R₁ 200Ω R₂ 2000 - V3 R3 1000 Table 2 8= - R4 200Ω V2 R5 1000 R6 2000 V1 Vout R₁ 2000 Fig 3 1. Using Table 2, redraw the circuit with the zero voltage (0) in the table, replaced by a short circuit 2. Using Thevenin's Theorem calculate the voltage across and current in RL, when connected.
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- Ri P Rz E3 Ry R3 Ez a) Apply Kirchoff's law to the circuit and write down the linearly indepedent voltage equations. You must draw the diagram and show the direction of currents in each of the components. The emf's in the circuit have the values E = 3 V, E2 = 9V and E3 = 10 V. The resistors have the following value of resistances R = 22 2, R2 = 33 N, R3 = 112 and R4 = 11N. b) Find the current through the resistance R3. current Give your answer up to at least three significance digits, A c) Find the magnitude of potential difference across the points p and q (i.e. potential difference of point q relative to point p. ).. magnitude of potential difference Give your answer up to at least three significance digits. VShown in the figure below is an electrical circuit containing three resistors and two batteries. I₁ 0= 4 + L . ww R3 R₂ ww 1₂ R₁ ww Write down the Kirchhoff Junction equation and solve it for I, in terms of I₂ and I3. Write the result here: 1₁ = 12-13 R₂=552 R₂ = 132 13 Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and follows the perimeter of the circuit diagram clockwise. - IzR3 − LR₁ + 14 + 10 Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and touches the components 4V, R₂, and R₁. 0 = 4-1₂R₂-11R₁ The resistors in the circuit have the following values: R₁ = 12 Solve for all the following (some answers may be negative): I₁ = 27.78 X Amperes 1₂ = 28.84 X Amperes 13 = 1.060 X Amperes NOTE: For the equations, put in resistances and currents SYMBOLICALLY using variables like R₁,R₂,R3 and 11,12,13. Use numerical values of 10 and 4 for the voltages.In the circuit shown in the figure, the values of the circuit elements are given below.Accordingly, what is the voltage across the resistor R3 at t=0.4 seconds?R1 = 10 ohmsR2 = 8 ohmsR3 = 5 ohmsL = 8 hensC = 1/2 faradV = 14 u(t) VI = 8/5 u(t) A
- I am very confused with this problem, I know that I have to reduce the circuit, and we will end up with 2 resistor 1 in each side and the current in the middle, I know that I have to use current division, how do I know according to this problem which Z1 and Z2 will be. The io is on the right side.. The io will be the same in the left and right side... I need steps for this problem pleaseDetermine the voltage drops across and current through each resistor in the following circuit. Use Kirchhoff s rules showing your direction for current, voltage drops across the resistors, your work to evaluate the circuit and your checks that the values you have are correct. R1 10 R2 10 V 22 V R3 20Applying Kirchhoff's Laws to the electrical network in the figure, the currents and I1,I2 and I3 are the solution of the system
- Consider the series-parallel circuit shown in the figure below with various multimeters connected in the circuit. Assum that XMM1 has been configured in ammeter mode, and XMM2 has been configured in voltmeter mode. XMM1 R1 1kQ XMM2 R2 R3 V1 1kQ 1kQ 12V 3.1: Redraw the circuit replacing XMM1 and XMM2 by their equivalent circuit models 3.2: Assume that XMM2 was incorrectly configured in ammeter mode. Redraw the equivalent circuit from 3.1 and compute the current that would be measured by the ammeter in this scenario. Hil-Using star-delta transformation, find the total resistance across AB in the given circuit. Given: R1= 5 Ohm, R2= 10 Ohm, R3= 3 Ohm, R4=2 Ohm, R5=15 Ohm. Select one: a. 5.19 Ohm b. 7.95 Ohm c. None of these d. 4.11 OhmUse A-Y/ Y-A Transformation to solve for the (a) total resistance in terminals fe (Rfe) (b) total current. Voltage at terminal fe (Vfe) is 250 V. Show complete solution and redraw your transformations. 250 100N - Z 25N 100N SOON 100N 10N 100N -M- 15N 100N e
- Using NODAL VOLTAGE ANALYSIS, solve Vy and Vx and voltages across EACH RESISTOR. Put signs on each resistors in the figure and draw the flow of currentGiven the circuit below and that R1=1.7ohm,R2=3.5ohm,Emf1=2.1V and Emf2=6.3V. What is the current through the section ac?I did a physics lab and got some values. I want to check them theoretically to see how the results differ. From this diagram, answer the following questions: The laws to be verified included the conservation of current in a node, the addition of potentials for components in series, and the addition of currents for components in parallel. The data : R1: 1094 ohm R2 : 998 ohm R3: 1094 ohmR4: 25 ohm Source 1 : 5 V Source 2 : 1.5 V