Determine the current (both magnitude and direction - either right or left) in each of the resistors in the following circuit. 25.00 V 5.00 V ww 122 Ω mw 5.6 Ω mu 75 Ω
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- Consider the circuit shown in Figure P28.21 on page 860. (a) Find the voltage across the 3.00-0 resistor, (b) Find the current in the 3.00-12 resistor.In the circuit given below, R= 55 Q. Find vy, v2, and v3 using nodal analysis. 240 V 20i 20 Ω 102 40 Ω The value of vy in the circuit is V. The value of v2 in the circuit is V. The value of v3 in the circuit is V. wwTime left 1:22:49 Refer to the given circuit. C1 = 5 µF C3 = 8 µF C2 = 4 µF C4 = 6 µF C5 = 4 µF DURACELL VT = 12 V Determine the amount of energy stored in capacitor #2 (C2)? Select one: а. 63.85 micro Joules O b. 69.12 micro Joules O c. 103.68 micro Joules d. 79.81 micro Jpules
- Refer to the given circuit. C1 = 5 µF C3 = 8 µF C2 = 4 µF C4 = 6 µF Cs = 4 µF DURACELL VT = 12 V Compute for the total energy of the entire circuit. Select one: a. 128.42 micro Joules O b. 352.12 micro Joules О. 273.56 micro Joules O d. 478.08 micro Joules81. mmh Find the magnitude and the direction of the current in the 2.0- resistor in the drawing. 1.0 Ω 2.0 Ω 1.0 V ww F 3.0 Ω M 4.0 V 3+Given Vtotal = 120V∠0 o , Z1= 30 Ω ∠60 o , Z2 = 50 Ω ∠-45 o , all connected in parallel. a. current across I1b. total currentc. admittance
- Find the value of R for maximum power transferred to the load and calculate maximum power transferred to the load for the circuit given below. ww 30 ww 30 403 603 R. 2A 28 V.Refer to the given circuit. C1 = 5 µF C3 = 8 µF C2 = 4 µF C4 = 6 µF C5 = 4 µF DURACELL VT = 12 V Compute for the amount of voltage across сарacitor #5? Select one: O a. 7.2 volts O b. 4.8 volts O c. 5.65 volts O d. 6.36 voltsCompute for the current i2 in the circuit shown below. -555.4737 mA -555.2096 mA -554.6218 mA -554.9879 mA a b- www 5 Ohms' V1 의미다 15 V ww 23 .r2 -3 Ohms i2 V2 흠 BV R_LOAD ww 10 Ohms ww 33 .r3 3 Ohms i3 V3 허미다 3V
- In the circuits shown below, C = 5.00 µC, R = 10.0 MN and ɛ = 12.0 V. when the switch is closed for 25.0 seconds, the voltage across the resistor is: O a. 8.00 V O b. 6.00 V 10.0 V O d. 2.40 V O e. 1.60 V4&cmid%3D9729&page=D11 juò 12 For the following circuit in the figure below, find the power ( in units of Watt) delivered to the 2R-resistor when ɛ = 24.1 V and R = 3.0 0? put of question 2R Select one: O A. 145.2 O B. 24.2 OC. 72.6 O D. 18.2 O E. 48.4Determine the equivalent resistance between terminals a and b. R1 à ww 5 Ohms Ο 7.4483 Ω Ο 8.0977 Ω 8.4483 Q R2 ww 7 Ohms R3 ww 8 Ohms R5 ww 4 Ohms R4 WW 10 Ohms 30°C Rain sho...