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Q.The equations of current and voltage in a circuit are as follows: i=3.5sin⁡(628t+π/6)i = 3.5\sin(628t + \pi/6) ampere, v=28sin⁡(628t−π/6)v = 28\sin(628t - \pi/6) volt. Find out

(i) the root mean square value of current,
(ii) the time period, and
(iii) the phase difference between current and voltage.
Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2023Subjective· 3mImportance★★★★★
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Irms=3.5/2=2.47I_{rms}=3.5/\sqrt2=2.47 A; T=2π/628=0.01T=2\pi/628=0.01 s; phase difference =π/3=60∘=\pi/3=60^\circ.

Compare with the standard forms i=I0sin⁡(ωt+ϕ1)i=I_0\sin(\omega t+\phi_1) and v=V0sin⁡(ωt+ϕ2)v=V_0\sin(\omega t+\phi_2). Here I0=3.5I_0=3.5 A, V0=28V_0=28 V, ω=628\omega=628 rad/s, ϕ1=+π/6\phi_1=+\pi/6, ϕ2=−π/6\phi_2=-\pi/6.

  1. RMS current: Irms=I02=3.51.414=2.47 A.I_{rms}=\frac{I_0}{\sqrt2}=\frac{3.5}{1.414}=2.47\text{ A}.
  2. Time period: T=2πω=2π628=6.283628=0.01 s (=10 ms).T=\frac{2\pi}{\omega}=\frac{2\pi}{628}=\frac{6.283}{628}=0.01\text{ s}\ (=10\text{ ms}).
  3. Phase difference between current and voltage: …

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