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Q.Write one merit and one de-merit of alternating current in comparision of direct current. Obtain expression for followings in a pure inductive alternating current circuit- i) Instantaneous value of current ii) Reactance of circuit iii) Peak value of current. Draw curve for power in pure inductive circuit. [1 + 2 + 1 = 4]

Rajasthan RbseRajasthan Board Senior Secondary Examination 2018Subjective· 4mImportance★★★★★
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AC's key merit is easy transformation/transmission and its demerit is greater danger; in a pure inductor i = I₀sin(ωt − π/2), X_L = ωL, I₀ = V₀/ωL, and average power is zero.

Energy emitted versus wavelength blackbody different
Energy emitted versus wavelength blackbody different

Merit of AC over DC: An alternating voltage can be easily stepped up or stepped down using a transformer, so it can be transmitted over long distances at high voltage (low current) with very small power (I²R) loss and then stepped down for use.

Demerit of AC over DC: AC is more dangerous than DC because its peak value is √2 times its RMS value; also, AC cannot be used for processes like electrolysis, electroplating or charging of storage cells (which need steady DC).

Pure inductive AC circuit: Let an inductor of inductance LL be connected to an AC source v=V0sin⁡ωtv = V_0\sin\omega t. Since a pure inductor has no resistance, the applied voltage balances the back-EMF:

v=Ldidt⇒V0sin⁡ωt=Ldidtv = L\frac{di}{dt} \quad\Rightarrow\quad V_0\sin\omega t = L\frac{di}{dt}

di=V0Lsin⁡ωt dtdi = \frac{V_0}{L}\sin\omega t\,dt

Integrating:

i=−V0ωLcos⁡ωt=V0ωLsin⁡ ⁣(ωt−π2)i = -\frac{V_0}{\omega L}\cos\omega t = \frac{V_0}{\omega L}\sin\!\left(\omega t - \frac{\pi}{2}\right)

i) Instantaneous current: i=I0sin⁡ ⁣(ωt−π2)i = I_0\sin\!\left(\omega t - \dfrac{\pi}{2}\right) — the current lags the voltage by 90° (π/2).

ii) Reactance: comparing, the opposition to current (inductive reactance) is

XL=ωL=2πfLX_L = \omega L = 2\pi f L

iii) Peak value of current:

I0=V0XL=V0ωLI_0 = \frac{V_0}{X_L} = \frac{V_0}{\omega L}

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