Given the following series circuit + 30 V- 2002 R1 R3 40 Ω R2 30 Ω Calculate the current I of the circuit, and the voltage on the Resistor of 30 = VR2
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- 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 1.15Find the voltage across each inductor for the given circuit using the voltage divider rule. VL1 +m= L₁=10mH Vs=100 V, 60 Hz VL2 +mm- L₂=14mHIf a circuit has a resistance of 3002 and a series inductance of 5002, what is the relationship between the applied circuit voltage and the circuit current? The applied voltage lags the circuit current. The phase shift between the circuit voltage and current changes with time. The applied voltage is in phase with the circuit current. The applied voltage leads the circuit cur Previous Page Next Page Page 2 of 10
- = Using Kirchhoff's rules, find the following. (₁ = 70.9 V, 8₂= 60.7 V, and 83 1 E₁ R₂ E₂ 4.00 ΚΩ www R₂ 3.00 ΚΩ d E₁ 2.00 ΚΩ www R₁ (a) the current in each resistor shown in the figure above (b) the potential difference between points c and f 79.1 V.)Reduce the following circuit to its simplest form: L₁ LA voo 0.56 H L2 1.2 H R ww voo 1.8 H L3= 1.2 H moo5: For the coupled circuit shown in Figure 3, find the voltage across the capacitor of -j102 reactance with Vi-1040° V and V2-10290° V? j20 50 j50 50 -j100 Figure 3
- Estimate voltage E2 when E1=90sin2400t V, R1=R2=20 ohms, L1= L2=3mH and M=0.15mHHomework 2. Find the power consumption of each indi- vidual component in the following circuit. E₁ = 120 V R₁ = 1200 £2 ww w R₂ = 800 £2 w R₁ = 220 2 R₂ = 500 £2Charging: A 0.2 F capacitor and a 80092 resistor are connected in series with a battery of voltage 10 volts as shown in the figure. E Answer questions 1-5 www R Tim Atte ON
- Solve fore the currents of each resistor using Kirchoff's laws (Show complete solution PLS) Write legibly150 Vm sin'do x3 %3D vm.s 30Use 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