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- Determine the rms value for each of the waveforms below.(b) An engineer is required to analyse a sinusoidal waveform for the voltage and current using oscilloscope. The voltage waveform produced Root Mean Square (RMS) value at 75 V with positive-going zero crossing at 30°. While the RMS value of current is 66.71 A with negative-going zero crossing at 0.349 rad. Assume the frequeney of both waveforms is 50 Hz. (i) Sketch the voltage and current waveform in the same axis by showing the important point. (ii) Determine instantaneous voltage when t = 8ms . (iii) Determine phase relationship between voltage and current waveform.The single phase AC sinusoidal voltage then the rms value of the voltage v is .........
- b) Determine the voltage ?(?) and current ?(?) sinusoidal forms. Sketch one cycle of the waveforms in the same x-axis. Clearly indicating the peak value and the period of each waveform and the phase difference (in milliseconds) between the two waveforms. c) Determine the values of resistance R and inductance L. d) Determine the phasors ?L, ?r and ?c. e) Sketch the phasor diagram showing ?s, ?r, ?r, ?c and ?.Find the average and r.m.s. values of the a.c. voltage whose waveform is given in the figurebelow. a. Average value b. RMS valueGiven the RMS value of the following voltage waveform is sqrt(8/3) , determine the maximum value, B, of the waveform.
- Give the Formulas of Average Value and RMS Value of a waveformH.W: A sinusoidal waveform, 3v2coswt, is added to a second 4/2coswzt, determine the rms value of the sum, if (a) W1 = w2, (b) w1 # W2 Ans: a=7, b=5Define the following: a. R.m.s value of a sinusoidal wave. b. Form factor , Peak factor. c. Power triangle ( with figure)