B. Use mesh analysis method to find the current in 30 resistor. Q2. A. Derive maximum power transfer for RL in DC ci cuit when dealing with Thevenin 's equivalent circuit
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A: According to the question we have to find i1, i2 and i3.
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A: Redrawing the circuit diagram,
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A: Using the super position theorems, find the current I. If voltage source 24V connected.
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Q: 5. Find the equivalent resistance Rab (in ohms) of the circuit shown by using a Wye-to-Delta…
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A: The given problem can be explained with the help of diagrams
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Q: jsn 10 V -j2n () j2 a 31,
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A: The solution can be achieved as follows.
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A: The solution can be achieved as follows.
Q: Eхample: Find the current 1, in the network in Figure below. 6 k2 2V V2 12 k2 V3 12 k2 6 kn V, +6V
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Q: F ind mesh currert for the ginen circuit :- 1052 142 OsV, V2 $6 s2 1nov
A: 110V 0.5V RESISTANCES 14Ω, 4Ω, 10Ω, 2Ω, 6Ω
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A: The solution can be achieved as follows.
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- Figure 2 shows three "LC" circuits, two of them with capacitance capacitors "C" and the three with inductance coils "L", the three circuits are coupled by means of two capacitance capacitors "Cc". The currents that circulate through each mesh are those indicated in the figure: "I1", "I2" and "I3". Using Kirchhoff's law for voltages and taking into account the definition of current I = −dQ / dt, find the system of coupled equations of the system and then find the normal angular frequencies of the system.B.. What is the load current for the circuit shown in the figure? Please choose one: a. 6.0 mA b. 3.0 mA C. 9.0 mA D. 7.5 mAGiven the circuit, solve for: a. using superposition to get the thevenin voltage by R6, what is the contribution of the I1? b. if the load of 250 ohms becomes 100 ohms, what will be the value of Va?
- , A two-element series circuit has voltage V 200 / 0 V. and circuit 10 /-30° A. Determine the current which results when the resistance is reduced to (a) 25%, (b) 50% of its former value.Sketch the DC equivalent circuit Determine IDQ and VDSQ Determine VD and VS Show the details of your work Thanks!Analyze and redraw the complex circuit into a simple circuit diagram. At circuits #1 and #2, solve for: a. Rt b.It c.V at 5 ohm resistor d.I at 5 ohm resistor e.P at 5 ohm resistor
- In an AC circuit, the load has a supply voltage of 240cos(800πt+60) volts and a current of 120cos(800πt+20)mA. What is the simplest two-element parallel circuit can this load have that is equal to the total impedance. Find R,C, L.Consider the electrical circuit shown in the image. There are 4 currents present. The current I enters a note and then branches into three seperate currents, I1, I2, and I3. A) rank the 4 currents according to their magnitude, greatest first. Explain. B)Considering Delta V1, Delta V2, and Delta V3, now rank them according to magnitude. Explain.Thevenen's Theorem and Maximum Power Transfer Theorem For the following circuit, determine: RTH.. b. VTH. The maximum power transfer to the load.... If VL = 3V then Ri is If RL = 6ohm then VL is a. C. d. C. Re=18 a V. =15v RI
- Determine the branch currents Is, Igandl, in ampere. TVⒸ so www 14 Eng al. The current in ampere 11 [Select] b). The current in ampere 12 [Select] 60 www d. The current in ampere 13 [Select] 40An AC circuit is shown in the diagram. The source of emf has a peak voltage of 9.00 V and a frequency of 60.0 Hz. Assume the wires contribute a negligible amount to the resistance and the AC source has negligible internal resistance. 524 2 493 2 1.56 k2 a) Find the equivalent resistance of the circuit. Redraw the circuit showing the equivalent resistor and use this simplified circuit for the rest of the problem. 315 2 Re = b) Find the rms current. 9.00 V, 60.0 Hz c) If the current is zero at time t= 0, find the first two times (after time t-0) that the current is equal to its rms value. and d) Find the average power dissipated by the circuit.Trial example of how to use Kirchhoff analysis to determine the initial current in each section along with its direction and the potential difference across the load