For which of the following circuit elements will the phase angle ϕ always be positive ?

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Option 4 :
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Concept:

Reactance is the resistance that is offered by a capacitor or an inductor when a.c. (alternating current) flows through a capacitor or inductor respectively.

The resistance offered by an inductor when an alternating current flows through it is called inductive reactance (XL) and is given by:

With ω = 2πf, the inductive reactance becomes:

   ---(1)

The resistance offered by a capacitor when an alternating current flows through it is called capacitive reactance (XC) and is given by

   ---(2)

For a series circuit, with R, L, C, the net impedance is given as:

Using Equations (1) and (2), we get:

And the phase angle (θ) is defined as:

Net Reactance is the imaginary part, i.e. XL - XC

ObservationFor the phase angle to be positive, the net reactance, XL - XC will have to be positive.

Analysis:

Option (1):

The net impedance will be:

For this circuit configuration, the phase angle cannot always be positive, as it depends on both XL and XC. If XC > XL, the net reactance part will be negative.

Option (2):

The net impedance will be:

Z = R + jXL - jXC = 0 + j(0) - jXC

Z = -jXC

The net reactance part is negative here, so the phase angle will not be positive.

Option (3):

The net impedance will be:

The net reactance is -jXC, which is negative. ∴ The phase angle will also be negative.

Option (4):

The net impedance will be:

Z = R + jXL

For this circuit configuration, we observe that the net reactance is jXL, which will always be positive. This will result in a phase angle to be always positive as well.

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