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- Consider the series RLC circuit of Problem 2.7 and calculate the complex power absorbed by each of the R, L, and C elements, as well as the complex power absorbed by the total load. Draw the resultant power tna ngle. Check whether the complex power delivered by the source equals the total complex power absorbed by the load.Solve no. 02 and show solutions. (Lesson: Network Laws (Source Transformation and Superposition Theorem))Circuits 2:Source Transformation (AC) Pls show full and clean solution tnx
- The ac bridge circuit, balances when Z1 is a 1-kohm resistor,Z2 is a 4.2-kohm resistor, Z3 is a parallel combination of a 1.5-Mohm resistor and a 12-pF capacitor, and f = 2 kHz. Find: (a) the series componentsthat make up Zx , and (b) the parallel components that make up Zx .For the circuit shown, determine:a) Plot pole-zero diagram for H = I / Vsb) Based on H, calculate the forced response for i (t) to an excitation:Vs (t) = 5 e-3tsin (50t) cos (60t) [V]1) find Rth from ab terminal 2) find Vab if ab terminal is open-circuited 3) find short circuit current if ab terminal is short-circuited 4) draw both Thevenin and Norton equivalent circuits from ab terminal. Lable values next to each element drawn Please all subparts in shortlike it definitely don't reject in..
- Consider the circuit diagram below. Compute a single equivalent impedance for this circuit for a source frequency of ? =40 Hz. Express your final answer as a phasor with polar coordinates. You must show your all your work for the complex math. Include a diagram of the equivalent circuit as part of your solution.I getting incomplete answers please give me full answer i will give like else dislike Two impedances Z{1}= 10 - j15 Ω and Z{2} = 4 + j8 Ω are connected in parallel. The supply voltage is 100 V, 25 Hz. So find the admittance, conductance,susceptance, total current and power factor of the combiner circuitL = 40 uH C = 1 uF R1 = 10 ohms R2 = 5 ohms R3 = 6 ohms 1) Admittance each branch 2) Equivalent admittance 3) What is the equivalent impedance to the right of the current source? 4) Source voltage and phasor
- A.Find Y in rectangular and polar form. B.Using Y find the equivalent RL or RC series circuit V=15V, f=50kHz, R=6.8kohms, L=30mH, C=500pfIn an RC parallel circuit, ET = 120 V, R = 420 Ω, and XC = 330 Ω. What is Z? 230 Ω 259.62 Ω 140 Ω 534.13 Ωans: a. i = 10 cis-30° Ab. v = 220 cis25° Vc. I = 7.0711 cis-30° Ad. V = 155.5635cis25° Ve. Z = 22 cis55° Ω