Establish the lo in the given circuit. Then evaluate the average power absorbed by the resistor 3 Q and capacitor -j2 Q. 3 0 520° A (1 -j2 0 12.5/, j6 N ll
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- Use the image to answer the 3 part question. A)determine the impedance of the circuit. B)determine the average power provided by the source to the circuit. C) Determine Vr the maximum voltage drop through the resistor and Vc max the maximum voltage drop through the capacitorFind the average power, the reactive power, and the apparent power absorbed by the load in the circuit if vg equals 150 cos 250t V.The peak value of the reactive component of power transmitted, that is forever travelling backward and forward between the load and source will have a a. Magnifying power b. Maximum average power c. Real power d. zero average power
- The voltage across it v (t) = 10 . The equivalent of a circuit with cos (2000 . t + 30°) V If the impedance Z = 5 ∠ 60° Ω, what is the average power consumed in the circuit?find time, frequency, power in dB, vpp, average powerPlease solve for following based on attached circuit: average laod current RMS load current average load power absorbed apparent source power
- In the circuit X=7 and Y=30, calculate the Z impedance and the power absorbed by the load for the maximum average power transfer in the circuit.Two electric devices A and B are connected in parallel, and the rms current in A is 15 amp. If the current in B lags behind A by π/3 radians and the total line current is 23.4 amp. (rms), determine the current in B.Determine the value of reactive power of a circuit having power factor of 0.6 when the apparent power of the circuit is 120 VA.
- Find the average power absorbed by a circuit component that has a voltage of v = 20.3 cos(754t - 10°)V across it when a current i = 15. 6 cos(754t - 30°) mA flows through it.Estimate the power factor and the apparent power of a load whose impedance is Z = 60 + j40 Ω when the applied voltage is v(t) =320 cos(377t + 10°) V.1.A sinusoidal voltage wave has an RMS value of 70.71 V and a frequency of 60 HZ. Determine the value of the voltage 0.0014 second after the wave crosses the wt axis. 2. The voltage and current of an AC circuit are as follows e= 141.4 sm 377t V and i= 10sin (377t - 150) A. Find the phase angle. 3. Determine the average power delivered to networks having the following input voltage and current.a. e= 100 sin ( wt+ 40 degree)i= 20 sin ( wt + 60 degree)b. e= 150 sin ( wt -70 degree)i = 3 sin ( wt - 50 degree)