Ω 3. A) Apply Thevenin's theorem on the circuit below and determine the current in the 3-ohm resistor. B) Draw the Norton's equivalent circuit and apply current rule to calculate the current in the 3-ohm resistor. 352 I₁ 12 M T I 452 M 502 √152 752 60
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- 1960048cmid 11667 This course For the below circuit, find the current i1 through the 18 ohms resistor. 40 120 V Select one: O a. in= -8A O b.iy=-4A O c.-4A O d.in-8A Find Rab- 20 ()Create this circuit in tinker caduse, Resistors, powersupply, and multimeter if possiblecomputational answers:( i have already solved this using mesh analysis i just need the simulation in tinker cad that shows this answers in the powersupply) Ia=0.1441 AIb=0.2 AIc=0.01162 AEach of the cells shown in the figure has an emf of 1.50 V and a 0.0750-ohm internalresistance. Find I1, I2, and I3.
- In an electrical circuit four resistors are connected in parallel and their equivalent resistance is 50ohms. Find the value of each resistors if the currents through each impedance are 0.8, 0.4, 0.6 and 0.2 ampere.Which of the following statements are correct for the circuit below? Thanks to the capacitors I – C1 and C2, the voltage gain of the circuit increases. II – Capacitors C1 and C2 are coupling capacitors and provide an isolation function between AC and DC voltages in the circuit. Thanks to the III – RE resistor, the voltage gain of the circuit increases. Thanks to the IV – RE resistor, the stability of the circuit increases. The V – C3 Capacitor is a bypass capacitor and prevents the loss of voltage gain. Capacitor VI – C3 is a coupling capacitor and has no effect on the voltage gain in the circuit. VII – As the value of the source internal resistance Rs increases, the voltage gain decreases. VIII – The voltage gain decreases as the value of any RL load to be added to the circuit increasesTwo batteries are connected in parallel delivering power to a power resistor. The first battery has an open circuit voltage of 12.6 V and an internal resistance of 0.2 ohm. The second battery has an open circuit voltage of 12.2 V and an internal resistance of 0.3 ohm. Find the maximum power delivered to the load resistance.
- In the figure: R1 = 27.3 Q, R2 = 93.1 Q and R3 = 1571.12 Q, then determine the value of the source current Is. 12 13 RT R1 R2 R3 E 1.33 0.98 1.44 1.73 1.15Solve for the circuits unknowns in the picture belowthe adjoining figure. This lamp can withstand a maximum voltage 3.0 v 0.4 9. Volt-ampere (V-I) charaeteristics of an incandescent lamp 16thd in and a maximum current 0.4 A. An infinite ladder network consisting a large number of these lamps is also shown in the figure given belo How much maximum voltage can be applied between the terminals A and B, so that no lamp gets damaged? (Use V5 = 2.2). Ans:x4.2V Hint: Curentin all bulls except first is500mA 200mA Solve for the value of R3 as shown in the figure. 100mA 50mA "RI 250 13: R2 R3 R4 12Use Multisim Schematics to create the voltage divider circuit in Figure 2. Run the simulation to obtain the DC voltage across each resistor V₁, V₂ and V3 and the total DC current I in the loop. Take a screenshot of your Multisim circuit schematic, showing voltage and current values, and include it to your lab report. Vs -12V R1 2.2kQ R2 1.0kQ R3 3.3kQ2Hello Please help me to determine the individual contribution of the: I1 current source to Vx and V1 voltage source to Vx. I got Vx(I1)= 0.0863V and Vx(V1) =1.4186V but I'm not sure about my answers.SEE MORE QUESTIONS