Question

A non-conductor cylinder with a volume charged of radius a, and charge density per length (lambda=Q/L),...

A non-conductor cylinder with a volume charged of radius a, and charge density per length (lambda=Q/L), find the following
1- the electric field inside and outside the cylinder?
2- the electric potential of the cylinder
3- the self-energy of the work done to ensemble a charge on the cylinder?

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

I will be glad to see your comment if you have any query.

Add a comment
Know the answer?
Add Answer to:
A non-conductor cylinder with a volume charged of radius a, and charge density per length (lambda=Q/L),...
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
  • (1) Consider a very long uniformly charged cylinder with volume charge density p and radius R...

    (1) Consider a very long uniformly charged cylinder with volume charge density p and radius R (we can consider the cylinder as infinitely long). Use Gauss's law to find the electric field produced inside and outside the cylinder. Check that the electric field that you calculate inside and outside the cylinder takes the same value at a distance R from the symmetry axis of the cylinder (on the surface of the cylinder) .

  • 1. A very long, uniformly charged cylinder has radius R and charge density p. Determine the...

    1. A very long, uniformly charged cylinder has radius R and charge density \rho. Determine the electric field of this cylinder inside (r<R) and outside (r>R)2. A large, flat, nonconducting surface carries a uniform surface charge density σ. A small circular hole of radius R has been cut in the middle of the sheet. Determine the electric field at a distance z directly above the center of the hole.3. You have a solid, nonconducting sphere that is inside of, and...

  • L(a) A long (L>> a) cylinder in vacuum has a line charge density p is shown...

    L(a) A long (L>> a) cylinder in vacuum has a line charge density p is shown below, (). State the Gauss's law for electric field in words. [1) (i). In order to calculate the electric field inside the cylinder using Gauss's Law, draw an appropriate Gaussian surface in the cylinder. [1] (i). Use the above information or otherwise, show that the electric field in the radial direction Pt inside the cylinder is ,2a (assume that the charge is evenly distributed...

  • You have long solid cylinder of radius R and charge density p (charge per unit volume)....

    You have long solid cylinder of radius R and charge density p (charge per unit volume). (a) Find electric potential V(r) at distance r < R from the axis of the cylinder. (b) Find electric potential V (r) outside the cylinder at distance r > R. (c) sketch a graph of the electric potential V (r) as a function of r, from r = 0 to r = 4R, with r along the horizontal axis of the graph.

  • The electric potential inside a charged spherical conductor of radius R is given by V =...

    The electric potential inside a charged spherical conductor of radius R is given by V = keQ/R, and the potential outside is given by V = keQ/r. Using Er = -dV/dr, derive the electric field inside and outside this charge distribution. (Use the following as necessary: ke, Q, r and R.) (a) inside E = ? (b) outside E = ?

  • 2. Consider a cylindrical conductor with a radius of 7.00 cm and a length of 2.40...

    2. Consider a cylindrical conductor with a radius of 7.00 cm and a length of 2.40 m with Q load distributed on the surface. The measures that the magnitude of the electric field at a point 19.0 cm radial from the conductor axis measured from the center of the cylinder is 36 KN/C. to. a. Find formulas for the magnitude of the electric field inside and outside the cylinder. Graph your results. b. Calculate the net charge on the surface...

  • Plaese help! Suppose you have an infinite non-conducting cylinder of charge of radius R, and uniform...

    Plaese help! Suppose you have an infinite non-conducting cylinder of charge of radius R, and uniform charge density lambda. Starting from Gauss' Law, show: that the Electric Field inside is given by: E = lambda r/2 pi epsilon_o R^2 the Electric Field outside is given by E = lambda/2 pi epsilon_o r A big part of your grade will depend on how accurate and detailed your picture is, and how clean and clear your resulting derivation is.

  • A right circular cylinder has radius R and length L. and a nonuniform volume charge density...

    A right circular cylinder has radius R and length L. and a nonuniform volume charge density p(p). If the z axis is chosen to coincide with the axis of the cylinder, the charge density is p(p) - p{z2) = p(z, z) = .p_0 + beta_ z. This means that the charge density varies linearly along the length of the cylinder. Find the force on a point charge q placed at the center of the cylinder. (Adapted from Reitz. Milford, and...

  • Consider a uniformly charged cylinder with dimensions of radius r and height h contains a charge...

    Consider a uniformly charged cylinder with dimensions of radius r and height h contains a charge in it’s volume. What is the magnitude and direction of the electric field at any point outside the cylinder . Describe each step as you go along .Find the electric field within the cylinder and outside of it. Describe each step as you go along. Consider the total charge Q on a line of length h with the use of Gauss’s law compute the...

  • A non-uniformly charged sphere of radius R has a total charge Q. The electric field inside...

    A non-uniformly charged sphere of radius R has a total charge Q. The electric field inside this charge distribution is described by E=Emax(r4 /R4 ), where Emax is a known constant. Using the differential form of Gauss’s law, find volume charge density as a function of r. Express your result in terms of r, R and Emax.

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