Question

What capacitance, in μF, has its potential difference increasing at 1.5×106 V/s when the displacement current in the capacitor is 1.2 A ?

Problem 34.9 Part A What capacitance, in μF has its potential difference increasing at 1.5×106 V/s when the displacement current in the capacitor is 1.2 A ? Express your answer using two significant figures 四? c= AF Submit My Answers Give Up

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
What capacitance, in μF, has its potential difference increasing at 1.5×106 V/s when the displacement current...
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
  • What capacitance, in uF, has its potential difference increasing at 1.2x106 V/s when the displacement current in the ca...

    What capacitance, in uF, has its potential difference increasing at 1.2x106 V/s when the displacement current in the capacitor is 0.60 A ? Express your answer using two significant figures. VO AQ R o 2 ? C = Submit Request Answer

  • What capacitance, in mu F, has its potential difference increasing at 1.5 times 10^6 V/s when...

    What capacitance, in mu F, has its potential difference increasing at 1.5 times 10^6 V/s when the displacement current in the capacitor is 1.4 A ? Express your answer using two significant figures.

  • Constants PartA In the figure (Figure 1), G-G-8.5 μF and C2-C3 -G-4.3 R. The applied potential...

    Constants PartA In the figure (Figure 1), G-G-8.5 μF and C2-C3 -G-4.3 R. The applied potential is Kb-200 V What is the equivalent capacitance of the network between points a and b? Express your answer using two significant figures. Figure of 1 Ci C3 Submit Incorrect; Try Again; One attempt remaining C4 Part B Calculate the charge on capacitor C1. Express your answer using two significant figures. Part G Calculate the potential difference across capacitor C3 . Express your answer...

  • Three capacitors having capacitances of 8.3 μF, 8.9 μF and 4.9 μF are connected in series across a 36 V potential difference.

    Three capacitors having capacitances of 8.3 μF, 8.9 μF and 4.9 μF are connected in series across a 36 V potential difference. Part A What is the charge on the 4.9 μF capacitor? Part B What is the total energy stored in all three capacitors?Part C The capacitors are disconnected from the potential difference without allowing them to discharge. They are the reconnected in parallel with each other, with the positively charged plates connected together. What is the voltage across each capacitor...

  • The maximum current in a 26 μF capacitor connected to an ac generator with a frequency...

    The maximum current in a 26 μF capacitor connected to an ac generator with a frequency of 140 Hz is 0.15 A . Part A What is the maximum voltage of the generator? Express your answer using two significant figures. Vmax = 6.6 V ----> correct answer Part B What is the voltage across the capacitor when the current in the circuit is 0.10 A and increasing? Express your answer using two significant figures. V = ??? V I've tried...

  • Part E Constants Calculate the potential difference across C In (Figure 1), each capacitor has C-4.10...

    Part E Constants Calculate the potential difference across C In (Figure 1), each capacitor has C-4.10 μF and Vab 25.0V Express your answer in volts to three significant figures. Vi-10 Previous. Answers Request Answer Figure 1 of 1 X Incorrect; Try Again; 5 attempts remaining Part F Calculate the potential difference across C2 Express your answer in volts to three significant figures. 2 Part G Constants In (Figure 1), each capacitor has C = 4.10 μF and Vab 25.0V Calculate...

  • Problem 28.38 Part A A 3.0 μF capacitor has a capacitive reactance of 1.0 kΩ What...

    Problem 28.38 Part A A 3.0 μF capacitor has a capacitive reactance of 1.0 kΩ What is the frequency of the applied voltage? Express your answer using two significant figures. A2op Submit My Answers Give Up Part B What inductance would give the same value foir inductive reactance at this frequency? Express your answer using two significant figures. A2op Submit My Answers Give Up

  • Problem 32.12 A capacitor has a peak current of 310 μA when the peak voltage at...

    Problem 32.12 A capacitor has a peak current of 310 μA when the peak voltage at 340 kHz is 2.5 V Part A What is the capacitance? Express your answer to two significant figures and include the appropriate units. c= Value Units Submit Give Up Part B If the peak voltage is held constant, what is the peak current at 680 kHz ? Express your answer to two significant figures and include the appropriate units. le=1 Value Units

  • A 6.0-cm-diameter parallel-plate capacitor has a 0.42 mm gap. You may want to review (Pages 884...

    A 6.0-cm-diameter parallel-plate capacitor has a 0.42 mm gap. You may want to review (Pages 884 - 886). Part A What is the displacement current in the capacitor if the potential difference across the capacitor is increasing at 500,000 V/s? Express your answer to two significant figures and include the appropriate units. DN: MÅ pe o 2 ? Idisp = Value | Units Submit Previous Answers Request Answer

  • Constants Part A A charged capacitor with C-780 μF is connected in series to an inductor...

    Constants Part A A charged capacitor with C-780 μF is connected in series to an inductor that has L-0310 H and negligible resistance. At an instant when the current in the inductor is 1.60 A , the current is increasing at a rate of di/dt 89.0 A/s During the current oscillations, what is the maximum voltage across the capacitor? Express your answer to three significant figures and include the appropriate units. Units IAKValue max = Submit Previous Answers Request Answer

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