onsider the circuit below: SW1 R1 100 Q +V1 12 V C1 1 mF R2 100 Q The capacitor has an initial voltage of 3V and the switch is closed at time t=0; Determine the following: i.) The time constant, tau, for the capacitor charging ii) an expression for the time, tch, to develop a voltage of Vc volts across the capacitor, where 3
onsider the circuit below: SW1 R1 100 Q +V1 12 V C1 1 mF R2 100 Q The capacitor has an initial voltage of 3V and the switch is closed at time t=0; Determine the following: i.) The time constant, tau, for the capacitor charging ii) an expression for the time, tch, to develop a voltage of Vc volts across the capacitor, where 3
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Circuit Theory
Electric circuits are a network that comprises of a closed-loop, which helps in providing a return path for the current through a switch. When the switch is activated, the load operates, and the current accepts a path to finish the circuit at a low potential level from the opposing high potential level. Electric circuits theory is a linear analysis that helps in establishing a linear relation of voltage and current for R (resistance), L (inductance), and C (capacitance).
Question
![Consider the circuit below:
SW1
R1
100 0
+V1
12 V
C1
1 mF
R2
100 a
The capacitor has an initial voltage of 3V and the switch is closed at time t=0;
Determine the following:
i.) The time constant, tau, for the capacitor charging
ii) an expression for the time, tch, to develop a voltage of Vc volts across the capacitor, where
3<V2<12.
iii.) The maximum current, Imax, through the capacitor
Enter your answer as a MATLAB row vector in the following format: [tau tch Imax] eg [ 21
3*Vc+log(4/1.5) 25]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb4eadaff-773b-47b7-a8e5-75d27ef2bc22%2Fea909950-8465-40fd-b5b1-8b7864b4a616%2F32voyyb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider the circuit below:
SW1
R1
100 0
+V1
12 V
C1
1 mF
R2
100 a
The capacitor has an initial voltage of 3V and the switch is closed at time t=0;
Determine the following:
i.) The time constant, tau, for the capacitor charging
ii) an expression for the time, tch, to develop a voltage of Vc volts across the capacitor, where
3<V2<12.
iii.) The maximum current, Imax, through the capacitor
Enter your answer as a MATLAB row vector in the following format: [tau tch Imax] eg [ 21
3*Vc+log(4/1.5) 25]
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