LR Circuit with DC Source
LR Circuit with DC Source: Overview
This topic covers concepts such as DC Circuit, L-R DC Circuit, Current Growth in L-R DC Circuit, Time Constant in L-R DC Circuit, Half Life in L-R DC Circuit, Derivation of Growth of Current in L-R DC Circuit, and so on.
Important Questions on LR Circuit with DC Source
A coil having inductance and resistance is connected to a battery of emf at . If and are the time for and completion of the current growth in the circuit, then will be-

The time constant of the given circuit, containing an inductor and few resistors, is

In the circuit shown here, the point '' is kept connected to point '' till the current flowing through the circuit becomes constant. Afterwards, suddenly, point '' is disconnected from point '' and connected to point '' at time . Ratio of the voltage across resistance and the inductor at will be equal to:

In the given circuit and are switches. is closed for a long time and remains open. Now is also closed. Here and . Let is the magnitude of rate of change of current (in ), just after is closed. The value for the inductor is . Then find .

In the figure shown the battery is ideal. The values are . The current through the battery at after closing the switch is:

When a circuit with is connected in series to an source of voltage a maximum rms current of is observed at frequency If this circuit is now connected to a battery of emf and internal resistance of the current will be

The value of time constant for given circuit is

In the given branch of a circuit a current is flowing, where is time in second. At the potential difference between points and is :

In the circuit shown in figure switch S is closed at time .The charge which passes through the battery in one time constant is :

In which of the following circuit is the current maximum just after the switch S is closed:

A solenoid has an inductance of and a resistance of . If it connected to a battery, how long will it take for the current to reach of its final value?

Two resistance and and a pure inductance of are connected to a battery through a key as shown in the figure. The key is tapped at . Find the final value of current in the resistor :

An circuit having and is switched on at The power dissipated in joule heating at is

A metallic core made of paramagnetic substance and of same size as that of the air core solenoid (self induction ) is inserted suddenly within the space of the core solenoid as shown in the figure. (ignore resistance of the solenoid as well as the end effects) and assume solenoid is of infinite length. Identify the correct option. Assume that charge flowing to the circuit is negligible.

When an inductor coil carrying a steady current is short-circuited, the current in it becomes times its initial value in a time . The time constant of the choke coil is:

In the circuit shown in the figure switch is closed at . Then which of the following statements is WRONG.

In the circuit as shown in figure, the switch is closed at . Mark the incorrect statement of the following:

The time constant of a circuit is , when a resistance of is connected in series in a previous circuit then time constant becomes second, then the self inductance of the circuit is:-

In the inductive circuit given in the figure, the current rises after the switch is put on. At instant when the current is then potential difference across the inductor will be :-

coil of inductance and resistance is connected to a source of voltage . The current reaches half of its steady value in :-
