Question

A parallel-plate capacitor with circular plates and a capacitance of 11.9 uF provides a voltage of 14.4 V Part A is connected
0 0
Add a comment Improve this question Transcribed image text
Answer #1

PageNo2 Solution 11.9 x1o6 Fx4.4 V Pasut A Chage - on each plate C- eoA Ci d2 Put &d fo d2 and d fax d, în the above euaton aPoge No amd Subsute 19 ylo-6 F fasi Ci amd get we 11-9 Xlo6x 4.4 5 8.568 xlo Change between the Plates i 8.568 Xloc Paut CAsePage No3 Put ча fauc in the equasfon @- чСV Subeitute 1.9 xlo tasu C and 14.4v 7ов э Чх 1-9х10 6 х 14-4 = 6. 85 C between pla

Add a comment
Know the answer?
Add Answer to:
A parallel-plate capacitor with circular plates and a capacitance of 11.9 uF provides a voltage of...
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
  • A parallel-plate capacitor with circular plates and a capacitance of 13.1 mu F is connected to...

    A parallel-plate capacitor with circular plates and a capacitance of 13.1 mu F is connected to a battery which provides a voltage of 10 9 V. What is the charge on each plate? How much charge would be on the plates if their separation were doubled while the capacitor remained connected to the battery? How much charge would be on the plates if the capacitor were connected to the battery after the radios of each plate was doubled without changing...

  • Please anawer all the parts of the question 5. A 10.0 uF parallel-plate capacitor with circular...

    Please anawer all the parts of the question 5. A 10.0 uF parallel-plate capacitor with circular plates is connected to a 12.0 V battery. (a) What is the charge on each plate? (answer: 120 uC) (b) How much charge would be on the plates if their separation were doubled while the capacitor remained connected to the battery? (answer: 60 HC) (c) How much charge would be on the plates if the capacitor were connected to the 12.0 V battery after...

  • A parallel-plate capacitor has capacitance 7.50 uF. (a) How much energy is stored in the capacitor...

    A parallel-plate capacitor has capacitance 7.50 uF. (a) How much energy is stored in the capacitor if it is connected to a 19.00-V battery? ա․ (b) If the battery is disconnected and the distance between the charged plates doubled, what is the energy stored? uJ (c) The battery is subsequently reattached to the capacitor, but the plate separation remains as in part (b). How much energy is stored? u]

  • A parallel-plate capacitor has capacitance 9.50 uF. (a) How much energy is stored in the capacitor...

    A parallel-plate capacitor has capacitance 9.50 uF. (a) How much energy is stored in the capacitor if it is connected to a 7.00-V battery? (b) If the battery is disconnected and the distance between the charged plates doubled, what is the energy stored? (c) The battery is subsequently reattached to the capacitor, but the plate separation remains as in part (b). How much energy is stored? Need Help? Read It 13. -120 points OSColPhys1 19.5.064 XP A large capacitance of...

  • A parallel-plate capacitor has capacitance 5.20 μF. The capacitor was origionaly connected to a 1.50 V...

    A parallel-plate capacitor has capacitance 5.20 μF. The capacitor was origionaly connected to a 1.50 V battery? (b) If the battery is disconnected and the distance between the charged plates doubled, what is the energy stored? Note: When disconnected, the charge on the capacitor must remain the same as when disconnected. A parallel-plate capacitor has capacitance 5.20 μF. The capacitor was origionaly connected to a 1.50 V battery? (c) The battery is subsequently reattached to the capacitor, but the plate...

  • explain why please A parallel-plate capacitor is made of two conducting plates of area A separated...

    explain why please A parallel-plate capacitor is made of two conducting plates of area A separated by a distance d. The capacitor carries a charge Q and is initially connected to a battery that maintains a constant potential difference between the plates. The battery is then disconnected from the plates and the separation between the plates is doubled. ) Which of the following remains constant? Voltage across the capacitor Capacitance of the capacitor Charge on the capacitor Submit (Survey Question)...

  • 5. A parallel combination of two identical 2.0 uF parallel plate capacitors is connected to a...

    5. A parallel combination of two identical 2.0 uF parallel plate capacitors is connected to a 100-V battery. The battery is then removed and the separation between the plates of one of the capacitors is doubled. Find the charge on each capacitor 6. For the circuit shown below, Find: (a) The equivalent capacitance (b) The charge on each capacitor (c) The voltage across each capacitor (d) The total energy stored 0.3 F 10.0V 1.0 uF 0.25 uf

  • A parallel-plate capacitor has capacitance 7.50 ?F. (a) How much energy is stored in the capacitor...

    A parallel-plate capacitor has capacitance 7.50 ?F. (a) How much energy is stored in the capacitor if it is connected to a 15.00-V battery? ?J (b) If the battery is disconnected and the distance between the charged plates doubled, what is the energy stored? ?J (c) The battery is subsequently reattached to the capacitor, but the plate separation remains as in part (b). How much energy is stored? ?J

  • A parallel-plate capacitor has capacitance 5.50 μF. (a) How much energy is stored in the capacitor...

    A parallel-plate capacitor has capacitance 5.50 μF. (a) How much energy is stored in the capacitor if it is connected to a 18.00-V battery? ______μJ (b) If the battery is disconnected and the distance between the charged plates doubled, what is the energy stored? _______μJ (c) The battery is subsequently reattached to the capacitor, but the plate separation remains as in part (b). How much energy is stored? _______μJ

  • A parallel plate capacitor of capacitance C0 has plates of area A with separation d between them.

    A parallel plate capacitor of capacitance C0 has plates of area A with separation d between them. When it is connected to a battery of voltage V0, it has charge of magnitude Q0 on its plates. The plates are pulled apart to a separation 2d while the capacitor remains connected to the battery and the space between the plates is filled halfway with a material having the dielectric constant K. What are the capacitance and the magnitude of the charge...

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