Question

Find the time constant in the following circuit for the given Capacitance and Resistance values.

R M V u(t) C

The voltage source is represented by:

V(t) = V5(1 -e =)

The capacitance and resistance values are the following:

R C 1 kΩ 0.01 μF 10 kΩ 0.01 μF

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

Problem Time Constant E = QC IkXoiofre loresees R= lokn C= 0.0F time Constant CE Rc lokxo.01 0.1 mseel​​​​​​

Add a comment
Know the answer?
Add Answer to:
Find the time constant in the following circuit for the given Capacitance and Resistance values. The...
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
  • Physics 1. A series RC circuit has a resistance of 56.0 kΩ and capacitance of 15.0...

    Physics 1. A series RC circuit has a resistance of 56.0 kΩ and capacitance of 15.0 μF, is connected to a source of 9.0 V. (a) Determine the time constant of the circuit. (b) Make a load chart vs. Time / Go to :(Https://www.desmos.com/calculator). For the graph, use the following domain-0.166 ≤ x ≤ 10.5 and the range 0 ≤ and ≤ 0.00015, these values are set to "graph setting". (c) What is the load in the circuit after 1.8...

  • A simply RC circuit made up of a capacitor with capacitance C and resistor with resistance...

    A simply RC circuit made up of a capacitor with capacitance C and resistor with resistance R = 15 kΩ is attached to a battery with emf E = 24 V. If time constant is 25 µs, what is the capacitance C and the time it takes for the voltage across the capacitor to reach 16 V after the switch is closed at t = 0?

  • Physics 1. A series RC circuit has a resistance of 56.0 kΩ and capacitance of 15.0 μF, is connect...

    Physics 1. A series RC circuit has a resistance of 56.0 kΩ and capacitance of 15.0 μF, is connected to a source of 9.0 V. (a) Determine the time constant of the circuit. (b) Make a load chart vs. Time / Go to :(Https://www.desmos.com/calculator). For the graph, use the following domain-0.166 ≤ x ≤ 10.5 and the range 0 ≤ and ≤ 0.00015, these values are set to "graph setting". (c) What is the load in the circuit after 1.8...

  • 5. Using the values of the capacitance and resistance you have set, calculate the time constant,...

    5. Using the values of the capacitance and resistance you have set, calculate the time constant, T. 6. You may set the voltage of the battery in the same way you set the values for the capacitor and resista The default is 5.0V. Any value between 5.0V and 12.0V would be fine. 7. Calculate what the voltage should be after one time constant, T. This should be the voltage of th capacitor when 1=T 400pF 120 OV capacitor, 400 HF...

  • 7 A circuit consists of a resistor of resistance R, and a capacitor of capacitance C,...

    7 A circuit consists of a resistor of resistance R, and a capacitor of capacitance C, connected in series, and is described by the first order differential equation - + y = E where E is the constant e.m.f. and v is the voltage across the capacitor. Given that v(O) = 0, show by using the integrating factor method that v = E(1 - e-t/(RC))

  • 14. Problem For the circuit in figure below, find the steady-state output voltage vo (t). The inp...

    14. Problem For the circuit in figure below, find the steady-state output voltage vo (t). The input signal is v (t) and C = 5 μF 4-2 cos 100t, R 1 kΩ Do C R 12 U) 14. Problem For the circuit in figure below, find the steady-state output voltage vo (t). The input signal is v (t) and C = 5 μF 4-2 cos 100t, R 1 kΩ Do C R 12 U)

  • 9. For the given circuit, if the initial voltage across the capacitor is vc(0*) = 0,...

    9. For the given circuit, if the initial voltage across the capacitor is vc(0*) = 0, find an expression for the voltrage across the capacitor as a function of time and graph voltage versus time. R= 100 k2 w v=100 V uc) C = 0.01 uF 10. If a 100-F capacitance is initially charged to 1000V and at t=0, it is connected to a 1-ka resistance, at what time has 50 percent of the initial energy stored in the capacitance...

  • In an RC series circuit, V = 24.0 V, resistance R = 10.0 KΩ, and capacitance...

    In an RC series circuit, V = 24.0 V, resistance R = 10.0 KΩ, and capacitance C = 2200 μF. All the elements are in series and the capacitor charges gradually to its final charge Calculate the maximum charge stored in the capacitor g) Calculate the initial electric current in the circuit.

  • 10. In the RC series circuit shown below, what is the current in the circuit after...

    10. In the RC series circuit shown below, what is the current in the circuit after 2.0 secs? The battery voltage is є = 12.0 V, the resistance R = 60 kΩ, and the capacitance C = 100 μF SH1 RI C4 100uF L E PE

  • In a series​ resistance-capacitance DC​ circuit, the instantaneous charge Q on the capacitor as a... In...

    In a series​ resistance-capacitance DC​ circuit, the instantaneous charge Q on the capacitor as a... In a series​ resistance-capacitance DC​ circuit, the instantaneous charge Q on the capacitor as a function of time​ (where t=0 is the moment the circuit is energized by closing a​ switch) is given by the equation Q(t)=CV(1-e-t/(RC)​, where​ C, V, and R are constants.​ Further, the instantaneous charging current Ic is the rate of change of charge on the​ capacitor, or Ic=dQ/dt a. Find the...

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