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- Inductive 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 40.841RLC LTI Systems with DC Source Let: R = 10 Ohms C = 10-2 Farads L = 0.5 Henry E = 12 V Assuming q(0) = 0 and i(0) = 0, find the current in the system.R= 300 Ω, L= 40 mH, C=600 nF, V(AC)= 5 Volt, F=100 Hz Write the current function iL (t). and calculate for iL (t=0.01)
- in the given circuit Vs(t)=10 cos100t, R=10K(OHM), L=1mH, and C=10mF. Calculate v0(t),Write an expression for the output voltage vo(t) ofthe circuit shown if R1 = 1 k , R2 =2 k , R3 =47 k , v2(t)=(0.01 sin 3770t) V, andv1(t)=(0.04 sin 10000t)V. Write an expression forthe voltage appearing at the summing junction (v−).The admittance for a circuit, G + jB, is 0.02 + j0.20. What is the impedance, R + jX? Provide illustration of the circuit.
- Vbe=0.7v hFE=173.21 find vb,ve,ie,ib,icq,vceqIn the circuit below, it is fed with a 200V (rms), 50Hz network voltage. Load resistance R = 10 ohms and If C = 100 picoF Calculate the output voltage value when the S switch is open (in cut).What is the frequency of a voltage source described as v(t) = 5.6 cos (312 t – 70°) mV? Please enter your answer in Hertz (Hz), with 3 significant figures.
- Vs(rms)=3.5 VL(rms)=4 Vc(rms)=0.8 VR(rms)=0.55JFET has an IDSS value of 12 mA and a VGS(off ) value of 23 V. How much is gmo? show complete solutionsA capacitor of 3.18 microfarads is connected in parallel with a resistance of 2000 ohms. The combination is further connected in series with an inductance of 795 mH and resistance of 100 ohms across a supply given by e=400 sinwt + 80 sin( 3w+60). Asusme w=314 radians per sec. Determine the circuit power factor.