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- Consider the following circuit diagram, assuming the voltage is V = and all the capacitors have C = 2µF. 10v, C, C3 C5 a) By finding the equivalent capacitance, and then working backwards, find the voltage drop across each capacitor, and the charge stored on each ca- pacitor. b) What is the energy stored in each capacitor? c) Now replace each capacitor with R= 20 resistors. By finding the equiv- alent resistance and working backwards, find the voltage drop across each resistor and the current through each resistor. d) What is the power dissipated by each resistor? What is the power deliv- ered by the voltage source?What is the effective capacitance between the terminals A & B? A) 6 μF B) 5 μF C) 4 μF D) 3 μFd) Find the power delivered to the resistor e) Find the rate at which the energy stored in the capacitor is increasing
- Question 6) Figure shows a circuit that contains two batteries and two resistors. Determine the current I in the circuit. A single-loop circuit that contains two batteries and two resistors. 12 2 6.0 V ww- 8.0 Q 24 V SAMSUNG & 5 7 8 9. y u i 口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?