Question:

In an ideal parallel $LC$ circuit, the capacitor is charged by connecting it to a $DC$ source which is then disconnected. The current in the circuit

Updated On: Jul 5, 2022
  • becomes zero instantaneously
  • grows monotonically
  • decays monotonically
  • oscillates instantaneously
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The Correct Option is D

Solution and Explanation

When capacitor is connected to a DC source and then disconnected, it gets charged and then it starts discharging through the inductor. When capacitor $C$ is fully charged to $q_0$ , the current in inductor $L$ is zero, at this instant an amount of energy $ \frac{ 1}{ 2} \frac{ q_0^2 }{ C}$ is stored in electric field between the plates of the capacitor.
When circuit is closed, the capacitor begins to discharge through the inductor causing current to flow. The energy or electric field between the capacitor plates has transferred to magnetic field By Lenz's law the dying magnetic field induces an emf in the inductance in the same direction as current. Hence, L-C circuit sets up oscillations.
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Concepts Used:

Alternating Current

An alternating current can be defined as a current that changes its magnitude and polarity at regular intervals of time. It can also be defined as an electrical current that repeatedly changes or reverses its direction opposite to that of Direct Current or DC which always flows in a single direction as shown below.

Alternating Current Production

Alternating current can be produced or generated by using devices that are known as alternators. However, alternating current can also be produced by different methods where many circuits are used. One of the most common or simple ways of generating AC is by using a basic single coil AC generator which consists of two-pole magnets and a single loop of wire having a rectangular shape.

Application of Alternating Current

AC is the form of current that are mostly used in different appliances. Some of the examples of alternating current include audio signal, radio signal, etc. An alternating current has a wide advantage over DC as AC is able to transmit power over large distances without great loss of energy.