Question

Chapter 25, Problem 032 A parallel-plate air-filled capacitor having area 48 cm2 and plate spacing 1.2 mm is charged to a potential difference of 540 V. Find (a) the capacitance, (b) the magnitude of the charge on each plate, (c) the stored energy, (d) the electric field between the plates, (e) the energy density between the plates. (a) Number (b) Number () Number (d) Number (e) Number Units Units Units Units Units SHOW HINT

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
Chapter 25, Problem 032 A parallel-plate air-filled capacitor having area 48 cm2 and plate spacing 1.2...
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
  • Chapter 25, Problem 032 A parallel-plate air-filled capacitor having area 46 cm2 and plate spacing 1.2...

    Chapter 25, Problem 032 A parallel-plate air-filled capacitor having area 46 cm2 and plate spacing 1.2 mm is charged to a potential difference of 660 V. Find (a) the capacitance, (b) 9 the magnitude of the charge on each plate, (c) the stored energy, (d) the electric field between the plates, (e) the energy density between the plates. (a) Number (b) Number (c) Number (d) Number (e) Number Units Units Units Units Units

  • Chapter 25, Problem 032 A parallel-plate air-filled capacitor having area 50 cm2 and plate spacing 0.82...

    Chapter 25, Problem 032 A parallel-plate air-filled capacitor having area 50 cm2 and plate spacing 0.82 mm is charged to a potential difference of 740 V. Find (a) the capacitance, (b) the magnitude of the charge on each plate, (c) the stored energy, (d) the electric field between the plates, (e) the energy density between the plates. (a) Number (b) Number (c) Number (d) Number (e) Number Units Units Units Units Uni

  • A parallel-plate air-filled capacitor having area 40 cm2 and plate spacing 1.5 mm is charged to...

    A parallel-plate air-filled capacitor having area 40 cm2 and plate spacing 1.5 mm is charged to a potential difference of 830 V. Find (a) the capacitance, (b) the 2 9 5 8 0 magnitude of the charge on each plate, (c) the stored energy, (d) the electric field between the plates, (e) the energy density between the plates (a) Number (b) Number (c) Number (d) Number (e) Number Units Units Units Units Units

  • A parallel-plate air-filled capacitor having area 57 cm2 and plate spacing 1.4 mm is charged to...

    A parallel-plate air-filled capacitor having area 57 cm2 and plate spacing 1.4 mm is charged to a potential difference of 820 V. Find (a) the capacitance, (b) the magnitude of the charge on each plate, (c) the stored energy, (d) the electric field between the plates, (e) the energy density between the plates.

  • A parallel-plate air-filled capacitor having area 42.0 cm2 and plate spacing 1.10 mm is charged to...

    A parallel-plate air-filled capacitor having area 42.0 cm2 and plate spacing 1.10 mm is charged to a potential difference of 570 V. Find (a) the capacitance, (b) the magnitude of the charge on each plate, (c) the stored energy, (d) the electric field between the plates, (e) the energy density between the plates.

  • A parallel-plate air-filled capacitor having area 31 cm2 and plate spacing 3.0 mm is charged to...

    A parallel-plate air-filled capacitor having area 31 cm2 and plate spacing 3.0 mm is charged to a potential difference of 400 V. Find the following values. (a) the capacitance pF (b) the magnitude of the charge on each plate nC (c) the stored energy μJ (d) the electric field between the plates V/m (e) the energy density between the plates J/m3

  • A parallel-plate air-filled capacitor having area 44 cm2 and plate spacing 5.0 mm is charged to...

    A parallel-plate air-filled capacitor having area 44 cm2 and plate spacing 5.0 mm is charged to a potential difference of 850 V. Find the following values. (a) the capacitance (pF) (b) the magnitude of the charge on each plate (nC) (c) the stored energy (μJ) (d) the electric field between the plates (V/m) (e) the energy density between the plates (J/m3)

  • The parallel plates in a capacitor, with a plate area of 6.60 cm2 and an air-filled...

    The parallel plates in a capacitor, with a plate area of 6.60 cm2 and an air-filled separation of 3.30 mm, are charged by a 4.20 V battery. They are then disconnected from the battery and pulled apart (without discharge) to a separation of 7.60 mm. Neglecting fringing, find (a) the potential difference between the plates, (b) the initial stored energy, (c) the final stored energy, and (d) the work required to separate the plates. (a) Number i Units ► (b)...

  • The parallel plates in a capacitor, with a plate area of 7.60 cm2 and an air-filled...

    The parallel plates in a capacitor, with a plate area of 7.60 cm2 and an air-filled separation of 2.70 mm, are charged by a 6.00 V battery. They are then disconnected from the battery and pulled apart (without discharge) to a separation of 8.30 mm. Neglecting fringing, find (a) the potential difference between the plates, (b) the initial stored energy, (c) the final stored energy, and (d) the work required to separate the plates. (a) Number Units (b) Number Units...

  • The plates of an air-filled parallel-plate capacitor with a plate area of 16.5 cm2 and a...

    The plates of an air-filled parallel-plate capacitor with a plate area of 16.5 cm2 and a separation of 8.80 mm are charged to a 130-V potential difference. After the plates are disconnected from the source, a porcelain dielectric with κ = 6.5 is inserted between the plates of the capacitor. (a) What is the charge on the capacitor before and after the dielectric is inserted? Qi = ___C Qf = ____C (b) What is the capacitance of the capacitor after...

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