Part A At the time the switch is closed in the circuit in (Figure 1). the voltage across the paralleled capacitors is 50

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answerhappygod
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Part A At the time the switch is closed in the circuit in (Figure 1). the voltage across the paralleled capacitors is 50

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Part A At The Time The Switch Is Closed In The Circuit In Figure 1 The Voltage Across The Paralleled Capacitors Is 50 1
Part A At The Time The Switch Is Closed In The Circuit In Figure 1 The Voltage Across The Paralleled Capacitors Is 50 1 (56.44 KiB) Viewed 24 times
Part A At The Time The Switch Is Closed In The Circuit In Figure 1 The Voltage Across The Paralleled Capacitors Is 50 2
Part A At The Time The Switch Is Closed In The Circuit In Figure 1 The Voltage Across The Paralleled Capacitors Is 50 2 (54.73 KiB) Viewed 24 times
Need help on a,b,c, and d
Part A At the time the switch is closed in the circuit in (Figure 1). the voltage across the paralleled capacitors is 50 and the voltage on the Cz capacitor is 40 V. Take that C = 410 nF, C = 970 nF and C3 = 500 nF. What percentage of the initial energy stored in the three capacitors is dissipated in the 24 kN2 resistor? Express your answer using two decimal places. View Available Hint(s) VALO If vec ? % diss = % Figure < 1 of 1 > Submit Part B C3 4002 + 40 V - = 0 What percentage of the initial energy stored in the three capacitors is dissipated in the 400 12 resistor? Express your answer using two decimal places. View Available Hint(s) 24 kΩξ 16 kΩs G50 V C2 ΙΙ ΑΣΦ It vec 0 ? % diss = %
Part C At the time the switch is closed in the circuit in (Figure 1), the voltage across the paralleled capacitors is 50 V and the voltage on the Cz capacitor is 40 V. Take that C = 410 nF, C2 = 970 nF and C3 = 500 nF. What percentage of the initial energy stored in the three capacitors is dissipated in the 16 kN2 resistor? Express your answer using two decimal places. View Available Hint(s) ΟΙ ΑΣΦ It vec ? % diss = % Submit Figure < 1 of 1 > Part D Cз What percentage of the initial energy is trapped in the capacitors? Express your answer using two decimal places. 400 Ω + 40 V t = 0 View Available Hint(s) 24 kΩξ 16 kΩ Ci 50 V C2 ΟΙ ΑΣΦΙ! | vec ? % trapped = %
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