E = 12 V / 0° Z₁ = |= 4₁= 1₂= 13 = VL= + + V₂ voo X₂ = 60 1₁ ~) ZT +₁₁ 2 N N N Z N Xc₁ Xc₂ 8 Ω 1₂ 12 02 ° units units ° units ° units ° units ° units
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For the series-parallel network below calculate the following. Express in polar notation
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- 7. In a pure inductive circuit, the phase angle between the voltage waveform and current waveform will havephase shift * 180 deg O deg 45 deg O 90 deg 8. Why do we say the "voltage across" or "the voltage with respect to?" Why can't we just say voltage? * Voltage is a measure of electric potential difference between two electrical points. O It's an electrical cliche. The other point could be negative or positive. None of the above.google.com/forms/d/e/1FAlpQLScF2Wzu92iVI-tEM2nxdhqXrGdR460G4QCTxaUZZeC678PqTg/formResponse مطلوب /06 *:The potential at point P due to Q1 and Q2 is Q, = 1x10-12C 0.5 m 0.5 m Qz = 1x10-12C %3D 50 cm 0.01797 V Ov O -0.01271 V O 0.01271 V O Insert PIC F10 F11 F12 F6 F7 FB Backspace 9 € P Enter Ha) Find I, in the circuit in Fig. P11.7 b) Find VAN- c) Find VAB- d) Is the circuit a balanced orunbalanced three-phase system?
- EXAMPLE 2.0 FIND ALL THE ROOTS OF x. ((3275°- j3794)2- 4e [(12- 42° + el30")• – (2 – j5)*]) (7/15° + 249°)* – (j73479 – j723)3 + [(3 - j2)(64°)]2Initial charge of the capacitor is zero. R1-20 and R2-20. Calculate Vo(t) for t-D0.8s. 4i R1 ww 58(1) V ==1F R2 Remark1: 0nly numeric values must be entered. Do not enter the units. (ex: If you calculate 13.8 V, write 13.8) Remark2: Use maximum one digit after dot. Round the numbers as provided below. (ex: If you calculate 10.83 V, vwrite 10.8, not 11) (ex: if you calculate 15.67 V, write 15.7, not 16) (ex: if you calculate 18.98 V, write 19) Remark3: Don't use comma (ex: Write 50.6, not 50,6)QUESTION 11 An inductor is connected in parallel with a 6540 resistor and a function generator. The applied voltage is 42V RMS and the total current is 67mA RMS. Find the magnitude of the current through the inductor. Enter your answer in the space provided. Round your answer to one decimal place. Your answer should be in mA but do not enter the unit.
- In the figure: R1 = 1439.170, R2 = R1 and R3 =2R2, then determine the value of the voltage source E. a 8 mA 10 mA 2 mA RT R1 R2 R3 O 25.33 11.51 O 17.27 15.43 13.82 +10 Q j10 O j10 O ... Vx ell ell 10 V sine -j10 O sine @node x: Y11VX = Isc1 RE IM RE IM Y11 Blank 1 Blank 2 Blank 3 Blank 4QUESTION 3 An inductor, a capacitor, and a resistor are connected in series with a function generator. The inductor drops 5V RMS, the capacitor drops 20V RMS, and the resistor drops 2V RMS. Find the magnitude of the total voltage. O 27V RMS O 15V RMS O 38V RMS O 9V RMS
- Activity 1: You are testing an electrical device which can be modelled by the figure shown below: 18 -j12 a b j6 -j10 it E1 12 13 E2 13 The above electric circuit can be characterized by the following equations: 1811 + j6(11 – 12) + 4(11 – 12) = 1020° -j1212 + 8(12 – I3) + 20490° + 4(I2 – 4) + j6(I2 – I1) = 0 -j1013 + 1313 – 20290° + 8(13 – 12) = 0 Find I1, I2, and I3 using the Gaussian elimination method.8. Liquids with solid impurities a) Have higher dielectric strength b) Of large size have higher dielectric strength c) Have lower dielectric strength as compared to pure liquids d) None of the above 9. Peak to peak ripple is defined as a) the difference between average de voltage and peak value b) the difference between maximum and minimum de voltage c) the difference between maximum ac and average de voltages d) the difference between ac (rms) and average de voltages 10. In a Cockroft-Walton circuit, input voltage 100 kV load current 25 mA, supply frequency 100 Hz, each capacitor 10 nF. The optimum no. of stages for maximum output voltage is a) 1 b) 2 c) 10 d) 35in V1 R2 100k SINE(0 10 100) R1 100k D1 D V2 0 out D D2 V3 0 DC offset[V]: 0 Amplitude[V]: 10 Freq[Hz]: 100 T delay[s]: Theta[1/s]: Phi[deg]: Ncycles: anter 2019-2220 Figure 3-5 Clipper Circuit for LTSPICE Simulation C4. To specify the type of simulation, select "Simulate>>Edit Simulation Cmd" from the menu. Choose "Transient" and enter 30m for Stop time, 0 for Time to start saving data, and 1m for Maximum Timestep. Click OK. C5. Click Run to start the analysis. C6. Place two voltage probes (voltage probes appear when placed on a wire during simulation), one at the input side (at the top of V1) and another at the output side (at the top of D2) of the circuit. What difference do you observe between the input and the output waveforms?