Find the equivalent inductance Leq at the terminals of the given circuit, where L = 6 mH. L 8 mH m a o bo 8 mH 10 mH ell 6 mH 5 mH 8 mH 12 mH 4 mH The equivalent inductance Leq at the terminals of the circuit is [ mH.
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- Assume that the voltage drop across the resistor, ER, is 78 V, that the voltage drop across the inductor, EL, is 104 V, and the circuit has a total impedance, Z, of 20 . The frequency of the AC voltage is 60 Hz. ETITZ20VAPFER78VIRRPEL104VILXLVARsLLInductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841A 300 Ω resistor is in series with a 0.140 H inductor and a 0.600 μF capacitor. A. Compute the impedance of the circuit at a frequency of f1 = 500 Hz and at a frequency of f2 = 1000 Hz. I already solved A: Z1 = 310, Z2 = 680 B. In each case, compute the phase angle of the source voltage with respect to the current. C. State whether the source voltage lags or leads the current at a frequency 500 Hz D. State whether the source voltage lags or leads the current at a frequency 1000 Hz
- What impedance vector 10 + j22 represents:A. A pure resistance. C. A pure capacitance.B. A pure inductance. D. An inductance combined with a resistance.What impedance vector (0- j15) Ohms represents:A. A pure resistance. C. A pure capacitance.B. A pure inductance. D. An inductance combined with a capacitance.Calculate capacitance C and voltage U over resistance. What is the peak value of resistance's voltage? Voltage source e(t) = êsin(ωt + 45º). Resistance R=15Ω, circuit’s total reactance X=15Ω, inductance L=100mH, ê =40V and frequency f=50Hz
- If an R = 1-kΩ resistor, a C = 1-µF capacitor, and an L = 0.2-H inductor are connected in series with a V = 150 sin (377t) volts source, what is the maximum current delivered by the source?An inductor L is connected in parallel to the series combination of capacitor C and resistor R. If L = 0.02122 H, C = 0.000421 F and R = 5 Ω, the impressed voltage E = 120 volts AC. Find the following: a. Circuit Diagram, total impedance, total current.A resistor'R' with resistance value of 24 ohm, an inductor 'L' with inductance 20mH, and a capacitor 'C' with capacitance 50 micro Farrad are connected in series with a AC voltage v(t) where v(t) = 50 cos (2 vt + 30 degrees) v. Determine the current i(t) and total impedance if the frequency f is i. 60 Hz ii. 400Hz
- If the phasor voltage across an element is given by V=100∠120∘ and the phasor current through the same element is given by I=50∠30∘, which of the following basic circuit elements best represents this element? a. Insufficient information is given. b. Capacitor c. Some combination of these basic elements d. Resistor e. Inductor1. What impedance vector 0 – j22 represents:A. A pure resistance.B. A pure inductance.C. A pure capacitance.D. An inductance combined with a resistance.Solve the following: 1. The inductance and a capacitance are connected in parallel. This combination is then placed in series with a resistance. Compute the impedance when f= 60 Hz, R = 53 Ω, L = 271 mH, and C = 27 μF 2. The inductance and a resistance are connected in parallel. This combination is then placed in series with a capacitance. Compute the impedance when f= 60 Hz, R = 76 Ω, L = 182 mH, and C = 41 μF 3. The capacitance and a resistance are connected in parallel. This combination is then placed in series with an inductance. Compute the impedance when f= 60 Hz, R = 136 Ω, L = 243 mH, and C = 29 μF Note: Box the three final answers. If applicable, round off all answers to 5 decimal places.