Use the node voltage methode to find v0
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Use the node voltage methode to find v0
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- Find T 0.5 ms 40 92 www www 892 160 92 20 mH wwwQ1 (a) Based on electrical DC circuit as depicted in Figure Q1(a), (i) Determine the mesh currents I1, I, I3 and I4 by using mesh analysis. Then calculate the branch current, I. (ii) Calculate the power at 50 V voltage source and determine whether the power is supplied or absorbed by the voltage source. 4Ω 20V Iz 5Ω 50V Ia 10V O4A 50 N 20 2 52 Figure Q1(a) (b) Figure Q1(b) shows an AC circuit. Given the voltage, Va across the impedance Za is 111.803 2 - 41.57° V. (i) Determine the value of impedance Za. (ii) Determine the complex power, S, real power, P, reactive power, Q, apparent power, |S| and power factor of the circuit. (iii) Calculate the capacitor value needed to increase the circuit's power factor to 0.85.ASAP
- 10 نقاط :choose the correct value of the current passing throw -j100 40+j50 -j100 60 0.262- 15 0.147443.43 B O 5.854445.83 A ww 007s7What is the impedance of the circuit in the given circuit? Vs R1 12 V 1.2 ko 4.5 mH 0.001 µF 47 kHz O A. 1.05 ko О в. 1.33 ko O C. 2.19 ko O D. 3.39 ko444 mH b 720 mH 90 mH 60 mH 240 mH 20 mH (a) HE 80 nF 8 nF 10 nF 48 nF 20 nF b не (b)
- A 43mH coil in series with a 1200 ohm resistor across a sine wave ac voltage source with a frequency of 6 kHz. The total impedance for the circuit is O 1620 46.5° ohm esc 2017 53.5° ohm 1200 53.5° ohm 2820 46.5° ohm ! 1 Q ← 2 W #3 C E $ 54 R G Search or type URL % 5 MacBook Pro T A 6 Y & 7 ☆ U * 8 + 1 ( 9 ( 0 ) 0 4) P + O = [ deleteCalculate 11, 12, and 13. The frequency is fixed at 500 Hz, and its output voltage magnitude to 5 V (rms). Rs=4792 w R₁=472 13 R3-472 5 V AC R2=4802 88 Ω 0.22 μ 100 mHNI 60+j95 120 mH oooo 60-195 H 10 με The equivalent impedance for w=2000 rad/s will approximately be equal to: w O None of the above 60-j239 60-j239 '60 Ω
- Given the circuit below, please find the current 12 O 1.33A 13.33A 6.66A 0.66A 20 A R₁ < 50 ΩΣ R₂ 100 ΩΣQuestion 13 For the circuit shown, the following mesh currents are given: IA =1.24271.2° A IB =0.45Z49.0° A Ic = 0.75Z150.2° A What is the value of the voltage VB? j5n + 20 VB 62- 45° V j4 N VA 240° V Vc 5230° V O 2.484- 108.8° V O 2.48471.2 V O 2.23/66.8° V O 2.23Z- 113.2° V+5V VDO EN Xtal 8ה 7 +5V Freq1 HGND | GND х Mhz Sensor0 crystal Freq26 5 Vss Out 04 PRE Xtal 1k Output HA7210IP 4 CLK CLR SN74HC7491 GND 0.01 μ GND +5V 4 +5V +5V +5V OE O/P3 0. 1µF | 47µF GND SG351P |2 x MHz GND GND Consider the Quartz Crystal Microbalance Sensor shown above, with crystal resonant frequency, x = 3.3 Mhz. You are given the following values: Active crystal area = 1.6 cm², and the change in frequency = - 10 Hz Calculate the change in mass, Am in nano gram, up to 2 decimal places. Answer: