The emfs in the figure below are &₁ = 5.00 V and &2 = 18.0 V. The resistances are R₁ = 17.50, R₂ = 31.50, R3 = 47.00, and R4 = 58.0 . Find the magnitude of the current in each resistor when the switch is in the following states. R₂ ww 44 R₁ ww R3 S R₁
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- Find the current through the resistor R3 given that V=12.0V, R1=4.73Ω, R2=9.46Ω, R3=23.65Ω, and R4=14.19Ω. Group of answer choices 0.5585 A 4.2279 A 5.5585 A 2.1545 A 0.2495 ADetermine the current in the 10-V emf. 5.0 Q 10 V 5.00 15 V 5.0 Q O 2.3 A O 2.7 A 01.3 A O0.3 A O 2.5 AEach resistor in the three circuits in the drawing has the same resistance R, and the batteries have the same voltage V. The values for R and Vare 70 and 6.0 V, respectively. Determine the total power delivered by the battery in each of the three circuits. PA= i PB = Pc = Mi i ww ww www. F Circuit A F wwwww wwww F لششا V Circuit C Circuit B > >
- = 22.0 V. First, the In the figure R₁ = 10.4 kQ, R2 = 14.1 kQ, C = 0.402 μF, and the ideal battery has emf switch is closed a long time so that the steady state is reached. Then the switch is opened at time t = 0. What is the current in resistor 2 at t = 4.50 ms? &. R₂ R₁Find the magnitude of the current in the 2.0-0 resistor in the drawing. 1.0 2 ww 2.0 2 1.0 V 3.0 2 4.0 Vww R₁ R₂ ww R₁ = 10 R₂ = 20 R3 = 3Ω RA = 4Ω R5 = 50 I = 1A = www R₁ www R₁₂ 3 www R₁ Kirchhoff's rules to determine the EMF of the battery (in in the answer box). The current given above is total
- The capacitor, C1 = 1.2 pF, in the circuit below begins with no stored charge. At t = 0 seconds, the switch is closed. What is the current (in mA) through the resistor, R1 = 9.1 MQ, at t = 4.2 usec? R1 +12V wwA capacitor of capacitance C and resistors of resistance R are connected in series as shown in the picture below. The switch is initially open. Which of the following statements is true after the switch has been closed for a very long time? C R AVR = 0 AVc = 05.0 k2 and R2 =10.0 k2, along 4. In the circuit shown, there are two resistors, with R1 with a capacitor, with C=15.0 µF, initially uncharged, parallel to the second resistor. The battery supplies a voltage of &=30.0 V. The switch is closed at t= 0. (a) At that instant, what is the current in each resistor? What are the final (b) currents and (c) charge on the capcitor when the switch has been closed for a long time? (d) When the switch is re-opened, what is the time-constant for the discharging capacitor? R C
- In the figure the current in resistance 6 is ig = 1.34 A and the resistances are R1 = R2 = R3 = 1.77 Q, R4 = 18.0 Q, R5 = 7.60 Q, and R6 = 3.79 Q. What is the emf of the ideal battery? R R2 R, R4 16Find the magnitude and direction (up or down) of the current 1 passing through the R, resistor. Start by placing on each resistor R1, R2 and R3 an arrow showing the direction of the currents /1, I2 and Ig. R1-6.3 Ω, R26.3 Ω, Rs 3.9 Ω, ε1 -93 V and E-62 ν. %3D %3D (Submit below the magnitude of the current only. Do not give units but present the answer as if the units were in A. Estimated time for this question is 20 minutes.) R1 R23 R3 E1 E2 +. NextListen In the following circuit, V₁ =107 V and V2 = 126 V and all the resistors are R = 19 Q Find the current that passes through R2 R₁ ww R₂ ww ww Your Answer: R3 V₂