MHT CET · Physics · Current Electricity
In the following circuit, a power of 50 watt is absorbed in the section \(A B\) of the circuit. The value of resistance ' \(x\) ' is

- A \(10 \Omega\)
- B \(8 \Omega\)
- C \(6 \Omega\)
- D \(4 \Omega\)
Answer & Solution
Correct Answer
(C) \(6 \Omega\)
Step-by-step Solution
Detailed explanation
\(\begin{array}{ll}
& \text { Using KCL, } \\
& \mathrm{I}=1+1+0.5=2.5 \mathrm{~A} \\
& \mathrm{R}_{\text {total }}=\mathrm{X}+2 \Omega \\
& \mathrm{P}=50 \mathrm{~W} \\
& \mathrm{P}=\mathrm{I}^2 \mathrm{R} \\
\Rightarrow \quad & 50=(2.5)^2(\mathrm{X}+2) \\
\therefore \quad & \mathrm{X}+2=8 \\
\therefore \quad & \mathrm{X}=6 \Omega
\end{array}\)
... (given)
& \text { Using KCL, } \\
& \mathrm{I}=1+1+0.5=2.5 \mathrm{~A} \\
& \mathrm{R}_{\text {total }}=\mathrm{X}+2 \Omega \\
& \mathrm{P}=50 \mathrm{~W} \\
& \mathrm{P}=\mathrm{I}^2 \mathrm{R} \\
\Rightarrow \quad & 50=(2.5)^2(\mathrm{X}+2) \\
\therefore \quad & \mathrm{X}+2=8 \\
\therefore \quad & \mathrm{X}=6 \Omega
\end{array}\)
... (given)
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