An AC circuit contains a resistance of \(1~\text{k}\Omega,\) a capacitor of \(0.1~\mu \text{F}\) and an inductor of \(1~\text{mH}\) connected in series. The resonance frequency of the circuit is approximately the following:
1. \(10.1\) kHz
2. \(20.7\) kHz
3. \(15.9\) kHz
4. \(13.5\) kHz
Subtopic:  Different Types of AC Circuits |
 58%
Level 3: 35%-60%
NEET - 2026
Please attempt this question first.
Hints

The peak value of an alternating current is \(5\) A and frequency is \(60\) Hz. How long will the current, starting from zero, take to reach the peak value?
1. \(\dfrac{1}{240} ~\text{s}\)
2. \(\dfrac{1}{30}~\text{s}\)
3. \(\dfrac{1}{120} ~\text{s}\)
4. \(\dfrac{1}{60} ~\text{s}\)
Subtopic:  RMS & Average Values |
 52%
Level 3: 35%-60%
NEET - 2026
Please attempt this question first.
Hints

To an AC power supply of \(220~\text V\) at \(50~\text{Hz},\) a resistor of \(20~\Omega,\) a capacitor of reactance \(25~\Omega\) and an inductor of reactance \(45~\Omega\) are connected in series. The corresponding current in the circuit and the phase angle between the current and the voltage is, respectively:
1. \(15.6~\text {A and} ~30^\circ\)
2. \(15.6~\text {A and} ~45^\circ\)
3. \(7.8~\text {A and} ~30^\circ\)
4. \(7.8~\text {A and} ~45^\circ\)
Subtopic:  Different Types of AC Circuits |
Level 3: 35%-60%
NEET - 2025
Please attempt this question first.
Hints
Please attempt this question first.

advertisementadvertisement

In an ideal transformer, the turns ratio is \(\frac{N_p}{N_s}=\frac{1}{2} .\) The ratio \(V_s:V_p\) is equal to (the symbols carry their usual meaning):
1. \(2:1\)
2. \(1:1\)
3. \(1:4\)
4. \(1:2\)
Subtopic:  Transformer |
 69%
Level 2: 60%+
NEET - 2024
Hints

\(10~\mu\text F\) capacitor is connected to a \(210~\text V,50~\text{Hz}\) source as shown in the figure. The peak current in the circuit is nearly \((\pi = 3.14)\):
1. \(0.93~\text A\) 2. \(1.20~\text A\)
3. \(0.35~\text A\) 4. \(0.58~\text A\)
Subtopic:  RMS & Average Values |
 55%
Level 3: 35%-60%
NEET - 2024
Hints

\(L,C\) and \(R\) represent the value of inductance, capacitance, and resistance, respectively. The factor which has the same dimensions as that of the inverse of the resonance frequency is:
1. \(\sqrt{LC}\) 2. \(\sqrt{\dfrac{L}{C}}\)
3. \(\dfrac{C}{L}\) 4. \(\dfrac{R}{L}\)
Subtopic:  Different Types of AC Circuits |
 78%
Level 2: 60%+
NEET - 2024
Hints

advertisementadvertisement

In the circuit shown below, the inductance \(L\) is connected to a source. The current flowing in the circuit is \({I=I_{0}\sin\omega t.}\) The voltage drop \((V_L)\) across \(L\) is:
1. \(\omega L~I_0\sin\omega t\) 2. \(\frac{{I}_0}{\omega{L}}\sin\omega t\)
3. \(\frac{{I}_0}{\omega{L}}\cos\omega t\) 4. \(\omega L~I_0\cos\omega t\)
Subtopic:  Different Types of AC Circuits |
 50%
Level 3: 35%-60%
NEET - 2024
Hints

A step-up transformer is connected to an AC mains supply of \(220~\text V\) to operate at \(11000~\text V, 88~\text W.\) The current in the secondary circuit, ignoring the power loss in the transformer, is:
1. \(8~\text{mA}\)
2. \(4~\text{mA}\)
3. \(0.4~\text{A}\)
4. \(4~\text{A}\)
Subtopic:  Transformer |
 63%
Level 2: 60%+
NEET - 2024
Hints

An AC source is connected to a capacitor \(C\). Due to decrease in its operating frequency:
1. capacitive reactance remains constant
2. capacitive reactance decreases.
3. displacement current increases.
4. displacement current decreases.
Subtopic:  Different Types of AC Circuits |
 52%
Level 3: 35%-60%
NEET - 2023
Hints

advertisementadvertisement

\(12~\text{V},60~\text{W}\) lamp is connected to the secondary of a step-down transformer, whose primary is connected to AC mains of \(220~\text{V}\). Assuming the transformer to be ideal, what is the current in the primary winding?
1. \(0.37~\text{A}\)
2. \(0.27~\text{A}\)
3. \(2.7~\text{A}\)
4. \(3.7~\text{A}\)
Subtopic:  Transformer |
 75%
Level 2: 60%+
NEET - 2023
Hints