Question

1. Forced Response Response of RC circuit The component values for the circuit shown below are v = 16 V. RI= R2 3 kQ. R3= 8 kQ. and C-25/1 F. Assume that the switch had been open for a long time prior to t-0 i is the current passing through R. v is the voltage across the capacitor. Determine (a) (or and v(or) i0and v 0 b) (o)and v(or) (c) i[oo) and v(oo (d) i(t) for t20 (e) v(t) for t20

0 0
Add a comment Improve this question Transcribed image text
Answer #1

at t=δ Switch S opee ciecited fR 6 1.1428A V67-12:5 1 at t-o Suitch is eloge with initio V。 2.53) 2.51 V

Add a comment
Know the answer?
Add Answer to:
1. Forced Response Response of RC circuit The component values for the circuit shown below are...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Learning Goal: To analyze an RC circuit to determine the initial voltage across a capacitor, the...

    Learning Goal: To analyze an RC circuit to determine the initial voltage across a capacitor, the time constant, and the expression for the natural response of the capacitor voltage, and then to find other circuit quantities such as current,voltage, power, or energy. The natural response of an RC circuit is the response of the capacitor voltage to the sudden removal of a DC source. When this occurs, the capacitor releases its stored energy Figure < 10121〉 t 0 V. Figure...

  • 3. In the RC circuit shown in the figure below the capacitor is initially uncharged R-100?...

    3. In the RC circuit shown in the figure below the capacitor is initially uncharged R-100? R2 3002, C-250 uF (a) At what time after the switch is connected to A will the voltage across the capacitor be 5.6 V? (b) What is the current through Ri when the voltage across the capacitor equal 5.6 V? (c) When the voltage across C is 5.6V the switch is quickly thrown to position B. At what time after the switch is thrown...

  • (1) Consider the RC circuit shown in Figure 1. For t<0 the switch is open, and...

    (1) Consider the RC circuit shown in Figure 1. For t<0 the switch is open, and the charge stored on the capacitor is 0. At t-0 the switch is closed, and the voltage source begins charging the capacitor. Let R1-R2-220 Ω , C-0.47 μ F , Vs-5 V. (a) Write the differential equation as an expression for the capacitor voltage fort> 0 (i.e. write the differential equation) and calculate the time constant (b) Calculate the steady-state capacitor voltage R2 R1...

  • 5. [RC Circuits] Consider the circuit shown in Figure 5 attached. As shown, the switch is...

    5. [RC Circuits] Consider the circuit shown in Figure 5 attached. As shown, the switch is in position "A" for t < 0, and the circuit has been at rest for a long time. At time t = 0, the switch opens and the capacitor starts to drain across the resistor. (a) When the switch is closed and there is only a direct current (DC) source, the capacitor acts like an open circuit. Find the constant voltage across the capacitor...

  • Problem 2:(20 points) Consider the RC circuit in Figure 2. You may assume that the switch...

    Problem 2:(20 points) Consider the RC circuit in Figure 2. You may assume that the switch has been opened long enough for the voltages and currents to reach steady-state values. At time t = 0 the switch is closed. t-0 Figure 2: The switch in the RC circuit is closed at timet0 1. (6 points) Find the voltage v(0-) and the current i(0) just before the switch is closed. 2. (6 points) Find the voltage v(0+) and the current i(0+)immediately...

  • 2 First-Order RC Circuit: Natural Response The switch in the circuit in Figure 2 has been...

    2 First-Order RC Circuit: Natural Response The switch in the circuit in Figure 2 has been in position for a long time. At t = 0, the switch moves to position (the switch opens) and stays there. Assuming that V. > O for the constant voltage source, (a) find vc(0-), vc(0+), ic(0-), and ic(0+); (b) find vc(t) when t 20 (if you want, you can write vo(t) by circuit inspection; you don't need to show the differential equation); and (c)...

  • Question 4: RC Circuit: a) Charging capacitor: A simple RC circuit is given in Figure 4a....

    Question 4: RC Circuit: a) Charging capacitor: A simple RC circuit is given in Figure 4a. The capacitor is empty initially and switch was open for a long time. 4E, (V) EMF is used to charge the capacitor as switch is closed at t=0s. By using Kirchhoff's voltage law and Ohm's law that you learned so far, analyze this circuit and find the unknowns given below. 1)At t=0s. draw the equivalent circuit and find v. (Os), i. (Os), i (Os),...

  • Need help Given the circuit at the right in which the following values are used: R...

    Need help Given the circuit at the right in which the following values are used: R 20 kS2 R2- 12 kQ, C-10 μ F, and ε -25 V. You- close the switch at t-0. Find (a) the current in Ri and R2 at t-0, (b) the voltage across Ri after a long time. (Careful with this one.) R2

  • In the RC circuit shown, the capacitor is initially charged to 10 volts, and the switch...

    In the RC circuit shown, the capacitor is initially charged to 10 volts, and the switch closes at time t=0. The voltage across the capacitor can be described by the equation Vc(t) given below for time t>=0 (greater than, or equal to, O). Determine V_1 and V_2 for this equation. R=100KR C=o.lMF I capacitor initially I charged to 10 volts V(t) = V₂ + (VZ-V4) e ERC for tzo

  • Q2. In the RC Circuit shown in Figure 2, the capacitor is initially uncharged (at time...

    Q2. In the RC Circuit shown in Figure 2, the capacitor is initially uncharged (at time t=0). 2- In the RC Circuit shown in Figure 2, the capacitor is initially uncharged (at time t=0). (ignore the internal resistance of the battery) Figure 2 C= 5.0nF a) Calculate the current I released by the battery, just after the switch S is closed at t=0, (7 pts) b) Calculate the max. power dissipated in the lightbulb, (9 pts) c) Now lets open...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT