Using Source Transformation. Compute for current I and voltage across R4.
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- In the circuit below, the voltage sourse Vin = 12(V), and node D is grounded. Given R1 = 12 (Ω), R2 = 16 (Ω), R3 = 16 (Ω), and R4 = 16 (Ω). Find the voltage dropped cross R2, VA-VB, in volts.Use nodal Analysis to find the following for the given circuit below: a) Voltage at Node "A" in V b) Current flowing through R5, R6, R7 in mA c) Power dissipated by R8 in microW.Show the derivation of the formula in transforming Delta (or Pi ) Network to Wye (or T) Network and vice-versa. In addition, solve four (4) circuit problems with applications of delta to wye transformation (or vice-versa) of your own choice and indicate your reference.
- For the circuit in the figure find VXa) By any methodb) Check using theveninConstruct the series-parallel circuit in below. Use R1 = 330Ω, R2 = R3 = 1kΩ using Proteus Simulation Software. Then, connect a dc voltage supply with Vs = 10V across points A and B. Measure the voltage across each resistor using a dc voltmeter. Does your observation agree with the Kirchhoff Voltage LawThe source voltage of the circuit shown is vG = 169.71 without 377t, the internal resistance of the source has a value of RG = 500 ohm; said source feeds a load of value RL = 5ohm. Specify values for L and C such that maximum power is transferred to the load. Determine that power value.
- Use superposition to compute for the DC voltage levels for node B, C, and D. The dependent current source is equal to I1=hfeIb, hfe=177. What is the DC current Ib?Using Kirchhoff's Rules, compute the current (mA) and voltage (V) values of the circuit if R1=2kohm and R2=7kohm.Using node voltage analysis in the circuit of FigureP3.9, find the current i through the voltage source. LetR1 = 100 ; R2 = 5 ; R3 = 200 ; R4 = 50 ;V = 50 V; I = 0.2A.
- Using the circuit, determine thevenin’s voltage(Vth) and thevenin's resistance(Rth) for load resistor R1. Then solve for I1. Draw all diagrams.-Determine the nodal voltage V3. -Solve for the current I4.Solve for the voltages across and currents through every resistor given that all of the resistors are 1kOhms and V=10V. Use at least 1 Thevenin equivalent network simplification.