6 V R₁ 1 kr R5 ww 100 $2 R2 2 ΚΩ Ra 1 k RA-Rx 1 ΚΩ Here is the translation: i) Verify the compliance with Kirchhoff's laws in the 3 main loops and the 4 nodes of the circuit; ii) Verify the conservation of power; iii) Calculate the resistance seen by the source.
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- (a) Identify the type of circuit in Figure 4. Determine its functionalities and find the appropriate mathematical equation. Sig_1 Sig_2 Sig_3+ Sig_4 Iin. Iin. Iin Iin GND www.5 R5 www R4 www R3 ww R2 ww R1 Feedback Resistor ลบ Figure 4 Iout VOUT ◆ BU4.-For-labeled currents, draw an arrow to show the direction of the actual positive current. For labeled voltages, circle the node that is at the actual highest potential. Note that the positive and negative signs of the voltage represent the polarity of the probes of a voltmeter connected to the device. The value shown is the reading on the voltmeter. (segment of wire) 2A -2A -5A 2.de 3A TA Cov E 5V 12V + 3V -10V -201Using multism
- E Figure 1. R₁ L₁ M 1.Calculate coefficient of coupling k. R₂ L₂ 1₂ R₁ E = 230V 20°, R₁ = 100, R₂ = 0.50, R₂ = 2002, L₁= 10 H, L₂ = 26 mH, M = 0.5 H, f= 50Hzww R1 R=10 Ohm V1 U=150 V. S1- b. What is the current through R₁7 4. Finally the switch is opened....Immediately after it is opened.... a What is the total resistance in the circuit? c. What is the voltage across R₁7 d. What is the voltage across R₂? e. What is the current through R₂? f. What is the current through R₁? ww 8. What is the voltage across R₁? h. What is the current through the inductor L₁7 R2 R= 120 Ohm R3 R=60 Ohm i. What is the voltage across the inductor L₁? j. What is the energy stored in the magnetic fields of the inductor L₁? k. What is the rate of change of the current in the inductor L₁? 1. What is the induced current being created by the inductor? L1 L=5 HUse Kirchhoff's Law to solve for the current passing through each resistor. Compare it with what you got from the PHET Simulation A D 392 www 6V E www F 192 www 292 352 www 9V B C
- NOTE: Solve this as soon as possible, I need this urgently. Determine the currents I, and I, in the circuit below 6 mA 1.51 1 mA4. Verify Kirchhoff's junction rule by measuring current flows at the junction a. Write induvial values and sum them up to show conservation of charge. R1 R3 a R4 {I R2 I1 €1 b 13 €3 12 €2 Circuit 4Given n2 = 510, what is n₁? 5415° V 3060 85 1530 O 170 +21 000 ell n₁: N₂ + 30415° V
- a) Find the currents I1, I2, and I3 flowing on the circuit in the figure. b) What current flows in the opposite direction to the assumed direction? c) Using kirchoff's rules, calculate the potential differences between points c and e by following the following ways. path 1 = c-d-e path 2 = c-d-a-e path 3 = c-b-a-ea. Find the equivalent resistance between the points A and B for the circuit shown in figure1. Draw the equivalent circuit during every simplification step. 202 102 102 202 300 200Kirchhoff's Law Problem: Please show complete solutions with explanations.