Find XC at the resonant frequency in the below circuit. R = 22 Q, L = 5 mH, and C = 84 pF The result should be in kOhm Calculate Answers to 2 decimal points S 12 V „R www L m + C
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- Calculate the total current in the circuit below if the circuit is powered by the sine wave voltage source of 150 Vm and frequency 60 Hz. Draw the current phasor diagram and determine if this circuit fulfils the criteria of resonance. Vm Sine 60 Hz LI 0.7 H L2 0.5 H rele rele Figure Q6 C1 5.1 mF C2 -0.12 mF R1 120 Ω R2 330 Ω#5) f= 60 Hz FIND > R=4052 BL=.05h ZIN POLAR FORM: f=100 H2 c=50hfD XL = 10-2X₁ 12. Use this circuit to find the approximate value of the inductor. Hint: Find XL first. 1-60 kHz Z-22.5 k R-13.5 k L-? inductive circu
- 7. Analyze the circuit in Figure for the following ( 17-67 f = 25 kHz): a. Itot b. Ptrue c. Pr d. Pa Figure 17-67 R₁ www 220 Ω R₂ 12/0° V + 390 Ω L₁ L₂ m m 0.5 mH 1 mH C₁ 0.01 μF C₂ 1800 pFWhat capacitance value is required for each of the varactors in the following figure to produce a resonant frequency of 1 MHz? VRO- D₁ D₂ 000111 2 mHQ6. Calculate the total current in the circuit below if the circuit is powered by the sine wave voltage source of 150 Vm and frequency 60 Hz. Draw the current phasor diagram and determine if this circuit fulfils the criteria of resonance. Vm Sine 60 Hz C L1 0.7 H L2 0.5 H relee cele Figure Q6 C1 5.1 mF C2 0.12 mF R1 120 22 R2 330 Ω
- H.W: od vd babivoro R₁₂ = Ret dondbesit di duonds dondbest evitsyon. A Wien Bridge Oscillator circuit is required to generate a sinusoidal waveform of (5.2kHz). Calculate the values of the frequency determining resistors and the two capacitors to produce the required frequency. 2-926do 081 benistere not gniwolls fide-oesdg to IstoAct=3151891 golibros ow! Also, if the oscillator circuit is based around a non-inverting operational amplifier configuration, determine the minimum values for the gain resistors to produce the required oscillations. Finally draw the resulting oscillator circuit.Problem 3: A series LRC circuit has a resonant frequency of 6000 Hz. When it is driven at 8000 Hz, it has an impedance of 1000 Q and a phase constant of 45°. What are (a) R, (b) L, and (c) C for this circuit? Answer: R = 707.12, L = 0.032 H, C = 2.20 × 10-8 F.Short Problem: A series RLC circuit consist of R= 2,6002, L= 91mH and C=18.7 pF. The applied voltage of the circuit is 100V. Find the resonant frequency in kHz. Note: Follow this reminder carefully. Compute to the nearest 4 decimal places. No Scientific notation. Do not round off in the middle of calculation. Use stored values. Write the numerical values only. No units in your final answer. Spaces are not allowed. Excessive number of decimals as compared to the required number of decimals may result to an incorrect answer.
- The figure(Figure 1) shows voltage and current graphs for a series RLC circuit. Part A What is the resistance R? Express your answer in ohms. R = 2.5 N Submit Previous Answers Correct Part B Figure 1 of 1 > If L = 240µH , what is the resonance frequency in Hz? Express your answer in hertz. ? Voltage 10 V -2 A fo = Hz Current 50 100 μs Submit Request Answer -2 A - 10 V5) RL in Series Frequency = 100HZ %3D ET = ER = EL = %3D %3D %3D IR = %3DShort Problem: A parallel R-L-C circuit consist of R= 5,338Q, L= 85.7mH and C=10.7 pF. The applied voltage of the circuit is 100V. Find the resonant frequency in kHz. Note: Follow this reminder carefully. Compute to the nearest 4 decimal places. No Scientific notation. Do not round off in the middle of calculation. Use stored values. Write the numerical values only. No units in your final answer. Spaces are not allowed. Excessive number of decimals as compared to the required number of decimals may result to an incorrect answer.