
Answer & Solution
Correct Answer
(A) 1
Step-by-step Solution
Detailed explanation
(A)

In below branch equivalent resistance between XZ and YZ
\(\begin{array}{l}R_1=\frac{2 \times 2}{2+2} \\ R_1=1 \Omega \\ R_2=\frac{2 \times 2}{2+2} \\ R_2=1 \Omega\end{array}\)

Now equivalent resistance of series connection of \(1 \Omega\) and \(1 \Omega\)
\(\begin{aligned} R _3 & =1+1 \\ & =2 \Omega\end{aligned}\)

Now from above figure equivalent resistance for parallel connection
\(\begin{array}{l} R _{e q}=\frac{2 \times 2}{2+2} \\ R _{e q}=\frac{4}{4} \\ R _{e q}=1 \Omega\end{array}\)

In below branch equivalent resistance between XZ and YZ
\(\begin{array}{l}R_1=\frac{2 \times 2}{2+2} \\ R_1=1 \Omega \\ R_2=\frac{2 \times 2}{2+2} \\ R_2=1 \Omega\end{array}\)

Now equivalent resistance of series connection of \(1 \Omega\) and \(1 \Omega\)
\(\begin{aligned} R _3 & =1+1 \\ & =2 \Omega\end{aligned}\)

Now from above figure equivalent resistance for parallel connection
\(\begin{array}{l} R _{e q}=\frac{2 \times 2}{2+2} \\ R _{e q}=\frac{4}{4} \\ R _{e q}=1 \Omega\end{array}\)
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