make a bode plot using semilog paper
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make a bode plot using semilog paper
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- VI Find v₁ and v2 for @= 10000 rad/sec. Sketch the waveforms for vs, vi and v2. Repeat for ( = 100 rad/sec. Zc = jwc DC VDC PR₁ VID² v₁ = 10 cos(cor) V R₂ Rs 10 Ω Rs 1.0 ΚΩ 10.0 μF HH 20 V 1.0 ΚΩ R2 www. R₁ 10.0 μF HH + V₁ 10.0 kn - AC od R. //R₂ www RL +51 _w_111 + RL V₂ IGiven V 20 sin(@t + 60°) and V2 = 60 cos(ot- 10°). What is the phase angle %3D between the waveforms? All terms to be expressed in cosine terms. 60 80 20 40 Moving to another question will save this response. a hp O O OAssume temperature is 300K unless otherwise stated. Boltzmann's constant is 1.38 · 10-23 J · K-1 Q1) Calculate the thermal voltage spectral density for the following circuits. a) 502 b) 2002 V 200 V250 50Ω V50 c) 2M5 1M67 VIM
- I) Convert the following phasors to the time domain if the frequency is I KHz. . h-3 A a) k- 12 /40 b)HW: Sketch the waveforms Vc and Vo versus time. 9V Vin 1mA 9V I Vin 23 t(msec) 6 2 1uF 8 1 4 3 5 Vo 1uF 5. 6. 2. 8 R 4 R 555 Q atm 100A 0.33 μF capacitor is charged to 150 VDC. It is then connected to another capacitor of capacitance 4 times the capacitance of it. Find the loss of energy. Select one O a. Not on the list b. 29.71 x 10 J c. 25.14 x 10 d. 29.17 x 10 J e. 39.35 x 10¹
- The applied voltage V is given by (0+j10) and the current is (0.8+j.06)A. Determine th evalue of R and X and indicate if X is inductive or Capacitive.If the V = 30 rms, find the magnitude of the apparent power S using the circuit below. J4 92 Vrms -j2 92 HH 892What is the complex expression for a given alternating current i = 250 sin(wt-25 deg)? a. 227 + j106 b. 160 - j75 c. 227 - j106 d. 160 + j75
- Find the mean current and the RMS current from t=0.0s to t=4.0s if i= (1.0t+1.0/t)A Round to the nearest hundreth. Mean A RMS A Submit AnswerGet the sum of two signals.V1 = a sin (120π t + b)V2 = c sin (120π t + d)Given:a = 38b = -15°c = 20d = 5°نقطتان (2) 10 V * e ÄA 0 15 25 the value of the frequency of the sinusoidal waveform in the figure is equal to 35 t (ms) 60 Hz O 100 cycle O 377 rad/s O 314 rad /s 50 Hz O