-3dB vomin 2c = {2R Find the (-3dB) frequency? R ww C R-2KR C=/μF
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- Q1(a) Analyze the polar form of this waveform in Figure Q1(a). 60 V 310⁰ Figure Q1(a)The pictuere shows double-beam c.r.o. waveform traces. Find the ff:• Amplitude of P• Peak-to-peak value of Q• Periodic time of both waveforms• Frequency of both waveforms• R.m.s. value of P• R.m.s. value of Q• Phase displacement of waveform Q relativeto waveform PQ1(a) Analyze the polar form of this waveform in Figure Q1(a). 310⁰ Figure Q1(a) et
- 20 Find, how to relate the frequency and time period in a square waveform? a. not related b. square proportional c. directly proportional d. inversely proportionalThe peak to peak distance of a sinusoidal waveform displayed on a C.R.O. screen is 9 cm and the 'volts/cm' switch is on 45 V/cm. The peak voltage is given by 405.00 V 202.50 V 5.00 V O 286.33 VA double beam oscilloscope displays 2sine waveforms A and B. The time/cm switch is on 100us/cm and the volt/cm switch on 2V/cm. The width of each complete cycle is 5cm for both the waveforms. The height of waveforms A and B are 2cm and 2.5cm respectively. Determine their a) frequency, b) phase difference, and c) peak and r.m.s value of voltages. The difference between the two waveforms is 0.5 cm.
- A 15-F AC capacitor is connected in series with a 50 resistor. The capacitor has a voltage rating of 600 WVDC. The capacitor and resistor are connected to a 480-V, 60-Hz circuit. Is the voltage rating of the capacitor sufficient for this connection?Q1(a) Analyze the polar form of this waveform in Figure Q1(a). 310⁰ Figure Q1(a) extWhat is the approximate voltage amplitude and frequency of the waveform below