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Q.The instantaneous current and voltage of an a.c. circuit are given by i = 10 sin 314t Ampere and v = 50 sin (314t + π/2) Volt. What is the

(a) phase difference between voltage and current?
(1)
(b) power dissipation in the circuit? (1)
Kerala DhseKerala DHSE Plus Two Board 2025Subjective· 2mImportance★★★★★
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Comparing i=10sin⁡314ti = 10\sin314t and v=50sin⁡(314t+π/2)v = 50\sin(314t+\pi/2) shows a 90° phase difference; since cos⁡90°=0\cos90° = 0, the average power dissipated is zero.

(a) Phase difference: Writing both in the standard form i=imsin⁡(ωt+ϕi)i = i_m\sin(\omega t + \phi_i) and v=vmsin⁡(ωt+ϕv)v = v_m\sin(\omega t+\phi_v):

  • i=10sin⁡(314t+0)i = 10\sin(314t + 0)
  • v=50sin⁡(314t+π/2)v = 50\sin(314t + \pi/2)

The phase difference between voltage and current is:

ϕ=ϕv−ϕi=π2−0=π2 rad=90°\phi = \phi_v - \phi_i = \dfrac{\pi}{2} - 0 = \dfrac{\pi}{2}\ \text{rad} = 90°

Voltage leads the current by 90° (characteristic of a purely inductive circuit).

(b) Power dissipation: The average power in an a.c. circuit is: …

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