In the circuit, determine the equivalent capacity and the total energy stored. a-) 20 µF; 144mJ b-) 5.78 µF; 41.62 mJ c-) 20mF; 144 µF d-) 5.78mJ; 41.62 µF
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In the circuit, determine the equivalent capacity and the total energy stored.
a-) 20 µF; 144mJ
b-) 5.78 µF; 41.62 mJ
c-) 20mF; 144 µF
d-) 5.78mJ; 41.62 µF
![10 uF
10 uF
10 uF
35 uF
20 uF
5 uF
15 uF
15 uF
120 V](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8f6150a7-9048-4cc9-81f3-35b8e9009394%2Fa632eeec-d0a3-41e1-ac38-345c0f3a03ce%2Fsibv68q_processed.png&w=3840&q=75)
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- See the above circuit diagram to answer the question. The battery voltage is, V = 89.5 V; R1 = 51 Ohms; R2 = 115 Ohms; R3 = 146 Ohms; R4 = 79 Ohms; R5 = 59 Ohms; and R6 = 69 Ohms. How much current flows through resistor R4? 0.232A 0.163A 0.395A 0.099A1. For the following, put all final answers in the +20V table below or sketch a similar table. а. Solve for the equivalent resistance of the circuit. Put your final answer in the table. 12 Q b. Solve for the voltage across and the 1Q 20 Q current through each resistor in the circuit. Fill in the table. Equivalent Resistance = Ω Resistor (2) ||AV| (V)| |I| (A) 1 5 12 20Given the circuit below, determine the magnitude of the current through the 20-volt source.
- If a battery contains 2500 milliAmp-hours (mAh) of charge, how much total energy can it deliver while operating an electrical device at 3.15 volts?In the diagram, Vo = 7Volts, C = 5µF, Cz = 8uF, and C3 =7 µF. Part A - Detemine the equivalent capacitance for this circuit. να ΑΣφ Ce = Submit Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining Part B - Determine the voltage across C, V ν ΑΣΦ P Pearson- In the circuit, the potential difference across the battery is 18 V. V1 is 7.0 V and R2 = 30.0 Ω.a) Calculate the values of R1, V2, and the current through the circuit. (b) How long will it take for 12 C of charge to pass through the circuit?