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Find the source current is in the following circuit. j1 19 1: 2 10 1. =...
4. (10.6) Find the output voltage (as a phasor) in the circuit below. j1 Ω 2Ω W 2020° 192 5/20 5. (10.42) Find the currents and voltages (as phasors) in the circuit below containing an ideal transformer. WW th ot 20 7602 20200 & 10 6. (10.43) Find the voltage (as phasor) in the circuit below containing an ideal transformer. 2:1 2:1 rün 402 W W of 22 2020 -120 lllll j622 lo 7. If Li - 30 mH, L2...
Find Io using source transformation in the
following circuit: (5 points)
2 Ω j1 Ω οδο I, 4Ω 8/90° A j5 Ω ell 1 Ω W -j3 Ω -j2 Ω
Part A Find the average power delivered by the ideal current source in the circuit in the figure if ig-4 cos 5000t mA.(Figure 1) Express your answer with the appropriate units. P. Value Units igure 1 of 1 Submit Request Answer Provide Feedback 500 Ω 1000 Ω 100 mH 160 nF
Problem 1: Find the power delivered by the 4-A current source in the following circuit. Use mesh analysis. 4A 32 422 M w + 128 V 62 301, 222 52
Given the following parameters: Z=3+j1 12 jwL;=j2 12 Determine: jwL;=j242 jwM=j1 2 Z=1-j1 12 a) The two mesh equations (primary loop and secondary loop) b) The impedance seen by the source (V.). JOM Lip Gjola
2. For the circuit given, if the current leaving the power source is 4A find the value of R1, R1-7Ω I-4A 30 5Ω 2Ω R1
4) Find the current I1 and 12 in this ideal transformer circuit below -j24 Ω j10Ω 16Ω 5 20°A
An AC circuit consists of a non-ideal source, an ideal transformer, and a load impedance. Assume VTH = 66/42° VRMS, ZTH = 86/-37° and n = 2. Zih 1:n + th ele lll ZLOAD non-ideal AC source What is the maximum average power in W) that could be delivered to the load?
1. Design an approximate current source from an ideal voltage source and a resistor in series with it. The short circuit current should be 20 mA which should drop to no lower than 18 mA when a 10 kS2 load is attached. What is the open circuit voltage VTh and series resistance VTh
The circuit below consists of a thevenin source
Problem #2 - (16%) The circuit below consists of a Thevenin source shown on the left of the vertical dotted line and a load shown on the right of the dotted line. The frequency of the Thevenin source is 600 Hz. The Thevenin voltage is 2 Vpk. R 1:4 70 mH Vin 2 V pk 600 Hz 7502 0.5 UF Source Load a) Compute the load impedance (looking into the ideal transformer...