In the circuit below, component "a" is supplying component "c" is absorbing 9W, and component "d" is absorbing 15W. Choose the 16W, correct statement: + a V₂ a Vc + C d Vd + Component "f" is supplying 8W f + Vf
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- Below is a circuit diagram. Determine the impedance of every circuit The components include ZR1, ZR2, ZL1, ZL2, ZC1, ZC2. Please redo the circuit diagram using these components.As impedances, they represent components. Express your final answers in complex terms.Using rectangular coordinates, measure impedances.Elements R, L and C are connected in parallel. The impedance of the parallel combination can be expressed as Z(s)= 10s/(s2+s+400) The value of the individual elements R, L and C are ?From the following circuit diagram. Determine the impedances for all the Circuit elements such as ZR1, ZR2 and so on. For part A the frequency (f) is f = 60Hz & part f = 100Hz. For both parts, you must redraw the circuit diagram, with all the found impedances shown. Show your final answers as phasor with rectangular coordinates. you must show all of your work for the complex math aswell.
- "Find out the positive sequence components of the following set of three unbalanced voltage vectors: Va =10cis30° ,Vb= 30cis-60°, Vc=15cis145°" (THIS PROBLEM IS MULTIPLE CHOICE PLEASE CHOOSE CORRECT ANSWER BELOW AND PROVIDE COMPLETE SOLUTION!) A "17.577cis45.05°, 17.577cis165.05°, 17.577cis-74.95°" B "17.577cis45.05°, 17.577cis-74.95°, 17.577cis165.05°" C "24.7336cis-156.297°,24.7336cis83.703°,24.7336cis-36.297°" D "24.7336cis-156.297°,24.7336cis-36.297°,24.7336cis83.703°"Consider the circuit diagram below. Compute the impedances for all circuit components, i.e. ??1, ??2, ??3, ??1, ??1, for (a) ? =60 Hz, (b) ?=100 Hz. For both (a) and (b), redraw the circuit diagram with the computed impedances indicated. Express your final answers as a phasors with rectangular coordinates. You must show your all your work for the complex mathFor an RC Circuit: a. Using information from the graph, find b. If R= 6982 , calculate C (use the result from Part (a) c. Show, by dimensional analysis, that has units of time.
- In the diagram given below, given the R1=10Ω, R2=3Ω, ZC= -j15Ω, ZL=j7Ω and V=10⌊30° Determine Thevenin’s Equivalent.Use the Super Position theorem to find the following. Given V8=41.5 V, V9=57 V, R12=102 Ω, R13=32.5 Ω and R14=64 Ω. a) Current through R12 b) Current through R13 c) Current through R14 d) Voltage across through R12 e) Voltage across through R13 f) Voltage across through R14 g) Power supplied by source V9Show that at a given frequency ω, the circuits will have the same impedance between the terminals a,b ifR2=R12+ω2L12R1, L2=R12+ω2L12ω2L1.(Hint: The two circuits will have the same impedance if they havethe same admittance.)2. Find the values of resistance and inductance that when connected inparallel will have the same impedance at 1 krad/s an 8 kΩresistorconnected in series with a 4 H inducto
- Solve and analyze the following parallel RLC circuit? What feature does it show?Find the impedance triangle, voltage triangle, currents on the branches, source current, and power coefficient of the circuit?Determine a frequency ω that will cause the input x(t) = cos(ωt) to produce a strong response when applied tothe system descriptbed by (D2 + 2D + 13/4) y(t) = x(t). Carfully explain your choiceA circuit is designed with an AC source of max voltage 12 and frequency 60 Hz. The circuit has a resistance of 1050 Ohms, an inductance of 0.06 Henrys, and a capacitance of 0.009 coulombs per volt. - omega for source in rad/s? - omegaR for circuit? -XL? -XC? -phi in radians? -Z? -imax?