1. Three resistors (R1, R2 and R3) are connect in parallel, prove that RT R1 R2 R3 R1 R2 R2R3 + R₁R3 2. For the circuit shown in Figure 6, find RT, V2. R1=10k Vin 50v w R3=16kQ Figure 6 R2=24KQ
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- For R1=55, R2=D125, R33D135, R4=15, R5=40, R63D90 and V1=4 V in the shown figure, use circuit reduction and current/voltage division rules to calculate the following: R6 R1 R5 R3 R2 V1 V2 R4 V13= V2=Given 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?%3D For the following circuit, calculate the current through R5 and the voltage drop across R5. Use the following parameters for the circuit: Vs = 8 V, R1 = 48, R2 = 8, R2 = 4, R4 = 5, R5 = 20. Rz R3 R5 R4
- Use the Principle of Superposition to determine the current i through R3 in the Figure. Let R1 = 100, R2 = 40, R3 = 20, R4 = 20, R5= 20, Vs 10 V, Is = 2A. ww VS R3 ww www1. a) Design a combination circuit that has four LED’s and one resistor. Each LED will be in parallel and have its own switch. The circuit will have a resistor in series with the LED’s while they are connected in parallel. Each LED’s will drop 1.4vDC in parallel, with the same specifications. Make sure you size R1 (resistor R1) correctly using a VT of 9v. Each LED branch will have 20mA of current through it. Calculate all values including power at each component. b) Also, if the 9v battery had a rating of 2 watt-hours, how long would it last? If you wanted to make each LED 1/3 brighter than the other in parallel, how would you change the circuit to make that happen? Explain and show calculations. (Hint… you do not need transistor(s), but you can use them in your design).Solve it with explanation please.
- Sy A circuit design calls a 1.5 kN resistor to have 4.7 V across its terminals. What would be the expected current? The circuit is built, and the resistance is measured at 1500 2 and the voltage at 4.7 V. What is the current through the resistor? f is ieIn the figure below: U = 15V, R1 = 50Ohm, R2 = 40Ohm, R3 = 90Ohm, R4 = 60Ohm, R5 = 50Ohm, R6 = 80Ohm. Calculate the current I1.8
- Shown 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.A circuit consisting of three ideal batteries with voltages E1, E2, and E3, and three ideal resistors with resistances R1, R2, and R3, is shown in the figure below. Find Ip through point P with "up" being positive.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