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The behaviour of an electric circuit analysis demonstrates that when a circuit is switched from one state to another, either by changing the source or by changing the circuit elements, the branch currents and voltages drop from initial values to new values.

These modifications need a short time to settle to permanent values before additional switching or circuit modification is attempted. This period is referred to as transient time, and the value of the variables at this time is referred to as transient value. A major part of Network Theory in Physics is ruled by Transient response and hence, the students of physics should not take it lightly.

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### Transient Response

During its transitory stage of operation, the first-order circuit is regulated by a first-order linear differential equation. The first-order circuit has resistance(s) and one inductor or capacitor, i.e. the resistance and one energy storage component. A second-order circuit, on the other hand, has two separate energy storage units with or without resistance addition (s).

When an input is applied to an electric circuit, the output requires a certain amount of time to attain a steady state. As a result, the output will be in a transitory condition until it reaches a steady state. As a result, transient reaction refers to the response of an electric circuit during a transient condition. For high values of 't,' the transient reaction will be nil. This value of 't' should ideally be infinite. However, five-time constants are more than plenty. Of course, you can look up our Transient Response of Passive Circuits assignment help online for an even better understanding.

### What Happens When a Transient is Present or Absent?

Transients arise in the response as a result of a quick change in the sources applied to the electric circuit and/or switching action. There are two options for switching. These are the opening and closing switches.

If an electrical circuit or network simply has resistances, the transient component will not be present in the response. Because a resistor can change the voltage and current.

Because of the presence of energy-storing devices such as inductors and capacitors, the transient portion arises in the response of an electrical circuit or network. Because they cannot instantaneously modify the energy trapped in those components.

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Inductor Behaviour

Let us assume the switching event occurs to be t = 0. When the switching operation occurs, the inductor current does not change instantly. That is, the value of the inductor current immediately following the switching event will be the same as it was immediately prior to the switching activity.

Capacitor Behaviour

When the switching operation occurs, the capacitor voltage does not change instantly like the inductor current. That is, the value of the capacitor voltage immediately after the switching operation will be the same as it was immediately before the switching event.

When the switching operation occurs, the capacitor voltage does not change instantly like the inductor current. That is, the value of the capacitor voltage immediately after the switching operation will be the same as it was immediately before the switching event.

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