Q1) For the network in a. Find the mathematical expression for the voltage across the capacitor after the switch is thrown into position 1. b. Repeat part (a) for the current ic. c. Find the...


Q1) For the network in<br>a. Find the mathematical expression for the voltage<br>across the capacitor after the switch is thrown into<br>position 1.<br>b. Repeat part (a) for the current ic.<br>c. Find the mathematical expressions for the voltage ve<br>and current ic if the switch is thrown into position 2<br>at a time equal to five time constants of the charging<br>circuit.<br>d. Plot the waveforms of v and ic for a period of time<br>extending from t 0 to t = 30 µs.<br>%3D<br>2.<br>E<br>80 V C<br>10 pF Ve R2<br>390 k2<br>R1<br>100 k2<br>

Extracted text: Q1) For the network in a. Find the mathematical expression for the voltage across the capacitor after the switch is thrown into position 1. b. Repeat part (a) for the current ic. c. Find the mathematical expressions for the voltage ve and current ic if the switch is thrown into position 2 at a time equal to five time constants of the charging circuit. d. Plot the waveforms of v and ic for a period of time extending from t 0 to t = 30 µs. %3D 2. E 80 V C 10 pF Ve R2 390 k2 R1 100 k2

Jun 10, 2022
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