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- 3- Analyze the system shown below to find the output waveform, Vout, assume the capacitor voltage value is -1.0 V at t-0 and RC-1 msec. -0.5 -1.0 V(1), V 1.0 0.5 R $ AAA f, msecEx: Design a noninverting summer circuit to achieve a 3 summing function for two analog signals 3 filt) = 5 Sin 2πT 10³t and f(t) = Ult). Draw the output waveform.A 100 Hz sinusoid is sampled at thrice the nyquist rate. Then how many samples are obtained in 2sec.
- A coutimuous-time sinusoid has frequency 2 = 70r rads sec and is sampled at a sampling interval of T=0.01 sec. What is the frequency of the discrete-time sinusoid? %3D Oa =70z rads ses OL- 0.7z rada sec Oce= 7x rads sec Od0= 7000r ads seeAttempt All Five Questions 04) Derive the pulse transfer function C(z) / RC)of the figure below CG) HG)Draw the spectrum of the followings modulated signal for the given case: SSB(+) SSB(-)+C DSB LC DSB SC VSB + C
- a classroom.google.com. POF lal 5 jualal.pdf Open with Google Docs Conv 3-make deconvolution between two signals as shown deconv. x(t) h(t) UKa Lursor discete step-signal discete step-signal 25 1.5 0.5 -05 55 05 ntime) 3.5 4 45 nitime) Page EN - a 0 amplitude amplitudeIf the TIME/DIV is set to 0.2 ms, what is the time constant of the circuit? X ms An oscillator with a natural frequency of 380 Hz is driven by a 580 Hz sinusoidal signal. At what frequency does it oscillate?consider the analog signal x(t) shown below . The Nyquist rate is X(t)=3cos(50nt)+sin(200 at) 200 Hz O 100 Hz O less than 200 Hz greater than 200 Hz O
- The positive values of "K" and "a" so that the system shown in the figure below oscillates at a frequency of 2 rad/sec respectively are K(s+ 1) R (s)- C(s) (s + as? + 2s + 1) O 1,0.75 O 1,0.66 2,0.66 2,0.75Briefly explain how the frequency response of an AC RLC circuit can be studied using Lissajou figures.In designing a signal-switching circuit (RC circuit), it was found that a 100-µF capacitor was needed for a time constant of 3 ms. What value resistor is necessary for the circuit? The resonant circuit for a radio broadcast consists of a 120-pF capacitor in series with a 240-uH inductor and a resistance of 400 2, what is the resonant frequency of the circuit? What would be the resonant frequency if the resistance were reduced to 40