6.(20) SGI:V₁=1/0° SD1=1 jQG2 :V2=? SD2-1 Z=j0.5, (a)Find QG2 for |V₂|=1 (b) and V₂ ?(c) If QG2=0, could be supplied load SD2 ?(d) and
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- (a) What are the voltages at vC1 and vC2 in the circuitas shown = −1.6 V if IEE = 2.0 mA,RC = 350 , and VREF = −1.25 V? (b) RedesignIEE and RC in the current switch described in part(a) to operate at one-fifth of the power with the samevoltages.using the equations; if I = 2 A and r1 = 0.4 Ω, the potential difference, in volts, Vd - Vc is?The electrical model of a biopotential electrode is given belowwith the given values. (a)Plot the absolute impedance of this electrode(i.e.,|Z|) with respect to the frequency using a python script and (b) discuss the frequency range to reachthe minimum absolute impedance value on this electrode. Rd:26 kΩ Rs: 6 kΩ
- What is Mesh Analysis and when is it effective to use? What is Nodal Analysis and when is it effective to use?Consider a PV module with the following external parameters at STC: Pmax = 320 W, VOC = 45 V, ISC = 8 A, NOCT =40 °C and the temperature coefficient of power is −1 W/°C. a) If the ambient temperature rises to 35 °C while the irradiance is 1,000 W/m2, what is the cell leveltemperature, calculated with the NOCT model?b) What is the new power output of the PV module under the new ambient temperature of 35 °C and 1,000W/m2irradiance?a. Find the total power supplied by the ideal source.b. Find the power dissipated and lost within thenonideal source.c. What is the power supplied by the source to thecircuit as modeled by the load resistance?d. Plot the terminal voltage and power supplied to thecircuit as a function of current.Repeat IT = 0, 5, 10, 20, 30 A.VS = 12 V RS = 0.3
- According to the circuit given in the figure, VT=25mV, |VBE|=0.7V, R1=1487.51Kohm, R2= 7.42Kohm, R3= 6.71Kohm , R4= 2.87Kohm, VCC= 13.00V, VEE= 1.00V , VA=28.21V , Beta= 120.00 , Rs= 36.18ohm, Ry= 15.61Kohm Calculate the IC current, Ri, R0 and voltage gain(V0/V1) according to the source by performing a complete analysis. When performing your operations, 2 steps will be taken after the point. choose the closest one from the stylish ones according to the +/-10% margin of error. There is only 1 correct answer to the question.Subject : ELECTRONIC CIRCUIT ANALYSIS AND DEVICES Please give the DC ANALYSIS circuit and AC EQUIVALENT CIRCUIT of this problem before proceeding to find letters a, and b. (Note : Neglect Vbe)Given B= 100, Si=0.7 (voltage drop) Find a) Avs b) Ais c). What are Ac voltage at each point indicated (A,B,C,D,E) in the circuit with Vs = 100mVp-p
- Explain the difference between cumulative- and differential-compounded connections.In the circuit given above VS = 20,0V, R1 = 7kΩ, R2 = 7kΩ, If RL = 17,0kΩ and Vzener = 6,4, how many mW will Pzener be?For the Circuit shown, Let: VCC = 3.3V R1 = 85 kΩ RE = 500 Ω R2 = 35 k Ω RC = 4k Ω β = 150 Using approximation, determine the Q-point parameters: IBQ, ICQ, and VCEQ. Indicate the exact numerical values, following the given unit.