The $i - \nu$ curve for an anti-resonant circuit is:

  • A
    $A$
    Option A
  • B
    $B$
    Option B
  • C
    $C$
    Option C
  • D
    $D$
    Option D

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Similar Questions

In the circuit shown, the charge $q$ varies with time $t$ as $q = t^2 - 5$, where $q$ is in coulomb and $t$ is in second. At time $t = 3$ second, the voltage $V_{AB}$ in volt will be:

Match List-$I$ with List-$II$:
List-$I$ List-$II$
$A$. $AC$ generator $I$. Detects the presence of current in the circuit
$B$. Galvanometer $II$. Converts mechanical energy into electrical energy
$C$. Transformer $III$. Works on the principle of resonance in $AC$ circuit
$D$. Metal detector $IV$. Changes an alternating voltage for smaller or greater value

Choose the correct answer from the options given below:

Find the peak current and resonant frequency of the following circuit (as shown in the figure).

An $LCR$ circuit is equivalent to a damped oscillator. $A$ capacitor is charged to a charge $Q_0$ as shown and then connected to $L$ and $R$. If a student plots graphs of the square of the maximum charge on the capacitor $(Q^2_{max})$ versus time for two different values of inductors $L_1$ and $L_2$ $(L_1 > L_2)$, which of the following graphs will correctly represent it? (The diagram is schematic and not drawn to scale.)

Difficult
View Solution

Assertion: Long distance power transmission is done at high voltage.
Reason: At high voltage supply, power losses are less.

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