Given the circuit in the figure, obtain the Norton equivalent as viewed from terminals: (a) a-b (b) c-d b 602 492 ww ww ос 120 V ww 302 ④ 6A 202 d
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- The ratio of the forward voltage to the forward current is called the characteristic impedance? What is forward voltage? What is the forward current? What is characteristic impedance?Find Vout in terms of waveform generator.for circuit shown in figure below find zj Vcc -20 V 6.8 k 220 k2 Ve Cc VB VoH Cc B- 180 Bo= 30 uS 56 k2 2.2 k2 CE P Type here to search
- OUTPUT VOLTAGE (V) 2.0 1.8 1.6 1.0 0.8 0.6 0.2 0 <-50 a. TMP35 b. TMP36 c. TMP37 +Vs = 3V -25 0 50 25 TEMPERATURE (°C) 75 Figure 6. Output Voltage vs. Temperature 100 b 125 00337-007 Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage.What is the ripple voltage in the recufier circuit given below. (Assume that V13V, f-50 Hz, R-120 C 40 mV)? 22V O05V OCT5V 18 Vsino CConsider the series R-L circuit shown in figure below. For obtaining transient free response, switch should be closed at instant t = to. Find the value of to. (consider R = wL) t=to 2sin 8t R vor L
- л-pad attenuators are commonly used in radio frequency and microwave transmission lines and can be balanced or unbalanced designs. The unbalanced attenuator shown in figure 2 below is supplied by two DC sources, one at each end. You have been asked to calculate the current through R3 and R5 using the Superposition Theorem and the appropriate set of values from table 1 below. Show step by step working out. 5 R1 R2 50V 5 R5 R3 ㅋ Fig 2 7 R4 4 R6 30VWrite the state equations for the circuit given in Figure. RF12 R=22 RF32 + Vc L v=Bi e +1Reduce to its simplest form using msop
- can you show more step how to calculate Active and reactive power? S = P + Qj how to get P and Q?Consider the circuit in Figure A2 where Vs = 12 V, R₁= R₂ and the input is a sinusoidal signal with peak voltage of 35 mV. Draw a plot of the signal against time that you expect to measure at the output and explain how the circuit functions. +Vs +Vs ģ V ref R₁₂₁ R₂ Vin H₁₁ Ao + Figure A2 Vs VoutThis is not a graded assignment. Its a mock exam. I need help with both parts of the question: my current apporach thinking is that. To find the maximum average power transfer to the load I know we would first find the Impedance values of all the components and than add them up and than finally find the conjugate of that value correct? But im not sure how to find Pmax than based on what i got for part 1. Some guidance here would be appreciated. Im also not sure if my part 1 is correct either so i would apperciate assitance on that question as well