Please determine the following assuming that the capacitor voltage is steady right before t = 0. a) The initial capacitor voltage v(0) b) The final capacitor voltage Vinat long after the switches have changed. c) A neat circuit schematic for the transient period. d) A differential equation for the capacitor voltage in the circuit shown in part c. e) The solution of the differential equation v(t) for t≥ 0

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter21: Resistive-capacitive Series Circuits
Section: Chapter Questions
Problem 6RQ: A 15-F AC capacitor is connected in series with a 50 resistor. The capacitor has a voltage rating...
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I need help with parts: a,c,d,e

30 V
+
Script
12 92
www
0
6Ω
+ v(t)
HH
0.1 F
6Ω
www
0
3 Ω
www
4 A
Please determine the following assuming that the capacitor voltage is steady right before t = 0.
a) The initial capacitor voltage v(0)
b)
The final capacitor voltage Vfinal long after the switches have changed.
c) A neat circuit schematic for the transient period.
d) A differential equation for the capacitor voltage in the circuit shown in part c.
e) The solution of the differential equation v(t) for t≥ 0
Save
6 t=linspace(0, 10, 100);
7
8 vc_t = []; % Please enter the voltage v(t) across the capacitor as a function of time in volts
C Reset
1 vc_0 = [] % Please enter the initial voltage across the capacitor in Volts
2 v_final = [10]; % Please Enter the final voltage (steady state voltage) across the capacitor in Volts
3 Rth = [];% Please simplify down the circuit to a series circuit. Please enter the equivalent resistance in Ohms
4 tau = [];% Please enter the time constant tau in seconds
5
MATLAB Documentation
Transcribed Image Text:30 V + Script 12 92 www 0 6Ω + v(t) HH 0.1 F 6Ω www 0 3 Ω www 4 A Please determine the following assuming that the capacitor voltage is steady right before t = 0. a) The initial capacitor voltage v(0) b) The final capacitor voltage Vfinal long after the switches have changed. c) A neat circuit schematic for the transient period. d) A differential equation for the capacitor voltage in the circuit shown in part c. e) The solution of the differential equation v(t) for t≥ 0 Save 6 t=linspace(0, 10, 100); 7 8 vc_t = []; % Please enter the voltage v(t) across the capacitor as a function of time in volts C Reset 1 vc_0 = [] % Please enter the initial voltage across the capacitor in Volts 2 v_final = [10]; % Please Enter the final voltage (steady state voltage) across the capacitor in Volts 3 Rth = [];% Please simplify down the circuit to a series circuit. Please enter the equivalent resistance in Ohms 4 tau = [];% Please enter the time constant tau in seconds 5 MATLAB Documentation
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