v (V) 4 2 O -2 MMA 101 2 3 4 5 t(s) Determine the current flowing through a 7 nF capacitor. (You must provide an answer before moving on to the next part.) The current through the 7 nF capacitor is sin Trt nA. Prou 2 of 24 *** Mout
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- What voltage is boosted at the output of a multiplier.Choices: average, rms, peak, or instantaneous Which assumption is not used in the analysis of multipliers?Choices: a capacitor will not discharge, start with the cycle of the source that will forward bias the nearest diode, the output will always be multiplied, or a single diode is forward biased at a time A voltage multiplierChoices: multiplies the output voltage, has very high voltage and low current ,can employ inductors, or may not have equal numbers of diodes and capacitors A voltage regulator maintains constant voltage at the load regardless of variations atChoices: the input and output, the load, source, or in the environment Between a lower percent regulation and a higher one, which is better?Choices: lower or higher| - PHY196 24- A 3-nF capacitor with a 12-uC charge on it is discharged through a 3-kO resistor. What is the current after 9 us? O A) 0.39 A B) 0.19 A C) 0.49 A D) 0.59 A O E) 0.29 A4) Determine the value of branch current, I1 and I25) Determine the value of voltage across resistor, R1, R2 and R36) Determine the value of voltage across capacitor, C1 and C27) Determine the value of voltage across inductor, L.
- 1)The value of the capacitance reactive power in VAR is? /2) The value of the capacitor in micro farad is?A 10 Q resistor is placed in series with a coil of self resistance RL and inductance L and a pure capacitor 'C' across a 50 V variable Ans: 40 Q, frequency supply. The current is maximum and has value of 1 A when the frequency is 500 Hz. At this frequency, voltage across the capacitor is 300 V. Calculate (i) capacitance of the capacitor (ii) resistance and inductance of the coil (iii) Power consumed in the circuit (iv) Voltage across the resistor and the coil. 1.06 µF, 95.5 mH,50 W,10 V,302.7 VFor a sinusoidal input of 40 V (p-p) to the given circuit, what is the minimum value of the output waveform? NOTE: use ideal * diode 0.7 30 20 -5 -40 K 16
- QUESTION 1 a) State two (2) main properties or acts of each capacitor and inductor in RL and RC cireuit analysis ( voltage and current ). b) Define what is capacitor and inductor. Support the answers with an appropriate illustration of capacitor and inductor basic structure. c) Natural response happens to all passive storage element component. Explain natural response for circuit behaviour for a capacitor with an appropriate illustration. d) The switch in circuit Figure 1 has been closed at t 0. 6 A 10 0 i(t) 7.5 H Figure 1: First Order RL Circuit1. 1-5 K 30v a. what is tue T CTime constant) ? b. How long will it take for the capacutor TO rtach s0% op charge? C. What is tne voltage of capa citor apter 1 seconds? d. How many tíme constants will it take for the soltage to reach 23 v? C. Gweng that the capacitor is fully changed, how will it take por it to be 20% ? long 120v + BF what is the. T ? b. what is the voltage capacitor apter 10 sec? a. C. How many time constants will it take for Tue Vo Itage to reach 80 v.? d. Given that the capaator is Fully charged, how time constants will it be to reau many GOV!58. || What are the charge on and the potential difference across each capacitor in FIGURE P26.58? + 9 V HE C₁ = 5 μF C₂ = 15 μF C3 = 30 μF FIGURE P26.58 + 12 V C FIGURE P26.59 с a C
- R1 C1 600 1n V1 D1 {Vi} R2 Vo D 35k The input signal vi(t) = -7V for 0<=t<7us, and OV for 7us<=t<14us. For each of the first two 7us time segments above (0 to 7us and 7 to 14us). What is the state of the diode assuming it is ideal and the capacitor is initially uncharged? + +Which assumption is not used in the analysis of multipliers?Choices: a capacitor will not discharge, start with the cycle of the source that will forward bias the nearest diode, the output will always be multiplied, or a single diode is forward biased at a time A voltage regulator maintains constant voltage at the load regardless of variations atChoices: the input and output, the load, source, or in the environmentC5 What is the correct explanation for the voltage seen at Va in Figure C5? Va 1 Sost We will assume that the Vout Out Vb, capacitor is charged to a value determined by the feedback and the supply voltage +BVsat. Figure C5 A. The waveform on the capacitor looks like a discharge, and then a charging waveform to an equal but opposite magnitude voltage, B. The capacitor simply reverses its charge, with a charging waveform, C. The capacitor simply reverses its charge, with a discharging waveform, D. None of the above.