Question

5. Consider an RC circuit with a 20.0V battery, a 350 S2 resistor and a 88.2 uf capacitor (all connected in series). A. Draw
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Solution: C= 88.2 MF R= 35on A V=20.0 V . B. Time constant, T = RC : . 7 = 350 x 88.2 x106 - 3 T = 30.87 x 10 s t = 30.9 ms c

Add a comment
Know the answer?
Add Answer to:
5. Consider an RC circuit with a 20.0V battery, a 350 S2 resistor and a 88.2...
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
  • Example 28.12 Charging a Capacitor in an RC Circuit Problem An uncharged capacitor and a resistor...

    Example 28.12 Charging a Capacitor in an RC Circuit Problem An uncharged capacitor and a resistor are battery, as shown in Figure 28.23. If emf = 12.0 V, C = 5.00 AuF, and R = 8.00 x 105 ?, find the time constant of the circuit, the maximum charge on the capacitor, and the charge and current as functions of time. in series to a Figure 28.23 The switch in this series RC circuit, open for times t> , is...

  • An RC circuit consists of a 5 uF capacitor, an 80,000 ohm resistor, and a 12-V...

    An RC circuit consists of a 5 uF capacitor, an 80,000 ohm resistor, and a 12-V battery. The switch is closed at t=0. a) Find the time constant of the circuit. b) Find the time to reach 90% of the maximum charge across the capacitor.

  • A series RC circuit has a 12 volt battery connected in series to a resistor with...

    A series RC circuit has a 12 volt battery connected in series to a resistor with resistance 1 ?? and a capacitor wi capacitor. The switch is thrown at t-0 seconds. a) Write the differential equation for the circuit. b) Solve the equation for the charge q() and the current io). 8. th capacitance 1 pF. There is an initial charge of 10 nC on the

  • 7. (10 points) You have an RC circuit with a battery (all are in series). The...

    7. (10 points) You have an RC circuit with a battery (all are in series). The battery is a 20V battery, the resistor is 600 92, and the capacitor is 4 uF. Find the following a DERIVE an expression for the current in the circuit at any time. b. Find the charge on the capacitor at t=0.0048 s.

  • helpppp 5. A 250 Q resistor is in series with 200 uF capacitor. These are connected...

    helpppp 5. A 250 Q resistor is in series with 200 uF capacitor. These are connected across a 20 V battery. The switch is turned on, and the capacitor begins to fill. After the capacitor is completely filled the battery is taken out of the circuit and the leads to the battery are shorted together. (a) (6 pts) What is the time constant, the maximum current, and the maximum charge on the capacitor? (b) (6 pts) When t = 0.04...

  • 1. A resistor R = 586 k(ohms) and a capacitor C= 87.4 uF are connected in...

    1. A resistor R = 586 k(ohms) and a capacitor C= 87.4 uF are connected in series with a 9V battery. At t = 0 a switch is closed and the capacitor is allowed to charge. a) What is the initial current in the circuit? b) What is the initial charge on the capacitor? c) What is the time constant? d) What is the current after 1.84s has passed? e) At what time is the charge on the capacitor equal...

  • Construct a RC circuit (series) with a capacitor, a resistor, a battery,

    Part A Charging of RC Circuit 1) Construct a RC circuit (series) with a capacitor, a resistor, a battery, two switches, and appropriate meters that will enable you to make measurements of the parameters for charging up the capacitor. The placement of the switches allows you to measure both charging and discharging of the RC circuit. See diagram below: 2) Choose a combination of Rand C that will give you a time constant(T) of 20 seconds. T=R*C 20= 100* C=0.2F 3) Set the...

  • Consider a series RC circuit as in the figure below for which R = 8.00 M2,...

    Consider a series RC circuit as in the figure below for which R = 8.00 M2, C = 4.00 uF, and ε = 34.0 V. sa (a) Find the time constant of the circuit. (b) What is the maximum charge on the capacitor after the switch is thrown closed? UC (c) Find the current in the resistor 10.0 s after the switch is closed. НА

  • "O OHLEI E PICS! 3. An RC-Circuit is made up of a 12 kO resistor, a...

    "O OHLEI E PICS! 3. An RC-Circuit is made up of a 12 kO resistor, a 40 uF capacitor and a 9.0 V battery. The battery is used to charge the capacitor, and then it is removed from the circuit through the use of a switch, allowing the capacitor to discharge. a. (3 pts.) What is the time constant of the circuit? b. 17 pts.) Calculate the voltage across the capacitor, voltage across the resistor, and the current in the...

  • A) Consider a resistor series RC circuit with a 7.9 μF, capacitor, a 4 × 106...

    A) Consider a resistor series RC circuit with a 7.9 μF, capacitor, a 4 × 106 Ω resistor and 23 V emf. Find the time constant of the circuit. Answer in units of s. B) Find the maximum charge on the capacitor after a switch in the circuit is closed. Answer in units of C.

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
Active Questions
ADVERTISEMENT